| ⇦ |
| ⇨ |
The direction of magnetic line of force of a bar magnet is
Options
(a) from south to north pole
(b) from north to south pole
(c) across the bar magnet
(d) from south to north pole inside the magnet and from north to south pole outside the magnet
Correct Answer:
from south to north pole inside the magnet and from north to south pole outside the magnet
Explanation:
No explanation available. Be the first to write the explanation for this question by commenting below.
Related Questions: - Consider a uniform square plate of side ɑ and mass m. The moment of inertia
- If the velocity of an electron increases, then its de Broglie wavelength will
- Ionization potential of hydrogen atom is 13.6 eV. Hydrogen atoms in the ground state
- The molecular weight of a gas is 44. The volume occupied by 2.2 g of this gas
- A nucleus ᵐₙ X emits one α- particle and two β- particles. The resulting nucleus is
Topics: Magnetic Effects of Current and Magnetism
(167)
Subject: Physics
(2479)
Important MCQs Based on Medical Entrance Examinations To Improve Your NEET Score
- Consider a uniform square plate of side ɑ and mass m. The moment of inertia
- If the velocity of an electron increases, then its de Broglie wavelength will
- Ionization potential of hydrogen atom is 13.6 eV. Hydrogen atoms in the ground state
- The molecular weight of a gas is 44. The volume occupied by 2.2 g of this gas
- A nucleus ᵐₙ X emits one α- particle and two β- particles. The resulting nucleus is
Topics: Magnetic Effects of Current and Magnetism (167)
Subject: Physics (2479)
Important MCQs Based on Medical Entrance Examinations To Improve Your NEET Score
18000+ students are using NEETLab to improve their score. What about you?
Solve Previous Year MCQs, Mock Tests, Topicwise Practice Tests, Identify Weak Topics, Formula Flash cards and much more is available in NEETLab Android App to improve your NEET score.
Share this page with your friends

Leave a Reply