CCSD3ZF0000100000001CCSD3VS00002MRK**001 LOG_VOL_IDENT: SMAC01 LOG_VOL_INITIATION_DATE: 1993-03-23 LOG_VOL_CLOSING_DATE: 1993-03-23 VOLUME_DIAMETER: 10.5 INCHES, 9 TRACKS LOG_VOL_CAPACITY: 150 MB/LOGICAL_VOL LOG_VOL_FILE_STRUCTURE: FILES-11 VOLUME_DRIVE_MFGR_AND_MODEL: STORAGE TECHNOLOGY CORPORATION 2920 COMPUTER_MFGR: DIGITAL EQUIPMENT CORPORATION OPERATING_SYSTEM: MICROVMS 5.4 COMPUTER_SYSTEM: MICRO VAX II TECHNICAL_CONTACT: JUDY JOHNSON STAN COBB CODE 696 CODE 696 NASA/GSFC NASA/GSFC GREENBELT, MD 20771 GREENBELT, MD 20771 NSI/DECnet ELDYN::U6JAJ NSI/DECnet ELDYN::XRPSC TEL: (301) 286-4888 TEL: (301) 286-9563 TRANSFER_SOFTWARE: VAX VMS COPY COMMAND PREV_VOL_IDENT: See PREV_LOG_VOL_COVERAGE for a listing of all tapes. CCSD$$MARKERMRK**001CCSD3SS00002MRK**002 DATA_SOURCES: SAN MARCO, ELECTRIC FIELD INSTRUMENT. SCIENTIFIC_CONTACT: DR. NELSON C. MAYNARD DR. THOMAS AGGSON PHILLIPS LABORATORY CODE 696 GEOPHYSICS DIRECTORATE NASA/GSFC PL/OL -AA/PHG GREENBELT, MD 20771 HANSCOM AFB, MA 01731 NSI/DECnet AFGLSC::MAYNARD NSI/DECnet ELDYN::U6JAJ TEL: (617) 377-2431/32 TEL: (301) 286-5726 SOURCE_CHARACTERISTICS: A. DESCRIPTION_OF_SPACECRAFT: San Marco D/L was launched from the San Marco Equatorial Range (SMER), located off the coast of Kenya near Ungwana Bay, on March 25, 1988 at 19:50 UT. The spacecraft and its payload, a joint American, Italian, and German project, were used to investigate the relationship between solar activity and thermosphere- ionosphere phenomena in the equatorial region. Seven experiments were conducted by this satellite. The Drag Balance Instrument (DBI) instrument determined total atmospheric density by measuring the displacement of a low-mass outer shell relative to the main body of the satellite. The Airglow Solar Spectrometer (ASSI) instrument measured airglow, solar, and interplanetary radiation from EUV through visible. The Wind and Temperature Spectrometer (WATI) instrument was designed to determine the temperature and density of the neutral gases by species. It measured the wind in the horizontal plane perpendicular to the orbit plane, and in the vertical plane. A similar instrument was flown on the Dynamics Explorer spacecraft, and was described in detail by Spencer et al. (1981). However, the instrument aboard San Marco D failed a few weeks into the mission, and only a small data base exists. The Electric Field Instrument (EFI) is described in detail below. The Ion Velocity Instrument (IVI) pair of instruments measured the three-axis bulk velocity of ions, the ion density, and the ion temperature, by species. The Gallium Arsenide Panel Flight Experiment (GAP) was an engineering test to compare the performance of gallium arsinide solar panels with silicon solar panels. The Orbital Drag Analysis (ODA) is not an instrument, but will use orbit analysis to determine the atmospheric density and related parameters. B. ORBIT_INFORMATION: San Marco D/L was launched into a 260 x 614 km equatorial orbit with an inclination of 2.9 degrees, and reentered at about 01:13 UT on 6 December 1988. The orbital period was about 93 minutes, and the orbit precessed with a period of about 40 days. The spin axis was pointed approximately 2 degrees from the South celestial pole. Magnetic torquing was used to obtain and maintain the desired attitude. C. PERFORMANCE: Satellite data was, for the most part, recorded on an on-board tape recorder and played back over the telemetry station at Malindi, Kenya. Although there were a number of in orbit problems, the joint USA-Italian team managed to extract a data set from the on-board instruments in a near-nominal fashion until the satellite reentered the atmosphere. TIME_SPAN_OF_THE_DATA: 20-Apr-1988 to 5 Dec-1988 INVESTIGATION_OBJECTIVES: The orbit of the San Marco D/L satellite carried through the region of equatorial Spred-F phenomina which was the primary scientific objective of this experiment. The 8 samples/second resolution of this experiment allowed it to sample, in-situ, the geometry of Spread-F structures with much better resolution than had been obtainable from equatorial radar backscatter studies. This experiment showed that equatorial Spread-F, in the 400-600 Km altitude range, is generated by large scale equatorial plasma bubbles which rapidly drift upward as a result of Rayleigh-Taylor and gradient drift instabilities. These studies (2 papers) are published in vol. 97 of the Journal of Geophysical Research (JGR) and in vol. 13 of Advances in Space Research. INSTRUMENT_ATTRIBUTES: A. DESCRIPTION_OF_INSTRUMENT: The San Marco Electric Field Instrument (EFI) is a three-axis symmetric double floating probe electric field instrument very similar to the instrument flown on DE-2 (Maynard et al., 1981). Two pairs of wire antennas were deployed in the spin plane at 90 degrees to one another, and one pair of cylindrical antennas was deployed along the nominal spin axis. The spin axis antennas were extended only about 2.5 meters because of stability problems, and data from these antennas are not normally used [the z axis field is normally found by assuming the inner product (E o B) = 0]. Each spin plane antenna was 20 meters long. The inboard 14.5 meters was coated with insulating material, the next 5 meters was bare, woven Cu-Be wire, and the last 0.5 meters was insulated. Including the diameter of the spacecraft main body (914 mm) gives an effective length of 34.82 meters for DC measurements. Each of these antennas had a small mass at its tip to aid in the deployment and help keep the antenna straight thereafter. The antennas were insulated from the spacecraft. INSTRUMENT EVENTS DATE DAY OF YEAR EVENT 25 March 1988 85 19:51 UT: Launch 9-10 April 1988 100 - 101 Deployment of spin plane antennas. 1-4 June 1988 153 - 156 Deployment of spin axis antennas to 2.5 meters. 4 June 1988 156 Testing of EFI antenna modes. 6 Dec 1988 341 Reentry SPECTROMETER CALIBRATION DATA From Aggson and Maurer, 9 October 1986 These measurements were made with the instruments in the spacecraft. Channel Power in DB 0 10 20 30 40 50 60 70 80 90 100 1 5.10 4.76 4.16 3.54 2.92 2.31 1.78 1.24 1.02 1.04 1.08 2 5.10 4.96 4.32 3.74 3.08 2.50 1.88 1.08 0.40 0.00 0.10 3 This channel is dead. 4 5.60 5.00 4.38 3.78 3.10 2.54 1.89 1.30 0.54 0.58 0.76 5 5.10 5.00 4.36 3.72 3.08 2.42 1.76 1.08 0.44 0.44 0.48 6 5.10 5.00 4.34 3.74 3.12 2.48 1.78 0.90 0.00 0.00 0.00 7 5.10 5.02 4.38 3.80 3.18 2.60 1.82 1.08 0.94 0.94 0.96 8 5.10 5.06 4.44 3.84 3.20 2.56 1.78 1.04 0.90 1.04 1.04 9 This channel is dead. 10 5.10 5.10 4.92 4.28 3.64 3.04 2.46 2.06 1.88 1.84 11 This channel is dead. 12 5.10 5.10 5.60 4.58 2.88 1.40 1.18 1.20 1.16 1.16 13 5.10 4.74 4.12 3.50 2.98 2.58 1.80 1.28 1.12 1.12? 1.10 14 5.10 4.98 4.32 3.72 3.10 2.46 1.84 1.20 0.58 0.16 0.24 15 5.10 4.96 4.28 3.66 3.00 2.36 1.74 1.18 0.78 0.78 0.78 16 5.10 4.98 4.36 3.74 3.14 2.50 1.86 1.16 0.26 0.20 0.32 17 5.10 5.02 4.40 3.82 3.18 2.56 1.90 1.10 0.32 0.36 .50 18 5.10 5.06 4.42 3.82 3.20 2.56 1.84 0.84 -.28 0.82 0.88 19 5.10 5.02 4.42 3.78 3.16 2.52 1.78 0.96 0.56 0.64 0.78 20 5.10 5.04 4.36 3.74 3.06 2.38 1.94 0.72 0.76 0.80 0.94 Input 0.0 -0.5 -1.0 -1.5 -2.0 -2.5 -3.0 -3.5 -4.0 -4.5 -5.0 (Log10 Volts) Gain, Hi 40 dB channel 6 is 4.14, i.e., 20 dB gain Low A 60 dB 13 is 4.20, i.e., 20 dB gain Low B 10 is 3.20, i.e., 20 dB gain High B. OPERATIONAL_MODE: The San Marco electric field instrument DC electric fields are obtained from 8 samples per second measurements from the equatorial antenna pairs which are sufficient, in the equatorial region, to measure the total electric field vector. There is only one mode for the DC electric field data. The only caveat on this impressive data set is that it is only valid in plasma densities above 10^4 electrons per cubic centimeters or above 2.5 volts in telemetry units for the duct detector data supplied in this data set. The AC electric field measurements cover the frequency range of 4 Hz to 16 KHz in RMS measurements at select band pass regions which are at fixed frequencies and are continuously supplied with the DC electric field data. The AC electric fields were measured at two different gains which were called the high gain and the low gain modes. The data archived here have been corrected for these possible gain changes and the gain mode is not required to work with the AC electric field data supplied here. Likewise, the RMS data measurements could be switched to the various antenna pairs of the experiment. These antenna pairs have different lengths requiring different gain corrections which were dutifully made from data calibrations made prior to the satellite launch. These corrections are transparent to the user of the archived data. C. PARAMETERS_MEASURED: The EFI instrument measured the following parameters: 1. Vector DC electric field. 2. Variational electric fields: a. Comb filter bank A (8 channnels): 4-8, 8-16, 16-32, 32-64, 64-128, 128-256, 256-512 and 512-1024 Hz. b. Comb filter bank B (8 channnels): 4-8, 16-32, 45-64, 90-128, 181-256, 256-361, 361-512, and 512-1024 Hz. c. Comb filter bank C (4 channnels): 1.02-4.09, 4.09-16.0, 16.0-64.0, and 128-512.0 kHz. D. PERFORMANCE_OF_THE_INSTRUMENT: Performance of the Electric Field Instrument was nominal. The few problems discovered in processing the data are listed below. EXAMPLES OF KNOWN PROBLEMS STARTUP PROBLEM, SPIN MODULATION, LOW DENSITY The large negative slope in Ey at the start of passes is due to incorrect nadir periods in this region. This effect appears on plots of Ey for almost all passes. The period of negative slope lasts for approximately two minutes and is the result of extrapolating spin nadir times. The horizon sensors which provide the nadir crossing times begin working about two minutes after each experiment turn-on (see Spin Start Times From Horizon Sensor Data). Residual spin modulation can be seen in the approximately 10-second modulation in the signals. Fourth harmonic oscillations develop in the electric field signal when the plasma density is low. This appears when 10^2 cm^-3 10^11 ohms, while the capacitive impedance is approximately 10^9 ohms. DATA DURING MANEUVERING PERIODS Bad attitude data during these periods caused the Ex and Ey data to be computed incorrectly. MANEUVERING PERIODS -- NO GOOD SPIN AXIS ATTITUDE AVAILABLE DAY OF YEAR DATE 163.6632 - 165.8215 11 June - 13 June 202.6588 - 206.2267 20 July - 24 July 249.1694 - 260.2067 5 Sept - 16 Sept 299.3455 - 299.9440 25 Oct 316.5501 - 318.2164 11 Nov - 13 Nov 324.3699 - 328.2119 19 Nov - 23 Nov E. RESOLUTION: DATA AVAILABLE FROM THE ELECTRIC FIELD INSTRUMENT TYPE OF DATA DATA RATE and COMMENTS High Resolution spin plane and 1 set every 128 milliseconds. Spin spin axis electric field axis field usually derived from spin plane field and magnetic field data. Data from x, y, and z antennas collected at different times in the 128 MSec. period. Spin average spin plane and spin Two averages per nadir spin ( >1 axis electric fields point every 5 seconds). Spin axis (not included in archived field usually derived from spin database) plane field and magnetic field data. Spin plane data may be from x or y antenna or an average of the two. Spectrometers CH Bandpass 1 set every 512 MSecs. There are 3 LOA 1 4 - 8 Hz spectrometers (LOA, HIA, LOB), each 2 8 - 16 Hz of which may be hooked up to any 3 16 - 32 Hz antenna and be set at high or low 4 32 - 64 Hz gain. 5 64 - 128 Hz 6 128 - 256 Hz Channels 3, 9, and 11 did not work. 7 256 - 512 Hz 8 512 - 1024 Hz HIA 9 1 - 4 KHz 10 4 - 16 KHz 11 16 - 64 KHz 12 128 - 512 KHz LOB 13 4 - 8 Hz 14 16 - 32 Hz 15 45 - 64 Hz 16 90 - 128 Hz 17 181 - 256 Hz 18 256 - 361 Hz 19 361 - 512 Hz 20 512 - 1024 Hz DATA NOT AVAILABLE FROM THE ELECTRIC FIELD INSTRUMENT The peak detector systems on this instrument failed (before launch) and are unavailable. PARAMETERS: The following parameters have been archived: A. DC electric field (8 points per second) along the X and Y axes in spacecraft coordinates. B. Variational electric fields averaged at 0.5 second intervals for all channels of each of the three spectrometers. Note that channels 3, 9, and 11 should be ignored as they did not work. C. Some orbital parameters such as the altitude of the satellite, the geographic longitutude and latitude, the local solar time and the dip latitude have been included for each data point of each file (all file types). A flag indicating day or night is also included for the DC data. D. Non-reduced plasma ion densities measured by the University of Texas at Dallas Plasma Duct Electrometer. This data is supplied in unreduced telemetry units (0 to 5 volts) which is log compressed varying from 10^1 to 10^6 electrons per cubic centimeter. The important amplitude of this data is 2.5 volts which corresponds roughly to 10^4 electrons per cubic centimeter. The DC portion of this experiment is only valid for densities greater than 10^4 electrons per cubic centimeter (or 2.5 volts in the duct detector data). See Aggson et al., 1992a, JGR vol. 97 for a description of experiment validity. Most of the San Marco data corresponds to densities greater than 10^4 electrons per cubic centimeter. Note that the AC data is valid at all plasma densities. DATA_SET_QUALITY: Overall quality of the Electric Field Instrument data is excellent. See the section of this document on performance of the instrument for a listing of known problems. DATA_PROCESSING_OVERVIEW: A. DATA_PROCESSING_CYCLE: Telemetry tapes received from the National Space Science Data Center (NSSDC) were processed using the telemetry reduction program (TREP) to produce binary reduced data files (DBA's). Data was taken from these DBA files to produce the ASCII archive files. B. HISTORY: Only one ground