How long should a Ampere's law and its applications to infinitely long current carrying straight wire and solenoid mock test take?
For a topic-level test, aim for 20–30 minutes. For a full subject mock, allow 60–90 minutes to mirror JEE timing.
Physics · JEE
Quick answer
A Ampere's law and its applications to infinitely long current carrying straight wire and solenoid JEE mock test on Goodmarks lets you attempt curated timed MCQs with instant feedback. Use it to benchmark speed, accuracy, and readiness for JEE Main Physics.
Simulate exam conditions with a Ampere's law and its applications to infinitely long current carrying straight wire and solenoid mock test. Attempt curated timed MCQs, check your score instantly, and review every solution to close gaps before the real exam.
For a topic-level test, aim for 20–30 minutes. For a full subject mock, allow 60–90 minutes to mirror JEE timing.
Aim for 70%+ accuracy initially, then push toward 85%+ as your exam date approaches. Review explanations for every wrong answer.
Yes. Each MCQ is scored instantly with the correct answer and explanation shown after submission.
Pro users can generate new question sets by topic. Reattempting the same questions after a gap is excellent for retention.
Practice: Ampere's law and its applications to infinitely long current carrying straight wire and solenoid
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MCQs: Ampere's law and its applications to infinitely long current carrying straight wire and solenoid
MCQs
PYQs: Ampere's law and its applications to infinitely long current carrying straight wire and solenoid
Previous Year Questions
Important: Ampere's law and its applications to infinitely long current carrying straight wire and solenoid
Important Questions
Notes: Ampere's law and its applications to infinitely long current carrying straight wire and solenoid
Notes & Formulas
Biot Savart law and its application to the current carrying circular loop
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Force on a current-carrying conductor in a uniform magnetic field
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The force between two parallel currents carrying conductors-definition of ampere
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Current loop as a magnetic dipole and its magnetic dipole moment, bar magnet as an equivalent solenoid, magnetic field lines
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Magnetic field due to a magnetic dipole (bar magnet) along its axis and perpendicular to its axis, torque on a magnetic dipole in a uniform magnetic field
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