Class 4 Exam  >  Class 4 Notes  >  Science for Class 4  >  Chapter Notes: Force, Work & Energy

Force, Work and Energy Class 4 Notes Science

Force

Force is when you push or pull something. It can make things move, stop, or change shape. For example, when you kick a ball, you're using force to make it move. Forces are everywhere and help us do lots of things every day, like opening a door or riding a bike.
Force, Work and Energy Class 4 Notes Science

Force, Work and Energy Class 4 Notes Science

Types of Forces

There are many different types of forces. Let us study some that we come across often in our daily lives.Force, Work and Energy Class 4 Notes Science

Friction

Friction is a force between two surfaces which are in contact. Roll a ball on the ground. It slows down and stop. Why does it not keep going?
  • It stops because friction acts on it. 
  • The ball will go further on a smooth surface than on a rough surface. 
  • This is because the force of friction is more on rough surfaces. It is less on smooth surfaces.
  • If the box is kept on a smooth surface, less force is required to move it. 
  • If the box is kept on a rough surface, greater force is required to move it. This is because of friction.

Force, Work and Energy Class 4 Notes Science

Question for Chapter Notes: Force, Work & Energy
Try yourself:
Which type of force is responsible for slowing down a rolling ball on the ground?
View Solution

Gravitational Force or Gravity

The force of the earth that pulls everything towards itself is called gravitational force or gravity. 
  • Throw up a ball. Observe it carefully. It slows down, stops, and then comes down. Why doesn't it keep going up? 
  • This is because gravitational force pulls everything down. 
  • You can stand on the ground because gravity pulls you down. If there was no gravity we would all be floating in the air.


    Force, Work and Energy Class 4 Notes Science

Muscular Force

The force that uses the power of the muscles of our body is called muscular force. When we push or pull something, we apply force by using parts of our body such as hands and feet.


Force, Work and Energy Class 4 Notes Science

Muscular Force

Magnetic Force

A magnet applies a force on things made of iron and steel and pulls them towards itself.

  • This force is called magnetic force.
  • The magnet does not pull things made of other substances such as paper, plastic.

Disadvantages of Friction

  • Friction wastes energy because it makes it difficult for things to move.
  • The soles of your shoes wear away after some time because of friction.
  • Friction causes parts of the moving machine to wear out.

Question for Chapter Notes: Force, Work & Energy
Try yourself:
Which force is responsible for pulling everything towards the earth?
View Solution

Advantages of Friction

  • We can walk because of friction between our feet and the ground. 
  • Without friction, we will slip and fall. 

Have you ever tried to walk on ice? Why is it difficult? Ice is very smooth, so there is very little friction and you can slip easily.
Force, Work and Energy Class 4 Notes ScienceCars and buses can run on roads because of friction between the tires and the road. Sometimes, cars slip on wet roads because the friction is less.
Force, Work and Energy Class 4 Notes Science

Reducing Friction

Activity - Take a carrom board. Place the striker on it and shoot it with your fingers. See how far it goes before it stops.
Now spread talcum powder all over the board. Again, hit the striker with the same force. See how far it goes now. Does it go further? Why?

  • Talcum powder is smooth. It reduces the friction on the board, so the striker travels further.
    Reducing friction
    Reducing friction
  • Oiling reduces friction between surfaces because it makes the surfaces smooth. If you put oil on the moving parts of your bicycle, it will run more smoothly. Oiling is done in machines in functions. It saves parts of machines from wearing out soon.

Oiling in machinesOiling in machines

Question for Chapter Notes: Force, Work & Energy
Try yourself:
What type of force is applied when we push or pull something using our hands or feet?
View Solution

What is Work?

You already know that a push or a pull is called force. A force can make things move. When a force moves something, work is done.

  • When you open a door you do work. When you kick a football you do work. Look at the given pictures. The man is pulling a cart. Thus, the work is done.
  • However, in the second case, the boy is pushing a wall. The wall does not move.
    Thus, the work is not done in this case. This is because, there is insufficient force being applied on the wall, which does not move it. 
  • On the other hand, if we apply a greater force on the wall, say using a crane, the wall will break. Thus, in that case work will be done.
    Work done
    Work done

No work doneNo work done

Simple Machines

We use some tools in our everyday life that make our work easier. These tools are called simple machines. Let's learn about some of them: 

1. Lever

A lever is a simple machine used to lift or move heavy weights, open the lid of a tin, or cut things. Examples of levers are see-saws, bottle openers, and scissors.

  • Example: When you use a spoon to open a lid, the spoon acts as a lever or a sissor.Force, Work and Energy Class 4 Notes Science

2. Inclined Plane

An inclined plane is a slope that helps move heavy objects to a higher place easily. Heavy cartons are loaded onto a truck by pushing them up on an inclined wooden plank. Ramps, slanted roads, and slides are examples of inclined planes.

  • Example: SlideForce, Work and Energy Class 4 Notes Science

3. Screw

A screw looks like a nail but has an inclined plane wrapped around a cylinder. It has a broad head and pointed tip and is used to hold things together.

  • Example: Light bulbForce, Work and Energy Class 4 Notes Science

4. Wedge

A wedge is a simple machine made of two inclined planes joined to form a sharp edge. It is used to cut things. Axes and knives are examples of wedges.

