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  • ¿µ¹®
    ÇѱÛ
  • magnetic resonance angiography
    ÀÚ±â°ø¸íÇ÷°üÃÔ¿µ(¼ú)
  • magnetic resonance functional neuroimaging
    ±â´ÉÀÚ±â°ø¸í³ú¿µ»ó
  • magnetic resonance image generation
    ÀÚ±â°ø¸í¿µ»ó»ý¼º
  • magnetic resonance imaging
    ÀÚ±â°ø¸í¿µ»ó
  • magnetic resonance mammography
    ÀÚ±â°ø¸íÀ¯¹æÃÔ¿µ(¼ú)
  • magnetic resonance myelography
    ÀÚ±â°ø¸íô¼öÃÔ¿µ(¼ú)
  • nuclear magnetic resonance
    ÇÙÀÚ±â°ø¸í
  • nuclear magnetic resonance spectroscopy
    ÇÙÀÚ±â°ø¸íºÐ±¤¹ý
  • nuclear paramagnetic resonance
    ÇÙ»óÀÚ¼º°ø¸í
  • off-resonance
    ÀÌÅ»°ø¸í
  • off-resonance signal
    ÀÌÅ»°ø¸í½ÅÈ£
  • offset-resonance pulse
    ¿ÀÇÁ¼Â°ø¸íÆÄ
  • osteal resonance
    »À°ø¸íÀ½
  • resistive magnetic resonance scanner
    ÀúÇ×ÀÚ±â°ø¸í½ºÄ³³Ê
  • resonance
    1. °ø¸í 2. °ø¸íÀ½
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  • ¿µ¹®
    ÇѱÛ
  • bandbox resonance
    Å«°ø¸íÀ½
  • cine magnetic resonance imaging
    ¿µÈ­ÀÚ±â°ø¸í¿µ»ó
  • continuous wave off-resonance
    ¿¬¼ÓÆÄÀÌÅ»°ø¸í
  • cough resonance
    ±âħ°ø¸íÀ½
  • resonance condition
    °ø¸íÁ¶°Ç
  • resonance effect
    °ø¸íÈ¿°ú
  • resonance error
    °ø¸íºÎÁ·µµ
  • resonance frequency
    °ø¸íÁøµ¿¼ö
  • magnetic resonance image generation
    ÀÚ±â°ø¸í¿µ»ó»ý¼º
  • high field magnetic resonance scanner
    °íÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • intermediate field magnetic resonance scanner
    ÁßµîÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • magnetic resonance imaging
    ÀÚ±â°ø¸í¿µ»ó
  • low field magnetic resonance scanner
    ÀúÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • magnetic resonance mammography
    ÀÚ±â°ø¸íÀ¯¹æÃÔ¿µ¼ú
  • magnetic resonance myelography
    ÀÚ±â°ø¸íô¼öÁ¶¿µ¼ú
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    ÇѱÛ
  • resonance chamber
    °ø¸íÇÔ(ÍìÙ°ùÞ), ¹ÝÇâÇÔ(ÚãúÂùÞ).
  • resonance condition
    °ø¸í Á¶°Ç
  • resonance disturbance
    °ø¸íÀå¾Ö(ÍìÙ° î¡äô).
  • resonance effect
    °ø¸íÈ¿°ú(ÍìÙ°üùÍý).
  • resonance error
    °ø¸íºÎÁ·µµ
  • resonance error
    °ø¸íºÎÁ·µµ(ÍìÙ°ÝÕðëöô).
  • resonance frequency
    °øÁøÁ֯ļö(ÍìòÉñ²÷ïâ¦), °ø¸íÁøµ¿¼ö(ÍìÙ°
  • resonance potential
    °ø¸íÆÛÅÙ¼È
  • resonance potential
    °ø¸íÆÛÅÙ¼È.
  • resonance radiation
    °ø¸íº¹»ç(ÍìÙ°ÜßÞÒ).
  • resonance sharpness
    ûÀ½°ø¸í
  • resonance sharpness
    ûÀ½°ø¸í(ôèëåÍìÙ°).
  • resonance structure
    °ø¸í±¸Á¶(Íìٰϰðã).
  • resonance theory
    °ø¸í¼³(ÍìÙ°æò).
  • resonance unit
    °ø¸í ´ÜÀ§
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  • energy well
    ¿¡³ÊÁö ¿ì¹°
  • free energy
    ÀÚÀ¯(í»ë¦) ¿¡³ÊÁö
  • free energy change
    ÀÚÀ¯(í»ë¦) ¿¡³ÊÁö º¯È­(ܨûù)
  • Gibbs free energy
    ±é½º ÀÚÀ¯(í»ë¦)¿¡³ÊÁö
  • Helmholtz free energy
    Ç︧ȦÃ÷ ÀÚÀ¯(í»ë¦) ¿¡³ÊÁö
  • high-energy bond
    °í(ÍÔ)¿¡³ÊÁö °áÇÕ(Ì¿ùê)
  • high-energy compound
    °í(ÍÔ)¿¡³ÊÁö È­ÇÕ¹°(ûùùêÚª)
  • high-energy ion scattering
    °í(ÍÔ)¿¡³ÊÁö À̿»ê¶õ(ߤկ)
  • high-energy phosphate donor
    °í(ÍÔ)¿¡³ÊÁö ÀÎ»ê°ø¿©ÀÚ(×òß«Íêæ¨í­)
  • internal energy
    ³»ºÎ(Үݻ)¿¡³ÊÁö
  • ionization energy
    ÀÌ¿ÂÈ­(ûù) ¿¡³ÊÁö
  • ionizing energy
    ÀÌ¿ÂÈ­(ûù) ¿¡³ÊÁö
  • kinetic energy correction
    À¯µ¿(×µÔÑ) ¿¡³ÊÁö º¸Á¤(ÜÍïá)
  • linear energy transfer
    ¼±Çü(àÊû¡) ¿¡³ÊÁöÀüÀÌ(ï®ì¹)
  • low-energy compound
    Àú(î¸)¿¡³ÊÁöÈ­ÇÕ¹°(ûùùêÚª)
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fMRI functional magnetic resonance imaging
GMRI gated magnetic resonance imaging
ICR [distance between] iliac crests; Institute for Cancer Research; Institute for Cancer Research [mouse...
