Longitudinal electric waves are characterized by oscillations of electric fields in the direction of wave propagation. These waves have properties such as frequency, wavelength, amplitude, and speed. They can be produced by sources like antennas and travel through mediums like air or cables.
Longitudinal electromagnetic waves have electric and magnetic fields that oscillate in the same direction as the wave's propagation. They can travel through mediums like air and solids, but not through vacuum. These waves have properties like frequency, wavelength, amplitude, and speed, and they exhibit characteristics such as polarization and interference.
Both transverse and longitudinal waves are forms of mechanical waves that transfer energy through a medium. They both exhibit properties such as wavelength, frequency, and amplitude. Additionally, they can both undergo reflection, refraction, diffraction, and interference.
Light waves propagate through a medium by oscillating electric and magnetic fields. Longitudinal waves have vibrations parallel to the direction of propagation, while transverse waves have vibrations perpendicular to the direction of propagation.
No, compressions and rarefactions are characteristics of longitudinal waves, not transverse waves. In transverse waves, the particles of the medium move perpendicular to the direction of the wave propagation.
No, electromagnetic waves are not longitudinal in nature. They are transverse waves, meaning that the oscillations of the electric and magnetic fields are perpendicular to the direction of wave propagation.
Longitudinal electromagnetic waves have electric and magnetic fields that oscillate in the same direction as the wave's propagation. They can travel through mediums like air and solids, but not through vacuum. These waves have properties like frequency, wavelength, amplitude, and speed, and they exhibit characteristics such as polarization and interference.
Longitudinal waves have all the same properties as transverse waves: speed, frequency, wavelength, and amplitude
Both transverse and longitudinal waves are forms of mechanical waves that transfer energy through a medium. They both exhibit properties such as wavelength, frequency, and amplitude. Additionally, they can both undergo reflection, refraction, diffraction, and interference.
Light waves propagate through a medium by oscillating electric and magnetic fields. Longitudinal waves have vibrations parallel to the direction of propagation, while transverse waves have vibrations perpendicular to the direction of propagation.
No, compressions and rarefactions are characteristics of longitudinal waves, not transverse waves. In transverse waves, the particles of the medium move perpendicular to the direction of the wave propagation.
No, electromagnetic waves are not longitudinal in nature. They are transverse waves, meaning that the oscillations of the electric and magnetic fields are perpendicular to the direction of wave propagation.
Sound waves are longitudinal waves that is the the particles of the wave vibrate parallel to the direction of propagation of the wave. They cannot be polarized. Speed of sound in air is about 340 m/s.
Sound waves are longitudinal waves that is the the particles of the wave vibrate parallel to the direction of propagation of the wave. They cannot be polarized. Speed of sound in air is about 340 m/s.
Both transverse and longitudinal waves are types of mechanical waves that transfer energy through a medium. Additionally, they both exhibit characteristics such as wavelength and frequency that can be used to describe their properties.
speed,frequency, wavelength and amplitude
transverse; longitudinal.
polarization is not possible for longitudinal waves in electromagnetic waves electric and magnetic fields are perpendicular to each other and these two are perpendicular to direction of propagation so by using vertical or horizantal slits it is possible to polarize the electromagnetic waves where as in longitudinal waves the particles vibration is parllel to the direction of propagation so it is not possible to polarize the longitudinal waves