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9 Days Study Plan: Evolution | Biology Class 12 - NEET PDF Download

Let's explore the Biology chapter called "Evolution" and how it's important for the NEET exam. By studying the past years NEET questions (from 2016 to 2024), we can see that this chapter is really important in the exam. If you want to score well in NEET, you need to understand the concepts in this chapter.

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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 NEET 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 Covered in the Chapter:

  1. Evolution of Life: Origin of Life
  2. Modern Synthetic Theory of Organic Evolution
  3. Evidence of Evolution & Adaptive Radiation
  4. Biological Evolution: Miller Urey & Louis Pasteur Experiment
  5. Biological Evolution: Darwinian Theory & Natural Selection
  6. Speciation & Its Types
  7. Origin & Evolution of Man
  8. Hardy Weinberg Principle
  9. Genetic Drift

Let's create a study plan to efficiently cover these topics over a span of 8 days, with an additional day dedicated solely to revision.

Recommended Tip: Review the past year's questions related to this chapter. This will provide you with insights into the types of questions typically included in the exam and the level of detail you need to study.  Getting a sneak peek ahead of time can be a game-changer!

Day 1: Evolution of Life: Origin of Life

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Day 2: Modern Synthetic Theory of Organic Evolution

  • Read the NCERT textbook for this topic.
  • Focus on understanding the principles of the modern synthetic theory.
  • Take help from EduRev's mindmap on this topic: Mindmap.

Day 3: Evidence of Evolution & Adaptive Radiation

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Day 4: Biological Evolution: Miller Urey & Louis Pasteur Experiment

Day 5: Biological Evolution: Darwinian Theory & Natural Selection

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Day 6: Speciation & Its Types

Day 7: Origin & Evolution of Man

  • Learn about the evolution of humans.
  • Understand the key milestones in human evolution.
  • Review the chapter from the NCERT textbook.
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Day 8: Hardy Weinberg Principle & Genetic Drift

Revision Day

  • Spend this day revising all the topics covered in the past week.
  • Create concise notes or flashcards for quick revision.
  • Test your knowledge by attempting questions from the NCERT textbook.

In the NEET exam, you'll encounter questions like the ones mentioned in below links. The best way to review and get better at the topics is to solve the 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 and more questions related to it.

Remember to stay consistent and follow this study plan diligently. For additional practice and resources, you can visit EduRev's NEET Exam page, where you can find more study materials and guidance. Good luck with your preparation!

Here are all the important links and topic links for the "Evolution" chapter:
Important Links:

Topic Links for the "Evolution" Chapter:

  1. Evolution of Life: Origin of Life
  2. Modern Synthetic Theory of Organic Evolution
  3. Evidence of Evolution & Adaptive Radiation
  4. Biological Evolution: Miller Urey & Louis Pasteur Experiment
  5. Biological Evolution: Darwinian Theory & Natural Selection
  6. Speciation & Its Types
  7. Origin & Evolution of Man
  8. Hardy Weinberg Principle
  9. Genetic Drift

You can click on these links to access the respective resources and topics for your study and revision. Good luck with your preparation!

The document 9 Days Study Plan: Evolution | Biology Class 12 - NEET is a part of the NEET Course Biology Class 12.
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FAQs on 9 Days Study Plan: Evolution - Biology Class 12 - NEET

1. What is the origin of life according to the theories studied in Day 1?
Ans. The origin of life is explored through various theories, including the primordial soup theory and the RNA world hypothesis. The Miller-Urey experiment is often cited as a key study that simulated early Earth conditions, showing that organic compounds could be synthesized from simple inorganic molecules. This suggests a possible pathway for the emergence of life on Earth.
2. What is the Modern Synthetic Theory of Organic Evolution discussed on Day 2?
Ans. The Modern Synthetic Theory, also known as the Neo-Darwinian synthesis, combines Charles Darwin's theory of natural selection with Mendelian genetics. It emphasizes the role of genetic mutations and recombination in evolution, explaining how populations evolve over time through changes in allele frequencies due to natural selection, genetic drift, and gene flow.
3. What evidence supports the theory of evolution as covered on Day 3?
Ans. Evidence of evolution includes fossil records, comparative anatomy, molecular biology, and biogeography. Fossils reveal transitional forms and show a timeline of species changes. Comparative anatomy highlights homologous structures, indicating common ancestry, while molecular evidence shows genetic similarities across species, reinforcing evolutionary relationships.
4. How do the Miller-Urey and Louis Pasteur experiments contribute to our understanding of biological evolution?
Ans. The Miller-Urey experiment demonstrated that organic molecules could be formed from inorganic precursors under early Earth conditions, suggesting how life could originate. Louis Pasteur's experiments, particularly his swan-neck flask experiment, disproved spontaneous generation and supported the idea that life arises from pre-existing life, emphasizing the need for evolutionary processes.
5. What is the Hardy-Weinberg Principle and its significance in studying evolution?
Ans. The Hardy-Weinberg Principle states that allele and genotype frequencies in a population will remain constant from generation to generation in the absence of evolutionary influences. It provides a baseline for understanding genetic variation and population dynamics, allowing scientists to identify factors such as natural selection, genetic drift, and mutation that disrupt equilibrium and drive evolution.
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