Solved

A 200 × 108-Kg Mass Is Located at X = 100

Question 13

Multiple Choice

A 2.00 × 108-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 108-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m.


A) 4.00 × 10-4 N A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N  - 5.00 × 10-4 N
A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N
B) 4.00 × 10-4 N A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N  + 5.00 × 10-4 N
A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N
C) -4.00 × 10-4 N A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N  + 5.00 × 10-4 N
A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N
D) 4.00 × 10-6 N A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N  - 2.50 × 10-6 N
A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N
E) 4.00 × 10-6 N A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N  + 2.50 × 10-6 N
A 2.00 × 10<sup>8</sup>-kg mass is located at x = 100 m, y = 0.00 m. A 5.00 × 10<sup>8</sup>-kg mass is located at x = 0.00 m, y = 200 m. Determine the gravitational force on a 3.00-kg mass located at x = 0.00 m, y = 0.00 m. A) 4.00 × 10<sup>-</sup><sup>4</sup> N   - 5.00 × 10<sup>-</sup><sup>4</sup> N   B) 4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   C) -4.00 × 10<sup>-</sup><sup>4</sup> N   + 5.00 × 10<sup>-</sup><sup>4</sup> N   D) 4.00 × 10<sup>-</sup><sup>6</sup> N   - 2.50 × 10<sup>-</sup><sup>6</sup> N   E) 4.00 × 10<sup>-</sup><sup>6</sup> N   + 2.50 × 10<sup>-</sup><sup>6</sup> N

Correct Answer:

verifed

Verified

Unlock this answer now
Get Access to more Verified Answers free of charge

Related Questions