Suppose a rocket launches with an acceleration of 32.0m/s^2.

What is the apparent weight of an 95-kg astronaut aboard this rocket?

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To find the apparent weight of the astronaut aboard the rocket, we need to consider the acceleration experienced by the astronaut.

The apparent weight of an object is the force exerted on it by a supporting surface. In this case, the supporting surface is the floor of the rocket, and it exerts a force on the astronaut.

The force exerted on the astronaut can be calculated using Newton's second law of motion:

F = m * a

Where:
F is the force,
m is the mass of the object,
a is the acceleration.

In this case, the mass of the astronaut is given as 95 kg, and the acceleration of the rocket is 32.0 m/s^2.

Substituting the values into the formula, we get:

F = 95 kg * 32.0 m/s^2 = 3040 N

Therefore, the apparent weight of the 95 kg astronaut aboard the rocket is 3040 Newtons.