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Jan |
Feb |
Mar |
Apr |
May |
Jun |
Jul |
Aug |
Sep |
Oct |
Nov |
Dec |
| 1954 |
A Program
for Translation of Mathematical Equations for Whirlwind I. |
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| 1959 |
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Miniature
Packaging of Electronics in Three-Dimensional Form |
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| 1960 |
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Design
Principles for a General Control Computer |
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| 1961 |
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25-
"I believe that this nation should commit itself..." |
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First MIT inst. lab contract awarded |
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| 1962 |
Computer
Displays |
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A Digital
Control Computer Developmental Model 1B |
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Astronauts'
Guidance and Navigation Course Notes |
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| 1963 |
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General
Design Characteristics of the Apollo Guidance Computer
Logical
Description for the Apollo Guidance Computer (AGC4) |
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The Apollo
Guidance Computer |
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Some
Aspects of the Logical Design of a Control Computer: A Case Study |
| 1964 |
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A Manual
LEM Backup Guidance System.
Technical
Development Status of Apollo Guidance and Navigation |
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Human
Performance during a Simulated Apollo Mid-Course Navigation Sighting
Integrated
Circuits in Military Equipment |
Types of Integrated Circuits |
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The
Compleat Sunrise being a description of Program Sunrise (Sunrise 33 - NASA
DWG# 1021102) |
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More Apollo
Guidance Flexibility Sought (art)
Management
Procedures in Computer Programming for Apollo - Interim Report
Progress
Report on Attainable Reliability of Integrated Circuits for Systems
Application |
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| 1965 |
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Organization of Computation and Control in the Apollo Guidance Computer
Users Guide
to the Block II AGC/LGC Interpreter |
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Apollo
Spacecraft Guidance System
Space
Navigation Guidance and Control. Volume I.
Space Navigation Guidance and Control. Volume II.
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Digital
Development Memo #267: Vlock II Keyboard and Display Program |
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The
Application of Failure Analysis in Procuring and Screening of Integrated
Circuits |
LEM
Guidance Computer Programs to be Supplied by MIT |
A Case
history of the AGC Integrated Logic Circuits
Hybrid
Simulation of the Apollo Guidance and Navigation System |
| 1966 |
Keyboard
and Display Program and Operation |
Whole
Number Strapdown Computations |
A Manually
Retargeted Automatic Descent and Landing System for LEM |
Use of Body
Mounted Inertial Sensors in an Apollo Guidance, Navigation and Control
System |
An
Automated Documentation Technique for Integrating Apollo Crew Procedures and
Computer Logic
Apollo
Command and Service Module Reaction Control by the Digital Autopilot |
Case
History of the Apollo Guidance Computer |
AGC4 Memo #
9 - Block II Instructions |
25-
AS-202 ("Apollo 3") |
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Guidance
System Operations Plan, AS - 278: Vol. 1, CM GNCS Operations |
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Block II
AGC Self-Check and Show-Banksum
Hybrid
Simulation of the Apollo Guidance Navigation and Control System |
| 1967 |
AGC4 Basic
Training Manual. Volume I of II
Apollo
Guidance and Navigation Lunar Module Student Study Guide
Man-Machine
Simulations for the Apollo Navigation, Guidance, and Control System. |
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A
Multiprocessing Structure
Man-Computer Interface for the Apollo Guidance, Navigation and Control
System |
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Keyboard
and Display Program and Operation |
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Computer
Controlled Steering of the Apollo Spacecraft |
Man-Machine
Design for the Apollo Navigation, Guidance and Control System. |
Apollo
Guidance Software Development and Validation Plan |
9-
AS-501 (Apollo 4) |
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| 1968 |
22-
AS-204 (Apollo 5) |
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4-
AS-502 (Apollo 6)
Apollo CMC/LGC
Software Development Plan
Computer-Controlled Steering of the Apollo Spacecraft |
Computer-Aided Inertial Platform Realignment in Manned Space Flight |
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Man/Machine
Allocation in the Apollo Navigation, Guidance, and Control System |
Recovery
from Transient Failures of the Apollo Guidance Computer |
Final
Report: Apollo Guidance Software Task Force |
11-22- AS-205 (Apollo 7)
Colossus 1A
Assemble Revision 249 |
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21-27- SA-503 (Apollo 8) |
| 1969 |
Apollo 8
Proves Value of Onboard Control (art) |
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3-13 AS-504 (Apollo 9) |
Apollo
Navigation, Guidance, and Control Systems: A Progress Report. |
18-26 AS-505 (Apollo 10) |
Apollo
Guidance and Control System Flight Experience. |
16-24 SAS506 (Apollo 11) |
The
Indispensible Men (art)
Strict
Control Kept Out Semiconductor Flaws (art) |
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Lunar
Module Computer Problems (continued) (art) |
14-24 AS-507 (Apollo 12) |
Luminary
131 (1C) source code |
| 1970 |
A
Comprehensive Digital Simulation for the Verification of Apollo Flight
Software
Man-Machine
Design for the Apollo Navigation, Guidance, and Control System--Revisited:
Apollo, A Transition in the Art of Piloting a Vehicle. |
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11-17 AS-508 (Apollo 13) |
A
Fault-Tolerant Information Processing System for Advanced Control, Guidance,
and Navigation |
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A
Fault-Tolerant Information Processing Concept for Space Vehicles. |
| 1971 |
31 Jan-9 Feb AS-509 (Apollo 14) |
Control of
Flight Software Development Costs
MIT's Role
in Project Apollo, Vol. V: The Software Effort. |
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26 Jul-7 Aug AS-510 (Apollo 15) |
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MIT's Role
in Project Apollo, Vol. I: Project Management, Systems Development,
Abstracts and Bibliography. |
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| 1972 |
Reliability
History of the Apollo Guidance Computer |
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16-27 AS-511 (Apollo 16) |
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A Model of
the Cost of Software Development for the Apollo Spacecraft Computer |
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MIT's Role
in Project Apollo, Vol. III: Computer Subsystem |
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6-19 AS-512 (Apollo 17) |
| 1973 |
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25 May-22 Jun (SL2) |
23 Jul-25 Sep (SL3) |
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16 Nov-8 Feb (SL4)... |
| 1974 |
...16 Nov-8 Feb (SL4) |
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| 1975 |
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15-24 (ASTP) |
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| 1976 (see ND) |
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The History
of Apollo On Board Guidance and Navigation |
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| 1978 |
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Apollo/Skylab ASTP and Shuttle Orbiter Major End Items |
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| 1982 |
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The Apollo
Guidance Computer - A Designer's View |
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| 2000 |
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From the
Farm to Pioneering with Digital Computers: An Autobiography |
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| No Date |
The
Evolution of Flight Control of the Apollo Mission(1976)
YUL System
- Pass 0 source code |