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11
A-basis  A°ò·Ç¡G¦b±Ä¥Î§÷®Æ¤§¾÷±ñ©Ê½è®É¡A¨ä­È¥²¶·¬O²Î­p­È¦Ü¤Ö99%¥H¤W¡A¥B³o¨Ç
²Î­p­È©Ò¹w´ú¤§¸¨ÂI¦³95%¤§¥i«H«×
Abhesive Â÷«¬½¤
ABL Bottle ABL²~
Ablate  ¼¯À¿¡A¿i·l
Ablation ¤Á°£¡A«d¿i
Ablative plastic ­@¿i¶ì½¦
Abrasion  ¼¯À¿¡A¿i·l
Absolute rate constant µ´¹ï³t²v±`¼Æ
   in anionic chain polymerization ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in cationic chain polymerization ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in coordination polymerization °t¦ì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in ring-opening polymerization ¶}Àô»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in step polymerization ³v¨B»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
Accelerator «P¶i¾¯¡A¥[³t¾¯
Acetylene polymerization ÍPÄÝ»E¦X¤ÏÀ³
Acidity function »Ä©Ê§@¥Î¡A»Ä©Ê¥\¯à
Acousic  ­µÅT¾Çªº
Acousic Microscopy ­µ¾ÇÅã·LÀË´ú»ö
Acrolein polymerization ¤þ²mîÇ»E¦X¤ÏÀ³
Acrylamide polymerization ¤þ²mñQÓi»E¦X¤ÏÀ³
Actinometry  ¥ú¶q´ú©w
Activated monomer  ¸g¶Ê¤Æ³æÅé¡A¸g¬¡¤Æ³æÅé
Activation ¶Ê¤Æ¡A¬¡¤Æ
Activation Energy ¬¡¤Æ¯à
   in anionic chain polymerization ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in cationic chain polymerization ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in coordination polymerization °t¦ì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in ring-opening polymerization ¶}Àô»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in step polymerization ³v¨B»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
Activator ¶Ê¤Æ¾¯¡A¬¡¤Æ¾¯
Activity of catalyst IJ´C¤§¬¡©Ê
Addition polymer ¥[¦¨»E¦Xª«
Addition polymerization ¥[¦¨»E¦X¤ÏÀ³
Additive ¶ñ¥R¾¯
Adherend ÂHµÛ¾¯¡BªþµÛ
Adhesion ÂHµÛ
Adhesive  ½¦®Æ¡AÂHµÛ¾¯
Adhesive film ÂHµÛ½¤
Adhesive Shear ÂHµÛ°Å¤O±j«×
Adhesiveness ÂHµÛ©Ê
Advanced composite  °ª¯Å½Æ¦X§÷®Æ
After-affect technique  «á®ÄÀ³§Þ³N
After Bake «áµw¤Æ¡A¦Ppost-cure
Aggregate ¶°¦XÅé
Aging  ¦Ñ¤Æ¡A§÷®Æ¨üÀô¹Ò¼vÅT¡]ª«²z¡B¤Æ¾Ç¡^¦Ó¨Ï±j«×°I´î¤§²{¶H
Air-Bubble Void ®ðªw¤Õ
Air-drying of alkyds ¾J»Ä¤§ªÅ®ð°®Àêªk
Air Lock ®ð¹h
Air Vent ±Æ®ð¤Õ
Airworthiness 
Aligned discontinuous fiber »PLong discontinuous fiber (²ºÙLDF)-±Æ¦C¦ý¤£³sÄòÅÖºû©Îªø¤£³sÄòÅÖºû¡C¬°
§ù¨¹¤½¥q©Ò¶}µo-Gr / PEKK
Alkyd plastic ¾J»Ä¶ì½¦¡Aà­Ãþ¶ì½¦
Alkyd Resin  ¾J»Ä¾ð¯×¡Aà­Ãþ¾ð¯×
Allylic polymerization  ²m¤þ°òÄݤ§»E¦X¤ÏÀ³
All-Composite airframe ¥þ½Æ§÷¾÷¨­
Allowable  ¥i®e³\ªº
Allowables 
Allyl plastic ²m¤þ°ò¶ì½¦
Alternating intro-intermolecular  ¥æ´À¦¡¦@»E¦Xª«
     polymerization ¥æ´À¦¡¤À¤l¤º-¤À¤l¶¡»E¦X¤ÏÀ³
image
Alternating Stress Amplitude
¥æ´À¦¡À³¤O®¶´T
Alternating tendency-in copolymerization ¦@»E¦X¤ÏÀ³¤§¥æ´À¦¡¶É¦V
