Two uniform wires of the same material are vibrating under the same tension. If the first overtone of the first wire is equal to the second overtone of the second wire and radius of the first wire is twice the radius of the second wire then the ratio of the lengths of the first wire to second wire is (Chap-8)
Two uniform wires of the same material are vibrating under the same tension. If the first overtone of the first wire is equal to the second overtone of the second wire and radius of the first wire is twice the radius of the second wire then the ratio of the lengths of the first wire to second wire is (Chap-8)
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![Two uniform wires of the same material
are vibrating under the same tension. If
the first overtone of the first wire is equal
to the second overtone of the second
wire and radius of the first wire is twice
the radius of the second wire then the
ratio of the lengths of the first wire to
second wire is
(Chap-8)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0b1a29ee-ae88-42a9-8c85-9730a1130841%2F82ffe57a-5510-4e74-ab44-5803942d9ab7%2F7f5fmob_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Two uniform wires of the same material
are vibrating under the same tension. If
the first overtone of the first wire is equal
to the second overtone of the second
wire and radius of the first wire is twice
the radius of the second wire then the
ratio of the lengths of the first wire to
second wire is
(Chap-8)
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