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Question

A particle, initially at rest is subject to two forces; one is constant, the other is a retarding force proportional to the particle velocity. In the subsequent motion of the particle,

A
the acceleration will increase from zero to a constant value
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B
the acceleration will remain constant with respect to time
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C
the velocity will increase from zero to a maximum and then decrease
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D
the velocity will increase from zero to a constant value
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Solution

The correct option is D the velocity will increase from zero to a constant value
F1=constant and F2v
F2=kv
also (F1+F2)=ma F1kv=mdvdt
a=(F1kvm) decrease from its initial value.
Now, dvF1kv=dtm
ln(F1kv)k=1mt+c
at t=0, v=0 ln F1k=c
ln(F1kv)k=tmln F1k
1k[ln(F1kv)ln F1]=tm
i.e., 1k(ln(F1kvF1))=tm
ln(F1kvF1)=ktm F1kvF1=ekt/m
1kvF1=ekt/m
1ekt/m=kvF1
v=F1k(1ekt/m)
i.e. velocity will increase from zero to a constant value.

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