| ²é¿´: 750 | »Ø¸´: 11 | ||||
| µ±Ç°Ö÷ÌâÒѾ´æµµ¡£ | ||||
[½»Á÷]
³£Ó÷ÖÎö»¯Ñ§´Ê»ã
|
||||
|
³£Ó÷ÖÎö»¯Ñ§´Ê»ã ²£Á§Â©¶· Glass funnel long stem ÊÔ¹Ü test tube test tube brush test tube holder test tube rack Õô·¢Ãó evaporating dish small ÉÕ± beaker ×¶ÐÎÆ¿ Erlenmeyer Á¿Í² grad cylinder Ï´Æ¿ plastic wash bottle É×Ãó casserole ,small stoppered flask ·ÖҺ©¶· separalory funnel warter bath/oil bath strring bar magnetic stirrer ÀäÄýÆ÷ condenser Ballast bottle Ô²¾±ÉÕÆ¿ Round-bottom flask ÊÔ¼ÁÆ¿ reagent bottles ÍÐÅÌÌìÆ½ platform balance ̨³Ó 0.1g ÍÐÅÌpan Ö¸Õë¿Ì¶È±ípointer and scale crossbeams and sliding weights ÓÎÂë ·ÖÎöÌìÆ½ two-pan/single-pan analytical balance µÎ¶¨¹Ü burette glass bead(basic) nozzle ÒÆÒº¹Ü pipette ÅÖ¶Ç elongated glass bulb Ï´¶úÇò rubber suction bulb ²£°ô glass rod ²£Á§»îÈû stopcock ÈÝÁ¿Æ¿ pyknowmeter flasks ±ÈÖØÆ¿ (one-mark)volumetric flasks ÅÖ¶ÇÎü¹Ü one-mark pipette ¿Ì¶ÈÎü¹Ü graduated pipettes ×¶ÐÎÆ¿(conical flask) 250ml¡Á4 Ò©³×(medicine spoon)¡Á1 (Erlenmeyer flask) 100 ml¡Á3 µÎ¹Ü(drip tube;dropper)¡Á2 ÉÕ±(beaker) 500 ml¡Á1 ²£°ô(Glass stic)¡Á2 250 ml¡Á3 ľÊԹܼÐ(test tube clamp;test tube holder)¡Á1 100 ml¡Á3 ÅÖ¶ÇÎü¹Ü(straws) 25 ml¡Á1 50 ml¡Á2 10 ml¡Á1 ÈÝÁ¿Æ¿(volumetric flask) 100 ml¡Á2 Èé²§(morta)¡Á1 50 ml¡Á4 Ï´¶úÇò(ear washing bulb) µâÁ¿Æ¿ (Iodine numoe flask; iodine flask) 500 ml¡Á3 ÊÔ¼ÁÆ¿ (reagent bottle) £¨ÎÞÉ«£©¡Á2 £¨×ØÉ«£©¡Á2 ÅäÏ´Òº£º Á¿Í²£¨cylinder£© 100 ml¡Á1 K2Cr2O72g+5mlË®¡ú65mlH2SO4 (graduated cylinder)10ml¡Á1 ±ß¼Ó±ß½Á°è(stir)¡£ ÌúÖ§¼Ü(siderocradle)+ºûµû¼Ü °×´É°å(White Porcelain Board ) £¨Ò»£©ÇåµãÒÇÆ÷(to count;to make an inventory) ËáʽµÎ¶¨¹Ü(Acid burette) 25 ml¡Á1 ÅäÏ´Òº (Lotion) ¼îʽµÎ¶¨¹Ü(Alkali burette)25 ml¡Á1 Ò»°ãÒÇÆ÷µÄÏ´µÓ Ö±ÐÍÀäÄýÆ÷(rectocondensor)¡Á1 ÈÝÁ¿Æ¿(volumetric flask) ©¶·¼Ü (funnel stand) ¡Á2 ÒÆÒº¹Ü(pipe) ˮԡ¹ø(water bath kettle) ¡Á1 ζȼÆ(Thermometer;hygrometer;hydroscope) ¡Á1 