Sciences - Co-ordinated (Double) - 0654 CIE

Electromagnetic Effects Continued

Akopọ

Send a current through a wire that sits in a magnetic field and the wire is pushed sideways. Wind that wire into a coil and the push becomes a spin: this is how every electric motor turns. Pair two coils on an iron core and a changing current in one induces a voltage in the other, which is how transformers raise and lower the voltages that power the world.

In this lesson you will describe the force on a current-carrying conductor and how reversing the current or field reverses it, find force directions and deflect charged particles, explain the turning effect on a coil and the d.c. motor with its commutator, and work through transformers from construction to the turns equation, the efficiency equation, and why high-voltage transmission cuts the power lost as \(I^2R\) heating in cables.

Awọn Afojusun

  1. Describe an experiment to show that a force acts on a current-carrying conductor in a magnetic field, including the effect of reversing: (a) the current (b) the direction of the field
  2. Know that a current-carrying coil in a magnetic field may experience a turning effect and that the turning effect is increased by increasing: (a) the number of turns on the coil (b) the current (c) the strength of the magnetic field
  3. Describe the construction of a simple transformer with a soft-iron core, as used for voltage transformations
  4. Use the terms primary, secondary, step-up and step-down
  5. Recall and use the equation Vₚ / Vₛ = Nₚ / Nₛ where p and s refer to primary and secondary
  6. Describe the use of transformers in high- voltage transmission of electricity
  7. State the advantages of high-voltage transmission
  8. [Supplement] Recall and use the relative directions of force, magnetic field and current
  9. [Supplement] Determine the direction of the force on beams of charged particles in a magnetic field
  10. [Supplement] Describe the operation of an electric motor, including the action of a split-ring commutator and brushes
  11. [Supplement] Explain the principle of operation of a simple iron-cored transformer
  12. [Supplement] Recall and use the equation for 100% efficiency in a transformer I V = I V p p s s where p and s refer to primary and secondary
  13. [Supplement] Recall and use the equation P = I2R to explain why power losses in cables are smaller when the voltage is greater

Akọ̀wé Ẹ̀kọ́

Motors drive everything from electric trains to washing machines, and transformers make the entire electricity grid possible. These ideas are exam favourites that combine a clear physical principle (the motor effect, induction) with calculations (the turns ratio, efficiency, power loss), so they reward both good explanations and careful arithmetic.

O wa lori ohun elo Green Bridge

Gba ohun elo Green Bridge CBT sori foonu tabi kọmputa rẹ lati ri awọn akọsilẹ ẹkọ ni kikun, awọn ibeere adaṣe, ati diẹ sii.

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Ìdánwò Ẹ̀kọ́

Oriire fun ipari ẹkọ lori Electromagnetic Effects Continued. Ni bayi ti o ti ṣawari naa awọn imọran bọtini ati awọn imọran, o to akoko lati fi imọ rẹ si idanwo. Ẹka yii nfunni ni ọpọlọpọ awọn adaṣe awọn ibeere ti a ṣe lati fun oye rẹ lokun ati ṣe iranlọwọ fun ọ lati ṣe iwọn oye ohun elo naa.

Iwọ yoo pade adalu awọn iru ibeere, pẹlu awọn ibeere olumulo pupọ, awọn ibeere idahun kukuru, ati awọn ibeere iwe kikọ. Gbogbo ibeere kọọkan ni a ṣe pẹlu iṣaro lati ṣe ayẹwo awọn ẹya oriṣiriṣi ti imọ rẹ ati awọn ogbon ironu pataki.

Lo ise abala yii gege bi anfaani lati mu oye re lori koko-ọrọ naa lagbara ati lati ṣe idanimọ eyikeyi agbegbe ti o le nilo afikun ikẹkọ. Maṣe jẹ ki awọn italaya eyikeyi ti o ba pade da ọ lójú; dipo, wo wọn gẹgẹ bi awọn anfaani fun idagbasoke ati ilọsiwaju.

  1. The force on a current-carrying wire in a magnetic field is reversed by A. increasing the current B. reversing the current direction C. using a longer wire D. switching off the current Answer: B
  2. Fleming's left-hand rule gives the direction of the A. magnetic field B. induced current C. force on the wire D. e.m.f. Answer: C
  3. A transformer with 200 primary turns and 50 secondary turns is a A. step-up transformer B. step-down transformer C. d.c. transformer D. rectifier Answer: B
  4. A transformer has Vp = 240 V, Vs = 12 V and Np = 1000 turns. Ns equals A. 20 B. 50 C. 200 D. 2000 Answer: B
  5. Electricity is transmitted at high voltage mainly to A. increase the current B. reduce the power lost as heat in the cables C. change a.c. to d.c. D. raise the resistance of the cables Answer: B

O wa lori ohun elo Green Bridge

Gba ohun elo Green Bridge CBT sori foonu tabi kọmputa rẹ lati ri awọn akọsilẹ ẹkọ ni kikun, awọn ibeere adaṣe, ati diẹ sii.

Awọn akọsilẹ ẹkọ ni kikun pẹlu awọn aworan apejuwe
Oluranlọwọ ẹkọ ti AI ṣe agbara rẹ
Kọ ẹkọ laisi intanẹẹti, nigbakugba, nibikibi
O wa lori Android, Windows, macOS, ati Linux

O wa lori ohun elo Green Bridge

Gba ohun elo Green Bridge CBT sori foonu tabi kọmputa rẹ lati ri awọn akọsilẹ ẹkọ ni kikun, awọn ibeere adaṣe, ati diẹ sii.

Awọn akọsilẹ ẹkọ ni kikun pẹlu awọn aworan apejuwe
Oluranlọwọ ẹkọ ti AI ṣe agbara rẹ
Kọ ẹkọ laisi intanẹẹti, nigbakugba, nibikibi
O wa lori Android, Windows, macOS, ati Linux

Ṣe Adaṣe Awọn Ibeere Idanwo Adaṣe

Ṣe o fẹ ṣe adaṣe awọn ibeere idanwo adaṣe nipa Electromagnetic Effects Continued? Ṣe igbasilẹ ohun elo Green Bridge CBT lati wọle si awọn ibeere idanwo adaṣe ati awọn ayẹwo adaṣe kikun fun koko-ọrọ yii.

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