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  • ¿µ¹®
    ÇѱÛ
  • equation
    ¹æÁ¤½Ä
  • equation of regression
    ȸ±Í¹æÁ¤½Ä
  • Henderson-Hasselbalch equation
    Çî´õ½¼-Çϼ¿¹ßÅ©¹æÁ¤½Ä
  • kinetic
    ¿îµ¿-
  • kinetic center
    ¿îµ¿ÁßÃß
  • kinetic energy
    ¿îµ¿¿¡³ÊÁö
  • kinetic tremor
    Ȱµ¿¶³¸²
  • kinetic visual field
    µ¿Àû½Ã¾ß
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  • ¿µ¹®
    ÇѱÛ
  • equation
    ¹æÁ¤½Ä
  • kinetic
    ¿îµ¿-
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  • ¿µ¹®
    ÇѱÛ
  • kinetic center
    ¿îµ¿ÁßÃß
  • kinetic energy
    ¿îµ¿¿¡³ÊÁö
  • kinetic visual field
    µ¿Àû½Ã¾ß
  • kinetic
    ¿îµ¿-
  • kinetic tremor
    (¢¡action tremor) Ȱµ¿¶³¸²
  • allometric equation
    »ó´ë¼ºÀ广Á¤½Ä
  • chord conductance equation
    Æò±ÕÀüµµ¹æÁ¤½Ä
  • constant field equation
    Á¤ÀüÀ广Á¤½Ä
  • diffusion equation
    È®»êµî½Ä
  • equation
    ¹æÁ¤½Ä
  • equation of regression
    ȸ±Í¹æÁ¤½Ä
  • fractionation equation
    ºÐÇÒµî½Ä
  • indefinite equation
    ºÎÁ¤¹æÁ¤½Ä
  • ionic equation
    À̿½Ä
  • linear equation
    ÀÏÂ÷¹æÁ¤½Ä
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  • ¿µ¹®
    ÇѱÛ
  • Bloch equation Bloch
    µî½Ä
  • Fick equation
    ÇȹæÁ¤½Ä
  • Goldman constant-field equation
    °ñµå¸¸ Á¤Àü·ù(ïÒï³×µ) ½Ä
  • Goldman-Hogkin-Katz equation
    °ñµå¸¸-È£Ã÷Ų-Ä«Ã÷ ½Ä(ãÕ)
  • Hardy-Weinberg equation
    Çϵð-¿ÍÀιö±× ¹æÁ¤½Ä
  • Henderson Hasselbach equation
    Çî´õ½¼-Çϼ¿¹ÙÇϹæÁ¤½Ä.
  • Henderson-Hasselbalch equation
    Çî´õ½¼-Çϼ¿¹ÙÇÏ ¹æÁ¤½Ä
  • Larmor equation
    ¶ó¸ð (Larmor) µî½Ä(¹æÁ¤½Ä)
  • Michaelis-Menten equation
    ¹ÌÇÏ¿¤¸®½º-¸àÅÙ ½Ä
  • Nernst equation
    ³×¸¥½ºÆ®¹æÁ¤½Ä
  • Rayleigh equation
    ·¹ÀÏ·¹À̵î½Ä
  • alveolar equation
    ÆóÆ÷¹æÁ¤½Ä.
  • alveolar gas equation
    ÆóÆ÷±âü¹æÁ¤½Ä
  • alveolar gas equation
    ÆóÆ÷°¡½º¹æÁ¤½Ä.
  • fractionation equation
    ºÐÇÒ°ø½Ä
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  • ¿µ¹®
    ÇѱÛ
  • kinetic
    ¿îµ¿(¼º)(ê¡ÔÑàõ).
  • kinetic apraxia
    ¿îµ¿½ÇÁ¶(Áõ)(¡­ã÷ðàñø).
  • kinetic ataxia
    ¿îµ¿¼º ½ÇÇàÁõ(¡­ã÷ú¼ñø).
  • kinetic center
    ¿îµ¿ÁßÃß(¡­ñéõÒ).
  • kinetic energy
    ¿îµ¿¿¡³ÊÁö
  • kinetic energy
    ¿îµ¿(ê¡ÔÑ)¿¡³ÊÁö.
  • kinetic perimetry
    µ¿Àû½Ã¾ßÃøÁ¤(ÔÑîÜãÊå¯ö´ïÒ).
  • kinetic stereoscope
    µ¿ÀûÀÔü°æ
  • kinetic system
    ¿îµ¿°è.
  • kinetic tremor
    ¿îµ¿¼º ¶³¸².
  • kinetic unit
    ¼Óµ¿¼º ´ÜÀ§(áÜÔÑàõÓ¤êÈ).
  • kinetic visual field
    µ¿Àû½Ã¾ß
  • limb kinetic apraxia
    Áö¿îµ¿¼º ½ÇÇàÁõ(ò¶ê¡ÔÑàõã÷ú¼ñø).
  • allometric equation
    ÀÌ»óÁøÈ­¹æÁ¤½Ä(ì¶ßÈòäûùÛ°ïïãÒ), »ó´ë¼ºÀ广Á¤½Ä.
  • alveolar equation
    ÆóÆ÷¹æÁ¤½Ä.
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  • ¿µ¹®
    ÇѱÛ
  • kinetic equation
    ¹ÝÀÀ¼Óµµ ¹æÁ¤½Ä(ÚãëëáÜÓøÛ°ïïãÒ)
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  • ¿µ¹®
    ÇѱÛ
  • kinetic advantage
    Èí¼ö¼Óµµ ÀÌÁ¡(ýåâ¥áÜÓø××ïÇ)
  • kinetic analysis
    ¹ÝÀÀ¼ÓµµºÐ¼®(ÚãëëáÜÓøÝÂà°)
  • kinetic assay
    ¿ªµ¿(æ³ÔÑ)¾Æ½êÀÌ
  • kinetic coefficient
    ¹ÝÀÀ¼Óµµ°è¼ö(ÚãëëáÜÓøÌõâ¦)
  • kinetic constant
    ¹ÝÀÀ¼Óµµ»ó¼ö(ÚãëëáÜÓøßÈâ¦)
  • kinetic energy correction
    À¯µ¿(×µÔÑ) ¿¡³ÊÁö º¸Á¤(ÜÍïá)
  • kinetic isolation
    ¹ÝÀÀµ¶¸³(ÚãëëԼء)
  • kinetic isotope effect
    ¹ÝÀÀ¼Óµµ(ÚãëëáÜÓø) µ¿À§¿ø¼ÒÈ¿°ú(ÔÒêÈêªáÈüùÍý)
  • kinetic law
    ¿ªÇйýÄ¢(ÕôùÊÛööÎ)
  • Kinetic pK
    ¿ªÇÐÀû(ÕôùÊîÜ) pK
  • kinetic proofreading
    ¹ÝÀÀ(Úãëë) ÇÁ·çÇÁ¸®µù
  • Adair equation
    ¾Æµ¥¾î °ø½Ä(ÍëãÒ)
  • Arrenius equation
    ¾Æ·¹´Ï¿ì½º ¹æÁ¤½Ä(Û°ïïãÒ)
  • conservation equation
    º¸Á¸ ¹æÁ¤½Ä(ÜÁðíÛ°ïïãÒ)
  • distribution equation
    ºÐÆ÷ ¹æÁ¤½Ä(ÝÂøÖÛ°ïïãÒ)
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  • ¿µ¹®
    ÇѱÛ
  • kinetic
    ¿îµ¿¼º
  • Bloch equation
    Bloch µî½Ä
  • diffusion equation
    È®»êµî½Ä
  • Larmor equation
    ¶ó¸ðµî½Ä
  • regression equation
    ȸ±Í¹æÁ¤½Ä
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Eq, eq equation; equivalent
GEE generalized estimating equation
SBM Solomon-Bloembergen-Morgan [equation]
VSIE volume surface integral equation [method]
OKN Opto-Kinetic Nystagmus
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GEE Generalized Estimating Equation
KIE Kinetic isotope effects
OKP Oculo-kinetic perimetry
ODE ordinary differential equation
SEM Structural Equation Modeling
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • cakcui-kinetic
    Ä®½· µ¿¿ø¼ºÀÇ
  • kinetic apraxia
    ¿îµ¿ ½ÇÁ¶Áõ, ¿îµ¿ ½ÇÁ¶
  • kinetic center
    ¿îµ¿ ÁßÃß
  • kinetic perimetry
    µ¿Àû ½Ã¾ß ÃøÁ¤
  • kinetic system
    ¿îµ¿°è
    ³ú, °©»ó¼±, ºÎ½Å, °£, ÃéÀå µîÀÇ ±â°ü°èÅëÀ¸·Î, ÀáÀç·ÂÀ» ¿îµ¿°ú ¿­·Î º¯È­½ÃŰ´Â ±â´ÉÀ» ³ªÅ¸³½´Ù. ´Éµ¿Àû ¿îµ¿À» ÀÏÀ¸Å³ ¼ö ÀÖ´Â ½Å°æ±Ù°è.