µç¯(electric furnace;electric hot plate;electric stove) ËÄÈËÒ»¸ö ·ÖÎö»¯Ñ§£ºanalytical chemistry ¶¨ÐÔ·ÖÎö£ºqualitative analysis ¶¨Á¿·ÖÎö£ºquantitative analysis ÎïÀí·ÖÎö£ºphysical analysis ÎïÀí»¯Ñ§·ÖÎö£ºphysico-chemical analysis ÒÇÆ÷·ÖÎö·¨£ºinstrumental analysis Á÷¶¯×¢Éä·ÖÎö·¨£ºflow injection analysis£»FIA ˳Ðò×¢Éä·ÖÎö·¨£ºsequentical injection analysis;SIA »¯Ñ§¼ÆÁ¿Ñ§£ºchemometrics ¾ø¶ÔÎó²î£ºabsolute error Ïà¶ÔÎó²î£ºrelative error ϵͳÎó²î£ºsystematic error ¿É¶¨Îó²î£ºdeterminate error Ëæ»úÎó²î£ºaccidental error ²»¿É¶¨Îó²î£ºindeterminate error ׼ȷ¶È£ºaccuracy ¾«È·¶È£ºprecision Æ«²î£ºdebiation£¬d ƽ¾ùÆ«²î£ºaverage debiation Ïà¶Ôƽ¾ùÆ«²î£ºrelative average debiation ±ê׼ƫ²î£¨±ê×¼²î£©£ºstanderd deviation;S Ïà¶Ôƽ¾ùÆ«²î£ºrelatibe standard deviation;RSD ±äÒìϵÊý£ºcoefficient of variation Îó²î´«µÝ£ºpropagation of error ÓÐЧÊý×Ö£ºsignificant figure ÖÃÐÅˮƽ£ºconfidence level ÏÔÖøÐÔˮƽ£ºlevel of significance ºÏ²¢±ê׼ƫ²î£¨×éºÏ±ê×¼²î£©£ºpooled standard debiation ÉáÆúÉÌ£ºrejection quotient ;Q µÎ¶¨·ÖÎö·¨£ºtitrametric analysis µÎ¶¨£ºtitration ÈÝÁ¿·ÖÎö·¨:volumetric analysis »¯Ñ§¼ÆÁ¿µã£ºstoichiometric point µÈµ±µã£ºequivalent point µçºÉƽºâ£ºcharge balance µçºÉƽºâʽ£ºcharge balance equation ÖÊÁ¿Æ½ºâ£ºmass balance ÎïÁÏÆ½ºâ£ºmaterial balance ÖÊÁ¿Æ½ºâʽ£ºmass balance equation Ëá¼îµÎ¶¨·¨£ºacid-base titrations ÖÊ×Ó×Եݷ´Ó¦£ºautoprotolysis reaction ÖÊ×Ó×Եݳ£Êý£ºautoprotolysis constant ÖÊ×ÓÌõ¼þʽ:proton balance equation Ëá¼îָʾ¼Á£ºacid-base indicator ָʾ¼Á³£Êý£ºindicator constant ±äÉ«·¶Î§£ºcolour change interval »ìºÏָʾ¼Á£ºmixed indicator ˫ָʾ¼ÁµÎ¶¨·¨£ºdouble indicator titration ·ÇË®µÎ¶¨·¨£ºnonaqueous titrations ÖÊ×ÓÈܼÁ£ºprotonic solvent ËáÐÔÈܼÁ£ºacid solvent ¼îÐÔÈܼÁ£ºbasic solvent Á½ÐÔÈܼÁ:amphototeric solvent ÎÞÖÊ×ÓÈܼÁ£ºaprotic solvent ¾ù»¯Ð§Ó¦£ºdifferentiating effect Çø·ÖÐÔÈܼÁ£ºdifferentiating solvent