State Law of Gravitation. Furthermare Mass of different objects are given in table. Find out gravitational force for each set of parameters given in the table (CLO1) Mass of Object 1 Mass of Object 2 Separation Distance (m) Football Player Earth . 100 kg 6.38 x 10 m 5.98 x10 ke (on surface) 6.38 x 10 m Ballerina Earth 40 kg 5.98 x10* ke (on surface) Physics Student Earth 6.60x 10 m 70kE 5.98 x10ke (low-height orbit) Physics Student Physics Student 70 kg 1m 70 ke Physics Student Physics Student 70 ke 02m 70 kg Physics Student Physics Book 70kg 1m Moon 7.34 x 10 ke 171x 10°m Physics Student 70 ke (on surface) 6.98 x 10'm Physics Student h. 70 kg Jupiter 1.901x 10" kg (on surface)

Engineering Fundamentals: An Introduction to Engineering (MindTap Course List)
5th Edition
ISBN:9781305084766
Author:Saeed Moaveni
Publisher:Saeed Moaveni
Chapter18: Mathematics In Engineering
Section: Chapter Questions
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Assignment 1 Engineering Mechanics - Saved
Engineering Mechanics Assignment # 1
State Law of Gravitation. Furthermore Mass of different objects are given in table. Find out
gravitational force for each set of parameters given in the table
(CLO1)
Mass of Object 1 Mass of Object 2 Separation Distance
(kg)
(kg)
(m)
6.38 x 10 m
Football Player Earth
100 kg
a.
5.98 x104 kg
(on surface)
Earth
6.38 x 10 m
Ballerina
40 kg
b.
5.98 x104 kg
(on surface)
Physics Student Earth
6.60 x 10 m
70kg
5.98 x1024 kg
(low-height orbit)
Physics Student Physics Student
d.
1m
70 kg
70 kg
Physics Student Physics Student
e.
70 kg
0.2 m
70 kg
Physics Student Physics Book
70 kg
1m
1kg
Physics Student
70 kg
Мon
7.34 x 10 kg
1.71x 10°m
(on surface)
Jupiter
1901x 10" kg
6.98 x 10'm
(on surface)
Physics Student
h.
70 kg
Transcribed Image Text:Assignment 1 Engineering Mechanics - Saved Engineering Mechanics Assignment # 1 State Law of Gravitation. Furthermore Mass of different objects are given in table. Find out gravitational force for each set of parameters given in the table (CLO1) Mass of Object 1 Mass of Object 2 Separation Distance (kg) (kg) (m) 6.38 x 10 m Football Player Earth 100 kg a. 5.98 x104 kg (on surface) Earth 6.38 x 10 m Ballerina 40 kg b. 5.98 x104 kg (on surface) Physics Student Earth 6.60 x 10 m 70kg 5.98 x1024 kg (low-height orbit) Physics Student Physics Student d. 1m 70 kg 70 kg Physics Student Physics Student e. 70 kg 0.2 m 70 kg Physics Student Physics Book 70 kg 1m 1kg Physics Student 70 kg Мon 7.34 x 10 kg 1.71x 10°m (on surface) Jupiter 1901x 10" kg 6.98 x 10'm (on surface) Physics Student h. 70 kg
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