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Trailing-Edge - PDP-10 Archives - decuslib20-03 - decus/20-0089/exeter.exe
There are no other files named exeter.exe in the archive.
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2	 ( 2#,V  )n 2	 2`h2`,V 
2` 3 3 , .
E 
SXLE .hE,K <3,H <3,H <3,H <3,H <3,H <3,H <3,H <3,H <3,H <3,H 
2 ( 8,V @#
 2 2`h2`,V 
2` 3 2- , .
E 
SXLE .hE,K <3,H <3,H <3,H <3,H <3,H <3,H <3,H <3,H <3,H <3!,H 
27 ( 2#,V @#
 2	 2`h2`,V 
2` 3# 3# , .
E 
SXLE .hE,K <3$,H <3$,H <3%,H <3%,H <3&,H <3&,H <3',H <3',H <3(,H <3*,H <3+,H <3+,H <3,,H <3,,H <3-,H <3-,H <3.,H <3.,H <2],H,
j* <1q,H <1q,H <3/,H <30,! <30,@#
 2 31h2,V 
31 ( 8,V 5@
Z+
m 
31 ( 8,V 1f5f
]+
b+p+g+4+N+$+$6+%%+/ <1q,H <1q,H <31,H <34,H <37,H <3:,H <3=,H <3@,H <3B,H <3E,H <3H,H+
M,
j, <3J,H <3L,! <3M, )n 3M 3Nh2,V 
3N ( 2#,V 4 
{ 
3N ( 2#,V 3`3N+
{+
m@@1 3O 
3N ( 2#,V / )n 3M 3Oh2,VZ<3P,*+  4$2 
3O ( 2#,V . )n 3M 3Oh2,V@@1 
3O ( 2#,V &3P.2 )n 3M 3Oh2,V <3Q,H <3S,! <3S, )n 2q 3Th2,V 
3T ( 2#,V 4  
3T ( 2#,V 3`3T++
MZ<2L,*+' 
3T ( 2#,V 3`2+' <3U,H <3X,H <3[,H+
M@@1 
3T ( 2#,V `3] <3^,83^3] <, <3S, )n 2q 3_h2,V 
3_ ( 2#,V 0 P+= 
3_ ( 2#,V 1`6+=  P )n 2q 3_h2,V 
3( 2#,V 0 
3(2#,V1`P+G  
27 ( 8,V 4`N:::!X2N,> 0**+3Z<3_,*+P+* 
3` ( 3`,V  
3a ( 3`,V / )n 3a 3bh3b,V@@1 
3_ ( 3`,V . t$ &3S&2 )n 3c 3dh3b,V   @2 
3b ( 3`,V . )n 3a 3bh3b,V 2 
3` ( 3`,V . )n 3a 3`h3b,V 
3d ( 3`,V " @2 
3` ( 3`,V . )n 3a 3`h3b,V 2 
3b ( 3`,V . )n 3a 3bh3b,V 
3b ( 3`,V 4`
+
* 
3d ( 8,V 5@
! <3e,H 
3T ( 3`,V  )n 3j 3jh3b,V 
3j 3m 3n , .
L 
RXLL .hL,K <3n,! 
3d ( 3`,V  @2 
3b ( 3`,V . )n 3a 3bh3b,V 2 
3` ( 3`,V . )n 3a 3`h3b,V+
M <3o,H <3u,H,
j.:::!X2
(,> 0**+3Z<3_,*+
*+*+
#,
j0Z<3{,*+
4  $ t 
3{ ( 3`,V . )n 3| 3{h3b,VZ<3|,*+
<  $ t 
3} ( 3`,V . )n 3| 3}h3b,VZ<3},*+
E  $ t 
3~ ( 3`,V . )n 3| 3~h3b,VZ<3~,*+
M  $ t 
3 ( 3`,V . )n 3| 3h3b,VZ<3,*+
V  $ t 
4 ( 3`,V . )n 3| 4h3b,VZ<4,*+
^  $ t 
4 ( 3`,V . )n 3| 4h3b,VZ<4,*+
g  $ t 
4 ( 3`,V . )n 3| 4h3b,VZ<4,*+
o  $ t 
4 ( 3`,V . )n 3| 4h3b,V:::!X2
s,> 0-I+3 
4 ( 8,V 1`	+
w+ <4,H:::!X2
{,> 0-I+3 
4 ( 8,V 1`+
+,
j2 <4,H:::!X2
4 ( 8,V $ . >&4& @#
44	h3b,V:::!X2
4 ( 8,V . $ t&4	& '@#
 3a 4
h3b,V 
4
 ( 8,V  
4
 ( 3`,V $$.&  )n 4 4
h3b,V 
4	( 8,V 1f5f
j4 <4,H 
4
 ( 8,V " 
3{ ( 3`,V . )n 3| 3{h3b,V+,
j6 <4
4
 ( 8,V " 
3} ( 3`,V . )n 3| 3}h3b,V+,
j8 <4,H 
4
 ( 8,V " 
3~ ( 3`,V . )n 3| 3~h3b,V+,
j: <4,H 
4
 ( 8,V " 
3 ( 3`,V . )n 3| 3h3b,V+,
j< <4,H 
4
 ( 8,V " 
4 ( 3`,V . )n 3| 4h3b,V+,
j> <4,H 
4
 ( 8,V " 
4 ( 3`,V . )n 3| 4h3b,V+,
j@ <4,H 
4
 ( 8,V " 
4 ( 3`,V . )n 3| 4h3b,V+,
jB <4,H 
4
 ( 8,V " 
4 ( 3`,V . )n 3| 4h3b,V+,
jD <4,H:::!X2,> 0-I+3@@1 
4 ( 8,V $ . >&4& @#
 4 4	h3b,V:::!X2,> 0-I+3@@1 
4 ( 8,V . $ t&4	& '@#
 3a 4h3b,V 
4 ( 8,V  
4
 ( 3`,V $$.&  )n 4 4
h3b,V 
4	 ( 8,V 1f5f,+0+0+;+F+Q+\+g+r+},
jF <4,H 
4 ( 8,V  
3{ ( 3`,V . )n 3| 3{h3b,V+,
jH <4
4 ( 8,V  
3} ( 3`,V . )n 3| 3}h3b,V+,
jJ <4,H 
4 ( 8,V  
3~ ( 3`,V . )n 3| 3~h3b,V+,
jL <4,H 
4 ( 8,V  
3 ( 3`,V . )n 3| 3h3b,V+,
jN <4,H 
4 ( 8,V  
4 ( 3`,V . )n 3| 4h3b,V+,
jP <4,H 
4 ( 8,V  
4 ( 3`,V . )n 3| 4h3b,V+,
jR <4,H 
4 ( 8,V  
4 ( 3`,V . )n 3| 4h3b,V+,
jT <4,H 
4 ( 8,V  
4 ( 3`,V . )n 3| 4h3b,V+,
jV 
3(3`,V 0 6+
4 ( 8,V  H2 
4  ( 8,V  H26t20t,I/4$46v20v,I/6$6
.t4 DDD 
4  ( 8,V $2 )n 4! 4!h3b,V 
4 ( 8,V $2 )n 4! 4"h3b,V 
3O ( 3`,V &4"&2@#
 4 4#h3b,V  @#
 4 4#h3b,V@@1 
3O ( 3`,V .4$&3S&2 )n 3c 4$h3b,V@@1 
4$ ( 3`,V  H2 *6l20l,I/,(L.
