Figure 3 a) The Figure 3 shows a hollow copper cylinder. It is constructed by winding a non- insulated copper wire on a PVC pipe of external radius of 5.5 cm, with the turns of the wire touching each other. The cross section of the non- insulated copper wire is a square of length 2.0 mm. If the number of turns of the copper wire is 300. Calculate the resistance across the ends of the hollow copper cylinder at room temperature 27° C. [Given : Peopper 1.7 x 10 m2, a.copper 3.93 x 10C]. Suggest one way by which this resistance across the ends of the hollow copper cylinder may be decreased. Explain your answer.

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Pleaseee calculate the resistance, suggest one way and explain in details
Figure 3
a) The Figure 3 shows a hollow copper cylinder. It is constructed by winding a non- insulated
copper wire on a PVC pipe of external radius of 5.5 cm, with the turns of the wire touching each
other.
The cross section of the non- insulated copper wire is a square of length 2.0 mm. If the number of
turns of the copper wire is 300.
Calculate the resistance across the ends of the hollow copper cylinder at room temperature 27° C.
[Given peopper 1.7 x 10 m2, acopper 3.93 x 10 C
Suggest one way by which this resistance across the ends of the hollow copper cylinder may be
decreased. Explain your answer.
Transcribed Image Text:Figure 3 a) The Figure 3 shows a hollow copper cylinder. It is constructed by winding a non- insulated copper wire on a PVC pipe of external radius of 5.5 cm, with the turns of the wire touching each other. The cross section of the non- insulated copper wire is a square of length 2.0 mm. If the number of turns of the copper wire is 300. Calculate the resistance across the ends of the hollow copper cylinder at room temperature 27° C. [Given peopper 1.7 x 10 m2, acopper 3.93 x 10 C Suggest one way by which this resistance across the ends of the hollow copper cylinder may be decreased. Explain your answer.
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