Alternative stress ¥æ´À¦¡À³¤O
Alumina  Äs¤g©Î®ñ¤Æ¾TAl2O3¡A¤@ºØµL¾÷¤Æ¦Xª«¡A©âµ·«á¬°¤@ºØ­@°ª·Å¤§µL¾÷ÅÖºû
Aluminum  ¾T¡Gª÷Äݤ¸¯À¡A­ì¤l§Ç¬°13
Ambient ©P¾Dªº
Ambient condition  «Ç·Å±ø¥ó
Amine Resin  Ói¾ð¯×
Amorphous  «Dµ²´¹ª¬ºA
Amorphous polymer «Dµ²´¹©Êªº»E¦Xª«
Amylose  ª½Ãì¾ý¯»
Anchimeric assistance 
Angle-ply ¨¤«×Å|¸m
Angle-ply laminate  ¨¤«×Å|¼h¿n¼h
Angle strain  ¨¤À³ÅÜ
Anion-radical  ³±Â÷¤l°ò
Anionic chain polymerization  ³±Â÷¤lÃì»E¦X¤ÏÀ³
   of acrolein    ¤þ²mîǤ§³±Â÷¤lÃì»E¦X¤ÏÀ³
   of acrylamide ¤þ²mñQÓi¤§³±Â÷¤lÃì»E¦X¤ÏÀ³
   activation parameters in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§¬¡¤Æ°Ñ¼Æ
   association phenomena in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§µ²¦X²{¶H
   of carbonyl monomers æó°ò³æÅ餧³±Â÷¤lÃì»E¦X¤ÏÀ³
   comparison with radical polymerization  ³±Â÷¤lÃì»E¦X¤ÏÀ³»P¦Û¥Ñ°ò»E¦X¤ÏÀ³¤§¤ñ¸û
   of dimethylketene Âù¥Ò°ò²mତ§³±Â÷¤lÃì»E¦X¤ÏÀ³
   effect of reaction media in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§¤ÏÀ³¤¶½è¤§®ÄÀ³
   effect of temperature in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§·Å«×®ÄÀ³
   initiation in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§°_©l¤ÏÀ³
   of isocyanates ²§Ùæ»Ä¤§³±Â÷¤l»E¦X¤ÏÀ³
   -use of acylating agent in  ñQ¤Æ¾¯¤§¨Ï¥Î©óÀôª¬ñQÓi³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclic esters Àôª¬¯×¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclosiloxanes  Àôª¬Öº®ñÖJÄݤ§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of epoxides  Àô®ñª«¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -chain transfer to monomer  ÃìÂಾ¦Ü³æÅ餧Àô®ñª«³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -characteristics of Àô®ñª«³±Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¯S¼x
     of oxides ®ñ¤Æª«¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
     exchange reaction in ³±Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¥æ´«¤ÏÀ³
     Kinetics of ³±Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
     of phosphonitrilic chloride ´â¤ÆÁC¡]¡H¡^¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
Anisotropic  «D§¡ºAªº¡A¤Î§÷®Æ¤§§÷½è¨ä²Õ¦¨¦¨¥÷«D§¡¤Ãªº¡A¨ä¦U¤è¦V¤§±j«×¤£¤@
Anisotropic laminate «D§¡ºAªº¿n¼h
Anisotropy  «D§¡ºAªº¡A§Y§÷®Æ¦b¤T­Ó¤è¦V¤§±j«×¤£¤@©w
Anisotropy of Laminate ¿n¼h«D§¡ºA©Ê
Anti-static Agent §ÜÀR¹q¾¯
Antisymmetry  ¤Ï¹ïºÙ©Ê
ARALL ªüù¡A¤@ºØ¾T§÷¿n¼h¡A«Y¥Ñ¾T§÷7075-T6»P§J©ÔÅÖºû / Àô®ñ¾ð¯×©Ò²Õ¦¨¤§²V¦X
¿n¼h§÷®Æ¡A¥Ñ¬ü°êAlcoa co©Ò¶}µo
Aramid  ªÚ­»±ÚñQÓi¡A¦p§J©ÔÅÖºû§Y¬°¨ä¥Nªí¡F­@°ª·Å¤§¦³¾÷ÅÖºû
Aramid-Epoxy ªÚ­»±ÚñQÓi / Àô®ñ¾ð¯× ½Æ¦X§÷®Æ
Arc Resistance ­@©·¥ú©Ê
Arcing 
A-scan A±½ºË¡A¥Î¥H°»´ú½Æ¦X§÷®Æ¤º³¡¯Ê³´¤§¤@ºØ«D¯}Ãa©ÊÀË´ú»ö¾¹
