Question

1. What happens to the motion of an object if it has a constant mass but you change the Magnitude of the net force on it? Explain

2. Why did the slope change for each of the three runs? For runs #1, #2and #3, what did you observe about the slope of the Linear Fit as the net force increased but the total mass was kept constant? What are the units for the slope for each graph? Explain.

3. What are the main sources of errors in this experiment?

LABQUEST° 2 Vernier ZMM File Table Run 1 Time (s) Position (m) Veloci (m/s) Acce (m/s^2) 2.20 2.710 0.001 2.25 2.710 0.001 0.A LABQUEST2 Om File Graph Analyze 2.7120 Position (m IN NIC SON Run 15 Position ©2.709 m Vernier 2.7080 0.020 Velocity (m/s)LABQUESTⓇ2 zm File Graph Analyze 2.7100 Run 3 5 3: Position 2.710 m ition POS Vernier 7085 0.0030 (m/s) 3: Velocity 0.003 m/sLABQUEST2 Time (s) Po: Vernier M N File Table Run 1 Time (s) Posit (m) Vel (m/s) A (m/s^2) 3.25 2.710 0 .000 -0.051 3.30 2.71LABQUEST2 Z Vernier U File Table Run 1 Time (s) Posit (m) Vel (m/s) A (m/s^2) 0.00 2.709 0.003 -0.021 0.05 2.709 0.002 -0.02ОО LABQUEST File Graph Analyze 2.7120 Position Run 4 5 4: Position 2.709 m Vernier 2.7070 0.020 (m/s) 4 Velocity 0.004 m/s -0

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Answer #1

1. Motion means acceleration .If we constant the magnitude but change the force the object is still in motion because external force affect the motion of the object.

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