What does Kepler's 2nd Law state? Kepler's Law

  • during a planet's orbit, the planet will sweep out equal areas in its orbit in equal amounts of time
  • all areas are equal in space
  • triangles have equal areas
  • no two points in a planet's orbit are equal
Answer: during a planet's orbit, the planet will sweep out equal areas in its orbit in equal amounts of time
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  1. Kepler's 2nd Law deals with

  2. The speed at which any planet moves through space is constantly changing. In a perfectly circular orbit, the orbital radius of the planet would be constant and therefore so would be its observed angular velocity. In elliptical orbits, the velocity varies. In elliptical orbits, the orbital radius of the satellite will vary and therefore so will its velocity. The planet travels "faster" when closer to the Sun, then "slower" at a more distant radius. According to Newton's 2nd Law, what is the underlying force behind this change in velocity?

  3. Consider the model of Kepler's 2nd Law. Each colored wedge represents the same time interval. Kepler states that the area of each wedge must be equal. According to this, what conclusions can you draw about the movement of any planet?

  4. Which statement best describes Kepler’s 2nd Law of Planetary Motion?​

  5. What is Kepler's 2nd Law?

  6. What does Kepler's 1st Law state?

  7. The "Law of Harmonies" is which of Kepler's Laws?

  8. Kepler's first law states that the orbits of the planets are oval in shape or

  9. The correct statement for kepler third law is

  10. According to Kepler law sun is situated at

  11. Who created the Universal Law of Gravitation?

  12. Using Newton's law of gravity: F = Gm1m2/d2.What will happen to the gravitational force of a satellite if the mass and the distance from Earth’s center is doubled?

  13. According to Kepler's 3rd law, the square of the time it takes for an object to orbit, T, is directly related to the cube of the distance, r, between the object and what it is orbiting.

  14. Using Newton's law of gravity: F = Gm1m2/d2. G=6.67x10-11 NM2/KG2Calculate the force between two objects that have masses of 70 kilograms and 100 kilograms separated by a distance of 1 meter. Use “G” for the Gravitational constant.

  15. Consider the law of gravitational attraction. Two spheres with a mass, M, are attracted to each other by a force, F. If the distance between the two spheres doubles while the masses remain constant, will the force between the two spheres change? If yes, how?

  16. Kepler’s 3rd law states the square of the orbital period is proportional to the cube of the orbital radius. (T2=r3)If a planet's orbital radius is doubled, what happens to the length of a year on that planet?

  17. Kepler’s first law states that planets travel in a(n) orbit.

  18. Kepler's 3rd law tell us that __ would be dependent on __.

  19. Which statement best describes Kepler’s 3rd Law of Planetary Motion?​

  20. Kepler's third law is represented by the following equation:Hukum Kepler ketiga ditunjukkan oleh persamaan:


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