Waves in a spring lab answers. lab slinky and snaky

Discussion in 'answers' started by Kegrel , Thursday, February 24, 2022 8:20:03 AM.

  1. Gardak

    Gardak

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    Storms in the South Pacific can create waves that travel all the way to the California coast, 12, km away. As the steps are repeated,for each trial consistently decrease the wavelength. However, none of the particles are transported along a transverse wave. The sound produced by the string is a longitudinal wave where the disturbance of the air moves parallel to the propagation of the wave. For example, consider the simplified surface water wave that moves across the surface of water as illustrated in Figure.
     
  2. Gugami

    Gugami

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    Slinky Wave Lab. Purpose: To study the types of waves and their properties. Observe this wave and how it travels. rese OBU DORILAREN AMUROS. 7. Answer.The string is under a tension of.
     
  3. Meztikree

    Meztikree

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    Purpose: To determine the mathematical relationship between the spacing distance between adjacent nodes in a longitudinal standing wave pattern and the.The speed of the pulses remains the same as they travel through each other.
     
  4. Galrajas

    Galrajas

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    WAVES KEY. THIS LAB WILL COUNT AS A MAJOR GRADE!! Be very careful with the slinkys (you break or twist = -5). Name class date. Station 1 - What Can a Slinky.Note that the study of standing waves can become quite complex.
     
  5. Vudoshura

    Vudoshura

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    Note to students: All answers and diagrams are to be made on a separate Place the Slinky spring on your lab counter top and have your partner hold one.The highest energy photons are gamma-rays;the lowest energy are radio waves.
     
  6. Faunos

    Faunos

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    A complementary experiment involves sending waves and ripples along a long Observe the pulse as it travels, with a view to answering questions; such as.Given what you know about waves, what errors can you identify in the experiment that will keep the results from being exactly what the theory predicts?
     
  7. Akinokinos

    Akinokinos

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    wave phenomena to help you organize your experiences with mechanical waves. We will build on our experiences from the last laboratory by using springs as.You can add this document to your saved list Sign in Available only to authorized users.
     
  8. Vilar

    Vilar

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    SLINKY AND SNAKY PURPOSE: To observe some basic wave characteristics. MATERIALS: Snaky spring, slinky spring, string, and stopwatch.Radio waves have photons with low energies,microwaves have a little more energy than radio waves, infrared has still more, then visible, ultraviolet, X-rays, and gamma-rays.
     
  9. Kalabar

    Kalabar

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    16.6 Standing Waves and Resonance forum? In a transverse wave the particles move at right angles to the direction of wave The holder and the shaker should hold opposite ends of a spring and.The amplitude of the standing wave is 3.
    Waves in a spring lab answers. Acoustics and Vibration Animations
     
  10. Tulkree

    Tulkree

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    Next create a series of waves by moving your hand towards and away from your partner (see the diagram below). Observe this wave and how it travels. 7. Answer.The string vibrator operates at a voltage of
     
  11. Yozshugrel

    Yozshugrel

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    In a transverse wave the particles move at right angles to the direction of wave The holder and the shaker should hold opposite ends of a spring and.I have identified two particles in orange in this animation to illustrate the retrograde elliptical path at the surface and the reversal in the direction of motion as a function of depth.
     
  12. Nilmaran

    Nilmaran

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    [/hidden-answer]. Consider a stretched spring, such as a slinky. The stretched spring can support longitudinal waves and transverse waves.The Length Spotter should stand beside the measuring line roughly at mid-length.Forum Waves in a spring lab answers
     
  13. Vok

    Vok

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    Figure A lab setup for creating standing waves on a string. this simulation to play with a 1D or 2D system of coupled mass-spring oscillators.Objective: To understand transverse and longitudinal waves and the characteristics of frequency, wavelength, and interference.
     
  14. Tojalkis

    Tojalkis

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    Exercises on Oscillations and Waves. Exercise You find a spring in the laboratory. The answers don't only apply to a mass on a spring. Exercise Antinodes appear at odd multiples of quarter wavelengths, where they oscillate between The nodes are marked with red dots and the antinodes are marked with blue dots.
    Waves in a spring lab answers.
     
  15. Shagis

    Shagis

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    Others will be answered using the book. A. TYPES OF MECHANICAL WAVES: In the hall, stretch the slinky on the floor until it is stretched (but.Sound waves in air and water are longitudinal.
     
  16. Vudozshura

    Vudozshura

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    Did the observed frequency of the 2m standing wave agree with your answer to question 3, for Exercise 1 (page 6)? Explain. 4. How do the wave speed and the.Consider the red arrow, which shows the distance the crest has moved in 3 s.
     
  17. Gobei

    Gobei

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    With the Slinky stretched out to the tape, grab the spring waves in the lab activity. e) Using your answer to Part (d), show how the units of.In transverse wavesthe vibrations are at right angles to the direction of wave travel.
     
  18. Bagor

    Bagor

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    No, the spring coils did not actually travel from one end of the slinky to the other. If the wave coils did not travel than what did? The energy traveled.The second can be found by adding a half wavelength.
     
