draw velocity-time graph for uniformly accelerated object. using velocity time graph derive position. time relation
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Answers
Let an object is moving with uniform acceleration.
Let an object is moving with uniform acceleration.u = initial velocity of object
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of object
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform acceleration
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graph
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)=
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= time
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity Change in velocity = AB = v - u
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity Change in velocity = AB = v - uTime = AD = t
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity Change in velocity = AB = v - uTime = AD = ta=
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity Change in velocity = AB = v - uTime = AD = ta= t
Let an object is moving with uniform acceleration.u = initial velocity of objectv = final velocity of objecta = uniform accelerationLet object reaches at point B after time (t) Now, from the graphSlope = Acceleration (a)= timechange in velocity Change in velocity = AB = v - uTime = AD = ta= tv−