The speed of a sinusoidal wave on a string depends on: The amplitude of the wave The wavelength of the wave The tension of the string The distance between adjacent crests in the wave The frequency of the wave
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Q: When increasing and decreasing the tension in a wave, the speed of the wave is affected. What…
A: SOlution: Effect of tension on teh speed of the wave propogation in the string
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A: Consider y-x graph;The distance between two successive crest is stated as the wavelength so the…
Q: The equation of a standing wave is y(x,t) = 0.8 cos(0.05Ttx) sin(200tt) where x and y are in cm andt…
A: Given, y(x,t)=0.8cos0.05πtsin200πtCompare with,y(x,t)=Acosktsinωt Amplitude, A=0.8cm k=0.05π so,…
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Q: If the wave speed of a wave traveling on a string is doubled while the amplitude and frequency of…
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Q: Which of the following statements are true about standing waves on a string? Choose all that apply O…
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Q: A wire is stretched between two posts. Another wire is stretched between two posts that are twice as…
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Q: A transverse wave travelling in a taut string of length L = 1 m is described by: y=0.1…
A: Mass of string m= 100g Length of string l= 1m Y=0.1sin(2πx-10πt)
Q: A transverse wave travelling in a taut string of length L = 1 m is described by: y=0.1…
A: We have to use some basic formula here.
Q: if the tension (i.e. force) on a string increases 10 times but the density of the string remains…
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Q: f the tension (i.e., force) on a string increases 5 times but the density of the string remains…
A: Given: The new tension in the string is five times the initial tension. The density of the string is…
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A: Solution:
Q: A wave is made by swinging one end of a string, while the other end is held stationary. Pulling the…
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Q: What is the difference between transverse and longitudinal waves? a) Transverse waves always travel…
A: In this question We have to discuss about the difference between the transverse and longitudinal…
Q: If the tension (i.e., force) on a string increases 2 times but the density of the string remains…
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Q: The figure shows the displacement y of a traveling wave at a given position as a function of time…
A: Consider following given figure.Wavelength: Wavelength is defined as the distance between two…
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A: Given:
Q: A standing wave ona string is given by: y(x,t) = 0.04sin(2Ttx) cos(100rtt), where x and y are in…
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Q: Consider the standing wave pattern shown in the figure. The transverse speed of an antinode at t =…
A: Given, Distance of an antinode d = 0.5 m At time t0 = 0.05 s
Q: tense string with total mass 0.10kg and length 1.10m has a tension 21.00N applied to it. What would…
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Q: Is the speed of a transverse wave on a string the same as the speed which a particle on the string…
A: Transverse wave: the part of an object's velocity that runs parallel to our line of sight.Transverse…
Q: Ty(cm) -1- 2/3 4 6 /7 8 9 F(s) y (cm) 2/3 4 6 7 8/9 x(m) -2
A: The displacement of a travelling wave is given byy=Asinkx-ωt
Q: A wave is made by swinging one end of a string, while the other end is held stationary. Pulling the…
A: Required speed of the wave when the tension in string is quadruple i.e. four times
Q: The equation of a standing wave is y(x,t) = 0.8 cos(0.1x) sin(200nt) where x and y are in cm and t…
A: Given: The standing wave equation is y(x,t)=0.8 cos0.1πx sin200πt. To find: The separation between…
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A: Waves carry energy from one point to another point.
Q: The wave function of a standing wave on a string is given by:y(x,t)=0.02sin(πx)cos(50πt)
A: Given:- The wave function of the standing wave is as y(x,t) = 0.02sinπxcos50πt where x and y are…
Q: A wave is made by swinging one end of a string, while the other end is held stationary. Pulling the…
A: Given, Tensionfinal=4Tensioninitial Tf= 4Ti
Q: standing wave is vibrating in the fourth harmonic and the wavelength is λ, what is the length of the…
A: Given: n=4 λ
Q: Two traveling pulses on a rope move toward each other at a speed of 1.0 m/s. The waves have the same…
A: Given: Two traveling pulses on a rope move toward each other at a speed of 1.0 m/s. The waves have…
Q: The figure shows a snapshot of the displacement as a function of position at time t= 0 s. The plot…
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