Transformation of Energy; Uses of Energy

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<h1><strong>TRANSFORMATION AND USES OF ENERGY</strong></h1> CONTENT <ol> <li>Transformation of Energy</li> <li>Uses of Energy</li> </ol>   <h2><strong>Transformation of Energy </strong></h2> Energy changes happen daily around us. The law of Conservation of energy states that energy can neither be created nor destroyed but it can change from one form to another. The following are examples of transformation of energy: <ol> <li>Mechanical Energy → Heat energy e.g. rubbing two surfaces against each other</li> <li>Chemical energy → Light energy e.g. torch light battery.</li> <li>Sound Energy → Electrical energy e.g. microphone, loudspeaker</li>

Renewable and Non-renewable Energy

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<h1><strong>RENEWABLE AND NON-RENEWABLE ENERGY</strong></h1> CONTENT Renewable Energy <ol> <li>Meaning of Renewable Energy</li> <li>Uses/Advantages of Renewable Energy</li> <li>Misuse/Disadvantages of Renewable Energy</li> </ol> Non-renewable Energy <ol> <li>Meaning of Non-renewable Energy</li> <li>Uses/Advantages of Non-renewable Energy</li> <li>Misuse/Disadvantages of Non-renewable Energy</li> </ol>   <h2><strong>Renewable Energy </strong></h2> <h3><strong>Meaning of Renewable Energy</strong></h3> Renewable is the energy from a source that can last forever or that is replaced naturally. Examples of renewable energy are: (i) Solar energy (ii) Wave energy (iii) Hydro-energy from hydroelectric dams that have generators turned by water to produce electricity (e.g. Kanji dam, Shiroro dam). (iv) Biomass/Biofuels (v) Wind energy which is a source of energy used to run windmills to produce electricity. Wind power is not common in Nigeria as in overseas countries. Sun, wind and water will always exist and hence termed renewable energy. <h3><strong>Uses/Advantages of Renewable Energy</strong></h3> Renewable energy is useful or advantageous for the following reasons:

Energy and Society

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<h1><strong>ENERGY AND SOCIETY </strong></h1> CONTENT <ol> <li>Energy and Society</li> <li>Effects of Energy on Society</li> <li>Ways Through Which Lack of Energy Supply Affects Societal Development</li> </ol>   <h2><strong>Energy and Society</strong></h2> Energy is one of the basic needs of all mankind that is necessary for survival and societal development. <p style="text-align: center;"><img class="size-full wp-image-32437 aligncenter" src="https://classhall.com/wp-content/uploads/2018/06/energy-and-society-solar-power.jpg" alt="Renewable and Non-renewable energy - Energy and society - Solar power" width="451" height="263" /><strong>Solar Power</strong></p> <span style="color: #008000;">These solar panels convert energy from sunlight directly into electricity. Solar power is a renewable source of energy - it will never run out.</span> <h2><strong>Effects of Energy on Society</strong></h2> Energy has become more necessary in the following areas:

Introduction to Basic Science

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<h1><strong>INTRODUCTION TO SCIENCE </strong></h1> CONTENT <ol> <li>Definition of Science</li> <li>How to Study Science</li> <li>The Branches of Science</li> <li>Uses of Science</li> </ol>   <h2><strong>Definition of Science </strong></h2> Science is the systematic study of nature. Basic science is a subject that introduces sciences to mankind. <h2><strong>How to Study Science </strong></h2> Science is studied through the following ways:

Force: Meaning; Types and Uses of Force

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<h1><strong>MEANING AND TYPES OF FORCE</strong></h1> CONTENT <ol> <li>Definition of Force</li> <li>Mathematical Expression of Force</li> <li>Types of Forces</li> <li>Differences between Gravitational Force and Magnetic Force</li> <li>Uses of Force</li> </ol>   <h2><strong>Definition of Force</strong></h2> Force is any action that moves an object or alters its uniform motion in a given direction. Force is the product of mass of the objects and its acceleration. The greater the mass of the object, the greater the force required to move it. Examples of force are pull, push, tension forces and frictional force between surfaces. <strong>Force is measured in Newton.</strong> <h2><strong>Mathematical Expression of Force</strong></h2> F ά mass × acceleration F = ma, where m = mass and a = acceleration due to gravity <h2><strong>Types of Forces </strong></h2> There are two types of force. These are; <ol> <li>Contact force</li> <li>Non-contact force/force field</li> </ol> <h3><strong>Contact Force </strong></h3>

Family Health: Sanitation

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<h1><strong>FAMILY HEALTH - SANITATION</strong></h1> CONTENT <ol> <li>The Meaning of Sanitation</li> <li>Types of Sanitation</li> <li>How to Carry Out Personal Cleanliness</li> <li>Advantages of Observing Personal Cleanliness</li> <li>Disadvantages of Not Observing Personal Cleanliness</li> <li>The Importance of Sanitation</li> </ol>   <h2><strong>The Meaning of Sanitation</strong></h2> Sanitation is the removal of all kinds of waste that could be considered unpleasant from our immediate environment, in order to keep ourselves and our environment clean and healthy. <h2><strong>Types of Sanitation</strong></h2> The types of sanitation are as follows: (i) <strong>Environmental Sanitation:</strong> This refers to the practice or ways of keeping our surrounding clean and healthy by removing all kinds of waste from our rooms, toilets, bathrooms, kitchens and surroundings such as markets, schools etc. (ii)<strong> Personal cleanliness:</strong> This is the keeping of one’s body and personal belongings neat, clean and tidy always. Personal cleanliness is important for health because it prevents very tiny organisms (micro-organisms) which can cause diseases.   <h2><strong>How to Carry Out Personal Cleanliness</strong></h2> We can carry out personal cleanliness by doing the following:

Calculation of Gravitational Force

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<h1><strong>CALCULATION OF GRAVITATIONAL FORCE</strong></h1> CONTENT <ol> <li>Definition of Gravitational Force</li> <li>Calculation of Gravitational Forces</li> </ol>   <h2><strong>Definition of Gravitational Force</strong></h2> This is the force with which the earth pulls all objects towards its centre. It is also called force of gravity. The instrument used for measuring gravitational force is called spring balance. <h2><strong>Calculation of Gravitational Forces</strong></h2> The unit of force is Newton (the symbol is N). The unit was named after Sir Isaac Newton who first discovered the facts about gravity. The weight of a body is the force the earth exerts on it. <strong>All forces are measured in Newton.</strong> On the earth surface the universal value of acceleration due to gravity (g) is 9.8m/s<sup>2</sup> or 10m/s<sup>2</sup> To calculate gravitational force (Gf). The following formulae are used: 1. F = mg, used for calculation of gravitational force. <strong>Example 1:</strong> Calculate the gravitational force required to pull down a mango fruit of 10kg falling with acceleration of 5m/s<sup>2</sup>. <strong>Solution:</strong> F = mg, where F is unknown, m = 10kg, a = 5m/s<sup>2</sup> ∴ F = 10 × 5 = 50 N. <strong>Example 2:</strong>

Family Health: Refuse and Sewage

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REFUSE AND SEWAGE</strong></h1> CONTENT <ol> <li>Meaning of Refuse and Sewage</li> <li>Methods of Refuse Disposal</li> <li>Cleaning Tools and Agents</li> </ol>   <h2><strong>Meaning of Refuse and Sewage</strong></h2> Refuse is a solid waste whether dry or wet which could cause land pollution e.g. nylon, paper, plastic, broken bottles, scraps, etc. Refuse wastes materials could be divided into 2 namely: biodegradable and non-biodegradable. Biodegradable materials are materials that can decompose or decay e.g. banana peels, dead leaves, dead animals, etc. Non-biodegradable things are materials that cannot be decomposed or decay e.g. metals, plastics, broken bottles, etc. Sewage is a liquid waste from the environment e.g. faeces, urine, wasted water from kitchens, bathrooms, etc. <img class="size-full wp-image-19606 aligncenter" src="https://classhall.com/wp-content/uploads/2018/06/refuse-and-sewage.jpg" alt="refuse and sewage" width="431" height="116" />   <h2><strong>Methods of Refuse Disposal</strong></h2> Refuse disposal methods include:

Friction: Balanced and Unbalanced Forces

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<h1><strong>FRICTION: BALANCED AND UNBALANCED FORCES </strong></h1> CONTENT <ol> <li>Meaning of Friction</li> <li>Uses and Advantages of Friction</li> <li>Disadvantages of Friction</li> <li>How to Reduce Friction</li> <li>How to Reduce Friction</li> <li>Balanced and Unbalanced Forces</li> </ol>   <h2><strong>Meaning of Friction</strong></h2> The force that tries to stop a body from moving is called friction. Friction also means force that opposes motion. Friction can be reduced by lubrication i.e. adding oil and grease placed between the two surfaces in contact. The oil and grease are called lubricants. <h2 style="text-align: center;"><img class="size-full wp-image-36570 aligncenter" src="https://classhall.com/wp-content/uploads/2018/06/protection-from-friction.jpg" alt="Friction; Balanced and Unbalanced Forces - Protection from friction" width="396" height="239" /><strong>Protection from Friction</strong></h2> <span style="color: #008000;">Friction is a force that occurs when one object moves against another. The ceramic tiles on the outside of the space shuttle protect it from the great friction caused when the shuttle re-enters Earth’s atmosphere.</span> <h2><strong>Uses and Advantages of Friction</strong></h2> The following are the uses and advantages of friction:

Family Health: Nutrition

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<h1><strong>FAMILY HEALTH - NUTRITION </strong></h1> CONTENT <ol> <li>The Meaning of Nutrition</li> <li>Meaning of Food</li> <li>Classes of Food</li> <li>Balanced Diet</li> </ol>   <h2><strong>The Meaning of Nutrition</strong></h2> Nutrition is the act of obtaining food by living things. It is one of the characteristics of living things. <h2><strong>Meaning of Food</strong></h2> What is food? Food is any substance that is taken to nourish the body and to meet physiological needs for growth, energy and to maintain all processes. <h2><strong>Classes of Food</strong></h2> The food we eat can be grouped into following classes based on the nutrient derived from it. Nutrient is a group of chemical compounds found in food. There are six classes of food, namely carbohydrates, proteins, fat and oil, minerals salt, vitamins and water. <img class="aligncenter wp-image-19608 size-full" src="https://classhall.com/wp-content/uploads/2018/06/classes-of-food.jpg" alt="Nutrition - classes of food" width="346" height="268" /> <h3><strong>Carbohydrates</strong></h3> These are energy giving foods e.g rice, yam, maize, cassava, wheat, bread, potato, etc. Excess intake of carbohydrate foods can lead to diseases such as diabetes, beriberi etc.

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