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Electromagnet Electromagnetic radiation

From the above, it should be clear that a photon is a "force-carrier" while an electron is a "matter-constituent". The notion of peirticles as mediators of force in nature has provided a framework for testing and developing the Standard Model and the associated "Big-Bang" theory of the formation of the Universe. It has also been important for the exploration in depth of many other important questions about the physical world. The most familiar interaction is Electromagnetism. Electromagnetic radiation in its... [Pg.350]

X-ray Electromagnetic radiation of wave length c. 1 k. X-rays are generated in various ways, including the bombarding of solids with electrons, when they are emitted as a result of electron transitions in the inner orbits of the atoms bombarded. Each element has a characteristic X-ray spectrum. [Pg.429]

The sample should be liquid or in solution. It is pumped and nebulized in an argon atmosphere, then sent through a plasma torch that is, in an environment where the material is strongly ionized resulting from the electromagnetic radiation produced by an induction coil. Refer to the schematic diagram in Figure 2.8. [Pg.37]

In this section we consider electromagnetic dispersion forces between macroscopic objects. There are two approaches to this problem in the first, microscopic model, one assumes pairwise additivity of the dispersion attraction between molecules from Eq. VI-15. This is best for surfaces that are near one another. The macroscopic approach considers the objects as continuous media having a dielectric response to electromagnetic radiation that can be measured through spectroscopic evaluation of the material. In this analysis, the retardation of the electromagnetic response from surfaces that are not in close proximity can be addressed. A more detailed derivation of these expressions is given in references such as the treatise by Russel et al. [3] here we limit ourselves to a brief physical description of the phenomenon. [Pg.232]

Figure Bl.2.1. Schematic representation of the dependence of the dipole moment on the vibrational coordinate for a heteronuclear diatomic molecule. It can couple with electromagnetic radiation of the same frequency as the vibration, but at other frequencies the interaction will average to zero. Figure Bl.2.1. Schematic representation of the dependence of the dipole moment on the vibrational coordinate for a heteronuclear diatomic molecule. It can couple with electromagnetic radiation of the same frequency as the vibration, but at other frequencies the interaction will average to zero.
As discussed in more detail elsewhere in this encyclopaedia, many optical spectroscopic methods have been developed over the last century for the characterization of bulk materials. In general, optical spectroscopies make use of the interaction of electromagnetic radiation with matter to extract molecular parameters from the substances being studied. The methods employed usually rely on the examination of the radiation absorbed. [Pg.1778]

A number of surface-sensitive spectroscopies rely only in part on photons. On the one hand, there are teclmiques where the sample is excited by electromagnetic radiation but where other particles ejected from the sample are used for the characterization of the surface (photons in electrons, ions or neutral atoms or moieties out). These include photoelectron spectroscopies (both x-ray- and UV-based) [89, 9Q and 91], photon stimulated desorption [92], and others. At the other end, a number of methods are based on a particles-in/photons-out set-up. These include inverse photoemission and ion- and electron-stimulated fluorescence [93, M]- All tirese teclmiques are discussed elsewhere in tliis encyclopaedia. [Pg.1795]

Non-polarized electromagnetic radiation, of course, comprises two perpendicular polarizations, which can change both in amplipide and in phase with respect to each other. If the two polarizations are in phase with each other, the resultant is just another linearly polarized beam, with the resultant polarization direction given by a simple vector addition of the... [Pg.1879]

The impulse can be due to sudden collision with particles or to exposure to electromagnetic radiation. The physical significance of tire fonn factoi n r transitions in atomic hydrogen,... [Pg.2025]

Poul Jorgensen [13] has been involved in developing such so-called response theories for perturbations that may be time dependent (e.g. as in the interaction of light s electromagnetic radiation). [Pg.2158]

Analysis of the electromagnetic radiation spectrum emanating from the star Sirius shows that = 260 nm. Estimate the surface temperature of Sirius. [Pg.9]

