The acceleration of a particle is ,
.
(a)
\Find velocity function.
\Apply integral on each side with respect to .
The rate of change in velocity is acceleration:.
.
The particle is initially at rest .
Substitute in
.
Substitute .
.
Substitute in
.
The velocity function of the particle is .
Find position function.
\.
Apply integral on each side with respect to .
The position function is .
At the time ,
.
.
Substitute in
.
Substitute .
.
Substitute in
.
.
The position function is .
(b) Find values of for which the particle is at rest.
The particle is at rest the velocity is zero.
\Equate .
, where
.
The values of for particle is at rest is
, where
.
(a)
\The velocity function of the particle is .
The position function is .
(b) The values of for the particle is at rest is
, where
.