Merge pull request #152 from proudindiv/proposed
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commit
21000d86a6
@ -329,7 +329,7 @@ DNTMEXIT EXTEND # DOWN-TELEMETRY EXIT
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CA L # RESPECTIVELY
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CA L # RESPECTIVELY
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TMEXITL EXTEND
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TMEXITL EXTEND
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WRITE DNTM2
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WRITE DNTM2
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TMRESUME TCF RESUME # EXIT TELEMTRY PROGRAM VIA RESUME.
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TMRESUME TCF RESUME # EXIT TELEMETRY PROGRAM VIA RESUME.
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MINB12 EQUALS -1/8
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MINB12 EQUALS -1/8
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DNECADR EQUALS TMINDEX
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DNECADR EQUALS TMINDEX
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@ -1561,7 +1561,7 @@ ESCAPE EQUALS DOTINC # USED IN ARCSIN/ARCCOS.
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ENTRET EQUALS DOTINC # EXIT FROM ENTER
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ENTRET EQUALS DOTINC # EXIT FROM ENTER
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DOTRET ERASE # RETURN FROM DOT SUBROUTINE
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DOTRET ERASE # RETURN FROM DOT SUBROUTINE
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DVNORMCT EQUALS DOTRET # DIVIDENT NORMALIZATION COUNT IN DDV.
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DVNORMCT EQUALS DOTRET # DIVIDEND NORMALIZATION COUNT IN DDV.
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ESCAPE2 EQUALS DOTRET # ALTERNATE ARCSIN/ARCCOS SWITCH
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ESCAPE2 EQUALS DOTRET # ALTERNATE ARCSIN/ARCCOS SWITCH
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WDCNT EQUALS DOTRET # CHAR COUNTER FOR DSPWD
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WDCNT EQUALS DOTRET # CHAR COUNTER FOR DSPWD
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INREL EQUALS DOTRET # INPUT BUFFER SELECTOR ( X,Y,Z, REG )
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INREL EQUALS DOTRET # INPUT BUFFER SELECTOR ( X,Y,Z, REG )
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@ -97,7 +97,7 @@
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#
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#
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# 2.2 SCALING
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# 2.2 SCALING
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#
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#
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# THE INTEGRATION ROUTIEN WILL MAINTAIN THE PERMANENT MEMORY STATE VECTORS IN THE SCALING AND UNITS DEFINED IN
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# THE INTEGRATION ROUTINE WILL MAINTAIN THE PERMANENT MEMORY STATE VECTORS IN THE SCALING AND UNITS DEFINED IN
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# APPENDIX B OF THE USERS' GUIDE. THE SCALING OF THE OUTPUT POSITION VECTOR DEPENDS ON THE ORIGIN OF THE COORDINATE
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# APPENDIX B OF THE USERS' GUIDE. THE SCALING OF THE OUTPUT POSITION VECTOR DEPENDS ON THE ORIGIN OF THE COORDINATE
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# SYSTEM AT THE DESIRED INTEGRATION TIME. THE COORDINATE SYSTEM TRANSFORMATION WILL BE DONE AUTOMATICALLY ON
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# SYSTEM AT THE DESIRED INTEGRATION TIME. THE COORDINATE SYSTEM TRANSFORMATION WILL BE DONE AUTOMATICALLY ON
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# MULTIPLE TIMESTEP ENCKE INTEGRATION ONLY. THUS IT IS POSSIBLE TO HAVE OUTPUT FROM SUCCESSIVE INTEGRATIONS IN
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# MULTIPLE TIMESTEP ENCKE INTEGRATION ONLY. THUS IT IS POSSIBLE TO HAVE OUTPUT FROM SUCCESSIVE INTEGRATIONS IN
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@ -531,7 +531,7 @@ V51NB VN 5100
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# 7 REGISTER MRKBUF2 CONTAINING TIME2,TIME1,CDUY,OPTICS X,CDUZ, OPTICS Y,
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# 7 REGISTER MRKBUF2 CONTAINING TIME2,TIME1,CDUY,OPTICS X,CDUZ, OPTICS Y,
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# CDUX.
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# CDUX.
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#
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#
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# ERASABLE INTIALIZATION REQUIRED
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# ERASABLE INITIALIZATION REQUIRED
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#
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#
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# FLAGS SET AND RESET
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# FLAGS SET AND RESET
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# R21MARK (COMMUNICATION TO MARKRUPT TO STORE MARKS IN MRKBUF1 +2)
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# R21MARK (COMMUNICATION TO MARKRUPT TO STORE MARKS IN MRKBUF1 +2)
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@ -782,7 +782,7 @@ PI/4.0 2DEC .785398164
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# MARKDATA, BASE ADDRESS OF MARK DATA
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# MARKDATA, BASE ADDRESS OF MARK DATA
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# REFSMMAT, ROTATION MATRIX FROM STABLE MEMBER TO BASIC REF. COORD. SYSTEM
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# REFSMMAT, ROTATION MATRIX FROM STABLE MEMBER TO BASIC REF. COORD. SYSTEM
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#
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#
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# SUROUTINES CALLED:
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# SUBROUTINES CALLED-
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#
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#
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# SXTNB -- SEXT. ANGULAR READINGS TO NAV. BASE COOR.
