Question

A planet orbits a star once every 2.90 x 10s in a nearly circular orbit of radius 1.43 x 1011 m. (a) With respect to the sta

0 0
Add a comment Improve this question Transcribed image text
Answer #1

a) - T = 2.90 x 107s w = 2q = 2 de xullo as Tw= 2.16*10*% rodis rad verw = (1.43 xlom) *(216*10*xolls) nee 3.09* 104 m/s 09*

Add a comment
Know the answer?
Add Answer to:
A planet orbits a star once every 2.90 x 10's in a nearly circular orbit of...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A planet orbits a star once every 3.20 107 s in a nearly circular orbit of...

    A planet orbits a star once every 3.20 107 s in a nearly circular orbit of radius 1.51 1011 m. (a) With respect to the star, determine the angular speed of the planet. rad/s (b) With respect to the star, determine the tangential speed of the planet. m/s (c) With respect to the star, determine the magnitude and direction of the planet's centripetal acceleration. magnitude m/s2 what direction

  • please show work 7. 1.1/3.1 points Previous Answers CJ10 8.P.047. A planet orbits a star once every 3.29 x 10's in a...

    please show work 7. 1.1/3.1 points Previous Answers CJ10 8.P.047. A planet orbits a star once every 3.29 x 10's in a nearly circular orbit of radius 1.53 x 1011 m. (a) With respect to the star, determine the angular speed of the planet. X rad/s (b) with respect to the star, determine the tangential speed of the planet. 29219.7 m/s (c) with respect to the star, determine the magnitude and direction of the planet's centripetal acceleration, magnitude m/s2 direction...

  • A planet orbits a star, in a year of length 4.39 x 107 s, in a...

    A planet orbits a star, in a year of length 4.39 x 107 s, in a nearly circular orbit of radius 1.77 x 1011 m. With respect to the star, determine (a) the angular speed of the planet, (b) the tangential speed of the planet, and (c) the magnitude of the planet's centripetal acceleration.

  • A planet orbits a star, in a year of length 4.22 x 107 s, in a...

    A planet orbits a star, in a year of length 4.22 x 107 s, in a nearly circular orbit of radius 2.69 x 1011 m. With respect to the star, determine (a) the angular speed of the planet, (b) the tangential speed of the planet, and (c) the magnitude of the planet's centripetal acceleration.

  • A planet orbits a star, in a year of length 2.23 x 107 s, in a...

    A planet orbits a star, in a year of length 2.23 x 107 s, in a nearly circular orbit of radius 2.89 x 1011 m. With respect to the star, determine (a) the angular speed of the planet, (b) the tangential speed of the planet, and (c) the magnitude of the planet's centripetal acceleration.

  • A planet orbits a star, in a year of length 2.88 x 107 s, in a...

    A planet orbits a star, in a year of length 2.88 x 107 s, in a nearly circular orbit of radius 3.80 x 1011 m. With respect to the star, determine (a) the angular speed of the planet, (b) the tangential speed of the planet, and (c) the magnitude of the planet's centripetal acceleration.

  • Chapter 08, Problem 47 A planet orbits a star, in a year of length 4.83 x...

    Chapter 08, Problem 47 A planet orbits a star, in a year of length 4.83 x 10^7 s, in a nearly circular orbit of radius 2.25 x 10^11 m. With respect to the star, determine (a) the angular speed of the planet, (b) the tangential speed of the planet, and (c) the magnitude of the planet's centripetal acceleration.

  • A planet of mass m orbits a star of mass M in an elliptical orbit with...

    A planet of mass m orbits a star of mass M in an elliptical orbit with semi major axis a. The distance of closest approach to the star is a / 4 . Assuming the ratio of the plant's speed at perigee (when a planet is closest to the star) to the planet's speed at apogee (when the planet is furthest away from the star) is

  • points A newly discovered planet is in a circular orbit around a distant star with an...

    points A newly discovered planet is in a circular orbit around a distant star with an orbital period of 400 Earth days. The planet also rotates on its axis, making one full rotation every 4.00 Earth days. The radius of the planet is rp = 7.00 × 106 m and the radius of the planet's orbit about the star is r 7.00×1011 m. My Notes Ask Your Tea Determine the ratio of the radial acceleration, due to the rotation of...

  • 46. A certain planet is in circular orbit about a star. The radius of the orbit...

    46. A certain planet is in circular orbit about a star. The radius of the orbit is 9.20x10 kilometers. The planet requires 8.76x10' hours to complete one orbit. Calculate the centripetal acceleration of the planet in units of m/s

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT