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In Kirchhoff’s first law Σi=0 at the junction is based on the law of conservation of-
  • a)
    Energy
  • b)
    Charge
  • c)
    Momentum
  • d)
    Speed
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
In Kirchhoff’s first law Σi=0 at the junction is based on the law of ...
In Kirchhoff’s first law, Σi=0 at the junction is based on the law of conservation of charge.
This law states that charge can neither be created nor be destroyed; it can only be transferred from one system to another.
Hence, the correct option is (B).
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In Kirchhoff’s first law Σi=0 at the junction is based on the law of ...
Explanation:

Kirchhoff’s first law:
- Kirchhoff's first law, also known as the junction rule or the law of conservation of charge, states that the total current entering a junction in a circuit must be equal to the total current leaving the junction.
- Mathematically, it can be represented as Σi = 0, where Σi represents the sum of currents at the junction.

Conservation of charge:
- The law of conservation of charge states that the total electric charge in a closed system remains constant over time.
- This means that charge can neither be created nor destroyed, only transferred from one object to another.

Relationship between Kirchhoff’s first law and conservation of charge:
- Kirchhoff’s first law is based on the principle of conservation of charge because the total charge entering a junction must be equal to the total charge leaving the junction.
- This ensures that charge is conserved in a circuit and there are no violations of the law of conservation of charge.

Conclusion:
- Kirchhoff’s first law, Σi = 0 at the junction, is based on the law of conservation of charge.
- By following this law, we can analyze and understand the flow of current in a circuit while ensuring that charge is conserved throughout the system.
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In Kirchhoff’s first law Σi=0 at the junction is based on the law of conservation of-a)Energyb)Chargec)Momentumd)SpeedCorrect answer is option 'B'. Can you explain this answer?
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