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Waves GIZMOS Lab Sheet/ Student Exploration: Waves

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Waves GIZMOS Lab Sheet/ Student Exploration: Waves-This GIZMOS Lab should be done Wednesday (11/4) and Thursday (11/5) to stay current with your Weekly Learning Plan. Student Exploration: Waves Directions: Follow the instructions to go through the simulation. Respond to the questions and prompts in the orange boxes. Vocabulary: amplitude, compression, crest, frequency, linear mass density, longitudinal wave, medium, period, power, rarefaction, transverse wave, trough, wave, wavelength, wave speed Prior Knowledge Questions (Answer 1&2 BEFORE using the Gizmo.) 1. A buoy is anchored to the ocean floor. A large wave approaches the buoy. How will the buoy move as the wave goes by? 2. The two images show side views of ocean waves. How are the two sets of waves different? Gizmo Warm-up Ocean swells are an example of waves. In the Waves Gizmo, you will observe wave motion on a model of a spring. The hand can move the spring up and down or back and forth. To begin, check that the Type of wave is Transverse, Amplitude is 20.0 cm, Frequency is 0.75 Hz, Tension is 3.0 N, and Density is 1.0 kg/m. (Note: In this Gizmo, “density” refers to the linear mass density, or mass per unit length. It is measured in units of kilograms per meter.) 1. Click Play ( ) in the GIZMO. How would you describe the motion of a transverse wave? Click Pause ( ). Notice the crests (high points) and troughs (low points) of the wave. 2. Click Reset ( ). Choose the Longitudinal wave and increase the Amplitude to 20.0 cm. Click Play. How would you describe the motion of a longitudinal wave? Click Pause. Notice the compressions in the wave where the coils of the spring model are close together and the rarefactions where the coils are spread apart. Activity A: (ONLVL & Pre-AP) Measuring waves Get the Gizmo ready: ● Click Reset. Select Transverse waves. ● Set Amplitude to 20.0 cm, Frequency to 1.0 Hz, Tension to 2.0 N, and Density to 2.0 kg/m. Question: How do we measure and describe waves? 1. Observe: Click Play. Observe the motions of the hand and of the green dot in the middle. A. What is the motion of the hand? B. Turn off the Lights on the checkbox and observe the green dot. What is the motion of the green dot? C. Follow the motion of a single crest of the wave. How does the crest move? In a transverse wave, the motion of the medium (what the wave moves through—in this case, the spring) is perpendicular to the direction of the wave. So, each point of the spring moves up and down as the wave travels from left to right. 2. Measure: With the lights on, click Pause. Turn on Show rulers. A. Use the horizontal ruler to measure the horizontal distance between two crests. What is this distance? This is the wavelength of the wave. B. What is the distance between the two troughs? The wavelength can be found by measuring the distance between two successive crests, two successive troughs, or any two equivalent points on the wave. 3. Measure: Click Reset. The amplitude of a transverse wave is the maximum distance a point on the wave is displaced, or moved, from its resting position. Turn off the lights. Click Play, and then click Pause. Use the vertical ruler to measure the height of the green trace, showing how far the green dot moved up and down. B. The wave’s amplitude is equal to half of this height. What is the amplitude? 4. Observe: Click Reset. Select Lights on and turn off Show rulers. Select Longitudinal waves. Check that the Amplitude is 10.0 cm, the Frequency is 1.00 Hz, and the Tension is 2.0 N. Set the Density to 1.0 kg/m, and click Play. A. What is the motion of the hand? B. Turn the lights off. What is the motion of the green dot? C. Follow the motion of a single compression of the wave. How does the compression move? In a longitudinal wave, the motion of the medium is parallel to the direction of the wave. So, each point of the spring moves back and forth as the wave is transmitted from left to right. 5. Measure: With the lights on, click Pause. Turn on Show rulers. A. The wavelength of a longitudinal wave is equal to the distance between two successive compressions (or rarefactions). What is this distance? B. How does this compare to the wavelength of the comparable transverse wave? (See your answer to question 2C.) 6. Measure: Click Reset. The amplitude of a longitudinal wave is equal to the distance a point on the wave is displaced from its resting position. Turn off the lights. Click Play, and then click Pause. Use the horizontal ruler to measure the width of the green trace. A. What is the width of the green trace? B. The wave’s amplitude is equal to half of this height. What is the amplitude? 