**Calculate time for triangular and / or trapezoidal motion**

initial_velocity is the initial velocity (zero if the body is intially at rest, so you can drop this term in that case) time is the time acceleration is the (constant) acceleration... Ordinate of A point is initial velocity, ordinate of C,D is maximum velocity, ordinate of E is some velocity needed to reach the end. Abscissa of C and F is moment, when acceleration ends, F and D - when deceleration starts, E and G are stop moments.

**Calculate initial acceleration? Yahoo Answers**

initial_velocity is the initial velocity (zero if the body is intially at rest, so you can drop this term in that case) time is the time acceleration is the (constant) acceleration... To find time to reach maximum height given initial velocity use the equation Vf=vi+at. At the maximum height, the object has no initial velocity left and therefore you can substitute 0 for the Vf in the equation. Once the object reaches the maximum height, it will now accelerate downwards at a rate depending on the acceleration due to gravity of the planet (in Earth’s case: 9.81m/s^2). Plug

**Calculate time for triangular and / or trapezoidal motion**

Velocity from Equation for Constant Acceleration: Velocity: Initial Velocity: Acceleration: Time: where, v = Velocity, v 0 = Initial Velocity a = Acceleration, t = Time.... initial_velocity is the initial velocity (zero if the body is intially at rest, so you can drop this term in that case) time is the time acceleration is the (constant) acceleration

**Calculate initial acceleration? Yahoo Answers**

Ordinate of A point is initial velocity, ordinate of C,D is maximum velocity, ordinate of E is some velocity needed to reach the end. Abscissa of C and F is moment, when acceleration ends, F and D - when deceleration starts, E and G are stop moments.... Ordinate of A point is initial velocity, ordinate of C,D is maximum velocity, ordinate of E is some velocity needed to reach the end. Abscissa of C and F is moment, when acceleration ends, F and D - when deceleration starts, E and G are stop moments.

## How To Find Initial Acceleration With Initial Velocity And Time

### Calculate time for triangular and / or trapezoidal motion

- Calculate initial acceleration? Yahoo Answers
- Calculate initial acceleration? Yahoo Answers
- Calculate initial acceleration? Yahoo Answers
- Calculate time for triangular and / or trapezoidal motion

## How To Find Initial Acceleration With Initial Velocity And Time

### Question 7 a) Acceleration is the rate of change of velocity Use your definition in (a) to show that v = u + at, where v is the final velocity, u is the initial velocity and a and t are the acceleration and the time

- 29/09/2011 · How to find Acceleration from Velocity Initial, Velocity Final and Distance? so you need to find out the time. The average velocity is (80+50)/2 km/h or 65 km/h, or 18 m/s. The time it takes to travel 150 m is 8.3 seconds. Now we convert the beginning and ending speeds to meters per second. 80/3.6 is 22.2, 50/3.6 is 13.9. (22.2 - 13.9) / 8.3 = 20.5 m/s^2 . Lesus · 7 years ago . 0. …
- How Do You Find the Final Velocity? Find the final velocity with these two equations: v = u + at and v2 – u2 = 2as. Equation one relates to time taken t, while equation two relates to distance covered S. With the first equation, add initial velocity to the value of acceleration x time. Obtain the value of initial velocity. Assume the body in motion began with an initial velocity of u and had
- Ordinate of A point is initial velocity, ordinate of C,D is maximum velocity, ordinate of E is some velocity needed to reach the end. Abscissa of C and F is moment, when acceleration ends, F and D - when deceleration starts, E and G are stop moments.
- initial_velocity is the initial velocity (zero if the body is intially at rest, so you can drop this term in that case) time is the time acceleration is the (constant) acceleration

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