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  • https://www.britannica.com/science/electromagnetic-radiation
    Electromagnetic radiation | Spectrum, Examples, & Types | Britannica
    Electromagnetic radiation, in classical physics, the flow of energy at the speed of light through free space or through a material medium in the form of the electric and magnetic fields that make up electromagnetic waves such as radio waves and visible light.
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    https://sco.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    Electromagnetic radiation (EM radiation or EMR) is ane o the fundamental phenomena o electromagnetism, behavin as waves propagatin through space, an an aa as photon pairticles travelin through space, carryin radiant energy. In a vacuum, it propagates at a characteristic speed, the speed o licht, normally in straicht lines. EMR is emitted an absorbed bi charged pairticles. As an electromagnetic wave, it haes baith electric an magnetic field components, which oscillate in a fixed relationship tae ane anither, perpendicular tae ilk ither an perpendicular tae the direction o energy an wave propagation.
    SCO.WIKIPEDIA.ORG
    https://simple.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    Electromagnetic waves are waves that contain an electric field and a magnetic field and carry energy. They travel at the speed of light (299,792,458 meters per second). Quantum mechanics developed from the study of electromagnetic waves. This field includes the study of both visible and invisible light. Visible light is the light one can see with normal eyesight in the colours of the rainbow. Invisible light is light one can't see with normal eyesight and includes more energetic and higher frequency waves, such as ultraviolet, x-rays and gamma rays. Waves with longer lengths, such as infrared, micro and radio waves, are also explored in the field of Quantum mechanics. Some types of electromagnetic radiation, such as X-rays, are ionizing radiation and can be harmful to your body. Ultraviolet rays are near the violet end of the light spectrum and infrared are near the red end. Infrared rays are used as heat rays and ultraviolet rays cause sunburn. The various parts of the electromagnetic spectrum differ in wavelength, frequency and quantum energy. Sound waves are not electromagnetic waves but waves of pressure in air, water or any other substance...
    SIMPLE.WIKIPEDIA.ORG
    https://hif.wikipedia.org/w/index.php?title=Electromagnetic_radiation&oldid=309425
    Electromagnetic radiation
    Electromagnetic radiation (EMR) uu wave hai jon ki light ke raftaar se chale hae. EMR me radio waves, microwaves, infrared, light, ultraviolet, X-rays aur gamma rays hae.
    HIF.WIKIPEDIA.ORG
    https://en.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    In physics, electromagnetic radiation (EMR) consists of waves of the electromagnetic (EM) field, which propagate through space and carry momentum and electromagnetic radiant energy. It includes radio waves, microwaves, infrared, (visible) light, ultraviolet, X-rays, and gamma rays. All of these waves form part of the electromagnetic spectrum.Classically, electromagnetic radiation consists of electromagnetic waves, which are synchronized oscillations of electric and magnetic fields. Depending on the frequency of oscillation, different wavelengths of electromagnetic spectrum are produced. In a vacuum, electromagnetic waves travel at the speed of light, commonly denoted c. In homogeneous, isotropic media, the oscillations of the two fields are perpendicular to each other and perpendicular to the direction of energy and wave propagation, forming a transverse wave. The position of an electromagnetic wave within the electromagnetic spectrum can be characterized by either its frequency of oscillation or its wavelength. Electromagnetic waves of different frequency are called by different names since they have different sources...
    EN.WIKIPEDIA.ORG
    https://en.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    In physics, electromagnetic radiation (EMR) consists of waves of the electromagnetic (EM) field, which propagate through space and carry momentum and electromagnetic radiant energy. It includes radio waves, microwaves, infrared, (visible) light, ultraviolet, X-rays, and gamma rays. All of these waves form part of the electromagnetic spectrum.Classically, electromagnetic radiation consists of electromagnetic waves, which are synchronized oscillations of electric and magnetic fields. Depending on the frequency of oscillation, different wavelengths of electromagnetic spectrum are produced. In a vacuum, electromagnetic waves travel at the speed of light, commonly denoted c. In homogeneous, isotropic media, the oscillations of the two fields are perpendicular to each other and perpendicular to the direction of energy and wave propagation, forming a transverse wave. The position of an electromagnetic wave within the electromagnetic spectrum can be characterized by either its frequency of oscillation or its wavelength. Electromagnetic waves of different frequency are called by different names since they have different sources...
    EN.WIKIPEDIA.ORG
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  • https://hif.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    Electromagnetic radiation (EMR) uu wave hai jon ki light ke raftaar se chale hae. EMR me radio waves, microwaves, infrared, light, ultraviolet, X-rays aur gamma rays hae.
    HIF.WIKIPEDIA.ORG
    Similar Pages
    https://sco.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    Electromagnetic radiation (EM radiation or EMR) is ane o the fundamental phenomena o electromagnetism, behavin as waves propagatin through space, an an aa as photon pairticles travelin through space, carryin radiant energy. In a vacuum, it propagates at a characteristic speed, the speed o licht, normally in straicht lines. EMR is emitted an absorbed bi charged pairticles. As an electromagnetic wave, it haes baith electric an magnetic field components, which oscillate in a fixed relationship tae ane anither, perpendicular tae ilk ither an perpendicular tae the direction o energy an wave propagation.
    SCO.WIKIPEDIA.ORG
