Problem 4: Two manned satellites are approaching one another at a relative speed of 0.27 m/s, intending to dock. The first has a mass of 42 cond a mass of 9.5 x 10³ kg. Part (a) Calculate the final velocity, in meters per second, of the two satellites after docking, in the frame of reference in which the first sate st. Take the initial velocity of the second satellite to be in the positive direction -0.3730 X Attempts Remain Part (b) What is the change in kinetic energy, in joules, in this inelastic collision? CE₁-428.6 B₁-428.6 X Attempts Remain Part (c) Calculate the final velocity of the satellites, in meters per second, in the frame of reference in which the second satellite is initially al velocity of the first satellite to be in the negative direction.

icon
Related questions
Question
Problem 4: Two manned satellites are approaching one another at a relative speed of 0.27 m/s, intending to dock. The first has a mass of 4.25 x 10³ kg, and
the second a mass of 9.5 x 10³ kg.
Part (a) Calculate the final velocity, in meters per second, of the two satellites after docking, in the frame of reference in which the first satellite is initially
at rest. Take the initial velocity of the second satellite to be in the positive direction
-0.3730 * Attempts Remain
Part (b) What is the change in kinetic energy, in joules, in this inelastic collision?
X Attempts Remain
/ Part (c) Calculate the final velocity of the satellites, in meters per second, in the frame of reference in which the second satellite is initially at rest. Take the
initial velocity of the first satellite to be in the negative direction.
AKE,=-428.6
AKE,=-428.6
₂-427.9
₂-427.9 * Attempts Remain
Part (d) What is the change in kinetic energy, in joules, in this frame of reference.
Transcribed Image Text:Problem 4: Two manned satellites are approaching one another at a relative speed of 0.27 m/s, intending to dock. The first has a mass of 4.25 x 10³ kg, and the second a mass of 9.5 x 10³ kg. Part (a) Calculate the final velocity, in meters per second, of the two satellites after docking, in the frame of reference in which the first satellite is initially at rest. Take the initial velocity of the second satellite to be in the positive direction -0.3730 * Attempts Remain Part (b) What is the change in kinetic energy, in joules, in this inelastic collision? X Attempts Remain / Part (c) Calculate the final velocity of the satellites, in meters per second, in the frame of reference in which the second satellite is initially at rest. Take the initial velocity of the first satellite to be in the negative direction. AKE,=-428.6 AKE,=-428.6 ₂-427.9 ₂-427.9 * Attempts Remain Part (d) What is the change in kinetic energy, in joules, in this frame of reference.
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 3 steps with 2 images

Blurred answer