Ash Content ¦Ç¥÷§t¶q
Aspect Ratio Áa¾î¤ñ¡AÅÖºû¤§ªø»Pª½¸g¤ñ
Assembly Concept ²Õ¸Ë·§©À
A-stage A-¶¥¬q¡G§Y¼ö©T©Ê¾ð¯×¦b°_©lº²¿Ä©Î·»©ó¬Y¨Ç²GÅé®É¤§ª¬ºA
A-stage polymer A¶¥¬q»E¦Xª«
Asymmetric center ¤£¹ïºÙ¤¤¤ß
Asymmetric induction  ¤£¹ïºÙªº·PÀ³¡A¤£¹ïºÙ¤§»¤¾É
Atactic polymer ¤£³W«h±Æ¦C¤§»E¦Xª«
Atecticity ¶Ã«×
attenuation µ}Á¡¤Æ¡A°I´î
Autoacceleration  ¦Û°Ê¥[³t¤ÏÀ³
Autoclave  ¯uªÅ¦¨§Î°y¡A¥Î©ó¦¨§Î½Æ¦X§÷®Æ¿n¼h©Î¹s¥ó¤§¤@ºØ¸Ë³Æ
Autoclave forming ¯uªÅ¦¨«¬¡A¥H¯uªÅ¦¨§Î°y¨Ó¦¨§Î¹s¥ó¤§¹Lµ{©Î¤èªk
Autoclave Molding ¯uªÅ¦¨§Î
autoclave ¯uªÅ¦¨§Î°y
Autoinhibition  ¦Û°Ê²×¤î¤ÏÀ³
Automated systems  ¦Û°Ê¤Æ¨t²Î
Automatic Mold ¦Û°Ê¦¨§Î¡A¦p®g¥X¦¨§Îµ¥
Automatic press ¦Û°Ê¥[À£
Automation  ¦Û°Ê¤Æ¡A¦Û°Ê¾Þ§@
Avamid-N ¤@ºØ¨ã¦nªº¼ö¿±µÈ«Y¼Æ¥B§C»s§@¦¨¥»¤§»s¼Ò¨ã§÷®Æ
Average functionality ¥­§¡ªº¾÷¯à
Axes ¶b¦V
Axial Winding ¶b¦VÄñ¶
Axisymmetry  ¶b¹ïºÙ
Azeotropic copolymerization  ¦@ªm²V¦Xª«¤§¦@»E¦X¤ÏÀ³
B-stage  B-¶¥¬q
¡¥B¡¦basis B°ò·Ç¡G¦b±Ä¥Î§÷®Æ¤§¾÷±ñ©Ê½è®É¡A¨ä­È¥²¶·¬O²Î­p­È¦Ü¤Ö90%¥H¤W¡A¥B³o¨Ç
²Î­p­È©Ò¹w´ú¤§¸¨ÂI¦³95%¤§¥i«H«×
Back Draft °_¯óª«¡A¤è®×
Back-biting ring-expansion ­I¨ë¦¡Àô¿±µÈ¡A¤Ï«r¦¡Àô¿±µÈ
Back-biting self-transfer ­I¨ë¦¡¦Û¨­Âಾ¡A¤Ï«r¦¡Àô¿±µÈ¦Û¨­Âಾ
Bag  «Ê³U¡A½Æ§÷¯uªÅ¦¨§Î®É©Ò¨Ï¥Î¤§¤@ºØ±K«Ê¸Ë¸m
Bag Molding «Ê³U¦¨§Î
Bagging  «Ê³U±K«Ê
Balanced (laminate) ¥­¿Å¡]¿n¼h¡^¡A½Æ¦X§÷®Æ¿n¼h¦b°µÅ|¼h³]­p®É¡A¥²¶·¤W¤U¹ïºÙ¡A¥HÁ×§K¿n¼hªO
©Î¹s¥ó§á¦±
Balanced Construction ¥­¿Åªºµ²ºcª«
Balanced Design  ¥­¿Åªº³]­p
Balanced laminate  ¥­¿Å¿n¼h¡A§Y¥¿¨¤«×¤§Á¡¼h»P­t¨¤«×¤§Á¡¼h¬Û¦P
Balanced symmetric laminate  ¹ïºÙ¥­¿Å¤§¿n¼h
Balanced Twist §á¦±Â\¥­¡A§á¦±Â\¥¿
Balanced-in-plane Contour  ¥­¿Å­±½ü¹ø¡A¥­¿Å­±¥~§Î
Ballistic impact  ¤l¼u¼²À»
Bank pressure ­IÀ£
Barcol Hardness ¤Ú§Jµw«×
Bare Glass »r¬ÁÅÖ
Bar-grid panels
Base  ÆP©Ê
Base unit °ò¥»³æ¦ì
Batch  §å
Batt  ´Öµ¶
Battle damage repair ¤l¼u·l¶Ë­×¸É
Bearing Area ¤ä¼µ°Ï°ì
Bearing reduction factor
Bearing Strength ¤ä¼µ±j«×
Bearing Stress ¤ä¼µÀ³¤O
Bearing test  ¤ä¼µ±j«×´ú¸Õ
Bend radii Ås¦±¥b®|
Bending Moment Ås¦±¤O¯x
Bending Stretching Coupling 
Bending Twisting Coupling
BFRA Boron fiber-reinforced aluminum¤§Â²ºÙ¡A¸NÅÖºû±j¤Æ¾T
BFRP Boron fiber-reinforced plastic¤§Â²ºÙ¡A¸NÅÖºû±j¤Æ¶ì½¦
Bi-axial  Âù¶b
Biaxial Load Âù¶b¦V­t¸ü
Biaxial Winding Âù¶b¦VÄñ¶
Bi-directional Laminate Âù¦V¿n¼h
Bimetallic mechanism for isotacticity ¶¶¦¡©ÊÂùª÷Äݾ÷ºc
Binder  ¶°§ô¾¯
Binder fiber ôµ²¥ÎÅÖºû¡A§Y¥Î¨Ó®¹¸jÅÖºû§ô©ÎÅÖºû¥¬¡A¨Ï¤£­P·Æ°Ê©ÎÃP°Ê¤§ÅÖºû¡A¤@¯ë¬Ò
¬O¦³¾÷ÅÖºû¡A¦p¥§Às¡B»E୩ΧJ©ÔÅÖºû
Bisphenol A Âù×ô-A
Bladder ®ðÅn
Blanket  ¤ò´à
Bleed system §l½¦¨t²Î¡A½Æ§÷µw¤Æ¹Lµ{¡A©Ò¨Ï¥Î¤§¾ã®M§l½¦³]¸m
Bleeder cloth §l½¦¥¬
Bleeder ply §l½¦¼h¡A³q±`«Y¬°¬Á¼þ½s´¥¬¡A¦b¾ð¯×µw¤Æ¹Lµ{¤¤¥Î¨Ó§l¦¬¹L¶q¤§·¸¥X¾ð¯×
¨Ã¨Ï´§µo¥÷¶h¥X
Bleedout  ·¸¥X