j4% ( 3`,V  
4# ( 8,V  H2 *6l20l,I/,(L.
j4% ( 3`,V / @3 
3O ( 3`,V  
4# ( 8,V $2/%3 
4# ( 8,V  H3 *6l30l,I/,(L.
j4% ( 3`,V $2)n <4",&$t )n 3a 4%h3b,V@@1 
4$ ( 3`,V  H2 *6l20l,I/,(L.
j4% ( 3`,V  
4# ( 8,V  H2 *6l20l,I/,(L.
j4% ( 3`,V / @3 
3O ( 3`,V  
4# ( 8,V $2/%3 
4# ( 8,V  H3 *6l30l,I/,(L.
j4% ( 3`,V $2)n <4",&$t )n 3a 4&h3b,V,
jX 
4% ( 3`,V $ t 
4! ( 3`,V . )n 4! 4!h3b,V 
4& ( 3`,V $ t 
4" ( 3`,V . )n 4! 4"h3b,V@@1 
4! ( 3`,V .4&&2 )n 4' 4'h3b,V@@1 
4" ( 3`,V .4&&2 )n 4' 4(h3b,V 
4' ( 3`,V 1 +: 
4' ( 3`,V 0`+: 
4( ( 3`,V 1 +: 
4( ( 3`,V 1`+:+i 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4  (@nh4(+I+b 
4# ( 8,V  
3d ( 3`,V 3d+V   
4# ( 8,V .@#
 4 4#h3b,V+ 
4' ( 3`,V & @#
 4 4 h3b,V 
4( ( 3`,V & @#
 4 4h3b,V+,
jZ   
4* ( 8,V .@#
 4' 4*h3b,V@@1 
4' ( 3`,V  
4% ( 3`,V $ t/& '&"t@#
 4 4 h3b,V@@1 
4( ( 3`,V  
4& ( 3`,V $ t/& '&"t@#
 4 4h3b,V <4*,H 
4  ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <40,H 
4 ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <40,H,
j\ 
4 ( 8,V  H2 
4  ( 8,V  H26p20p,I/06r20r,I/2(R.p44(43H 
3_ ( 3`,V 0 -X+8   
44 ( 3`,V . )n 3| 44h3b,V"  
45 ( 3`,V . )n 3| 45h3b,V+F  $  
44 ( 3`,V . )n 3| 44h3b,V" $  
45 ( 3`,V . )n 3| 45h3b,V+N,
j^Z<45,)7+i <46,H <46,H 
44 ( 3`,V  )n 3| 3jh3b,V 
3j 4. 4: , .
L 
RXLL .hL,K <4;,! <4;,H <4>,H 
4@ ( 8,V  )n 4' 3jh3b,V 
3j 4. 4A , .
L 
RXLL .hL,K <4B,! <4B,H <46,H <4E,H+/,
j`@@1 
4J ( 3`,V $  
4  ( 8,V . @2 
4% ( 3`,V  
3d ( 3`,V $ 2$$t.&2$"t )n 4! 4!h3b,V@@1 
4J ( 3`,V $  
4 ( 8,V . @2 
4& ( 3`,V  
3d ( 3`,V $ 2$$t.&2$"t )n 4! 4"h3b,V 
4! ( 3`,V &2 )n 4' 4'h3b,V 
4" ( 3`,V &2 )n 4' 4(h3b,V@@1 
4' ( 3`,V &4K )n 4' 4Jh3b,V@@1 
4( ( 3`,V &4K )n 4' 4Jh3b,V@@1 
4J ( 3`,V $ " 
4' ( 3`,V .& @#
 4 4 h3b,V@@1 
4J ( 3`,V $ " 
4( ( 3`,V .& @#
 4 4h3b,V 
4  ( 8,V 5@I"  
4J ( 3`,V . )n 4' 4Jh3b,V  @#
 4 4 h3b,V 
4 ( 8,V 5@V"  
4J ( 3`,V . )n 4' 4Jh3b,V  @#
 4 4h3b,V  $  
44 ( 3`,V . )n 3| 44h3b,V" $  
45 ( 3`,V . )n 3| 45h3b,VZ<45,)7+g+G+u,
jbZ<3},*+k <4K,H+
M 
4J ( 3`,V  )n 3j 4Oh4P,V 
4O 4S 4S , .
E 
SXLE .hE,K 
4T (@nh4T+ 
4J ( 3`,V  )n 4 4Oh4P,V 
4O 4T 4X , .
E 
SXLE .hE,K+* 
4X (@nh4T+ 
4J ( 3`,V  )n 3| 4Oh4P,V 
4O 4X 4[ , .
E 
SXLE .hE,K+* e5@ 
4J ( 3`,V  )n 3a 4Oh4P,V 
4O 4] 4^ , .
E 
SXLE .hE,K+* 
4J ( 3`,V  )n 4' 4Oh4P,V 
4O 4` 4` , .
E 
SXLE .hE,K,
jd <4a,H <4e,H <4e,H 
4J ( 3`,V  )n 4' 4'h3b,V 
4J ( 3`,V  )n 4' 4(h3b,V @2"  
4' ( 3`,V . )n 4' 4'h3b,V 2"  
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 +V 
4' ( 3`,V 0`+V 
4( ( 3`,V 1 +V 
4( ( 3`,V 1`+W <4h,H+ 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4j,HZ<4,*7+ 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 + 
4' ( 3`,V 0`+ 
4( ( 3`,V 1 + 
4( ( 3`,V 1`+ <4h,H+H 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4j,HZ<4,*7+H 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 +^ 
4' ( 3`,V 0`+^ 
4( ( 3`,V 1 +^ 
4( ( 3`,V 1`+_ <4l,H+
 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4m,HZ<4,*7+
 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4' ( 3`,V . )n 4' 4'h3b,V"  
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 +( 
4' ( 3`,V 0`+( 
4( ( 3`,V 1 +( 
4( ( 3`,V 1`+* <4h,H+W 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4j,HZ<4,*7+W 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 +l 
4' ( 3`,V 0`+l 
4( ( 3`,V 1 +l 
4( ( 3`,V 1`+n <4h,H+ 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4j,HZ<4,*7+ 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 +0 
4' ( 3`,V 0`+0 
4( ( 3`,V 1 +0 
4( ( 3`,V 1`+2 <4l,H+_ 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4m,HZ<4,*7+_ 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4' ( 3`,V . )n 4' 4'h3b,V"  
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 +{ 
4' ( 3`,V 0`+{ 
4( ( 3`,V 1 +{ 
4( ( 3`,V 1`+| <4h,H+) 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4j,HZ<4,*7+) 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 +? 
