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The mass m of a vibrating string can be determined using the following relationship - Scottish Highers Physics - Question 25 - 2023

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The mass m of a vibrating string can be determined using the following relationship. $$f = \sqrt{\frac{T}{4ml}}$$ where $f$ is the fundamental frequency $T$ is the... show full transcript

Worked Solution & Example Answer:The mass m of a vibrating string can be determined using the following relationship - Scottish Highers Physics - Question 25 - 2023

Step 1

Calculate the mass using the given formula

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Answer

To find the mass mm, rearrange the formula:

f=T4mlf = \sqrt{\frac{T}{4ml}}

Squaring both sides gives:

f2=T4mlf^2 = \frac{T}{4ml}

Rearranging for mm:

m=T4lf2m = \frac{T}{4lf^2}

Substituting in the values:

  • T=92 NT = 92 \text{ N}
  • l=0.63 ml = 0.63 \text{ m}
  • f=110 Hzf = 110 \text{ Hz}

Calculating:

m=924×0.63×(110)2m = \frac{92}{4 \times 0.63 \times (110)^2}

Evaluating: m=924×0.63×12100m = \frac{92}{4 \times 0.63 \times 12100}

Calculating the denominator: 4×0.63×1210030422.44 \times 0.63 \times 12100 \approx 30422.4

So, m9230422.40.00302 kgm \approx \frac{92}{30422.4} \approx 0.00302 \text{ kg}

This can be written as: m3.0×103 kgm \approx 3.0 \times 10^{-3} \text{ kg}

Thus, the correct answer is A: 3.0×103 kg3.0 \times 10^{-3} \text{ kg}.

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