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Constant current is flowing through a linear conductor of non-uniform area of cross-section. The charge flowing per second through the area of conductor at any cross-section is
  • a)
    Proportional to the area of cross-section
  • b)
    Inversely proportional to the area of cross-section
  • c)
    Independent of the area of cross-section
  • d)
    Dependent on the length of conductor
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
Constant current is flowing through a linear conductor of non-uniform...
Explanation:

Constant Current Flowing Through a Non-uniform Conductor:
When a constant current flows through a linear conductor with a non-uniform area of cross-section, the charge flowing per second through any cross-section of the conductor remains constant.

Independence of Area of Cross-Section:
The charge flowing per second through the area of the conductor at any cross-section is independent of the area of cross-section. This means that the current remains the same regardless of the area of the cross-section.

Reasoning:
- The current flowing through a conductor is the rate of flow of charge. Since the current is constant, the amount of charge passing through any cross-section per second remains the same.
- The charge flowing per second is not affected by the area of the cross-section because the current is already constant. Therefore, the charge flowing per second is independent of the area of cross-section.

Conclusion:
In summary, when a constant current flows through a linear conductor with a non-uniform area of cross-section, the charge flowing per second through any cross-section of the conductor is independent of the area of cross-section. This is because the current remains constant, leading to a consistent flow of charge regardless of the area.
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Community Answer
Constant current is flowing through a linear conductor of non-uniform...
The quantity of charge flowing through any cross-section per second is defined as Current.
And as it is given that, Current through the conductor is constant so it will be same throughout irrespective of the cross-section area.
Hence, the charge flowing per second will be independent of the area of cross-section.
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Constant current is flowing through a linear conductor of non-uniform area of cross-section. The charge flowing per second through the area of conductor at any cross-section isa)Proportional to the area of cross-sectionb)Inversely proportional to the area of cross-sectionc)Independent of the area of cross-sectiond)Dependent on the length of conductorCorrect answer is option 'C'. Can you explain this answer?
Question Description
Constant current is flowing through a linear conductor of non-uniform area of cross-section. The charge flowing per second through the area of conductor at any cross-section isa)Proportional to the area of cross-sectionb)Inversely proportional to the area of cross-sectionc)Independent of the area of cross-sectiond)Dependent on the length of conductorCorrect answer is option 'C'. 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 Constant current is flowing through a linear conductor of non-uniform area of cross-section. The charge flowing per second through the area of conductor at any cross-section isa)Proportional to the area of cross-sectionb)Inversely proportional to the area of cross-sectionc)Independent of the area of cross-sectiond)Dependent on the length of conductorCorrect answer is option 'C'. Can you explain this answer? covers all topics & solutions for NEET 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Constant current is flowing through a linear conductor of non-uniform area of cross-section. The charge flowing per second through the area of conductor at any cross-section isa)Proportional to the area of cross-sectionb)Inversely proportional to the area of cross-sectionc)Independent of the area of cross-sectiond)Dependent on the length of conductorCorrect answer is option 'C'. Can you explain this answer?.
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