Life Processes – Class 10 Science Chapter 5 Notes & NCERT PDF
Notes and a simple summary of Chapter 5 of the NCERT Class 10 Science book, with the official chapter PDF, flashcards, an MCQ quiz and an AI tutor for your doubts.
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Chapter 5: Life Processes
Introduction
How do we tell whether something is alive? Visible movement is the easiest clue, but a sleeping dog or a tree is alive even when it does not move. The chapter explains that living things are highly organised structures, and this order breaks down over time unless it is constantly repaired. Repair and maintenance need energy and raw materials, which come from outside the body. The processes that together keep an organism alive are called life processes — nutrition, respiration, transportation and excretion.
Maintenance of life requires processes like nutrition, respiration, transport of materials within the body and excretion of waste products.
Key Concepts
1. Nutrition
Autotrophic nutrition — organisms such as green plants and some bacteria take in simple inorganic substances (carbon dioxide and water) and use sunlight to make carbohydrates. This is photosynthesis:
6CO₂ + 12H₂O → C₆H₁₂O₆ + 6O₂ + 6H₂O (in the presence of sunlight and chlorophyll)
Photosynthesis happens in three steps:
Excess carbohydrate is stored as starch. Gas exchange happens through stomata, tiny pores on leaves whose opening and closing is controlled by guard cells — they swell when water flows in (pore opens) and shrink when water is lost (pore closes). Desert plants take in CO₂ at night and store it as an intermediate, using it in the day. Plants take other raw materials such as nitrogen, phosphorus, iron and magnesium from the soil; nitrogen is taken as nitrates/nitrites or as compounds made by bacteria from atmospheric nitrogen.
Heterotrophic nutrition — organisms depend on food made by others. Some break food down outside the body and absorb it (fungi like bread moulds, yeast, mushrooms); others take food in whole and digest it inside (e.g., Amoeba engulfs food with pseudopodia into a food vacuole; Paramecium uses cilia to move food to a specific spot). Parasites such as cuscuta, ticks, lice, leeches and tapeworms feed on a host without killing it.
Nutrition in human beings follows the alimentary canal:
2. Respiration
Food is broken down in cells to release energy. The first step, in the cytoplasm, splits glucose (6-carbon) into pyruvate (3-carbon). Then:
The energy released is used to make ATP (adenosine triphosphate), the energy currency of the cell. When the terminal phosphate of ATP is broken using water, about 30.5 kJ/mol of energy is released.
Plants exchange gases through stomata and lenticels by diffusion. Aquatic animals get oxygen dissolved in water through gills; since the amount of dissolved oxygen is low, they breathe much faster than terrestrial animals.
Human respiratory system: air enters through the nostrils (fine hairs and mucus filter it) → pharynx → trachea (rings of cartilage stop it from collapsing) → bronchi → bronchioles → balloon-like alveoli. Alveoli give a huge surface for gas exchange — spread out, the alveolar surface would cover about 80 m². Breathing in: ribs lift up, the diaphragm flattens and the chest cavity enlarges. Haemoglobin in red blood cells carries oxygen; carbon dioxide is carried mostly dissolved in blood.
3. Transportation
In human beings, blood is a fluid connective tissue: plasma carries food, CO₂ and nitrogenous wastes; red blood cells carry oxygen; platelets plug leaks by clotting blood.
In plants:
4. Excretion
Unicellular organisms remove wastes by diffusion. In humans, the excretory system has a pair of kidneys, a pair of ureters, a urinary bladder and a urethra. Each kidney has many filtration units called nephrons. In a nephron, a cup-shaped Bowman's capsule surrounds a cluster of capillaries (glomerulus) where blood is filtered; useful substances like glucose, amino acids, salts and a major amount of water are selectively reabsorbed in the tubule. Normally the initial filtrate is about 180 L daily, but only a litre or two is excreted as urine. When kidneys fail, an artificial kidney (haemodialysis) removes nitrogenous wastes from blood — but, unlike the kidney, it involves no reabsorption.
Plants get rid of wastes by releasing oxygen and water vapour, storing wastes in cell vacuoles or in leaves that fall off, as resins and gums in old xylem, or by releasing some wastes into the soil.
Diagrams to Draw (described in words)
Activities in the Chapter
Board Exam Focus
Key Terms
Common Mistakes
💡 Key Learning Points
- ✓Nutrition, respiration, transportation and excretion together maintain life by supplying energy and raw materials and removing wastes.
- ✓Photosynthesis needs chlorophyll, sunlight, CO₂ and water; plants exchange gases through stomata controlled by guard cells.
- ✓Glucose is first broken into pyruvate in the cytoplasm; aerobic respiration in mitochondria releases far more energy than anaerobic pathways.
- ✓The four-chambered human heart gives double circulation; xylem carries water and minerals while phloem translocates food.
- ✓Nephrons filter about 180 L of blood filtrate daily but reabsorb most of it, so only 1–2 L of urine is excreted.
👨🏫 Teaching Tips
- →Do Activity 5.1 with a croton leaf and let students compare the iodine-stained leaf with their tracing of the green areas.
- →Use a flow chart on the board for the three pathways of breakdown of glucose (yeast, muscle, mitochondria) and have students fill in products.
- →Draw the heart as a simple four-box diagram first, then trace a single drop of blood through double circulation with coloured chalk.
- →Set up the plant-and-stick transpiration pots in the morning and check for droplets after lunch.
- →Give each group one part of the alimentary canal to present: what enters, which juice acts, what leaves.
- →Use the 180 L versus 1–2 L figure to start a discussion on why reabsorption is essential.
- →Practise the five board diagrams with timed labelling drills.
📋 Assessment Questions
- Why is chlorophyll essential for photosynthesis? Describe an activity to prove it.
- Compare aerobic respiration, anaerobic respiration in yeast and respiration in muscle cells during lack of oxygen.
- Explain double circulation and why it is important for mammals and birds.
- Describe the structure of a nephron and explain how urine is formed.
- How are water and food transported in plants?
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All chapters in Science - Class 10
- 1. Chemical Reactions and Equations
- 2. Acids, Bases and Salts
- 3. Metals and Non-metals
- 4. Carbon and its Compounds
- 5. Life Processes
- 6. Control and Coordination
- 7. How do Organisms Reproduce?
- 8. Heredity
- 9. Light – Reflection and Refraction
- 10. The Human Eye and the Colourful World
- 11. Electricity
- 12. Magnetic Effects of Electric Current
- 13. Our Environment