A solenoid is given with 300 turns (N1), Radius of 2 cm and 50 cm (e) length as shown in the following figure. (Neglect fringing field effects.) a. Find the self inductance of the main solenoid. b. Find the stored energy in the main solenoid. c. If there is a another coil of N2=50 turns is wrapped around solenoid, calculate the mutual inductance. N2 N
A solenoid is given with 300 turns (N1), Radius of 2 cm and 50 cm (e) length as shown in the following figure. (Neglect fringing field effects.) a. Find the self inductance of the main solenoid. b. Find the stored energy in the main solenoid. c. If there is a another coil of N2=50 turns is wrapped around solenoid, calculate the mutual inductance. N2 N
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![A solenoid is given with 300 turns (N1), Radius of 2 cm and 50 cm (e) length as shown in the
following figure.
(Neglect fringing field effects.)
a. Find the self inductance of the main solenoid.
b. Find the stored energy in the main solenoid.
c. If there is a another coil of N2=50 turns is wrapped around solenoid, calculate the mutual
inductance.
N2
N](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb2a19fcc-b9aa-470d-bfa9-f760077850e6%2F20631295-1942-42b4-8c52-0128799f14b2%2Fjztir6g_processed.png&w=3840&q=75)
Transcribed Image Text:A solenoid is given with 300 turns (N1), Radius of 2 cm and 50 cm (e) length as shown in the
following figure.
(Neglect fringing field effects.)
a. Find the self inductance of the main solenoid.
b. Find the stored energy in the main solenoid.
c. If there is a another coil of N2=50 turns is wrapped around solenoid, calculate the mutual
inductance.
N2
N
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