4' ( 3`,V 0`+? 
4( ( 3`,V 1 +? 
4( ( 3`,V 1`+@ <4h,H+m 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4j,HZ<4,*7+m 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V   
4( ( 3`,V . )n 4' 4(h3b,V <4h,H 
4' ( 3`,V 1 + 
4' ( 3`,V 0`+ 
4( ( 3`,V 1 + 
4( ( 3`,V 1`+ <4l,H+1 
4( ( 3`,V  H2 
4' ( 3`,V  H26j20j,I/*6l20l,I/,(L.
j4ih4i <4j,H <4m,HZ<4,*7+1 
4( ( 3`,V  H2 
4' ( 3`,V  H2 
4( ( 3`,V  H3 
4' ( 3`,V  H36j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V @#
 4'6p30p,I/0$06r30r,I/2$2
.p4kh3b,V <4e,H <46,H+
M,
jf 
3d ( 8,V 5`9 <4m,H+
MZ<3~,*+< <4s,H+
MZ<4,*+? <4v,H,
jh <4z,H 
3b ( 3`,V  )n 3a 3jh3b,V 
3j 4. 5 , .
L 
RXLL .hL,K <5,! <5,H <3L,! <3M, )n 3M 5h3b,VZ<5,*+U+
M 
3b ( 3`,V $2 
5 ( 3`,V 3d+\+? 
5 ( 3`,V " @2 
3b ( 3`,V $2.&2 )n 3a 3bh3b,V 2 
3` ( 3`,V $2.&2 )n 3a 3`h3b,V:::!X2q,> 0**+3Z<3_,*+s+*Z<4,*+:::!X2x,> 0-I+3@@1 
4 ( 8,V . $2&5 
5 ( 3`,V % <5, <2, <3M, )n 3M 5h3b,V 
5 ( 3`,V 4`S@@1 
5 ( 8,V  
4  ( 8,V /` <5	,8 @2 
5	 ( 8,V  
4 ( 8,V /` <5	,82 <5
,83] <, <5
,@#
 4! 5h3b,V:::!X2#,> 0-I+3@@1 
5 ( 3`,V  
3d ( 8,V  <, 
5 ( 8,V %2 <,2 
4 ( 8,V $2&5`3] 5
,3]3] <, <5
,@#
 4! 5
h3b,V 
5
 ( 8,V &2@#
 4' 4Oh4P,V 
4O 5 5 , .
E 
SXLE .hE,K 
5
 ( 8,V " 
5 ( 3`,V $$P.& P )n 3a 5h3b,V <5,H <5,H 
5 ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <40,H 
5	 ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <5,H 
5 ( 3`,V  )n 3a 3jh3b,V 
3j 4. 5 , .
L 
RXLL .hL,K <5,! <5,HZ<5,)7+S <5,H @2"  
3d ( 8,V .@#
 4 3dh3b,V 2"  
4@ ( 8,V .@#
 4' 4@h3b,V 
5	 ( 8,V  H2 
5 ( 8,V  H26p20p,I/06r20r,I/2(R.p44(5H" 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,V 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V 4@S" 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,V 
5 ( 3`,V 4` @@1 
5 ( 8,V  
4  ( 8,V /` <5	,8 @2 
5 ( 8,V  
4 ( 8,V /` <5	,82 <5
,83] <, <5
,@#
 4! 5h3b,V:::!X2p,> 0-I+3@@1 
5 ( 3`,V  
3d ( 8,V  <, 
5 ( 8,V %2 <,2 
4 ( 8,V $2&5`3] 5
,3]3] <, <5
,@#
 4! 5
h3b,V 
5
 ( 8,V &2@#
 4' 4Oh4P,V 
4O 5 5 , .
E 
SXLE .hE,K 
5
 ( 8,V " 
5 ( 3`,V $$P.& P )n 3a 5h3b,V <5,H <5,H 
5 ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <40,H 
5 ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <5,H 
5 ( 3`,V  )n 3a 3jh3b,V 
3j 4. 5 , .
L 
RXLL .hL,K <5,! <5,HZ<5,)7+  <5,H @2"  
3d ( 8,V .@#
 4 3dh3b,V 2"  
4@ ( 8,V .@#
 4' 4@h3b,V 
5 ( 8,V  H2 
5 ( 8,V  H26p20p,I/06r20r,I/2(R.p44(5H" 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,V 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V 4@ " 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,V 
5 ( 3`,V 4`m@@1 
5 ( 8,V  
4  ( 8,V /` <5	,8 @2 
5 ( 8,V  
4 ( 8,V /` <5	,82 <5
,83] <, <5
,@#
 4! 5h3b,V:::!X2=,> 0-I+3@@1 
5 ( 3`,V  
3d ( 8,V  <, 
5 ( 8,V %2 <,2 
4 ( 8,V $2&5`3] 5
,3]3] <, <5
,@#
 4! 5
h3b,V 
5
 ( 8,V &2@#
 4' 4Oh4P,V 
4O 5 5 , .
E 
SXLE .hE,K 
5
 ( 8,V " 
5 ( 3`,V $$P.& P )n 3a 5h3b,V <5,H <5,H 
5 ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <40,H 
5 ( 8,V  )n 4 3jh3b,V 
3j 4. 4/ , .
L 
RXLL .hL,K <4/,! <5,H 
5 ( 3`,V  )n 3a 3jh3b,V 
3j 4. 5 , .
L 
RXLL .hL,K <5,! <5,HZ<5,)7+m <5,H @2"  
3d ( 8,V .@#
 4 3dh3b,V 2"  
4@ ( 8,V .@#
 4' 4@h3b,V 
5 ( 8,V  H2 
5 ( 8,V  H26p20p,I/06r20r,I/2(R.p44(5H" 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,V 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V 4@m" 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,VZ<5 ,)+o+
M,
jj <5 ,H <5&,H@@1 
5) ( 8,V  
5* ( 8,V /@#
 3c 5*h3b,V@@1   
45 ( 3`,V / )n 3| 5+h3b,V@@1 
5+ ( 8,V $ t 
5+ ( 3`,V $ t <, @2 
4* ( 8,V / $ "$ 2.2 @2 
5, ( 8,V $ "$ 2.2 @3 
5+ ( 8,V $ 2&5," 
5- ( 8,V $$2.$ ".3 @3 
5- ( 8,V $ 2&5, @4 
5+ ( 8,V $ 2&3^$ 2".4".3 @4 
4
 ( 3`,V $ ".4 @5 
5* ( 8,V $ }"$ 2.5&2 )n 4 5.h3b,V <5.,H 
5. ( 3`,V  )n 4 3jh3b,V 
3j 4. 53 , .