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# SXTNB -- SEXT. ANGULAR READINGS TO NAV. BASE COOR.
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# NBSM -- TRANSFORM FROM NAV. BASE TO STABLE MEMBER
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# NBSM -- TRANSFORM FROM NAV. BASE TO STABLE MEMBER
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@ -39,7 +39,7 @@
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# COELLIPTIC SEQUENCE INITIATION (CSI) PROGRAMS (P32 AND P72)
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# COELLIPTIC SEQUENCE INITIATION (CSI) PROGRAMS (P32 AND P72)
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#
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#
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# MOD NO -1 LOG SECTION -- P32-P35, P72-P75
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# MOD NO -1 LOG SECTION -- P32-P35, P72-P75
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# MOD BY WHITE. P DATE 1JUNE67
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# MOD BY WHITE.P DATE 1JUNE67
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#
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#
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# PURPOSE
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# PURPOSE
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# (1) TO CALCULATE PARAMETERS ASSOCIATED WITH THE FOLLOWING
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# (1) TO CALCULATE PARAMETERS ASSOCIATED WITH THE FOLLOWING
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@ -1398,8 +1398,8 @@ RTRNMU STORE RTMU
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# Page 495
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# Page 495
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# ***** PERIAPO *****
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# ***** PERIAPO *****
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# MOD NO -1 LOG SECTION -- P34-P35, P74-P75
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# MOD NO -1 LOG SECTION - P34-P35, P74-P75
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# MOD BY WHITE, P. DATE 18 JAN 68
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# MOD BY WHITE.P DATE 18JAN68
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#
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#
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# FUNCTIONAL DESCRIPTION
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# FUNCTIONAL DESCRIPTION
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# THIS SUBROUTINE COMPUTES THE TWO BODY APOCENTER AND PERICENTER
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# THIS SUBROUTINE COMPUTES THE TWO BODY APOCENTER AND PERICENTER
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@ -1419,7 +1419,7 @@ RTRNMU STORE RTMU
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# INPUT
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# INPUT
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# (1) RVEC POSITION VECTOR IN METERS
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# (1) RVEC POSITION VECTOR IN METERS
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# SCALE FACTOR -- EARTH +29, MOON +27
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# SCALE FACTOR -- EARTH +29, MOON +27
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# (2) VVEC VELOCITY VECTORY IN METERS/CENTISECOND
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# (2) VVEC VELOCITY VECTOR IN METERS/CENTISECOND
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# SCALE FACTOR -- EARTH +7, MOON +5
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# SCALE FACTOR -- EARTH +7, MOON +5
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# (3) X1 PRIMARY BODY INDICATOR
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# (3) X1 PRIMARY BODY INDICATOR
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# EARTH -2, MOON -10
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# EARTH -2, MOON -10
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@ -159,4 +159,4 @@ P76SUB1 CLEAR SLOAD
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+2 # =2.....SET MOONFLAG
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+2 # =2.....SET MOONFLAG
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MOONFLAG
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MOONFLAG
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RVQ
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RVQ
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@ -2187,7 +2187,7 @@ HMSIN TC ALL3DEC # IF ALL 3 WORDS WERE NOT LOADED, ALARM.
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MP MINCON # LEAVES MINUTES CONTRIBUTION IN A,L
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MP MINCON # LEAVES MINUTES CONTRIBUTION IN A,L
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# Page 353
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# Page 353
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DAS HITEMIN # ADD IN MINUTES CONTRIBUTION
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DAS HITEMIN # ADD IN MINUTES CONTRIBUTION
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EXTEND # IF THIS DAS OVEFLOWS, G/ 745 HR, 39MIN
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EXTEND # IF THIS DAS OVERFLOWS, G/ 745 HR,39MIN
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BZF +2
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BZF +2
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TC ALMCYCLE
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TC ALMCYCLE
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CA ZREG # PUT ZREG, ZREGLP INTO MPAC +1.
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CA ZREG # PUT ZREG, ZREGLP INTO MPAC +1.
