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  • ¿µ¹®
    ÇѱÛ
  • atomic mass unit
    ¿øÀÚÁú·®´ÜÀ§
  • achromatic mass
    ¹«»öµ¢ÀÌ, ºñ¿°»öµ¢ÀÌ
  • body mass index
    ½Åüºñ¸¸Áö¼ö, ½ÅüÁú·®Áö¼ö
  • cavitated mass
    ¼Óºóµ¢ÀÌ
  • cell mass
    ¼¼Æ÷µ¢ÀÌ, ¼¼Æ÷±«
  • charge to mass ratio
    ÀüÇÏ´ëÁú·®ºñ
  • effective mass
    À¯È¿Áú·®
  • electronic mass
    ÀüÀÚÁú·®
  • embryonic mass
    ¹è¾Æµ¢ÀÌ
  • echogenic mass
    ¸Þ¾Æ¸®¹ß»ýµ¢ÀÌ, ¿¡Äڹ߻ýÁ¾±«
  • equivalent mass
    µî°¡Áú·®
  • fat-free body mass
    Áö¹æÁ¦¿ÜüÁß
  • gravitational mass
    Áß·ÂÁú·®
  • inner cell mass
    ¼Ó¼¼Æ÷µ¢ÀÌ, ³»¼¼Æ÷±«
  • intermediate cell mass
    Áß°£¼¼Æ÷µ¢ÀÌ, Áß°£¼¼Æ÷±«
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  • ¿µ¹®
    ÇѱÛ
  • equation of regression
    ȸ±Í¹æÁ¤½Ä
  • fractionation equation
    ºÐÇÒµî½Ä
  • indefinite equation
    ºÎÁ¤¹æÁ¤½Ä
  • ionic equation
    À̿½Ä
  • linear equation
    ÀÏÂ÷¹æÁ¤½Ä
  • wave equation
    ÆÄµ¿¹æÁ¤½Ä
  • monaural loudness balance test
    ´ÜÀÌÀ½ÆòÇü°Ë»ç
  • achromatic mass
    ¹«»öµ¢ÀÌ
  • atomic mass
    ¿øÀÚÁú·®
  • atomic mass unit
    ¿øÀÚÁú·®´ÜÀ§
  • mass action
    Áú·®ÀÛ¿ë
  • mass radiography apparatus
    Áý´Ü¹æ»ç¼±ÃÔ¿µÀåÄ¡, Áý´Ü°ËÁø¿¢½º¼±ÀåÄ¡
  • blanket mass treatment
    Àü¿øÄ¡·á
  • body mass index
    ½Åüºñ¸¸Áö¼ö, ½ÅüÁú·®Áö¼ö
  • cavitated mass
    ¼Óºóµ¢ÀÌ
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  • ¿µ¹®
    ÇѱÛ
  • analytical balance
    ºÐ¼®ÃµÆò
  • glomerular tubular balance
    »ç±¸Ã¼¼¼´¢°ü(¡­á¬Òãί) ±ÕÇü(гû¬).
  • glomerular tubular balance
    »ç±¸Ã¼¼¼´¢°ü ±ÕÇü.
  • glomerulotubular balance
    »ç±¸Ã¼¼¼´¢°ü±ÕÇü(¡­á¬èñηгû¬).
  • heat balance
    ¿­ÆòÇü(æðøÁû¬).
  • physiological balance
    »ý¸®Àû ÆòÇü<±ÕÇü>.
  • positive balance
    ¾ç¼º¼öÁö.
  • positive nitrogen balance
    ¾ç¼ºÁú¼ÒÆòÇü.
  • prescription balance
    Á¶Á¦Àú¿ï, Á¶Á¦ÃµÄª (¡­ô¸öß).
  • 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.
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  • ¿µ¹®
    ÇѱÛ
  • exponential equation
    Áö¼ö¹æÁ¤½Ä.
  • fractionation equation
    ºÐÇÒ°ø½Ä
  • indefinite equation
    ºÎÁ¤¹æÁ¤½Ä.
  • ionic equation
    À̿½Ä(¡­ãÒ).
  • linear equation
    ÀÏÂ÷¹æÁ¤½Ä(ìéó­Û°ïïãÒ).
  • normal equation
    Á¤±Ô¹æÁ¤½Ä(ËøË»ËÑËøËà).
  • regression equation
    ȸ±Í¹æÁ¤½Ä(Ì·Ë´ ËÑËøËà).
  • shunt equation
    ¼ÇÆ®¹æÁ¤½Ä.
