QUESTION IMAGE
Question
- what is impulse?
a. change in velocity
b. change in momentum
c. rate of change of velocity
d. rate of change of momentum
- in which equation of newtons second law is mass assumed to be constant?
a. (mathbf{f}=m a)
b. (mathbf{f}=\frac{delta mathbf{p}}{delta t})
c. (mathbf{f}=delta mathbf{p} delta t)
d. (mathbf{f}=\frac{delta m}{delta a})
- what is the si unit of momentum?
a. (mathrm{n})
b. (mathrm{kg} cdot mathrm{m})
c. (mathrm{kg} cdot mathrm{m} / mathrm{s})
d. (mathrm{kg} cdot mathrm{m} / mathrm{s}^{2})
- what is the equation for linear momentum?
a. (mathbf{p}=m mathbf{v})
b. (mathbf{p}=m / mathbf{v})
c. (mathbf{p}=mathrm{mv}^{2})
d. (mathbf{p}=\frac{1}{2} mathrm{mv}^{2})
Brief Explanations
- Impulse is defined as the change in momentum. According to the impulse - momentum theorem, \(J=\Delta p\).
- Newton's second law in the form \(F = ma\) assumes mass \(m\) is constant. When mass is not constant, the more general form \(F=\frac{\Delta p}{\Delta t}\) is used.
- Momentum \(p = mv\). The SI unit of mass \(m\) is \(kg\) and of velocity \(v\) is \(m/s\). So the SI unit of momentum is \(kg\cdot m/s\).
- The formula for linear momentum is \(p=mv\).
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- b. Change in momentum
- a. \(F = ma\)
- c. \(kg\cdot m/s\)
- a. \(p = mv\)