Orbital mechanics - Study guides, Class notes & Summaries

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Orbital Mechanics for Engineering Students 4th Edition By Howard Curtis (Solution Manual)
  • Orbital Mechanics for Engineering Students 4th Edition By Howard Curtis (Solution Manual)

  • Exam (elaborations) • 43 pages • 2023
  • Orbital Mechanics for Engineering Students, 4e Howard Curtis (Solution Manual) Orbital Mechanics for Engineering Students, 4e Howard Curtis (Solution Manual)
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AE2104-11: Flight and Orbital Mechanics (23 January 2024
  • AE2104-11: Flight and Orbital Mechanics (23 January 2024

  • Exam (elaborations) • 7 pages • 2024
  • Exam AE2104-11: Flight and Orbital Mechanics (23 January 2013, 09.00 – 12.00) Please put your name, student number and ALL YOUR INITIALS on your work. Answer all questions and put your name on each page of your exam. This exam consists of questions: 1, 2, 3, 4, 5a-h, 6a-d, 7, 8a-f Derive the expressions for each required calculation (unless mentioned in the file ‘equations by heart’, for the orbital mechanics part). For the open questions, the way the answer is obtained should ...
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Flight and Orbital Mechanics JANUARY 2023
  • Flight and Orbital Mechanics JANUARY 2023

  • Exam (elaborations) • 5 pages • 2024
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  • Flight and Orbital Mechanics Exam AE2104: Flight and Orbital Mechanics (27 January 2011) Remarks: Please put your name and ALL YOUR INITIALS on your work. Answer all questions and put your name on each page of your exam. This exam consists of questions: 1a-b, 2a-g, 3a-e and 4a-c, 5a-d, and 6a-f Derive the expressions for each required calculation. The way the answer is obtained should be clearly indicated by visibly substituting the numbers in the formulas. Only mentioning the fi...
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Flight and Orbital Mechanics  Exams JUNE 2023
  • Flight and Orbital Mechanics Exams JUNE 2023

  • Exam (elaborations) • 5 pages • 2024
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  • Exam AE2104: Flight and Orbital Mechanics (4 November 2011) Remarks: Please put your name, student number and ALL YOUR INITIALS on your work. Answer all questions and put your name on each page of your exam. This exam consists of questions: 1, 2, 3a-e, 4a-b, 5a-f, 6a-g, 7a-d Derive the expressions for each required calculation (unless mentioned in the file ‘equations by heart’, for the space part). The way the answer is obtained should be clearly indicated by visibly substitut...
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AE2104: Flight and Orbital Mechanics (2 February 2024
  • AE2104: Flight and Orbital Mechanics (2 February 2024

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  • sit exam AE2104: Flight and Orbital Mechanics (2 February 2012, 09.00 – 12.00) Please put your name, student number and ALL YOUR INITIALS on your work. Answer all questions and put your name on each page of your exam. This exam consists of questions: 1, 2, 3, 4a-h, 5a-d, 6a-d and 7a-i Derive the expressions for each required calculation (unless mentioned in the file ‘equations by heart’, for the orbital mechanics part). The way the answer is obtained should be clearly indicated...
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Flight and Orbital Mechanics  Exams MAY 2024
  • Flight and Orbital Mechanics Exams MAY 2024

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  • Flight and Orbital Mechanics
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ASCBC LAS1 Military Application of Orbital Mechanics fully solved
  • ASCBC LAS1 Military Application of Orbital Mechanics fully solved

  • Exam (elaborations) • 4 pages • 2024
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  • ASCBC LAS1 Military Application of Orbital Mechanics fully solved
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SPST 305 Orbital Mechanics SPST 305 Orbital Mechanics 2023 - ALL ANASWERS ARE CORRECT
  • SPST 305 Orbital Mechanics SPST 305 Orbital Mechanics 2023 - ALL ANASWERS ARE CORRECT

  • Exam (elaborations) • 4 pages • 2023
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  • Magnitude of Vectors R=√(7626) 2 +(4972) 2 +(806) 2=9139 km V=√(0.626) 2 +(−0.690) 2 +(−6.160) 2=6.230 km/s 1. Determine the size of the size (semimajor axis) of this orbit. ε= V 2 2 − μ R ε= (6.230 km/s) 2 2 − 3.986 x105 km3 /s 2 9139 km ε=−24.208 km2 /s 2 a= −μ 2 ε a= −3.986 x 105 km3 /s 2 2(−24.208 km2 /s 2 ) a=8.232 x 103 km=8 ,232 km 2. Determine the shape (eccentricity) of this orbit. e´= 1 μ [( V 2− μ R)...
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SPST 305 Orbital Mechanics - Week 6 Homework Assignment -ALL ANSWERS ARE CORRECT
  • SPST 305 Orbital Mechanics - Week 6 Homework Assignment -ALL ANSWERS ARE CORRECT

  • Exam (elaborations) • 5 pages • 2023
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  • Answer the questions below based on the following information about a reconnaissance satellite: The satellite has an apogee altitude of 6,822 km and a perigee altitude of 1,542 km. The inclination is at 42 degrees, the right ascension of the ascending node is 85 degrees, and the argument of perigee is 52 degrees. The current true anomaly is 196 degrees. Be sure to carry all radian figures out to 4 significant decimal places. Special Note: Ensure your calculator mode (degrees or radians) mat...
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