  • transcendental equation
    ÃÊ¿ù¹æÁ¤½Ä (¡­Û°ïïãÒ).
  • trigonometric equation
    »ï°¢¹æÁ¤½Ä (¡­Û°ïïãÒ).
  • wave equation
    ÆÄµ¿¹æÁ¤½Ä(÷îÔÑÛ°ïïãÒ).
  • acid-base balance=acid-base equilibrium
    »ê¿°±â ÆòÇü(¡­øÁû¬)
  • allergic balance
    ¾Ë·¹¸£±â(¼º) ±ÕÇü.
  • alternate binaural loudness balance test
    ¾çÀ̱³´ë(¼º) À½ÆòÇü°Ë»ç
  • analytical balance
    ºÐ¼®ÃµÆò.
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  • ¿µ¹®
    ÇѱÛ
  • Gibbs-Duhem equation
    ±é½º-µÎÇð ¹æÁ¤½Ä(Û°ïïãÒ)
  • Gibbs-Helmholtz equation
    ±é½º-Ç︧ȦÃ÷ ¹æÁ¤½Ä(Û°ïïãÒ)
  • Henderson-Hasselbalch equation
    Çî´õ½¼-Çϼ¿¹ßÅ© ¹æÁ¤½Ä(Û°ïïãÒ)
  • Henri equation
    ¾Ó¸® ¹æÁ¤½Ä(Û°ïïãÒ)
  • Henri-Michaelis-Menten equation
    ¾Ó¸®-¹Ì͏®½º-¸àÅÙ ¹æÁ¤½Ä(Û°ïïãÒ)
  • Hill equation
    Èú ¹æÁ¤½Ä(Û°ïïãÒ)
  • rate equation
    ¼Óµµ ¹æÁ¤½Ä(áÜÓøÛ°ïïãÒ)
  • kinetic equation
    ¹ÝÀÀ¼Óµµ ¹æÁ¤½Ä(ÚãëëáÜÓøÛ°ïïãÒ)
  • Lamm equation
    ¶÷¹æÁ¤½Ä(Û°ïïãÒ)
  • Michaelis-Menten-Briggs-Haldane equation
    ¹ÌŰ¿¤¸®½º-¸àÅÙ-ºê¸®±×-ÇÒÅ×ÀÎ ¹æÁ¤½Ä(Û°ïïãÒ)
  • Michaelis-Menten equation
    ¹ÌŰ¿¤¸®½º-¸àÅÙ ¹æÁ¤½Ä(Û°ïïãÒ)
  • Nernst equation
    ³×¸¥½ºÆ® ¹æÁ¤½Ä(Û°ïïãÒ)
  • phenomenological equation
    Çö»ó ¹æÁ¤½Ä(úÞßÚÛ°ïïãÒ)
  • Simha equation
    ½ÉÇÏ ¹æÁ¤½Ä(Û°ïïãÒ)
  • Staudinger equation
    ½ºÅ¸¿ìµù°Å ¹æÁ¤½Ä(Û°ïïãÒ)
KI ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 8 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
  • mass miniature roentgenography
    Áý´Ü°£Á¢X¼±ÃÔ¿µ¼ú
  • mass number
    Áú·®¼ö
  • mass radiography
    Áý´Ü¹æ»ç¼±ÃÔ¿µ¼ú
  • mass radiography apparatus
    Áý´Ü¹æ»ç¼±ÃÔ¿µÀåÄ¡
  • mass susceptibility
    Áú·®¹Î°¨µµ
  • mobile mass radiography stand
    À̵¿Çü Áý´Ü¹æ»ç¼±ÃÔ¿µ´ë
  • polypoid mass
    Æú¸³¾çÁ¾±«
  • sonolucent mass
    ÃÊÀ½ÆÄÅõ°ú¼ºÁ¾±«
KMLE ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
MMR mass miniature radiography; masseter muscle rigidity; maternal mortality rate; measles-mumps-rubella...
ABC absolute basophil count; absolute bone conduction; acalculous biliary colic; acid balance control; a...
ABLB alternate binaural loudness balance
AMLB alternate monoaural loudness balance
bal balance; balsam
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
GTB Glomerulotubular balance
NB Nitrogen Balance
EB energy balance
HLB hydrophile-lipophile balance
LV mass Left ventricular mass
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • balance condyle
    ÆòÇü °ú, ÆòÇü °úµÎ
  • calcium balance
    Ä®½· ÆòÇü
    ü³»ÀÇ Ä®½· ³óµµ°¡ ¾ÈÁ¤µÇ¾î ÀÖ´Â »óÅÂ.