station was available to downlink data from San Marco D -- the ground station at San Marco (Malindi, Kenya). Both tape playback and real-time data were received. Almost all scientific data were taken from playback passes. Real-time data was transmitted at 6 KBits/sec, and tape playback data at 72 KBits/sec. Tape playback data were read out while rewinding the tape recorder, so the data were received in inverted order; the computers at the ground station re-inverted the data before doing any other processing. From that point on, all files looked the same, whether playback or real-time. Programs at the ground station were also used to insert corrected major frame start times into the major frame headers. For real-time passes, these times were assigned by the ground station computer. For tape playback passes, they were based on the s/c clock and station UT of the nearest (in time) real-time pass. The s/c clock was expected to be accurate to at least 1 millisecond per 24 hours. In general, both spacecraft command systems were used to command the instruments, although the original plan called for Encoder 2 to be used only in case of failure of Encoder 1. J. Maurer noted (Trip report, 14 May - 4 June 1987, Memo to C. Arduini) that switching between encoders could cause incorrect time assignments. The National Space Science Data Center (NSSDC) cleaned the data, correcting times where necessary and adding orbit data. All archive data have been prepared from NSSDC tapes with merged orbit data. These merged telemetry files were processed by the telemetry reduction program, TREP, to create reduced data files (DBA's). Data was taken from the binary DBA's to create the ASCII archive data files. C) ORBIT AND ATTITUDE DETERMINATION Tapes received from NSSDC have orbit data in the major frame headers. Good attitude data, especially spin plane attitude, is critical for electric field data analysis. If the attitude in the spin plane is off by 0.5 degrees (0.014 seconds for a 10 second rotation rate), the resulting eastward electric fields will be off by 2 mV/m. The expected ambient field in that direction is about 1 mV/m. The maximum allowable uncertainty in spin plane attitude is 0.25 degrees; an uncertainty of 0.1 degrees is desired. EFI data analysis is somewhat less sensitive to spin axis attitude: the maximum acceptable uncertainty in this parameter is 0.5 degrees. Three types of sensors were available for attitude determination: a star mapper (by far the most accurate), a pair of sun sensors, and a pair of horizon sensors. The star mapper worked for only a few weeks. SPIN AXIS ATTITUDE Spin axis attitude information is based on fits made by Arduini, Laneve and Mortari (1989) to data from all sensors, and is given in terms of the direction cosines of the spin axis in a coordinate system that has the x and y axes in the Earth's equatorial plane, and the z axis pointing to celestial North. The x axis points toward the Right Ascension of the ascending node. Data were provided at the start times of 376 passes, distributed among seven coasting periods. Between coasting periods the spacecraft attitude was being changed by magnetic torquing. Starting with this data base and a set of NORAD elements, we produced spline fits to the Right Ascension of the ascending node at the NORAD element epoch, and used these to compute the Right Ascension of the ascending node at the start times of the passes for which we had spin axis attitude data. From these data, we then computed the Right Ascension of the spin axis at the start times of the 376 passes using RA = RAAN + Tan^-1 (Yn/Xn) where RAAN is the Right Ascension of the ascending node at the time that the spin axis unit vector has components (Xn,Yn,Zn). Note that the '^' symbol is used here to denote exponentiation. The codeclination was computed from the direction cosine in the z direction: D = Cos^-1 Zn These points are sufficiently dense that linear interpolation can be used to obtain the spin axis attitude at other times during the coasting periods. Outside the coasting periods, we assume the spin axis is pointing at the South Pole. Arduini et al. claim an accuracy of 0.1 to 0.2 degrees, based on the deviations of the data points from the least square fits, and on a comparison with star mapper data during the short period that the star mapper was working. The telemetry reduction program (TREP) needs the latitude and longitude of the spin vector. These data may be (1) taken from the major frame headers (as latitude and longitude), (2) taken from the data reduction parameters (as Right Ascension and codeclination), or (3) computed by linear interpolation in the table of Right Ascensions and codeclinations constructed using the above procedure. For the archive data, these values were computed by linear interpolation. Outside of the coasting periods, the codeclination is set to 180 degrees and the Right Ascension is set to 0 degrees. In cases 2 and 3, the pointing direction must be converted to geographic latitude and east longitude. The conversion from codeclination (D) to latitude is straight forward: Lat = 90 - D. The longitude is a bit more complicated. Given the day of year and time (UT), the Greenwich hour angle of the first point in Aries (Greenwich sidereal time) is given by GST = To + 1.002743 UT ( - 24 if >= 24 ) ( + 24 if < 0 ), where To = 0.065709 Day - 17.407368 ( - 24 if >= 24 ) ( + 24 if < 0 ), and Day is the day of the year. Converting GST to degrees, we then hav Longitude = 360 - ( GST + RA ) ( - 360 if >= 360 ) ( + 360 if < 0 ), where RA is the Right Ascension. The constants come from Duffet-Smith (1979), Algorithm 6: Conversion of GMT to GST. One value -- 17.407368 -- is specific to 1988 (Duffet-Smith gives a table of values for other years); the others are valid for all years. It is unclear how much the actual spin axis of the spacecraft is offset from the nominal spin axis (the spacecraft z axis). Numbers on the order of 0.1 degrees are being thrown around. In general, the spin plane antennas will lie in a plane perpendicular to the spin axis, whether it coincides with the z axis or not. The z axis antenna, however, is aligned with the spacecraft z axis, not the spin axis. If information on spin axis orientation comes from the major frame headers, it may refer to the spacecraft z axis rather than the spin axis. SPIN PLANE ATTITUDE Spin plane attitude is measured from the 'base direction' (discussed in next section). The times that the +x antenna passes through the base direction are the start and stop times (t0 and t1 respectively) of the nadir to nadir spin (antinadir to antinadir spin start and stop times are the midpoints of these times). The nadir angle is the angle between the base direction and the +x (or +y) antenna at any given time t, and is given by Q = 2PI( t - t0 ) / ( t1 - t0 ) where PI = 3.1416. THE NADIR DIRECTION AND THE BASE DIRECTION The nadir direction is given by the spacecraft latitude and longitude as Latitude of nadir = - spacecraft latitude and East longitude of nadir = [ spacecraft east longitude + 180 ] MOD 360. The true nadir direction will lie in the spin plane ONLY if the spin plane coincides with the orbital plane. In the general case, the closest line to the nadir direction that lies in the spin plane -- and therefore the proper line from which to measure the nadir angle -- is the base direction, defined as the projection of the line from the center of the s/c to the center of the earth into the spin plane. The base direction is given by _ _ _ _ _ W = N - (Z o N) Z, _ _ where N is the nadir vector and Z is the spin vector. For latitudes and east longitudes given by 'b' and 'l', respectively, the Cartesian coordinates of unit _ _ length vectors in the N and Z directions are ( cos(b[j]) cos(l[j]) , cos(b[j]) sin(l[j]) , sin(b[j]) ), j = N or Z. The base direction can be converted from Cartesian coordinates to spherical coordinates by b_base = tan^-1 ( Wz / SQRT( Wx^2 + Wy^2 ) and l_base = tan^-1 ( Wy / Wx ) with care taken to insure that the longitude is in the proper quadrant. SPIN START TIMES FROM HORIZON SENSOR DATA Horizon sensor data were not usable for 10-20 major frames into the pass (2- 3 minutes) because (a) the sensors did not come on at the start of the pass, and (b) the sensors needed to warm up before they functioned accurately. The horizon sensors do not behave properly when the instruments are first turned on for a pass. Normally, neither horizon sensor records both sky/Earth and Earth/sky events consistently for 5-10 major frames -- Earth/sky events tend to be recorded earlier than sky/Earth events. Sometimes, one or both of the sensors will record both types of events for one early spin (usually in the first or second major frame), but such times have been wrong in all passes examined to date, and these recorded events are invariably followed by a number of spins without complete data. When the sensors do start recording data, the data are always significantly inaccurate for another 5-10 major frames, in such a way that the estimate for the nadir spin period is low. Nadir Times during the first few minutes of each pass are therefore based on an extrapolation from later data, and the extrapolation is not particularly good. The program has no way of knowing if the nadir period is constant or varying through this region. It assumes a constant nadir period for the extrapolation. In most cases, the results imply that dy/dt = const < 0 through this region, presumably because the nadir period used is not sufficiently accurate for extrapolation since times are known to >= 1 msec only. The fact that dy/dt is usually < 0 is probably related to the fact that times are truncated rather than rounded. The determination of the attitude in the spin plane using horizon sensor data was much more difficult than expected because the spacecraft spin rate was not constant. The spin rate changed by about 20 milliseconds twice per orbit, apparently due to thermal expansion and contraction of the spin plane electric field wire antennas when the spacecraft passed from darkness to sunlight and back, respectively. The algorithm used to determine the first good nadir period is: 1. Compute the times that the horizon sensor crosses the nadir as the average of the sky/Earth and Earth/sky transition times vectors for the desired horizon sensor. If either sky/Earth or Earth/sky time is bad, use fill data. 2. Starting with the FOURTH element in the horizon sensor nadir times vector just generated, search for the first non-fill entry. From that point on, delete all fill data. 3. To fill gaps in the horizon sensor data, add K-1 equally spaced times between the ith and (i+1)st elements of the horizon sensor nadir times vector, whenever K = Ti / Tnom > 1 where Tnom is the nominal nadir period (a user-specified parameter), and Ti is the difference between the ith and (i+1)st element in the modified horizon sensor nadir times vector, and the result is truncated. Note that this scheme is very insensitive to the value of Tnom, which can be off by a factor of two. This is important because the spin rate varies by > 20 milliseconds as the spacecraft moves into and out of sunlight, and drifts over longer time periods. 4. Starting with the first good horizon sensor nadir time, look for the first two consecutive spins with the nadir period differing by 1 millisecond or less. Assume the first of these is the first good period. 5. If no periods were found stable to 1 millisecond, look for the first two consecutive spins with the nadir period differing by 2 milliseconds, and assume the second one is the first good period. 6. If no periods were found stable to 2 milliseconds, use the fourth available nadir period. 7. Assume that the nadir period found by steps 5-7 is valid back to the start of the pass, and use it to compute the preceding horizon sensor nadir times. 