To get the frequency v in centimeters-, the nonstandard notation favored by spectioscopists, one divides the frequency in hertz by the speed of light in a vacuum, c = 2.998 x lO " cm s-, to obtain a reciprocal wavelength, in this case, 4120 cm-. This relationship arises because the speed of any running wave is its frequency times its wavelength, c = vX in the case of electromagnetic radiation. The Raman spectral line for the fundamental vibration of H2 is 4162 cm-. .., not a bad comparison for a simple model. [Pg.96]

Gaseous H CI has a strong absorption band centered at about X = 3.40 X 10 m in the infrared portion of the electromagnetic radiation spec-tmm. On the assumption that D bonds to Cl with the same str ength that H does, predict the frequency of vibration in Hz and rad of D CI. [Pg.130]

The electric field of electromagnetic radiation completes 4.00 x lO - " complete cycles in 1.00 s. What are the period and frequency of the oscillation, and what is its wavelength What is the frequency in units of cm ... [Pg.166]

The hydrogen atom attached to an alkane molecule vibrates along the bond axis at a frequency of about 3000 cm. What wavelength of electromagnetic radiation is resonant with this vibration What is the frequency in hertz What is the force constant of the C II bond if the alkane is taken to be a stationary mass because of its size and the H atom is assumed to execute simple harmonic motion ... [Pg.166]

To see how this result is used, consider the integral that arises in formulating the interaction of electromagnetic radiation with a molecule within the electric-dipole approximation ... [Pg.597]


See other pages where Electromagnet Electromagnetic radiation is mentioned: [Pg.533]    [Pg.508]    [Pg.150]    [Pg.151]    [Pg.177]    [Pg.181]    [Pg.186]    [Pg.262]    [Pg.288]    [Pg.337]    [Pg.368]    [Pg.425]    [Pg.914]    [Pg.230]    [Pg.14]    [Pg.158]    [Pg.408]    [Pg.719]    [Pg.956]    [Pg.1056]    [Pg.1061]    [Pg.1263]    [Pg.1364]    [Pg.1371]    [Pg.1385]    [Pg.1385]    [Pg.1385]    [Pg.1386]    [Pg.1387]    [Pg.1503]    [Pg.1547]    [Pg.1573]    [Pg.1879]    [Pg.1879]    [Pg.1879]    [Pg.195]    [Pg.135]    [Pg.11]   


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A Properties of Electromagnetic Radiation

Absorbance of Electromagnetic Radiation

Absorption of electromagnetic radiation

Absorption of electromagnetic radiation in infrared spectroscopy

Absorption of electromagnetic radiation in nuclear magnetic resonance spectroscopy

Alkali metals electromagnetic radiation

Atmosphere electromagnetic radiation

Atomic structure electromagnetic radiation

Atomic theory electromagnetic radiation

Attenuation, of electromagnetic radiation

Beam electromagnetic radiation

CONTENTS 1 Electromagnetic Radiation

Chemical sensitivity electromagnetic radiation

Classical waves electromagnetic radiation theory

Classification of Electromagnetic Radiation

Crystalline solids electromagnetic radiation

Delayed electromagnetic radiation

Detector for electromagnetic radiation

Detectors with Interaction of Electromagnetic Radiation

Diffraction of electromagnetic radiation

Elastic Scattering of Electromagnetic Radiation by Single Electron

Electric quadrupole Electromagnetic radiation

Electromagnetic Radiation and Toxic Exposure

Electromagnetic field radiation

Electromagnetic radiation

Electromagnetic radiation

Electromagnetic radiation Absorption spectroscopy. Atomic

Electromagnetic radiation Energy that

Electromagnetic radiation Lasers Light Microwave

Electromagnetic radiation Radiant

Electromagnetic radiation Radiant energy that exhibits wavelike behavior and

Electromagnetic radiation Radiant energy that exhibits wavelike behavior and travels

