Experiment Applied Mass Mu force (kg) (N) Net force (N) Velocity time information Acceleration (m/s^2)
1 50N 1kg 0.10 49.02N 1s, 49.02m/s 49.02m/s^2 48.04m/s^2
2 50N 1kg 0.20 48.04N 1s, 48.04m/s
3 50N 1kg 0.30 47.06N 1s, 47.06m/s 47.06m/s^2
4 50N 1kg 0.40 46.08N 1s, 46.08m/s 46.08m/s^2
5 50N 1kg 0.50 45.10N 1s, 45.10m/s 45.10m/s^2 44.12m/s^2
6 50N 1kg 0.60 44.12N 1s, 44.12m/s
7 50N 1kg 0.70 43.14N 1s, 43.14m/s 43.14m/s^2 42.16m/s^2
8 50N 1kg 0.80 42.16N 1s, 42.16m/s
1. Make a claim/equation that relates the acceleration to the coefficient of friction (mu). Make a graph with the following data and state the REGRESSION CONSTANT, SLOPE, and Y-INTERCEPT. Write a paragraph explaining the data and the graph and how it supports the equation that was made.
2. Based on the slope from the first question, look at the table and what quantity does the slope represent. Make a claim and support it with reasoning and evidence.