Answer:
0.6 m/sec^2
Step-by-step explanation:
from the graph we find out the equation of line which will be a function of time and velocity. And differentiating that we can find acceleration at t=0
two point in in graph are (0,4) and (10,10)
therefore slope of the graph = 6/10= 3/5
we can find the equation of line using one point form

putting values we get

⇒5v-3t=20
differentiating we get


hence the acceleration = 0.6 m/sec^2