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Two coils having self-inductance of L1 and L2, respectively, are magnetically coupled. The maximum possible value of mutual inductance between the coils is
  • a)
  • b)
    L1 + L2
  • c)
    L1 ÷ L2
  • d)
    L1 × L2
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
Two coils having self-inductance of L1 and L2, respectively, are magne...
Concept:
  • The inductor is an electrical component that is capable of storing electrical energy in the form of magnetic energy. 
  •  The property of an electrical component that causes an emf to be generated by changing the current flow is known as inductance. Inductance is of two types
  • Self-inductance: This is the phenomena in which change in electric current produce an electromotive force in the same circuit, and is given by
ϕ = L I 
Where ϕ  = Magnetic flux, L = Self inductance, I = Current
Mutual inductance: This is the phenomena in which change in flux linked with one circuit produce an emf in another coil and is given by
ϕ = MI
Where M = mutual inductance, ϕ  = magnetic flux, I = Current
The coupling coefficient is the ratio of mutual inductance to the maximum possible value of mutual inductance and is given by

Where M = Mutual inductance, L1, L2 = Self-inductance of coil 1 and coil 2 respectively
The maximum possible value of mutual inductance is at K = 1
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Community Answer
Two coils having self-inductance of L1 and L2, respectively, are magne...
Concept:
  • The inductor is an electrical component that is capable of storing electrical energy in the form of magnetic energy. 
  •  The property of an electrical component that causes an emf to be generated by changing the current flow is known as inductance. Inductance is of two types
  • Self-inductance: This is the phenomena in which change in electric current produce an electromotive force in the same circuit, and is given by
ϕ = L I 
Where ϕ  = Magnetic flux, L = Self inductance, I = Current
Mutual inductance: This is the phenomena in which change in flux linked with one circuit produce an emf in another coil and is given by
ϕ = MI
Where M = mutual inductance, ϕ  = magnetic flux, I = Current
The coupling coefficient is the ratio of mutual inductance to the maximum possible value of mutual inductance and is given by

Where M = Mutual inductance, L1, L2 = Self-inductance of coil 1 and coil 2 respectively
The maximum possible value of mutual inductance is at K = 1
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Two coils having self-inductance of L1 and L2, respectively, are magnetically coupled. The maximum possible value of mutual inductance between the coils isa)b)L1 + L2c)L1 ÷ L2d)L1× L2Correct answer is option 'A'. Can you explain this answer?
Question Description
Two coils having self-inductance of L1 and L2, respectively, are magnetically coupled. The maximum possible value of mutual inductance between the coils isa)b)L1 + L2c)L1 ÷ L2d)L1× L2Correct answer is option 'A'. Can you explain this answer? for Electrical Engineering (EE) 2024 is part of Electrical Engineering (EE) preparation. The Question and answers have been prepared according to the Electrical Engineering (EE) exam syllabus. Information about Two coils having self-inductance of L1 and L2, respectively, are magnetically coupled. The maximum possible value of mutual inductance between the coils isa)b)L1 + L2c)L1 ÷ L2d)L1× L2Correct answer is option 'A'. Can you explain this answer? covers all topics & solutions for Electrical Engineering (EE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Two coils having self-inductance of L1 and L2, respectively, are magnetically coupled. The maximum possible value of mutual inductance between the coils isa)b)L1 + L2c)L1 ÷ L2d)L1× L2Correct answer is option 'A'. Can you explain this answer?.
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