Respuesta :
Answer:
Explanation:
Given that,
Mass of astronaut
M = 62kg
Mass of wrench
m = 3.3kg
Speed at which wrench move away from the capsule
v = 20.5m/s
Speed of astronaut?
Let speed of astronaut be V
Since there is no external force, we would apply conservation of momentum
Momentum of the astronaut is equal to the momentum of the wrench
Momentum is given as
P = Mass × Velocity
P(astronaut) = P(wrench)
M×V = m×v
V = m×v/M
V = 3.3×20.5/62
V = 1.09 m/s
The astronaut speed is 1.09m/s
To solve this problem we must apply the concepts related to the conservation of momentum. We have the two masses of the bodies and the velocity of one of those bodies. Therefore, the initial momentum is equivalent to the final momentum. Mathematically this can be expressed as
[tex]P_i = P_f[/tex]
[tex]m_1_v_1 = m_2 v_2[/tex]
Replacing with our values,
[tex]3.3kg(20.5m/s) = (62kg)v_2[/tex]
Solving for [tex]v_2[/tex],
[tex]v_2= 1.09m/s[/tex]
Therefore the speed that the astronaut move toward the capsule is 1.09m/s