L 
RXLL .hL,K <54,! <54,H 
5+ ( 3`,V  )n 3| 3jh3b,V 
3j 4. 4: , .
L 
RXLL .hL,K <58,! <58,H <5:,H 
5+ ( 8,V  )n 4' 3jh3b,V 
3j 4. 4A , .
L 
RXLL .hL,K <4B,! <5;,H <5=,H 
4* ( 8,V  )n 4' 3jh3b,V 
3j 4. 4A , .
L 
RXLL .hL,K <4B,! <5>,H <5@,H 
5, ( 8,V  )n 4' 3jh3b,V 
3j 4. 4A , .
L 
RXLL .hL,K <4B,! <5B,H <5E,H 
5- ( 8,V  )n 4' 3jh3b,V 
3j 4. 4A , .
L 
RXLL .hL,K <4B,! <5H,H <5I,H 
5- ( 8,V  )n 5K 3jh3b,V 
3j 3m 5N , .
L 
RXLL .hL,K <5N,! <5O,H <5R,H 
4
 ( 3`,V  )n 4 3jh3b,V 
3j 4. 53 , .
L 
RXLL .hL,K <54,! 
5* ( 8,V 5@'+; <5U,H 
5* ( 8,V  )n 3c 3jh3b,V 
3j 4. 5X , .
L 
RXLL .hL,K <5Y,! <5Y,H 
5* ( 8,V 1`+: <5Z,H+; <5\,H,
jl <46,H <46,H <46,H <5^,H <5a,! 
4O 5a 5b .h5b,K 5c"5d3B+H 5c"5e2B+H+/ 5c"5f3B+L 5c"5g2B+M+-y <5g,H+;,
jnZ<3,*+R <5j,H+
M 
5o ( 8,V 5@W <5o,H+
M <5s,H <3L,! <3M, )n 3M 3Nh3b,V 
3N ( 3`,V 4 c 
3N ( 3`,V 3`3N+d+
M"  
5o ( 8,V .@#
 3c 5oh3b,V@@1 3O 
3N ( 3`,V / )n 3M 3Oh3b,VZ<3P,*+z  4$2 
3O ( 3`,V . )n 3M 3Oh3b,V@@1 
3O ( 3`,V &3P.4$ )n 3M 3Oh3b,V 
4  ( 8,V $2 )n 4! 4!h3b,V 
4 ( 8,V $2 )n 4! 4"h3b,V 
3O ( 3`,V &4"&2@#
 4 4#h3b,V@@1 
3O ( 3`,V .4$&3S&2 )n 3c 4$h3b,V@@1 
4$ ( 3`,V  H2 *6l20l,I/,(L.
j4% ( 3`,V  
4# ( 8,V  H2 *6l20l,I/,(L.
j4% ( 3`,V / @3 
3O ( 3`,V  
4# ( 8,V $2/%3 
4# ( 8,V  H3 *6l30l,I/,(L.
j4% ( 3`,V $2)n <4",&$t )n 3a 4%h3b,V@@1 
4$ ( 3`,V  H2 *6l20l,I/,(L.
j4% ( 3`,V  
4# ( 8,V  H2 *6l20l,I/,(L.
j4% ( 3`,V / @3 
3O ( 3`,V  
4# ( 8,V $2/%3 
4# ( 8,V  H3 *6l30l,I/,(L.
j4% ( 3`,V $2)n <4",&$t )n 3a 4&h3b,V <5u,H,
jp 
4% ( 3`,V $ t 
4! ( 3`,V . )n 4! 4!h3b,V 
4& ( 3`,V $ t 
4" ( 3`,V . )n 4! 4"h3b,V@@1 
4! ( 3`,V .4&&2 )n 4' 4'h3b,V@@1 
4" ( 3`,V .4&&2 )n 4' 4(h3b,V 
4' ( 3`,V 1 +! 
4' ( 3`,V 0`+! 
4( ( 3`,V 1 +! 
4( ( 3`,V 1`+!+#u 
4! ( 3`,V  )n 4! 3jh3b,V 
3j 3m 5z , .
L 
RXLL .hL,K <5z,! <5{,H 
4" ( 3`,V  )n 4! 3jh3b,V 
3j 3m 5z , .
L 
RXLL .hL,K <5{,!@@1 
4! ( 3`,V . PH&2 )n 4' 5|h3b,V@@1 
4! ( 3`,V .5|&2 )n 4' 5}h3b,V 
5| ( 3`,V  
5} ( 3`,V 3D+!K+ n@@1 
4" ( 3`,V . PH&2 )n 4' 5|h3b,V@@1 
4" ( 3`,V .5|&2 )n 4' 5}h3b,V 
5| ( 3`,V  
5} ( 3`,V 3D+!_+ n 
4( ( 3`,V  H2 
4' ( 3`,V  H26p20p,I/06r20r,I/2(R.p44 52@+!m+ n 
4( ( 3`,V  H2 
4' ( 3`,V  H26p20p,I/06r20r,I/2(R.p44 5~2@+!| <5~,H+#u 
4( ( 3`,V  H2 
4' ( 3`,V  H26p20p,I/06r20r,I/2(R.p44 63@+"
+"f <6,H @2"  
5* ( 8,V .@#
 3c 5*h3b,V 2"  
6 ( 8,V .@#
 4 6h3b,V 
4( ( 3`,V  H2 
4' ( 3`,V  H26p20p,I/06r20r,I/2(R.p44(5H"  
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,VZ<4,*7+"e 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V 4`"e"  
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,V+#u,
jr @2"  
3d ( 8,V .@#
 4 3dh3b,V 2"  
4@ ( 8,V .@#
 4' 4@h3b,V <5,H 
4@ ( 8,V 5@"y+o 
5 ( 8,V  
4' ( 3`,V 2D+# 
5	 ( 8,V  
4( ( 3`,V 2D+# 2
 Df 
5 ( 8,V  
4' ( 3`,V 2D+# 
5 ( 8,V  
4( ( 3`,V 2D+# 2
 Df 
5 ( 8,V  
4' ( 3`,V 2D+#  
5 ( 8,V  
4( ( 3`,V 2D+#  2
 Dg 
4( ( 3`,V  H2 
4' ( 3`,V  H26p20p,I/06r20r,I/2(R.p44(5H" 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,VZ<4,*7+#l 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V 4`#l" 2 
4J ( 3`,V  H2 
4J ( 3`,V  H26j20j,I/*$*6l20l,I/,$,
.
j4k ( 8,V .@#
 4'6p20p,I/0$06r20r,I/2$2
.p4kh3b,V 
3d ( 8,V 4`#s:::!X2#s,> 0**+3Z<3_,*+#u+*+
M,
jt <6,H   
5, ( 8,V .@#
 4' 5,h3b,V 
3d ( 8,V 4`$:::!X2$,> 0**+3Z<3_,*+$+*+
M,
jvZ<4,*+$ <6
,H+
M <6,H 
6 ( 6,V  )n 6 6h6,V 
6 6 6 , .
