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"ion gradient"¿¡ ´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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¿µ¹® pH, hydrogen ion concentration ÇÑ±Û ¼ö¼ÒÀ̿³óµµÁö¼ö
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  Ç÷¾×À̳ª ¼Òº¯¿¡¼­ ½Ç½ÃÇϴ °Ë»çÇ׸ñ. pH°Ë»ç´Â ÀÎüÀǠü¾×ÀÇ »ê¼º, ¾ËÄ®¸®¼ºÀ» ¾Ë¾Æº¸´Â Áß¿äÇÑ °Ë»çÀÌ´Ù. ÀÎü´Â ¾à¾ËÄ®¸®¼º¿¡ ¼ÓÇϳª, À̺¸´Ù pHÀÇ Áõ°¡³ª °¨¼Ò°¡ ³ªÅ¸³¯ °æ¿ì, »ý¸í¿¡ À§ÇèÀÌ ¹ß»ýÇÑ´Ù. ÀÎü³»¿¡´Â ÀÌ·± »êµµÀÇ Áõ°¨À» ¸·±âÀ§ÇØ, À̸¥¹Ù ¿ÏÃæÁ¦µéÀÌ ¸¹ÀÌ Á¸ÀçÇϸç, Æ¯È÷ ÇãÆÄ¿Í ÄáÆÏÀÌ ¿ÏÃæÀÛ¿ëÀ» ¼öÇàÇϴ ÁÖ¿ä±â°üÀÌ´Ù.
  
  ÄáÆÏÀº »êµµ°¡ ³ôÀ» °æ¿ì, ¼Òº¯¿¡¼­ »êµµ¸¦ Áõ°¡½ÃÄÑ ¹èÃâÇÔÀ¸·Î½á Ç÷¾×³»ÀÇ ¾ËÄ®¸®¼º ³óµµ°¡ Áõ°¡Çϵµ·Ï ÇÑ´Ù. ¶ÇÇÑ ÇãÆÄ¿¡¼­µµ, Ç÷¾×³»¿¡ »êµµ°¡ Áõ°¡½Ã È£ÈíÀ» Áõ°¡ÇÔÀ¸·Î½á ¹ÛÀ¸·Î »êÀÇ ¹èÃâÀ» Áõ°¡½ÃŲ´Ù. ÀÌ·± ÇãÆÄ¿Í ÄáÆÏÀÇ ±ÕÇüÀº ¾ÆÁÖ ÀûÀýÈ÷ ÀÌ·ç¾îÁö°í ÀÖÀ¸¸ç, ¾î´À ÇÑ ±â°üÀÇ ÀÌ»óÀÌ ¹ß»ýÇϸé, ÀÌ·± ±ÕÇüÀº ±ú¾îÁö±â ½±´Ù.
¿µ¹® ion ÇÑ±Û ÀÌ¿Â
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  ºÐÀÚ¸¦ Àü±âºÐÇØÇÒ ¶§ ºÐ¸®µÇ´Â, Àü±â¸¦ ¶í ¹Ì¸³Àڷμ­ ¾çÀü±â¸¦ ¶í ¾çÀ̿°ú À½Àü±â¸¦ ¶í À½ÀÌ¿ÂÀÌ ÀÖ´Ù.
