● ● ● Week 6 Thursday Kinematics II Observation: A ball, is thrown upward with an initial speed of 30 m/s from the top of a building 50 m high. 1. Draw the free-body diagram on the ball after it is released. (Assume no air resistance). 2. Starting with Newton's 2nd Law of motion, determine the acceleration on the ball. 3. Draw a sketch of the ball's motion with all of the relevant information placed into the sketch. 4. Write the two Kinematics equations for the ball's motion. 5. Predict where the ball is 1 second after being released. Missing the following: units, detailed sketch with numbers, or using equations not introduced in the lectures will result in a score of zero. Show all relevant work for credit.
● ● ● Week 6 Thursday Kinematics II Observation: A ball, is thrown upward with an initial speed of 30 m/s from the top of a building 50 m high. 1. Draw the free-body diagram on the ball after it is released. (Assume no air resistance). 2. Starting with Newton's 2nd Law of motion, determine the acceleration on the ball. 3. Draw a sketch of the ball's motion with all of the relevant information placed into the sketch. 4. Write the two Kinematics equations for the ball's motion. 5. Predict where the ball is 1 second after being released. Missing the following: units, detailed sketch with numbers, or using equations not introduced in the lectures will result in a score of zero. Show all relevant work for credit.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Transcribed Image Text:**Week 6 Thursday Kinematics II**
- **Observation**: A ball is thrown upward with an initial speed of 30 m/s from the top of a building 50 m high.
1. **Draw the free-body diagram** on the ball after it is released. (Assume no air resistance).
2. **Starting with Newton’s 2nd Law of motion**, determine the acceleration on the ball.
3. **Draw a sketch** of the ball’s motion with all of the relevant information placed into the sketch.
4. **Write the two Kinematics equations** for the ball’s motion.
5. **Predict where the ball is** 1 second after being released.
---
**Note**: Missing the following: units, detailed sketch with numbers, or using equations not introduced in the lectures will result in a score of zero. Show all relevant work for credit.
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