    https://simple.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    Electromagnetic waves are waves that contain an electric field and a magnetic field and carry energy. They travel at the speed of light (299,792,458 meters per second). Quantum mechanics developed from the study of electromagnetic waves. This field includes the study of both visible and invisible light. Visible light is the light one can see with normal eyesight in the colours of the rainbow. Invisible light is light one can't see with normal eyesight and includes more energetic and higher frequency waves, such as ultraviolet, x-rays and gamma rays. Waves with longer lengths, such as infrared, micro and radio waves, are also explored in the field of Quantum mechanics. Some types of electromagnetic radiation, such as X-rays, are ionizing radiation and can be harmful to your body. Ultraviolet rays are near the violet end of the light spectrum and infrared are near the red end. Infrared rays are used as heat rays and ultraviolet rays cause sunburn. The various parts of the electromagnetic spectrum differ in wavelength, frequency and quantum energy. Sound waves are not electromagnetic waves but waves of pressure in air, water or any other substance...
    SIMPLE.WIKIPEDIA.ORG
    https://hif.wikipedia.org/w/index.php?title=Electromagnetic_radiation&oldid=309425
    Electromagnetic radiation
    Electromagnetic radiation (EMR) uu wave hai jon ki light ke raftaar se chale hae. EMR me radio waves, microwaves, infrared, light, ultraviolet, X-rays aur gamma rays hae.
    HIF.WIKIPEDIA.ORG
    https://en.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    In physics, electromagnetic radiation (EMR) consists of waves of the electromagnetic (EM) field, which propagate through space and carry momentum and electromagnetic radiant energy. It includes radio waves, microwaves, infrared, (visible) light, ultraviolet, X-rays, and gamma rays. All of these waves form part of the electromagnetic spectrum.Classically, electromagnetic radiation consists of electromagnetic waves, which are synchronized oscillations of electric and magnetic fields. Depending on the frequency of oscillation, different wavelengths of electromagnetic spectrum are produced. In a vacuum, electromagnetic waves travel at the speed of light, commonly denoted c. In homogeneous, isotropic media, the oscillations of the two fields are perpendicular to each other and perpendicular to the direction of energy and wave propagation, forming a transverse wave. The position of an electromagnetic wave within the electromagnetic spectrum can be characterized by either its frequency of oscillation or its wavelength. Electromagnetic waves of different frequency are called by different names since they have different sources...
    EN.WIKIPEDIA.ORG
    https://en.wikipedia.org/wiki/Electromagnetic_radiation
    Electromagnetic radiation
    In physics, electromagnetic radiation (EMR) consists of waves of the electromagnetic (EM) field, which propagate through space and carry momentum and electromagnetic radiant energy. It includes radio waves, microwaves, infrared, (visible) light, ultraviolet, X-rays, and gamma rays. All of these waves form part of the electromagnetic spectrum.Classically, electromagnetic radiation consists of electromagnetic waves, which are synchronized oscillations of electric and magnetic fields. Depending on the frequency of oscillation, different wavelengths of electromagnetic spectrum are produced. In a vacuum, electromagnetic waves travel at the speed of light, commonly denoted c. In homogeneous, isotropic media, the oscillations of the two fields are perpendicular to each other and perpendicular to the direction of energy and wave propagation, forming a transverse wave. The position of an electromagnetic wave within the electromagnetic spectrum can be characterized by either its frequency of oscillation or its wavelength. Electromagnetic waves of different frequency are called by different names since they have different sources...
    EN.WIKIPEDIA.ORG
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  • https://ia.wikipedia.org/wiki/Radiation_electromagnetic
    Radiation electromagnetic
    Le radiation electromagnetic (subinde abbreviava radiation E-M o REM) es un forma de energia que exhibi comportamento sinusoide quando illo propaga per spatio. Le radiation E-M ha ambe electric e magnetic componentes, que oscilla in phase perpedicular le un le altere, e al direction de propagation de energia. Le radiationes electromagnetic es classificate per le frequentia de lor unda. In ordine de accrescente frequentia e diminuente longitude undic, istos es undas radio, microundas, radiation infrarubie, lumine vidibile, radiation ultraviolette, radios X, e radios gamma (vide spectro electromagnetic). Le oculos de varie organismos sensa un parve e aliquanto variabile fenestra de frequentias appellate le spectro vidibile. Le photon es le quanto del interaction electromagnetic, le unitate basic de lumine e de omne altere formas de radiation electromagnetic, e es anque le portator pro le fortia electromagnetic. Le radiation electromagnetic porta energia e momento, que pote esser impartite al materia con le qual illo interage. Physica Theoria James Clerk...
    IA.WIKIPEDIA.ORG
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  • https://en.wikipedia.org/wiki/Radiation_pressure
    Radiation pressure
    Radiation pressure (also known as light pressure) is the mechanical pressure exerted upon any surface due to the exchange of momentum between the object and the electromagnetic field. This includes the momentum of light or electromagnetic radiation of any wavelength that is absorbed, reflected, or otherwise emitted (e.g. black-body radiation) by matter on any scale (from macroscopic objects to dust particles to gas molecules). The associated force is called the radiation pressure force, or sometimes just the force of light. The forces generated by radiation pressure are generally too small to be noticed under everyday circumstances; however, they are important in some physical processes and technologies. This particularly includes objects in outer space, where it is usually the main force acting on objects besides gravity, and where the net effect of a tiny force may have a large cumulative effect over long periods of time. For example, had the effects of the Sun's radiation pressure on the spacecraft of the Viking program been ignored, the spacecraft would have missed Mars' orbit by about 15,000 km (9,300 mi). Radiation pressure from starlight is crucial...
    EN.WIKIPEDIA.ORG
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  • Radiation is the emission of energy from a source in the form of waves or particles. It can be either non-ionizing radiation, such as radio waves, microwaves, and visible light, or ionizing radiation, such as X-rays and gamma rays. Radiation is used in a variety of different fields, including medical imaging, nuclear power production, and cancer treatments.

