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  • ¿µ¹®
    ÇѱÛ
  • acoustic rhinometer
    À½ÇâÄÚ¾ÈÅë±âµµÃøÁ¤±â, À½Çâºñ°­Åë±âµµ°Ë»ç±â
  • acoustic schwannoma
    û°¢½Å°æÁýÁ¾, û½Å°æ½´¹Ý¼¼Æ÷Á¾
  • acoustic shadow
    À½ÇâÀ½¿µ
  • acoustic spectrum
    À½Ç⽺ÆåÆ®·³
  • acoustic spot
    û°¢¹ÝÁ¡
  • acoustic stress
    À½Ç⽺Ʈ·¹½º, û°¢½ºÆ®·¹½º
  • acoustic transducer
    À½Ç⺯ȯ±â
  • acoustic transformer
    À½Ç⺯¼º±â
  • external acoustic meatus
    ¹Ù±ù±Í±æ, ¿ÜÀ̵µ
  • external acoustic pore
    ¹Ù±ù±Ó±¸¸Û, ¿ÜÀ̰ø
  • internal acoustic canal
    ¼Ó±Í±æ, ³»À̵µ
  • internal acoustic meatus
    ¼Ó±Í±æ, ³»À̵µ
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    ÇѱÛ
  • acoustic reinforcement
    À½Çâ°­È­
  • acoustic resistance
    À½ÇâÀúÇ×
  • acoustic rhinometer
    À½ÇâÄÚ¾ÈÅë±âµµÃøÁ¤±â
  • acoustic schwannoma
    (¢¡vestibular schwannoma) ¾È¶ã½Å°æÁýÁ¾, ¼Ó±Í½Å°æÁýÁ¾
  • acoustic shadow
    ¼Ò¸®±×¸²ÀÚ
  • acoustic spectrum
    À½Ç⽺ÆåÆ®·³
  • acoustic spot
    û°¢¹ÝÁ¡
  • acoustic stress
    À½Ç⽺Ʈ·¹½º
  • acoustic transducer
    À½Ç⺯ȯ±â
  • acoustic transformer
    À½Ç⺯¼º±â
  • acoustic window
    ¼Ò¸®Ã¢, À½Çââ
  • acoustic agnosia
    û°¢ÀνĺҴÉÁõ
  • acoustic agraphia
    ¹Þ¾Æ¾²±â¾ð¾î»ó½ÇÁõ, û°¢¾²±â¾ð¾î»ó½ÇÁõ
  • acoustic area
    û°¢±¸¿ª, û¿ª
  • acoustic aura
    û°¢Á¶Áü
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  • ¿µ¹®
    ÇѱÛ
  • acoustic interface
    À½Çâ °è¸é (ëåú ͣØü)
  • acoustic labyrinth
    û°¢¹Ì·Î
  • acoustic lacuna <³ª> =tonal l.
    û°¢°£°Ý
  • acoustic lens
    À½Çâ·»Áî
  • acoustic lense
    À½Çâ ·»Áî
  • acoustic lense
    À½Çâ (ëåúÂ) ·»Áî
  • acoustic material
    ÈíÀ½Àç
  • acoustic nerve
    û½Å°æ
  • acoustic neurinoma
    û½Å°æÃÊÁ¾
  • acoustic neurofibromatosis
    û½Å°æ¼¶À¯Á¾Áõ(¡­àéë«ðþñø)
  • acoustic neuroma
    û½Å°æÁ¾
  • acoustic neuroma
    û½Å°æÁ¾(¡­ðþ)
  • acoustic noise
    À½Çâ ÀâÀ½
  • acoustic organ
    û±â(°ü)
  • acoustic output
    À½ÇâÃâ·Â
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  • high energy radiation
    °í¿¡³ÊÁö¹æ»ç¼±
  • high linear energy transfer radiation
    °í¼±Çü¿¡³ÊÁöÀüÀ̹æ»ç¼±
  • internal energy
    ³»ºÎ(Үݻ)¿¡³ÊÁö.
