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Two resistors are connected in series gives an equivalent resistance of 10Ω. When connected in parallel, gives 2.4Ω. Then the individual resistance are

  • a)
    each of 5Ω

  • b)
    6Ω and 4Ω

  • c)
    7Ω and 4Ω

  • d)
    8Ω and 2Ω

Correct answer is option 'B'. Can you explain this answer?
Most Upvoted Answer
Two resistors are connected in series gives an equivalent resistance o...
In series, Rs = R1 + R2 = 1OΩ

In parallel, 



R1R2=12/5

R1+R2

R1R2=12/5x(R1+R2)

R1R2=12/5x10

R1R2=24

so option (B) fits these two equation very well
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Two resistors are connected in series gives an equivalent resistance of 10Ω. When connected in parallel, gives 2.4Ω. Then the individual resistance area)each of 5Ωb)6Ω and 4Ωc)7Ω and 4Ωd)8Ω and 2ΩCorrect answer is option 'B'. Can you explain this answer?
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Two resistors are connected in series gives an equivalent resistance of 10Ω. When connected in parallel, gives 2.4Ω. Then the individual resistance area)each of 5Ωb)6Ω and 4Ωc)7Ω and 4Ωd)8Ω and 2ΩCorrect answer is option 'B'. Can you explain this answer? for Class 10 2025 is part of Class 10 preparation. The Question and answers have been prepared according to the Class 10 exam syllabus. Information about Two resistors are connected in series gives an equivalent resistance of 10Ω. When connected in parallel, gives 2.4Ω. Then the individual resistance area)each of 5Ωb)6Ω and 4Ωc)7Ω and 4Ωd)8Ω and 2ΩCorrect answer is option 'B'. Can you explain this answer? covers all topics & solutions for Class 10 2025 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Two resistors are connected in series gives an equivalent resistance of 10Ω. When connected in parallel, gives 2.4Ω. Then the individual resistance area)each of 5Ωb)6Ω and 4Ωc)7Ω and 4Ωd)8Ω and 2ΩCorrect answer is option 'B'. Can you explain this answer?.
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