parametric resonance - перевод на русский
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parametric resonance - перевод на русский

HARMONIC OSCILLATOR WHOSE PARAMETERS OSCILLATE IN TIME
Parametric resonance; Parametric amplifier; Parametric oscillation; Parametric generator
  • One of the first varactor parametric amplifiers, invented at [[Bell Labs]] around 1958. This 4 stage amplifier achieved 10 dB gain at 400 MHz. Parametric amplifiers are used in applications requiring extremely low noise.
Найдено результатов: 167
parametric resonance         

математика

параметрический резонанс

parametric oscillator         

общая лексика

параметрический генератор

parametric amplifier         

электроника

усилитель параметрический

electron spin resonance         
  • ''g'' strain]]).
  • The field oscillates between B<sub>1</sub> and B<sub>2</sub> due to the superimposed modulation field at 100&nbsp;kHz. This causes the absorption intensity to oscillate between I<sub>1</sub> and I<sub>2</sub>. The larger the difference the larger the intensity detected by the detector tuned to 100&nbsp;kHz (note this can be negative or even 0). As the difference between the two intensities is detected the first derivative of the absorption is detected.
  • center
  • The shape of a powder-pattern EPR spectrum changes according to the distribution of the <math>g</math> matrix principal values
  • center
  • STM]] in the [[Center for Quantum Nanoscience]] is one of the first STMs globally to measure electron spin resonance on single atoms.
  • upright=2
  • Simulated EPR spectra of the methyl and methoxymethyl radicals
  • 3D model of a typical X-band CW-EPR spectrometer
TECHNIQUE TO STUDY MATERIALS WITH UNPAIRED ELECTRONS
Electron spin resonance spectroscopy; Electron spin resonance; Electron Paramagnetic Resonance; ESR spectrum; Electron-spin resonance; Electron Spin Resonance; Electron paramagnetic resonance spectroscopy; Immobilized enzyme electron spin resonance; EPR spectroscopy; ESR spectroscopy; Hyperfine coupling constant; Immobilized enzyme ESR

[i'lektrɔnspinrezənəns]

общая лексика

электронный спиновый резонанс

физика

электронный парамагнитный резонанс

ЭПР

nuclear quadrupole resonance         
CHEMICAL ANALYSIS TECHNIQUE
NQR; Quadrupole resonance; Nuclear Quadrupole Resonance; Nuclear quadrapole resonance; Nuclear quadrupole moment
[физ.] резонанс квадрупольный ядерный
NMR imaging         
  • A mobile MRI unit visiting Glebefields Health Centre, [[Tipton]], England
  • Motion artifact (T1 coronal study of cervical vertebrae)<ref name="ErasmusHurter2004"/>
  • Schematic of construction of a cylindrical superconducting MR scanner
  • MR angiogram in congenital heart disease
  • Real-time MRI of a [[human heart]] at a resolution of 50&nbsp;ms
  • Patient being positioned for MR study of the head and abdomen
  • PD-weighted]] MRI scans
  • Effects of TR and TE on MR signal
  • MRI diffusion tensor imaging of [[white matter]] tracts
NON-DESTRUCTIVE TECHNIQUE FOR IMAGING INTERNAL STRUCTURES OF OBJECTS OR ORGANISMS
MRI; Magnetic Resonance Imaging; MRI scan; 1H-nuclear magnetic resonance spectroscopic imaging; NMR imaging; Magnetic resonance tomography; MRIs; MRI body scanner; MRI's; T2 (MRI); Contrast MRI; Mri; Zeugmatography; Mri scan; Nuclear scanning; Magnetic resonance image; MRI Scanner; MRI exam; Nuclear magnetic resonance imaging; Unsolved problems in diagnostic imaging; Open MRI; Magnetic Resonance Image; MRI scans; MRI-screen; Nuclear Magnetic Resonance Imaging; Magnetic resonance Imaging; EU Physical Agents (Electromagnetic Fields) Directive; T2 MRI; T2 weighted imaging; T2-weighted imaging; T2-weighted MRI; MRI machine; Magnetic resonance topography; MR scanning; Magnetic Resonance Tomography; T2*-weighted; Magnetic resonance urography; Magnetice resonance imaging; 3 Tesla MRI; 3-Tesla MRI; 3T MRI; 3 T MRI; 3-T MRI; Magnetic resonance images; Magnetic-resonance imaging; Proton density MRI; Spectral presaturation with inversion recovery; T2 weighted; Clinical MRI; Clinical NMRI; Clinical magnetic resonance imaging; T1-weighted; T2-weighted; Magnet resonance imaging