INDOR internuclear double resonance
IRC inspiratory reserve capacity; instantaneous resonance curve; International Red Cross; International ...
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DER Defibrillation energy requirements
DOE Department of Energy
DE Digestible energy
DEXA Dual Energy X Ray Absorptiometry
DXA Dual Energy X-ray Absorptiometry
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  • lattice energy
    °ÝÀÚ ¿¡³ÊÁö
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  • linear energy transfer
    ¼± ¿¡³ÊÁö ºÎ¿©
  • nuclear energy
    ÇÙ ¿¡³ÊÁö
  • potential energy
    À§Ä¡ ¿¡³ÊÁö
  • pulse energy
    ÆÞ½º ¿¡³ÊÁö
  • specific energy of sense
    Ư¼ö °¨°¢ ¿¡³ÊÁö
  • strain energy
    º¯Çü ¿¡³ÊÁö
    ÇÏÁßÀÌ Àç·á¸¦ º¯Çü½ÃŰ´Â ÀÏ.
  • thermal energy
    ¿­ ¿¡³ÊÁö
  • threshold energy
    ¹®ÅÎ ¿¡³ÊÁö, ¿ªÄ¡ ¿¡³ÊÁö
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activation energy <chemistry> The amount of energy (expressed in joules) that is needed to convert all the molecules in one mole of a reacting substance from a ground state to the transition state.
(06 May 1997)
binding energy <chemistry, radiobiology> The binding energy of a nucleus is the minimum energy required to dissociate it into its component neutrons and protons. Neutron or proton binding energies are those required to remove a neutron or proton, respectively, from a nucleus. Electron binding energy is that required to remove an electron from an atom or a molecule.
(16 Dec 1997)
bioelectric energy sources Implantable devices which convert biological energy (chemical energy of the metabolism of continuously regenerating body fluids or mechanical energy of periodic movements) to electrical energy. The sources include biogalvanic cells, biofuel cells, and ionic concentration cells.
(12 Dec 1998)
biomass energy See Bioenergy.
(05 Dec 1998)
bond dissociation energy This is the energy needed to break the bonds between two linked atoms.
(09 Oct 1997)
bond energy The energy needed to break a molecular bond.
(09 Oct 1997)
radiant energy Energy contained in light rays or any other form of radiation.
(05 Mar 2000)
radiography, dual-energy scanned projection A method of producing a high-quality scan by digitizing and subtracting the images produced by high- and low-energy X-rays.
(12 Dec 1998)
radiotherapy, high-energy Radiotherapy using high-energy (megavolt or higher) ionizing radiation. Types of radiation include gamma rays, produced by a radioisotope within a teletherapy unit; X-rays, electrons, protons, alpha particles (helium ions) and heavy charged ions, produced by particle acceleration; and neutrons and pi-mesons (pions), produced as secondary particles following bombardment of a target with a primary particle.
(12 Dec 1998)
Parallel Electron Energy Loss Spectroscopy <technique> Electron energy loss spectroscopy analyses the inelastically scattered electrons present in the beam after it has been transmitted through the sample. An electron energy loss spectrum typically consists of a monatomic decreasing background on which are superimposed a number of peaks. Each peak is characteristic of the scattering process that has occurred in the sample. The peaks can be used to obtain information about the chemical composition and electronic structure of the sample. Electron energy loss spectra are acquired typically in a magnetic sector spectrometer located under the camera chamber of the transmission electron microscope. Spatial resolution is typically limited by the minimum probe diameter of the microscope. Electron energy loss spectroscopy tends to be complimentary to EDS in that it can be used to analyse very thin samples of low Z materials.
Acronym: PEELS
(05 Aug 1998)
geothermal energy Energy derived from the natural heat of the Earth contained in hot rocks, hot water, hot brines or steam.
(05 Dec 1998)
mass energy absorption coefficient <physics> The mass energy absorption coefficient, uen/p of a material for uncharged ionising particles is the product of the mass energy transfer coefficient, utr/p and (1 - g) where g is the fraction of the energy of secondary charged particles that is lost to bremsstrahlung in the material.
(16 Dec 1997)
Gibbs energy of activation The Gibbs energy that must be added to that already possessed by a molecule or molecules in order to initiate a reaction.
(05 Mar 2000)
gibbs free energy The total amount of energy which is either used up or released during a chemical reaction. Gibbs free energy (delta G) = (delta H) - t (delta s): where (delta H) is the change in enthalpy, calculated by adding up the amount of energy released or used up to break or form chemical bonds during the reaction, t is the temperature at which the reaction took place, and (delta S) is the change in entropy, or amount of disorder, that occurs in the molecules involved during the reaction.
(09 Oct 1997)
renewable energy resource <ecology> An energy resource replenished continuously or that is replaced after use through natural means. Sustainable energy.
Renewable energy resources include bioenergy, solar energy, wind energy, geothermal power, and hydropower.
(25 Jun 1999)
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