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According to the third law of motion, wh...

According to the third law of motion, when we push on an object, the object pushes back on us with an equal and opposite force. If the object is a massive truck parked along the roadside, it will probably not move. A student justifies this by answering that the two opposite and equal forces cancel each other. Comment on this logic and explain why the truck does not move.

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Direction : Resistive force proportional to object velocity At low speeds, the resistive force acting on an object that is moving a viscous medium is effectively modeleld as being proportional to the object velocity. The mathematical representation of the resistive force can be expressed as R = -bv Where v is the velocity of the object and b is a positive constant that depends onthe properties of the medium and on the shape and dimensions of the object. The negative sign represents the fact that the resistance froce is opposite to the velocity. Consider a sphere of mass m released frm rest in a liquid. Assuming that the only forces acting on the spheres are the resistive froce R and the weight mg, we can describe its motion using Newton's second law. though the buoyant force is also acting on the submerged object the force is constant and effect of this force be modeled by changing the apparent weight of the sphere by a constant froce, so we can ignore it here. Thus mg - bv = m (dv)/(dt) rArr (dv)/(dt) = g - (b)/(m) v Solving the equation v = (mg)/(b) (1- e^(-bt//m)) where e=2.71 is the base of the natural logarithm The acceleration becomes zero when the increasing resistive force eventually the weight. At this point, the object reaches its terminals speed v_(1) and then on it continues to move with zero acceleration mg - b_(T) =0 rArr m_(T) = (mg)/(b) Hence v = v_(T) (1-e^((vt)/(m))) In an experimental set-up four objects I,II,III,IV were released in same liquid. Using the data collected for the subsequent motions value of constant b were calculated. Respective data are shown in table. {:("Object",I,II,II,IV),("Mass (in kg.)",1,2,3,4),(underset("in (N-s)/m")("Constant b"),3.7,1.4,1.4,2.8):} At the start of motion when object is released in the liquid, its acceleration is :

MBD -HARYANA BOARD-FORCE AND LAWS OF MOTION-Example
  1. Using a horizontal force 200N, we intend to move a wooden cabinet acr...

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  2. Two object, each of mass 1.5 kg, are moving in the same straight line ...

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  3. According to the third law of motion, when we push on an object, the o...

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  4. A hockey ball of mass 200 g travelling at 10 m//s is struck by a hocke...

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  5. A bullet of mass 10g travelling horizontally with a velocity of 150 ms...

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  6. An object of mass 1kg travelling in a straight line with a velocity of...

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  7. An object of mass 100kg is accelerated uniformly from a velocity of 5m...

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  8. Akhtar, Kiran and Rahul were riding in a motorcar that was a high velo...

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  9. How much momentum will a dumb-bell of mass 10kg transfer to the floor ...

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  10. The following is the distance-time table of an object in motion: {:...

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  11. What is the distance OA for the square shown in figure :-

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  12. Two persons manage to push a motorcar of mass1200kg at a uniform veloc...

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  13. A hammer of mass 500g, moving at 50m//s, strikes a nail. The nail stop...

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  14. A hammer of mass 500g, moving at 50m//s, strikes a nail. The nail stop...

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  15. What is a force? Explain with the help of some examples.

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  16. State and explain Newton's first law of motion.

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  17. What are emulsions ? What are their different types ? Give an example ...

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  18. State Newton’s second law of motion. How does it help to measure force...

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  19. Newton's Second Law OF Motion

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  20. State and explain Newton's third law of motion. How will you prove it ...

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