L 
RXLL .hL,K <6,! <6,H <6,! <3M, )n 6 6h6,VZ<6,*+$ +
M 
6 ( 6,V $2 
6 ( 6,V 3d+$'+$ 
6 ( 6,V &2 )n 6 6h6,V 
6 ( 6,V  
6 ( 6,V / )n 6 6h6,V+
M,
jxZ<6,*+$: <6,H+
M <6",H <6$,H <6%,H <6(,H 
6) ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,! <6-,H 
60 ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,! <60,H 
62 ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,! <63,H 
65 ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,! <65,H 
68 ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,! <68,H 
6: ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,! <6;,H 
6= ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,! <6=,H 
6? ( 6,V  )n 6* 6h6,V 
6 6 6, , .
L 
RXLL .hL,K <6-,!+
M,
jzZ<6@,*+%) <6@,H+
M <6B,H <6F,! <30,@#
 6G 6Gh6,V 
6G ( 8,V 5@%3+%> 
6G ( 8,V 1f5f%6+%8+&+&l+'1 <6H,H <6L,H <6O,H <6Q,H <6T,H+%%,
j| <6V,H <6\,H <6a,HZ$d6gZ$d6g,
j~ @2   
6h ( 8,V .@#
 6h 6hh6,V 2   
6i ( 8,V .@#
 6h 6ih6,V <6$,H 
6h ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,!,
j 
6i ( 8,V  H2 
6h ( 8,V  H26j20j,I/*6l20l,I/,(L.
j6kh6k <5{,H <6l,H   
6i ( 8,V .@#
 6h 6ih6,V 
6i ( 8,V 0 +%z+%`Z$d6g 
6h ( 8,V 1@+%+%D <6$,H <6l,H+
M,
j <6r,H 
6u ( 8,V  )n 6u 6h6,V 
6 6 6w , .
L 
RXLL .hL,K <6w,! <6x,H 
6{ ( 6,V  )n 6* 6h6,V 
6 6 6} , .
L 
RXLL .hL,K <6~,! <6~,H 
7 ( 8,V  )n 6G 6h6,V 
6 6 7 , .
L 
RXLL .hL,K <7,! <7,H 
7 ( 8,V  )n 6u 6h6,V 
6 6 6w , .
L 
RXLL .hL,K <6w,! <7,H 
7 ( 8,V  )n 6u 6h6,V 
6 6 6w , .
L 
RXLL .hL,K <6w,! <7,H 
7 ( 8,V  )n 6u 6h6,V 
6 6 6w , .
L 
RXLL .hL,K <6w,! <7,H 
7 ( 8,V  )n 7 6h6,V 
6 7 7 , .
L 
RXLL .hL,K <7,! <7,H 
7 ( 6,V  )n 7 6h6,V 
6 6 7 , .
L 
RXLL .hL,K <7,! <6$,H+$6,
j 
7 ( 8,V $2 )n 7 7h6,V 
7 ( 8,V $2 )n 7 7h6,V 
7 ( 6,V 4`' 
7  ( 8,V $2 )n 7 7 h6,V 
7! ( 8,V $2 )n 7 7!h6,V:::!X2',> 0('+3 
7" ( 6,V 4`' 
7" ( 8,V $2 )n 7 7 h6,V 
7# ( 8,V $2 )n 7 7!h6,V:::!X2',> 0('+3 
7# ( 6,V 4`'0 
7$ ( 8,V $2 )n 7 7 h6,V 
7$ ( 8,V $2 )n 7 7!h6,V:::!X2'0,> 0('+3+
M,
j 
7% ( 6,V  )n 7% 7&h7&,V 
7& 7) 7* , .
E 
SXLE .hE,K 
7* (@nh7++'K 
7, ( 6,V  )n 7 7&h7&,V 
7& 7* 7/ , .
E 
SXLE .hE,K+'p 
7/ (@nh7++'Y 
7, ( 6,V  )n 6* 7&h7&,V 
7& 7/ 72 , .
E 
SXLE .hE,K+'p e5@'e 
7, ( 6,V  )n 6 7&h7&,V 
7& 74 75 , .
E 
SXLE .hE,K+'p 
7, ( 6,V  )n 6u 7&h7&,V 
7& 77 77 , .
E 
SXLE .hE,K,
j <78,H <7:,H <7:,H 
7 ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,! <7<,H 
7 ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <7<,! <7=,H <7@,! <5
, )n 7 7h6,V <7@,! <5
, )n 7 7h6,V <7@,! <5
, )n 7 7 h6,V <7A,! <5
, )n 7 7!h6,V:::!X2(&,> 0('+3+
M,
j
,
j@@1 
7 ( 6,V  
7  ( 6,V / )n 7 7Ah6,V@@1 
7! ( 6,V  
7 ( 6,V / )n 7 7Bh6,V 
7A ( 6,V &4"&2@#
 6h 6hh6,V 
7B ( 6,V &4"&2@#
 6h 6ih6,V 
7A ( 6,V 5@(O 
7B ( 6,V 5@(O <7B,H+
MZ<7D,)+(SZ<7D,*7+(S+(_Z<7D,)7+(WZ<7D,)+(W+)Z<7D,*+([Z<7D,)7+([+)GZ<7D,*7+(_Z<7D,*+(_+)L,
j 7E )n 6 7Eh6,V,
j 
6i ( 8,V  
6h ( 8,V 3$+(p 
6i ( 8,V  
6h ( 8,V 2D+(q+)@@1 
6h ( 8,V  
6i ( 8,V / 
6h ( 8,V . 
6h ( 8,V $2 <, 
7E ( 6,V . )n 6 7Eh6,V+)Q,
j@@1 
6h ( 8,V  
6i ( 8,V $2 <, 
7E ( 6,V . )n 6 7Eh6,V+)Q,
j 7F )n 6 7Eh6,V,
j 
6h ( 8,V  
6i ( 8,V 3$+)$ 
6h ( 8,V  
6i ( 8,V 2D+)%+)8@@1 
6i ( 8,V  
6h ( 8,V / 
6i ( 8,V . 
6i ( 8,V $2 <, 
7E ( 6,V . )n 6 7Eh6,V+)Q,
j@@1 
6i ( 8,V  
6h ( 8,V $2 <, 
7E ( 6,V . )n 6 7Eh6,V+)Q,
j 7F )n 6 7Eh6,V+(c,
j 7G )n 6 7Eh6,V+),
j @@1 
7E ( 6,V /7E%   7G$2)n <3M, )n 6 7Hh6,VZ<7H,*+)e  4$2 
7H ( 6,V . )n 6 7Hh6,V <7I,H 
7H ( 6,V  )n 6 6h6,V 
6 7 7M , .
