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Part1of5 4.16 points skipped eBook Hint Ask Print References Required Information An article presents the following fitted model for predicting clutch engagement time in seconds

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Part1of5 4.16 points skipped eBook Hint Ask Print References Required Information An article presents the following fitted model for predicting clutch engagement time in seconds 04 from engagement starting speed in m/s (X1), maximum drive torque in N - m (x2), system inertia in kg - m2 (x3), and applied force rate in kN/s (X4)! y= 0.83 + 0.017x1 + 0.08959 + 42.771x3 + 0.027X4 0.0043X2X4 The sum of squares for regression was SSR = 1.08613 and the sum of squares for error was SSE = 0036310. There were 44 degrees of freedom for error. Predict the clutch engagement time when the starting speed is 22 m/s, the maximum drive torque is 17 N - m, the system inertia is 0.006 kg - m2, and the applied force rate is 10 kN/s. seconds

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