Electromagnetic radiation Radiant energy vacuum

Electromagnetic radiation Spectroscopy Ultraviolet

Electromagnetic radiation X-ray

Electromagnetic radiation absorption

Electromagnetic radiation amplitude

Electromagnetic radiation and atomic spectra

Electromagnetic radiation angstrom

Electromagnetic radiation blackbody

Electromagnetic radiation chemicals

Electromagnetic radiation classification

Electromagnetic radiation coherent

Electromagnetic radiation collimated

Electromagnetic radiation common wavelength units

Electromagnetic radiation constructive interference

Electromagnetic radiation defined

Electromagnetic radiation described

Electromagnetic radiation destructive interference

Electromagnetic radiation diffraction

Electromagnetic radiation dispersion

Electromagnetic radiation dual nature

Electromagnetic radiation electric field

Electromagnetic radiation electron transitions

Electromagnetic radiation emission

Electromagnetic radiation energy units

Electromagnetic radiation excited species

Electromagnetic radiation frequencies

Electromagnetic radiation from

Electromagnetic radiation from atmospheric gases

Electromagnetic radiation gamma rays

Electromagnetic radiation high energy electron interaction

Electromagnetic radiation hydrogen spectrum

Electromagnetic radiation incident

Electromagnetic radiation incoherent

Electromagnetic radiation infrared

Electromagnetic radiation infrared spectroscopy

Electromagnetic radiation interaction with matter

Electromagnetic radiation interactions with atoms/electrons

Electromagnetic radiation interference

Electromagnetic radiation introduction

Electromagnetic radiation irradiance

Electromagnetic radiation kinds

Electromagnetic radiation lifetime

Electromagnetic radiation light

Electromagnetic radiation magnetic field

Electromagnetic radiation molecular absorption

Electromagnetic radiation monochromatic

Electromagnetic radiation multipolarity

Electromagnetic radiation nature

Electromagnetic radiation nuclear magnetic resonance

Electromagnetic radiation particle properties

Electromagnetic radiation photoelectric effect

Electromagnetic radiation photoelectron spectroscopy

Electromagnetic radiation photometry

Electromagnetic radiation plane-polarized

Electromagnetic radiation polychromatic

Electromagnetic radiation pressure

Electromagnetic radiation quanta

Electromagnetic radiation quanta energy

Electromagnetic radiation quantization

Electromagnetic radiation quantum theory

Electromagnetic radiation radiant energy

Electromagnetic radiation radiant sources

Electromagnetic radiation radiometry

Electromagnetic radiation safety

Electromagnetic radiation selection rules

Electromagnetic radiation shield

Electromagnetic radiation sources

Electromagnetic radiation spectroscopy with

Electromagnetic radiation spectroscopy)

Electromagnetic radiation spectrum

Electromagnetic radiation speed

Electromagnetic radiation stretched transition

Electromagnetic radiation summary

Electromagnetic radiation thermodynamic properties

Electromagnetic radiation total absorbance

Electromagnetic radiation toxic exposure

Electromagnetic radiation transition rate

Electromagnetic radiation types

Electromagnetic radiation ultraviolet

Electromagnetic radiation visible

Electromagnetic radiation visible light

Electromagnetic radiation visible spectrum

Electromagnetic radiation wave nature

Electromagnetic radiation wave properties

Electromagnetic radiation wave theory

Electromagnetic radiation wave/particle duality

Electromagnetic radiation wavelengths

Electromagnetic radiation wavenumber

Electromagnetic radiation weapons

Electromagnetic radiation y-ray

Electromagnetic radiation, Maxwell

Electromagnetic radiation, Maxwell theory

Electromagnetic radiation, absorption wave lengths

Electromagnetic radiation, application

Electromagnetic radiation, atomic

Electromagnetic radiation, atomic energy levels

Electromagnetic radiation, characteristics

Electromagnetic radiation, classification bands

Electromagnetic radiation, effects

Electromagnetic radiation, energy

Electromagnetic radiation, energy wavelengths

Electromagnetic radiation, hazards

Electromagnetic radiation, interaction with

Electromagnetic radiation, interaction with molecules

Electromagnetic radiation, ionizing

Electromagnetic radiation, optical properties

Electromagnetic radiation, photochemistry

Electromagnetic radiation, properties

Electromagnetic spectrum radiation types

Electromagnetic theory of radiation

Electromagnetism radiation fields

Electron movement and electromagnetic radiation

Electron, Ion, and Electromagnetic Radiation Spectroscopies

Emission of Electromagnetic Radiation (Bremsstrahlung)