L 
RXLL .hL,K <7M,!@@1 
7B ( 6,V `3] <7N,8 @2 
7A ( 6,V `3] <7N,82 <7N,83] <, <5
,@#
 7 7Oh6,V <7O,H 
7O ( 8,V  )n 7 6h6,V 
6 7 7S , .
L 
RXLL .hL,K <5{,!7@+*>[x2P:,J>:+2,
j",
j& <6$,H <6$,H <7S,H <7W,H <7[,H 
6u ( 8,V  )n 6u 6h6,V 
6 6 6w , .
L 
RXLL .hL,K <7],! <7],H <7a,H+/,
j(,
j, 7e2B8+*-+-B 
7e ( 8,V 5@*1+-D 
7 ( 6,V 4`+6@@1 
7  ( 8,V  
7 ( 8,V /` <7N,8 @2 
7! ( 8,V  
7 ( 8,V /` <7N,82 <7N,83] <, <5
,@#
 7 7Oh6,V:::!X2*M,> 0-I+3@@1 
7 ( 6,V  
7O ( 8,V )n @7f  <,2 
7g ( 8,V $2&7g.7h`3] 7h,3]3] <, <5
,@#
 7 7ih6,V 
7i ( 8,V  
7 ( 8,V %2)n <2, <4",@#
 7 7h6,V 
7i ( 8,V &2@#
 6u 7&h7&,V 
7& 7j 7k , .
E 
SXLE .hE,K 
7i ( 8,V " @2 
6 ( 6,V $2.&2 )n 6 6h6,V 2 
6 ( 6,V $2.&2 )n 6 6h6,V <7k,H <7m,H <7n,H 
7  ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,! <7<,H 
7! ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,! <7q,H 
6 ( 6,V  )n 6 6h6,V 
6 6 6 , .
L 
RXLL .hL,K <7r,! <7s,H 
7" ( 6,V 4`,<@@1 
7" ( 8,V  
7 ( 8,V /` <7N,8 @2 
7# ( 8,V  
7 ( 8,V /` <7N,82 <7N,83] <, <5
,@#
 7 7Oh6,V:::!X2+S,> 0-I+3@@1 
7" ( 6,V  
7O ( 8,V )n @7f  <,2 
7g ( 8,V $2&7g.7h`3] 7h,3]3] <, <5
,@#
 7 7ih6,V 
7i ( 8,V  
7 ( 8,V %2)n <2, <4",@#
 7 7h6,V 
7i ( 8,V &2@#
 6u 7&h7&,V 
7& 7j 7k , .
E 
SXLE .hE,K 
7i ( 8,V " @2 
6 ( 6,V $2.&2 )n 6 6h6,V 2 
6 ( 6,V $2.&2 )n 6 6h6,V <7k,H <7m,H <7n,H 
7" ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,! <7<,H 
7# ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,! <7q,H 
6 ( 6,V  )n 6 6h6,V 
6 6 6 , .
L 
RXLL .hL,K <7r,! <7s,H 
7# ( 6,V 4`-A@@1 
7$ ( 8,V  
7 ( 8,V /` <7N,8 @2 
7$ ( 8,V  
7 ( 8,V /` <7N,82 <7N,83] <, <5
,@#
 7 7Oh6,V:::!X2,X,> 0-I+3@@1 
7# ( 6,V  
7O ( 8,V )n @7f  <,2 
7g ( 8,V $2&7g.7h`3] 7h,3]3] <, <5
,@#
 7 7ih6,V 
7i ( 8,V  
7 ( 8,V %2)n <2, <4",@#
 7 7h6,V 
7i ( 8,V &2@#
 6u 7&h7&,V 
7& 7j 7k , .
E 
SXLE .hE,K 
7i ( 8,V " @2 
6 ( 6,V $2.&2 )n 6 6h6,V 2 
6 ( 6,V $2.&2 )n 6 6h6,V <7t,H <7m,H <7n,H 
7$ ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,! <7<,H 
7$ ( 8,V  )n 6h 6h6,V 
6 6 6j , .
L 
RXLL .hL,K <6j,! <7q,H 
6 ( 6,V  )n 6 6h6,V 
6 6 6 , .
L 
RXLL .hL,K <7r,! <7s,H+-D,
j. <7v,H,
j07@+-I>[x2P:,J>:+2,
j2,
j6@@1 
7z ( 8,V &7N@#
 7 7zh6,V@@1 
7z ( 8,V $ &2@#
 7 7{h6,V 
7z ( 8,V  
7{ ( 8,V 3D+-e   
7z ( 8,V .@#
 7 7zh6,V 
7{ ( 8,V  
7z ( 8,V % <2,@#
 7 7zh6,V 
7z ( 8,V &7|& 2@#
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		* UNITED FEDERATION OF PLANETS    *
		* STARFLEET COMMAND		  *
		* FLEET OFFICER TRAINING ACADEMY  *
		* TRAINING PROGRAM 16G.4	  *
		* COBOL VERSION BY KAY R. FISHER  *
 
DO YOU WANT INSTRUCTIONS (THEY ARE LONG)? H@2H2H5@!Ms$H5$H.r$H.]<$H.\$H.PLEASE ANSWER YES OR NO!
      INSTRUCTIONS
THIS IS A SIMULATION PROGRAM DESIGNED TO MEASURE
YOUR ABILITY TO (1) UTILIZE AVAILABLE RESOURCES.
(2) NAVIGATE A STARSHIP.  (3) ENGAGE IN THEORETICAL
COMBAT.  AND (4) CORRECTLY AND EFFICIENTLY
RESPOND TO THE UNKNOWN.
YOUR EFFICIENCY RATING ON THIS EXAM WILL BECOME A
PERMINENT PART OF YOUR SERVICE RECORD AND
WILL BE CONSIDERED DURING BOARDS CONVENING
FOR PROMOTION AND ASSIGNMENT.
SHOULD YOU SUCCEED IN YOUR MISSION AND YOUR EFFICIENCY
RATING IS WITHIN THE TOP 5 EVER RECORDED - YOU WILL
RECEIVE A SPECIAL COMMENDATION AND YOUR NAME
WILL BECOME A PERMINENT PART OF THIS PROGRAM.
	PROGRAM 16G.4 HONOR RECORD
	******************************************
	NAME			ASSIGNMENT
	CHRISTOPHER PIKE	STARFLEET ADMIRAL (RETIRED)
	JAMES T. KIRK		COMMANDING USS ENTERPRISE
	TOM SPEAKE		INSTRUCTOR - DEC
	KAY R. FISHER		PROGRAMMER - DEC
	BILL WALKER		COURSE DEVELOPER - DEC
I.	YOU ARE THEREFORE POSTED, EFFECTIVE IMMEDIATELY,
	TO COMMAND THE FOLLOWING:
		THE U.S.S. EXETER
		STARSHIP CLASS - GROSS 190,000 TONS
		CREW COMPLEMENT - 430 PERSONS
		DRIVE - SPACE-WARP
		RANGE - 18 YEARS AT LIGHT-YEAR VELOCITY
		REGISTRY - EARTH, UNITED SPACESHIP
II.	NATURE AND DURATION OF MISSION:
	SEEK OUT AND DESTROY ALL ENEMY KLINGON VESSEL'S,
	WITHIN 30 STARDATES.