Blind fastener ª¼¹g°v
Blister  ¤ôªwª¬
Block copolymer ¶ôª¬¦@»E¦Xª«
Blooming ´³ÂI
Blush  ¥´¼Ë
Boardy 
Bolted joint ¹g±µ¡A¨âµ²ºc¥ó¥Î¹g°v±µ¦X¤§¤è¦¡
Bolted repair ¹g±µ­×¸É
Bond strength Áäµ²±j«×
Bonded joint ½¦¦X¡A¨âµ²ºc¥ó¥Î½¦®Æ±µ¦X¤§¤è¦¡
Bonded repair ½¦®Æ­×¸É
Bonding Áäµ²
Boron  ¸N¤¸¯À¡A¤@ºØ«Dª÷Äݤ¸¯À¡A­ì¤l§Ç¬°5
Boron filament  ¸NÅÖºû
Borsic  ¸N»ÄÆQ
Boss  ¬P¼Ð¡A¼Ð°O
Bottom plate ©³ªO
Boundary condition  ¬É­­±ø¥ó
Braided pultrusion  ½s´©ÔÀ½¦¨«¬¡A¹w¥ý±NÅÖºû±j¤Æª«½s´«á§t®û¾ð¯×¦A©ÔÀ½¦¨«¬
Braided tube panel 
Braiding ½s´¡A§Y±N±j¤ÆÅÖºû¥Î¾÷¾¹Â´¦¨ºÞª¬¥H¥N´À¥­­±Â´ª«
Brake «b¨®¤ù¡A¤@¯ë«Y¥Î¤£ù׿ûµ¥ª÷Äݩһs¡A­¸¾÷¥Î¤§«b¨®¤ù¡A¥Ø«e¥HºÒ / ºÒ½Æ¦X
§÷®Æ»s§@
Branch unit  ¤À¤e³æ¦ì¡A¤ÀªK³æ¦ì
Branched polymer ¤ÀªK¦¡»E¦Xª«
Branching
   in cationic chain polymerization ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¤ÀªK
   in graft polymerization ±µªK»E¦X¤ÏÀ³¤§¤ÀªK
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§¤ÀªK
   in step polymerization ³v¨B»E¦X¤ÏÀ³¤§¤ÀªK
   molecular weight distribution in ¤ÀªK¤§¤À¤l¶q¤À§G
Branching coefficient ¤ÀªK«Y¼Æ
Branching density ¤ÀªK±K«×
Breaking Extension ¯}Ãa©µ¦ù
  function
Breaking Factor ¯}Ãa¦]¯À
Breather  ³z®ð¥¬
Breather ply ³z®ð¥¬¡A¤@¯ë¬O¬Á¼þÅÖºû¥¬©Î¦X¦¨ÅÖºû¥¬¡A¬O¥Î¨ÓÅý¹w®û®Æ¦bµw¤Æ¹Lµ{¤¤Åý´§
µo¥÷©ÎªÅ®ð¶h¥X
Breathing  ³z®ð
Bridying
Brittle  ¯Ü©Êªº
Broad good  ½s´ªº¬ÁÅÖ¡A½s´ªº¤H³yÅÖºû
B-scan B±½ºË¡A¤@ºØÀË´ú½Æ§÷¤º³¡¯Ê³´¤§«D¯}Ãa©ÊÀË´ú¤è¦¡
B-stage B-¶¥¬q¡G§Y¼ö©T©Ê¾ð¯×¹w¥ý±±¨î¬Y ½è¤§µw¤Æ¡A¨Ï¾ð¯×¸û¨ãÂH«×¡A¦bµw¤Æ¹L
µ{¤¤¤£¦]¥[À£¦Ó¨Ï¾ð¯×¤j¶q¬y¥¢
B-stage polymer B¶¥¬q¤§»E¦Xª«¡AB¶¥¬q¤§°ª¤À¤l
Bubble ®ðªw
Buckling  ®À¦±¡A½Æ§÷¥ó¨ü¤O®É¡AÅÖºûÅs¦±©Î²æ¼h¤§²{¶H
Building Block testing 
Bulk density ®e¿n±K«×¡A°ï¿n±K«×
Bulk Factor ®e¿n¦]¯À
Bulk Modulus ¾ãÅé¼Ò¼Æ
image
Bulk polymerization ®e¿n»E¦X¤ÏÀ³
Bundle strength  ¾ã®¹±j«×¡A¾ã§ô±j«×
Burned ¿U¿N
Burn-off ¿NºÉ
Burst pressure  ¯}µõÀ£¤O
Burst strength ¼¹µõ±j«×
Bushing  ¶bŨ¡A®MºÞ
Butt joint  ºÝÂI·f±µ
Butt Wrap ¦hºÝÄñ¶
Bypass load ¨±°j­t¸ü
Bypass stress ¨±°jÀ³¤O
Carbon ºÒ¡A¤@ºØ«Dª÷Äݤ¸¯À¡A¤¸¯À²Å¸¹¬°C¡A¦s¦b©ó¦ÛµM¬Éªº¦³C12¡AC13¡AC14µ¥¤T
ºØ¡Aµ´¤j³¡¥÷¬°C12
Carbon fiber reinforced ºÒÅÖºû±j¤Æ
Carbon/ Carbon ºÒ / ºÒ½Æ¦X§÷®Æ¡A¤@ºØ­@°ª·Å¤§½Æ¦X§÷®Æ¡A¥Ø«e¥Î©ó­¸¾÷¤§«b¨®¤ù¤Î¤ÓªÅ±ô
¤§«e½t¡B»óÀ@¸n¤Î¤ÞÀº¥~´ßµ¥
Carbonization  ºÒ¤Æ¤ÏÀ³¡AºÒ¤Æ
Carbonyl polymerization æó°ò»E¦X¤ÏÀ³
   by ionic chain reaction ÂÇ¥ÑÂ÷¤lÃì¤ÏÀ³¤§æó°ò»E¦X¤ÏÀ³
   by radical chain reaction ÂǥѦۥѰò¤ÏÀ³¤§æó°ò»E¦X¤ÏÀ³
   by step reaction Âǥѳv¨B¤ÏÀ³¤§æó°ò»E¦X¤ÏÀ³
CARE-MOLD
Carothers equation ³v¨B»E¦X°ª¤À¤l¥æ³s¤§¥dù¯À¤èµ{¦¡
     -experimental results for ³v¨B»E¦X°ª¤À¤l¡]»E¦Xª«¡^¥æ³s¤§¹êÅçµ²ªG
     -molecular weight distribution in  ³v¨B»E¦X°ª¤À¤l¥æ³s¤§¤À¤l¶q¤À§G