общая лексика

ядерно-магнитно-резонансная томография

ЯМР-томография

MRI         
  • A mobile MRI unit visiting Glebefields Health Centre, [[Tipton]], England
  • Motion artifact (T1 coronal study of cervical vertebrae)<ref name="ErasmusHurter2004"/>
  • Schematic of construction of a cylindrical superconducting MR scanner
  • MR angiogram in congenital heart disease
  • Real-time MRI of a [[human heart]] at a resolution of 50&nbsp;ms
  • Patient being positioned for MR study of the head and abdomen
  • PD-weighted]] MRI scans
  • Effects of TR and TE on MR signal
  • MRI diffusion tensor imaging of [[white matter]] tracts
NON-DESTRUCTIVE TECHNIQUE FOR IMAGING INTERNAL STRUCTURES OF OBJECTS OR ORGANISMS
MRI; Magnetic Resonance Imaging; MRI scan; 1H-nuclear magnetic resonance spectroscopic imaging; NMR imaging; Magnetic resonance tomography; MRIs; MRI body scanner; MRI's; T2 (MRI); Contrast MRI; Mri; Zeugmatography; Mri scan; Nuclear scanning; Magnetic resonance image; MRI Scanner; MRI exam; Nuclear magnetic resonance imaging; Unsolved problems in diagnostic imaging; Open MRI; Magnetic Resonance Image; MRI scans; MRI-screen; Nuclear Magnetic Resonance Imaging; Magnetic resonance Imaging; EU Physical Agents (Electromagnetic Fields) Directive; T2 MRI; T2 weighted imaging; T2-weighted imaging; T2-weighted MRI; MRI machine; Magnetic resonance topography; MR scanning; Magnetic Resonance Tomography; T2*-weighted; Magnetic resonance urography; Magnetice resonance imaging; 3 Tesla MRI; 3-Tesla MRI; 3T MRI; 3 T MRI; 3-T MRI; Magnetic resonance images; Magnetic-resonance imaging; Proton density MRI; Spectral presaturation with inversion recovery; T2 weighted; Clinical MRI; Clinical NMRI; Clinical magnetic resonance imaging; T1-weighted; T2-weighted; Magnet resonance imaging

медицина

МР-интроскопия

МР-томография

магнитный резонанс

ядерный магнитный резонанс

магнитная резонансная (магнитно-резонансная) томография

ядерно-магнитно-резонансная томография

ядерно-спиновая томография

ЯМР-интроскопия

ЯМР-томография

magnetic resonance image         
  • A mobile MRI unit visiting Glebefields Health Centre, [[Tipton]], England
  • Motion artifact (T1 coronal study of cervical vertebrae)<ref name="ErasmusHurter2004"/>
  • Schematic of construction of a cylindrical superconducting MR scanner
  • MR angiogram in congenital heart disease
  • Real-time MRI of a [[human heart]] at a resolution of 50&nbsp;ms
  • Patient being positioned for MR study of the head and abdomen
  • PD-weighted]] MRI scans
  • Effects of TR and TE on MR signal
  • MRI diffusion tensor imaging of [[white matter]] tracts
NON-DESTRUCTIVE TECHNIQUE FOR IMAGING INTERNAL STRUCTURES OF OBJECTS OR ORGANISMS
MRI; Magnetic Resonance Imaging; MRI scan; 1H-nuclear magnetic resonance spectroscopic imaging; NMR imaging; Magnetic resonance tomography; MRIs; MRI body scanner; MRI's; T2 (MRI); Contrast MRI; Mri; Zeugmatography; Mri scan; Nuclear scanning; Magnetic resonance image; MRI Scanner; MRI exam; Nuclear magnetic resonance imaging; Unsolved problems in diagnostic imaging; Open MRI; Magnetic Resonance Image; MRI scans; MRI-screen; Nuclear Magnetic Resonance Imaging; Magnetic resonance Imaging; EU Physical Agents (Electromagnetic Fields) Directive; T2 MRI; T2 weighted imaging; T2-weighted imaging; T2-weighted MRI; MRI machine; Magnetic resonance topography; MR scanning; Magnetic Resonance Tomography; T2*-weighted; Magnetic resonance urography; Magnetice resonance imaging; 3 Tesla MRI; 3-Tesla MRI; 3T MRI; 3 T MRI; 3-T MRI; Magnetic resonance images; Magnetic-resonance imaging; Proton density MRI; Spectral presaturation with inversion recovery; T2 weighted; Clinical MRI; Clinical NMRI; Clinical magnetic resonance imaging; T1-weighted; T2-weighted; Magnet resonance imaging

