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Angle Table 1: Initial Velocity = 15 m/s Table 2: Initial Velocity = 20 m/s Range (m) Max. Height (m) Range (m) Max. height (m)

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Angle Table 1: Initial Velocity = 15 m/s Table 2: Initial Velocity = 20 m/s Range (m) Max. Height (m) Range (m) Max. height (m) 50 22.50m 6.72m 40.5m 11.95m 55 21.53m 7.80m 38.53m 13.65m 60 19.85m 8.60m 35.34m 15.30m 65 17.70m 9.35m 31.2m 16.66m 70 14.67m 10.10m 26.20m 17.95m 75 11.44m 10.65m 20.38m 18.90m 80 7.85m 11.11m 14.02m 19.90m 85 3.95m 11.40m 7.32m 20.30m 90 Om 11.37m Om 20.40mPart 1: Initial Velocity = 15 m/s Part 2: Initial Velocity = 24 m/s No Angle Range (m) Angle Range (m) 30 19.92m 30 50.66m 35 21.50m 35 W N P 55.03m 40 22.54m 40 57.95m 4 43 22.98m 43 58.84m 45 23.08m 45 58.60m 47 22.87m 47 58.34m 50 22.50m 50 57.35m 55 21.53m 55 55.08m 60 19.85m 60 50.78mDATA ANALYSIS & CONCLUSION: *Draw on the same graph paper of Angle (X-axis) against Range (Y-axis) and max height (Y-axis), for Table 1. * Draw on the same graph paper of Angle (X-axis) against Range (Y-axis) and max height (Y-axis), for Table 2. Use the graphs to answer the following. 1. At what angle the range equals to max height for each initial velocity? The angle for v = 15 m/s: The angle for v = 20 m/s: Does the angle depend on the initial speed? 2. Determine the angle theoretically that found in the experiment. (All Details)* Draw a graph between Range (Y-Axis) and sin20 (X-Axis) when v = 15 m/s and 1. What is the relationship between Range and sin20 2. What is the slope of this graph represent 3. Determine the acceleration due to gravity* Draw a graph of Angle (X-axis) against Range (Y-axis), for the first velocity. * Draw a graph of Angle (X-axis) against Range (Y-axis), for the second velocity. Use the graphs to answer the following. 1. What is the angle the gives the maximum range for each initial velocity The angle for v = 15 m/s: The angle for v = 24 m/s: Does the angle depend on the initial speed

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