     -statistical approach
     -technology of ³v¨B»E¦X»E¦Xª«¥æ³s¤§§Þ³N
Carpet plot  ¦a´à¦¡­pµe
Carpet plots
Catalyst IJ´C¡A¶Ê¤Æ¾¯
Catastropic Failure ¿EÅܪº¯}Ãa¡A¥¼¥i¹wª¾ªº¯}Ãa
Catenary  ««¦±½u
Cationic chain polymerization  ¶§Â÷¤lÃì»E¦X¤ÏÀ³
   of acrolein ¤þ²mîǤ§¶§Â÷¤lÃì»E¦X¤ÏÀ³
   of carbonyl monomer æó°ò³æÅ餧¶§Â÷¤lÃì»E¦X¤ÏÀ³
   chain transfer in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§ÃìÂಾ
   comparison with radical reaction ¶§Â÷¤lÃì»E¦X¤ÏÀ³»P¦Û¥Ñ°ò¤ÏÀ³¤§¤ñ¸û
   of diazoalkane ­«´áÖJÄݤ§¶§Â÷¤lÃì»E¦X¤ÏÀ³
   effect of electric field in  ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¹q³õ®ÄÀ³
   effect of gegen-ion in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¡]¡H¡^
   effect of solvent in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§·»¾¯®ÄÀ³
   effect of temperature in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§·Å«×®ÄÀ³
   inhibition in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§°_©l¤ÏÀ³
   Kinetics of ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   molecular weight of ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¤À¤l¶q
   propagation in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¥Íªø¡]Ác´Þ¡^
   pseudocationic reaction in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§ÀÀ¶§Â÷¤l¤ÏÀ³
   rate constants in ¶§Â÷¤lÃì»E¦X¤ÏÀ³³t²v±`¼Æ
   termination in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§²×¤î¡]¤ÏÀ³¡^
Cationic coordination polymerization  ¶§Â÷¤l°t¦ì»E¦X¤ÏÀ³
Cationic ring-opening polymerization ¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   copolymerization ¶§Â÷¤l¶}Àô»E¦X¤§¦@»E¦X¤ÏÀ³
   of cyclic acetals and formals Àôª¬ÁYîÇ»P¥ÒîǤ§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclic amides Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -equilibrium polymerization in Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤§¥­¿Å¤ÏÀ³
     -initiation of Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤§°_©l¤ÏÀ³
     -molecular weight in Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¤À¤l¶q
     -thermodynamics of Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¼ö¤O¾Ç
   of cyclic amines  Àôª¬Ói¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
of cyclic esters Àôª¬à­¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclic ethers Àôª¬îŤ§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -back-biting ring-expansion in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¤Ï¨ëÀô¿±µÈ
     -chain transfer in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§ÃìÂಾ
     -energetics of Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