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  • ¿µ¹®
    ÇѱÛ
  • ion gradient
    À̿±â¿ï±â, À̿°æ»ç
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  • ¿µ¹®
    ÇѱÛ
  • amphoteric ion
    ¾ç¼ºÀÌ¿Â
  • dipolar ion
    µÎ±ØÀÌ¿Â
  • heavy ion irradiation
    ÁßÀÌ¿ÂÁ¶»ç
  • hydrogen ion
    ¼ö¼ÒÀÌ¿Â
  • hydrogen ion concentration
    ¼ö¼ÒÀ̿³óµµ
  • ion
    ÀÌ¿Â
  • ion channel disorder
    ÀÌ¿ÂÅë·ÎÁúȯ
  • ion exchange chromatography
    À̿±³È¯Å©·Î¸¶Åä±×·¡ÇÇ
  • ion exchange resin
    À̿±³È¯¼öÁö
  • ion exchanger
    À̿±³È¯Ã¼
  • ion selective electrode
    À̿¼±ÅÃÀü±Ø
  • ion trapping
    ÀÌ¿ÂÆ÷Âø
  • ion-exchange membrane
    À̿±³È¯¸·
  • inorganic ion
    ¹«±â(Áú)ÀÌ¿Â
  • negative ion
    À½ÀÌ¿Â
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  • ¿µ¹®
    ÇѱÛ
  • gradient
    ±â¿ï±â, Â÷ÀÌ, -Â÷
  • potential gradient
    ÀüÀ§±â¿ï±â, ÀüÀ§Â÷
  • pressure gradient
    ¾Ð·Â±â¿ï±â, ¾Ð·ÂÂ÷
  • ion
    ÀÌ¿Â
  • positive ion
    ¾çÀÌ¿Â
  • ion trapping
    ÀÌ¿ÂÆ÷Âø
¿¾ ´ëÇÑÀÇÇù ÀÇÇпë¾î »çÀü °Ë»ö ¸ÂÃã °Ë»ö °á°ú : 1 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • ion gradient
    À̿±â¿ï±â, À̿°æ»ç
¿¾ ´ëÇÑÀÇÇù ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • amphoteric ion
    ¾ç¼ºÀÌ¿Â
  • hydrogen ion concentration
    ¼ö¼ÒÀ̿³óµµ
  • ion exchange chromatography
    À̿±³È¯Å©·Î¸¶Åä±×·¡ÇÇ
  • dipolar ion
    ¾ç±ØÀÌ¿Â
  • hydrogen ion exponent
    ¼ö¼ÒÀÌ¿ÂÁö¼ö
  • ion exchanger
    À̿±³È¯Á¦
  • ion selective electrode
    À̿¼±ÅÃÀü±Ø
  • heavy ion irradiation
    ÁßÀÌ¿ÂÁ¶»ç
  • hydrogen ion
    ¼ö¼ÒÀÌ¿Â
  • ion
    ÀÌ¿Â
  • inorganic ion
    ¹«±âÁúÀÌ¿Â, ¹«±âÀÌ¿Â
  • ion trapping
    ÀÌ¿ÂÆ÷Âø
  • ion exchange resin
    À̿±³È¯¼öÁö
  • ion-exchange membrane
    À̿±³È¯¸·
  • negative ion
    À½ÀÌ¿Â
¿¾ ´ëÇÑÀÇÇù 2 ÀÇÇпë¾î »çÀü °Ë»ö ¸ÂÃã °Ë»ö °á°ú : 1 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • Ion gradient
    À̿°æ»ç(ÌËÞØ)
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  • ¿µ¹®
    ÇѱÛ
  • H+ (Hydrogen ion)
    ¼ö¼ÒÀÌ¿Â
  • Hydrogen ion
    ¼ö¼ÒÀÌ¿Â
  • Hydroxyl ion
    ÇÏÀ̵å·Ï½ÇÀÌ¿Â
  • air ion
    °ø±âÀÌ¿Â.
  • amphoteric ion
    ¾ç¼ºÀÌ¿Â.
  • gram ion
    ±×·¥ÀÌ¿Â.
  • heavy ion
    ÁßÀÌ¿Â
  • heavy ion irradiation
    ÁßÀÌ¿ÂÁ¶»ç
  • hydrogen ion concentration
    ¼ö¼ÒÀ̿³óµµ.
  • hydrogen ion exchange
    ¼ö¼ÒÀ̿±³È¯.
  • hydrogen ion exponent
    ¼ö¼ÒÀÌ¿ÂÁö¼ö.
  • hydronium ion
    ¿Á¼Ò´½ÀÌ¿Â, ÇÏÀ̵å·Î´½.
  • hydroxy ion
    ¼ö»ê±âÀÌ¿Â.
  • inorganic ion
    ¹«±âÁúÀÌ¿Â.
  • positive ion
    ¾ç(åÕ)ÀÌ¿Â.
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  • ¿µ¹®
    ÇѱÛ
  • air ion
    °ø±âÀÌ¿Â.
  • amphoteric ion
    ¾ç¼ºÀÌ¿Â.
  • bicarbonate ion
    Áßź»ê (ñì÷©ß«)ÀÌ¿Â
  • complex ion
    Âø(ó¹), º¹ÇÕÀÌ¿Â.
