Concept explainers
A 500-kg spacecraft first is placed into a circular orbit about the earth at an altitude of 4500 km and then is transferred to a circular orbit about the moon. Knowing that the mass of the moon is 0.01230 times the mass of the earth and that the radius of the moon is 1737 km, determine (a) the gravitational force exerted on the spacecraft as it was orbiting the earth, (b) the required radius of the orbit of the spacecraft about the moon if the periodic times (see Prob. 12.83) of the two orbits are to be equal, (c) the acceleration of gravity at the surface of the moon.
(a)
Find the gravitational force exerted on the spacecraft as it was orbiting the earth.
Answer to Problem 12.85P
The gravitational force exerted on the spacecraft as it was orbiting the earth is
Explanation of Solution
Given information:
The mass
The altitude
The mass of the moon is 0.01230 times the mass of the earth
The radius
Calculation:
Write the general equation of weight (W).
The radius
Find the altitude
Substitute
Consider the Newton’s law of universal gravitation:
Write the equation for mass of planet:
Substitute Equation (2) in Equation (1).
Substitute 500 kg for m,
Thus, the gravitational force exerted on the spacecraft as it was orbiting the earth is
(b)
Find the required radius of the orbit of the spacecraft about the moon if the periodic times of the two orbits are to be equal.
Answer to Problem 12.85P
The required radius of the orbit of the spacecraft about the moon if the periodic times of the two orbits are to be equal is
Explanation of Solution
Calculation:
Write the equation of acceleration
Write the Equation of attraction force between earth and satellites.
Here, m is the mass of satellite.
Find the mass of earth (M):
Consider the Newton’s law of universal gravitation:
Here, F is the attraction force, G is the universal constant, M is the mass of earth, and m is the mass of satellite.
Substitute Equation (3) in Equation (4).
Substitute Equation (1) in Equation (4).
Write the equation of velocity of earth:
Substitute Equation (8) in Equation (7).
Find the radius of moon
The periodic time of two orbit is equal.
Substitute
Substitute
Thus, the required radius of the orbit of the spacecraft about the moon if the periodic times of the two orbits are to be equal is
(c)
Find the acceleration of gravity at the surface of the moon.
Answer to Problem 12.85P
The acceleration of gravity at the surface of the moon is
Explanation of Solution
Calculation:
The radius of the moon
Find the acceleration of gravity at the surface of the moon
Substitute
Substitute
Thus, the acceleration of gravity at the surface of the moon is
Want to see more full solutions like this?
Chapter 12 Solutions
VEC MECH 180-DAT EBOOK ACCESS(STAT+DYNA)
- aversity of Baoyion aculty of Engineering-AIMusyab Automobile Eng. Dep. Year: 2022-2023, st Course, 1st Attempt Stage: 3rd Subject: Heat Transfer I Date: 2023\01\23- Monday Time: 3 Hours Q4: A thick slab of copper initially at a uniform temperature of 20°C is suddenly exposed to radiation at one surface such that the net heat flux is maintained at a constant value of 3×105 W/m². Using the explicit finite-difference techniques with a space increment of Ax = = 75 mm, determine the temperature at the irradiated surface and at an interior point that is 150 mm from the surface after 2 min have elapsed. Q5: (12.5 M) A) A steel bar 2.5 cm square and 7.5 cm long is initially at a temperature of 250°C. It is immersed in a tank of oil maintained at 30°C. The heat-transfer coefficient is 570 W/m². C. Calculate the temperature in the center of the bar after 3 min. B) Air at 90°C and atmospheric pressure flows over a horizontal flat plate at 60 m/s. The plate is 60 cm square and is maintained at a…arrow_forwardUniversity of Baby on Faculty of Engineering-AIMusyab Automobile Eng. Dep. Year: 2022-2023. 1 Course, 1" Attempt Stage 3 Subject Heat Transfer I Date: 2023 01 23- Monday Time: 3 Hours Notes: Q1: • • Answer four questions only Use Troles and Appendices A) A flat wall is exposed to an environmental temperature of 38°C. The wall is covered with a layer of insulation 2.5 cm thick whose thermal conductivity is 1.4 W/m. C, and the temperature of the wall on the inside of the insulation is 315°C. The wall loses heat to the environment by convection. Compute the value of the convection heat-transfer coefficient that must be maintained on the outer surface of the insulation to ensure that the outer-surface temperature does not exceed 41°C. B) A vertical square plate, 30 cm on a side, is maintained at 50°C and exposed to room air at 20°C. The surface emissivity is 0.8. Calculate the total heat lost by both sides of the plate. (12.5 M) Q2: An aluminum fin 1.5 mm thick is placed on a circular tube…arrow_forwardSolve using graphical method and analytical method, only expert should solvearrow_forward
- Need helparrow_forwardY F1 α В X F2 You and your friends are planning to move the log. The log. needs to be moved straight in the x-axis direction and it takes a combined force of 2.9 kN. You (F1) are able to exert 610 N at a = 32°. What magnitude (F2) and direction (B) do you needs your friends to pull? Your friends had to pull at: magnitude in Newton, F2 = direction in degrees, ẞ = N degarrow_forwardProblem 1 8 in. in. PROBLEM 15.109 Knowing that at the instant shown crank BC has a constant angular velocity of 45 rpm clockwise, determine the acceleration (a) of Point A, (b) of Point D. 8 in. Answer: convert rpm to rad/sec first. (a). -51.2j in/s²; (b). 176.6 i + 50.8 j in/s²arrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY