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Physics · Class 10 · Chapter 17: Magnetism and Electromagnetism
8 min
Key points
- Magnetism is the property by virtue of which certain materials attract iron, steel and other magnetic materials
- Every magnet has two poles — North pole and South pole — like poles repel and unlike poles attract
- Magnetic field is the space around a magnet where its magnetic effect can be felt
- Electromagnet is a temporary magnet made by passing electric current through a coil wound around an iron core
- Motor principle: A current-carrying conductor placed in a magnetic field experiences a force (used in electric motors)
- Generator principle: When a conductor moves in a magnetic field, an EMF is induced (electromagnetic induction)
- Transformer works on the principle of mutual induction to step up or step down AC voltage
- Fleming's left hand rule determines the direction of force on a current-carrying conductor in magnetic field
- Lenz's law states that the direction of induced current opposes the change that produces it
Definitions
- Magnetism
- Magnetism is the property by virtue of which certain materials attract iron, steel and other magnetic materials.
- Magnetic Field
- The space around a magnet where its magnetic effect can be felt is called magnetic field.
- Electromagnet
- A temporary magnet made by passing electric current through a coil wound around a soft iron core is called electromagnet.
- Electromagnetic Induction
- The phenomenon of producing induced EMF in a conductor when there is a relative motion between the conductor and magnetic field is called electromagnetic induction.
- Transformer
- A device that changes the magnitude of alternating voltage by using the principle of mutual induction is called transformer.
Worked example
Define electromagnetic induction and state Fleming's right-hand rule. Draw a labeled diagram showing electromagnetic induction in a coil. (6 marks)
Electromagnetic induction: The phenomenon of producing electric current in a conductor when it moves in a magnetic field or when magnetic field around it changes. Fleming's right-hand rule: If the thumb, first finger and middle finger of right hand are stretched mutually perpendicular to each other, with thumb showing direction of motion, first finger showing magnetic field direction, then middle finger shows direction of induced current. [Diagram: Coil with moving magnet, labeled N-S poles, induced current direction, and galvanometer]
Common mistakes
- Students confuse Fleming's left hand rule with right hand rule - left is for motor, right is for generator
- Writing transformer ratios incorrectly - always write Vs/Vp = Ns/Np
- Not drawing magnetic field lines from North to South pole in diagrams
- Forgetting to mention 'soft iron core' when defining electromagnet
- Confusing step-up and step-down transformers - step-up has more turns in secondary
Quick recap
Magnetism involves magnetic fields around magnets with N-S poles that attract opposites and repel likes. Electromagnets use current through coils to create temporary magnetism. Electromagnetic induction generates current when conductors move in magnetic fields (Fleming's right-hand rule). Motors convert electrical energy to mechanical energy using magnetic force on current-carrying conductors.
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