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3 Days Timetable: Nuclei (2025) | Physics for JEE Main & Advanced PDF Download

Let's explore the Physics chapter called "Nuclei" and understand its importance for the JEE exam. By studying the past years' JEE questions (spanning from 2016 to 2023), we can see that this chapter is crucial for success in the JEE exam.

Meet Your Timetable Goals with EduRev!

The study plan for this chapter offers you a schedule to manage your time effectively for learning and practicing the chapter thoroughly. By following this plan diligently, you'll be well-prepared to tackle even the most challenging questions asked in JEE related to each chapter. EduRev makes your preparation easier and saves you time by providing comprehensive resources for each topic. These resources include chapter notes, videos, and tests for every topic and chapter. To access these valuable resources, including documents, videos, and tests, simply click here.

Topics to Cover


Before jumping into the study plan, let's go through the topics we have to cover in this chapter:

  1. Basic Terms Related to Nucleus
  2. Nuclear Energy: Fission & Nuclear Reactor
  3. Radioactivity

Study Plan for Nuclei


For this study plan, we'll adopt a 3-day strategy according to the number of topics and one extra day for Revision only. Remember not to add any extra days after Revision. Try to cover all the topics mentioned above under the chapter.


Topic Coverage:

  • Structure of Nucleus
  • Nuclear Sizes and Isotopes
  • Nuclear Mass
  • Nuclear Binding Energy

Study Tips:

  • Take notes on important formulas and concepts.
  • Watch EduRev videos for a better understanding.
  • Solve problems from NCERT.

Resources:

Day 2: Nuclear Energy: Fission & Nuclear Reactor


Topic Coverage:

  • Nuclear Energy
  • Nuclear Fission
  • Nuclear Reactor

Study Tips:

  • Pay attention to the energy release in nuclear reactions.
  • Practice numerical problems related to nuclear energy.

Resources:

Day 3: Radioactivity


Topic Coverage:

  • Types of Radioactive Decay
  • Radioactive Decay Law
  • Half-life and Mean Life
  • Radioactive Sources

Study Tips:

  • Understand the concept of half-life thoroughly.
  • Practice problems involving radioactivity.

Resources:

Revision


Review all the topics you've covered.
Test yourself by solving questions from various sources:

In JEE Physics, you'll encounter questions like the ones mentioned above. The best way to review and improve on the above topics is to solve questions. If you find a question tricky, it's a sign that you might not fully grasp that topic. In that case, it's a good idea to revisit the topic and study it again and solve more questions related to it.

It's important to realize that you should study all your subjects at the same time. EduRev offers timetables for all your other subjects too. This means you can plan your study schedule for all your subjects, not just one subject.

Feel free to adjust this study plan according to your pace and requirements. 

Certainly, here are the links organized into proper categories at the end of the study plan:
Study Resources:

JEE Exam Preparation:

General Physics Preparation:

Topic-Specific Resources:

Revision and Additional Study Material:

Good luck with your JEE Physics preparation!

The document 3 Days Timetable: Nuclei (2025) | Physics for JEE Main & Advanced is a part of the JEE Course Physics for JEE Main & Advanced.
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FAQs on 3 Days Timetable: Nuclei (2025) - Physics for JEE Main & Advanced

1. What are the basic terms related to the nucleus that I need to know for JEE?
Ans. Key terms include protons (positively charged particles), neutrons (neutral particles), atomic number (number of protons), mass number (total number of protons and neutrons), isotopes (atoms of the same element with different mass numbers), and nucleons (collective term for protons and neutrons).
2. How does nuclear fission work in a nuclear reactor?
Ans. Nuclear fission occurs when a heavy nucleus, such as uranium-235, absorbs a neutron and becomes unstable, splitting into smaller nuclei, releasing energy and more neutrons. In a reactor, these neutrons can initiate further fission reactions, sustaining a chain reaction that generates heat for electricity production.
3. What is radioactivity and how is it measured?
Ans. Radioactivity is the process by which unstable atomic nuclei lose energy by emitting radiation in the form of particles or electromagnetic waves. It is measured using a Geiger-Müller counter, which detects and counts the radiation particles, or through units like Becquerels (Bq) or Curie (Ci) to quantify the activity.
4. What safety measures are in place for nuclear reactors?
Ans. Safety measures include containment structures to prevent radiation leaks, safety protocols for handling nuclear materials, redundant cooling systems to prevent overheating, and regular inspections and maintenance to ensure the integrity of reactor components. Additionally, emergency response plans are established for potential incidents.
5. How do I effectively revise the topics related to nuclei for the JEE?
Ans. Effective revision strategies include creating concise notes summarizing key concepts, practicing numerical problems related to fission and radioactivity, using flashcards for terminology, taking mock tests to assess understanding, and revisiting difficult concepts multiple times to reinforce memory.
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