Energy of electromagnetic radiation

Energy, Frequency, Wavelength and Velocity of Electromagnetic Radiation

Frequency electromagnetic radiation bands

Frequency of electromagnetic radiation

Functional Electromagnetic Radiation

Gamma ray High-energy electromagnetic radiation

Gamma rays High-energy electromagnetic radiation emitted

Hazards of electromagnetic radiation

Hazards of electromagnetic radiation to ordnance

How does Electromagnetic Radiation Interact with Matter

Infrared radiation, electromagnetic energy

Infrared radiation, electromagnetic frequencies

Infrared radiation, electromagnetic spectrum

Infrared radiation, electromagnetic spectrum and

Infrared radiation, electromagnetic spectrum energy

Infrared radiation, electromagnetic spectrum frequencies

Infrared radiation, electromagnetic spectrum wavelengths

Infrared radiation, electromagnetic wavelengths

Intensity of electromagnetic radiation

Interaction between Electromagnetic Radiation and Matter

Interaction of Electromagnetic Radiation with Matter

Interaction of Electromagnetic Radiation with Molecules

Interaction of atomic electrons with electromagnetic radiation

Light as electromagnetic radiation

Long-wavelength electromagnetic radiation

Magnetic component, of electromagnetic radiation

Magnetic field, plane-polarized electromagnetic radiation

Matter, electromagnetic radiation

Maxwell’s theory of electromagnetic radiation

Nonionizing radiations electromagnetic radiation

Nuclear magnetic resonance spectroscopy electromagnetic radiation, absorption

Of electromagnetic radiation

Of electromagnetic radiation measurements

Origin of Radiation. Electromagnetic Waves

Oscillating electromagnetic radiation

Perturbations electromagnetic radiation

Photon A "particle" of electromagnetic radiation

Photons, electromagnetic radiation

Photons, of electromagnetic radiation

Physical chemistry electromagnetic radiation

Polarization of electromagnetic radiation

Principles of Molecular Spectroscopy Electromagnetic Radiation

Properties of Electromagnetic Radiation

Quanta, of electromagnetic radiation

Quantum Theory of Electromagnetic Radiation

Quantum physics electromagnetic radiation

Radiation electromagnetic waves

Radiation fields, electromagnetic topology

Radiation, beta electromagnetic

Radiation, electromagnetic density

Radiation, electromagnetic intensity

Radiation, electromagnetic interference phenomena

Radiation, electromagnetic nuclear

Radiation, electromagnetic phase

Radiation, electromagnetic polarization

Radiation, electromagnetic polarized

Radiation, electromagnetic reflections

Radiation, electromagnetic refraction

Radiation, electromagnetic resonance detection

Radiation, electromagnetic scattering

Radiation, electromagnetic spontaneous emission

Radiation, electromagnetic stimulated emission

Radiation-electromagnetic ultra-violet

Radio frequency electromagnetic radiation

Radiofrequency electromagnetic radiation

Reflection and Refraction of Electromagnetic Radiation at a Multiple-phase Boundary

Reflection and Refraction of Electromagnetic Radiation at a Two-phase Boundary

Regions of Electromagnetic Radiation

Sensitivity electromagnetic radiation

Solar radiation electromagnetic spectrum

Speed of electromagnetic radiation

Terms Associated with the Emission and Receipt of Electromagnetic Radiation

The Characteristics of Electromagnetic Radiation

The Electromagnetic Radiation Spectrum

The Interaction Between Electromagnetic Radiation and Matter

The Nature of Electromagnetic Radiation

The spectrum of electromagnetic radiation

Thermal radiation electromagnetic

Thermal radiation electromagnetic spectrum

Transmission of electromagnetic radiation

Transverse electromagnetic radiation

UV electromagnetic radiation

Velocity v, of electromagnetic radiation

Wave properties, of electromagnetic radiation

Wave theory, of electromagnetic radiation

Wavelength of electromagnetic radiation

Wavelengths electromagnetic radiation bands

Welding plastics -electromagnetic radiation

What Is Electromagnetic Radiation

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