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Given below are two statements
Statement I: Biot-Savart’s law gives us the expression for the magnetic field strength of an infinitesimal current element (Idl) of a current carrying conductor only.
Statement II: Biot-Savart’s law is analogous to Coulomb’s inverse square law of charge q, with the former being related to the field produced by a scalar source, Idl while the latter being produced by a vector source, q. In light of above statements choose the most appropriate answer from the options given below
  • a)
    Statement I is correct and Statement II is incorrect
  • b)
    Statement I is incorrect and Statement II is correct
  • c)
    Both Statement I and Statement II are correct
  • d)
    Both Statement I and Statement II are incorrect
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
Given below are two statementsStatement I: Biot-Savart’s law gives us...
Explanation of Biot-Savart's Law
The Biot-Savart law is fundamental in electromagnetism, describing the magnetic field produced by an electric current. Let’s analyze the statements provided.
Statement I: Biot-Savart’s law gives us the expression for the magnetic field strength of an infinitesimal current element (Idl) of a current-carrying conductor only.
- This statement is correct.
- Biot-Savart's law specifically addresses the magnetic field generated by a small segment of current (Idl).
- It quantifies how this infinitesimal element contributes to the total magnetic field at a point in space.
Statement II: Biot-Savart’s law is analogous to Coulomb’s inverse square law of charge q, with the former being related to the field produced by a scalar source, Idl while the latter being produced by a vector source, q.
- This statement is incorrect.
- While both laws describe fields due to sources, the nature of the sources differs.
- Coulomb’s law deals with scalar quantities (electric charges), while Biot-Savart law pertains to vector quantities (current elements) generating magnetic fields.
- Both laws are indeed analogous in terms of the mathematical form, but the characterization of the sources is not accurately described in the statement.
Conclusion
Based on the analysis:
- Correct Answer: a) Statement I is correct and Statement II is incorrect.
This distinction is crucial for understanding the principles of electromagnetism, especially in applications like circuit analysis and magnetic field calculations.
Free Test
Community Answer
Given below are two statementsStatement I: Biot-Savart’s law gives us...
According to Biot-Savart’s law which is applicable for infinitesimal element. It is analogous to Coulomb’s law, where is vector source and electric field is produced by scalar source q.
Here statement I is correct and statement II is incorrect.
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Given below are two statementsStatement I: Biot-Savart’s law gives us the expression for the magnetic field strength of an infinitesimal current element (Idl) of a current carrying conductor only.Statement II: Biot-Savart’s law is analogous to Coulomb’s inverse square law of charge q, with the former being related to the field produced by a scalar source, Idl while the latter being produced by a vector source, q. In light of above statements choose the most appropriate answer from the options given belowa)Statement I is correct and Statement II is incorrectb)Statement I is incorrect and Statement II is correctc)Both Statement I and Statement II are correctd)Both Statement I and Statement II are incorrectCorrect answer is option 'A'. Can you explain this answer?
Question Description
Given below are two statementsStatement I: Biot-Savart’s law gives us the expression for the magnetic field strength of an infinitesimal current element (Idl) of a current carrying conductor only.Statement II: Biot-Savart’s law is analogous to Coulomb’s inverse square law of charge q, with the former being related to the field produced by a scalar source, Idl while the latter being produced by a vector source, q. In light of above statements choose the most appropriate answer from the options given belowa)Statement I is correct and Statement II is incorrectb)Statement I is incorrect and Statement II is correctc)Both Statement I and Statement II are correctd)Both Statement I and Statement II are incorrectCorrect answer is option 'A'. Can you explain this answer? for NEET 2024 is part of NEET preparation. The Question and answers have been prepared according to the NEET exam syllabus. Information about Given below are two statementsStatement I: Biot-Savart’s law gives us the expression for the magnetic field strength of an infinitesimal current element (Idl) of a current carrying conductor only.Statement II: Biot-Savart’s law is analogous to Coulomb’s inverse square law of charge q, with the former being related to the field produced by a scalar source, Idl while the latter being produced by a vector source, q. In light of above statements choose the most appropriate answer from the options given belowa)Statement I is correct and Statement II is incorrectb)Statement I is incorrect and Statement II is correctc)Both Statement I and Statement II are correctd)Both Statement I and Statement II are incorrectCorrect 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 Given below are two statementsStatement I: Biot-Savart’s law gives us the expression for the magnetic field strength of an infinitesimal current element (Idl) of a current carrying conductor only.Statement II: Biot-Savart’s law is analogous to Coulomb’s inverse square law of charge q, with the former being related to the field produced by a scalar source, Idl while the latter being produced by a vector source, q. In light of above statements choose the most appropriate answer from the options given belowa)Statement I is correct and Statement II is incorrectb)Statement I is incorrect and Statement II is correctc)Both Statement I and Statement II are correctd)Both Statement I and Statement II are incorrectCorrect answer is option 'A'. Can you explain this answer?.
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