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  1. Speed, Distance, Time Worksheet. Use * m/s, km/h, or mph. Calculate Speed R̅= P 1. A car travels a distance of 540km in 6 hours. Calculate the speed of the car. 2. John is a runner. He runs the 100m sprint in 20.0 s. Calculate the John’s speed. 3. Lauren walks 400 m in 125 s . Calculate Lauren’s average speed. 4.

  2. The variables include acceleration (a), time (t), displacement (d), final velocity (vf), and initial velocity (vi). If values of three variables are known, then the others can be calculated using the equations. This page demonstrates the process with 20 sample problems and accompanying solutions.

  3. Microsoft Word - 614 - 94 - WS-Basic Wave Speed-answers.doc. Problems for you to try: Complete the following practice problems. You MUST show ALL the work outlined in the steps in the example problems. A wave with a frequency of 14 Hz has a wavelength of 3 meters.

  4. DISTANCE, TIME, SPEED PRACTICE PROBLEMS YOU MUST SHOW YOUR WORK. You can use a calculator but you must show all of the steps involved in doing the problem. SPEED 1. If a car travels 400m in 20 seconds how fast is it going? 2. If you move 50 meters in 10 seconds, what is your speed? 3.

  5. What are the kinematic equations? The kinematic equations relate the five kinematic variables listed below. Δ x Displacement. t Time interval. v 0 Initial velocity. v Final velocity. a Constant acceleration. Why is the time interval now written as t? t Δ x Δ t Δ t. t Δ t.

  6. The Formula for Time in Physics. Simple formulas are as given below: 1) To compute the Speed: Speed = Distance Time. 2) To compute the Distance: Distance = Speed × Time. 3) To compute the time: Time = Distance Speed. In terms of mathematical we have these formulas as below: s = d t. d = s × t. t = d s. Where,

  7. path. First, find the time at which the ball reaches its maximum height, v yf = v 0y + a yt 0 = 24 + (−10)t max ⇒t max = 2.4s where v yf is the ball’s velocity at the end of the upgoing path where it is zero. Now that the maximum time is found, substitute it into the following equation All Rights Reserved. Page 6

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