III.	YOU WILL PATROL THE NINTH FEDERAL GALAXY, BEGINNING
	WITH ALPHA CENTAURI AND EXTENDING TO THE OUTER
	PINIAL GALAXY LIMIT.
THE GALAXY IS DIVIDED INTO AN 8,8 QUADRANT GRID
THE CAST OF CHARACTERS IS AS FOLLOWS:
<*> = EXETER
+++ = KLINGON
>!< = STARBASE
 *  = STAR
COMMAND 0 = WARP ENGINE CONTROL:
  COURSE IS IN A CIRCULAR NUMERICAL        360
  VECTOR ARRANGEMENT AS SHOWN.              !
  INTEGER AND REAL VALUES MAY BE            !
  USED.  THEREFORE COURSE 90.5 IS     270 ----- 90
  HALF WAY BETWEEN 90 AND 91.               !
  A VECTOR OF 360 IS THE SAME AS 0.         !
  ONE WARP FACTOR IS THE SPEED OF          180
  LIGHT. HOWEVER WARP 3 = 27 TIMES THE
  SPEED OF LIGHT & MAX SPEED (WARP 8) IS EQUAL TO
  512 TIMES THE SPEED OF LIGHT.  WARP TO THE 3RD
  POWER GIVES SPEED RELATIVE TO LIGHT.  A ONE QUADRANT
  MOVE REQUIRES A WARP FACTOR OF 4.  THEREFORE TO GET
  FROM QUADRANT 6,5 TO 5,5 YOU WOULD
  USE COURSE 0. WARP FACTOR 4.
COMMAND 1 = SHORT RANGE SENSOR SCAN
  PRINTS THE QUADRANT YOU ARE CORRENTLY IN.  INCLUDING
  STARS, KLINGONS, STARBASES, AND THE EXETER.
  ALONG WITH OTHER PERTINATE INFORMATION.
COMMAND 2 = LONG RANGE SENSOR SCAN
  SHOWS CONDITIONS IN SPACE FOR ONE QUADRANT ON EACH SIDE
  OF THE EXETER IN THE MIDDLE OF THE SCAN.  THE SCAN
  IS CODED IN THE FORM "KBS", WHERE K IS THE NUMBER
  OF KLINGONS, B IS THE NUMBER OF STARBASES, AND S IS
  THE NUMBER OF STARS.
COMMAND 3 = PHASER CONTROL
  ALLOWS YOU TO DESTROY THE KLINGONS BY HITTING THEM WITH
  SUITABLY LARGE NUMBERS OF ENERGY UNITS TO DEPLETE THEIR
  SHIELD POWER.  KEEP IN MIND THAT WHEN YOU SHOOT AT THEM.
  THEY GONNA SHOOT AT YOU, TOO!
COMMAND 4 = PHOTON TORPEDO CONTROL
  COURSE IS THE SAME AS USED IN WARP ENGINE CONTROL.
  IF YOU HIT THE KLINGON, HE IS DESTROYED AND CANNOT FIRE
  BACK AT YOU.  IF YOU MISS, YOU ARE SUBJECT TO HIS
  PHASER FIRE.
  NOTE:  THE LIBRARY COMPUTER (COMMAND 7) HAS AN OPTION
  TO COMPUTE TORPEDO TRAJECTORY FOR YOU (OPTION 2).
COMMAND 5 = SHIELD CONTROL
  DEFINES NUMBER OF ENERGY UNITS TO BE ASSIGNED TO SHIELDS.
  ENERGY IS TAKEN FORM TOTAL SHIP'S ENERGY.
  NOTE:  TOTAL ENERGY INCLUDES SHIELD ENERGY.
COMMAND 6 = DAMAGE CONTROL REPORT
  GIVES THE STATE OF REPAIRS OF ALL DEVICES.  A STATE OF REPAIR
  LESS THAN ZERO SHOWS THAT THE DEVICE IS TEMPORALLY
  DAMAGED.
COMMAND 7 = LIBRARY COMPUTER
  THE LIBRARY COMPUTER CONTAINS THREE OPTIONS:
    OPTION 0 = CUMULATIVE GALACTIC RECORD
      WHICH SHOWS COMPUTER MEMORY OF THE RESULTS
      OF ALL PREVIOUS LONG RANGE SENSOR SCANS.
    OPTION 1 = STATUS REPORT
      WHICH SHOWS IMPORTANT INFORMATION REGARDING THE
      STATUS OF YOUR MISSION (EFFICIENCY RATING).
    OPTION 2 = PHOTON TORPEDO DATA
      GIVES TRAJECTORY AND DISTANCE BETWEEN THE
      EXETER AND ALL KLINGONS IN YOUR QUADRANT
    OPTION 3 = CALCULATOR
      CAN BE USED TO AID NAVIGATION OR DOCKING.
      ENTER COORDINATES (QUADRANT OR SECTOR)
      OF THE SHIP AND TARGET - IN SOURCE, DESTINATION
      FORMAT - EG...S,S,T,T
 
COMMAND 8 = BEGIN NEW CONTEST
  STARTS PROGRAM OVER AGAIN WITH ALL NEW DATA.
  USED TO CREATE MORE CHALLENGING SETUP - IE: MORE
  KLINGONS AND FEWER STARBASES!
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H6>@HAHBHBHCHRHRHgHCHDHEHS@HDYOU MUST DESTROY H2` H2@2&I 2 KLINGONS IN 30 STARDATES WITH `@2,I2 STARBASES!!!!
H?<V<W<VHHg$H2HVHXHXHW2HVH:   SHIELDS DANGEROUSLY LOW
COMBAT AREA      CONDITION RED
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g<`$H2H($H2IHEHFH^I>92I(;I(;I(<I(<I(=I(=I(>I(>SHIELDS DROPPED FOR DOCKING PURPOSES
)2seK{Y7H;*** SHORT RANGE SENSORS ARE OUT ***
SHORT RANGE SENSOR SCAN
------------------------
H2aW`@	H?@2aH$H	$	H	$	H
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      STARDATE     H@0?H
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@CONDITION2qHH@08@`@ t@2vHe` !P$@2y`@	 !He@2|`$@He@2H
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H$A@3QUADRANTH@HeH$H$H$H$  SECTORH9H@3I2,I@2`@      PHOTON TORPEDOS  H@9`@H:@3"H$H$H$H$      SHIELDS        H@ :H$H$H$H$@COMMAND:@2HF0 = WARP ENGINE CONTROL
1 = SHORT RANGE SENSOR SCAN
2 = LONG RANGE SENSOR SCAN
3 = PHASER CONTROL
4 = PHOTON TORPEDO CONTROL
5 = SHIELD CONTROL
6 = DAMAGE CONTROL REPORT
7 = LIBRARY COMPUTER
8 = BEGIN NEW CONTEST
COURSE (0-360)? @PPd@HGUj*:J@HHIPHWARP FACTOR (0-8)? @@kaHItWARP DRIVE IS DISABLED!
