In a stationary wave represented by y 2acos
WebFeb 24, 2024 · The displacement of a string is given by y (x,t) = 0.06 sin (2πx/3) cos (120πt) where x and y are in m and t in s. The length of the string is 1.5m and its mass is 3.0 10 -2 kg (a) It represents a progressive wave of frequency 60Hz. (b) It represents a stationary wave of frequency 60Hz. WebSolution Verified by Toppr Correct option is B) The wave is: y=2Acos 2(kx−ωt)=2A×(1/2)×(cos2(kx−ωt))=A(1+cos2(kx−ωt))=A(1+ cos(2kx−2ωt)). Comparing …
In a stationary wave represented by y 2acos
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WebA stationary wave is the result of the superposition of two waves with the same frequency travelling in opposite directions. It does not have a global speed, unlike progressive … WebFor the travelling harmonic wave y (x, t) = 2.0 cos 2π (10t – 0.0080x + 0.35) Where x and y are in cm and t in s. Calculate the phase difference between oscillatory motion of two points separated by a distance of 4 m. VIEW SOLUTION Exercises Q 10.2 Page 387 For the travelling harmonic wave y (x, t) = 2.0 cos 2π (10t – 0.0080x + 0.35)
WebTardigrade. Physics. In a stationary wave represented by y=2a cos (k x) sin (ω t) the intensity at a certain point is maximum when. Q. In a stationary wave represented by y = … WebA wave represented by the given equation ω y = acos ( kx − ω t) is superposed with another wave to form a stationary wave such that the point x = 0 is a node. The equation for the …
WebStationary wave is represented by \( \mathrm{Y}=\mathrm{A} \sin (100 t) \) \( \cos (0.01 x) \) where \( y \) and A are in \( \mathrm{mm}, t \) in sec and \( ... WebCan the following functions for y possibly represent a travelling wave: (i) (x – vt) 2 (ii) log [ ( x + vt)/ x0 ] (iii) 1 / (x + vt ) Answer: No, the converse is not true because it is necessary for a wave function representing a travelling wave to have a finite value for all values of x and t.
WebJan 17, 2024 · The equation of a wave can be represented by y = 0.02 sin 2π /0.5 (320t – x) where x and y are in metres and t is in seconds. Find the amplitude, frequency, wavelength, and velocity of propagation of the wave. Given: Equation of the wave y = y = 0.02 sin 2π /0.5 (320t – x) m Solution: To Find: Amplitude = a =? Frequency = n =?
WebA wave represented by the equation y=acos(kx−ωt) is superposed with another wave to from a stationary wave such that the point x=0 is a node. The equation for the other wave … csudh education departmentWebApr 8, 2024 · The equation of a stationary wave is represented by\[y=4 \sin \left(\frac{\pi x}{6}\right)(\cos 20 \pi t)\]\( \mathrm{P} \)Wwhere \( x \) and \( y \) are in ... early settlement fees on loansWebA periodic wave is a wave with a repetitive pattern that extends in the whole space, while a wave packet has a non-vanishing amplitude in a certain region of space. A stationary wave is the result of the superposition of two waves with the same frequency travelling in opposite directions. It does not have a global speed, unlike progressive waves. early settlement in the southwest asiaWebIn a stationary wave represented by y = 2acos(kx)sin(ωt) the intensity at a certain point is maximum when 0 9 NTA Abhyas NTA Abhyas 2024 Report Error A cos(kx) is maximum B … csudh economic forecastWebThe equation of a stationary wave is given by. λ ⇒ Y = 2 a c o s 2 π x λ S i n 2 π t T. The above equation represents the components of stationary waves. Where λ = Wavelength, … early settlement mediation grady countyWebApr 8, 2024 · Given below are some functions of $x$ and $t$ to represent the displacement (transverse or longitudinal) of an elastic wave. State which of these represent (i) a traveling wave, (ii) a stationary wave or (iii) none at all: (a) $y = 2\cos (3x)\sin (10t)$ (b) $y = 2\sqrt {x - 13} $ (c) $y = 3\sin (5x - 0.5n) + 4\cos (5x - 0.5t)$ early settlement razorpayWebIn a stationary wave represented by y = 2acos (kx)sin (ωt) the intensity at a certain point is maximum when (1)cos (kx) is maximum (2)cos (kx) is minimum (3)sin (ωt) is maximum (4)sin (ωt) is minimum Solution Suggest Corrections 0 Similar questions Q. Two waves y1 … csudh.edu