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Chapter 17, Problem 45AP
To determine

The lowest possible new fundamental frequency.

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A copper block is suspended from a wire, as in part 1 of the drawing. A container of mercury is then raised up around the block, as in part 2, so that 42.0% of the block's volume is submerged in the mercury. The density of copper is 8890 kg/m³, and that of mercury is 13 600 kg/m³. Find the ratio of the fundamental frequency of the wire in part 2 to the fundamental frequency in part 1. f1,Part 2/f1. Part 1 Number i = Copper block Part 1 Units I M Part 2
A copper block is suspended from a wire, as in part 1 of the drawing. A container of mercury is then raised up around the block, as in part 2, so that 45.0% of the block’s volume is submerged in the mercury. The density of copper is 8890 kg/m3, and that of mercury is 13 600 kg/m3. Find the ratio of the fundamental frequency of the wire in part 2 to the fundamental frequency in part 1.

Chapter 17 Solutions

Bundle: Physics For Scientists And Engineers With Modern Physics, Loose-leaf Version, 10th + Webassign Printed Access Card For Serway/jewett's Physics For Scientists And Engineers, 10th, Single-term

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