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  1. Equation \ref{eq5} reflects the fact that, when acceleration is constant, \(v\) is just the simple average of the initial and final velocities. For example, if you steadily increase your velocity (that is, with constant acceleration) from 30 to 60 km/h, then your average velocity during this steady increase is 45 km/h.

  2. The equation v – = v 0 + v 2 reflects the fact that when acceleration is constant, v – is just the simple average of the initial and final velocities. Figure 3.18 illustrates this concept graphically. In part (a) of the figure, acceleration is constant, with velocity increasing at a constant rate.

  3. The equation \(\bar{v} = \frac{v_{0} + v}{2}\) reflects the fact that when acceleration is constant, v is just the simple average of the initial and final velocities. Figure \(\PageIndex{1}\) illustrates this concept graphically. In part (a) of the figure, acceleration is constant, with velocity increasing at a constant rate.

  4. 20 Ιουλ 2022 · When the x -component of the velocity is a linear function (Figure \(\PageIndex{1a}\)), the average acceleration, Δv / Δt, is a constant and hence is equal to the instantaneous acceleration (Figure \(\PageIndex{1b}\)).

  5. There are three one-dimensional equations of motion for constant acceleration: velocity-time, displacement-time, and velocity-displacement.

  6. The equation v-= v 0 + v 2 v-= v 0 + v 2 reflects the fact that, when acceleration is constant, v v is just the simple average of the initial and final velocities. For example, if you steadily increase your velocity (that is, with constant acceleration) from 30 to 60 km/h, then your average velocity during this steady increase is 45 km/h.

  7. 18 Ιαν 2022 · This formula allows us to calculate the acceleration of an object by dividing the change in velocity by the change in time. The resulting unit of acceleration is typically meters per second squared (m/s^2). The Difference between Velocity and Acceleration.

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