Physics - 4PH1 PearsonEdexcel

Light And Sound

Gbogbo ọrọ náà

Light lets you see the world, and sound lets you hear it, but both travel as waves, and both obey the same core rules when they bounce off surfaces or pass from one material into another. Understanding reflection, refraction and total internal reflection unlocks everything from fibre-optic broadband to the sparkle of a diamond.

In this topic you will apply the law of reflection, use Snell's law to calculate refractive index, find critical angles, and draw accurate ray diagrams. You will also explore how sound travels, how an oscilloscope reveals its frequency and amplitude, and why pitch and loudness depend on different wave properties.

Ebumnobi

  1. Know that light waves are transverse waves and that they can be reflected and refracted
  2. Use the law of reflection (the angle of incidence equals the angle of reflection)
  3. Draw ray diagrams to illustrate reflection and refraction
  4. Investigate the refraction of light, using rectangular blocks, semi-circular blocks and triangular prisms
  5. Know and use the relationship between refractive index, angle of incidence and angle of refraction: n = sin i / sin r
  6. Investigate the refractive index of glass, using a glass block
  7. Describe the role of total internal reflection in transmitting information along optical fibres and in prisms
  8. Explain the meaning of critical angle c
  9. Know and use the relationship between critical angle and refractive index: sin c = 1 / n
  10. Know that sound waves are longitudinal waves that can be reflected and refracted
  11. Know that the frequency range for human hearing is 20-20,000 Hz
  12. Investigate the speed of sound in air
  13. Understand how an oscilloscope and microphone can be used to display a sound wave
  14. Investigate the frequency of a sound wave using an oscilloscope
  15. Understand how the pitch of a sound relates to the frequency of vibration of the source
  16. Understand how the loudness of a sound relates to the amplitude of vibration of the source

Akọmọ Ojú-ẹkọ

A straw looks broken in a glass of water. A shout echoes off a cliff face. A surgeon peers inside a patient through a hair-thin fibre. All three rely on the same physics: waves changing direction at a boundary. Once you can describe that behaviour with numbers and ray diagrams, you hold the key to a huge slice of the Edexcel specification.

Ọ dị na ngwa Green Bridge

Budata ngwa Green Bridge CBT na ekwentị maọbụ kọmputa gị iji nweta akwụkwọ ndụmọdụ zuru oke, ajụjụ mmụta, na ndị ọzọ.

Akwụkwọ ndụmọdụ zuru oke nwere eserese
Onye inyeaka mmụta AI
Mụọ n'ụzọ na-enweghị ịntaneti, oge ọbụla, ebe ọbụla
Ọ dị na Android, Windows, macOS, na Linux

Ayẹwo Ẹkọ

Ekele diri gi maka imecha ihe karịrị na Light And Sound. Ugbu a na ị na-enyochakwa isi echiche na echiche ndị dị mkpa, ọ bụ oge iji nwalee ihe ị ma. Ngwa a na-enye ụdị ajụjụ ọmụmụ dị iche iche emebere iji kwado nghọta gị wee nyere gị aka ịmata otú ị ghọtara ihe ndị a kụziri.

Ị ga-ahụ ngwakọta nke ụdị ajụjụ dị iche iche, gụnyere ajụjụ chọrọ ịhọrọ otu n’ime ọtụtụ azịza, ajụjụ chọrọ mkpirisi azịza, na ajụjụ ede ede. A na-arụpụta ajụjụ ọ bụla nke ọma iji nwalee akụkụ dị iche iche nke ihe ọmụma gị na nkà nke ịtụgharị uche.

Jiri akụkụ a nke nyocha ka ohere iji kụziere ihe ị matara banyere isiokwu ahụ ma chọpụta ebe ọ bụla ị nwere ike ịchọ ọmụmụ ihe ọzọ. Ekwela ka nsogbu ọ bụla ị na-eche ihu mee ka ị daa mba; kama, lee ha anya dị ka ohere maka ịzụlite onwe gị na imeziwanye.

  1. When a ray of light passes from air into glass, it bends: A) Away from the normal B) Towards the normal C) Along the normal D) It does not change direction Answer: B
  2. The critical angle of a material with a refractive index of 1.4 is: A) 35.3 degrees B) 41.8 degrees C) 45.6 degrees D) 48.6 degrees Answer: C
  3. Sound waves are: A) Transverse waves that can travel through a vacuum B) Longitudinal waves that can travel through a vacuum C) Transverse waves that need a medium D) Longitudinal waves that need a medium Answer: D
  4. The frequency range of human hearing is: A) 2 Hz to 2000 Hz B) 20 Hz to 20 000 Hz C) 200 Hz to 200 000 Hz D) 2000 Hz to 20 000 Hz Answer: B
  5. On an oscilloscope trace, a louder sound would show: A) More waves on the screen B) Fewer waves on the screen C) Taller waves D) Shorter wavelength Answer: C

Ọ dị na ngwa Green Bridge

Budata ngwa Green Bridge CBT na ekwentị maọbụ kọmputa gị iji nweta akwụkwọ ndụmọdụ zuru oke, ajụjụ mmụta, na ndị ọzọ.

Akwụkwọ ndụmọdụ zuru oke nwere eserese
Onye inyeaka mmụta AI
Mụọ n'ụzọ na-enweghị ịntaneti, oge ọbụla, ebe ọbụla
Ọ dị na Android, Windows, macOS, na Linux

Ọ dị na ngwa Green Bridge

Budata ngwa Green Bridge CBT na ekwentị maọbụ kọmputa gị iji nweta akwụkwọ ndụmọdụ zuru oke, ajụjụ mmụta, na ndị ọzọ.

Akwụkwọ ndụmọdụ zuru oke nwere eserese
Onye inyeaka mmụta AI
Mụọ n'ụzọ na-enweghị ịntaneti, oge ọbụla, ebe ọbụla
Ọ dị na Android, Windows, macOS, na Linux

Meecha Ajụjụ Ule Ọmarịcha

Ị chọrọ ime ajụjụ ule ọmarịcha gbasara Light And Sound? Budata ngwa Green Bridge CBT iji nweta ajụjụ ule ọmarịcha na nyocha zuru ezu gbasara isiokwu a.

Dawunlodi Ẹpp naa lori Google Playstore.

Ihe nile ichoro iji nwee ihe ịga nke ọma na JAMB, WAEC & NECO.

Green Bridge CBT Mobile App
Personalized AI Ẹ̀kọ́ Ọ̀rọ̀ Alábàápàdé.
Egbò ọdúnrún IGCSE, JAMB, WAEC & NECO Ajùmọ̀ṣe ìbéèrè ti kọjá.
Ihe karịrị 1200 Nkọwa Nkuzi
Tallafi Ba Tare da Layin Intanet Ba - Koyi Duk Lokaci, Ko'ina
Jadawalin Gada Kore
Akọkọ akọle iwe & Ibeere agbara
Sọfụma Ọrụ Gi & Ọganihu Gi
Ìtọ́jú Ìtúmọ̀ fún Ẹ̀kọ́ Alábáyọrí.