Read the following passage and answer the accompanying questions - Leaving Cert Physics - Question 11 - 2006
Question 11
Read the following passage and answer the accompanying questions.
The growth of rock music in the 1960s was accompanied by a switch from acoustic guitars to electri... show full transcript
Worked Solution & Example Answer:Read the following passage and answer the accompanying questions - Leaving Cert Physics - Question 11 - 2006
Step 1
How does resonance occur in an acoustic guitar?
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Answer
Resonance in an acoustic guitar occurs when energy is transferred from the vibrating strings to the hollow body of the guitar. The strings and the body vibrate at the same frequency, amplifying the sound produced.
Step 2
What is the relationship between frequency and tension for a stretched string?
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Answer
The relationship between frequency (f) and tension (T) for a stretched string is expressed as:
Frequency is proportional to the square root of tension: f∝T
The relationship can also be written as: f=2L1μT
where L is the length of the string and μ is the linear mass density.
Step 3
A stretched string of length 80 cm has a fundamental frequency of vibration of 400 Hz. What is the speed of the sound wave in the stretched string?
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Answer
The speed of sound (v) in the stretched string can be calculated using the formula: v=f⋅λ
For the fundamental frequency: v=400Hz×2L(L=0.8m)
Thus, v=400Hz×1.6m=640ms−1.
Step 4
Why must the strings in the electric guitar be made of steel?
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Answer
The strings in an electric guitar must be made of steel because steel is ferromagnetic. This allows the strings to interact with the magnetic field produced by the magnets in the pickups, facilitating the generation of an induced emf when the strings vibrate.
Step 5
Define magnetic flux.
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Answer
Magnetic flux (Φ) is defined as the product of the magnetic field (B) and the area (A) through which the field lines pass, given by: Φ=B⋅A
It is measured in Weber (Wb).
Step 6
Why does the current produced in a coil of the electric guitar vary?
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Answer
The current produced in a coil of the electric guitar varies due to the amplitude of the vibrations of the string. As the string vibrates more vigorously, it changes the magnetic flux through the coil, inducing a varying emf that leads to changes in the current.
Step 7
What is the effect on the sound produced when the number of turns in a coil is increased?
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Answer
Increasing the number of turns in a coil results in a louder sound, as the induced emf becomes greater due to a higher magnetic flux linkage. The sound intensity will thus increase, enhancing the overall output of the electric guitar.
Step 8
A coil has 5000 turns. What is the emf induced in the coil when the magnetic flux cutting the coil changes by $8 \times 10^{-4} \,$ Wb in 0.1 s?
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Answer
The emf (E) induced in the coil can be calculated using Faraday's law of electromagnetic induction, given by: E=−NdtdΦ
For 5000 turns and a change in magnetic flux of 8×10−4Wb, over a time of 0.1 s: E=−5000⋅0.18×10−4=−40V
Hence, the induced emf is 40 V.
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