  • fluid electrolytic balance
    ü¾× ÀüÇØÁú ±ÕÇü
  • lateral balance training
    Ãø¹æ ¹ë·±½º ÈÆ·Ã
  • local electrolyte balance
    ±¹¼ÒÀû ÀüÇØÁú ±ÕÇü
  • negative balance
    À½¼º ±ÕÇü
  • negative phosphorus balance
    À½ ÀÎ»ê ±ÕÇü
  • nitrogen balance
    Áú¼Ò ±ÕÇü
  • occlusal balance
    ±³ÇÕ ±ÕÇü
    1. ¾Ç°ñÀÇ ±â´É ¿îµ¿ ½Ã¿¡ ÀÇÄ¡°¡ À̵¿µÇÁö ¾Êµµ·Ï ÇÏ´Â ±³ÇÕ Á¢ÃË. 2. ±â´É ¹üÀ§ ³»¿¡¼­ÀÇ ºñÁß½ÉÀ§ ¿îµ¿À» ÇÏ´Â µ¿¾È ´ëÇÕÇÏ´Â Ä¡±ÃÀÇ ¾çÃø ¸é¿¡¼­ ´ëÇÕÄ¡³ª Ä¡¾Æ À¯»ç¹°ÀÇ Á¢ÃËÀÌ µ¿½Ã¿¡ ÀϾ ¼ö ÀÖ´Â Á¶°Ç.
  • oxygen balance
    »ê¼Ò ÆòÇü
  • spring balance
    ¿ë¼öö Àú¿ï
  • absolute mass
    Àý´ë Áú·®
  • achromatic mass
    ¹«»öÁú
  • amorphous mass deposit
    ¹«Á¤Çü Ä§Âø¹°
  • atomic mass
    ¿øÀÚ Áú·®
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
Gay-Lussac's equation The overall chemical equation for alcoholic fermentation; C6H12O6 = 2CO2 + 2CH3CH2OH.
(05 Mar 2000)
rate equation A mathematical expression for a chemical, radiochemical, or enzyme-catalyzed reaction.
(05 Mar 2000)
Rayleigh equation A ratio of red to green required by each observer to match spectral yellow.
Synonym: Rayleigh test.
(05 Mar 2000)
Gibbs-Helmholtz equation An equation expressing the relationship in a galvanic cell between the chemical energy transformed and the maximal electromotive force obtainable.
(05 Mar 2000)
Victor-Michaelis-Menten equation <chemistry> Equation derived from a simple kinetic model for a single-substrate non-cooperative enzyme-catalyzed reaction that successfully accounts for the hyperbolic adsorption isotherm) relationship between substrate concentration and reaction rate.
V = Vmax x S/(S + Km), where V is the initial velocity of the reaction, Km is the Michaelis constant, Vmax is the maximum rate approached by very high substrate concentrations and S is the initial substrate concentration.
Similar equations can be derived for conditions in which the product is present and for multisubstrate enzymes.
Synonym: Victor-Michaelis-Menten equation.
(12 Jul 2000)
Goldman equation An equation derived to predict membrane potentials in terms of the membrane's permeability to ions and their concentrations on either side.
Synonym: constant field equation, Goldman-Hodgkin-Katz equation, GHK equation.
(05 Mar 2000)
Goldman-Hodgkin-Katz equation An equation derived to predict membrane potentials in terms of the membrane's permeability to ions and their concentrations on either side.
Synonym: constant field equation, Goldman-Hodgkin-Katz equation, GHK equation.
(05 Mar 2000)
grad-shafranov equation <radiobiology> Reduced magnetohydrodynamic-equilibrium equation for an axisymmetric, toroidal plasma. (Similar reduced equations can be derived for the cases of helical symmetry and for the straight cylinder.)
Analytic and numerical studies of these equations are important in exploring potential plasma configurations. The lowest order force balance in the plasma is simply that the Lorentz force must be balanced by the pressure force. This balance, combined with Maxwell's equations, determines the equilibrium configuration of the magnetic field.
When the toroidal configuration is axisymmetric, and the equilibrium plasma flow is zero, the magnetic field may be written in terms of a stream function \psi that satisfies the Grad-Shafranov equation \Delta\psi = - \mu_0 R^2 p'(\psi) - FF'(\psi). Here p is the plasma pressure and f = R B_\phi. (R is the radial distance from the axis of the machine).
In an axisymmetric torus, in the absence of equilibrium plasma fluid flows, the magnetic field may be written in terms of a scalar potential. When the plasma is in equilibrium (forces balance and the plasma is stationary), this scalar potential obeys a non-linear elliptic equation known as the Grad-Shafranov equation.