  • dipolar ion
    ¾ç±Ø¼º ÀÌ¿Â.
  • gram ion
    ±×·¥ÀÌ¿Â.
  • heavy ion
    ÁßÀÌ¿Â
  • heavy ion irradiation
    ÁßÀÌ¿ÂÁ¶»ç
  • helium ion therapy
    Ç︮¿òÀÌ¿ÂÄ¡·á
  • hydrogen ion concentration
    ¼ö¼ÒÀ̿³óµµ.
  • hydrogen ion exchange
    ¼ö¼ÒÀ̿±³È¯.
  • hydrogen ion exponent
    ¼ö¼ÒÀÌ¿ÂÁö¼ö.
  • hydronium ion
    ¿Á¼Ò´½ÀÌ¿Â, ÇÏÀ̵å·Î´½.
  • hydroxy ion
    ¼ö»ê±âÀÌ¿Â.
  • inorganic ion
    ¹«±âÁúÀÌ¿Â.
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  • ¿µ¹®
    ÇѱÛ
  • ion-ion interaction
    ÀÌ¿Â-À̿ »óÈ£ÀÛ¿ë(ßÓû»íÂéÄ)
  • artificial pH gradient
    Àΰø pH±¸¹è(ÎøÛÎ)
  • cesium chloride gradient centrifugation
    ¿°È­(ç¤ûù)¼¼½Ã¿ò ±¸¹è¿ø½ÉºÐ¸® (ÎþÛÕêÀãýÝÂ×î)
  • concave exponential gradient
    ¿À¸ñ Áö¼ö±¸¹è(ò¦â¦ÎþÛÕ)
  • concentration gradient
    ³óµµ ±¸¹è(ÒØÓøÎþÛÕ)
  • continuous density gradient
    ¿¬¼Ó¹Ðµµ±¸¹è(Ö§áÙÚËÓøÎþÛÕ)
  • convex exponential gradient
    º¼·Ï Áö¼ö ±¸¹è(ò¦â¦ÎþÛÕ)
  • density gradient
    ¹Ðµµ±¸¹è(ÚËÓøÎþÛÕ)
  • density gradient centrifugation
    ¹Ðµµ±¸¹è ¿ø½ÉºÐ¸®(ÚËÓøÎþÛÕêÀãýÝÂ×î)
  • density gradient sedimentation equilibrium
    ¹Ðµµ±¸¹è ħ°­ ÆòÇü(ÚËÓøÎþÛÕöØË½øÁû¬)
  • density gradient sedimentation velocity
    ¹Ðµµ±¸¹è ħ°­ ¼Óµµ(ÚËÓøÎþÛÕöØË½áÜÓø)
  • density gradient zonal centrifugation
    "¹Ðµµ±¸¹è ¿ª¿ø½ÉºÐ¸®(ÚËÓøÎþÛÕæ´êÀãýÝÂ×î), (ÔÒ) density gradient sedimentation velocity"
  • discontinuous density gradient
    ºÒ¿¬¼Ó ¹Ðµµ±¸¹è(ÝÕææáÙÚËÓøÎþÛÕ)
  • exponential density gradient
    Áö¼ö ³óµµ ±¸¹è (ò¦â¦ÒØÓøÎøÛÎ)
  • fluidity gradient
    À¯µ¿¼º ±¸¹è(×µÔÑàõÎþÛÕ)
KI ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • ion
    ÀÌ¿Â
  • ion chamber
    Àü¸®ÇÔ
  • ion pair
    À̿½Ö
  • paramagnetic ion
    »óÀÚ¼ºÀÌ¿Â
  • active gradient shielding
    ´Éµ¿°æ»çÂ÷Æó
  • B1 field gradient
    ȸÀüÀÚÀå°æ»ç
  • background gradient
    ¹è°æ°æ»ç
  • bipolar gradient
    ¾ç±Ø°æ»ç
  • bipolar velocity encoding gradient
    ¾ç±Ø¼ÓµµºÎȣȭ°æ»ç
  • constant field gradient spin echo method
    °íÁ¤°æ»çÀ彺ÇÉ¿¡ÄÚ¹ý
  • constant gradient
    °íÁ¤°æ»ç
  • diffusion gradient pulse
    È®»ê°æ»çÆÞ½º
  • fast gradient recalled echo method
    °í¼Ó°æ»çȸº¹¿¡ÄÚ±â¹ý
  • fast multiplanar spoiled gradient recalled sequence
    °í¼Ó´Ù¸éȸ¼Õ°æ»çȸº¹¿¬¼â
  • field gradient
    ÀÚÀå°æ»ç
KMLE ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 1
TPG transmembrane potential gradient; transplacental gradient; tryptophan peptone glucose [broth]
g-ion gram-ion
ISS idiopathic short stature; injury severity score; International Society of Surgery; ion-scattering sp...
