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5. Using the above values for astraight and atilted, verify the theoretical relation. Save the graphs for the two runs mentioned in step 2
5. Using the above values for astraight and atilted, verify the theoretical relation. Save the graphs for the two runs mentioned in step 2 and step 4 and embed here. Are these values related as you predicted? If not, recheck your calculations and measurements. Compare the atilted calculated to atilted measured, use the equation below % difference = la tilted Measured-a tilted Calculated a tilted Measured 100 = Part 2: Balanced Cart on Ramp 50 3 5.325.5 M T=My sin @ The hanging mass balances the cart. You'll calculate the angle at which they balance given the mass of each object. Fill in all five forces in the free-body diagrams for the hanging mass (m) and the cart (M). Break Mg into two components: one parallel to the ramp and another perpendicular to it. Use T for tension - you'll write it twice. It is important to understand that the tension applied to the cart is equal to the tension applied to the hanging mass. PHY113 LAB MANUAL BLAKE. SEBASTIAN. ELAQAD_50
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