  • kinetic energy
    ¿îµ¿¿¡³ÊÁö
  • kinetic energy
    ¿îµ¿(ê¡ÔÑ)¿¡³ÊÁö.
  • linear energy transfer
    ¼±»ó¿¡³ÊÁö Àü´Þ(àÊßÒ¡­ îîÓ¹)
  • linear energy transfer coefficient
    ¼±Çü¿¡³ÊÁöÀüÀ̰è¼ö
  • mass energy absorption coefficient
    Áú·®¿¡³ÊÁöÈí¼ö°è¼ö
  • mass energy transfer coefficient
    Áú·®¿¡³ÊÁöÀüÀ̰è¼ö
  • mechanical energy
    ¿ªÇÐÀû ¿¡³ÊÁö, ±â°èÀû ¿¡³ÊÁö.
  • metabolic energy
    ´ë»ç¿¡³ÊÁö.
  • most probable energy
    ÃÖÀ¯·Â¿¡³ÊÁö
  • nerve energy =nurin
    ½Å°æ¿¡³ÊÁö.
  • nuclear energy
    ÇÙ(ú·)¿¡³ÊÁö.
  • potential energy
    À§Ä¡(êÈöÇ)¿¡³ÊÁö.
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RMR Resting Metabolic Rate
  = Resting Energy Expenditure
ADE acute disseminated encephalitis; adverse drug event; antibody-dependent enhancement; apparent digest...
AE above-elbow [amputation]; acrodermatitis enteropathica; activation energy; adult erythrocyte; advers...
AEC ankyloblepharon, ectodermal defects, and cleft lip [syndrome]; at earliest convenience; Atomic Energ...
AEE atomic energy establishment
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SAW Surface acoustic wave
AN acoustic neurinoma
ASR acoustic startle reflex
BAW bulk acoustic wave
24 -EE 24 h energy expenditure
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  • high energy radiation
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    ³ôÀº ¿¡³ÊÁöÀÇ ¹æ»ç¼±À» ¹æÃâÇÏ´Â °Í.
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  • lattice energy
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  • linear energy transfer
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  • nuclear energy
    ÇÙ ¿¡³ÊÁö
  • potential energy
    À§Ä¡ ¿¡³ÊÁö
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    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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transverse crest of internal acoustic meatus A horizontal ridge that divides the fundus of the internal acoustic meatus into a superior and an inferior area. In the former are the introitus of the facial canal and openings for the branches of the vestibular nerve to the utricle and to the ampullae of the anterior and lateral saemicircular canals. In the latter are openings for the cochlear nerve, and for branches of the vestibular nerve to the saccule and to the ampulla of the posterior saemicircular canal.
Synonym: crista transversa, falciform crest, transverse crest.
(05 Mar 2000)
external acoustic foramen The orifice of the external acoustic meatus in the tympanic portion of the temporal bone.
Synonym: porus acusticus externus, external acoustic foramen, external acoustic pore, external auditory pore, external auditory foramen, orifice of external acoustic meatus.
(05 Mar 2000)
external acoustic meatus The passage leading inward through the tympanic portion of the temporal bone, from the auricle to the tympanic membrane; it consists of a bony (inner) portion and a fibrocartilaginous (outer) portion, the cartilaginous external acoustic meatus.
Synonym: meatus acusticus externus, acoustic meatus, antrum auris, auditory canal, external auditory meatus.
(05 Mar 2000)
external acoustic pore The orifice of the external acoustic meatus in the tympanic portion of the temporal bone.
Synonym: porus acusticus externus, external acoustic foramen, external acoustic pore, external auditory pore, external auditory foramen, orifice of external acoustic meatus.
(05 Mar 2000)
fundus of internal acoustic meatus The thin cribriform plate of bone separating the cochlea and vestibule from the internal acoustic meatus; a transverse crest divides it into two regions; in the superior region are located the area nervi facialis and the area vestibularis superior; in the inferior region are located the area cochleae, area vestibularis inferior, and foramen singulare.
Synonym: fundus meatus acustici interni, fundus of internal auditory meatus.
(05 Mar 2000)
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)
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