GRASS Gradient Recalled Acquisition at Steady State
AAG 3-alkaladenine deoxyribonucleic acid glycosylase; allergic angiitis and granulomatosis; alpha-1-acid...
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 1
AaDO2 Alveolar-arterial oxygen gradient
DGGE Denaturing Gradient Gel Electrophoresis
GE Gradient Echo
GRE Gradient Echo
GRE Gradient Recalled Echo
°æºÏ´ë Ä¡°ú´ëÇÐ ±¸°­³»°ú ±³½Ç »çÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • hydrogen ion
    ¼ö¼Ò ÀÌ¿Â
    ¼ö¼Ò ¿øÀÚÀÇ ÇÙ ¶Ç´Â ÀüÀÚ¸¦ »ó½ÇÇÑ ¼ö¼Ò ¿øÀÚ. À̰ÍÀº ÀüÀÚÀÇ À½ ÀüÇÏ¿Í µ¿·®ÀÇ ¾ç ÀüÇϸ¦ °¡Áø´Ù.
  • hydrogen ion exchange
    ¼ö¼Ò À̿ ±³È¯
  • hydronium ion
    ¿Á¼Ò´½ ÀÌ¿Â
    ÇÏÀ̵å·Î´½.
  • hydroxy ion
    ¼ö»ê±â ÀÌ¿Â
  • ion
    ÀÌ¿Â
    ¾ç ¶Ç´Â À½ Àü±â¸¦ ¶ì´Â ¿øÀÚ³ª ¿øÀÚ´ÜÀ» ÅëÆ²¾î °¡¸®Å°´Â ¸».
  • ion channel
    À̿ Åë·Î
    ¼¼Æ÷¸· µî¿¡ Á¸ÀçÇϸç ÀÚ±ØÀÌ ¿À¸é Åë·Î¸¦ ¿­°í, ´ÝÀ½À¸·Î ÇØ¼­ ÀÌ¿ÂÀÇ ³óµµ¸¦ Á¶ÀýÇØ¼­ ÀÚ±ØÀÇ Àü´Þ¿¡ °ü¿©ÇÑ´Ù.
  • ion exchange
    À̿ ±³È¯
  • ion exchange strengthening
    À̿ ±³È¯ °­È­
  • ion pair
    À̿½Ö
  • negative ion
    À½ ÀÌ¿Â
  • active gradient shielding
    ´Éµ¿ °æ»çÂ÷Æó
  • alveolar arterial oxygen gradient
    ÆóÆ÷µ¿¸Æ°£ »ê¼Ò ºÐ¾ÐÂ÷
  • alveolar O2 pressure gradient
    ÆóÆ÷ ³» »ê¼Ò ºÐ¾ÐÂ÷
  • concentration gradient
    ³óµµ °æ»ç
  • density gradient centrifugation
    ¹Ðµµ±¸¹è ¿ø½É¹ý
    ÃÊ¿ø½É ħ°­ ÆòÇü¹ýÀÇ ÀÀ¿ëÀÌ¸ç Æ¯È÷ »ýü °íºÐÀÚ°èÀÇ ¿¬±¸¿¡ »ç¿ëµÇ´Â ¹æ¹ý. ÀúºÐÀÚÀÇ ¿ë¾×ÀÌ¶óµµ ÃÊ¿ø½É·ÂÀå¿¡ Àå½Ã°£ ³õÀ¸¸é ÀúºÐÀÚÀÇ ³óµµ ºÐÆ÷¿¡ ħ°­ ÆòÇüÀÌ ¹ß»ýÇÏ°í ¾×¸é¿¡¼­ ¹Ø¹Ù´ÚÀ» ÇâÇÏ¿© ³óµµ¸¦ Áõ°¡½ÃÄÑ ÀÏÁ¤ÇÑ ¹Ðµµ °æ»ç°¡ »ý±ä´Ù. ÀÌ ¿ë¾×¿¡ °íºÐÀÚ°¡ Á¸ÀçÇÏ¸é °íºÐÀÚÀÇ Ä§°­°ú È®»êÀÌ ±ÕÇüÀÌ ÀâÈù ħ°­ ÆòÇü°ú µ¿½Ã¿¡ °íºÐÀÚÀÇ ¿ë¾× ³» ¹Ðµµ¿Í ¿ë¸ÅÀÇ ¹Ðµµ°¡ °°Àº Á¸ÀçÇÏ°Ô µÈ´Ù. ±× À§Ä¡¿¡¼­ °íºÐÀÚÀÇ ¿ë¾× ³» ¹Ðµµ¿Í ¿ë¸ÅÀÇ ¹Ðµµ°¡ °°Àº À§Ä¡¿¡ ºÐÀÚ°¡ ÁýÁßÇÏ¿© Á¸ÀçÇÏ°Ô µÈ´Ù. ±× À§Ä¡¿¡¼­ °íºÐÀÚÀÇ ¿ë¾× ¼Ó¿¡¼­ÀÇ ºÎÀ¯ ¹Ðµµ¸¦ ±¸ÇÒ ¼ö ÀÖ°í ±× À§Ä¡¸¦ Áß½ÉÀ¸·Î ÇÑ ³óµµ ºÐÆ÷ÀÇ È®»ê¿¡¼­ ºÐÀÚ·®À» ±¸ÇÒ ¼ö ÀÖ´Ù.
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
atrioventricular gradient The diastolic pressure difference between the atrium and ventricle.
(05 Mar 2000)
magnetic field gradient In magnetic resonance imaging, a magnetic field that varies with location, superimposed on the uniform field of the magnet, to alter the resonant frequency of nuclei and allow recovery of their spatial position.
Synonym: field gradient.
(05 Mar 2000)
ventricular gradient The algebraic sum of (i.e., the net electrical difference between) the area enclosed within the QRS complex and that within the T wave in the electrocardiogram.
