Life Processes

Complete Class 10 Science Notes

I. The Fundamental Nature of Life

Visible movement such as growth, running, or breathing is not the only criterion of life. According to biologists, continuous invisible molecular movement is the true requirement for maintaining life.

Why Molecular Movement Is Necessary

Life Processes

Life processes are the basic maintenance activities required to keep an organism alive, even when it is inactive or asleep.

The major life processes include:

Energy and Carbon Basis of Life

II. Nutrition

Nutrition is the process by which organisms obtain food and use it for energy, growth, repair, and maintenance.

A. Autotrophic Nutrition

Autotrophic nutrition is the process in which organisms synthesise complex, high-energy organic substances from simple inorganic substances such as carbon dioxide and water using an external energy source.

Photosynthesis Equation

6CO2 + 12H2O → C6H12O6 + 6O2 + 6H2O
In the presence of sunlight and chlorophyll

Three Main Events of Photosynthesis

1. Absorption: Chlorophyll present in chloroplasts captures light energy.
2. Conversion and Splitting: Light energy is converted into chemical energy and water molecules are split into hydrogen and oxygen.
3. Reduction: Carbon dioxide is reduced to form carbohydrates such as glucose.

Temporal Variation in Desert Plants

Desert plants often take in carbon dioxide during the night and prepare an intermediate compound. During the day, this intermediate is acted upon by the chemical energy obtained from sunlight.

Leaf Anatomy

A typical leaf cross-section contains:

Stomata and Guard Cells

Stomata are tiny pores present on leaves that allow exchange of gases between the plant and the atmosphere.

Storage of Food

Plants

Store unused food energy as starch.

Humans

Store excess food energy as glycogen.

Mineral Requirements

Plants absorb several minerals from the soil, including:

Nitrogen is essential for protein synthesis. Plants absorb nitrogen mainly as inorganic nitrates and nitrites or as organic compounds prepared by bacteria.

B. Heterotrophic Nutrition

Heterotrophic organisms cannot synthesise their own food and depend on other organisms for nutrition.
Mode Description Examples
Saprophytic Food is broken down outside the body and then absorbed. Fungi, bread moulds, yeast, mushrooms
Holozoic Whole food material is taken in and digested internally. Humans and other animals
Parasitic Nutrition is obtained from a living host without immediately killing it. Cuscuta, ticks, lice, leeches, tapeworms

Nutrition in Unicellular Organisms

Amoeba

Paramoecium

III. Human Digestive System

The human alimentary canal is a continuous tube through which food passes and is digested, absorbed, and finally eliminated.

Mouth

Oesophagus

The oesophagus pushes food towards the stomach through rhythmic muscular contractions called peristaltic movements.

Stomach

Gastric glands release:

The exit of food from the stomach is controlled by a sphincter muscle.

Small Intestine

The small intestine is the main site of complete digestion and absorption of nutrients.

Role of Liver

Role of Pancreas

Intestinal Juice

Intestinal enzymes complete digestion by converting:

Food Component Final Product
Proteins Amino acids
Carbohydrates Glucose and other simple sugars
Fats Fatty acids and glycerol

Absorption through Villi

Large Intestine

IV. Respiration

Respiration is the process of breaking down food molecules to release usable energy for life activities.

Common First Step

In the cytoplasm, one six-carbon glucose molecule breaks down into two three-carbon molecules of pyruvate.

Glucose (6C) → 2 Pyruvate molecules (3C each)

Different Pathways of Pyruvate Breakdown

Condition Location Products Energy Output
Anaerobic respiration in yeast Cytoplasm Ethanol + CO2 + Energy Low
Anaerobic respiration in human muscles Cytoplasm Lactic acid + Energy Low
Aerobic respiration Mitochondria CO2 + H2O + Energy High

Fermentation in Yeast

Pyruvate → Ethanol + CO2 + Energy

Anaerobic Respiration in Human Muscles

Pyruvate → Lactic Acid + Energy

Lactic acid accumulation during oxygen shortage may cause muscle cramps.

Aerobic Respiration

Pyruvate + Oxygen → CO2 + H2O + Large Amount of Energy

ATP — Energy Currency of the Cell

ATP stands for Adenosine Triphosphate. It is the primary energy currency used by cells.

ATP is synthesised from ADP and inorganic phosphate.

ADP + Pi + Energy → ATP

Breaking the terminal phosphate bond of ATP releases approximately 30.5 kJ/mol of energy.

Respiratory Surfaces

Human Respiratory System

Nostrils → Throat → Trachea → Bronchi → Bronchioles → Alveoli

Transport of Respiratory Gases

Role of Cilia

Cilia are hair-like structures in the upper respiratory tract that remove dust and germs. Smoking damages or destroys these cilia.

V. Transportation Systems

A. Human Circulatory System

Blood Composition

The Heart

The heart is a muscular pumping organ approximately the size of a fist.

Right Side of the Heart

Left Side of the Heart

Heart Chambers and Valves

Double Circulation

In double circulation, blood passes through the heart twice during one complete cycle of circulation.

Four-chambered hearts in birds and mammals allow complete separation of oxygenated and deoxygenated blood, making circulation highly efficient.

Blood Pressure

Normal Blood Pressure = 120/80 mm of Hg

Blood Vessels

Blood Vessel Structure Function
Arteries Thick and elastic walls Carry blood away from the heart under high pressure
Veins Thin walls and valves Carry blood towards the heart
Capillaries Walls one cell thick Allow exchange of materials between blood and tissues

Platelets

Platelets help clot blood at injury sites and prevent excessive blood loss.

Lymph

B. Transportation in Plants

Xylem — Transport of Water and Minerals

Xylem transports water and dissolved minerals from roots to other parts of the plant.

Root Pressure

Transpiration Pull

Phloem — Translocation

Phloem transports sucrose and amino acids from leaves to storage organs such as roots and fruits, as well as to growing regions.

VI. Excretion

Excretion is the process of removing harmful metabolic wastes from the body.

Human Excretory System

The human excretory system consists of:

The Nephron

The nephron is the basic structural and functional unit of the kidney.

Filtration and Reabsorption

Substances reabsorbed include:

Urinary Bladder

The urinary bladder is a muscular sac that stores urine. Its emptying is controlled by nervous signals.

Artificial Kidney — Haemodialysis

Haemodialysis is a process in which an artificial kidney removes nitrogenous wastes from the blood using semi-permeable tubes and dialysing fluid.

Excretion in Plants

Quick Revision

Life Processes

Nutrition, respiration, transportation, and excretion.

Photosynthesis

Uses CO₂, water, sunlight, and chlorophyll.

Plant Storage

Plants store food as starch.

Human Storage

Humans store excess glucose as glycogen.

Common Respiration Step

Glucose breaks into two pyruvate molecules.

ATP Energy

Approximately 30.5 kJ/mol.

Alveoli Area

Approximately 80 m².

Normal Blood Pressure

120/80 mm of Hg.

Water Transport

Xylem transports water and minerals.

Food Transport

Phloem transports sucrose and amino acids.

Nephron

Basic filtration unit of the kidney.

Daily Filtrate

Approximately 180 L formed, but only 1–2 L urine excreted.