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False on two counts:
1. It is law of conservation of momentum and not energy.
2. The word total momentum means the sum of momentums, used by you is not correct because it denotes momentum as scalar and adds up momentums in different directions like x, y, z etc i.e.
p = mx + my + mz [Note physical quantity momentum is symbolized as p]
Whereas Momentum is a vector and hence net momentum remains constant in the absence of external force. Momentum in different directions add up vectorially. The force, F = dp/dt (bold letter means vector). That is F = dpx/dt + dpy/dt + dpz/dt.
In the absence of external force, F = 0; therefore dp/dt = 0 ⇒p = constant where p = px + py + pz.
read lessFalse on two counts:
1. It is law of conservation of momentum and not energy.
2. The word total momentum means the sum of momentums, used by you is not correct because it denotes momentum as scalar and adds up momentums in different directions like x, y, z etc i.e.
p = mx + my + mz [Note physical quantity momentum is symbolized as p]
Whereas Momentum is a vector and hence net momentum remains constant in the absence of external force. Momentum in different directions add up vectorially. The force, F = dp/dt (bold letter means vector). That is F = dpx/dt + dpy/dt + dpz/dt.
In the absence of external force, F = 0; therefore dp/dt = 0 ⇒p = constant where p = px + py + pz.
read lessNo.
It is due to CONSERVATION OF MOMENTUM and not conservation of energy.
Extra Info - In higher classes when you will read about four-vectors (hence four-velocity, four-momentum etc) the law of conservation of emeren and law of conservation of momentum will be combined into one as law conservation of four-momentum.
read lessView 15 more Answers
Related Questions
A body is initially at rest. It undergoes one-dimensional motion with constant acceleration. The power delivered to it at time t is proportional to
(i) t1/2 (ii) t (iii) t3/2 (iv) t2
Why is only the speed of light constant in all frames of reference?
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