(05 Mar 2000)
voltage gradient <physiology> Literally, the electric field in a region, defined as the potential difference between two points divided by the distance between them. Used more loosely, the potential difference across a plasma membrane.
(18 Nov 1997)
centrifugation, density gradient Separation of particles according to density by employing a gradient of varying densities. at equilibrium each particle settles in the gradient at a point equal to its density.
(12 Dec 1998)
cesium chloride gradient centrifugation A type of density gradient centrifugation, a lab technique used to separate or purify nucleic acids. It involves putting cesium chloride and the nucleic acids into a centrifuge to be spun for hours or days. The cesium chloride forms a density gradient (highly dense at the bottom, thinnest at the top), and the different nucleic acids separate along the gradient according to their buoyancies in different densities.
(09 Oct 1997)
gradient <physics> Mathematical term for the operator which determines the magnitude and direction of the greatest rate-of-change of a given function with position. Similarly used to describe such a rate-of-change.
For instance, at a given point on a hill, the slope of the hill in the steepest uphill direction is the gradient of the altitude function for the hill.
(09 Oct 1997)
gradient elution Elution in column chromatography in which a changing pH or ionic strength is used to separate substances.
(05 Mar 2000)
gradient encoding In magnetic resonance imaging, the technique of inducing a gradient in the magnetic field in the Y-axis to induce phase differences with location.
Synonym: gradient encoding.
(05 Mar 2000)
gradient perception <cell biology> Problem faced by a cell that is to respond directionally to a gradient of, for example: a diffusible attractant chemical.
In a spatial mechanism the cell would compare receptor occupancy at different sites on the cell surface, a temporal mechanism would involve comparison of concentrations at different times, the cell moving randomly between readings.
In pseudospatial sensing, the cell would detect the gradient as a consequence of positive feedback to protrusive activity if receptor occupancy increased with time as the protrusion moved up gradient. Few cell types have been unambiguously shown to detect gradients.
(18 Nov 1997)
mitral gradient The diastolic pressure difference between the left atrium and left ventricle.