     -equilibrium polymerization in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§¥­¿Å»E¦X¤ÏÀ³
     -initiation of Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§°_©l¤ÏÀ³
     -Kinetics of Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
     -rate constants in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§¤ÏÀ³³t²v±`¼Æ
     -termination in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§²×¤î¤ÏÀ³
   of cyclic sulfide Àôª¬²¸¤Æª«¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclosilazanes ÀôÖº®òÖJ¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclosiloxanes ÀôÖº®ñÖJ¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of imino cyclic compounds ¨È®ò°òÀôª¬¤Æ¦Xª«¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
Caul   ºô½¤
Caul plate ºôªO¡B»\ªO¡C¤@¥­¾ã¤§ª÷ÄݪO¥Î¥H±µÄ²¿n¼h¡A¨Ï¿n¼h¦bµw¤Æ¹Lµ{¤¤±o¨ì§¡¤Ã¤§
À£¤O»P±j«×
Cavity  ¥Þ
CCRF §YCarbon or graphite cloth reinforced plastic¤§Â²ºÙ¡A·N§YºÒÅÖºû¥¬©Î¥Û¾¥ÅÖ
ºû¥¬±j¤Æ¶ì½¦
Ceiling temperature ¤ÑªáªO·Å«×¡A¤W­­·Å«×
Cellulose  ÅÖºû¯À
   reactions of ÅÖºû¯À¤§¤ÏÀ³
   structure of ÅÖºû¯À¤§µ²ºc
Cellulose triacetate ¤T¾L»ÄÅÖºû¯À
Centerless Grinding ½VÀ£
Centrifugal Casting Â÷¤ß©ßű
Ceramic  ³³²¡
Certification  »{ÃÒ¡AÃÒ©ú
CFRP Carbon or graphite fiber reinforced plastic¤§Â²ºÙ¡A§YºÒÅÖºû©Î¥Û¾¥ÅÖºû±j¤Æ¶ì½¦
CFRTP Carbon or graphite fiber reinforced Thermoplastic¤§Â²ºÙ¡A§YºÒÅÖºû©Î¥Û¾¥
ÅÖºû±j¤Æ¼ö¶ì©Ê¶ì½¦
Chain copolymerization Ãì¦@»E¦X¤ÏÀ³
   by anionic reaction Âdz±Â÷¤l¤ÏÀ³¤§Ãì¦@»E¦X¤ÏÀ³
   of carbonyl monomer æó°ò³æÅ餧Ãì¦@»E¦X¤ÏÀ³
   of cationic reaction ÂǶ§Â÷¤l¤ÏÀ³¤§Ãì¦@»E¦X¤ÏÀ³
   of coordination catalysts  Âǰt¦ìIJ´C§@¥Î¤§Ãì¦@»E¦X¤ÏÀ³
   copolymerization equation in Ãì¦@»E¦X¤ÏÀ³¤§¦@»E¦X¤èµ{¦¡
   crosslinking by  ¸gÃì¦@»E¦X¤ÏÀ³¤§¥æ³s§@¥Î
   of dienes ¤G²m¤§Ãì¦@»E¦X¤ÏÀ³
     -crosslinking in ¤G²m¤§Ãì¦@»E¦X¤ÏÀ³¤§¥æ³s§@¥Î
     -cyclopolymerization in ¤G²m¤§Ãì¦@»E¦X¤ÏÀ³¤§Àô»E¦X
   microstructure of copolymer Ãì¦@»E¦X¤ÏÀ³¤§¦@»E¦Xª«·Lµ²ºc
   multi-component ¦h¦¨¤ÀÃì¦@»E¦X¤ÏÀ³
   by radical reaction  ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³
     -of miscellaneous monomers ¦UºØ³æÅéÂǦۥѰò¤ÏÀ³¤§Ãì¦@»E¦X¤ÏÀ³
     -monomer and radical reactivities in ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³ªº³æÅé©M¦Û¥Ñ°òªº¤ÏÀ³©Ê
     -rate of ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³³t²v
   types of behavior in ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -alternating  ¥æ´À¦¡Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -azeotropic ¦@ªm²V¦Xª«Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -block ¶ôª¬Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -consecutive ³sÄò¦¡Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -ideal ²z·QªºÃì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -stereoblock ¥ßÅé¶ôª¬Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
