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Standing Waves
Page 2
Questions (138)
A nylon string has a linear density of 7.2g/m and is under a tension of 150N. The fixed supports are 90cm apart. The string is
1 answer
asked by
Susane
876 views
A stretched string fixed at both ends is 2.0 m long. What are the three wavelengths that will produce standing waves on this
3 answers
asked by
Rubi Red
4,311 views
A 2.2 m-long string is fixed at both ends and tightened until the wave speed is 50 m/s. What is the frequency of the standing
4 answers
asked by
Danny
2,805 views
To demonstrate standing waves, one end of a string is attached to a tuning fork with frequency 120 Hz. The other end of the
3 answers
asked by
AJ
1,758 views
To demonstrate standing waves, one end of a string is attached to a tuning fork with frequency 120 Hz. The other end of the
2 answers
asked by
AJ
1,457 views
A flute can be regarded as a tube open at both ends. It will emit a musical note if the flutist excites a standing wave in the
4 answers
asked by
rishabh gupta
1,291 views
I don't know how to answer this questin i guess I don't understand the definition
A streteched sgtring fized at both ends is 2.0
2 answers
asked by
Physics
1,272 views
What is the length of a string that has a standing wave with four nodes (including those at the ends) and lambda = 24 {\rm cm}
2 answers
asked by
Celina
1,233 views
What are the first, second, and third frequencies audible from a 20 cm long organ pipe when (A) only one end is open and when
3 answers
asked by
ashley --
1,215 views
A string has a linear density of 8.5*10^-3 kg and is under the tension of 280 N. The string is 1.8 m long, is fixed at both
2 answers
asked by
David
1,191 views
Standing waves are set up on two strings fixed at each end, as shown in the drawing. The two strings have the same tension and
1 answer
asked by
Daniel
1,076 views
The displacement of a standing wave on a string is given by D=3.6sin(.54x)cos(37t), where x and D are in centimeters and t is in
1 answer
asked by
Tay
1,046 views
The string is 1.00 m long with tension 6.00 N. The total mass of the string is 0.012 kg. Find the wavelength of this standing
4 answers
asked by
Now Going to give up!
1,017 views
two ends of a string in her hands and then moves her hands up and down so that a wave travels from one end of the string to the
1 answer
asked by
derick
985 views
A standing is generated by two waves which have a velocity of 20 m/s, and go through 10 cycles in 2 seconds. How far is it from
2 answers
asked by
Phil
992 views
A standing wave is set up in a string of variable length and tension by a vibrator of variable frequency. Both ends of the
1 answer
asked by
Anonymous
981 views
Which of the following wavelengths will produce standing waves on a string that is 1.9 m long?
A.1.9 B.3.3 C.3.5 D.95
2 answers
asked by
Gwen
952 views
A string with linear mass density μ = 0.0279 kg/m under a tension of T = 183 N is oriented in the x-direction. Two transverse
1 answer
asked by
linda
923 views
A distance of 5.00 cm is measured between two adjacent nodes of a standing wave on a 20.0 cm long string.
A) In which harmonic
1 answer
asked by
Tony
953 views
a 2m long string of mass 10g is clamped at boths ends.the tension in the string is 150N.the string is plucked so that it
1 answer
asked by
IE
943 views
A guitar string 61.8 cm long vibrates with a standing wave that has three antinodes. Which harmonic is this?
