The dynamic cart starts at the base of the ramp. Displace the spring end of the...
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The dynamic cart starts at the base of the ramp. Displace the "spring" end of the cart the same amount for all trails. Identify the final height reached by the cart at three different ramp angles. Screenshots at these locations are needed as data in the report. Do not move the camera between changes in ramp angles so that the pictures can be placed side-by-side to determine whether or not the final height reached by the cart remained consistent. Conduct the experiment to reduce experimental error. 2 Dynamic Cart Ramp Figure 2: Instructor Set-Up for Mini-Experiment 2 Mini-Experiment 2 In the LDN: 。 Draw the following diagram of the cart's initial position (pulled back at the bottom of the ramp) and its final position (stopped at maximum height). 。 Using an energy bar chart like that shown on the bottom right, derive the total energy equation for the cart-spring-Earth system in terms of cart mass (m), vertical height (h), spring constant (k), and any other universal constants as applicable. O BOOK BOOK BOOK BOOK Und بولا W W Us! U In your report: Figure 3: Experiment 2 Diagram o Place the screenshots of the cart at max height side-by-side and draw a horizontal line. This line may either go through all max heights, or is an average between the three. The dynamic cart starts at the base of the ramp. Displace the "spring" end of the cart the same amount for all trails. Identify the final height reached by the cart at three different ramp angles. Screenshots at these locations are needed as data in the report. Do not move the camera between changes in ramp angles so that the pictures can be placed side-by-side to determine whether or not the final height reached by the cart remained consistent. Conduct the experiment to reduce experimental error. 2 Dynamic Cart Ramp Figure 2: Instructor Set-Up for Mini-Experiment 2 Mini-Experiment 2 In the LDN: 。 Draw the following diagram of the cart's initial position (pulled back at the bottom of the ramp) and its final position (stopped at maximum height). 。 Using an energy bar chart like that shown on the bottom right, derive the total energy equation for the cart-spring-Earth system in terms of cart mass (m), vertical height (h), spring constant (k), and any other universal constants as applicable. O BOOK BOOK BOOK BOOK Und بولا W W Us! U In your report: Figure 3: Experiment 2 Diagram o Place the screenshots of the cart at max height side-by-side and draw a horizontal line. This line may either go through all max heights, or is an average between the three.
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