Foundations of Astronomy (MindTap Course List)
Foundations of Astronomy (MindTap Course List)
14th Edition
ISBN: 9781337399920
Author: Michael A. Seeds, Dana Backman
Publisher: Cengage Learning
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Chapter 20, Problem 8P

An Apollo command module orbited the Moon about 100 km above the surface. What was its orbital velocity? What was its orbital period? (Hint: Use the formula for circular velocity, Eq. 5-1a.) (Note: Relevant information can be found in Celestial Profile: The Moon.)

Expert Solution & Answer
Check Mark
To determine

The orbital period of the Apollo command module.

Answer to Problem 8P

The orbital period of the Apollo command module is 1h58min.

Explanation of Solution

The expression for the orbital period of the Apollo command module is given by,

    T=2π(R+h)v0        (I)

Here, R is the radius of the planet, h is the height of the planet, v0 is the orbital velocity of the object and T is the orbital period of the Apollo command module.

The expression for the orbital velocity of the object is,

    v0=gp(R+h)        (II)

Here, gp is the gravitational acceleration at an altitude from the surface of a planet.

The expression for the gravitational acceleration at an altitude from the surface of a planet is,

    gp=GM(R+h)2

Here, G is the universal gravitational constant and M is the mass of the planet.

Substitute GM(R+h)2 for gp in equation (II) to find v0.

    v0=GM(R+h)2(R+h)=GM(R+h)        (III)

Conclusion:

Substitute 6.67×1011m3/kg.s2 for G, 7.36×1022kg for M, 1737.4km for R and 100km for h  in equation (III) to find v0.

    v0=(6.67×1011m3/kg.s2)(7.36×1022kg)(1737.4km+100km)=(6.67×1011m3/kg.s2)(7.36×1022kg)(1837.4km)(1000m1km)=(6.67×1011m3/kg.s2)(7.36×1022kg)(1837.4×103m)=1.63×103m/s

Substitute 1.63×103m/s for v0, 1737.4km for R and 100km for h  in equation (I) to find T.

    T=2π(1737.4km+100km)1.63×103m/s=2π(1837.4km(1000km1m))1.63×103m/s=11544724.68m1.63×103m/s=7080s

Solve further as,

    T=7080s(1hr3600s)=1h58min

Therefore, the orbital period of the Apollo command module is 1h58min.

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Chapter 20 Solutions

Foundations of Astronomy (MindTap Course List)

Ch. 20 - What is the most significant kind of erosion that...Ch. 20 - Provide evidence to support a hypothesis about...Ch. 20 - What evidence can you cite that the Moon had...Ch. 20 - What evidence would you expect to find on the Moon...Ch. 20 - How does the large-impact hypothesis explain the...Ch. 20 - Look at the Celestial Profiles for Earth, the...Ch. 20 - Look at the Celestial Profiles for the Moon and...Ch. 20 - Prob. 18RQCh. 20 - Look at the Celestial Profiles for Earth, the...Ch. 20 - Look at the Celestial Profiles for the Moon and...Ch. 20 - Why are features like the Moons maria not observed...Ch. 20 - What are the relative ages of the intercrater...Ch. 20 - What evidence can you give that Mercury has a...Ch. 20 - Why is it not surprising that there is no evidence...Ch. 20 - What evidence can you give that Mercury had...Ch. 20 - How are the histories of the Moon and Mercury...Ch. 20 - What property of the Moon and Mercury has resulted...Ch. 20 - Prob. 28RQCh. 20 - Look at the right top and bottom images in Figure...Ch. 20 - Calculate the escape velocity of the Moon from its...Ch. 20 - Prob. 3PCh. 20 - Why do small planets cool faster than large...Ch. 20 - The smallest detail visible through Earth-based...Ch. 20 - Prob. 6PCh. 20 - The trenches where Earths seafloor slips downward...Ch. 20 - An Apollo command module orbited the Moon about...Ch. 20 - Prob. 9PCh. 20 - What is the angular diameter of Mercury when it is...Ch. 20 - If you transmit radio signals to Mercury when...Ch. 20 - What is the wavelength of the most intense...Ch. 20 - Suppose you send a probe to land on Mercury, and...Ch. 20 - The smallest detail visible through Earth-based...Ch. 20 - Prob. 1SOPCh. 20 - Prob. 2SOPCh. 20 - Look at the image of the astronaut on the Moon at...Ch. 20 - In the photo shown here, astronaut Alan Bean works...Ch. 20 - Examine the shape of the horizon at the Apollo 17...
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