(09 Oct 1997)
chemical equation A representation of a chemical reaction in which chemical symbols represent reactants on the left side and products on the right side.
(09 Oct 1997)
personal equation A slight error in judgment, perceptual response, or action peculiar to the individual and so constant that it is usually possible to allow for it in accepting the person's statements or conclusions, thus arriving at approximate exactness; observed in persons whose work involves readings of events in time, such as navigators and air traffic controllers.
(05 Mar 2000)
Michaelis-Menten equation <chemistry> Equation derived from a simple kinetic model for a single-substrate non-cooperative enzyme-catalyzed reaction that successfully accounts for the hyperbolic adsorption isotherm) relationship between substrate concentration and reaction rate.
V = Vmax x S/(S + Km), where V is the initial velocity of the reaction, Km is the Michaelis constant, Vmax is the maximum rate approached by very high substrate concentrations and S is the initial substrate concentration.
Similar equations can be derived for conditions in which the product is present and for multisubstrate enzymes.
Synonym: Victor-Michaelis-Menten equation.
(12 Jul 2000)
constant field equation An equation derived to predict membrane potentials in terms of the membrane's permeability to ions and their concentrations on either side.
Synonym: constant field equation, Goldman-Hodgkin-Katz equation, GHK equation.
(05 Mar 2000)
Henderson-Hasselbalch equation <chemistry> The Henderson-Hasselbalch equation is the equation:
PH = pK + log ([A-]/[HA])
Where pH is the acidity or alkalinity of the buffer solution, pK is the negative logarithm of the equilibrium constant (Kd) for the ionisation of the acid form (A-) of the compound used to buffer the solution for the reaction HA = H+ +A-, [A-] is the molar concentration of the ionised form of the buffer compound, and [HA] is the molar concentration of the nonionised form of the buffer compound.
(09 Oct 1997)
Hill's equation The equation,y(1-y) = [S]n/Kd, where y is the fractional degree of saturation, [S] is the binding ligand concentration, n is the Hill coefficient, and Kd is the dissociation constant for the ligand. The Hill coefficient is a measure of the cooperativity of the protein; the larger the value, the higher the cooperativity. This coefficient cannot be higher than the number of binding sites. For the oxygen binding curve of haemoglobin, an association constant, Ka, is used and the equation becomes y/(1-y) = Ka[S]n. For human blood, n equals 2.5.
Compare: Hill plot.
(05 Mar 2000)
Hufner's equation <physiology> An equation expressing the relationship between myoglobin dissociation and oxygen partial pressure: ([MBO2]/[Mb]) = (K x pO2).
(05 Mar 2000)
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  • ¿µ¹®
    ÇѱÛ
  • cubic equation
    3Â÷ ¹æÁ¤½Ä
  • differential equation
    (¼ö)¹ÌºÐ¹æÁ¤½Ä
  • equation
    °°°ÔÇÔ;±ÕºÐ¹ý;¹æÁ¤½Ä
  • identical equation
    Ç×µî½Ä
  • massenergy equation
    Áú·® ¿¡³ÊÁö ¹æÁ¤½Ä (A,EinsteinÀÌ Á¤½ÄÈ­ÇÑ E=mc2ÀÇ °ø½Ä)
  • masswnergy equation
    Áú·®°ú ¿¡³ÊÁö¿ÍÀÇ Ç×µî½Ä
  • personal equation
    °³ÀÎÂ÷
  • simple equation
    ÀÏÂ÷ ¹æÁ¤½Ä
  • mass
    µ¢¾î¸®,´ëÁß,Áý´Ü,´Ù·®,¹Ì»ç
  • Dialogue Mass
    (õÁÖ±³)´ëÈ­ ¹Ì»ç
  • Low Mass
    Æò¹Ì»ç
  • Mass book
    ¹Ì»ç Àü·Ê¼­
  • atomic mass
    ¿øÀÚ Áú·®
  • atonic mass
    ¿øÀÚÁú·®
  • critical mass
    ÀÓ°è Áú·®;¹Ù¶÷Á÷ÇÑ °á°ú¸¦ È¿°úÀûÀ¸·Î ¾ò±âÀ§ÇÑ ÃæºÐÇÑ ¾ç
ÀÌ ¾Æ·¡ ºÎÅÍ´Â °á°ú°¡ ¾ø½À´Ï´Ù.
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    ±¸ºÐ/º¸Çè±Þ¿©
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