8. Adjust the horizon sensor nadir times for the angular separation of the horizon sensor and the +x electric field antenna to obtain the desired spin start times. In almost all cases, this procedure appears to leave a residual error in the nadir times, which is a maximum at the start of the pass and goes to zero at the point where the extrapolation began. The effect of this is apparent in plots of the data as a sharp decrease in Ey at the start of the pass A plot of the difference in the nadir times for horizon sensors 1 and 2 invariably shows a drop from near 0 to about -15 or -20 milliseconds after the instruments stabilize. This corresponds to a difference in alignment of about 0.5 degrees, which agrees with the results of alignment tests done before launch (Arduini, private communications to T. Aggson). During instrument testing, Maurer noted a 9-11 millisecond delay between the times the horizon sensors were actually triggered and the times recorded in the telemetry stream. He recommended correcting all horizon sensor times by 10 milliseconds. We find that, when accurate values are used for the pointing directions of the optical axes of the horizon sensors, the data look more reasonable with zero delay, although there is some residual error in the data from horizon sensor 1. This agrees with analysis by Di Ruscio (CRA), who found that the delay was caused by the test procedure and is not inherent in the spacecraft system. Input variables Hor_Sensor_1_Delay and Hor_Sensor_2_Delay allow these values to be adjusted. Either horizon sensor may be used to determine the nadir times, using the input variable Hor_Sensor_1_Or_2. The times that the horizon sensors pointed in the base direction are computed as the average of the sky/Earth and Earth/sky transition times for the chosen sensor; these times are then corrected for the angular distance between the horizon sensors and the +x electric field antenna. The calculation of the horizon sensor nadir times as the average of the sky/Earth and Earth/sky transition times is strictly valid only for a circular orbit. However, for the orbital parameters of the San Marco spacecraft, the error introduced by this simplification is an order of magnitude below the desired accuracy, and significantly below the uncertainty introduced by errors in the horizon sensor data themselves. Much greater uncertainty is introduced by the extrapolation needed to obtain nadir times during the first few minutes of each pass, especially if the pass starts near the day/night or night/day transition, when the spin rate is changing. In fact, changes in the topography or cloud cover at the point where the horizon sensors sense the transitions can have a significantly larger effect on the results than does the noncircularity of the orbit. The horizon sensor data are subject to errors on the order of 0.2 degrees because of atmospheric effects. FILLING GAPS, ANTINADIR TIMES Whether the nadir times were generated from attitude data or from horizon sensor data, a final check is made to be sure that there are no missing nadir times -- i.e., that the differences between the nadir times does not exceed the expected nadir period by too much. In addition, the data are averaged twice per spin, over time periods centered on the nadir times (when the +x antenna is aligned with the +X SPD axis), and time periods centered on the antinadir times (when the +x antenna is aligned with the -X SPD axis). The antinadir times are computed as the midpoints of consecutive nadir times. DAY/NIGHT DETERMINATION The sun sensors are similar to the horizon sensors in operation. However, both crude and fine angular information are available, as well as the simple timing data. The timing circuit is set up to produce a trigger at the time that the sun is in the middle of the field of view. Electric Field Instrument data processing ignored the angular information (which was used by CRA to obtain spin axis attitude information). It reduced and stored the timing data, but looked only at the event flags, which are used to determine when the spacecraft is in daylight. The sun sensor data are dirty, and event flags may be missing or spurious. A solar detection is assumed to have occurred if the event flag is set for two consecutive minor frames. If the flag is set for less than OR MORE THAN two consecutive minor frames, the event is assumed to be spurious. A gap of three minutes or longer between consecutive detections, corresponding to approximately 45 minutes of local time, is interpreted as an end of daylight. Since all passes were less than one orbit in length, there are never more than two daytime regions in any pass. HIGH RESOLUTION DATA Ambient high-resolution electric fields are computed in the despun spacecraft coordinate system, and converted to topographic and local magnetic coordinates. In addition to the basic electric field data, one needs orbit and attitude information, and a magnetic field model. The basic procedure for the calculation of the fields in the spin plane is: 1. Subtract the contact fields from the raw data. The contact fields are either the average of the spin-averaged contact fields over the entire pass, or are set from input parameters Pass_Avg_X_Contact_Field and Pass_Avg_Y_Contact_Field. This is an essential first step, because the conversion from the antenna coordinate system to despun coordinates is a rotation, and the fields must be centered at (0,0) for the rotation to work. 2. Combine the x and y antenna data to obtain fields in an orthogonal coordinate system. 3. Rotate the fields to the SPD frame. _ _ 4. Subtract the motional electric field. It is assumed that VxB changes slowly enough that the value at the midpoint of the current spin can be used for the entire spin. _ _ The z (spin axis) field is computed by subtracting the VxB field from the measured z axis field, or from Ez = - (ExBx + EyBy) / Bz _ _ assuming E o B = 0 and using the spin plane electric field just computed. Step 2 above needs expansion. Data are collected serially, and stored in the minor frames approximately 30 milliseconds after they are sampled. The differential y reading (difference between the + and - y antennas) is made about 13 milliseconds before the start of the minor frame in which it is stored (in bytes 13-14). The differential x reading is made about 83 milliseconds after the start of the minor frame, and stored in bytes 85-86. Thus, since the y antennas are read before the x antennas, and because the +y antenna leads the +x antenna as the spacecraft rotates, the angle between the readings is less than 90 degrees. It is easiest to convert to SPD coordinates by first changing to an orthogonal coordinate system whose +x axis corresponds to the +x antenna, and whose +y axis is near, but not at, the position of the +y antenna when it was read out. The measured fields less the contact potentials are _ Ex = |E| cos (p) and _ _ Ey = |E| cos (s-p) = |E| ( cos(s) cos(p) + sin(s) sin(p) ) _ _ = ( |E| cos(p) ) cos(s) + ( |E| sin(p) ) sin(s) or Ey = Ex' cos(s) + Ey' sin(s) where primes denote the orthogonal coordinate system based on the x antenna, 's' is the angle between the +x and +y antennas when they were read, and 'p' is the angle between the electric field vector and the x' axis. Inverting these equations to get the primed frame components in terms of the measured fields, we have Ex' = Ex and Ey' = Ey / sin(s) - Ex cos(s)/sin(s) = (Ey / sin(s) - Ex cot(s)) + Ey sin(s) - Ey sin(s) = Ey sin(s) + Ey ( ( 1 - sin(s)^2 ) / sin(s) ) - Ex cot(s) = Ey sin(s) + Ey (cos(s)^2/sin(s)) - Ex cot(s) or Ey' = Ey sin(s) - ( Ex - Ey cos(s) ) cot(s) Then, _ _ Ex_spd = Ex' cos(t) - Ey' sin(t) - ( V x B )x_spd and _ _ Ey_spd = Ex' sin(t) - Ey' sin(t) - ( V x B )y_spd where 't' is the angle between the x' axis and the SPD x axis (horizontal, eastward). Note that the ^ symbol is used in this document to denote exponentiation. REDUCTION OF THE SPECTRAL DATA Each of the 20 spectrometer channels is read once every four minor frames. The data are accumulated continuously between readouts, giving a time resolution of 0.512 seconds. The time associated with each set of 20 channels in the output data files is the time at which the first channel was sampled, even though the data collection process takes about 0.5 seconds to sample all 20 channels. The data are converted from counts to electric field (mV/m) for plotting. The conversion to electric field takes into account the fact that the effective lengths of the antennas may be different from the physical lengths for the spectrometers. Three of the channels (3, 9, and 11) have never worked. PASS FILES THAT HAVE BEEN PROCESSED IN THE SMEFI DATA ANALYSIS SYSTEM -LOCAL TIME- ----START----- --STOP-- ----START--- ----STOP---- STA STP START STOP FILE MM DD HH MM SS HH MM SS ALT LAT LON ALT LAT LON SZA SZA HH MM HH MM TA0372 04/20 07 35 07 07 44 48 431 2.9 163 533 2.7 197 96 132 18 25 20 52 TA0372 04/20 10 42 00 10 51 50 436 3.0 119 539 2.6 153 98 135 18 36 21 05 TA0397 04/20 10 43 30 10 51 50 454 3.0 124 539 2.6 153 104 135 18 59 21 05 PS0371 04/20 11 56 15 12 03 21 267 0.4 25 311 1.8 52 27 54 13 36 15 31 TAC387 04/21 09 57 49 10 06 41 410 3.0 127 508 2.5 159 96 129 18 27 20 43 TA0397 04/21 09 57 57 10 06 41 411 3.0 128 508 2.5 159 97 129 18 29 20 43 PS0385 04/21 11 09 37 11 14 48 258 0.2 24 269 1.2 44 17 35 12 47 14 11 TA0413 04/23 06 56 13 07 05 30 362 2.9 170 466 2.0 203 93 128 18 14 20 38 TA0413 04/23 08 29 19 08 38 44 361 2.9 146 467 2.0 181 93 129 18 15 20 41 TA0456 04/26 01 36 06 01 55 38 302 2.6 244 505 -0.9 315 88 160 17 50 22 54 PS0460 04/26 15 34 17 15 38 06 300 2.3 37 333 1.8 52 91 106 18 03 19 04 TA0487 04/28 10 05 07 10 54 48 592 -2.7 269 261 2.4 89 119 73 03 59 16 50 TA0513 04/29 07 07 09 07 10 58 266 1.7 158 284 0.9 172 85 100 17 38 18 40 TA0544 04/30 18 53 22 19 13 01 286 -0.4 9 482 -3.0 81 112 164 19 28 00 37 TA0544 05/01 02 07 44 02 27 32 421 2.8 137 261 1.7 211 16 69 11 16 16 32 TA0544 05/01 05 38 06 05 43 09 259 0.8 182 274 -0.3 201 87 107 17 46 19 07 TA0544 05/01 08 44 10 08 47 43 258 0.7 136 267 -0.1 149 87 101 17 46 18 44 TA0547 05/02 12 39 58 12 47 28 258 -0.2 84 286 -1.7 112 94 124 18 14 20 16 TA0547 05/02 13 15 03 13 22 50 551 -1.9 212 587 -0.5 239 127 99 03 24 05 19 TA0557 05/02 14 27 32 15 17 55 343 -2.7 115 472 2.9 293 151 21 22 09 10 49 TB0558 05/02 18 50 36 18 54 25 258 0.0 345 261 -0.8 0 89 104 17 52 18 54 TA0561 05/03 06 54 14 07 15 56 414 2.9 83 258 -0.6 165 15 94 12 27 18 14 TA0561 05/03 08 47 24 08 51 05 259 -0.3 136 259 -1.0 150 88 103 17 49 18 49 TA0571 05/03 21 24 37 21 44 25 299 -2.7 0 501 -1.9 72 140 139 21 25 02 34 TA0575 05/04 08 24 23 08 33 07 374 -2.9 230 470 -2.0 262 167 146 23 45 02 01 TA0586 05/04 15 42 10 15 50 54 291 0.2 12 258 -1.6 45 69 103 16 28 18 49 PS0577 05/04 15 45 35 15 51 02 271 -0.5 24 258 -1.6 45 82 104 17 23 18 52 TA0600 05/05 12 54 43 13 39 29 572 2.9 301 267 -2.8 105 46 130 08 59 20 40 TA0601 05/06 03 39 10 03 42 59 274 -3.0 267 298 -2.9 282 141 155 21 27 22 29 TA0605 05/06 06 45 14 06 48 47 273 -3.0 221 295 -2.9 234 141 154 21 29 22 26 TA0605 05/06 09 52 31 09 56 21 279 -3.0 180 306 -2.8 194 146 159 21 51 22 52 TA0605 05/06 13 00 13 13 03 55 289 -2.9 140 317 -2.7 154 153 163 22 19 23 18 TA0615 05/06 16 03 09 16 06 42 271 -3.0 82 291 -2.9 95 142 154 21 30 22 28 TA0615 05/06 19 10 26 19 14 08 276 -3.0 41 300 -2.8 55 147 159 21 52 22 52 TA0615 05/06 22 18 00 22 21 50 284 -2.9 0 312 -2.6 15 152 163 22 19 23 20 TA0619 05/07 12 38 18 12 57 57 507 1.1 238 580 3.0 306 110 41 04 29 09 21 PS0620 05/07 15 00 32 15 07 38 318 -1.5 28 270 -2.6 55 76 103 16 54 18 48 TA0629 05/07 15 06 08 15 13 47 278 -2.4 50 257 -3.0 79 97 127 18 24 20 28 TA0629 05/07 21 40 55 21 44 36 340 -1.6 44 378 -0.9 57 162 151 00 35 01 33 TA0629 05/08 02 07 40 02 11 21 260 -2.9 288 273 -2.7 302 139 152 21 20 22 20 TA0629 05/08 05 15 38 05 19 19 265 -2.8 250 283 -2.5 264 147 159 21 53 22 53 TA0643 05/08 08 20 20 08 24 01 261 -2.9 198 275 -2.6 212 142 155 21 33 22 33 TA0643 05/08 11 27 46 11 31 27 265 -2.7 158 282 -2.3 172 148 159 21 58 22 58 TA0646 05/09 05 44 13 06 05 55 346 -2.1 167 270 -2.2 249 75 156 16 52 22 43 TA0660 05/09 21 33 55 21 47 42 261 -2.2 11 358 0.4 63 152 145 22 19 02 00 TA0660 05/10 04 54 10 05 15 44 408 -1.8 163 257 -2.5 244 60 142 15 47 21 32 TA0672 05/10 12 25 20 12 45 08 545 0.6 359 347 -2.7 70 18 84 12 21 17 25 TA0672 05/10 18 55 04 19 02 51 370 -2.6 331 298 -3.0 360 77 106 16 57 19 01 TA0692 05/12 12 20 54 13 10 36 582 0.7 341 267 0.0 163 21 162 11 06 00 01 TA0701 05/12 12 20 54 12 31 00 582 0.7 341 535 -1.2 16 21 31 11 06 13 36 TA0701 05/12 12 33 28 13 10 36 515 -1.6 25 267 0.0 163 39 162 14 13 00 01 TA0702 05/13 02 55 56 02 59 37 276 -1.9 272 261 -1.2 286 135 147 21 03 22 03 TA0702 05/13 04 34 46 04 38 27 257 -0.7 271 259 0.0 285 154 161 22 39 23 38 TA0702 05/13 06 15 39 06 19 20 274 1.0 278 297 1.7 292 157 146 00 48 01 47 TA0716 05/13 07 52 59 07 56 40 301 1.8 272 333 2.4 285 144 131 01 59 02 58 TA0716 05/13 09 31 49 09 35 30 354 2.6 270 393 2.9 284 123 109 03 33 04 31 TA0716 05/13 11 11 04 11 14 45 420 3.0 270 460 2.9 284 99 86 05 12 06 09 TA0716 05/13 12 50 51 12 54 32 492 2.7 272 525 2.4 285 75 62 06 57 07 53 TA0718 05/14 08 22 23 08 52 08 282 -1.2 194 405 3.0 306 138 98 21 18 05 16 TA0731 05/14 18 36 41 18 53 53 582 -1.1 262 473 -3.0 322 20 69 12 03 16 20 TA0731 05/15 01 33 35 01 36 51 257 1.0 333 260 1.6 346 160 157 23 45 00 39 TB0746 05/15 09 17 18 09 21 08 258 1.0 214 258 1.7 228 159 157 23 31 00 34 TC0746 05/15 10 50 16 10 53 57 258 1.0 191 258 1.7 205 159 157 23 32 00 32 TD0746 05/15 12 22 49 12 26 39 259 1.0 166 258 1.7 181 159 158 23 26 00 28 TE0746 05/15 13 53 44 13 59 28 264 0.6 135 257 1.7 157 155 158 22 54 00 27 TF0746 05/15 15 28 53 15 32 34 259 1.1 120 257 1.7 134 159 158 23 30 00 30 TG0746 05/15 17 01 26 17 05 24 259 1.0 96 257 1.8 111 159 158 23 24 00 29 TH0746 05/15 18 34 24 18 38 05 260 1.1 73 257 1.7 87 159 158 23 25 00 25 TA0763 05/16 05 22 00 05 43 51 272 0.7 260 341 2.9 342 153 108 22 40 04 33 TB0763 05/16 11 15 26 11 29 05 442 -2.5 99 304 -0.1 149 90 139 17 52 21 26 TC0763 05/16 19 24 41 19 38 20 257 2.1 75 316 2.9 127 157 115 00 25 04 06 TB0766 05/17 02 48 21 03 10 03 412 -1.7 241 257 2.3 322 104 156 18 52 00 39 TC0766 05/17 11 38 49 11 58 37 577 -2.2 8 494 -2.6 76 22 79 12 08 17 03 TA0776 05/17 13 36 54 13 44 33 439 -1.8 72 357 -0.4 100 98 125 18 26 20 25 TB0776 05/17 14 12 07 14 19 54 297 2.9 205 368 2.1 234 118 90 03 50 05 54 TC0776 05/17 18 15 40 18 23 18 442 -1.8 3 360 -0.3 31 98 125 18 27 20 26 TD0776 05/18 03 52 41 04 14 32 271 2.1 296 343 2.2 19 158 95 23 38 05 31 TB0794 05/18 08 04 08 08 12 52 526 -2.6 127 441 -1.3 158 71 102 16 32 18 45 TC0794 05/18 14 18 35 14 27 11 505 -2.2 44 416 -0.7 75 81 112 17 16 19 27 TD0794 05/18 21 21 13 21 29 57 380 1.1 142 474 -0.7 173 77 47 06 48 09 02 TA0804 05/19 12 53 02 12 56 43 399 0.2 280 439 -0.6 294 67 54 07 33 08 30 TB0804 05/19 14 59 51 15 03 41 555 -2.5 16 529 -2.0 29 65 78 16 03 17 00 TC0804 05/19 16 13 18 16 16 59 538 -2.4 285 561 -2.8 298 25 23 11 14 12 09 TD0804 05/19 17 51 43 17 55 16 569 -2.9 281 578 -3.0 294 25 32 12 37 13 30 TE0804 05/19 19 26 03 19 29 52 573 -3.0 263 580 -3.0 276 28 37 12 59 13 55 TB0805 05/20 00 16 16 00 38 07 563 -2.4 234 363 1.4 311 62 137 15 50 21 23 TA0818 05/20 13 52 03 14 11 51 512 -2.5 315 569 -2.3 24 28 61 10 51 15 46 TC0849 05/21 08 57 23 09 01 04 505 -0.1 144 470 0.6 157 98 111 18 31 19 27 TD0849 05/21 10 30 37 10 34 26 503 0.0 122 466 0.7 135 100 113 