weighing 4 pounds is attached to a spring whose constant is 2 Ib/ft. The medium offers a damping force that is numerically equal to the instantaneous velocity. The mass is initially released from a point 1 he equilibrium position with a downward velocity of 14 ft/s. What is the position (in feet) of the mass at the instant that you found in 3(b.) Round your answer to four digits after the decimal sign.

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Chapter1: Units, Trigonometry. And Vectors
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3 c) A mass weighing 4 pounds is attached to a spring whose constant is 2 Ib/ft. The medium offers a damping force that is numerically equal to the instantaneous velocity. The mass is initially released from a point 1
foot above the equilibrium position with a downward velocity of 14 ft/s. What is the position (in feet) of the mass at the instant that you found in 3(b.) Round your answer to four digits after the decimal sign.
Transcribed Image Text:3 c) A mass weighing 4 pounds is attached to a spring whose constant is 2 Ib/ft. The medium offers a damping force that is numerically equal to the instantaneous velocity. The mass is initially released from a point 1 foot above the equilibrium position with a downward velocity of 14 ft/s. What is the position (in feet) of the mass at the instant that you found in 3(b.) Round your answer to four digits after the decimal sign.
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