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Displacement is the change in position of an object, velocity is the rate at which an object changes its position, and acceleration is the rate at which an object's velocity changes. In terms of motion, acceleration is related to velocity by the derivative of velocity with respect to time, and velocity is related to displacement by the derivative of displacement with respect to time.

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What is the relationship between displacement, velocity, and acceleration in the context of motion?

Displacement is the change in position of an object, velocity is the rate of change of displacement, and acceleration is the rate of change of velocity. In the context of motion, displacement, velocity, and acceleration are related in that acceleration affects velocity, which in turn affects displacement.


What are the equations of motion involving uniform acceleration?

The equations of motion involving uniform acceleration are: v = u + at, where v is the final velocity, u is the initial velocity, a is the acceleration, t is the time taken. s = ut + (1/2)at^2, where s is the displacement. v^2 = u^2 + 2as, where s is the displacement. These equations describe the relationships between initial velocity, final velocity, acceleration, displacement, and time during motion with uniform acceleration.


What is dimension of second equation of motion?

The second equation of motion describes the relationship between an object's final velocity and initial velocity, acceleration, and displacement. It is typically written as v^2 = u^2 + 2as, where v is final velocity, u is initial velocity, a is acceleration, and s is displacement. The dimensions of the second equation of motion are [L/T] for velocity, [L/T] for acceleration, and [L] for displacement.


What is the relationship between velocity, time, and displacement when acceleration is constant?

When acceleration is constant, the relationship between velocity, time, and displacement can be described by the equations of motion. The velocity of an object changes linearly with time when acceleration is constant. The displacement of the object is directly proportional to the square of the time elapsed.


What is the 4th equation of motion?

The 4th equation of motion is an equation that relates displacement (s), initial velocity (u), final velocity (v), acceleration (a), and time (t). It is expressed as: s = ut + 0.5at^2. This equation is derived from the others in classical physics to describe the motion of an object under constant acceleration.

Related Questions

What is the relationship between displacement, velocity, and acceleration in the context of motion?

Displacement is the change in position of an object, velocity is the rate of change of displacement, and acceleration is the rate of change of velocity. In the context of motion, displacement, velocity, and acceleration are related in that acceleration affects velocity, which in turn affects displacement.


What are the equations of motion involving uniform acceleration?

The equations of motion involving uniform acceleration are: v = u + at, where v is the final velocity, u is the initial velocity, a is the acceleration, t is the time taken. s = ut + (1/2)at^2, where s is the displacement. v^2 = u^2 + 2as, where s is the displacement. These equations describe the relationships between initial velocity, final velocity, acceleration, displacement, and time during motion with uniform acceleration.


What is dimension of second equation of motion?

The second equation of motion describes the relationship between an object's final velocity and initial velocity, acceleration, and displacement. It is typically written as v^2 = u^2 + 2as, where v is final velocity, u is initial velocity, a is acceleration, and s is displacement. The dimensions of the second equation of motion are [L/T] for velocity, [L/T] for acceleration, and [L] for displacement.


What is the relationship between velocity, time, and displacement when acceleration is constant?

When acceleration is constant, the relationship between velocity, time, and displacement can be described by the equations of motion. The velocity of an object changes linearly with time when acceleration is constant. The displacement of the object is directly proportional to the square of the time elapsed.


What is the 4th equation of motion?

The 4th equation of motion is an equation that relates displacement (s), initial velocity (u), final velocity (v), acceleration (a), and time (t). It is expressed as: s = ut + 0.5at^2. This equation is derived from the others in classical physics to describe the motion of an object under constant acceleration.


How is speed velocity and acceleration alike?

Speed, velocity, and acceleration are all related to an object's motion. Speed is the rate of motion in a specific direction, velocity is the rate of motion in a specific direction with consideration of the object's displacement, and acceleration is the rate at which velocity changes. They all involve the concept of how quickly an object is moving, but each one provides different information about the object's motion.


What are the terms in curvillinear motion?

Displacement, velocity, speed, acceleration, force, curvature are some terms.


When are the displacement velocity and acceleration equal to zero for the motion of a mass on a spring?

Displacement and acceleration are zero at the instant the mass passes through its "rest" position ... the place where it sits motionless when it's not bouncing. Velocity is zero at the extremes of the bounce ... where the expansion and compression of the spring are maximum, and the mass reverses its direction of motion.


What do you know about motion?

Motion is the change in position of an object over time. It can be described by its speed, direction, and acceleration. Motion is described using concepts like distance, displacement, velocity, and acceleration.


What type of motion is occurring when the slope of a line is not zero?

Assuming the graph is for displacement versus time, the motion should be constant velocity. If velocity versus time motion is constant acceleration


The quantity that can be zero if a body remains in motion for sometime is?

Acceleration. Even if a body remains in motion for some time, its acceleration can be zero if the velocity remains constant.


For uniform circular motion the quantity that does not remain constant is?

this my sound rather daft but this is a bit of a trick question, the speed is the same so straight away you would think the acceleration is constant right....???? Wrong the displacement of the object is changing (displacement is the distance being travelled with a direction, a vector quantity.) as the displacement is changing so is the velocity, as velocity is displacement/time. as the velocity is changing so is the acceleration because acceleration is then change in velocity divided by time.