  • kinetic unit
    ¼Óµ¿¼º ´ÜÀ§
  • limb kinetic apraxia
    Áö¿îµ¿¼º ½ÇÇàÁõ
  • allometric equation
    ÀÌ»óÁøÈ­ ¹æÁ¤½Ä
  • alveolar equation
    ÆóÆ÷ ¹æÁ¤½Ä
  • alveolar gas equation
    ÆóÆ÷ ±âü ¹æÁ¤½Ä
  • Bloch equation
    µî½Ä
  • chord conductance equation
    Æò±Õ Àüµµ ¹æÁ¤½Ä
  • constant field equation
    Á¤ÀüÀå ¹æÁ¤½Ä
  • equation of compatibility
    ¾ç¸³ Á¶°Ç
  • equation of motion
    ¿îµ¿ ¹æÁ¤½Ä
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
kinetic Pertaining to or producing motion.
<study> Kinetics: The study of reaction rates and the study of the relationship between force and mass.
(14 Oct 1997)
kinetic analyzer An instrument that measures the rate of change in a chemical substance; used mainly for enzyme measurement.
(05 Mar 2000)
kinetic ataxia Ataxia developing upon attempting to perform coordinated muscular movements.
Synonym: kinetic ataxia.
(05 Mar 2000)
kinetic energy <chemistry> Energy due to the motion of an object
(09 Jan 1998)
kinetic measurement Continuous or frequent monitoring of the readings in a chemical reaction to determine its rate.
(05 Mar 2000)
kinetic molecular theory <chemistry> This theory assumes that molecules must collide in order to react. The more collisions the more likely it is for a reaction to occur.
However, depending on the conditions, only a small fraction of the collisions are effective in producing a reaction. There are several constraints. In order for a reaction to occur, bonds initially are broken, which requires energy. This energy depends on the type of the reaction and comes from the kinetic energies that the molecules possess before the collision. It is called the activation energy. Increasing the temperature increases the kinetic energies and more collisions will occur. In adition, at a higher temperature a greater number of the reacting molecules might possess an energy equal to or greater than the activation energy. However the molecules must also collide in a specific orientation, called the steric factor in order for a reaction to occur.
A reaction will only be successful, if the collision has enough energy to be either equal to or greater than the activation energy and if the orientation of the collision allows for correct bond formation. These factors are in the Arrhenius equation: k = zp The rate constant k is proportional to the Arrhenius factor A. A is the product of the collision frequency z, and the steric factor p. The fraction of collisions with sufficient energy to produce a reaction are in the term of the equation.
(09 Jan 1998)
kinetic perimetry Mapping of the visual field by using a moving rather than a static test object.
(05 Mar 2000)
kinetic strabismus Strabismus due to spasm of an extraocular muscle.
(05 Mar 2000)
kinetic system A term proposed by G.W. Crile to denote the chain of organs through which latent energy is transformed into motion and heat: it includes the brain, the thyroid, the adrenals, the liver, the pancreas, and the muscles, that part of the neuromuscular system whereby active movements are effected; distinguished from the static system.
(05 Mar 2000)
kinetic tremor <neurology> A tremor which arises or which is intensified when a voluntary, coordinated movement is attempted.
(18 Nov 1997)
limb-kinetic apraxia An inability to make movements or to use objects for the purpose intended.
Synonym: cortical apraxia, innervation apraxia, limb-kinetic apraxia.
(05 Mar 2000)
alveolar gas equation The equation defining the steady state relation of the alveolar oxygen pressure to the barometric pressure, inspired gas composition, alveolar carbon dioxide pressure, and respiratory exchange ratio; the equation is used in various forms depending upon which simplifying assumptions are acceptable for different applications.
(05 Mar 2000)
arrhenius equation This equation expresses the logarithmic relationship between the rate constant of a reaction and the reciprocal of the temperature (expressed in K).
(09 Oct 1997)
Bohr's equation An equation to calculate the respiratory dead space from the fact that gas expired from the lungs is a mixture of gas from the dead space and gas from the alveoli, i.e., the dead space volume divided by the tidal volume equals the difference between alveolar and mixed expired gas composition, divided by the difference between alveolar and inspired gas composition; gas composition can be expressed in any consistent units of concentration or partial pressure of oxygen or carbon dioxide.
(05 Mar 2000)
boltzmann equation <radiobiology> Fundamental equation in kinetic theory which describes the evolution of the distribution function. (See also Vlasov equation.) The actual equation is given in most texts covering plasma kinetic theory.
(09 Oct 1997)
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    ÇѱÛ
  • kinetic
    ¿îµ¿ÀÇ
  • kinetic
    ¿îµ¿ÀÇ(¿¡ ÀÇÇÑ);Ȱµ¿ÀÌ ÀÖ´Â
  • kinetic art
    ¿òÁ÷ÀÌ´Â ¿¹¼ú 6
  • kinetic energy
    ¿îµ¿ ¿¡³ÊÁö 
  • equation
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  • differential equation
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  • personal equation
    °³ÀÎÂ÷
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