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  • Radiation therapy is a type of cancer treatment that uses high doses of radiation to kill cancer cells and shrink tumors. It works by damaging the DNA inside the cancer cells, which stops them from growing and dividing. Radiation therapy can be used alone or in combination with other treatments, such as chemotherapy or surgery. It is most commonly used to treat cancers of the brain, breast, lung, and prostate.

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  • Radiation is energy that travels in the form of waves or particles. It can be either natural or man-made. Examples of natural radiation include sunlight, cosmic rays, and radioactive decay from naturally occurring elements such as uranium and radon. Man-made radiation includes x-rays, gamma rays, and radiation from nuclear reactors. Radiation can be both beneficial and harmful to living organisms. The effects of radiation depend on the type of radiation, the amount of exposure, and the sensitivity of the organism exposed.

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  • Gamma radiation is a type of electromagnetic radiation emitted by the nucleus of an atom during radioactive decay. It has the highest energy and shortest wavelength of all types of electromagnetic radiation. Gamma rays are typically produced by nuclear decay, nuclear fusion, and certain types of high-energy particle collisions. Gamma radiation is highly penetrating and can travel long distances in air, water, or other materials. Gamma radiation can be harmful to humans if it is not properly shielded or monitored.

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  • Radiation pressure is the pressure exerted upon any surface exposed to electromagnetic radiation. It is the result of the transfer of momentum from the photons to the surface. Radiation pressure is dependent on the intensity of the radiation, and is inversely proportional to the distance from the source of radiation.

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  • Radiation burns are caused by exposure to high doses of ionizing radiation, such as from x-rays, gamma rays, or particle beams. They can range from mild reddening of the skin to severe blistering and ulceration. Treatment for radiation burns depends on the severity of the burn, but may include pain relievers, antibiotics, topical creams and ointments, dressings, and surgery.

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  • 'Miracle' drug Dostarlimab gives astonishing results as cancer vanishes from 12 people
    Can there be a radiation-free treatment for Cancer? Sascha Roth was diagnosed with rectal cancer and was planning to move ...
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