Answer:
![a=(F)/(m)](https://img.qammunity.org/2019/formulas/physics/college/91jq1ykzie2x75svngxlxfz4s24obrxfio.png)
![a=(v-u)/(t)\\a=2(s-ut)/(t^2)\\a=(v^2-u^2)/(2s)](https://img.qammunity.org/2019/formulas/physics/middle-school/17tzhl0360lk1vlhrep6u4bvg7n1w1dvqc.png)
Step-by-step explanation:
The most common formula from which acceleration of an object can be determined is
F = ma
Where,
F = Force
m = Mass
a = Acceleration
Rearranging the equation we get
![\mathbf{a=(F)/(m)}](https://img.qammunity.org/2019/formulas/physics/middle-school/ffi7ehxg4lyaqctlstggkaikk5u92bcabx.png)
There are equations also from which acceleration can be determined they are
![v=u+at\quad\\s=ut+{\tfrac {1}{2}}at^(2)\\v^(2)=u^(2)+2as](https://img.qammunity.org/2019/formulas/physics/middle-school/ohnsumxezzf2na8olza0rj7vxfokff9yi1.png)
Rearranging the equations we get
![\mathbf{a=(v-u)/(t)}](https://img.qammunity.org/2019/formulas/physics/middle-school/slnad0tae96lo9z67tz1lcsjnhmzdgdpwx.png)
![\mathbf{a=2(s-ut)/(t^2)}](https://img.qammunity.org/2019/formulas/physics/middle-school/oarihe7g0agi8u3fm7tmfk6rpti2mw75zk.png)
![\mathbf{a=(v^2-u^2)/(2s)}](https://img.qammunity.org/2019/formulas/physics/middle-school/dkgh534sa4sf7ssbxz0f3wnhvvfh9u9cjx.png)
Where,
a = Acceleration
u = Initial velocity
v = Final velocity
s = Displacement
t = Time taken