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Gtaph 1: Force vs Displacement f3] II] f1] f2] [ [ [ [ Quantitatively compare the spring constants obtained in Table 1 and from Graph

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Gtaph 1: Force vs Displacement f3] II] f1] f2] [ [ [ [ Quantitatively compare the spring constants obtained in Table 1 and from Graph 1. Which is the more Use your graph to obtain a separate calculation for the spring constant. Show work below. What feature of Graph 1 gives the spring constant? accurate value for the spring constant? Explain. Calculations Show one (1) sample calculation for each of the headings to be filled in for Table 1. [ /4] Displacement Force of Gravity Spring Constant Average Spring Constant1. Determining the Spring Constant Section Total: [ / 16] You will need to carry out an experiment to determine the spring constant, k, of your spring. Equipment and Materials Spring 0 Retort stand 0 Hook clamp Mass set 0 Ruler/ metre stick 0 Masking tape Procedure Attach the hook clamp to the top of the retort stand and tape the ruler to the retort stand. Attach the spng to the hook clamp. MeaSure the height of the bottom of the spring and record the observation. This is the springs equilibn'um point (Ay = 0). Add a 50 g mass to the bottom of the spring and measure the height of the bottom of the spring. Record the observation. Add masses in 50 g increments, making a measurement of the height of the bottom of the spring each time until a total of 300 g is pulling down on the spn'ng. Be Sure to record the results after each mass is added. Observations and Results Table l: Expethnental Observations and Results Mass of Spring (kg): \"-9932 Height of the Force of S . Average Mass Added Bottom of the Displacement Gr . C 1911:?!\" Spring to Spring (kg) Spring Above of Spring (m) M::;W(;l 5:12\") Constant Desk (in) (N /m) 0 0.45 _ _ _ 0.050 0.100 0.150 0.200 0.250 0.300 [ f 5]

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