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@ -199,7 +199,7 @@ ATTINIT CAE DAPDATR1 # ATTITUDE-ERROR INITIALIZATION LOGIC
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+8 CCS TTMP1 # TEST TEMPORARY COUNTER
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+8 CCS TTMP1 # TEST TEMPORARY COUNTER
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TCF ATTINIT +5 # BACK TO REPEAT FOR PITCH ERROR
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TCF ATTINIT +5 # BACK TO REPEAT FOR PITCH ERROR
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CA ERRBTMP # ERROS ESTABLISHED AND LIMITED
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CA ERRBTMP # ERRORS ESTABLISHED AND LIMITED
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TS PERRB
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TS PERRB
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CA ERRBTMP +1
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CA ERRBTMP +1
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TS YERRB
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TS YERRB
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@ -123,7 +123,7 @@
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# CONTROL ACCELERATION CONACC, OR ITS RECIPROCAL, 1/CONACC, THE TVC
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# CONTROL ACCELERATION CONACC, OR ITS RECIPROCAL, 1/CONACC, THE TVC
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# ROLL DAP GAIN (SEE TVCEXECUTIVE VARIABLE GAIN PACKAGE). JET
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# ROLL DAP GAIN (SEE TVCEXECUTIVE VARIABLE GAIN PACKAGE). JET
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# FIRING TIME IS SIMPLY THAT REQUIRED TO ACHIEVE THE DESIRED OGARATE,
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# FIRING TIME IS SIMPLY THAT REQUIRED TO ACHIEVE THE DESIRED OGARATE,
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# SUBJECT TO TEH LIMITATIONS DISCUSSED UNDER FUNCTIONAL DESCRIPTION,
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# SUBJECT TO THE LIMITATIONS DISCUSSED UNDER FUNCTIONAL DESCRIPTION,
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# ABOVE.
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# ABOVE.
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#
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#
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# THE THREE CONTROL REGIONS (+, -, AND ZERO TORQUE) ARE COMPRISED OF
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# THE THREE CONTROL REGIONS (+, -, AND ZERO TORQUE) ARE COMPRISED OF
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@ -381,7 +381,7 @@ TIMEDIDL EXTEND
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TIMEDIDR INHINT
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TIMEDIDR INHINT
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CAF ZERO
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CAF ZERO
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ZL # PICK UP INCRMENTER (AND ZERO
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ZL # PICK UP INCREMENTER(AND ZERO
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TS MPAC +2 # IT IN CASE OF RESTARTS) AND
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TS MPAC +2 # IT IN CASE OF RESTARTS) AND
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DXCH UPBUFF +8D # STORE IT
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DXCH UPBUFF +8D # STORE IT
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DXCH MPAC # INTO MPAC FOR TPAGREE.
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DXCH MPAC # INTO MPAC FOR TPAGREE.
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@ -29,8 +29,8 @@
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# Page 618
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# Page 618
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# COELLIPTIC SEQUENCE INITIATION (CSI) PROGRAMS (P32 AND P72)
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# COELLIPTIC SEQUENCE INITIATION (CSI) PROGRAMS (P32 AND P72)
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#
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#
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# MOD NO -1 LOG SECTION -- P32-P35, P72-P75
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# MOD NO -1 LOG SECTION -- P32-P35, P72-P75
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# MOD BY WHITE.P DATE 1JUNE67
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# MOD BY WHITE.P DATE 1JUNE67
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#
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#
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# PURPOSE
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# PURPOSE
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@ -129,7 +129,7 @@ CDUINC TS TEM2 # 1S COMPL.QUANT. ARRIVES IN ACC. STORE IT
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TCF +4
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TCF +4
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AD ONE
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AD ONE
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# Page 1399
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# Page 1399
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AD ONE # OVEFLOW HERE IF 2S COMPL. IS 180 DEG.
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AD ONE # OVERFLOW HERE IF 2S COMPL. IS 180 DEG.
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COM
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COM
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AD TEM2 # SULT MOVES FROM 2ND TO 3D QUAD. (OR BACK)
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AD TEM2 # SULT MOVES FROM 2ND TO 3D QUAD. (OR BACK)
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@ -167,7 +167,7 @@ PULSEIMU INDEX FIXLOC # ADDRESS OF GYRO COMMANDS SHOULD BE IN X1
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# 2. GENERATE IN MPAC THE SIGNUM FUNCTION OF MPAC:
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# 2. GENERATE IN MPAC THE SIGNUM FUNCTION OF MPAC:
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# ENTRY: RTB
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# ENTRY: RTB
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# SIGNMPAC
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# SIGNMPAC
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# IN EITHER CASE, RETURN IS TO TEH NEXT INTERPRETIVE INSTRUCTION IN THE CALLING SEQUENCE.
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# IN EITHER CASE, RETURN IS TO THE NEXT INTERPRETIVE INSTRUCTION IN THE CALLING SEQUENCE.
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SIGNMPAC EXTEND
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SIGNMPAC EXTEND
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DCA DPOSMAX
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DCA DPOSMAX
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