18 37 19 35 TE0849 05/21 12 09 02 12 12 44 449 1.1 118 409 1.7 131 119 131 20 01 20 58 TF0849 05/21 13 36 24 13 40 14 504 0.1 75 467 0.8 89 100 113 18 38 19 36 TG0849 05/21 15 10 11 15 14 01 497 0.3 55 459 1.0 69 103 116 18 51 19 49 TH0849 05/21 17 16 44 17 20 33 261 1.9 157 275 1.3 172 120 106 03 45 04 47 TA0850 05/23 03 02 17 03 23 51 357 3.0 300 265 0.6 21 153 106 23 00 04 48 TA0865 05/23 10 53 24 11 07 03 301 2.8 209 260 0.7 261 153 110 00 48 04 29 TB0865 05/23 17 07 50 17 19 35 284 2.5 127 262 0.4 172 146 106 01 36 04 46 TA0864 05/24 03 56 40 04 18 39 297 2.5 320 305 -1.6 43 150 73 01 16 07 12 TB0864 05/24 09 30 10 09 49 58 575 -1.0 92 481 2.5 161 58 125 15 37 20 32 TC0877 05/24 16 44 16 16 52 03 321 -2.2 228 398 -2.9 257 63 38 07 55 09 58 TD0877 05/25 03 39 31 04 01 22 363 -2.9 85 560 -1.2 163 45 48 09 18 14 52 TC0890 05/25 13 54 55 14 03 47 361 2.6 152 286 1.3 185 156 138 00 02 02 23 TD0890 05/25 17 02 12 17 10 56 347 2.4 111 279 1.0 144 155 133 00 27 02 46 TE0890 05/25 20 58 38 21 07 06 526 -1.6 253 571 0.0 283 36 62 13 51 15 57 TA0892 05/26 07 15 24 07 31 38 258 -1.1 328 349 -3.0 30 102 43 05 08 09 30 TA0905 05/26 09 59 53 10 03 43 398 2.7 202 359 2.2 216 155 155 23 29 00 29 TB0905 05/26 11 33 24 11 37 13 393 2.6 182 353 2.1 196 156 154 23 39 00 39 TC0905 05/26 13 07 19 13 11 00 383 2.4 162 345 1.9 176 156 153 23 56 00 54 TD0905 05/26 14 38 22 14 42 03 403 2.6 132 364 2.2 146 155 156 23 28 00 25 TE0905 05/26 16 12 01 16 15 58 396 2.5 112 354 2.0 127 156 154 23 40 00 42 TF0905 05/26 17 45 48 17 49 37 387 2.4 92 348 1.8 106 156 153 23 55 00 55 TB0919 05/27 10 46 29 11 16 15 407 2.3 195 280 -2.8 307 156 67 23 45 07 43 TC0919 05/27 21 37 22 21 51 42 405 2.0 36 278 -0.8 89 157 120 00 00 03 48 TA0921 05/28 02 38 14 02 44 06 256 -2.3 50 270 -2.9 72 91 69 05 58 07 33 TB0921 05/28 05 16 02 05 21 38 470 2.6 260 410 1.8 280 149 157 22 35 00 01 TC0921 05/28 06 56 23 07 01 58 391 1.5 264 334 0.4 284 156 143 00 31 01 59 TD0921 05/28 08 48 35 08 54 19 257 -2.2 313 264 -2.8 335 95 73 05 41 07 14 TA0934 05/28 10 13 46 10 19 22 287 -0.9 261 261 -1.9 282 123 102 03 37 05 07 TB0934 05/28 11 53 42 11 59 18 258 -2.2 265 261 -2.8 286 97 76 05 31 07 03 TC0934 05/28 13 33 29 13 38 57 265 -2.9 268 294 -3.0 289 71 51 07 24 08 53 TD0934 05/28 15 10 57 15 16 41 288 -3.0 262 334 -2.6 284 54 35 08 39 10 11 TA0948 05/29 08 52 27 09 42 01 574 2.9 151 265 -3.0 332 103 65 18 57 07 50 TA0949 05/30 00 58 16 01 20 07 282 -2.2 54 320 -2.1 137 110 32 04 34 10 27 TA0952 05/30 08 15 31 08 28 12 537 2.5 200 418 0.4 245 138 154 21 36 00 49 TB0952 05/30 09 48 20 10 01 02 538 2.4 177 420 0.3 222 138 155 21 36 00 49 TA0963 05/30 15 59 39 16 12 20 541 2.4 84 425 0.2 129 138 155 21 36 00 49 TB0963 05/31 02 51 04 03 14 41 535 2.0 288 308 -2.3 13 143 116 22 01 04 06 TB0963 05/31 03 15 22 03 25 45 302 -2.4 16 257 -3.0 55 114 75 04 17 07 05 TA0967 05/31 10 33 26 10 53 05 549 2.1 166 366 -1.5 236 138 136 21 35 02 35 TA0979 05/31 15 11 38 15 31 18 553 2.1 95 373 -1.5 165 137 137 21 32 02 31 TB0979 06/01 02 34 12 02 55 37 272 -3.0 52 333 -0.3 133 90 22 06 02 11 48 PS0980 06/01 10 41 24 10 49 27 343 0.2 23 428 1.7 53 22 40 12 15 14 21 TA0996 06/02 07 08 46 07 20 30 532 3.0 157 573 2.1 198 84 124 17 36 20 31 TC0996 06/02 10 14 09 10 25 53 529 3.0 110 573 2.1 150 83 123 17 33 20 27 TA1005 06/02 16 26 33 16 37 20 534 3.0 21 572 2.0 59 87 124 17 51 20 31 TB1005 06/02 17 58 17 18 09 53 525 3.0 354 572 2.0 35 84 123 17 35 20 27 TC1005 06/02 19 31 06 19 46 40 524 3.0 331 568 1.3 25 84 136 17 35 21 27 TA1008 06/03 08 03 17 08 53 06 568 2.0 180 256 -1.5 360 117 51 20 01 08 52 TA1025 06/03 18 59 37 19 19 08 569 0.7 41 428 -2.6 109 140 137 21 42 02 36 TB1025 06/04 03 57 45 04 12 21 485 2.9 197 570 1.2 248 76 127 17 04 20 43 TB1021 06/04 03 57 45 04 12 21 485 2.9 197 570 1.2 248 76 127 17 04 20 43 TC1025 06/04 05 30 26 05 45 11 483 2.9 173 570 1.2 225 76 127 17 03 20 43 PS1023 06/04 09 47 45 09 55 32 281 1.0 26 342 2.3 55 22 31 11 32 13 36 PS1024 06/04 11 29 19 11 34 14 351 2.5 36 402 2.9 54 34 50 13 52 15 09 TA1037 06/04 13 14 50 13 17 42 481 2.9 59 507 2.7 69 78 88 17 10 17 53 TC1037 06/04 16 10 24 16 18 43 375 2.8 336 462 2.9 6 43 72 14 35 16 44 TC1037 06/04 16 19 00 16 35 06 465 2.9 7 569 0.9 64 73 129 16 48 20 50 PS1039 06/05 12 13 28 12 20 42 328 2.7 23 401 3.0 50 33 57 13 44 15 38 TB1052 06/06 08 38 06 08 50 47 499 1.8 149 569 -0.5 193 97 140 18 32 21 41 TA1054 06/06 10 10 14 10 22 56 493 1.9 123 567 -0.4 167 95 138 18 22 21 32 TD1067 06/07 09 34 23 09 37 48 562 -0.9 179 569 -1.5 191 138 148 21 31 22 22 TA1067 06/07 11 08 59 11 24 49 566 -1.2 163 517 -3.0 218 144 146 21 59 01 55 TA1082 06/07 22 19 54 22 49 39 473 -2.8 76 256 2.2 186 127 23 03 22 11 14 TB1082 06/08 01 51 13 02 11 33 259 1.6 125 353 2.7 202 34 57 10 09 15 37 TA1080 06/08 06 53 51 07 11 28 390 2.2 147 547 -1.0 209 71 133 16 41 21 09 TA1083 06/08 08 26 33 08 44 18 388 2.2 123 547 -1.0 186 71 134 16 40 21 10 TB1083 06/08 10 42 31 10 58 54 476 -2.7 252 312 0.0 312 125 65 03 30 07 46 TA1097 06/09 09 14 06 09 33 45 406 1.2 125 561 -2.3 195 84 151 17 35 22 32 TB1097 06/09 10 47 36 11 07 16 413 1.1 105 562 -2.4 174 87 153 17 47 22 44 TA1099 06/09 12 19 45 12 39 24 405 1.1 79 560 -2.4 149 85 151 17 37 22 35 PS1098 06/09 13 43 34 13 49 18 316 2.5 23 371 1.7 45 52 73 15 17 16 47 TB1099 06/09 13 53 16 14 12 55 412 1.0 59 562 -2.5 128 87 153 17 49 22 46 TA1109 06/10 05 41 03 05 48 09 561 -2.7 259 564 -3.0 284 155 157 22 58 00 43 TA1109 06/10 05 48 25 06 03 10 564 -3.0 285 470 -1.6 337 157 111 00 48 04 29 TX1109 06/10 06 00 26 06 03 10 495 -2.0 327 470 -1.6 337 121 111 03 47 04 29 TX1109 06/10 06 03 43 06 06 26 464 -1.5 339 437 -1.0 348 109 100 04 37 05 19 TA1109 06/10 06 03 43 06 31 17 464 -1.5 339 255 2.9 81 109 20 04 37 11 55 TA1114 06/10 14 52 33 15 12 21 534 -2.3 103 534 -2.5 172 141 136 21 45 02 40 TA1127 06/11 09 11 11 09 23 53 391 -0.1 135 514 -2.3 180 92 137 18 10 21 24 TB1127 06/11 10 45 39 10 58 21 408 -0.5 118 525 -2.6 163 99 143 18 37 21 50 TC1127 06/11 12 18 12 12 30 46 405 -0.5 94 522 -2.5 139 98 142 18 34 21 46 TA1129 06/11 15 13 13 15 17 35 303 1.5 9 341 0.7 25 60 76 15 49 16 59 PZDPLY 06/11 15 18 49 15 26 19 353 0.4 30 430 -1.1 57 80 108 17 18 19 15 TA1129 06/11 15 18 49 15 26 27 353 0.4 30 432 -1.1 58 80 108 17 18 19 17 PS1128 06/11 15 18 49 15 26 27 353 0.4 30 432 -1.1 58 80 108 17 18 19 17 TA1157 06/13 09 34 54 09 57 58 564 -2.2 241 410 1.9 322 148 70 01 37 07 25 TA1165 06/13 19 22 29 19 49 14 334 2.9 213 301 -0.2 315 41 73 09 35 16 47 TA1170 06/14 05 22 59 05 43 44 464 -2.9 240 561 -1.3 312 137 137 21 21 02 32 TB1170 06/14 06 55 08 07 16 26 458 -2.9 215 561 -1.3 289 135 137 21 13 02 32 TA1229 06/18 06 50 08 07 06 47 469 -1.7 249 560 1.4 308 157 122 23 27 03 37 TB1229 06/18 08 28 25 08 45 13 515 -0.7 246 552 2.3 304 154 102 00 52 05 02 TC1229 06/18 10 09 18 10 25 33 555 0.9 252 510 2.9 308 131 76 02 55 06 57 TA1240 06/19 07 00 25 07 50 07 264 -1.3 118 558 1.9 300 48 119 14 52 03 49 TA1255 06/20 04 33 10 04 59 48 298 -0.8 137 334 -2.5 238 34 129 13 40 20 50 TA1257 06/20 07 53 43 08 05 27 261 -2.9 148 335 -2.4 193 88 131 17 47 20 56 TB1257 06/20 09 26 16 09 38 00 260 -2.9 125 333 -2.4 169 88 130 17 45 20 54 TC1257 06/20 10 58 49 11 10 33 260 -2.9 101 331 -2.4 146 87 130 17 44 20 53 TA1268 06/21 04 35 00 05 16 22 541 2.3 342 305 -1.4 129 125 37 03 23 13 53 TA1272 06/21 12 41 23 13 03 05 483 1.9 307 284 -2.1 27 47 48 09 10 14 50 TA1273 06/21 13 47 03 13 58 47 515 1.9 190 557 3.0 231 137 98 02 26 05 22 TA1282 06/22 04 32 43 04 52 31 272 -2.7 167 310 -1.7 243 60 132 15 42 21 03 TA1284 06/22 06 08 17 06 26 02 261 -2.9 155 316 -1.6 223 70 135 16 29 21 17 TB1284 06/22 07 40 50 07 58 35 262 -2.9 132 314 -1.6 199 70 134 16 28 21 15 TA1300 06/23 08 26 04 08 45 44 258 -3.0 133 343 -0.1 208 81 149 17 18 22 35 TB1300 06/23 09 58 29 10 18 17 259 -3.0 109 341 -0.1 184 81 148 17 15 22 34 TA1301 06/23 12 04 04 12 23 52 470 2.3 209 554 2.5 278 142 77 01 59 06 56 TA1313 06/24 05 35 45 05 49 24 490 0.0 69 357 -2.4 119 35 36 10 12 13 43 TB1313 06/24 07 08 10 07 21 57 493 0.0 45 359 -2.4 95 36 35 10 09 13 42 TA1316 06/24 10 13 33 10 27 12 494 -0.1 360 361 -2.4 49 36 36 10 12 13 42 TB1316 06/24 11 45 58 11 59 45 496 -0.1 336 363 -2.4 25 36 35 10 09 13 41 TA1327 06/25 07 21 03 07 33 45 473 3.0 294 551 2.3 339 130 88 02 56 06 07 TA1330 06/25 09 03 50 09 16 24 542 2.6 307 543 0.7 350 96 55 05 30 08 37 TB1330 06/25 10 36 24 10 49 05 541 2.6 283 543 0.6 327 96 54 05 29 08 38 TC1330 06/25 12 09 13 12 21 55 542 2.5 261 543 0.6 305 96 54 05 33 08 42 TA1343 06/25 13 42 03 13 54 36 542 2.5 239 543 0.5 282 95 53 05 36 08 43 TB1343 06/25 15 14 36 15 24 42 541 2.5 215 551 1.0 250 95 61 05 35 08 06 TA1342 06/26 07 04 26 07 34 04 477 -1.9 67 254 -1.2 177 26 109 11 32 19 21 TA1357 06/26 13 43 03 14 29 44 256 -1.4 79 553 1.2 249 103 75 18 58 07 07 TA1356 06/27 05 47 38 06 03 20 513 2.2 350 548 -0.5 45 102 50 05 07 09 02 TA1359 06/27 08 52 28 09 02 59 509 2.3 303 553 0.5 339 103 68 05 02 07 39 TB1359 06/27 10 31 18 10 43 02 543 1.3 301 543 -1.0 342 82 44 06 36 09 31 TA1372 06/27 13 49 55 14 01 40 536 -1.3 302 448 -2.8 343 39 29 09 56 12 54 TB1372 06/27 16 20 38 16 37 09 365 2.9 134 516 1.9 193 148 97 01 15 05 29 TA1373 06/28 09 00 10 09 44 40 254 0.4 167 550 -0.1 330 119 67 20 10 07 45 TA1375 06/28 11 11 54 11 31 33 530 0.9 288 514 -2.5 357 85 28 06 25 11 18 TB1375 06/28 14 32 01 14 51 40 541 -1.9 294 380 -2.7 4 38 52 10 08 15 08 TA1387 06/29 06 23 05 06 40 42 336 -1.8 153 255 1.6 220 71 133 16 36 21 20 TB1387 06/29 09 17 33 09 37 20 444 -2.9 68 272 0.0 141 37 104 13 49 19 02 TA1388 06/29 11 40 04 12 04 54 403 2.6 232 552 -1.7 319 129 47 03 06 09 21 TA1401 06/30 09 11 43 09 31 31 344 2.8 252 522 -0.5 323 142 77 01 58 07 03 TA1405 06/30 12 17 39 12 37 18 350 2.7 208 525 -0.6 279 140 74 02 11 07 12 TA1416 07/01 09 50 57 10 15 39 312 2.7 235 529 -1.5 324 147 66 01 29 07 51 TB1489 07/01 13 49 18 13 58 51 437 -2.0 18 343 -0.2 53 50 82 15 00 17 29 TA1474 07/05 09 30 56 09 52 47 277 1.0 248 470 -2.7 328 143 68 02 02 07 45 TA1475 07/05 10 59 40 11 21 22 260 1.7 210 433 -2.3 291 152 82 01 01 06 45 TA1489 07/05 14 46 33 15 26 16 548 -2.4 316 271 2.9 99 25 141 11 49 22 02 TA1503 07/07 08 46 15 09 05 55 453 2.1 127 279 2.5 200 78 145 17 15 22 24 TA1504 07/07 10 18 40 10 38 20 455 2.1 104 281 2.5 176 77 145 17 13 22 23 TA1505 07/07 12 21 16 12 40 55 255 0.7 193 383 -2.7 266 152 86 01 11 06 26 TA1523 07/08 16 33 02 17 22 35 430 -2.9 235 345 2.8 51 62 125 08 13 20 46 TB1552 07/08 17 18 05 17 22 43 388 3.0 34 344 2.8 51 110 126 19 35 20 48 TA1531 07/09 06 40 29 06 53 11 532 -0.8 80 533 1.6 124 23 49 12 00 15 09 TB1533 07/09 09 45 44 09 58 26 532 -0.7 35 533 1.7 79 23 50 12 04 15 13 TA1536 07/09 12 50 59 13 03 32 532 -0.6 349 533 1.7 33 23 50 12 07 15 15 TB1536 07/09 14 37 35 14 50 17 527 2.0 15 432 3.0 60 56 99 15 38 18 51 TA1545 07/10 05 55 54 06 25 39 544 1.2 121 343 2.1 227 35 136 13 59 21 33 TA1552 07/10 14 05 42 14 50 28 371 2.3 102 419 -2.3 270 127 53 20 54 08 51 TA1573 07/11 17 40 37 18 08 11 483 2.9 10 260 -1.5 112 93 150 18 21 01 35 TB1573 07/12 03 26 47 03 40 26 254 -2.3 347 302 -2.9 39 139 89 02 34 06 16 TA1578 07/12 07 36 52 07 56 32 459 2.5 176 284 -1.0 248 106 158 19 21 00 29 TB1578 07/12 12 14 24 12 34 03 461 2.5 107 285 -1.1 179 107 158 19 22 00 30 TC1604 07/12 12 28 28 12 30 22 328 0.0 158 312 -0.3 165 153 157 23 01 23 31 TA1581 07/12 17 12 49 17 38 28 280 -1.4 115 341 -2.2 212 157 68 00 51 07 46 TA1590 07/13 06 03 33 06 25 07 382 -1.1 46 539 2.6 123 49 41 09 08 14 36 TB1590 07/13 08 39 35 08 51 19 275 -2.0 251 258 -3.0 296 153 112 01 22 04 33 TB1604 07/13 08 49 49 08 51 27 255 -3.0 290 259 -3.0 296 118 112 04 09 04 35 TA1592 07/13 11 51 47 12 13 29 254 -2.9 232 377 -1.0 314 129 49 03 20 09 09 TA1604 07/14 04 22 59 04 54 48 450 1.2 241 258 -2.9 360 122 108 20 27 04 53 TA1602 07/14 04 26 24 04 29 16 418 0.6 253 390 0.0 264 134 143 21 19 22 04 TA1602 07/14 04 34 44 04 38 08 338 -1.1 284 309 -1.7 297 158 160 23 29 00 24 TA1602 07/14 04 38 49 04 54 48 304 -1.8 299 258 -2.9 360 159 108 00 35 04 53 TA1608 07/14 10 30 20 11 02 00 476 1.6 140 253 -3.0 257 113 118 19 48 04 10 TA1617 07/14 18 37 57 18 51 44 268 -2.8 117 271 -2.4 170 141 90 02 25 06 09 TB1617 07/15 04 16 53 04 38 36 340 -0.4 70 524 2.9 148 51 39 08 55 14 28 TA1622 07/15 08 29 51 08 45 24 275 -2.9 268 273 -2.0 327 142 84 02 20 06 32 TB1622 07/15 12 33 23 12 51 08 537 2.5 76 413 -0.6 138 82 144 17 35 22 04 TA1632 07/15 19 15 32 19 18 00 289 -2.9 100 274 -3.0 109 148 139 01 54 02 34 TA1632 07/15 19 19 46 19 35 20 266 -3.0 116 283 -1.4 175 133 74 03 03 07 15 TB1632 07/16 04 32 38 04 46 17 278 -3.0 330 262 -1.9 22 140 89 02 32 06 13 TA1638 07/16 08 45 27 09 01 58 493 0.5 171 342 -2.4 230 118 161 20 08 00 23 TB1638 07/16 14 52 15 15 11 55 515 0.9 68 346 -2.5 138 107 161 19 22 00 25 TA1647 07/16 21 03 01 21 28 41 513 0.6 339 293 -3.0 72 111 144 19 37 02 15 TA1651 07/17 08 20 56 08 30 29 268 -2.8 289 256 -1.5 326 125 89 03 37 06 12 TB1662 07/17 08 26 40 08 51 47 253 -2.1 311 410 2.5 45 104 19 05 10 11 51 TB1651 07/17 08 39 54 08 56 25 302 0.5 1 454 2.9 62 53 23 08 44 13 03 TB1665 07/17 18 37 08 19 15 38 522 0.2 15 253 -1.6 156 111 97 19 35 05 39 TA1666 07/18 11 11 21 11 24 35 465 3.0 41 538 1.7 88 32 77 13 55 17 14 TB1667 07/18 11 11 53 11 16 32 470 3.0 43 504 2.7 59 34 49 14 03 15 13 TA1667 07/18 14 54 16 15 19 56 414 -2.6 129 253 -0.8 225 160 87 23 29 06 19 TA1677 07/18 19 25 31 19 45 18 472 -1.9 38 294 -2.7 110 143 133 21 56 03 06 TA1685 07/19 04 46 18 04 50 07 423 -2.8 281 386 -3.0 295 160 161 23 30 00 30 TA1685 07/19 04 51 21 05 11 57 374 -3.0 300 253 -0.5 17 159 87 00 49 06 20 TA1691 07/19 09 17 24 09 35 01 480 -2.1 190 319 -2.7 254 143 141 21 55 02 29 TB1691 07/19 13 59 01 14 24 41 447 -2.7 136 255 -0.8 231 156 94 23 01 05 49 TA1695 