медицина

магнитно-резонансное изображение

МР-изображение

МР-срез

МР-томограмма

магнитно-резонансная томограмма

resonance effect         
  • symmetry]] group.
  • π molecular orbitals of benzene
  • Benzene delocalization
  • 800px
  • Contributing structures of the [[carbonate]] ion
  • Delocalization allyl cation
  • Delocalization ozone
  • Contributing structures of diborane.
  • Contributing structures of furan
  • The experimental geometry of the nitrite anion, NO<sub>2</sub><sup>–</sup>, shown on the right, is best rationalized by describing its structure as a resonance hybrid consisting of two major and equally important contributing forms.
CHEMISTRY TERM; WAY OF DESCRIBING BONDING IN MOLECULES OR IONS BY THE COMBINATION OF SEVERAL CONTRIBUTING STRUCTURES INTO A RESONANCE HYBRID IN VALENCE BOND THEORY
Resonance structures; Chemical resonance; Theory of Resonance; Mesomer; Resonance hybrid; Resonance structure; Resonance Hybrid; Resonance effect; Resonance stabilized; Resonance stabilization; Hybrid structure; Resonance energy; Delocalization energy; Resonance contribution; Resonance (molecular structure); Mesomerism; Molecular resonance; Resonance contributor; Resonance-stabilized; Canonical form (chemistry); Resonance form; Mesomeric structure
эффект резонанса (когда сдвиг в экономике одной страны приводит к сдвигу в экономике стран-партнёров)
mesomerism         
  • symmetry]] group.
  • π molecular orbitals of benzene
  • Benzene delocalization
  • 800px
  • Contributing structures of the [[carbonate]] ion
  • Delocalization allyl cation
  • Delocalization ozone
  • Contributing structures of diborane.
  • Contributing structures of furan
  • The experimental geometry of the nitrite anion, NO<sub>2</sub><sup>–</sup>, shown on the right, is best rationalized by describing its structure as a resonance hybrid consisting of two major and equally important contributing forms.
CHEMISTRY TERM; WAY OF DESCRIBING BONDING IN MOLECULES OR IONS BY THE COMBINATION OF SEVERAL CONTRIBUTING STRUCTURES INTO A RESONANCE HYBRID IN VALENCE BOND THEORY
Resonance structures; Chemical resonance; Theory of Resonance; Mesomer; Resonance hybrid; Resonance structure; Resonance Hybrid; Resonance effect; Resonance stabilized; Resonance stabilization; Hybrid structure; Resonance energy; Delocalization energy; Resonance contribution; Resonance (molecular structure); Mesomerism; Molecular resonance; Resonance contributor; Resonance-stabilized; Canonical form (chemistry); Resonance form; Mesomeric structure

[mesə(u)'meriz(ə)m]

общая лексика

мезомерия

существительное

химия

мезомерия

Определение

parametric polymorphism

Википедия

Parametric oscillator

A parametric oscillator is a driven harmonic oscillator in which the oscillations are driven by varying some parameter of the system at some frequency, typically different from the natural frequency of the oscillator. A simple example of a parametric oscillator is a child pumping a playground swing by periodically standing and squatting to increase the size of the swing's oscillations. The child's motions vary the moment of inertia of the swing as a pendulum. The "pump" motions of the child must be at twice the frequency of the swing's oscillations. Examples of parameters that may be varied are the oscillator's resonance frequency ω {\displaystyle \omega } and damping β {\displaystyle \beta } .

Parametric oscillators are used in several areas of physics. The classical varactor parametric oscillator consists of a semiconductor varactor diode connected to a resonant circuit or cavity resonator. It is driven by varying the diode's capacitance by applying a varying bias voltage. The circuit that varies the diode's capacitance is called the "pump" or "driver". In microwave electronics, waveguide/YAG-based parametric oscillators operate in the same fashion. Another important example is the optical parametric oscillator, which converts an input laser light wave into two output waves of lower frequency ( ω s , ω i {\displaystyle \omega _{s},\omega _{i}} ).

When operated at pump levels below oscillation, the parametric oscillator can amplify a signal, forming a parametric amplifier (paramp). Varactor parametric amplifiers were developed as low-noise amplifiers in the radio and microwave frequency range. The advantage of a parametric amplifier is that it has much lower noise than an amplifier based on a gain device like a transistor or vacuum tube. This is because in the parametric amplifier a reactance is varied instead of a (noise-producing) resistance. They are used in very low noise radio receivers in radio telescopes and spacecraft communication antennas.

Parametric resonance occurs in a mechanical system when a system is parametrically excited and oscillates at one of its resonant frequencies. Parametric excitation differs from forcing since the action appears as a time varying modification on a system parameter.

Как переводится parametric resonance на Русский язык