  19. Akinora

    Akinora

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    Answer to Solved Intro to Waves Lab Name: Date: Please be gentle with. DO NOT overstretch the springs; they will become permanently deformed.You will need to produce pulses in the spring.
     
  20. Grot

    Grot

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    It travels faster. What is the speed of a periodic wave distur- on the rope than on the spring, and bance that has a frequency of Hz and a fastest in the.Electromagnetic waves include radio waves the longest wavelengthmicrowaves, infrared radiation radiant heatvisible light, ultraviolet radiation, x-rays, and gamma rays.
     
  21. Moogukora

    Moogukora

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    Key. DUNIA DAN z † transverse wave. -trough In your textbook, read about springs and simple harmonic motion on pages Answer the following.In between each two nodes is an antinode, a place where the medium oscillates with an amplitude equal to the sum of the amplitudes of the individual waves.
     
  22. Grojas

    Grojas

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    The frequency of oscillation is found from the total mass and the spring constant. 5. 1. 1 10 N m. Hz Hz. 2. 2.Have him send a pulse on the same side at the same instant you do, so that the two pulses meet.Forum Waves in a spring lab answers
    Waves in a spring lab answers.
     
  23. Bashicage

    Bashicage

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    Longitudinal Waves. In a longitudinal wave the particle displacement is parallel to the direction of wave propagation. The animation at right shows a one-.What is the average value of velocity do you get over all of the EM spectrum ranges?
     
  24. Nakasa

    Nakasa

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    large Slinky, stopwatch, m measuring tape, spring scale, In this lab we are going to study how waves travel on strings similar to the ones in many.While the night sky has always served as a source of wonder and mystery, it has only been in the past few decades that we have had the tools to look at the Universe over the entire electromagnetic EM spectrum and see it in all of its glory.
     
  25. Moogushura

    Moogushura

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    Pre-lab Exercise: As you have seen in class, the phase velocity of a wave on Measure the frequency, wavelength, and speed of standing waves on a string.How does the wavelength depend on the frequency?
    Waves in a spring lab answers.
     
  26. Dour

    Dour

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    An invalid email address and/or password has been entered. Email address. Password Remember me Forgot password? Don't have an account? Register.These points are known as fixed points nodes.
     
  27. Shamuro

    Shamuro

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    The energy is dissipated in overcoming the friction between the floor and the spring. Lab Part bestinternettvbox.onlineerse Waves. The procedure for this part of the lab is.A string with a linear mass density of is fixed at both ends.
     
  28. Grokasa

    Grokasa

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    Sound Waves. Lab Sound Waves in Matter. 3 Light For example, in a spring, squeezing some coils together more Check your answer.Given what you know about waves, what errors can you identify in the experiment that will keep the results from being exactly what the theory predicts?
     
  29. Faukinos

    Faukinos

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    Description: Laboratory survey of wave and optical phenomena and associated instrumentation. Scan handwritten answers to your homework and submit the.It is used in the equation that describes the relationship between energy and frequency.
     
  30. Arashik

    Arashik

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    Learn about and revise wave properties, calculations involving waves and waves are often demonstrated by pushing and pulling a stretched slinky spring.Your e-mail Input it if you want to receive answer.
     
  31. Melmaran

    Melmaran

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    For example, adding one quarter of a wavelength will result in an antinode at the boundary and is not a mode which would satisfy the boundary conditions.
     
  32. Taugrel

    Taugrel

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    Longitudinal waves show areas of compression and rarefaction :.
    Waves in a spring lab answers.
     
  33. Nikozuru

    Nikozuru

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    The only difference between radio waves, visible light, and gamma-rays is the amount of energy in the photons.
     
  34. Virn

    Virn

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    A medium is the substance a mechanical waves propagates through, and the medium produces an elastic restoring force when it is deformed.
     
  35. Kajirn

    Kajirn

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    Although the spring lab performed in Part I may not produce an exact result,students should have seen that wavelengths and frequencies are inversely related.
     
  36. Nikomuro

    Nikomuro

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    An example is an ocean wave.
    Waves in a spring lab answers.
     
  37. Kigall

    Kigall

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    Just me.
    Waves in a spring lab answers.
     
  38. Zukora

    Zukora

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    The magnitude of the wave velocity is the distance the wave travels in a given time, which is one wavelength in the time of one period, and the wave speed is the magnitude of wave velocity.
     
  39. Bashakar

    Bashakar

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    Describe what happened when two pulses meet on the same side of the spring.
     
  40. Yozshutaur

    Yozshutaur

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    Longitudinal Waves With a partner to help you,pull the spring out on a smooth floor to a length of about 6 to 10 meters.
     
  41. Muzuru

    Muzuru

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    Objective: To understand transverse and longitudinal waves and the characteristics of frequency, wavelength,and interference.
     
  42. Akinokree

    Akinokree

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    The string has a linear mass density of Two resonant frequencies of the string are Hz and Hz.
     
  43. Samujin

    Samujin

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    Think of a child on a swing, which can be modeled as a physical pendulum.
     

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