07/20 01 01 31 01 13 07 311 -2.4 31 254 -0.3 75 133 89 03 04 06 11 TB1695 07/20 05 27 34 05 59 14 418 -3.0 280 267 1.6 39 162 55 00 06 08 34 TA1705 07/20 08 32 08 09 03 48 423 -3.0 233 265 1.6 351 162 56 00 02 08 29 TB1705 07/20 11 48 59 12 02 46 314 -2.2 230 253 0.5 283 131 79 03 10 06 53 TA1708 07/21 02 44 54 02 56 30 536 -1.5 258 477 -2.9 298 116 154 19 55 22 49 TB1708 07/21 05 49 44 06 11 26 537 -1.6 211 387 -2.7 289 116 154 19 55 01 25 TA1725 07/21 08 54 42 09 16 24 537 -1.7 166 388 -2.7 243 116 153 19 57 01 27 TA1750 07/21 14 27 47 14 31 20 298 2.9 302 326 3.0 315 28 19 10 35 11 32 TB1750 07/21 17 07 55 17 16 14 308 -1.2 162 261 0.5 193 121 89 03 56 06 10 TA1776 07/23 10 19 42 10 27 37 523 -3.0 174 475 -2.8 202 144 163 21 56 23 56 TA1753 07/23 10 19 42 10 37 19 523 -3.0 174 387 -1.5 237 144 141 21 56 02 25 TA1776 07/23 10 31 51 10 39 30 439 -2.3 217 366 -1.1 245 158 134 01 01 02 59 TB1753 07/23 13 30 16 13 55 48 492 -2.9 148 277 1.3 242 160 90 23 23 06 02 TB1776 07/23 13 30 16 13 49 40 492 -2.9 148 320 0.0 219 160 114 23 23 04 24 TA1754 07/24 10 16 37 10 20 10 282 2.8 16 307 2.4 29 20 18 11 20 12 17 TA1754 07/24 10 22 54 10 43 47 329 2.0 39 508 -1.9 115 22 95 13 00 18 23 TA1766 07/25 10 50 15 11 00 37 256 2.9 349 310 1.7 28 34 21 10 04 12 52 TA1777 07/25 13 52 37 14 04 13 253 3.0 293 299 1.9 337 43 19 09 25 12 33 TB1777 07/25 16 57 36 17 09 20 252 3.0 248 300 1.8 292 42 19 09 29 12 39 TB1791 07/25 19 46 36 19 48 47 326 1.7 142 309 2.0 150 102 93 05 14 05 49 TA1791 07/26 07 35 29 07 56 31 535 -2.9 210 420 0.1 284 139 135 21 33 02 51 TA1782 07/26 07 37 08 07 40 16 534 -2.8 215 528 -2.6 226 145 154 21 58 22 45 TA1791 07/26 07 57 53 08 05 15 407 0.4 289 337 1.8 316 130 103 03 13 05 08 TA1783 07/26 09 52 25 09 56 47 254 3.0 349 254 2.7 5 47 31 09 06 10 17 TA1783 07/26 09 58 17 10 14 07 257 2.6 11 362 -0.2 70 27 46 10 42 14 55 TB1783 07/26 12 57 07 13 18 41 254 3.0 302 358 -0.2 24 47 45 09 05 14 52 PS1792 07/27 05 46 28 05 54 31 288 2.9 22 254 2.8 53 73 42 07 16 09 26 TA1809 07/27 09 08 22 09 26 07 266 1.6 42 407 -1.9 108 18 69 11 54 16 36 TA1806 07/27 14 47 19 14 56 03 409 1.4 194 328 2.6 227 123 90 03 45 06 02 TA1807 07/28 05 56 21 06 16 08 522 -1.1 272 370 2.4 343 162 103 00 03 05 06 TA1810 07/28 09 01 02 09 22 37 523 -1.1 226 356 2.6 303 162 97 00 03 05 34 TA1821 07/28 15 23 08 15 32 50 443 1.5 178 352 2.8 214 129 94 03 16 05 46 TA1825 07/29 07 12 09 07 26 46 257 2.0 42 289 -0.8 98 35 34 10 01 13 57 TB1825 07/29 10 16 59 10 29 57 257 2.0 357 278 -0.6 46 34 29 10 03 13 33 TA1826 07/29 13 21 41 13 32 12 258 1.9 310 265 -0.1 350 34 22 10 03 12 54 TA1835 07/29 19 05 50 19 15 31 456 2.0 125 367 2.9 160 127 92 03 24 05 54 TA1836 07/30 05 38 25 06 00 07 530 -0.3 275 391 2.9 352 162 98 23 57 05 27 TA1839 07/30 08 37 15 08 49 57 525 -1.3 208 509 1.1 253 151 150 22 30 01 40 TA1850 07/30 18 10 03 18 19 52 475 2.2 136 389 3.0 171 130 94 03 13 05 44 TA1867 08/01 06 26 34 06 39 57 346 -3.0 163 467 -1.7 212 80 128 17 18 20 46 TA1869 08/01 08 03 54 08 18 22 392 -2.7 158 506 -0.6 210 98 148 18 37 22 19 TB1869 08/01 09 42 27 09 57 12 447 -2.0 158 527 0.7 210 121 161 20 14 23 57 TA1870 08/01 11 17 44 11 29 45 470 -1.5 146 527 0.8 188 131 161 20 59 00 00 TA1870 08/01 11 30 26 11 39 19 528 0.9 190 513 2.3 221 161 140 00 11 02 24 TA1880 08/01 17 50 53 17 54 59 503 2.7 137 478 2.9 152 133 118 02 59 04 01 TA1880 08/01 17 55 40 18 05 38 473 3.0 154 385 2.6 190 116 80 04 12 06 45 TA1881 08/02 07 04 58 07 19 35 342 -2.8 159 472 -0.8 212 85 138 17 42 21 29 TA1883 08/02 08 43 32 08 58 16 399 -2.2 159 510 0.5 212 108 156 19 20 23 05 TB1883 08/02 10 22 06 10 36 17 454 -1.1 159 526 1.6 209 131 160 20 57 00 31 TA1884 08/02 12 01 04 12 15 48 500 0.2 159 520 2.6 211 152 141 22 38 02 19 TA1894 08/02 15 18 11 15 39 53 525 2.4 157 381 2.1 234 148 72 01 46 07 17 TA1896 08/03 07 43 47 07 58 32 344 -2.4 158 474 0.2 211 93 145 18 14 22 03 TA1898 08/03 09 22 21 09 37 05 401 -1.4 158 510 1.4 210 116 160 19 53 23 38 TA1899 08/03 12 36 20 12 58 02 478 0.4 145 504 3.0 222 148 122 22 17 03 44 TA1909 08/03 14 26 30 14 41 14 519 2.9 185 425 2.2 237 135 83 02 46 06 31 TA1910 08/04 06 43 46 06 58 14 295 -2.7 156 421 -0.3 209 77 130 17 06 20 54 TA1911 08/04 08 22 28 08 37 04 346 -1.8 157 474 1.0 210 101 151 18 49 22 35 TA1913 08/04 10 01 18 10 15 54 405 -0.5 158 511 2.1 210 125 161 20 31 00 14 TA1914 08/04 13 18 42 13 33 26 501 1.9 157 516 3.0 209 160 126 23 47 03 29 TA1915 08/04 14 26 24 14 33 38 300 -2.4 45 360 -1.3 72 81 108 17 26 19 21 TA1924 08/05 05 44 02 05 58 46 264 -2.8 155 371 -0.5 210 62 117 16 04 19 59 TA1925 08/05 07 22 35 07 37 20 299 -2.1 156 428 0.8 210 86 139 17 45 21 37 TA1926 08/05 09 01 09 09 15 53 350 -0.9 156 477 1.9 209 109 157 19 25 23 13 TA1928 08/05 10 35 53 10 57 44 371 -0.4 142 521 2.9 220 118 150 20 04 01 38 TA1939 08/06 06 23 07 06 37 43 269 -2.2 157 380 0.5 211 73 127 16 50 20 43 TA1942 08/06 08 04 57 08 16 09 333 -0.5 170 434 1.7 211 109 148 19 24 22 19 TB1942 08/06 09 01 53 09 09 40 349 -1.4 13 288 -2.6 42 37 19 09 55 11 59 PS1940 08/06 09 04 20 09 12 07 328 -1.9 22 274 -2.8 52 29 21 10 34 12 38 TB1942 08/06 09 10 04 09 16 37 286 -2.6 44 256 -3.0 69 19 33 12 05 13 51 TC1942 08/06 11 18 48 11 30 57 416 1.4 158 504 2.9 201 142 157 21 50 00 55 TA1943 08/06 13 06 30 13 28 13 516 3.0 190 446 0.5 266 149 74 01 45 07 13 TA1954 08/07 07 01 15 07 16 16 270 -1.5 156 385 1.5 212 81 136 17 24 21 23 TA1955 08/07 08 40 05 08 54 41 311 -0.2 158 440 2.4 211 106 155 19 10 22 59 TA1958 08/07 11 57 12 12 11 49 420 2.2 158 515 2.9 210 150 143 22 28 02 11 TB1958 08/07 13 46 25 14 01 09 520 2.8 195 482 0.6 247 136 84 02 46 06 28 TA1969 08/08 07 32 09 07 54 24 251 -2.0 128 389 2.2 211 62 144 16 04 22 00 TA1970 08/08 09 18 05 09 32 49 313 0.8 157 443 2.9 211 114 160 19 45 23 36 TA1971 08/08 10 56 30 11 11 15 366 1.9 157 488 3.0 210 136 155 21 23 01 10 TA1983 08/08 15 52 52 16 07 37 510 2.7 158 501 0.4 210 141 90 02 25 06 07 TA1984 08/09 08 17 23 08 31 59 274 0.4 156 391 2.7 210 98 150 18 39 22 31 TA1985 08/09 09 55 40 10 10 17 314 1.6 155 443 3.0 209 121 161 20 16 00 05 TA1989 08/09 11 34 14 11 48 58 368 2.5 156 489 2.7 209 143 149 21 56 01 44 TA1997 08/09 13 12 47 13 27 32 425 3.0 156 516 2.0 208 160 129 23 35 03 20 TB1997 08/09 14 55 02 15 16 36 497 2.5 169 477 -1.2 244 144 69 02 09 07 33 TA1998 08/10 07 10 32 07 29 47 253 -1.3 131 326 2.4 204 59 132 15 55 21 05 TA1999 08/10 08 54 50 09 09 35 275 1.2 154 393 3.0 209 105 156 19 11 23 05 TA2000 08/10 10 33 24 10 48 08 317 2.3 155 447 2.8 209 129 159 20 52 00 43 TA2001 08/10 12 07 52 12 29 34 335 2.6 140 505 1.8 218 137 133 21 28 03 03 TA2012 08/10 15 29 13 15 40 33 477 2.4 156 520 0.5 195 148 110 01 51 04 42 TA2013 08/11 07 46 13 08 00 49 257 -0.8 124 281 2.1 179 60 116 16 00 19 57 TA2014 08/11 09 32 33 09 47 10 278 2.0 154 396 2.9 209 115 161 19 50 23 41 TA2015 08/11 11 10 51 11 25 35 319 2.8 154 449 2.4 208 137 155 21 27 01 18 TA2017 08/11 14 37 15 14 58 49 496 1.3 188 474 -2.5 264 132 55 03 08 08 33 TA2018 08/11 16 46 07 16 54 43 347 -2.7 295 281 -1.5 328 19 43 12 27 14 45 PS2018 08/11 17 09 27 17 12 28 257 1.5 24 269 2.0 35 99 110 18 43 19 32 TA2027 08/12 06 53 18 07 08 02 252 0.6 154 298 2.8 210 76 132 17 08 21 06 TA2028 08/12 08 31 43 08 46 20 255 1.8 154 346 3.0 209 100 153 18 49 22 43 TA2029 08/12 10 10 01 10 24 45 281 2.6 154 401 2.6 209 124 162 20 27 00 21 TA2030 08/12 11 44 12 12 06 03 292 2.8 139 474 1.2 219 131 138 21 00 02 41 TA2032 08/12 15 05 25 15 20 10 434 2.0 155 515 -0.7 207 154 104 01 25 05 08 TA2042 08/13 07 30 29 07 45 05 251 1.5 153 299 3.0 209 85 140 17 44 21 40 TA2043 08/13 09 08 38 09 23 22 256 2.4 153 348 2.7 209 108 159 19 21 23 17 TA2044 08/13 10 47 11 11 01 39 283 2.9 154 402 2.0 208 132 159 21 04 00 53 TA2047 08/13 16 05 07 16 17 08 509 -2.6 234 437 -2.8 277 67 26 07 42 10 45 TA2057 08/14 08 07 39 08 22 16 251 2.2 154 304 2.9 209 94 149 18 23 22 19 TA2058 08/14 09 40 29 10 00 25 250 2.3 133 352 2.2 209 97 163 18 34 23 55 TA2059 08/14 11 24 30 11 38 50 288 2.9 155 407 1.2 209 142 153 21 46 01 33 TA2060 08/14 12 58 25 13 20 08 299 2.8 139 477 -0.7 218 148 122 22 14 03 53 TA2062 08/14 16 22 06 16 34 23 459 -0.3 164 514 -2.3 207 130 86 03 17 06 23 TA2071 08/15 07 06 41 07 21 25 263 2.0 155 272 2.9 212 81 138 17 28 21 27 TA2072 08/15 08 41 33 08 59 35 255 2.4 143 310 2.4 211 91 158 18 12 23 04 TA2073 08/15 10 23 07 10 37 52 260 3.0 156 361 1.4 211 128 162 20 45 00 41 TA2085 08/15 11 57 27 12 15 28 269 2.9 141 408 0.3 208 136 147 21 20 02 06 TA2074 08/15 12 03 27 12 16 50 305 2.4 163 420 0.0 213 157 142 22 57 02 27 TB2085 08/15 15 18 32 15 33 08 395 0.5 157 499 -2.2 209 151 99 01 47 05 30 PS2076 08/15 16 21 36 16 27 36 258 2.4 25 251 2.9 48 88 112 18 00 19 38 TA2086 08/16 07 43 11 07 57 55 262 2.6 155 274 2.6 211 89 145 18 01 22 01 TA2103 08/16 10 58 31 11 13 24 257 2.9 151 354 0.7 207 132 160 21 01 00 59 TX2100 08/16 15 53 48 16 15 22 387 -0.2 152 513 -3.0 229 148 70 02 02 07 31 TA2101 08/17 06 41 15 06 54 46 293 2.4 154 251 2.8 205 73 126 16 56 20 35 TB2101 08/17 08 19 24 08 34 09 262 2.9 154 274 2.0 210 97 153 18 33 22 33 TA2102 08/17 09 57 41 10 12 26 250 2.9 154 313 0.8 210 121 166 20 13 00 11 TA2114 08/17 11 32 01 11 53 35 252 2.7 139 389 -1.0 220 129 141 20 49 02 33 TB2114 08/17 14 52 49 15 07 26 343 -0.1 156 465 -2.5 209 158 106 01 15 05 01 TA2115 08/18 07 08 20 07 23 04 363 1.7 119 262 3.0 175 46 103 15 05 19 01 TA2116 08/18 08 56 35 09 11 11 257 2.9 157 280 1.0 212 109 162 19 23 23 20 TA2117 08/18 10 34 27 10 49 12 251 2.5 156 320 -0.2 211 131 162 20 57 00 54 TA2128 08/18 13 51 10 14 05 46 301 0.2 157 424 -2.4 211 166 119 00 18 04 08 TB2128 08/18 15 33 58 15 55 48 389 -1.9 173 511 -2.5 251 133 53 03 07 08 40 TA2129 08/19 06 16 22 06 30 58 324 2.8 157 251 2.4 212 70 127 16 44 20 40 TA2130 08/19 07 54 23 08 08 59 283 3.0 156 256 1.4 212 93 150 18 19 22 16 TA2131 08/19 09 32 23 09 47 08 257 2.7 156 281 0.2 212 116 167 19 54 23 53 TA2132 08/19 11 06 43 11 28 17 252 2.4 141 347 -1.7 222 125 145 20 30 02 17 TA2143 08/19 14 27 07 14 41 43 302 -0.7 156 426 -2.8 210 163 111 00 52 04 41 TA2144 08/20 06 52 02 07 06 31 324 3.0 156 251 1.8 210 78 134 17 15 21 08 TA2145 08/20 08 30 11 08 44 48 282 2.8 155 256 0.5 211 101 157 18 52 22 48 TA2146 08/20 10 08 12 10 22 57 256 2.1 155 282 -0.7 211 125 167 20 27 00 26 TA2158 08/20 13 33 15 13 47 51 323 -1.9 188 447 -3.0 241 148 93 02 03 05 51 TB2158 08/20 15 09 45 15 31 19 359 -2.5 181 505 -1.9 258 132 51 03 13 08 44 TA2159 08/21 07 27 27 07 42 03 324 2.9 154 251 1.0 209 85 142 17 43 21 38 TA2160 08/21 09 05 36 09 20 12 282 2.4 154 256 -0.3 209 108 164 19 20 23 16 TA2161 08/21 10 43 45 10 58 29 256 1.4 154 282 -1.6 210 132 163 20 58 00 56 TA2172 08/21 12 17 56 12 38 49 252 1.0 139 342 -2.7 217 140 133 21 32 03 08 TB2172 08/21 15 38 28 15 53 05 304 -2.2 154 427 -2.9 208 150 95 01 55 05 45 TA2173 08/22 06 25 47 06 39 59 365 3.0 157 265 1.3 210 73 128 16 54 20 41 TA2174 08/22 08 03 40 08 18 16 317 2.5 156 250 0.0 211 95 152 18 26 22 21 TA2175 08/22 09 42 14 09 56 58 275 1.6 157 260 -1.4 213 121 170 20 10 00 09 TA2245 08/22 11 16 17 11 37 51 266 1.2 141 308 -2.7 223 129 142 20 41 02 30 TA2187 08/22 11 16 17 11 29 56 266 1.2 141 262 -1.6 193 129 169 20 41 00 23 TB2245 08/22 14 38 27 14 52 14 283 -2.3 164 393 -2.9 215 156 103 01 33 05 12 TB2349 08/22 14 38 35 14 46 30 284 -2.3 164 343 -3.0 194 155 125 01 35 03 41 TB2187 08/22 14 41 27 14 53 12 303 -2.7 175 401 -2.8 218 144 99 02 21 05 26 TA2188 08/23 07 02 25 07 17 10 352 2.6 161 257 0.0 216 86 144 17 47 21 43 TA2189 08/23 08 41 07 08 55 43 300 1.6 163 251 -1.3 218 112 167 19 32 23 28 TA2190 08/23 10 19 24 10 34 01 265 0.4 163 267 -2.4 219 136 161 21 12 01 08 TA2201 08/23 11 57 17 12 11 45 251 -0.9 162 299 -2.9 217 158 140 22 45 02 40 TB2201 08/23 15 21 30 15 43 12 341 -3.0 192 497 0.2 270 118 36 04 09 09 43 TA2202 08/24 06 00 29 06 15 06 393 2.7 165 279 0.2 219 74 131 16 59 20 51 TA2203 08/24 07 38 55 07 53 31 339 1.8 165 254 -1.1 220 99 156 18 39 22 33 TA2204 08/24 09 17 20 09 31 57 292 0.6 166 252 -2.2 221 124 171 20 20 00 17 TA2205 08/24 10 51 24 11 12 58 280 0.1 150 288 -3.0 232 132 140 20 52 02 41 TB2215 08/24 11 06 25 11 08 52 257 -2.6 207 266 -2.8 217 164 155 00 55 01 35 TA2215 08/24 14 13 18 14 28 02 267 -2.8 172 373 -2.3 227 154 97 01 40 05 35 TA2216 08/25 04 58 17 05 12 46 434 2.7 168 313 0.5 221 62 118 16 11 19 57 TA2217 08/25 06 36 43 06 51 19 382 1.9 168 272 -0.9 223 87 144 17 50 21 42 TA2218 08/25 08 15 08 08 29 45 328 0.8 169 252 -2.1 224 111 167 19 30 23 25 TA2219 08/25 10 12 08 10 26 52 269 -3.0 240 377 -1.7 295 147 89 02 12 06 07 TA2231 08/25 13 23 23 13 45 05 311 -2.7 221 480 1.1 300 119 35 04 07 09 44 TA2232 08/26 07 06 23 07 20 59 424 2.1 149 303 -0.7 202 75 131 17 00 20 50 TA2233 08/26 08 44 57 08 51 30 370 0.9 149 315 -0.4 173 100 125 18 42 20 25 TA2234 08/26 10 23 06 10 37 50 320 -0.4 149 250 -2.7 205 124 172 20 18 00 15 TA2235 08/26 11 57 17 12 18 51 304 -0.8 134 268 -2.9 216 132 140 20 52 02 41 TB2252 08/26 12 12 18 12 14 29 251 -2.9 191 254 -3.0 199 165 157 00 55 01 30 TA2252 08/26 15 20 33 15 35 18 257 -3.0 161 352 -1.3 216 149 91 02 02 05 58 TA2246 08/27 06 03 38 06 18 15 461 2.2 151 343 -0.5 204 62 118 16 09 19 55 TA2247 08/27 07 42 04 07 56 48 415 1.1 151 294 -1.7 206 86 144 17 47 21 39 TA2248 08/27 09 20 37 09 35 22 359 -0.2 152 260 -2.7 207 112 168 19 29 23 24 TA2249 08/27 11 16 47 11 31 32 253 -2.9 220 336 -1.0 276 150 92 01 57 05 54 TA2260 08/27 14 29 00 14 50 34 286 -2.1 205 457 1.9 284 118 34 04 08 09 46 TA2261 08/28 06 39 27 06 54 03 451 1.3 155 330 -1.6 209 75 131 17 00 20 48 TA2262 08/28 08 17 52 08 32 29 402 0.0 155 285 -2.5 209 99 156 18 39 22 30 TA2263 08/28 09 56 18 10 11 02 347 -1.3 156 255 -3.0 211 124 172 20 19 00 16 TA2264 08/28 11 29 57 11 44 41 335 -1.6 139 252 -3.0 194 131 168 20 45 00 42 