2 answers
asked by
Peyton
940 views
Student observed ten antinodes on a string of length 1.70 m under tension produced by a mass of 0.22 kg. The string linear
1 answer
asked by
Amy
913 views
(Photo of the word problem) ~ h t t p s : //imgur. c o m/a/cZ0htfE
The figure above on the left shows a uniformly thick rope
1 answer
asked by
raki12
919 views
A string has a linear density of 8.1 x 10-3 kg/m and is under a tension of 200 N. The string is 2.9 m long, is fixed at both
1 answer
asked by
natasha
909 views
As in the figure below, a simple harmonic oscillator is attached to a rope of linear mass density 5.4 ✕ 10−2 kg/m, creating
2 answers
asked by
joy
884 views
A string has a length of 84 cm. The string is stretched taut, and both ends are restricted to be nonmoving. Touching the string
3 answers
asked by
Brittney
862 views
Two nearby nodes of a standing wave are separated by 4.5 m. If the frequency of the wave is 184 Hz, what is the speed of the
1 answer
asked by
Anon
807 views
A string has a linear density of 6.2 x 10-3 kg/m and is under a tension of 250 N. The string is 1.2 m long, is fixed at both
2 answers
asked by
Tim
824 views
A student uses a 2.00-m-long steel string with a diameter of 0.90 mm for a standing wave experiment. The tension on the string
1 answer
asked by
kassy
790 views
Suppose you have a string that is being made to vibrate at a specific frequency, f. The speed of waves on the string is v. The
2 answers
asked by
Anna
792 views
A fundamental standing wave is produced in a pipe that is opened at both ends. The pipe is 0.50m long. If the speed of sound is
2 answers
asked by
Anonymus
763 views
A standing wave has a wavenumber 200 rad/m. What is the distance between two adjacent nodes?
3 answers
asked by
Anonymous
716 views
The figure below shows a standing wave oscillating at 95 Hz on a string. The distance d between the two walls equals 70 cm. What
2 answers
asked by
Anonymous
691 views
A pipe has one end open and the one end closed. Where must the node be located in order for a standing wave to occur? (The left
4 answers
asked by
Lucy H.
719 views
A string is attached to a wall and vibrates back and forth, as in Figure 17.18. The vibration frequency and length of the string
1 answer
asked by
Native
717 views
A guitar string is .75m and has a mass of .005kg. A standing wave is produced when the string is plucked.
a) what is the fifth
1 answer
asked by
Andrea
659 views
A standing wave has wavenumber 200 rad/m. What is the distance between two adjacent nodes.
2 answers
asked by
Anonymous
641 views
the speed of a wave in a 4 m rope is 3.2 m/s. what is the frequency of the vibration required to produce a standing wave pattern
1 answer
asked by
Isabelle
645 views
What is the longest wavelength for a standing wave, in the same length tube, that is open at one end and closed at the other?
2 answers
asked by
jaxson
617 views
Vibrations from a 650 Hz tuning fork sets up standing waves in a string clamped at both ends. The wave speed for the string is
2 answers
asked by
Kyle
591 views
What are the three longest wavelengths for standing sound waves in a 126-cm-long tube that is?
(a) open at both ends and (b) open
2 answers
asked by
lizz
599 views
Decide whether each of the following statements are T-True, or F-False.
A) If you increase the tension in a string, the frequency
2 answers
asked by
About to give up!
583 views
Follow on the Sall Sue question earlier. What frequency would be required for sally and her cheerful and hard-wroking partner to
2 answers
asked by
CJ
569 views
A 19.5 gram, 56.3 centimeter long steel guitar string is vibrating in its fourth harmonic. It induces a standing wave in a
6 answers
asked by
Alphonse
578 views
A string is stretched between two supports that are L = 0.9 m apart. It resonates at a frequency of f = 410 Hz with a standing
3 answers
asked by
sarah
556 views
As in the figure below, a simple harmonic oscillator is attached to a rope of linear mass density 5.4 ✕ 10^−2 kg/m, creating
2 answers
asked by
ATT
573 views
Wavelength in a Closed Column
Here is the prompt: We place a speaker near the top of a drinking glass. The speaker emits sound
2 answers
asked by
David
564 views
The velocity of waves on a string is 97 m/s. If the frequency of standing waves is 476 Hz, how far apart are two adjacent nodes?
2 answers
asked by
perry
563 views
Two waves are combined to form this standing wave equation of
y(x,t) = (3 mm)sin[x/(2 m]cos[(100 rad/s)t] a. What's the amplitude
3 answers
asked by
Alan
565 views
A string has a linear density of 6.7 x 10-3 kg/m and is under a tension of 210 N. The string is 1.6 m long, is fixed at both
3 answers
asked by
Daniel
557 views
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Parent Categories (10)
Acoustics
Optics
Physics
Sound waves
Wave
Wave Mechanics
Waves
Waves and Oscillations
Waves and Sound
Waves and Vibrations