The formula y = A cos w(t – x/v), as we saw in Sec. 3.3, describes a wave that moves in the +x direction along a stretched string. Show that this formula is a solution of the wave equation, Eq. (5.3). [A + CO]
The formula y = A cos w(t – x/v), as we saw in Sec. 3.3, describes a wave that moves in the +x direction along a stretched string. Show that this formula is a solution of the wave equation, Eq. (5.3). [A + CO]
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![The Wave Equation
6. The formula y = A cos w(t – x/v), as we saw in Sec. 3.3,
describes a wave that moves in the +x direction along a
stretched string. Show that this formula is a solution of the
wave equation, Eq. (5.3). [A + CO]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F01680da4-c53e-4c25-8036-b9b94e654887%2F52d95ed9-d43e-48a3-800f-1f4d452793ec%2Fjewjv6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The Wave Equation
6. The formula y = A cos w(t – x/v), as we saw in Sec. 3.3,
describes a wave that moves in the +x direction along a
stretched string. Show that this formula is a solution of the
wave equation, Eq. (5.3). [A + CO]
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