IMPULSE ENGINES ACTIVATED
MAXIMUM SPEED = WARP 1
%B !pHJI :H@@H:@HMaW@HNHVINSUFFICIENT ENERGY AVAILABLE FOR WARP FACTOR@H2`  !H3@3kI@P3THE EXETER IS DEAD IN SPACE.  IF YOU SURVIVE ALL IMPENDING
ATTACKS YOU WILL BE DEMOTED TO THE RANK OF PRIVATE.
I(;H;@I(;H;I(<H<I(<H<I(=H=I(=H=I(>H>I(>H>H6DAMAGE CONTROL REPORTS DAMAGE TO >@HN
HOH\@WARP DRIVE.
SHORT RANGE SENSORS.
LONG RANGE SENSORS.
PHASERS.
PHOTON TUBES.
DAMAGE CONTROL.
SHIELD CONTROL.
COMPUTER.
CONDITION IMPROVED ON HOSHIELDS.
HCHBH@HTHU1@HQHRB HQHHPHP!@HSHS@H^WARP ENGINES SHUTDOWN AT SECTOR  H2@4.I2, DUE TO BAD NAVIGATION
8)p$H43HHH?H@I(@ 
IT IS STARDATE `	 "4@48I@@2YOU RAN OUT OF TIME.
THERE ARE STILL HD` @4@I 2 KLINGON BATTLE CRUISERS.
YOU CAN HAVE ANOTHER CHANCE....TURKEY!
HAHBLONG RANGE SENSORS ARE INOPERABLE
H2aW`@` t@4VHe` !P$@4Y`@	 !He@4[`$@He@4^LONG RANGE SENSOR SCAN FOR QUADRANT H@He-------------------
: 000 HHg$HwHw HgHx000 :
 :
SHORT RANGE SENSORS REPORT NO KLINGONS IN THIS QUADRANT
PHASERS NOT OPERATIONAL
COMPUTER FAILURE HAMPERS ACCURACY
PHASERS LOCKED ON TARGET.  ENERGY AVAILABLE = `	  !@4I@02NUMBER OF UNITS TO FIRE? HZIPZ2po?Hff
fLn5JHL2HK` HL@5 !@5I02 LEFT)
I f*** KLINGON DESTROYED ***
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fI fHgg
gI gHDTHE LAST KLINGON BATTLE CRUISER HAS BEEN DESTROYED
THE FEDERATION HAS BEEN SAVED!
HDHEH\H[HCHEH^H]H[YOUR EFFICIENCY RATING = `	 " 
YOU KILLED  KLINGONS
YOU MADE  NAVIGATION ERRORS
YOU FIRED  PHOTON TORPEDOS THAT MISSED
YOU DOCKED AT STARBASES  TIMES
YOUR STARSHIP ENDURED @`	 	 @5LIP3 UNITS OF ENEMY PHASER FIRE
YOUR DAMAGE SEVERITY FACTOR WAS ALSO YOU DESTROYED `@5WI2 STARBASES YOU TURKEY!
 TURKEY!
DO YOU WANT TO TRY AGAIN? H@2H5@!Ms$H5$H5cr$H5d]<$H5e\$H5fPLEASE ANSWER YES OR NO!
PHOTON TORPEDO TUBES ARE NOT OPERATIONAL
H9ALL PHOTON TORPEDOS EXPENDED
TORPEDO COURSE (0-360)? TORPEDO TRACK:
`$  P$@5wIX3   I@X3H_qXH`($H5}YOU CAN'T DESTROY STARS, TURKEY
<`$H6*** STARBASE DESTROYED ***......CONGRATULATIONS
HWTORPEDO MISSED
SHIELD CONTROL IS NON-OPERATIONAL
ENERGY AVAILABLE = H@@@H2aW`	  !H2@6I@02NUMBER OF UNITS TO SHIELDS? @P@HYIPYH:HMI(=DAMAGE CONTROL REPORT IS NOT AVAILABLE
DAMAGE CONTROL REPORT:
 
DEVICE			STATE OF REPAIR
WARP DRIVE		H;@`P$@6*I@82SHORT RANGE SENSORS	H;LONG RANGE SENSORS	H<PHASER CONTROL		H<PHOTON TORPEDO TUBES	H=DAMAGE CONTROL		H=SHIELD CONTROL		H>LIBRARY COMPUTER	H>I(>COMPUTER DISABLED
COMPUTER ACTIVE AND AWAITING COMMAND? @@HFFUNCTIONS AVAILABLE FROM COMPUTER
0 = CUMULATIVE GALACTIC RECORD
1 = STATUS REPORT
2 = PHOTON TORPEDO DATA
3 = CALCULATOR
COMPUTER RECORD OF GALAXY FOR ALL LONG RANGE SENSOR SCANS
    1     2     3     4     5     6     7     8
   ----- ----- ----- ----- ----- ----- ----- -----<R<RHR@HR @6iI2HHx$HH   ----- ----- ----- ----- ----- ----- ----- -----
NUMBEROFIKLINGONSBLEFT=HD@`@6vI@ 2NUMBER OF STARDATES LEFT = H@`	 "4@6{I@@2NUMBER OF STARBASES LEFT = HE`@7I@2NUMBER OF NAVIGATION ERRORS = H^NUMBER OF TORPEDO MISSES = HNUMBER OF STARBASE VISITS = H^SUM OF PHASER HITS = H]@`	 	 H3@7I@P3DAMAGE SEVERITY FACTOR = H\@`	 " 
fHdHff
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gHB@H2aW`@A` t@7-He` !P$@70`@	 !He@72`$@He@75YOU ARE AT QUADRANTHHe      SECTOR ,I@2SHIP AND TARGET COORDINATES ARE? H@HHTHUGET SERIOUS
IHUIHTB3HH[F`KLUO`-HGIPGDIRECTION=`	H"EHAS BEEN DESTROYED.  THE
FEDERATION WILL BE CONQUERED.
THERE ARE STILL I 2 KLINGON BATTLE CRUISERS LEFT.
YOU GET ANOTHER CHANCE....TURKEY!
I>92HV:!mhH62=@2HK` HL@7iKLINGON ATTACK
HL UNIT HIT ON EXETER FROM SECTOR      (I02 LEFT)
KLINGON-ATTACK
STARBASE SHIELDS PROTECT THE EXETER
H7H7H8H6'