Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

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Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion
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Transcript of Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Page 1: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Motion on an inclined plane

Find velocity from acceleration

Introduction to Force and motion

Page 2: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Inclined plane

Page 3: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Estimate the angle of slope or a run.

Page 4: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Finding velocity from accelerationThe change of velocity is positive if the area above a=0 axis ; andis negative if the area is

below.

Q1: What is the velocityat t=10s? At t=0, v=-10m/s.

1) 16 m/s;2) 22m/s;3) 12m/s;4) 26 m/s.

Page 5: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Forces and motion

Page 6: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

F = ma Newton’ second Law

Page 7: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Q1: A rubber band stretched to the standard length causes an object to accelerate at 1 m/s^2. Another object with twice the same is pulled by five rubber band stretched to the same length. The acceleration is

1) 0.5 m/s^2;2) 1m/s^2;3) 2.5m/s^2;4) 5m/s^2.

Page 8: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.
Page 9: Motion on an inclined plane Find velocity from acceleration Introduction to Force and motion.

Inertial reference frame

Only in an inertial reference frame, Newton’s laws are valid.