A 0.750 kg block is attached to a spring with spring constant 16.5 N/m. While the...
A 1.05 kg block is attached to a spring with spring constant 16.5 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 40.0 cm/s . What is The block's speed at the point where x= 0.150 A?
A 1.15 kg block is attached to a spring with spring constant 16.5 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 48.0 cm/s . a.) What is the amplitude of the subsequent oscillations? b.) What is the block's speed where x=0.700 A
A 0.700 kg block is attached to a spring with spring constant 15.0 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 49.0 cm/s . What are The block's speed at the point where x= 0.650 A?
A 1.10 kg block is attached to a spring with spring constant 15 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 38 cm/s . What is the block's speed at the point where x=0.45A ? Express your answer in centimeters per second.
A 0.700 kg block is attached to a spring with spring constant 17.0 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 41.0 cm/s . What is the block's speed at the point where x= 0.450 A? The amplitude was found to be 8.32 cm.
A 1.00 kg block is attached to a spring with spring constant 15.5 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 38.0 cm/s . What are A. The amplitude of the subsequent oscillations? B.The block's speed at the point where x= 0.400 A?
A 1.40 kg block is attached to a spring with spring constant 14 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 44 cm/s. What is the amplitude of the subsequent oscillations? What is the block's speed at the point where x=0.25Ax=0.25A?
A 1.25 kg block is attached to a spring with spring constant 15 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 42 cm/s . 1) What is the amplitude of the subsequent oscillations? (Express your answer in centimeters). A=____cm 2) What is the block's speed at the point where x=0.20A?(Express your answer in centimeters per second). v=______cm/s
Problem 14.20 A 0.950 kg block is attached to a spring with spring constant 15 N/m. While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 38 cm/s Part A What is the amplitude of the subsequent oscillations? Express your answer in centimeters. ΘΑ ΑΣφ ? cm Submit Request Answer Part B What is the block's speed at the point where x=0.55 A? Express your answer in centimeters...
Part A and Part B?
A 1.05 kg block is attached to a spring with spring constant 17.5 N/m . While the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 36.0 cm/s. What are Part A You may want to review (Pages 400 - 401) The amplitude of the subsequent oscillations? Express your answer with the appropriate units. ? 14.69 cm Previous Answers Request Answer Submit Incorrect; Try...