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"molecular clock"¿¡ ´ëÇÑ °Ë»ö °á°úÀÔ´Ï´Ù. °Ë»ö °á°ú º¸´Â µµÁß¿¡ Tab ۸¦ ´©¸£½Ã¸é °Ë»ö âÀÌ ¼±Åõ˴ϴÙ.
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  • molecular layer
    ºÐÀÚÃþ
  • molecular layer plexiform layer
    ºÐÀÚÃþ
  • molecular lesion
    ºÐÀÚº´º¯(¡­Ü»Ü¨).
  • molecular magnet
    ºÐÀÚÀÚ¼®(¡­í¸à´).
  • molecular marker
    ºÐÀÚÇ¥Áö(ÀÚ)
  • molecular mimicry
  • molecular miocrobiology
    ºÐÀڹ̻ý¹°ÇÐ
  • molecular motion
    ºÐÀڿ(¡­ê¡ÔÑ).
  • molecular orientation
    ºÐÀÚ¹èÇâ(¡­ÛÕú¾).
  • molecular pathology
    ºÐÀÚº´¸®ÇÐ(¡­Ü»ìµùÊ)
  • molecular pharmacology
    ºÐÀھฮÇÐ(¡­å·ìµùÊ).
  • molecular physiology
    ºÐÀÚ»ý¸®ÇÐ (¡­ßæìµùÊ).
  • molecular radiation biology
    ºÐÀÚ¹æ»ç¼±»ý¹°ÇÐ
  • molecular rearrangement
    ºÐÀÚÀç¹è¿­.
  • molecular refraction
    ºÐÀÚ±¼Àý(¡­ÏÝï¹).
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HOMO highest occupied molecular orbital; homosexual
LEMO lowest empty molecular orbital
LMD lipid-moiety modified derivative; local medical doctor; low molecular weight dextran
LMDX low-molecular-weight dextran
LMO localized molecular orbital
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LMMH Low-molecular-mass heparin
LMW-BCGF Low-molecular-weight B-cell growth factor
LUMO Lowest Unoccupied Molecular Orbital
MD Molecular Dynamics
MEP Molecular Electrostatic Potential
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evolution, molecular Evolution at the molecular level of DNA sequences and proteins. (rieger et al., glossary of genetics: classical and molecular, 5th ed)
(12 Dec 1998)
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)
kininogen, high-molecular-weight A plasma protein, molecular weight of 110 kD, that normally exists in plasma in a 1:1 complex with prekallikrein. Hmwk is split by plasma kallikrein to produce bradykinin. The complex is a cofactor in the activation of coagulation factor xii. The product of this reaction, xiia, in turn activates prekallikrein to kallikrein.
(12 Dec 1998)
kininogen, low-molecular-weight A protein, molecular weight 50 kD, located in various normal tissues. Upon cleavage by kallikrein or other kallikreins, it forms kallidin. Kallidin, in turn, is converted into bradykinin.
(12 Dec 1998)
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