TA2274 08/28 15 01 16 15 08 46 273 -1.8 196 324 -0.3 224 119 89 04 05 06 05 TA2275 08/29 05 31 39 05 46 24 498 2.2 142 413 -0.5 194 45 101 14 58 18 43 TA2276 08/29 07 10 13 07 24 49 472 1.1 142 359 -1.7 195 69 125 16 38 20 23 TA2277 08/29 08 48 38 09 03 23 429 -0.2 142 307 -2.6 196 94 151 18 16 22 07 TA2278 08/29 10 22 41 10 44 24 414 -0.6 126 258 -3.0 207 102 170 18 47 00 32 TA2283 08/29 13 42 57 13 57 42 285 -2.9 140 253 -2.0 196 165 134 23 03 03 02 TA2290 08/30 06 06 06 06 20 42 495 1.4 142 409 -1.4 194 54 109 15 34 19 17 TA2291 08/30 07 44 39 07 59 08 468 0.2 142 356 -2.4 195 79 134 17 14 20 57 TA2292 08/30 09 23 05 09 37 50 424 -1.1 142 303 -2.9 197 103 160 18 52 22 44 TA2293 08/30 11 01 06 11 15 42 375 -2.1 141 269 -2.9 196 126 173 20 25 00 18 TA2349 08/30 14 33 47 14 55 29 259 -0.9 203 414 2.8 284 118 33 04 06 09 51 TA2304 08/31 05 01 51 05 16 27 500 1.8 143 453 -1.0 194 38 93 14 32 18 13 TA2305 08/31 06 40 25 06 55 01 493 0.5 143 405 -2.1 195 63 119 16 11 19 54 TA2306 08/31 08 19 06 08 33 51 463 -0.8 144 348 -2.9 197 88 145 17 53 21 41 TA2307 08/31 09 57 07 10 11 44 422 -1.9 142 302 -3.0 196 111 168 19 25 23 15 TA2310 08/31 13 17 39 13 32 16 291 -2.9 157 251 -0.8 213 174 124 23 46 03 43 TA2319 09/01 05 35 45 05 50 21 499 0.9 143 452 -1.8 194 47 102 15 05 18 47 TA2320 09/01 07 14 35 07 29 11 491 -0.4 144 400 -2.7 196 73 128 16 49 20 32 TA2321 09/01 08 45 14 08 49 03 495 -0.2 116 482 -0.9 130 68 82 16 29 17 27 TA2322 09/01 10 30 45 10 45 21 421 -2.5 141 302 -2.7 195 119 174 19 55 23 45 TA2332 09/01 14 05 29 14 27 03 250 0.0 210 381 3.0 291 118 32 04 07 09 52 TA2334 09/02 06 09 31 06 24 07 498 0.0 143 448 -2.5 195 56 111 15 41 19 22 TA2335 09/02 07 47 56 08 02 33 489 -1.3 143 399 -3.0 195 80 136 17 18 21 02 TA2336 09/02 09 26 38 09 41 23 458 -2.3 144 342 -2.8 197 106 162 19 01 22 50 TA2337 09/02 11 00 42 11 22 07 446 -2.6 128 280 -1.7 207 114 161 19 33 01 10 TA2345 09/02 14 28 19 14 43 04 269 -1.3 170 260 1.7 226 152 93 01 47 05 45 TA2348 09/03 05 04 27 05 18 55 484 0.4 143 482 -2.2 194 40 94 14 35 18 13 TA2350 09/03 08 21 34 08 36 19 487 -2.1 143 394 -2.9 196 89 145 17 55 21 41 TA2351 09/03 09 59 35 10 14 11 459 -2.8 142 345 -2.5 195 112 168 19 27 23 14 TA2362 09/03 13 36 22 13 57 56 249 1.0 218 351 2.9 299 118 31 04 07 09 54 TB2380 09/03 13 51 23 13 52 45 300 2.9 275 309 3.0 280 57 52 08 10 08 32 TA2363 09/04 05 37 48 05 52 25 484 -0.5 143 479 -2.7 195 48 103 15 10 18 51 TA2364 09/04 07 16 14 07 30 50 496 -1.7 143 443 -3.0 195 73 128 16 48 20 30 TA2380 09/04 08 54 31 09 09 15 486 -2.6 142 393 -2.7 195 97 153 18 24 22 10 TA2366 09/04 10 28 59 10 50 33 477 -2.8 128 317 -1.3 207 106 169 19 02 00 37 TA2379 09/04 13 59 29 14 14 13 284 -0.2 180 252 2.5 236 149 90 01 58 05 57 TC2560 09/11 00 09 41 00 14 12 471 -2.7 269 485 -2.2 285 92 109 18 05 19 13 TA2468 09/11 09 48 54 10 08 42 399 2.2 231 261 2.4 305 160 82 01 13 06 28 TA2468 09/11 10 09 23 10 28 38 258 2.4 308 294 -1.3 21 79 6 06 39 11 50 TA2470 09/11 12 51 09 13 30 44 412 2.0 180 283 -1.1 329 165 9 00 51 11 25 TA2481 09/12 06 41 07 06 51 29 425 -2.9 150 479 -1.7 187 72 111 16 42 19 21 TA2481 09/12 06 52 02 07 03 46 480 -1.6 189 475 0.7 231 113 157 19 29 22 27 TA2483 09/12 09 44 43 10 07 31 423 -2.9 104 475 0.8 185 72 158 16 42 22 28 TA2485 09/12 12 58 01 13 20 41 474 -1.7 93 424 2.4 173 108 164 19 09 00 54 TA2523 09/14 07 39 46 08 02 34 398 -2.4 138 480 1.7 219 74 161 16 52 22 40 TA2544 09/16 10 22 10 10 51 56 458 1.0 150 387 2.2 256 126 120 20 20 03 55 TA2560 09/17 11 05 22 11 50 08 477 3.0 196 248 -3.0 1 174 5 00 10 11 56 TA2559 09/17 11 50 33 12 36 57 248 -3.0 3 477 3.0 173 5 174 12 02 00 07 TA2573 09/18 11 18 14 11 45 08 435 1.8 136 433 1.9 232 127 130 20 21 03 11 TA2573 09/18 11 45 24 11 47 52 432 1.8 233 415 1.4 242 129 120 03 16 03 53 TA2586 09/19 09 06 33 09 26 21 455 2.0 261 317 -1.7 333 141 64 02 30 07 38 TA2587 09/19 12 21 29 12 41 09 383 -0.2 257 255 -3.0 330 97 19 05 27 10 40 TA2589 09/19 15 38 45 15 58 24 283 -2.6 262 262 -1.9 337 42 38 09 06 14 25 TA2598 09/19 22 08 54 22 28 33 277 -1.2 259 419 2.4 331 53 130 15 24 20 33 TA2601 09/20 09 36 13 09 55 53 453 1.2 263 314 -2.4 334 131 55 03 07 08 13 TA2602 09/20 13 00 59 13 20 39 303 -2.6 295 251 -1.9 10 48 31 08 40 13 58 TA2604 09/20 16 07 11 16 26 51 286 -2.9 259 259 -1.3 334 37 43 09 25 14 43 TA2613 09/20 22 37 20 22 41 26 273 -0.5 257 298 0.4 272 58 74 15 43 16 49 TA2613 09/20 22 41 42 22 57 00 300 0.5 273 415 2.8 329 75 135 16 53 20 53 TA2628 09/22 00 41 45 01 07 24 296 1.2 249 464 2.5 342 81 177 17 16 23 56 TA2633 09/22 10 59 35 11 19 07 274 -2.8 358 267 0.6 72 16 64 10 51 16 07 PS2630 09/22 11 07 06 11 15 09 247 -1.8 26 252 -0.3 57 15 48 12 53 15 03 TA2657 09/22 21 56 20 22 12 51 249 -0.1 255 340 2.7 317 46 112 14 56 19 21 TA2658 09/24 08 13 25 08 33 04 466 0.4 262 409 -2.8 332 153 78 01 41 06 41 TA2661 09/24 11 29 35 11 49 14 448 -2.0 262 315 -2.6 334 103 27 04 58 10 04 TA2671 09/24 18 00 16 18 19 48 288 -1.9 259 256 1.9 333 9 70 11 17 16 33 TA2674 09/25 07 03 09 07 32 55 443 0.8 263 380 -3.0 9 169 55 00 34 08 09 TA2686 09/25 18 31 02 18 38 57 269 -0.6 272 245 1.1 302 12 44 12 38 14 46 TA2686 09/25 18 42 05 19 20 43 245 1.7 314 457 -0.4 97 57 151 15 37 01 47 TA2700 09/26 09 10 42 09 26 24 464 -1.7 271 417 -3.0 327 129 69 03 15 07 15 TB2700 09/26 12 25 47 12 41 29 439 -3.0 268 333 -1.8 325 83 22 06 17 10 21 TB2701 09/26 18 56 45 19 12 35 277 0.0 267 249 2.7 327 13 78 12 44 17 01 TB2701 09/26 22 11 49 22 27 31 244 2.3 266 305 2.8 326 62 125 15 57 20 11 TB2707 09/27 09 42 25 09 52 31 460 -2.8 289 421 -2.9 325 103 65 04 56 07 31 TC2707 09/27 12 52 43 13 08 25 438 -3.0 269 332 -1.1 326 76 15 06 46 10 51 TA2716 09/27 19 23 41 19 39 31 276 0.9 268 249 3.0 328 21 86 13 15 17 32 TB2716 09/27 22 38 45 22 54 27 244 2.8 268 306 2.3 327 70 133 16 29 20 43 TA2731 09/29 00 37 18 01 03 06 243 3.0 248 382 -0.5 345 80 176 17 08 00 01 TB2744 09/29 23 25 49 23 50 31 250 2.9 249 329 0.1 342 63 162 16 00 22 38 TA2745 09/30 01 03 25 01 29 21 243 2.9 249 382 -1.4 346 88 168 17 39 00 33 TA2746 09/30 07 07 46 07 54 35 244 3.0 151 458 -2.9 324 81 95 17 12 05 30 TA2762 09/30 15 45 57 16 10 40 417 -1.0 259 259 2.9 351 42 56 09 03 15 33 TA2773 10/01 12 06 13 12 26 01 246 2.8 77 307 -0.6 152 82 161 17 16 22 35 TB2773 10/01 16 40 20 16 47 09 247 2.8 8 246 1.9 34 81 108 17 11 19 02 TA2774 10/01 19 44 37 20 04 08 245 2.6 327 308 -0.9 41 86 164 17 33 22 48 TB2774 10/01 22 44 24 23 04 12 252 2.9 269 288 -0.4 345 73 153 16 42 22 02 TA2788 10/02 08 52 33 09 42 48 442 -0.8 351 275 -0.2 179 53 147 08 17 21 36 TA2792 10/03 06 30 46 06 45 23 347 2.7 97 258 2.6 151 18 76 12 57 16 50 TB2792 10/03 08 08 06 08 22 43 306 3.0 96 243 1.7 151 41 99 14 30 18 26 TC2792 10/03 09 42 34 10 02 14 287 2.9 84 250 0.0 159 53 132 15 19 20 37 TA2808 10/04 08 11 26 08 31 05 437 1.1 19 316 3.0 91 35 42 09 28 14 35 TB2808 10/04 11 58 59 12 18 47 252 -1.0 140 371 -3.0 214 143 137 21 20 02 36 TA2818 10/04 14 11 57 14 26 33 449 0.2 270 390 2.6 322 55 7 08 10 11 55 TB2818 10/04 17 59 39 18 14 15 242 -0.1 30 297 -2.6 85 123 173 19 59 23 55 TB2820 10/05 07 18 47 07 33 31 351 3.0 96 260 1.4 151 30 88 13 43 17 38 TA2824 10/05 08 53 23 09 12 54 329 2.9 85 242 -0.3 159 42 120 14 34 19 48 TB2824 10/05 10 33 43 10 48 28 273 1.8 96 244 -1.2 152 77 137 16 57 20 55 TC2824 10/05 12 11 19 12 26 04 249 0.6 97 262 -2.2 153 102 161 18 37 22 36 TA2848 10/06 11 58 40 12 18 20 443 2.0 324 342 2.6 35 34 43 09 33 14 38 TB2848 10/06 14 14 55 14 34 42 243 -1.9 107 343 -2.6 182 143 136 21 24 02 42 TA2849 10/06 14 56 16 15 11 01 446 1.2 260 408 2.9 313 53 9 08 15 12 01 PS2840 10/06 17 09 14 17 16 28 250 -0.4 30 242 -1.8 57 110 139 19 07 21 05 TB2849 10/06 17 13 03 17 27 32 242 -1.2 44 277 -3.0 99 125 171 20 09 00 04 TA2851 10/07 09 41 23 09 53 00 323 1.8 91 257 -0.5 134 60 106 15 44 18 50 TB2851 10/07 10 32 10 10 43 55 397 -0.7 281 442 1.6 324 97 53 05 17 08 18 TB2852 10/07 12 03 38 12 15 14 397 -0.6 259 442 1.6 301 97 53 05 19 08 18 PS2852 10/07 12 42 49 12 46 38 333 2.0 41 307 1.3 55 55 70 15 24 16 25 TA2863 10/07 12 44 02 12 51 08 325 1.8 45 280 0.4 72 60 87 15 44 17 37 TB2863 10/07 13 34 58 13 46 42 396 -0.6 236 442 1.6 278 97 52 05 19 08 20 TA2866 10/08 09 28 53 10 08 36 421 1.1 324 295 0.2 108 71 83 07 03 17 19 TA2878 10/08 11 45 23 12 25 07 266 -1.0 106 386 -0.1 255 105 96 18 47 05 24 TA2880 10/09 08 18 29 08 58 04 412 1.5 342 307 -0.2 125 71 83 07 05 17 18 TA2882 10/09 11 21 00 11 41 04 410 1.6 296 426 2.8 8 71 11 07 04 12 12 TA2893 10/10 00 12 50 00 28 32 301 -0.9 264 240 -3.0 323 90 152 17 48 22 02 TB2893 10/10 01 50 51 02 06 33 264 -2.1 266 247 -2.8 326 117 170 19 36 23 51 TC2893 10/10 03 28 19 03 43 52 244 -2.8 267 270 -2.1 326 141 153 21 16 01 29 TA2896 10/10 06 42 42 06 58 24 253 -2.6 267 343 0.2 325 166 107 00 29 04 40 TB2896 10/10 11 32 39 11 48 21 343 0.4 259 428 2.8 316 105 45 04 47 08 51 TA2906 10/10 23 11 10 23 26 52 260 -2.7 317 249 -2.4 17 127 165 20 18 00 33 TB2906 10/11 00 48 14 01 04 04 243 -3.0 316 273 -1.4 16 150 143 21 52 02 09 TC2906 10/11 02 25 34 02 41 16 241 -2.7 316 307 -0.1 16 169 120 23 31 03 44 TA2908 10/11 05 26 10 05 41 44 239 -2.9 264 293 -0.5 323 165 128 23 00 03 12 TB2908 10/11 07 02 57 07 18 47 247 -2.3 262 330 0.7 321 166 106 00 30 04 44 TA2922 10/11 23 19 49 23 35 31 337 -1.4 270 250 -3.0 329 83 145 17 19 21 30 TB2922 10/12 00 56 45 01 12 35 300 -2.4 268 239 -2.7 328 105 166 18 49 23 05 TC2922 10/12 02 34 54 02 50 36 262 -3.0 272 246 -1.7 331 133 160 20 41 00 56 TA2923 10/12 05 48 03 06 03 45 239 -2.4 267 294 0.5 326 170 119 23 35 03 48 TB2923 10/12 07 24 59 07 40 41 247 -1.5 266 330 1.6 325 158 97 01 07 05 19 TA2936 10/12 23 51 16 23 59 27 272 -3.0 310 242 -2.6 341 130 161 20 31 22 44 TA2936 10/13 00 00 33 00 06 50 240 -2.5 345 241 -1.5 9 165 163 23 01 00 43 TB2936 10/13 01 18 05 01 33 47 298 -2.8 271 238 -2.2 330 113 170 19 21 23 34 TC2936 10/13 02 56 39 03 12 29 259 -3.0 276 247 -0.8 336 142 151 21 19 01 36 TA2938 10/13 06 09 48 06 25 22 238 -1.7 271 295 1.4 330 168 110 00 14 04 25 TB2938 10/13 07 49 03 08 04 45 256 -0.1 279 348 2.6 338 140 78 02 24 06 35 TA2951 10/14 00 02 14 00 17 56 333 -2.7 275 247 -2.4 334 99 159 18 22 22 34 TB2951 10/14 01 38 04 01 53 46 302 -3.0 270 237 -1.7 329 117 170 19 36 23 50 TC2951 10/14 03 16 29 03 31 55 262 -2.8 274 242 -0.3 333 145 150 21 33 01 43 TA2953 10/14 06 30 44 06 46 18 237 -0.9 274 295 2.1 333 162 102 00 46 04 57 TB2953 10/14 08 07 32 08 23 13 246 0.3 272 332 2.8 331 141 80 02 17 06 28 TA2965 10/14 22 44 12 22 59 54 378 -2.3 273 278 -2.7 331 77 138 16 55 21 04 TA2967 10/15 05 13 31 05 29 05 243 -1.4 274 261 1.7 333 169 121 23 30 03 42 TB2967 10/15 06 50 18 07 06 09 236 -0.2 273 291 2.6 333 159 97 01 01 05 17 TA2981 10/15 23 03 54 23 19 19 379 -2.7 274 282 -2.4 331 83 143 17 18 21 22 TB2980 10/16 00 41 30 00 54 20 339 -3.0 275 262 -1.8 323 108 157 19 00 22 25 TB2980 10/16 00 54 37 00 57 12 261 -1.7 324 251 -1.3 334 158 167 22 29 23 11 TC2980 10/16 02 18 26 02 34 08 302 -2.7 273 238 -0.1 333 130 163 20 32 00 45 TA2982 10/16 05 32 33 05 48 06 246 -0.8 273 256 2.2 332 170 118 23 42 03 55 TB2982 10/16 07 10 17 07 25 59 236 0.6 275 289 2.9 335 153 91 01 30 05 44 TA3011 10/17 09 04 19 09 20 58 239 2.0 267 313 2.8 330 133 67 02 52 07 20 TB3011 10/17 10 40 25 10 57 05 251 2.7 263 344 2.3 326 113 48 04 13 08 40 TC3011 10/17 12 20 13 12 36 03 293 3.0 273 389 0.9 332 79 19 06 33 10 43 TA3012 10/17 15 34 44 15 48 40 369 1.5 274 423 -1.2 324 31 26 09 48 13 24 TB3012 10/17 17 12 45 17 27 30 403 0.2 276 420 -2.4 329 10 55 11 36 15 23 TA3016 10/18 09 24 42 09 41 22 241 2.7 274 319 2.2 337 121 55 03 41 08 09 TB3016 10/18 11 00 40 11 17 20 255 3.0 270 349 1.4 332 101 36 05 00 09 26 TC3016 10/18 12 39 22 12 55 04 292 2.7 276 387 0.1 334 71 13 07 03 11 10 TA3025 10/18 15 54 59 16 09 44 374 0.5 280 422 -2.2 334 20 40 10 36 14 24 TB3025 10/18 19 12 07 19 26 51 421 -2.3 289 384 -2.9 342 41 97 14 28 18 16 TA3028 10/19 00 01 06 00 15 51 379 -2.8 278 290 -0.5 333 101 158 18 33 22 26 TB3028 10/19 04 49 57 05 07 42 286 -0.2 268 237 2.8 335 161 124 22 41 03 28 TA3029 10/19 06 28 39 06 45 10 251 1.4 274 252 3.0 337 163 98 00 44 05 12 TB3029 10/19 08 05 35 08 22 30 238 2.4 274 280 2.6 338 141 73 02 19 06 54 TC3029 10/19 09 34 18 09 50 00 242 2.1 242 262 2.8 302 150 87 01 42 05 57 TA3041 10/20 01 51 27 02 06 03 374 -2.2 261 285 0.6 315 112 166 19 16 23 06 TC3041 10/20 05 06 07 05 20 51 298 0.2 262 238 2.7 318 160 138 22 35 02 32 TA3043 10/20 08 17 46 08 35 15 251 2.1 253 253 2.7 320 157 88 01 09 05 53 TA3060 10/21 09 40 57 09 58 34 390 -1.9 138 290 1.5 203 106 170 18 52 23 29 TB3060 10/21 11 18 42 11 36 26 356 -0.7 140 256 2.5 206 132 155 20 37 01 20 TA3072 10/21 14 36 30 14 51 06 265 2.3 153 237 2.8 209 162 105 00 49 04 46 TB3072 10/21 17 51 59 17 59 05 236 2.9 159 250 2.1 186 109 81 04 29 06 24 TB3072 10/21 18 00 27 18 06 52 255 1.9 191 286 0.6 216 75 50 06 46 08 29 TC3072 10/21 21 14 17 21 29 02 317 -0.6 191 396 -2.8 245 29 32 09 56 13 47 TA3075 10/22 10 11 59 10 28 39 313 1.5 191 239 3.0 254 164 125 22 55 03 23 TB3075 10/22 11 49 52 12 06 39 274 2.6 194 237 2.4 258 162 97 00 45 05 18 TC3075 10/22 13 28 17 13 43 59 244 3.0 200 253 1.3 259 134 71 02 46 07 01 TD3146 10/22 13 39 21 13 43 59 240 2.1 242 253 1.3 259 90 71 05 46 07 01 TA3086 10/22 16 45 16 16 59 53 250 1.4 212 326 -1.5 266 74 18 06 51 10 45 TB3086 10/22 21 39 27 21 54 04 363 -2.6 223 412 -2.7 276 15 68 12 31 16 18 TA3088 10/23 09 03 30 09 21 15 279 2.8 237 235 1.9 305 161 91 00 52 05 40 TA3099 10/23 13 58 47 14 13 23 244 0.9 255 317 -1.9 310 72 16 06 57 10 51 TB3099 10/23 17 15 21 17 29 58 316 -2.0 265 394 -2.9 318 16 45 10 53 14 42 TC3099 10/23 20 31 31 20 46 16 392 -2.9 272 406 -1.2 325 44 100 14 38 18 25 TA3104 10/23 23 46 03 00 00 06 410 -1.5 272 360 1.2 323 92 146 17 54 21 32 TB3101 10/24 01 22 25 01 37 10 