College

We appreciate your visit to A space traveler with a mass of 115 kg leaves Earth What are his weight and mass a On Earth b In interplanetary space where. This page offers clear insights and highlights the essential aspects of the topic. Our goal is to provide a helpful and engaging learning experience. Explore the content and find the answers you need!

A space traveler with a mass of 115 kg leaves Earth. What are his weight and mass:

a) On Earth?
b) In interplanetary space where there are no nearby planetary objects?​

Answer :

Answer:

On Earth: mass = 115 kg; weight = 1127 N

Interspace: mass = 115 kg; weight = 0 N

Explanation:

On Earth, his mass is 115 kg, and his weight is 115 kg * 9.8 m/s^2 = 1127 N.

On interspace , his mass is still 115 kg, and his weight is Zero Newtons = 0 N

Thanks for taking the time to read A space traveler with a mass of 115 kg leaves Earth What are his weight and mass a On Earth b In interplanetary space where. We hope the insights shared have been valuable and enhanced your understanding of the topic. Don�t hesitate to browse our website for more informative and engaging content!

Rewritten by : Barada

(a) The mass of space traveler on Earth is 115 kg and its weight is 1127 N.

(b) The mass of traveler at interplanetary space is 115 kg and its weight is 0 N.

Given data:

The mass of space traveler outside the Earth is, m = 115 kg.

(a)

Since, the mass of any object is always remains constant. In other words, there is no way to destroy mass and hence mass of traveler on Earth will be same as 115 kg.

While the weight will be,

W = mg

W = 115(9.8)

W = 1127 N

Thus, we can conclude that the mass of space traveler on Earth is 115 kg and its weight is 1127 N.

(b)

On interspace , his mass is still 115 kg, and his weight is Zero Newtons. This is because the gravity at interplanetary space is zero.

That is,

W = mg

W = 115 (0)

W = 0 N

Thus, we can conclude that the mass of traveler at interplanetary space is 115 kg and its weight is 0 N.

Learn more about the gravity here:

https://brainly.com/question/12008506