   utility of Ãì¦@»E¦X¤ÏÀ³¤§¹ê¥Î©Ê
Chain initiation     Ãì°_©l
   in anionic polymerization ³±Â÷¤l»E¦X¤ÏÀ³¤§Ãì°_©l
     -effect of temperature on ³±Â÷¤l»E¦X¤ÏÀ³Ãì°_©l¤§·Å«×®ÄÀ³
     -by election transfer ³±Â÷¤l»E¦XÂǹq¤lÂಾ¤§Ãì°_©l
     -by metal alkyls ³±Â÷¤l»E¦XÂǥѪ÷ÄÝÖJ°ò¤§Ãì°_©l
     -by metal amides ³±Â÷¤l»E¦XÂǥѪ÷ÄÝñQÓi¤§Ãì°_©l
   in cationic polymerization ¶§Â÷¤l»E¦X¤§Ãì°_©l
     -effect of temperature on ¶§Â÷¤l»E¦XÃì°_©l¤§·Å«×®ÄÀ³¡]©Î¡^·Å«×¹ï¶§Â÷¤l»E¦XÃì°_©l¤§¼vÅT
     -by Lewis acids ¶§Â÷¤l»E¦XÂǥѸô©ö¤ó»Ä¤§Ãì°_©l
     -by protonic acids ¶§Â÷¤l»E¦XÂǥѽè¤l»Ä¤§Ãì°_©l
   in emulsion polymerization ¨Å¤Æ»E¦X¤§Ãì°_©l
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤ÏÀ³¤§Ãì°_©l
     -activation energies for ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§¬¡¤Æ¯à
     -definition of ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§·N¸q
     -effect of autoacceleration on ¦Û°Ê¥[³t¹ï¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§¼vÅT
     -effect of pressure ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§À£¤O®ÄÀ³
     -initiator efficiency in ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§°_©l¾¯®Ä²v
     -by ionizing radiation ¦Û¥Ñ°ò»E¦X¤ÏÀ³ÂǥѹqÂ÷¤Æ·Ó®g¤§Ãì°_©l
     -Kinetics of ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§°Ê¤O¾Ç
     -photochemical ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¥ú¤Æ¾Ç
     -purely thermal ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§¯Â¼ö
     -redox ¦Û¥Ñ°ò¡]¡H¡^
     -thermal catalyzed Ã즨ªø
Chain length Ãìªø
Chain propagation
   in anionic polymerization ³±Â÷¤l»E¦X¤ÏÀ³¤§Ã즨ªø
     -effect of reaction conditions on ¤ÏÀ³±ø¥ó¹ï³±Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¼vÅT
     -rate constants for  ³±Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¤ÏÀ³³t²v±`¼Æ
   in cationic polymerization  ¶§Â÷¤l»E¦X¤ÏÀ³¤§Ã즨ªø
     -effect of gegen-ion on gegen-ion¹ï¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¼vÅT
     -effect of solvent on ·»¾¯¹ï¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¼vÅT¡]©Î¡^¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§·»¾¯®ÄÀ³
     -isomerization in ¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§²§ºc¤Æ
     -monomer reactivity in ¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§³æÅ鬡©Ê
   in emulsion polymerization ¨Å¤Æ»E¦X¤§Ã즨ªø
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤§Ã즨ªø
     -activation parameters for ¦Û¥Ñ°ò»E¦XÃ즨ªø¤§¬¡¤Æ°Ñ¼Æ
