| 1. | What does Newton’s Second Law of Motion state? |
| a. | | A physical body will remain at rest unless an external net force acts upon it. |
| b. | | A physical body will continue to move at a constant velocity unless an external net force acts upon it. |
| c. | | The net force on a body is equal to its mass multiplied by its acceleration. |
| d. | | For every action, there is an equal and opposite reaction.
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| 2. | In the second law of motion, what is said to be the product of mass and acceleration? |
| a. | | Momentum |
| b. | | Force |
| c. | | Acceleration |
| d. | | Motion
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| 3. | The acceleration of motion is ever proportional to the motive force impressed; and is made in the direction of the right line in which that force is impressed. |
| a. | | True |
| b. | | False
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| 4. | In the differential equation F=ma, what does “a” represent? |
| a. | | Momentum |
| b. | | Acceleration |
| c. | | Action |
| d. | | Inertia
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| 5. | True or False. The acceleration of an object is inversely proportional to the force applied and proportional to the mass of the object. |
| a. | | True |
| b. | | False
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| 6. | The second law of motion shows that force depends on: |
| a. | | Speed of the moving object, friction, and its rest mass |
| b. | | Speed of the moving object, momentum and its rest mass |
| c. | | Speed of the moving object, acceleration and its rest mass |
| d. | | Speed of the moving object, kinetic energy, and its rest mass
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| 7. | Newton’s second law of motion pertains to the behavior of objects for which all existing forces are: |
| a. | | Balanced |
| b. | | Not balanced |
| c. | | Consistent |
| d. | | Inconsistent
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| 8. | Newton’s second law of motion states that the acceleration of an object is dependent on which two variables? |
| a. | | Force and mass |
| b. | | Force and momentum |
| c. | | Force and acceleration |
| d. | | Force and velocity
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| 9. | The acceleration of an object is directly proportional to the: |
| a. | | Mass of the object |
| b. | | Net force acting upon the object |
| c. | | Velocity of the object |
| d. | | Speed at which the object is moving
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| 10. | The acceleration of an object is inversely proportional to the: |
| a. | | Mass of the object |
| b. | | Net force acting upon the object |
| c. | | Velocity of the object |
| d. | | Speed at which the object is moving
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| 11. | As the force acting upon an object is increased, the acceleration of the object is: |
| a. | | Decreased |
| b. | | Increased |
| c. | | The same |
| d. | | Fluctuating
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| 12. | As the mass of an object is increased, the acceleration of the object is: |
| a. | | Decreased |
| b. | | Increased |
| c. | | The same |
| d. | | Fluctuating
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| 13. | Who was the scientist who give us the laws of motion? |
| a. | | Newton |
| b. | | Ibn-ul-hatim |
| c. | | Aryabhatt |
| d. | | Wholer
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| 14. | dimensional formula of force is |
| a. | | [MLT-2] |
| b. | | [MLT-1] |
| c. | | [ML-1T] |
| d. | | NONE OF THESE
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What others think about Newton's Second Law of Motion |
| By: James card on May 1, 2013 |
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| By: julie ann on Mar 25, 2013 |
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| By: yoyoyo on Dec 21, 2010 |
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| By: Nicole on Nov 18, 2010 |
| | Newton's second law of motion is like siting in rolling chair then pushing it. |
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| By: john rey d. garcia on Jul 21, 2010 |
| | newton's second law of motion helps us to understand the relationship of force we applied on an object against its mass at rest. thanks to Newton. |
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| By: yoyo on Nov 3, 2009 |
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| By: Sherif on Aug 22, 2009 |
| | Am from Egypt........ and netwon was mistaken in case the mass is not constant then the F will not equal to mass multiplied by the acceleration and this was explained by enstein ...i do like enstein ! ....... anyway i got A in the physics in ain shams university faculty of engineering ..thxx |
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| By: cocky cunt on Aug 8, 2009 |
| | some questions are too general
cocky cunt for life bitches |
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| By: Hii on Jul 21, 2009 |
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| By: black knight on May 28, 2009 |
| | it's a joke of my soul power |
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| By: Emily on May 13, 2009 |
| | OKay this law makes no sense, sorry! |
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| By: genny on Apr 13, 2009 |
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| By: stephen on Feb 3, 2009 |
| | very excellent what a great subject |
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| By: Satyala.Stephen on Feb 3, 2009 |
| | what good subject. I have a very good web site. thanks |
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