398 -0.4 269 324 2.3 323 113 167 19 18 23 08 TC3101 10/24 03 00 10 03 14 54 370 1.0 271 284 2.9 326 139 160 21 04 00 57 TA3102 10/24 06 12 14 06 29 51 312 2.6 263 236 2.3 330 171 109 23 45 04 29 TB3102 10/24 07 49 09 08 06 46 278 3.0 263 235 1.2 330 154 85 01 21 06 06 TA3114 10/25 00 00 26 00 15 02 408 -1.1 268 366 1.7 321 92 147 17 52 21 38 TB3114 10/25 01 37 29 01 44 02 399 0.2 268 376 1.4 291 115 140 19 27 21 09 TB3114 10/25 01 46 30 01 52 14 364 1.9 300 331 2.6 321 149 168 21 47 23 17 TC3114 10/25 03 17 57 03 30 47 361 2.0 280 287 3.0 327 151 155 21 56 01 19 TA3128 10/25 06 27 18 06 44 54 319 2.8 262 238 1.8 328 170 106 23 55 04 38 TB3128 10/25 08 04 13 08 21 58 285 3.0 262 234 0.6 329 152 82 01 31 06 19 TA3146 10/25 22 38 59 22 51 08 399 -1.5 271 399 0.9 314 74 121 16 41 19 48 TA3146 10/25 22 51 24 22 53 43 398 0.9 315 392 1.4 324 122 130 19 52 20 28 TB3146 10/26 00 17 24 00 32 00 406 0.0 275 360 2.5 328 103 158 18 37 22 24 TC3146 10/26 01 54 19 02 09 04 397 1.2 274 325 3.0 328 126 169 20 11 00 02 TA3144 10/26 05 05 34 05 23 11 357 2.6 264 258 2.2 329 161 125 22 39 03 20 TB3144 10/26 06 42 30 07 00 15 322 3.0 263 237 1.1 330 168 101 00 15 05 00 TA3147 10/27 10 10 19 10 28 04 262 1.6 262 237 -1.9 329 121 50 03 38 08 25 TA3149 10/27 13 20 04 13 41 46 236 -0.1 247 286 -3.0 330 89 10 05 49 11 40 TA3157 10/27 16 41 00 16 54 15 272 -3.0 275 347 -2.1 325 14 43 11 01 14 32 TB3157 10/27 19 53 29 20 08 14 332 -2.4 270 396 0.2 324 34 90 13 54 17 45 TA3160 10/27 21 32 03 21 46 39 372 -1.2 276 401 1.7 329 64 119 15 56 19 42 TA3162 10/28 10 26 45 10 29 12 255 0.5 272 246 -0.1 281 107 97 04 33 05 13 TA3162 10/28 10 29 45 10 46 16 244 -0.2 283 247 -2.8 346 95 30 05 21 09 50 TA3163 10/28 11 59 34 12 23 19 248 0.0 257 273 -3.0 347 99 11 05 06 11 31 TA3165 10/28 13 41 24 13 56 01 233 -2.1 276 282 -2.9 331 55 11 08 05 12 01 TB3165 10/28 15 18 28 15 33 13 245 -2.8 277 318 -2.3 333 31 32 09 47 13 43 TA3175 10/29 01 01 38 01 16 23 399 2.2 283 358 2.9 337 122 169 19 53 23 43 TB3175 10/29 02 38 42 02 53 26 391 2.8 283 324 2.3 337 146 153 21 31 01 22 TA3176 10/29 05 50 38 06 08 23 350 2.7 276 254 -0.2 342 167 102 00 13 04 55 TB3176 10/29 07 27 25 07 45 10 316 2.0 275 236 -1.5 342 147 78 01 48 06 33 TA3177 10/29 09 05 10 09 22 38 278 0.7 279 231 -2.5 345 120 51 03 39 08 22 TA3203 10/29 23 38 50 23 53 18 392 1.9 287 383 3.0 340 106 159 18 48 22 32 TA9999 10/30 01 17 23 01 31 43 397 2.8 293 350 2.4 345 136 163 20 49 00 32 TB9999 10/30 02 53 54 03 08 39 386 3.0 291 316 1.4 345 156 142 22 19 02 10 TB3189 10/30 06 04 53 06 22 46 346 2.2 281 252 -1.2 347 160 92 00 47 05 32 TA3192 10/30 07 43 02 08 00 47 305 0.9 285 233 -2.4 352 133 64 02 44 07 30 TA3205 10/31 05 34 21 05 49 06 289 -1.2 124 367 1.7 178 34 90 13 49 17 42 TA3206 10/31 07 11 24 07 26 09 324 0.1 125 387 2.6 179 58 114 15 30 19 21 TA3207 10/31 08 44 31 09 06 13 336 0.7 111 392 3.0 190 67 149 16 08 21 46 TA3208 10/31 12 02 43 12 17 28 393 2.9 127 364 2.0 181 131 165 20 30 00 19 TA3220 11/01 07 55 08 08 14 56 373 1.9 241 273 -1.8 314 167 97 00 00 05 12 TA3225 11/01 11 36 42 11 51 26 234 -2.5 347 292 0.1 43 19 46 10 44 14 41 PS3222 11/01 11 47 29 11 51 35 271 -0.7 28 293 0.1 43 32 47 13 38 14 43 TA3237 11/02 04 24 58 04 39 34 265 -0.4 139 343 2.3 194 33 88 13 41 17 34 TA3235 11/02 05 51 39 06 06 23 248 -1.1 102 322 1.8 157 19 74 12 38 16 33 TC3237 11/02 07 28 34 07 43 11 275 0.2 103 352 2.6 157 41 97 14 19 18 10 TA3236 11/02 09 01 24 09 23 06 287 0.7 88 383 3.0 168 50 132 14 54 20 36 TA3238 11/02 12 19 28 12 34 13 369 3.0 105 383 2.0 159 114 165 19 19 23 09 TA3249 11/03 05 50 36 05 56 04 230 -2.5 57 230 -1.7 78 33 16 09 39 11 08 TA3253 11/03 11 47 51 12 02 36 241 -2.9 307 237 -0.8 3 53 16 08 15 12 15 TA3254 11/03 14 03 57 14 08 03 372 2.9 95 381 2.5 110 129 144 20 24 21 28 TB3254 11/03 14 08 11 14 18 34 381 2.5 111 376 0.8 148 145 164 21 30 00 11 TA3267 11/04 06 17 08 06 36 56 256 1.1 120 354 2.9 194 42 117 14 18 19 32 TB3267 11/04 07 12 25 07 32 05 305 -2.6 324 229 -2.0 38 103 28 04 47 10 04 TA3273 11/04 10 48 48 11 08 35 255 1.2 52 352 2.9 126 42 117 14 17 19 32 TB3273 11/04 11 44 13 12 03 44 306 -2.6 256 229 -1.9 330 102 28 04 49 10 04 TA3281 11/05 07 28 27 08 08 10 275 -3.0 349 303 2.9 140 74 87 06 45 17 27 TA3303 11/06 06 26 39 07 06 23 226 0.6 88 374 0.5 237 19 160 12 20 22 53 TA3304 11/06 14 44 14 15 23 49 375 -0.7 144 228 -0.4 291 161 21 00 18 10 47 TA3319 11/07 06 56 52 07 26 38 300 2.8 172 364 -2.3 282 101 139 18 26 02 12 TA3318 11/07 18 13 25 19 01 12 311 -2.8 174 299 2.6 355 88 104 05 49 18 40 TA3335 11/08 07 03 45 07 33 30 289 2.5 171 364 -2.6 280 101 138 18 27 02 14 TA3339 11/08 18 20 01 19 07 48 317 -2.6 173 288 2.3 354 87 105 05 51 18 42 TA3348 11/09 07 09 15 07 39 01 275 2.3 167 363 -2.8 277 99 140 18 18 02 06 TA3349 11/09 18 26 13 18 37 08 321 -2.3 173 270 -0.4 214 86 45 05 58 08 52 TA3363 11/10 07 14 46 07 44 32 266 1.9 166 360 -2.9 276 99 139 18 19 02 09 TA3364 11/10 18 32 00 19 19 38 323 -1.8 175 272 1.3 355 83 108 06 10 18 58 TB3395 11/10 19 11 43 19 14 35 241 2.5 325 251 2.2 336 78 89 16 50 17 37 TA3379 11/11 05 49 13 06 18 51 258 1.6 188 356 -3.0 297 99 139 18 19 02 08 TA3378 11/11 17 00 10 17 47 57 345 -2.4 174 242 1.9 354 105 86 04 36 17 24 TA3395 11/12 05 56 22 06 36 06 261 0.5 198 336 -1.6 345 110 92 19 08 05 35 TA3396 11/12 06 37 11 07 11 35 332 -1.4 349 225 2.8 118 87 54 05 52 15 05 TA3407 11/13 05 08 39 05 47 49 341 -1.3 5 222 2.2 152 93 65 05 28 15 57 TA3403 11/13 05 49 03 06 23 52 223 2.0 157 344 -3.0 287 70 146 16 17 01 33 TA3411 11/13 23 52 16 00 13 58 223 1.5 251 296 -2.5 333 75 152 16 37 22 26 TA3412 11/14 04 25 17 04 34 26 226 0.9 193 252 -1.0 228 84 119 17 19 19 47 TA3420 11/14 08 55 02 09 16 36 224 1.0 123 300 -2.8 205 82 156 17 08 22 55 TA3419 11/14 13 25 44 13 31 19 223 0.8 57 235 -0.4 78 83 104 17 13 18 44 TA3437 11/15 06 04 59 06 49 37 238 -1.2 200 326 1.1 6 113 70 19 25 07 12 PS3428 11/15 07 00 00 07 02 03 287 2.6 44 278 2.8 52 34 28 09 57 10 29 TA3438 11/15 07 00 41 07 42 27 284 2.7 47 265 -2.4 205 32 140 10 08 21 24 TA3444 11/16 07 24 45 07 46 28 218 0.6 134 268 -2.9 217 71 149 16 22 22 14 TA3445 11/16 08 02 18 08 24 00 327 -1.9 276 318 2.1 356 135 57 02 26 08 07 TA3453 11/16 11 54 30 12 16 12 219 0.6 66 265 -2.9 148 70 148 16 17 22 09 TA3449 11/16 12 32 11 12 53 53 324 -1.9 208 319 2.2 288 136 58 02 23 08 04 TA3457 11/17 04 25 50 04 47 33 218 0.0 183 263 -3.0 266 74 151 16 38 22 30 TA3467 11/17 10 25 49 10 47 23 218 -0.2 93 260 -3.0 175 74 151 16 39 22 29 TA3466 11/17 13 25 36 13 47 27 219 -0.2 48 259 -3.0 131 74 151 16 36 22 31 TA3477 11/18 08 11 24 08 43 45 327 0.9 313 249 1.6 73 100 35 05 03 13 37 TA3488 11/19 05 37 28 05 49 04 270 2.1 101 230 -0.2 145 23 58 12 20 15 27 TA3491 11/19 08 48 51 09 00 36 230 -0.2 100 214 -2.4 145 58 102 15 28 18 39 TA3492 11/19 12 00 23 12 12 07 214 -2.4 100 234 -2.9 145 102 144 18 40 21 51 TA3495 11/19 15 11 30 15 23 14 232 -2.9 99 274 -1.5 143 143 153 21 46 00 55 TA3496 11/19 18 19 36 18 39 24 260 -2.0 86 320 1.7 159 158 97 00 02 05 17 TA3497 11/19 21 04 39 21 26 21 218 -2.9 345 285 -0.7 67 121 142 20 05 01 55 TA3518 11/21 04 17 34 04 39 17 225 -1.9 185 229 -2.4 268 73 151 16 36 22 29 TA3517 11/21 04 48 42 05 10 32 260 -0.7 303 317 2.9 25 152 76 01 01 06 48 TA3520 11/21 07 16 57 07 38 47 226 -1.9 139 227 -2.3 223 72 151 16 33 22 29 TA3519 11/21 07 51 04 08 12 47 269 -0.1 269 317 3.0 350 144 66 01 47 07 32 TA3535 11/22 08 21 42 09 06 29 297 1.6 41 227 -1.6 210 24 156 11 04 23 08 TA3537 11/22 10 35 53 11 20 40 226 -1.6 187 298 1.6 354 156 25 23 03 10 57 TA3550 11/23 07 06 24 07 28 06 235 -2.5 139 215 -1.7 222 69 148 16 21 22 14 TA3549 11/23 07 40 15 08 02 30 246 0.7 268 305 2.9 351 148 68 01 31 07 26 TA3552 11/23 10 05 30 10 27 12 236 -2.5 93 215 -1.7 176 69 148 16 18 22 12 TA3551 11/23 10 39 29 11 01 12 245 0.8 223 304 2.9 304 148 70 01 31 07 17 TA3565 11/24 08 30 40 08 52 23 235 -2.8 122 211 -1.1 205 73 152 16 39 22 32 TA3566 11/24 09 04 32 09 26 06 240 1.4 251 299 2.7 332 144 66 01 49 07 35 PS3591 11/26 03 01 55 03 09 17 260 3.0 28 279 2.6 56 104 76 04 53 06 52 TA3596 11/26 06 45 31 07 07 13 239 -3.0 151 205 0.0 234 75 154 16 48 22 41 TA3611 11/27 08 05 17 08 27 00 240 -2.9 132 202 0.6 215 77 155 16 55 22 47 TA3610 11/27 08 39 09 08 43 55 218 2.6 262 230 3.0 280 142 125 02 05 03 23 TA3610 11/27 08 44 12 09 00 51 231 3.0 281 276 1.5 344 124 61 03 27 07 55 TA3613 11/27 11 03 59 11 25 41 240 -2.9 88 202 0.7 171 77 155 16 55 22 48 TA3612 11/27 11 37 42 11 59 24 217 2.7 217 274 1.5 299 142 61 02 04 07 54 TA3625 11/28 07 29 34 07 51 58 279 -0.8 44 247 -2.9 128 29 69 10 26 16 24 TA3625 11/28 07 52 14 08 14 13 246 -2.9 129 200 0.9 213 71 151 16 28 22 25 TA3627 11/28 09 42 48 10 05 28 200 0.7 188 231 2.9 275 149 111 22 14 04 24 TA3626 11/28 10 06 50 10 29 30 234 2.8 280 279 -1.2 5 105 25 04 46 10 49 TA3640 11/29 07 27 18 07 45 03 269 -2.8 87 231 -1.9 154 28 92 13 15 18 00 TA3643 11/29 12 13 17 12 22 26 229 -1.7 90 208 0.1 125 95 130 18 14 20 42 TA3651 11/29 16 57 47 17 15 40 196 1.8 89 213 2.8 157 156 120 22 52 03 44 TA3652 11/29 21 42 24 22 00 01 210 2.8 88 253 0.0 155 122 55 03 36 08 20 TA3655 11/30 04 27 26 04 49 08 244 -2.3 183 197 1.8 266 73 153 16 39 22 31 TA3654 11/30 05 00 28 05 22 10 197 3.0 309 242 0.5 32 148 67 01 37 07 29 TA3658 11/30 10 23 35 10 45 17 243 -2.3 94 197 1.9 177 73 153 16 39 22 31 TA3657 11/30 10 57 18 11 04 24 197 3.0 223 207 2.7 250 145 120 01 48 03 44 TA3657 11/30 11 04 41 11 18 11 208 2.6 251 239 0.4 302 119 67 03 48 07 27 TA3665 11/30 16 19 44 16 41 19 242 -2.2 6 198 2.0 88 74 153 16 41 22 31 TA3661 11/30 16 53 36 17 15 18 196 3.0 135 239 0.0 217 145 63 01 52 07 44 TA3668 11/30 22 15 29 22 37 20 240 -2.1 276 196 2.1 359 73 153 16 38 22 33 TA3666 11/30 22 44 42 23 11 03 192 2.9 27 236 -0.1 128 158 64 00 33 07 42 TA3682 12/01 14 12 34 14 57 04 252 -2.5 313 190 2.5 121 22 158 11 03 23 02 TA3683 12/01 15 02 32 15 46 37 186 3.0 142 254 -2.9 310 158 21 00 31 12 26 TA3684 12/02 05 45 20 05 59 57 190 2.7 260 190 2.4 316 158 129 23 05 03 04 TA3687 12/02 09 50 14 10 04 59 228 -1.0 112 198 1.9 168 82 138 17 18 21 17 TB3690 12/02 15 23 44 15 31 55 238 -2.9 303 241 -2.8 334 19 34 11 34 13 46 TA3697 12/02 19 07 37 19 22 21 185 3.0 75 190 1.6 132 160 114 00 08 04 09 TB3697 12/03 00 38 14 00 52 59 221 -0.5 255 195 2.3 311 87 142 17 38 21 37 TA3704 12/03 05 28 28 05 43 12 181 3.0 282 186 1.3 339 160 112 00 16 04 18 TA3703 12/03 09 56 26 10 10 46 178 2.9 224 186 0.9 280 155 104 00 54 04 49 TA3706 12/03 13 56 00 14 00 39 215 0.0 59 207 1.0 76 90 108 17 50 19 05 TA3708 12/03 19 34 58 19 49 42 225 -2.5 274 213 0.1 330 35 90 13 49 17 48 TA3712 12/03 23 29 54 23 44 38 184 0.0 92 208 -2.6 148 93 38 05 37 09 37 TA3714 12/04 05 04 54 05 19 38 174 2.9 292 176 0.6 349 158 107 00 34 04 36 TA3718 12/04 09 03 39 09 18 24 207 0.1 126 186 2.6 182 85 140 17 27 21 27 TA3722 12/04 15 44 59 15 59 44 178 -1.2 223 198 -3.0 280 78 26 06 38 10 39 TA3721 12/04 15 45 08 15 59 44 179 -1.2 224 198 -3.0 280 78 26 06 41 10 39 TA3728 12/04 23 00 44 23 15 20 169 -0.3 94 186 -2.7 150 98 42 05 16 09 15 TA3729 12/05 04 20 10 04 33 57 182 2.4 239 167 2.8 292 125 160 20 17 00 03 TA3733 12/05 04 23 51 04 35 19 178 2.8 253 166 2.7 298 138 159 21 17 00 26 TA3729 12/05 04 35 35 04 40 39 166 2.7 299 163 2.0 318 158 144 00 30 01 53 TA3729 12/05 04 40 55 04 51 17 163 2.0 319 165 0.0 359 143 104 01 58 04 48 TA3729 12/05 04 56 20 04 58 40 169 -1.1 19 171 -1.5 28 85 76 06 11 06 49 PS3730 12/05 06 32 27 06 38 19 177 -2.5 28 184 -2.9 50 54 33 08 23 09 59 TB3731 12/05 07 04 07 07 18 02 192 0.2 149 178 2.6 202 78 131 17 00 20 47 PS3732 12/05 09 39 36 09 44 47 187 -2.9 27 190 -2.5 47 20 25 11 26 12 51 TB3733 12/05 10 46 05 11 00 25 164 -0.8 282 178 -2.9 337 94 39 05 34 09 29 PS3734 12/05 12 46 29 12 53 10 190 -1.6 25 189 -0.2 50 43 68 14 25 16 14 PS3735 12/05 14 20 08 14 26 00 188 -0.4 25 185 0.8 47 64 86 15 58 17 34 PS3736 12/05 15 53 38 15 59 14 184 0.8 24 180 1.9 45 85 107 17 29 19 01 PS3737 12/05 17 27 17 17 32 12 179 1.9 24 174 2.6 43 108 126 19 03 20 24 PS3738 12/05 19 01 04 19 05 10 172 2.7 25 168 3.0 41 130 144 20 40 21 47 TA3740 12/05 20 30 04 20 59 42 170 2.8 7 158 -0.6 122 134 100 20 59 05 06 PS3739 12/05 20 33 37 20 38 57 167 3.0 21 162 2.9 42 146 159 21 57 23 25 PS3741 12/05 23 40 47 23 44 28 157 2.2 22 156 1.6 36 152 141 01 07 02 08 CROSS REFERENCE OF ARCHIVE FILE NAMES WITH DBA AND PASS FILE NAMES Note that .AC files of the same name will have corresponding DBA and PASS files 8804201157.DC;1 8804201157A_P_1 PS0371R01-1_P_1.NSS;1 8804211110.DC;1 8804211110A_P_1 PS0385R01-1_P_1.NSS;1 8804261535.DC;1 8804261535B_P_1 PS0460R02-1_P_1.NSS;1 8805041545.DC;1 8805041545B_P_1 PS0577R01-1_P_1.NSS;1 8805071502.DC;1 8805071502A_P_1 PS0620R02-1_P_1.NSS;1 8805071502.DC;2 8805071502B_P_1 PS0620R02-1_P_1.NSS;1 8806011043.DC;1 8806011043B_P_1 PS0980R01-1_P_1.NSS;1 8806040948.DC;1 8806040948B_P_1 PS1023R01-1_P_1.NSS;1 8806041130.DC;1 8806041130B_P_1 PS1024R02-1_P_1.NSS;1 8806051213.DC;1 8806051213B_P_1 PS1039R01-1_P_1.NSS;1 8806091344.DC;1 8806091344B_P_1 PS1098R01-1_P_1.NSS;1 8806111518.DC;1 8806111518D_P_1 PS1128R02-1_P_1.NSS;1 8807270546.DC;1 8807270546B_P_1 PS1792R01-1_P_1.NSS;1 8808060904.DC;1 8808060904B_P_1 PS1940R01-1_P_1.NSS;1 8808111709.DC;1 8808111709B_P_1 PS2018R01-1_P_1.NSS;1 8808151622.DC;1 8808151622B_P_1 PS2076R01-1_P_1.NSS;1 8809221107.DC;1 8809221107B_P_1 PS2630R01-1_P_1.NSS;1 8810061712.DC;1 8810061712B_P_1 PS2840R01-1_P_1.NSS;1 8810071244.DC;1 8810071244C_P_1 PS2852R04-1_P_1.NSS;1 8811011147.DC;1 8811011147B_P_1 PS3222R01-1_P_1.NSS;1 8811150700.DC;1 8811150700C_P_1 PS3428R02-1_P_1.NSS;1 8811260302.DC;1 8811260302B_P_1 PS3591R01-1_P_1.NSS;1 8812050635.DC;1 8812050635B_P_1 PS3730R01-1_P_1.NSS;1 8812050941.DC;1 8812050941B_P_1 PS3732R01-1_P_1.NSS;1 8812051249.DC;1 8812051249B_P_1 