
Physic Exam Summary Notes
Presentation
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Physics
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7th Grade
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Practice Problem
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Hard
Fera Nahampun
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16 Slides • 0 Questions
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Physics Exam Summary Notes
By Fera Nahampun
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Magnetic Materials & Properties
Magnetic materials include iron and steel. Non-magnetic metals include aluminium, copper, brass, and lead.
Ferrous metals (like iron and steel) contain iron and are magnetic. Non-ferrous metals (like aluminium, copper, lead, brass) do not contain iron.
A magnet attracts ferrous materials and has two poles — north and south — which always appear in pairs.
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Magnetic Materials & Properties
The north pole of a magnet can be identified using a compass (which aligns itself with Earth's magnetic field).
Iron filings are used to visualize magnetic field lines around magnets.
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Magnetic Materials & Properties
Hard vs Soft Magnetic Materials
Hard magnetic material: retains magnetism (e.g., steel)
Soft magnetic material: loses magnetism easily (e.g., iron)
Iron is a soft magnetic material (magnetizes and demagnetizes easily), while steel is a hard magnetic material (retains magnetism).
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Magnetic Materials & Properties
Two methods to magnetise steel : Stroke with a magnet, Place in a coil with current (electromagnet)
To demagnetize a permanent magnet, it can be hammered or placed in a coil carrying an alternating current.
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Electromagnets & Transformers
An electromagnet consists of a coil of wire (solenoid) often wrapped around a soft iron core to enhance the magnetic field.
Steel is not ideal for electromagnet cores because it retains magnetism (makes a permanent magnet).
Increasing Electromagnet Strength : Increase the current, Increase the number of turns in the coil, Use a soft iron core inside the coil
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Electromagnets & Transformers
Transformers change the voltage of alternating current. A step-up transformer increases voltage, while a step-down transformer decreases it.
The primary coil is the input side; the secondary coil is the output side.
The core of a transformer is made of soft iron, which easily magnetizes/demagnetizes.
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Electromagnets & Transformers
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Electromagnets & Transformers
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Electromagnetic Induction
Moving a magnet relative to a coil of wire induces an electromotive force (e.m.f.).
Relative motion is necessary — moving both magnet and coil together does not induce current.
The faster the movement, the larger the induced current.
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Electromagnetic Induction
The galvanometer shows a changing current when a magnet moves in and out of a coil — this is electromagnetic induction.
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Electrical Quantities
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Electrical Quantities
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Electrical Quantities
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Electrical Quantities
Conventional current flows from the positive to the negative terminal.
Electron flow is from the negative to the positive terminal.
A battery produces e.m.f. (energy source).
A lamp converts electrical energy to light and is represented by a specific symbol in circuits.
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Electricity cost Calculation
Physics Exam Summary Notes
By Fera Nahampun
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