7. Calculate: Click Reset. Select Transverse waves. Select Lights on and Show grid and turn off Show rulers. Set the Frequency to 0.50 Hz. A single cycle is the time it takes the hand to move up, move down, and then back up to the starting position. Click Play, and then click Pause after exactly one cycle. (This may take a few tries.) Activity B: (ONLVL & Pre-AP) Wave dynamics Get the Gizmo ready: ● Click Reset. Check that Transverse is selected. ● Set Amplitude to 20.0 cm, Frequency to 0.75 Hz, Tension to 3.0 N, and Density to 1.0 kg/m. Question: What factors affect the wavelength, speed, and power of waves? 1. Record: The speed of a wave is the distance a wave pulse travels per second. The wave speed is displayed below the spring. Click Play. What is the wave speed? 2. Experiment: The wavelength and speed of a wave can be influenced by many factors. Adjust the amplitude, frequency, tension, and density as described in the table below. Then report whether this causes the wavelength and wave speed to increase or decrease. Return each variable to its original value after each experiment. Adjustment Effect on wavelength Effect on wave speed Increase amplitude Increase frequency Increase tension Increase density 3. Analyze: Click Reset. Set the Frequency to 0.80 Hz, Tension to 2.0 N, and Density to 2.0 kg/m. Click Play, and then click Pause. Turn on Show rulers. A. What is the wavelength? B. What is the wave speed? C. How are the wavelength, frequency, and wave speed related? In general, the wave speed (v) can be calculated from the frequency (f) and wavelength (λ) using the formula v = f • λ. D. What is the wavelength of a wave with f = 0.9 Hz and v = 154.9 cm/s? To check, set Frequency to 0.90 Hz, Tension to 2.4 N, and Density to 1.0 kg/m. E. Change the Density to 1.5 kg/m, and click Play. Based on the wave speed, what do you expect the wavelength to be? Measure the wavelength to check. 4. Gather data: Click Reset, and turn off Show rulers. The power of a wave is the amount of energy it transmits each second. The power of the wave is displayed below the spring when Play is pressed. Record the wave power for each of the settings below. Amplitude Frequency Tension Density Power 20.0 cm 0.60 Hz 2.0 N 1.0 kg/m 40.0 cm 0.60 Hz 2.0 N 1.0 kg/m 20.0 cm 0.50 Hz 2.0 N 1.0 kg/m 20.0 cm 1.00 Hz 2.0 N 1.0 kg/m 20.0 cm 0.60 Hz 2.0 N 1.0 kg/m 20.0 cm 0.60 Hz 4.0 N 1.0 kg/m 20.0 cm 0.60 Hz 2.0 N 0.5 kg/m 20.0 cm 0.60 Hz 2.0 N 1.0 kg/m Which factors increased the power of the wave? 5. Compare: Click Reset. Select Longitudinal waves. Set Amplitude to 20.0 cm, Frequency to 0.60 Hz, Tension to 2.0 N, and Density to 1.0 kg/m. Click Play. A. What is the power of this longitudinal wave? B. Compare this power to the power of a transverse wave with the same settings. Does changing the type of wave affect its power? 6. Apply: Sound waves are longitudinal waves that can travel through air. Would you expect sound waves to travel faster through a low-density gas (such as helium) or a higher-density gas such as carbon dioxide? Justify your answer based on what you have learned. 7. Apply: As ocean waves approach the shore, friction with the ocean bottom causes them to slow down. If the frequency is the same, how will this affect the wavelength of the waves? Activity C: (Pre-AP ONLY) Combined waves Get the Gizmo ready: ● Click Reset. Select Combined waves. ● Set Amplitude to 10.0 cm, Frequency to 0.75 Hz, Tension to 2.0 N, and Density to 1.0 kg/m. Question: What does wave motion look like when transverse and longitudinal waves are combined? 1. Observe: Click Play. Observe the motions of the hand and of the green dot in the middle. A. What is the motion of the hand? B. Deselect the Lights On checkbox. What is the motion of the green dot? In a combined wave, the motion of the medium is circular. So, each point of the spring moves in a circle as the wave is transmitted from left to right. C. Click Pause. Compare the crests (high points) to the troughs (low points). What do you notice? Combined waves, such as ocean waves, do not look exactly like transverse waves. In the Gizmo, the troughs are pointy and the crests are rounded. In the ocean, the crests are relatively pointy while the troughs are rounded. 2. Measure: Click Reset.

