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The wave described by y = .25 sin (10πx - 2πf) where x and y are in metres and t in seconds, is a wave traveling along the a) +ve x direction with frequency 1 Hz and wavelength 0.2 m. b) -ve x direction with frequency 1 Hz. Answer is (a) but how to solve this ?
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The wave described by y = .25 sin (10πx - 2πf) where x and y are in me...
General equation of wave is..y = A sin(kx ± wt )here ...k = 2π / wavelengthand ....w = 2π frequencyhere....(kx+wt) OR (wt-kx) show that wave is traveling along ( –ve x-axis)whereas .....(kx-wt) OR (wt-kx) shows that wave is traveling along (+ve x-axis)here ...in this question. k=10π = 2π÷wavelength=> wavelength= 2π ÷ 10π =0.2m w= 2π = 2πf ==> f = 1Hzand....it is given as..(10πx - 2πf)...==> it is propagating along... (+x-axis)
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The wave described by y = .25 sin (10πx - 2πf) where x and y are in me...
Thanks a lot :)
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The wave described by y = .25 sin (10πx - 2πf) where x and y are in metres and t in seconds, is a wave traveling along the a) +ve x direction with frequency 1 Hz and wavelength 0.2 m. b) -ve x direction with frequency 1 Hz. Answer is (a) but how to solve this ?
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The wave described by y = .25 sin (10πx - 2πf) where x and y are in metres and t in seconds, is a wave traveling along the a) +ve x direction with frequency 1 Hz and wavelength 0.2 m. b) -ve x direction with frequency 1 Hz. Answer is (a) but how to solve this ? for NEET 2024 is part of NEET preparation. The Question and answers have been prepared according to the NEET exam syllabus. Information about The wave described by y = .25 sin (10πx - 2πf) where x and y are in metres and t in seconds, is a wave traveling along the a) +ve x direction with frequency 1 Hz and wavelength 0.2 m. b) -ve x direction with frequency 1 Hz. Answer is (a) but how to solve this ? covers all topics & solutions for NEET 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The wave described by y = .25 sin (10πx - 2πf) where x and y are in metres and t in seconds, is a wave traveling along the a) +ve x direction with frequency 1 Hz and wavelength 0.2 m. b) -ve x direction with frequency 1 Hz. Answer is (a) but how to solve this ?.
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