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xi pallais date: dec ansperse and longitudinal wave e 2) es that transf…

Question

xi pallais date: dec ansperse and longitudinal wave e 2) es that transfer from place to place the material through which a wave ; can be solids, waves - require a to travel (ex. sound) netic waves - can travel through empty (ex. light) s of waves -, and ves (slide 3) - a type of wave that moves the medium at a ular) to the direction in which the wave travels al - a type of wave that displaces the particles of the medium which the wave travels waves (slide 4) part of a transverse wave he part of a transverse wave of transverse waves - al waves (slide 5) ion - the location where the particles are together on a lon n - the location where the particles are apart on a longi of longitudinal waves - nsfer (slide 6) waves - energy moves as particles oscillate and light waves transfer energy al waves - energy moves as particles and waves transfer energy through solids, liquids, or gases the

Explanation:

Brief Explanations

This worksheet is about transverse and longitudinal waves, which falls under the subfield of Physics (Natural Science). To fill in the blanks:

  1. Waves transfer energy from place to place.
  2. The material through which a wave travels; can be solids, liquids, gases (medium types).
  3. Mechanical waves - require a medium to travel (ex. sound).
  4. Electromagnetic waves - can travel through empty space (ex. light).
  5. Types of waves - transverse, longitudinal, and surface (common wave types).
  6. Transverse wave: moves the medium at a right angle (perpendicular) to wave travel.
  7. Longitudinal wave: displaces particles parallel to wave travel.
  8. Transverse wave parts: Crest (highest part), Trough (lowest part).
  9. Longitudinal wave parts: Compression (particles close), Rarefaction (particles far).
  10. Energy transfer: Transverse - particles oscillate up and down; Light transfers electromagnetic energy. Longitudinal - particles compress and rarefy; Mechanical waves transfer through solids/liquids/gases.

Answer:

(Example filled blanks for key terms):

  • transfer \(\boldsymbol{\text{energy}}\) from place to place
  • through which a wave \(\boldsymbol{\text{travels}}\); can be solids, \(\boldsymbol{\text{liquids, gases}}\)
  • \(\boldsymbol{\text{Mechanical}}\) waves - require a \(\boldsymbol{\text{medium}}\)
  • \(\boldsymbol{\text{Electromagnetic}}\) waves - through empty \(\boldsymbol{\text{space}}\)
  • Types of waves - \(\boldsymbol{\text{transverse}}\), \(\boldsymbol{\text{longitudinal}}\), \(\boldsymbol{\text{surface}}\)
  • transverse wave: \(\boldsymbol{\text{right angle}}\) (perpendicular)
  • longitudinal wave: displaces particles \(\boldsymbol{\text{parallel}}\)
  • transverse wave parts: \(\boldsymbol{\text{Crest}}\) (top), \(\boldsymbol{\text{Trough}}\) (bottom)
  • longitudinal wave parts: \(\boldsymbol{\text{Compression}}\) (close), \(\boldsymbol{\text{Rarefaction}}\) (far)
  • Transverse energy: oscillate \(\boldsymbol{\text{up}}\) and \(\boldsymbol{\text{down}}\); Light: \(\boldsymbol{\text{electromagnetic}}\)
  • Longitudinal: particles \(\boldsymbol{\text{compress}}\) and \(\boldsymbol{\text{rarefy}}\); \(\boldsymbol{\text{Mechanical}}\) waves (solids/liquids/gases)