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Voorbeeld van de inhoud

This GIZMOS Lab should be done Wednesday (11/4) and Thursday
(11/5) to stay current with your Weekly Learning Plan.
Student Exploration: Waves

Directions: Follow the instructions to go through the simulation. Respond to the questions and
prompts in the orange boxes.

Vocabulary​:​ amplitude, compression, crest, frequency, linear mass density, longitudinal wave, medium,
period, power, rarefaction, transverse wave, trough, wave, wavelength, wave speed

Prior Knowledge Questions ​(​Answer 1&2 BEFORE using the Gizmo​.)
1. A buoy is anchored to the ocean floor. A large wave approaches the buoy. How
will the buoy move as the wave goes by?


The buoy will move because the wave will push it.

2. The two images show side views of ocean waves. How are the two sets of waves different?


The two images showing the two
different sides of the ocean waves
are different because the first image
of the wave is higher than the
second image of the ocean wave.




Gizmo Warm-up
Ocean swells are an example of ​waves​. In the ​Waves​ Gizmo, you will observe
wave motion on a model of a spring. The hand can move the spring up and
down or back and forth.

To begin,​ check that the ​Type of wave​ is ​Transverse​, ​Amplitude​ is 20.0 cm, ​Frequency​ is 0.75 Hz,
Tension​ is 3.0 N, and ​Density​ is 1.0 kg/m. (Note: In this Gizmo, “density” refers to the ​linear mass density​,
or mass per unit length. It is measured in units of kilograms per meter.)

1. Click ​Play​ ( ) in the GIZMO. How would you describe the motion of a ​transverse wave​? Click ​Pause​ (
). Notice the ​crests​ (high points) and ​troughs​ (low points) of the wave.


Spring model moves up and down as the wave goes from left to right.


2. Click ​Reset​ ( ). Choose the ​Longitudinal w
​ ave and increase the ​Amplitude​ to 20.0 cm. Click ​Play​.
How would you describe the motion of a ​longitudinal wave​? Click ​Pause​. Notice the ​compressions​ in the
Reproduction for educational use only. Public sharing or posting prohibited. © 2020 ExploreLearning™ All rights reserved

, wave where the coils of the spring model are close together and the ​rarefactions​ where the coils are
spread apart.




Activity A: Get the Gizmo ready​:
(ONLVL & Pre-AP) ● Click ​Reset​. Select ​Transverse​ waves.
● Set ​Amplitude​ to 20.0 cm, ​Frequency​ to 1.0 Hz,
Measuring waves Tension​ to 2.0 N, and ​Density​ to 2.0 kg/m.


Question: How do we measure and describe waves?

1. Observe​: Click ​Play​. Observe the motions of the hand and of the green dot in the middle.


A. What is the motion of the hand? the hand moves up and down

B. Turn off the ​Lights on the checkbox​ and The green dot moves up and down
observe the green dot. What is the motion of
the green dot?

C. Follow the motion of a single crest of the The crest moves to the right
wave. How does the crest move?


In a ​transverse wave​, the motion of the ​medium​ (what the wave moves through—in this case, the spring)
is perpendicular to the direction of the wave. So, each point of the spring moves up and down as the wave
travels from left to right.

2. Measure​: With the lights on, click ​Pause​. Turn on ​Show rulers​.


A. Use the horizontal ruler to measure the horizontal distance -100
between two crests. What is this distance?
This is the ​wavelength​ ​of the wave.
B. What is the distance between the two troughs? -100

The wavelength can be found by measuring the distance between two successive crests, two
successive troughs, or any two equivalent points on the wave.

C. Click ​Reset​. Set the ​Density​ to 1.0 kg/m. Click ​Play​, and then -140 cm [ 141.4 cm]
Pause​. What is the wavelength of this wave?


3. Measure​: Click ​Reset​. The ​amplitude​ of a transverse wave is the maximum distance a point on the wave
is displaced, or moved, from its resting position. Turn off the lights. Click ​Play​, and then click ​Pause​. Use
the vertical ruler to measure the height of the green trace, showing how far the green dot moved up and
down.
A. What is the height of the green trace? 40 cm


Reproduction for educational use only. Public sharing or posting prohibited. © 2020 ExploreLearning™ All rights reserved

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Aantal pagina's
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