(05 Mar 2000)
concentration gradient <chemistry> A column of liquid in which the density varies continually with position, usually as a consequence of variation of concentration of a solute.
Such gradients may be established by progressive mixing of solutions of different density as for example: sucrose gradients) or by centrifuge induced redistribution of solute (as for caesium chloride gradients).
Density gradients are widely used for centrifugal and gravity induced separations of cells, organelles and macromolecules. The separations may exploit density differences between particles or primarily differences in size, in which latter case the function of the gradient is chiefly to stabilise the liquid column against mixing.
(12 Jan 1998)
critical gradient <botany> The maximum stable inclination of an unsupported slope under the most adverse conditions that it will likely experience, as determined by current engineering technology.
(09 Oct 1997)
pseudospatial gradient sensing <cell biology> Mechanism for sensing a gradient of a diffusible chemical in which the cell sends protrusions out at random, up gradient protrusions are stabilised by positive feedback (because receptor occupancy is rising with time) and others are transitory because of adaptation. Possibly the mechanism by which neutrophils sense chemotactic gradients.
(18 Nov 1997)
density gradient <chemistry> A column of liquid in which the density varies continually with position, usually as a consequence of variation of concentration of a solute.
Such gradients may be established by progressive mixing of solutions of different density as for example: sucrose gradients) or by centrifuge induced redistribution of solute (as for caesium chloride gradients).
Density gradients are widely used for centrifugal and gravity induced separations of cells, organelles and macromolecules. The separations may exploit density differences between particles or primarily differences in size, in which latter case the function of the gradient is chiefly to stabilise the liquid column against mixing.
(12 Jan 1998)
ÇÑ¿µ/¿µÇÑ »çÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • gradient
    °æ»çµµ; ºñÅ»; ¾ð´ö
  • gradient
    (Åë·Î µîÀÇ)¹°¸Å;¾ð´ö;°æ»çÁø °÷;(¿Â°í ±â¾ÐÀÇ)º¯È­À²
  • gravity gradient
    Áß·Â °æµµ¹ý(Àΰø À§¼ºÀÇ Áö±¸¿¡ ´ëÇÑ ±â¿ï±â¸¦ Áö±¸ Áß·ÂÀ¸·Î ÀÏÁ¤ÇÏ°Ô ÇÏ´Â ¹æ¹ý)
  • pressure gradient
    ±â¾Ð °æµµ
  • -ion
    ¶óƾ¾î°èµ¿»ç ¾î¹Ì¿¡ ºÙ¾î¼­ (»óÅÂ,µ¿ÀÛ)À» ³ªÅ¸³»´Â ¸í»ç ¾î¹Ì
  • field ion microscope
    À̿ ¹æ»ç Çö¹Ì°æ;Àü°è À̿ Çö¹Ì°æ
  • hydrogen ion
    ¼ö¼ÒÀÌ¿Â
  • ion
    (È­)ÀÌ¿Â;¾çÀÌ¿Â(cation);À½ÀÌ¿Â(anion)
  • ion engine
    (°ø)À̿¿£Áø(ion rocket)
  • ion etching
    (¹°)À̿¿¡Äª(±Ý¼Óµî¿¡ °í¿¡³ÊÁö ÀÌ¿ÂÀ» ÂØ¾î ºÎ½Ä½Ã۱â)
  • ion exchange
    (¹°,È­)À̿±³È¯
  • ion implantation
    (¹°)À̿ ÁÖÀÔ(¹ý)(¹ÝµµÃ¼¸¦ ¾ò´Â ¹æ¹ýÀÇ Çϳª)
  • ion milling
    ION ETCHING
  • ion propulsion
    (¿ìÁÖ¼± µîÀÇ)À̿ ÃßÁø
  • ion rocket
    ION ENGINE
ÀÌ ¾Æ·¡ ºÎÅÍ´Â °á°ú°¡ ¾ø½À´Ï´Ù.
KMLE ¾àǰ/ÀǾàǰ ¸ÂÃã °Ë»ö °á°ú : 0 ÆäÀÌÁö: 1
  • Á¦Ç°¸í
    ¼ººÐ/ÇÔ·®
    ±¸ºÐ/º¸Çè±Þ¿©
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