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5 Days Study Plan: Transport in Plants | Study Plans for NEET PDF Download

Let's explore the Biology chapter called "Transport in Plants" 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.

Meeting 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 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.

Importance of the Chapter


The "Transport in Plants" chapter is of paramount importance for NEET preparation. It lays the foundation for understanding vital processes related to plant physiology, which are frequently tested in the exam. A strong command of this chapter is pivotal for scoring well.

Topics Covered in the Chapter - This chapter covers the following topics:

  1. Diffusion in Plants
  2. Facilitated Diffusion
  3. Absorption of Water
  4. Osmosis
  5. Imbibition & Plasmolysis
  6. Transpiration Pull & Stomata
  7. Water Potential & Pressure Potential
  8. Long-Distance Transport of Water

Let's create a study plan to efficiently cover these topics over a span of 5 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: Diffusion, Facilitated Diffusion, Absorption of Water

Day 2: Osmosis, Imbibition & Plasmolysis

Day 3: Transpiration Pull, Stomata, Water Potential & Pressure Potential

Day 4: Long-Distance Transport of Water & Revision

Revision Day


On the day of revision, review your notes, and key points from each topic. Solve previous year NEET questions related to "Transport in Plants" (NEET Previous Year Questions (2016-2024)). Make use of EduRev's resources for any last-minute clarifications.

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.

By following this well-structured study plan and leveraging EduRev's valuable resources, you can master the chapter "Transport in Plants" and perform exceptionally well in the NEET exam. 

Here are all the important links and topic links for the chapter  "Transport in Plants" :

  1. NEET Exam
  2. NEET Previous Year Questions (2016-23): Transport in Plants
  3. Mindmap: Transport in Plants
  4. NCERT Exemplar: Transport in Plants
  5. NCERT Textbook: Transport in Plants
  6. NCERT Solutions: Transport in Plants
  7. Mnemonics for Transport in Plants
  8. Video: Diffusion: Means of Transport
  9. Test: Transport in Plants
  10. Chapter Link
  11. Diffusion in Plants
  12. Facilitated Diffusion
  13. Absorption of Water
  14. Osmosis
  15. Imbibition & Plasmolysis
  16. Transpiration Pull & Stomata
  17. Water Potential & Pressure Potential
  18. Long Distance Transport of Water

Best of luck with your preparation!

The document 5 Days Study Plan: Transport in Plants | Study Plans for NEET is a part of the NEET Course Study Plans for NEET.
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FAQs on 5 Days Study Plan: Transport in Plants - Study Plans for NEET

1. What is diffusion?
Ans. Diffusion is the movement of particles from an area of higher concentration to an area of lower concentration. In the context of transport in plants, diffusion is an important process for the movement of gases such as oxygen and carbon dioxide between cells and the environment.
2. What is facilitated diffusion?
Ans. Facilitated diffusion is a type of diffusion that requires the assistance of specific carrier proteins to transport molecules across cell membranes. These carrier proteins facilitate the movement of molecules that are too large or polar to pass through the lipid bilayer of the membrane. An example of facilitated diffusion in plants is the transport of glucose molecules across cell membranes.
3. How does osmosis work in plants?
Ans. Osmosis is the movement of water molecules across a semipermeable membrane from an area of lower solute concentration to an area of higher solute concentration. In plants, osmosis plays a crucial role in the absorption of water by roots and the movement of water within the plant. Water moves from regions of low solute concentration (such as the soil) to regions of higher solute concentration (such as the plant cells) through osmosis.
4. What is plasmolysis?
Ans. Plasmolysis is the process in which plant cells lose water and shrink away from the cell wall due to the loss of turgor pressure. This occurs when plant cells are placed in a hypertonic solution, where the solute concentration outside the cell is higher than inside. Plasmolysis can have detrimental effects on the plant, as it can lead to wilting and hinder various physiological processes.
5. How does transpiration pull contribute to the movement of water in plants?
Ans. Transpiration pull is the major force responsible for the upward movement of water in plants. It is a result of transpiration, the loss of water vapor from the leaves through stomata. As water evaporates from the leaf surface, it creates a negative pressure or tension in the xylem vessels, which pulls water from the roots, up through the stem, and into the leaves. This cohesion-tension mechanism, driven by transpiration pull, allows water to be transported over long distances in plants.
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