     -definition of ¦Û¥Ñ°ò»E¦XÃ즨ªø¤§©w¸q
     -effect of substituents on ­l¥Íª«¹ï¦Û¥Ñ°ò»E¦XÃ즨ªø¤§¼vÅT
     -rate constants for ¦Û¥Ñ°ò»E¦XÃ즨ªø¤§³t²v±`¼Æ
Chain scission Ãì¤ÁÂ_
Chain segment Ãì¤Àµõ¡AÃì¤À³Î
Chain termination  Ãì²×¤î¡]§@¥Î¡^
   in anionic polymerization ³±Â÷¤l»E¦X¤§Ãì²×¤î
     -effect of temperature on ³±Â÷¤l»E¦XÃì²×¤î¤§·Å«×®ÄÀ³¡]©Î¡^·Å«×¹ï³±Â÷¤l»E¦XÃì²×¤î¤§¼vÅT
     -non-termination
   in cationic polymerization ¶§Â÷¤l»E¦X¤ÏÀ³¤§Ãì²×¤î
     -by chain transfer ¶§Â÷¤l»E¦X¤ÏÀ³ÂÇÃìÂಾ¤§Ãì²×¤î
     -effect of temperature on ·Å«×¹ï¶§Â÷¤l»E¦X¤§Ãì²×¤î¤§¼vÅT
     -non-termination of Kinetic chain
     -termination of Kinetic chain
   in emulsion polymerization ¨Å¤Æ»E¦X¤ÏÀ³¤§Ãì²×¤î
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§Ãì²×¤î
     -activation parameters for ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§¬¡¤Æ°Ñ¼Æ
     -definition of ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§©w¸q
     -diffusion-control of ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§ÂX´²±±¨î
     -effect of conversion on ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§Âà¤Æ®ÄÀ³
     -rate constants for ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§³t²v±`¼Æ
Chain transfer ÃìÂಾ
   in cationic polymerization ¶§Â÷¤l»E¦X¤ÏÀ³¤§ÃìÂಾ
   in emulsion polymerization ¨Å¤Æ»E¦X¤§ÃìÂಾ
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤§ÃìÂಾ
     -activation parameters for ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§¬¡¤Æ°Ñ¼Æ
     -applications of ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§À³¥Î
     -back-biting self-transfer in ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§¤Ï¨ë¦Û¨­Âಾ
     -branching by ¤ÀªKÂǥѦۥѰò»E¦X¤§ÃìÂಾ
     -chain transfer agents ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§ÃìÂಾ¾¯
     -chain transfer constants ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§ÃìÂಾ±`¼Æ
     -degradative transfer ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§µõ¸ÑÂಾ
     -effect on molecular weight and rate ¦Û¥Ñ°ò»E¦XÃìÂಾ¹ï¤À¤l¶q¤Î¤ÏÀ³³t²v¤§¼vÅT
     -to initiator
     -to monomer
     -to polymer
     -to solvent
     -structure and reactivity in
Chain transfer agent ÃìÂಾ¾¯
Chain transfer constant ÃìÂಾ±`¼Æ
Chainstitch  ÃìÁ_¦X¡A§Y¥HÅÖºû±Nªþ¤~¿n¼hÁ_¦X¦b¤@°_¡A¦PLock stitch
Chalking  ¥Õ°îª¬
Characteristic length ¯S©wªºªø«×
Charge  ¥R¹q¡A¸ü¹B
Chase  ¯BÀJ¡A¥´ªá¯¾
Chember system  ¦¨§Î¿µ¨t²Î¡C¥¼¦¨¤Æ¤§½Æ§÷¥Í®Æ©Îµ²ºc¥ó¡A¸m©ó¯uªÅ¦¨§Î°y¤º©Î¿µ¤º¡A¦¹¿µ¥i
¥[¼ö¤Î¥[À£¡A½Æ§÷¨Ì¦¨§Î¶g´Á¦b¿µ¤º§¹¦¨µw¤Æµ{§Ç
Chemical vapor deposition  ¤Æ¾Ç»]Áá
Chill  §N«o
Chopped fibers µuªº©Î­é¸HªºÅÖºû
Circuit  ¨µ°j¸ô½u¡A¨±¸ô