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When a train of plane wave traverses a medium, individual particles execute periodic motion given by the equation y = 4 sin pie/2 (2t + x/8) where the lengths are expressed in centimetres and time in seconds
04
Sep
When a train of plane wave traverses a medium, individual particles execute periodic motion given by the equation y = 4 sin pie/2 (2t + x/8) where the lengths are expressed in centimetres and time in seconds individual particles execute periodic motion given by the equation y = 4 sin pie/2 (2t + x/8) where [...]
A, B and C are the three particles of a medium which are equally separated and lie along the x-axis. When a sinusoidal transverse wave of wavelength lemda propagates along the x-axis,
04
Sep
A, B and C are the three particles of a medium which are equally separated and lie along the x-axis. When a sinusoidal transverse wave of wavelength lemda propagates along the x-axis, A) B and C are the three particles of a medium which are equally separated and lie along the x-axis. When a sinusoidal [...]
A transverse pulse moving on a long string along x-axis is given as, Y = 2/(5x – 3t)^2 + 1 , where x is measured in meter y in centimeter and t is measured in seconds. Find the (1) wave speed, height of the pulse
04
Sep
A transverse pulse moving on a long string along x-axis is given as, Y = 2/(5x – 3t)^2 + 1 , where x is measured in meter y in centimeter and t is measured in seconds. Find the (1) wave speed, height of the pulse A transverse pulse moving on a long string along x-axis [...]
Show that the function Y(x, t) = Ae^-B(x-vt)^2 represents a travelling wave.
04
Sep
Show that the function Y(x, t) = Ae^-B(x-vt)^2 represents a travelling wave. Show that the function Y(x t) = Ae^-B(x-vt)^2 represents a travelling wave. September 4, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
At t = 0 transverse pulse in a wire is described by the function y = 6/x^2 + 3 where x and y are in metres. Write the function y(x, t) that describes this pulse if it is travelling in the positive x- direction with
04
Sep
At t = 0 transverse pulse in a wire is described by the function y = 6/x^2 + 3 where x and y are in metres. Write the function y(x, t) that describes this pulse if it is travelling in the positive x- direction with At t = 0 transverse pulse in a wire is [...]
A pulse moving to the right along the x-axis is represented by the wave function y(x, t) = 2/(x – 3.0t)^2 + 1 where x and y are measured in centimetres and t is measured in seconds. Find expression for
04
Sep
A pulse moving to the right along the x-axis is represented by the wave function y(x, t) = 2/(x – 3.0t)^2 + 1 where x and y are measured in centimetres and t is measured in seconds. Find expression for A pulse moving to the right along the x-axis is represented by the wave function [...]
A wave pulse is travelling along +x direction on a string at 2 m/s. Displacement y (in cm) of the particle at x = 0 at any time t is given by 2/(t^2 + 1). Find (a) Expression of the function y = (x, t)
04
Sep
A wave pulse is travelling along +x direction on a string at 2 m/s. Displacement y (in cm) of the particle at x = 0 at any time t is given by 2/(t^2 + 1). Find (a) Expression of the function y = (x, t) A wave pulse is travelling along +x direction on a [...]
The figures of case (a ) case (b) and case (c) shows the shape of three strings on which sinusoidal transverse waves are propagating. The arrows in the diagram indicate the direction of wave propagation. Out of the 6 particle marked
04
Sep
The figures of case (a ) case (b) and case (c) shows the shape of three strings on which sinusoidal transverse waves are propagating. The arrows in the diagram indicate the direction of wave propagation. Out of the 6 particle marked a given maximum travels 425 cm along the rope is 10.0 s. What is [...]
A transverse wave is travelling along a horizontal string. The first figure is the shape of the string at an instant of time. The second picture is a graph of the vertical displacement of a point on the string as a function
04
Sep
A transverse wave is travelling along a horizontal string. The first figure is the shape of the string at an instant of time. The second picture is a graph of the vertical displacement of a point on the string as a function a given maximum travels 425 cm along the rope is 10.0 s. What [...]
A sinusoidal wave is travelling along a rope. The oscillator that generates wave completes 40.0 vibrations in 30.0 s. Also, a given maximum travels 425 cm along the rope is 10.0 s. What is the wavelength of the wave?
04
Sep
A sinusoidal wave is travelling along a rope. The oscillator that generates wave completes 40.0 vibrations in 30.0 s. Also, a given maximum travels 425 cm along the rope is 10.0 s. What is the wavelength of the wave? a given maximum travels 425 cm along the rope is 10.0 s. What is the wavelength [...]