Physics · JEE

Online Practice: Matter waves: wave nature of particle, de-Broglie relation for JEE

8+ syllabus-aligned questions available

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Sharpen your physics preparation with interactive online practice for Matter waves: wave nature of particle, de-Broglie relation. Goodmarks offers 8+ JEE-style MCQs mapped to the official syllabus, each with detailed explanations so you learn from every attempt.

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Q1PhysicsUnit 17: Dual Nature of Matter and Radiation
The energy that should be added to an electron to reduce its de-Broglie wavelength from 1 nm to 0.5 nm is.
Q2PhysicsUnit 17: Dual Nature of Matter and Radiation
If wavelength of photon and electron is same then ratio of total energy of electron to total energy of photon would be:
Q3PhysicsUnit 17: Dual Nature of Matter and Radiation
If the kinetic energy of a particle is increased by 16 times, the percentage change in the de Broglie wavelength of the particle is:
Q4PhysicsUnit 17: Dual Nature of Matter and Radiation
When the velocity of a relativistic charged particle increases, it's specific charge
Q5PhysicsUnit 17: Dual Nature of Matter and Radiation
A proton and ana - particle accelerated through same voltage.The ratio of their de-broglie wavelength will be:
Q6PhysicsUnit 17: Dual Nature of Matter and Radiation
Which of the following quantities related to an electron has a finite upper limit?
Q7PhysicsUnit 17: Dual Nature of Matter and Radiation
ne / mm experiment we assume nature of electron as
Q8PhysicsUnit 17: Dual Nature of Matter and Radiation
The wavelength of a matter wave is given by

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Goodmarks currently has 8+ JEE-aligned MCQs for Matter waves: wave nature of particle, de-Broglie relation, with more added regularly.

Is this aligned with the JEE Main syllabus?

Yes. All Physics questions on Goodmarks are organised by official JEE Main units and subtopics, including Matter waves: wave nature of particle, de-Broglie relation.

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