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Physics · Ch 14 — Waves

Summary

Summary

  • A wave is a disturbance that propagates through a medium without transporting matter; it transfers energy and momentum.
  • Mechanical waves require a medium (e.g., sound, water waves); electromagnetic waves do not (e.g., light).
  • Transverse waves: particles oscillate perpendicular to wave velocity (e.g., string waves). Longitudinal waves: particles oscillate parallel to wave velocity (e.g., sound in air).
  • For a sinusoidal wave travelling along +x+x: y(x,t)=Asin⁡(ωt−kx+ϕ)y(x,t) = A \sin(\omega t - kx + \phi), where AA = amplitude, ω=2πf\omega = 2\pi f = angular frequency, k=2π/λk = 2\pi/\lambda = wave number, ϕ\phi = initial phase.
  • Wave speed on a string: v=T/μv = \sqrt{T/\mu}, where TT = tension, μ\mu = mass per unit length.
  • Speed of a longitudinal wave in a fluid: v=B/ρv = \sqrt{B/\rho}, where BB = bulk modulus, ρ\rho = density. In a solid rod: v=Y/ρv = \sqrt{Y/\rho}, where YY = Young's modulus.
  • Principle of superposition: net displacement = sum of individual displacements. Leads to interference, beats, and standing waves.
  • Interference: constructive when path difference =nλ= n\lambda; destructive when path difference =(n+1/2)λ= (n+1/2)\lambda.
  • Beats: periodic variation in intensity when two waves of slightly different frequencies superpose. Beat frequency fb=∣f1−f2∣f_b = |f_1 - f_2|.
  • Standing waves: formed by superposition of two identical waves travelling in opposite directions. Nodes (zero displacement) and antinodes (maximum displacement) are fixed.
  • For a string fixed at both ends, allowed frequencies (harmonics): fn=nv2Lf_n = n\frac{v}{2L}, n=1,2,3,…n = 1,2,3,\dots. Fundamental (n=1n=1) is the first harmonic.
  • For an open organ pipe: fn=nv2Lf_n = n\frac{v}{2L}, n=1,2,3,…n=1,2,3,\dots (all harmonics present).
  • For a closed organ pipe: fn=nv4Lf_n = n\frac{v}{4L}, n=1,3,5,…n=1,3,5,\dots (only odd harmonics).

Supplementary reference (not an NCERT-numbered table) -- physical quantities used in this chapter: symbol, dimensions, SI unit, and remarks for wavelength, propagation constant, wave speed, and beat frequency …