  • Example: AxeForce, Work and Energy Class 4 Notes Science

Question for Chapter Notes: Force, Work & Energy
Try yourself:
What type of simple machine is a slide?
View Solution

5. Wheel and Axle

In a wheel and axle arrangement, a rod (axle) passes through the wheel, helping it turn. This setup helps move heavy objects. Screwdrivers, steering wheels, and vehicle wheels are examples of wheel and axle.

  • Example: BicycleForce, Work and Energy Class 4 Notes Science

6. Pulley

A pulley consists of a grooved wheel and a rope. It is used to lift heavy loads easily.

  • Example: CraneForce, Work and Energy Class 4 Notes Science

Energy

When you do work, you use energy. How do you feel after doing a lot of work? Do you feel tired? From where can you get more energy? You can get energy from food.

Force, Work and Energy Class 4 Notes Science

  • Energy is the ability to do work.
  • Energy is required to change ice to water, or water to steam, or wood to smoke and ash.

Question for Chapter Notes: Force, Work & Energy
Try yourself:
What type of force is applied when a magnet pulls things made of iron and steel towards itself?
View Solution

Forms of Energy

There are many forms in which we get energy. Some of these are as follows.

Force, Work and Energy Class 4 Notes Science

Force, Work and Energy Class 4 Notes Science

Force, Work and Energy Class 4 Notes Science

Force, Work and Energy Class 4 Notes Science

Sources of Energy

  • Sun: The sun gives us solar energy. Plants use this energy to make food, and we can use it to cook food in solar cookers or heat water.
  • Wind: Wind energy helps boats sail and windmills generate electricity.
  • Water: Water energy, or hydropower, generates electricity.
  • Fuel: Fuels like wood, petrol, and LPG are burned to produce energy.

Let us look at some of the main sources of energy.

Sun as a Source of Energy

Sun is the greatest source of energy on Earth. The energy from the sun is called solar energy.
Plants use this light energy to make food for the entire living world. So, the energy we get from food also comes from the Sun.
Today we have discovered many other uses of solar energy, for example- 

  • Food can be cooked in solar cookers. They use sun’s energy to cook food.
    Solar cooker
    Solar cooker
  • Solar energy is often used to heat water in solar water heater.
  • Solar power is the conversion of energy from the sun into electricity. It can be used to run air conditioners, water heaters, and everything that runs on natural gas, electricity. It’s a cheaper, safer, and more eco-friendly solution.
    Solar panel charges solar batteries
    Solar panel charges solar batteries
  • Solar batteries are used to light up calculators, watches and bulbs.

Wind Energy

The air or wind that blows has energy. This wind energy is used to help a boat sail and turn the shafts of a windmill. The turning shaft of the windmill provides power to a machine called a generator to produce electricity.
WindmillWindmill

Question for Chapter Notes: Force, Work & Energy
Try yourself:
What is the main source of energy for solar cookers?
View Solution

Water Energy

Water is another very important energy source. People, plants and animals all depend on water.
Hydropower is energy that comes from the force of moving water. Like wind energy, water energy helps to generate electricity.
Water damWater dam

Fuel Energy

Things which can be burnt to produce energy, such as wood, petrol, coal or LPG are called fuels. Fuels are burnt to produce heat and power.
Energy is stored in wood. When wood is burnt, this energy is given out as light and heat. LPG (Liquid Petrolium Gas, the ‘gas’ we use at home to cook food) has stored energy too. Petrol, diesel and CNG (Compressed Natural Gas) are used to run vehicle and machines.
FuelsFuels

Concluion

energy is essential for all activities and changes around us. It powers our bodies, machines, and the natural processes that sustain life. By understanding the various sources of energy, like the sun, wind, water, and fuels, we can better appreciate how integral energy is to our everyday lives and the world around us.

Important Points

  1. A push or a pull is called a force.
  2. Force can move an object, stop a moving object, change the direction and speed of a moving object, or change the shape of an object.
  3. Gravity of the earth pulls everything towards itself.
  4. Friction is the force between two surfaces in contact.
  5. Work is done when a force moves an object.
  6. Energy is required to do work or to change matter.
  7. There are various forms of energy—heat, light, electrical and sound energies.
  8. Energy can be stored for later use.
  9. Sun is the main source of energy.
The document Force, Work and Energy Class 4 Notes Science is a part of the Class 4 Course Science for Class 4.
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FAQs on Force, Work and Energy Class 4 Notes Science

1. How can force be used to reduce friction?
Ans. Force can be used to reduce friction by applying a force in the opposite direction of the frictional force. This can help to overcome the resistance caused by friction and make it easier to move objects.
2. What is the relationship between force, work, and energy?
Ans. Force is required to do work, and work is the transfer of energy from one object to another. Therefore, force, work, and energy are interconnected concepts that are essential in understanding the mechanics of motion and energy transfer.
3. How do simple machines help in reducing the amount of force needed to do work?
Ans. Simple machines such as levers, pulleys, and inclined planes help to reduce the amount of force needed to do work by amplifying or redirecting the input force. This allows for easier and more efficient work to be done.
4. What are some examples of energy conversion in the context of force and work?
Ans. Examples of energy conversion in the context of force and work include lifting a weight (potential energy to kinetic energy), pushing a cart (mechanical energy), or stretching a spring (elastic potential energy).
5. How can the concept of force, work, and energy be applied in everyday situations?
Ans. The concepts of force, work, and energy can be applied in everyday situations such as lifting objects, pushing or pulling heavy loads, riding a bicycle, or even turning on a light switch. Understanding these concepts can help in optimizing tasks and conserving energy.
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