Physics - 9203 OxfordAQA

The Electromagnetic Spectrum

Akopọ

Hold your hand in front of a television remote control and press a button. Nothing happens. Point the remote at the television across a dark room and the channel changes instantly, with no wire, no sound and nothing at all for your eyes to see. Something crossed that room, carried energy from the little diode in the remote to the sensor on the television, and did it at three hundred million metres every second. It was the same kind of thing that lets you see this page, the same kind of thing that cooks a potato in a microwave oven, the same kind of thing that photographs the bone in a broken wrist. One family, one speed, one continuous spread of possibilities.

This lesson takes that family apart and puts it back in order. You will learn the sequence of the seven regions and what actually changes as you walk along it, why every object in the room around you is glowing in infrared right now and why a matt black surface glows harder than a shiny one, which regions carry our phone calls and our television and why each was chosen, and where along the sequence the radiation stops merely warming you and starts tearing electrons off your molecules. The last part of the lesson stays with X-rays: how a photograph of a bone is possible at all, why the same beam that finds a fracture can be aimed at a tumour, and what a radiographer wears so that a job spent beside an X-ray tube is a safe one.

Awọn Afojusun

  1. Electromagnetic waves are transverse waves that transfer energy from the source of the waves to an absorber.
  2. Electromagnetic waves form a continuous spectrum and all types of electromagnetic wave travel at the same speed through a vacuum (space). Students should know the order of electromagnetic waves within the spectrum, grouped in terms of energy, frequency and wavelength. They should appreciate that the wavelengths of the electromagnetic spectrum range from 10-15 m to 104 m and beyond.
  3. Visible light is the part of the electromagnetic spectrum that is detected by our eyes; we see different wavelengths as different colours.
  4. All objects emit and absorb infrared radiation. Objects emit infrared radiation because of the motion of their particles. The amount and frequency of emitted radiation depends on the temperature and surface of the object. The hotter an object is the more infrared radiation it radiates in a given time.; Dark, matt surfaces are good absorbers and good emitters of infrared radiation.; Light, shiny surfaces are poor absorbers and poor emitters of infrared radiation.; Light, shiny surfaces are good reflectors of infrared radiation.
  5. As an object heats up it radiates more and more infrared and radiation at higher frequencies.
  6. Black-body radiation is the range of electromagnetic radiation emitted by an object at a particular temperature.
  7. Radio waves, microwaves, infrared and visible light can be used for communication.
  8. Electromagnetic waves have many practical applications. For example: radio waves - television and radio systems (including Bluetooth); microwaves - mobile phones and satellite television systems; infrared - TV remote controls, night vision devices, heating; visible light - photography, fibre optic communications; ultraviolet - security marking; X-rays - medical imaging; gamma rays - sterilising surgical instruments and killing harmful bacteria in food.
  9. Excessive exposure of the human body to electromagnetic waves can be hazardous. Low energy waves have a heating effect and higher energy waves have enough energy to cause ionisation (remove an electron from an atom or molecule). For example: microwaves - heating of body tissue; infrared - skin burns; ultraviolet - skin cancer and blindness; X-rays - high doses kill cells; gamma rays - genetic mutations. Students should be able to describe simple protection measures against risks.
  10. X-rays are part of the electromagnetic spectrum. They have a very short wavelength, high energy and cause ionisation.
  11. Properties of X-rays include: they affect a photographic film in the same way as light; they are absorbed strongly by metal and bone; they are transmitted by healthy tissue.
  12. X-rays can be used to diagnose some medical conditions, for example in computed tomography (CT) scanning, bone fractures and dental problems. X-rays are also used to treat some conditions, for example in killing cancer cells.
  13. The use of high energy ionising radiation can be dangerous, and precautions need to be taken to monitor and minimise the levels of radiation that people who work with it are exposed to.

Àwòrán ọpọlọ

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Akọ̀wé Ẹ̀kọ́

A radio mast, a mobile phone, a bar heater, a candle, a sunbed, a dentist's machine and a cobalt source in a hospital basement look like seven unrelated pieces of technology. They are not. Every one of them shakes electric and magnetic fields, and every one of them sends out the result at exactly the same speed. The only thing that separates a radio wave from a gamma ray is how fast those fields are shaking, and everything else about the two, including whether one of them can give you cancer, follows from that single number.

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Ìdánwò Ẹ̀kọ́

Oriire fun ipari ẹkọ lori The Electromagnetic Spectrum. 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. Which list gives four types of electromagnetic wave in order of increasing frequency? A. Infrared, microwaves, ultraviolet, X-rays B. Microwaves, infrared, ultraviolet, X-rays C. X-rays, ultraviolet, infrared, microwaves D. Ultraviolet, X-rays, microwaves, infrared Answer: B
  2. Two electromagnetic waves travel through a vacuum, one a radio wave and one a gamma ray. Which statement is correct? A. The gamma ray travels faster than the radio wave B. The radio wave travels faster than the gamma ray C. They travel at the same speed D. Neither can travel through a vacuum Answer: C
  3. Which type of electromagnetic radiation is used for security marking? A. Microwaves B. Infrared C. Ultraviolet D. Gamma rays Answer: C
  4. Four objects at the same temperature have different outer surfaces. Which surface emits infrared radiation at the greatest rate? A. Dark and matt B. Dark and shiny C. Light and matt D. Light and shiny Answer: A
  5. A microwave transmitter emits waves of frequency 6.0 x 10^9 Hz. Electromagnetic waves travel at 3.0 x 10^8 m/s. What is the wavelength of the waves? A. 0.005 m B. 0.05 m C. 0.5 m D. 20 m Answer: B

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Ṣe o fẹ ṣe adaṣe awọn ibeere idanwo adaṣe nipa The Electromagnetic Spectrum? 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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