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I need to integrate
\frac{mdv}{F(v)} = dt
to show that
t = m \int^{v}_ {vo} \frac{dv '}{F(v ')}
Now, I now that velocity is the derivative of position, and the mass is constant, but how does one integrate F(v)?
[Integrating is a weak spot for me] Thanks in advance!
\frac{mdv}{F(v)} = dt
to show that
t = m \int^{v}_ {vo} \frac{dv '}{F(v ')}
Now, I now that velocity is the derivative of position, and the mass is constant, but how does one integrate F(v)?
[Integrating is a weak spot for me] Thanks in advance!