A uniform wire of length one meter and resistance 20 is connected in series with a resistance of 1080 Q and a Daniel cell of e.m.f. 1.083 V having internal resistance of 1 2. Calculate the potential drop per mm and the length required to balance the potential length required to balance the potential difference 0.1 mV.
A uniform wire of length one meter and resistance 20 is connected in series with a resistance of 1080 Q and a Daniel cell of e.m.f. 1.083 V having internal resistance of 1 2. Calculate the potential drop per mm and the length required to balance the potential length required to balance the potential difference 0.1 mV.
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![A uniform wire of length one meter
and resistance 20 is connected in series with a
resistance of 1080 2 and a Daniel cell of e.m.f.
1.083 V having internal resistance of 1 Q2.
Calculate the potential drop per mm and the
length required to balance the potential length
required to balance the potential difference
0.1 m V.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd8b3bdf6-9161-48cb-87f6-77cf086f1189%2F2301002a-408c-4c64-91bf-d865777d37fe%2F53s8tjj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A uniform wire of length one meter
and resistance 20 is connected in series with a
resistance of 1080 2 and a Daniel cell of e.m.f.
1.083 V having internal resistance of 1 Q2.
Calculate the potential drop per mm and the
length required to balance the potential length
required to balance the potential difference
0.1 m V.
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