It is a very vague question, so i will throw some equations at you:
For relating energy of photon to the frequency:
E = hf = hc/L
h = planck's constant = 6.63 X 10^-34
f = frequency of wave (Hz)
L = wavelength (metres)
For relating luminosity (power) to surface area and temperature:
Luminosity = Energy/Time = K*A*T^4
where A = surface area, K is stefan-Boltzmann constant = 5.67 X 10^-8 and T = temperature (in Kelvin).
For relating Temp to wavelength, use Wien's Law:
Wavelength(in Nanometres) = (2.9 X 10^6)/Temperature (in Kelvin)
For intensity as a function of distance(d (in metres)) from source and power of source:
I = Power of source/(4 * Pi * d^2)
also
Intensity is proportional to amplitude squared.
Hope this helps in some way.
Radiant energy, also known as heat radiation, is a form of heat energy caused by electromagnetic waves. This energy is emitted in the form of photons and can travel through space. Examples include heat from the sun or a light bulb.
Energy is the ability to do work or produce heat. Electromagnetic (EM) waves are a form of energy that travel through space as a combination of electric and magnetic fields. This type of energy is emitted by a variety of sources, including the sun and electronic devices.
Electromagnetic waves carry energy in the form of electromagnetic radiation.
Electromagnetic waves carry energy in the form of electromagnetic radiation.
True. When vibrating electric charges emit energy, it creates electromagnetic waves that can propagate through space carrying energy. This is the fundamental principle behind the transmission of energy in the form of light, radio waves, and other electromagnetic radiation.
Radiant energy, also known as heat radiation, is a form of heat energy caused by electromagnetic waves. This energy is emitted in the form of photons and can travel through space. Examples include heat from the sun or a light bulb.
Energy is the ability to do work or produce heat. Electromagnetic (EM) waves are a form of energy that travel through space as a combination of electric and magnetic fields. This type of energy is emitted by a variety of sources, including the sun and electronic devices.
Answer: RadiationThis includes visible light, gamma rays, UV rays and other waves. They can be seen in the electromagnetic spectrum.
Electromagnetic waves carry energy in the form of electromagnetic radiation.
Electromagnetic waves carry energy in the form of electromagnetic radiation.
True. When vibrating electric charges emit energy, it creates electromagnetic waves that can propagate through space carrying energy. This is the fundamental principle behind the transmission of energy in the form of light, radio waves, and other electromagnetic radiation.
The waves emitted by the sun are called electromagnetic radiation, specifically in the form of light and heat. These waves travel through space and reach Earth, providing the energy needed for life and the planet's climate.
first of all electromagnetic waves are energy waves. and we call electromagnetic waves RADIATION.
It is emitted in waves.
Radiation loss refers to the energy emitted by an object in the form of electromagnetic waves, such as heat or light. This process is often associated with the cooling of an object as it releases energy in the form of radiation.
Radiant energy travels in the form of electromagnetic waves. These waves include visible light, ultraviolet light, infrared radiation, and other forms of electromagnetic radiation.
In Electromagnetic waves