PS3734R01-1_P_1.NSS;1 8812051422.DC;1 8812051422B_P_1 PS3735R01-1_P_1.NSS;1 8812051553.DC;1 8812051553B_P_1 PS3736R01-1_P_1.NSS;1 8812051727.DC;1 8812051727B_P_1 PS3737R01-1_P_1.NSS;1 8812051902.DC;1 8812051902B_P_1 PS3738R02-1_P_1.NSS;1 8812052033.DC;1 8812052033B_P_1 PS3739R01-1_P_1.NSS;1 8812052340.DC;1 8812052340B_P_1 PS3741R02-1_P_1.NSS;1 8806111518.DC;2 8806111518E_P_1 PZDPLYR02-1_P_1.NSS;1 8804200735.DC;1 8804200735C_P_1 TA0372R01-1_P_1.NSS;1 8804201042.DC;1 8804201042D_P_1 TA0372R01-2_P_1.NSS;1 8804210958.DC;1 8804210958C_P_1 TA0397R01-1_P_1.NSS;1 8804201043.DC;1 8804201043D_P_1 TA0397R01-3_P_1.NSS;1 8804230656.DC;1 8804230656D_P_1 TA0413R01-1_P_1.NSS;1 8804230829.DC;1 8804230829D_P_1 TA0413R01-2_P_1.NSS;1 8804260136.DC;1 8804260136D_P_1 TA0456R01-1_P_1.NSS;1 8804281005.DC;1 8804281005D_P_1 TA0487R01-1_P_1.NSS;1 8804290707.DC;1 8804290707C_P_1 TA0513R01-1_P_1.NSS;1 8804301853.DC;1 8804301853C_P_1 TA0544R01-1_P_1.NSS;1 8805010207.DC;1 8805010207C_P_1 TA0544R01-2_P_1.NSS;1 8805010538.DC;1 8805010538C_P_1 TA0544R01-3_P_1.NSS;1 8805010844.DC;1 8805010844D_P_1 TA0544R01-4_P_1.NSS;1 8805021239.DC;1 8805021239C_P_1 TA0547R01-1_P_1.NSS;1 8805021315.DC;1 8805021315D_P_1 TA0547R01-2_P_1.NSS;1 8805021427.DC;1 8805021427D_P_1 TA0557R01-1_P_1.NSS;1 8805030654.DC;1 8805030654C_P_1 TA0561R01-1_P_1.NSS;1 8805030847.DC;1 8805030847D_P_1 TA0561R01-2_P_1.NSS;1 8805032124.DC;1 8805032124D_P_1 TA0571R01-1_P_1.NSS;1 8805040824.DC;1 8805040824D_P_1 TA0575R01-1_P_1.NSS;1 8805041542.DC;1 8805041542C_P_1 TA0586R01-1_P_1.NSS;1 8805051254.DC;1 8805051254D_P_1 TA0600R01-1_P_1.NSS;1 8805060339.DC;1 8805060339D_P_1 TA0601R01-1_P_1.NSS;1 8805060645.DC;1 8805060645C_P_1 TA0605R01-1_P_1.NSS;1 8805060952.DC;1 8805060952C_P_1 TA0605R01-2_P_1.NSS;1 8805061300.DC;1 8805061300D_P_1 TA0605R01-3_P_1.NSS;1 8805061603.DC;1 8805061603C_P_1 TA0615R01-1_P_1.NSS;1 8805061910.DC;1 8805061910C_P_1 TA0615R01-2_P_1.NSS;1 8805062218.DC;1 8805062218D_P_1 TA0615R01-3_P_1.NSS;1 8805071238.DC;1 8805071238D_P_1 TA0619R01-1_P_1.NSS;1 8805071506.DC;1 8805071506C_P_1 TA0629R01-1_P_1.NSS;1 8805072140.DC;1 8805072140C_P_1 TA0629R01-2_P_1.NSS;1 8805080207.DC;1 8805080207C_P_1 TA0629R01-3_P_1.NSS;1 8805080515.DC;1 8805080515D_P_1 TA0629R01-4_P_1.NSS;1 8805080820.DC;1 8805080820C_P_1 TA0643R01-1_P_1.NSS;1 8805081127.DC;1 8805081127C_P_1 TA0643R01-2_P_1.NSS;1 8805090544.DC;1 8805090544C_P_1 TA0646R01-1_P_1.NSS;1 8805092133.DC;1 8805092133C_P_1 TA0660R01-2_P_1.NSS;1 8805100454.DC;1 8805100454D_P_1 TA0660R01-3_P_1.NSS;1 8805101225.DC;1 8805101225C_P_1 TA0672R01-3_P_1.NSS;1 8805101855.DC;1 8805101855D_P_1 TA0672R01-4_P_1.NSS;1 8805121220.DC;1 8805121220M_P_1 TA0692R01-1_P_1.NSS;1 8805121220.DC;2 8805121220N_P_1 TA0701R01-1_P_1.NSS;1 8805121234.DC;1 8805121234C_P_1 TA0701R03-1_P_1.NSS;1 8805130255.DC;1 8805130255C_P_1 TA0702R01-3_P_1.NSS;1 8805130434.DC;1 8805130434C_P_1 TA0702R01-4_P_1.NSS;1 8805130615.DC;1 8805130615D_P_1 TA0702R01-5_P_1.NSS;1 8805130752.DC;1 8805130752C_P_1 TA0716R01-1_P_1.NSS;1 8805130931.DC;1 8805130931C_P_1 TA0716R01-2_P_1.NSS;1 8805131111.DC;1 8805131111C_P_1 TA0716R01-3_P_1.NSS;1 8805131250.DC;1 8805131250D_P_1 TA0716R01-4_P_1.NSS;1 8805140822.DC;1 8805140822D_P_1 TA0718R01-3_P_1.NSS;1 8805141836.DC;1 8805141836D_P_1 TA0731R01-1_P_1.NSS;1 8805150133.DC;1 8805150133D_P_1 TA0731R01-2_P_1.NSS;1 8805160522.DC;1 8805160522D_P_1 TA0763R01-1_P_1.NSS;1 8805171336.DC;1 8805171336D_P_1 TA0776R01-1_P_1.NSS;1 8805191253.DC;1 8805191253D_P_1 TA0804R01-1_P_1.NSS;1 8805201352.DC;1 8805201352B_P_1 TA0818R01-1_P_1.NSS;1 8805230302.DC;1 8805230302B_P_1 TA0850R01-1_P_1.NSS;1 8805240356.DC;1 8805240356B_P_1 TA0864R01-1_P_1.NSS;1 8805231053.DC;1 8805231053B_P_1 TA0865R01-1_P_1.NSS;1 8805260715.DC;1 8805260715B_P_1 TA0892R01-1_P_1.NSS;1 8805260959.DC;1 8805260959B_P_1 TA0905R01-1_P_1.NSS;1 8805280238.DC;1 8805280238B_P_1 TA0921R01-1_P_1.NSS;1 8805281013.DC;1 8805281013B_P_1 TA0934R01-1_P_1.NSS;1 8805290852.DC;1 8805290852A_P_1 TA0948R01-1_P_1.NSS;1 8805300058.DC;1 8805300058B_P_1 TA0949R01-1_P_1.NSS;1 8805300815.DC;1 8805300815B_P_1 TA0952R01-1_P_1.NSS;1 8805301559.DC;1 8805301559A_P_1 TA0963R01-1_P_1.NSS;1 8805311033.DC;1 8805311033B_P_1 TA0967R01-1_P_1.NSS;1 8805311511.DC;1 8805311511B_P_1 TA0979R01-1_P_1.NSS;1 8806020708.DC;1 8806020708B_P_1 TA0996R01-1_P_1.NSS;1 8806021626.DC;1 8806021626B_P_1 TA1005R02-1_P_1.NSS;1 8806030803.DC;1 8806030803B_P_1 TA1008R01-1_P_1.NSS;1 8806031859.DC;1 8806031859B_P_1 TA1025R01-1_P_1.NSS;1 8806041314.DC;1 8806041314B_P_1 TA1037R01-1_P_1.NSS;1 8806061010.DC;1 8806061010B_P_1 TA1054R01-1_P_1.NSS;1 8806071108.DC;1 8806071108B_P_1 TA1067R01-1_P_1.NSS;1 8806080653.DC;1 8806080653B_P_1 TA1080R01-1_P_1.NSS;1 8806072219.DC;1 8806072219B_P_1 TA1082R01-1_P_1.NSS;1 8806080826.DC;1 8806080826B_P_1 TA1083R01-1_P_1.NSS;1 8806090914.DC;1 8806090914B_P_1 TA1097R01-1_P_1.NSS;1 8806091219.DC;1 8806091219B_P_1 TA1099R01-1_P_1.NSS;1 8806100541.DC;1 8806100541B_P_1 TA1109R01-1_P_1.NSS;1 8806100548.DC;1 8806100548B_P_1 TA1109R02-1_P_1.NSS;1 8806100604.DC;2 8806100604D_P_1 TA1109R04-1_P_1.NSS;1 8806101452.DC;1 8806101452B_P_1 TA1114R01-1_P_1.NSS;1 8806110911.DC;1 8806110911B_P_1 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8810190805B_P_1 TB3029R01-1_P_1.NSS;1 8810211118.DC;1 8810211118B_P_1 TB3060R01-1_P_1.NSS;1 8810211752.DC;1 8810211752B_P_1 TB3072R01-1_P_1.NSS;1 8810211801.DC;1 8810211801B_P_1 TB3072R03-1_P_1.NSS;1 8810221150.DC;1 8810221150B_P_1 TB3075R01-1_P_1.NSS;1 8810222140.DC;1 8810222140B_P_1 TB3086R01-1_P_1.NSS;1 8810231716.DC;1 8810231716B_P_1 TB3099R01-1_P_1.NSS;1 8810240123.DC;1 8810240123B_P_1 TB3101R01-1_P_1.NSS;1 8810240749.DC;1 8810240749B_P_1 TB3102R01-1_P_1.NSS;1 8810250138.DC;1 8810250138B_P_1 TB3114R01-1_P_1.NSS;1 8810250147.DC;1 8810250147B_P_1 TB3114R03-1_P_1.NSS;1 8810250804.DC;1 8810250804B_P_1 TB3128R01-1_P_1.NSS;1 8810260643.DC;1 8810260643B_P_1 TB3144R01-1_P_1.NSS;1 8810260018.DC;1 8810260018B_P_1 TB3146R01-1_P_1.NSS;1 8810271954.DC;1 8810271954B_P_1 TB3157R01-1_P_1.NSS;1 8810281519.DC;1 8810281519B_P_1 TB3165R01-1_P_1.NSS;1 8810290239.DC;1 8810290239B_P_1 TB3175R01-1_P_1.NSS;1 8810290728.DC;1 8810290728B_P_1 TB3176R01-1_P_1.NSS;1 8810300605.DC;1 8810300605B_P_1 TB3189R00-1_P_1.NSS;1 8811031408.DC;1 8811031408B_P_1 TB3254R01-1_P_1.NSS;1 8811040713.DC;1 8811040713B_P_1 TB3267R01-1_P_1.NSS;1 8811041144.DC;1 8811041144B_P_1 TB3273R01-1_P_1.NSS;1 8811101911.DC;1 8811101911B_P_1 TB3395R01-1_P_1.NSS;1 8812021524.DC;1 8812021524B_P_1 TB3690R02-1_P_1.NSS;1 8812030038.DC;1 8812030038B_P_1 TB3697R01-1_P_1.NSS;1 8812050704.DC;1 8812050704B_P_1 TB3731R01-1_P_1.NSS;1 8812051046.DC;1 8812051046B_P_1 TB3733R01-1_P_1.NSS;1 8810300254.DC;1 8810300254B_P_1 TB9999R01-1_P_1.NSS;1 8805151050.DC;1 8805151050D_P_1 TC0746R01-1_P_1.NSS;1 8805161924.DC;1 8805161924C_P_1 TC0763R01-1_P_1.NSS;1 8805171138.DC;1 8805171138D_P_1 TC0766R01-1_P_1.NSS;1 8805171815.DC;1 8805171815D_P_1 TC0776R01-1_P_1.NSS;1 8805181418.DC;1 8805181418D_P_1 TC0794R01-1_P_1.NSS;1 8805191613.DC;1 8805191613D_P_1 TC0804R01-1_P_1.NSS;1 8805210857.DC;1 8805210857B_P_1 TC0849R01-1_P_1.NSS;1 8805241644.DC;1 8805241644B_P_1 TC0877R01-1_P_1.NSS;1 8805251354.DC;1 8805251354B_P_1 TC0890R01-1_P_1.NSS;1 8805261307.DC;1 8805261307B_P_1 TC0905R01-1_P_1.NSS;1 8805272137.DC;1 8805272137B_P_1 TC0919R01-1_P_1.NSS;1 8805280656.DC;1 8805280656B_P_1 TC0921R01-1_P_1.NSS;1 8805281333.DC;1 8805281333B_P_1 TC0934R01-1_P_1.NSS;1 8806021014.DC;1 8806021014B_P_1 TC0996R01-1_P_1.NSS;1 8806021931.DC;1 8806021931B_P_1 TC1005R01-1_P_1.NSS;1 8806040530.DC;1 8806040530B_P_1 TC1025R01-1_P_1.NSS;1 8806041610.DC;1 8806041610B_P_1 TC1037R01-1_P_1.NSS;1 8806041619.DC;1 8806041619B_P_1 TC1037R02-1_P_1.NSS;1 8806111218.DC;1 8806111218B_P_1 TC1127R01-1_P_1.NSS;1 8806181009.DC;1 8806181009B_P_1 TC1229R01-1_P_1.NSS;1 8806201058.DC;1 8806201058B_P_1 TC1257R01-1_P_1.NSS;1 8806251209.DC;1 8806251209B_P_1 TC1330R01-1_P_1.NSS;1 8807121228.DC;1 8807121228B_P_1 TC1604R01-1_P_1.NSS;1 8808061118.DC;1 8808061118B_P_1 TC1942R01-1_P_1.NSS;1 8809110009.DC;1 8809110009B_P_1 TC2560R01-1_P_1.NSS;1 8809271252.DC;1 8809271252B_P_1 TC2707R01-1_P_1.NSS;1 8810030942.DC;1 8810030942B_P_1 TC2792R01-1_P_1.NSS;1 8810051211.DC;1 8810051211B_P_1 TC2824R01-1_P_1.NSS;1 8810100329.DC;1 8810100329B_P_1 TC2893R01-1_P_1.NSS;1 8810110226.DC;1 8810110226B_P_1 TC2906R01-1_P_1.NSS;1 8810120235.DC;1 8810120235B_P_1 TC2922R01-1_P_1.NSS;1 8810130257.DC;1 8810130257B_P_1 TC2936R01-1_P_1.NSS;1 8810140317.DC;1 8810140317B_P_1 TC2951R01-1_P_1.NSS;1 8810160219.DC;1 8810160219B_P_1 TC2980R01-1_P_1.NSS;1 8810171220.DC;1 8810171220B_P_1 TC3011R01-1_P_1.NSS;1 8810181240.DC;1 8810181240B_P_1 TC3016R01-1_P_1.NSS;1 8810190934.DC;1 8810190934B_P_1 TC3029R01-1_P_1.NSS;1 8810200506.DC;1 8810200506B_P_1 TC3041R01-1_P_1.NSS;1 8810212114.DC;1 8810212114B_P_1 TC3072R01-1_P_1.NSS;1 8810221328.DC;1 8810221328B_P_1 TC3075R01-1_P_1.NSS;1 8810232032.DC;1 8810232032B_P_1 TC3099R01-1_P_1.NSS;1 8810240300.DC;1 8810240300B_P_1 TC3101R01-1_P_1.NSS;1 8810250318.DC;1 8810250318B_P_1 TC3114R01-1_P_1.NSS;1 8810260155.DC;1 8810260155B_P_1 TC3146R01-1_P_1.NSS;1 8811020729.DC;1 8811020729B_P_1 TC3237R01-1_P_1.NSS;1 8805151222.DC;1 8805151222D_P_1 TD0746R01-1_P_1.NSS;1 8805180352.DC;1 8805180352C_P_1 TD0776R01-1_P_1.NSS;1 8805182121.DC;1 8805182121C_P_1 TD0794R01-1_P_1.NSS;1 8805191751.DC;1 8805191751D_P_1 TD0804R01-1_P_1.NSS;1 8805211030.DC;1 8805211030B_P_1 TD0849R01-1_P_1.NSS;1 8805250339.DC;1 8805250339B_P_1 TD0877R01-1_P_1.NSS;1 8805251702.DC;1 8805251702B_P_1 TD0890R01-1_P_1.NSS;1 8805261438.DC;1 8805261438B_P_1 TD0905R01-1_P_1.NSS;1 8805280848.DC;1 8805280848B_P_1 TD0921R01-1_P_1.NSS;1 8805281510.DC;1 8805281510B_P_1 TD0934R01-1_P_1.NSS;1 8806070934.DC;1 8806070934B_P_1 TD1067R01-1_P_1.NSS;1 8810221339.DC;1 8810221339B_P_1 TD3146R01-1_P_1.NSS;1 8805151353.DC;1 8805151353D_P_1 TE0746R01-1_P_1.NSS;1 8805191926.DC;1 8805191926D_P_1 TE0804R01-1_P_1.NSS;1 8805211209.DC;1 8805211209B_P_1 TE0849R01-1_P_1.NSS;1 8805252058.DC;1 8805252058B_P_1 TE0890R01-1_P_1.NSS;1 8805261612.DC;1 8805261612B_P_1 TE0905R01-1_P_1.NSS;1 8805151528.DC;1 8805151528D_P_1 TF0746R01-1_P_1.NSS;1 8805211336.DC;1 8805211336B_P_1 TF0849R01-1_P_1.NSS;1 8805261745.DC;1 8805261745B_P_1 TF0905R01-1_P_1.NSS;1 8805151701.DC;1 8805151701D_P_1 TG0746R01-1_P_1.NSS;1 8805211510.DC;1 8805211510B_P_1 TG0849R01-1_P_1.NSS;1 8805151834.DC;1 8805151834D_P_1 TH0746R01-1_P_1.NSS;1 8805211716.DC;1 8805211716B_P_1 TH0849R01-1_P_1.NSS;1 8806100600.DC;1 8806100600B_P_1 TX1109R01-1_P_1.NSS;1 8806100604.DC;1 8806100604C_P_1 TX1109R03-1_P_1.NSS;1 8808161553.DC;1 8808161553B_P_1 TX2100R01-1_P_1.NSS;1 Not all files listed here have been archived. See the File_name_list section. DATA_SET_NAME: San Marco D/L Electric Field Instrument AC and DC data. DATA_ORGANIZATION: The Electric Field Instrument data are organized into two types of files which contain high resolution DC data and spectrometer (AC) data. The time resolution of the DC files is normally 0.128 seconds and that of the AC files is .512 seconds. Data gaps may occur so using the time tag of each record is recommended. A description of the contents and format of the files can be found in the ACFORMAT.SFD and DCFORMAT.SFD files provided with this documentation. TYPE_OF_FILE_RELATIONSHIP: None. CCSD$$MARKERMRK**002CCSD3KS00002MRK**003 LOG_VOL_COVERAGE: See PREV_LOG_VOL_COVERAGE. TYPES_OF_DATA_FILES_COVERED: AC files and DC files, TYPE_OF_FILE_TIME_COVERAGE: A. AC FILES: 1988-04-20T07:35:07 1988-12-05T23:40:55 B. DC FILES: 1988-04-20T07:35:07 1988-12-05T23:40:55 All times are start time of the file. NAMING_CONVENTION: The files in this data set have been named in the following manner: YYMMDDTTmm where YY is the last two digits of the year (88 = 1988), MM is the month (04 = April), DD is the day of month, TT is the start hour of the file and mm is the start minute of the file (0207 = 02:07 UT) Example: 8805010207 is the file for May 1, 1988 starting at 02:07 UT The filename tag will be either .AC or .DC depending on the type of data contained in the file. FILE_NAME_LIST: A. AC FILES: 8804200735.AC;1 8804201042.AC;1 8804201043.AC;1 8804210957.AC;1 8804210958.AC;1 8804211110.AC;1 8804230656.AC;1 8804230829.AC;1 8804260136.AC;1 8804261535.AC;1 8804281005.AC;1 8804290707.AC;1 8804301853.AC;1 8805010207.AC;1 8805010538.AC;1 8805010844.AC;1 8805021239.AC;1 8805021315.AC;1 8805021427.AC;1 8805021850.AC;1 8805030654.AC;1 8805030847.AC;1 8805032124.AC;1 8805040824.AC;1 8805041542.AC;1 8805041545.AC;1 8805051254.AC;1 8805060339.AC;1 8805060645.AC;1 8805060952.AC;1 8805061300.AC;1 8805061603.AC;1 8805061910.AC;1 8805062218.AC;1 8805071238.AC;1 8805071502.AC;1 8805071506.AC;1 8805072140.AC;1 8805080207.AC;1 8805080515.AC;1 8805080820.AC;1 8805081127.AC;1 8805090544.AC;1 8805092133.AC;1 8805100454.AC;1 8805101225.AC;1 8805101855.AC;1 8805121220.AC;1 8805121234.AC;1 8805130255.AC;1 8805130434.AC;1 8805130615.AC;1 8805130752.AC;1 8805130931.AC;1 8805131111.AC;1 8805131250.AC;1 8805140822.AC;1 8805141836.AC;1 8805150133.AC;1 8805150917.AC;1 8805151050.AC;1 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The VxB subtraction is therefore questionable and large scale errors of up to 10 mV/m in the electric field data are possible. PREV_LOG_VOL_COVERAGE: Tape label Coverage SMAC01 1988-04-20T07:35:07 1988-06-19T07:00:25 (EFI turn-on) SMAC02 1988-06-20T04:33:11 1988-07-30T18:10:03 SMAC03 1988-08-01T06:26:34 1988-08-31T13:17:39 SMAC04 1988-09-01T05:35:45 1988-10-19T09:34:59 SMAC05 1988-10-20T01:52:08 1988-11-30T22:45:23 SMAC06 1988-12-01T14:13:15 1988-12-05T23:40:55 (Re-entry) Note: All times are file start times. CCSD$$MARKERMRK**003CCSD3RF0000300000001 REFERENCETYPE=$CCSDS2; LABEL=ATTACHED; REFERENCE=ACFORMAT.SFD; LABEL=NSSD3IF0013400000001; REFERENCE=*.AC; /* (EOF) */