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1. The data table shows the periods and masses of several different spring oscillator combinations. Follow the . Saved directions below. mass ... T spring1

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1. The data table shows the periods and masses of several different spring oscillator combinations. Follow the . Saved directions below. mass ... T spring1 ... T spring 2 kg m 1 ... 0.150 0.243 0.173 2 ... 0.250 0.317 0.222 3 ... 0.650 0.513 0.361 4 ... 0.750 0.551 0.389 V T spring1, T spring 2 vs mass 0.5 0.4 0.3 T spring1 (s), T spring 2 (s) 0.2 0.1 0.1 0.2 0.3 0.4 0.5 0.6 0.7 1 4. Your goal is to determine the spring force constant for spring 1. In order to do that you need to create a graph and linearize the graph: As you have learned from questions 2 and 3 that T = Avm and A = , where A is a constant. So, if you draw a graph vm vs T, your graph will be linear. Therefore, . make a new column and use a formula to enter vm in that column. . plot T vs vm on the graph, and use a linear fit to find the slope of the line. Enter the slope, A, of your linearized graph here: Hide Hint Hint: Remember: Vm . Using that, what quantities can you plot to produce a linear graph? s/Vkg

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