Physics 211-Module 4 Hands On Activities Packet Part 2 c. What is the speed of the block when the displacement from equilibrium is 5 cm? Hint: use conservation of mechanical energy. Student Add Name Here d. What is the maximum speed during these oscillations? Hint: use conservation of energy and think about what the potential energy is when the speed is maximum. e. The experiment is repeated with the same mass and spring, but the amplitude is doubled. What happens to each of the following quantities: unchanged doubles

Physics for Scientists and Engineers: Foundations and Connections
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Chapter8: Conservation Of Energy
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Problem 67PQ: The Earths perihelion distance (closest approach to the Sun) is rp = 1.48 1011 m, and its aphelion...
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plz just do part c, d e.

Physics 211 Module 4 Hands On Activities Packet Part 2
Student Add Name Here
c. What is the speed of the block when the displacement from equilibrium is 5 cm? Hint: use conservation of
mechanical energy.
d. What is the maximum speed during these oscillations? Hint: use conservation of energy and think about
what the potential energy is when the speed is maximum.
e. The experiment is repeated with the same mass and spring, but the amplitude is doubled. What happens to
each of the following quantities:
Maximum potential energy
quadruples
Oscillation frequency
Maximum kinetic energy
Maximum speed
●
●
●
decreases unchanged doubles
decreases unchanged
unchanged
decreases
decreases unchanged
doubles
doubles
doubles
quadruples
quadruples
quadruples
Transcribed Image Text:Physics 211 Module 4 Hands On Activities Packet Part 2 Student Add Name Here c. What is the speed of the block when the displacement from equilibrium is 5 cm? Hint: use conservation of mechanical energy. d. What is the maximum speed during these oscillations? Hint: use conservation of energy and think about what the potential energy is when the speed is maximum. e. The experiment is repeated with the same mass and spring, but the amplitude is doubled. What happens to each of the following quantities: Maximum potential energy quadruples Oscillation frequency Maximum kinetic energy Maximum speed ● ● ● decreases unchanged doubles decreases unchanged unchanged decreases decreases unchanged doubles doubles doubles quadruples quadruples quadruples
2. The graph shows the x position of a small ball hooked onto a spring of spring constant 2000 N/m.
a. What is the mass of the ball?
E
K
40
30
20
10
5
S
10 15 20 25 30
time (ms)
b. What is the maximum potential energy stored in the spring during the oscillations? Assume U = 0 at
equilibrium.
Transcribed Image Text:2. The graph shows the x position of a small ball hooked onto a spring of spring constant 2000 N/m. a. What is the mass of the ball? E K 40 30 20 10 5 S 10 15 20 25 30 time (ms) b. What is the maximum potential energy stored in the spring during the oscillations? Assume U = 0 at equilibrium.
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