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A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer? for NEET 2024 is part of NEET preparation. The Question and answers have been prepared
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the NEET exam syllabus. Information about A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer? covers all topics & solutions for NEET 2024 Exam.
Find important definitions, questions, meanings, examples, exercises and tests below for A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer?.
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Here you can find the meaning of A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer?, a detailed solution for A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer? has been provided alongside types of A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice A 2 Ω resistor is connected inseries with R Ω resistor. This combination is connected across a cell. When the potential difference across 2 Ω resistor is balanced on a potentiometer wire, null point is obtained at a length of 300 cm. When the same procedure is repeated for R Ω resistor, null point is obtained at a length of 350 cm . Value of R isa)2.33 Ωb)3.33 Ωc)4.66 Ωd)5 ΩCorrect answer is option 'A'. Can you explain this answer? tests, examples and also practice NEET tests.