Àë×Ó»¯£ºionization Àë½â£ºdissociation ½á¾§×Ï£ºcrystal violet ÝÁ·Ó±½¼×´¼: ¦Á-naphthalphenol benzyl alcohol ¿üÄÄऺ죺quinadinered °ÙÀï·ÓÀ¶£ºthymol blue żµª×Ï£ºazo violet äå·ÓÀ¶£ºbromophenol blue ÅäλµÎ¶¨·¨£ºcompleximetry ÒÒ¶þ°·ËÄÒÒË᣺ethylenediamine tetraacetic acid,EDTA òüºÏÎchelate compound ½ðÊôָʾ¼Á£ºmetal lochrome indcator Ñõ»¯»¹ÔµÎ¶¨·¨£ºoxidation-reduction titration µâÁ¿·¨£ºiodimetry äåÁ¿·¨£ºbromimetry ] äåÁ¿·¨£ºbromine method îæÁ¿·¨£ºcerimetry ¸ßÃÌËá¼Ø·¨£ºpotassium permanganate method Ìõ¼þµçλ£ºconditional potential äåËá¼Ø·¨£ºpotassium bromate method ÁòËáîæ·¨£ºcerium sulphate method Æ«¸ßµâË᣺metaperiodic acid ¸ßµâËáÑΣºperiodate ÑÇÏõËáÄÆ·¨£ºsodium nitrite method ÖØµª»¯·´Ó¦£ºdiazotization reaction ÖØµª»¯µÎ¶¨·¨£ºdiazotization titration ÑÇÏõ»ù»¯·´Ó¦£ºnitrozation reaction ÑÇÏõ»ù»¯µÎ¶¨·¨£ºnitrozation titration Íâָʾ¼Á£ºexternal indicator Íâָʾ¼Á£ºoutside indicator ÖØ¸õËá¼Ø·¨£ºpotassium dichromate method ³ÁµíµÎ¶¨·¨£ºprecipitation titration ÈÝÁ¿µÎ¶¨·¨£ºvolumetric precipitation method ÒøÁ¿·¨£ºargentometric method ÖØÁ¿·ÖÎö·¨£ºgravimetric analysis »Ó·¢·¨£ºvolatilization method Òýʪˮ£¨Êª´æË®£©£ºwater of hydroscopicity °üÂñ(²Ø)Ë®£ºoccluded water ÎüÈëË®£ºwater of imbibition ½á¾§Ë®£ºwater of crystallization ×é³ÉË®£ºwater of composition Òº-ÒºÝÍÈ¡·¨£ºliquid-liquid extration ÈܼÁÝÍÈ¡·¨£ºsolvent extration ·´ÝÍÈ¡£ºcounter extraction ·ÖÅäϵÊý£ºpartition coefficient ·ÖÅä±È£ºdistribution ratio Àë×Ó¶Ô£¨Àë×ÓµÞºÏÎ£ºion pair ³ÁµíÐÎʽ£ºprecipitation forms ³ÆÁ¿ÐÎʽ£ºweighing forms ÎïÀí·ÖÎö£ºphysical analysis ÎïÀí»¯Ñ§·ÖÎö£ºphysicochemical analysis ÒÇÆ÷·ÖÎö£ºinstrumental analysis µç»¯Ñ§·ÖÎö£ºelectrochemical analysis µç½â·¨£ºelectrolytic analysis method µçÖØÁ¿·¨£ºelecttogravimetry ¿âÂØ·¨£ºcoulometry ¿âÂØµÎ¶¨·¨£ºcoulometric titration µçµ¼·¨£ºconductometry µçµ¼·ÖÎö·¨£ºconductometric analysis µçµ¼µÎ¶¨·¨£ºconductometric titration µçλ·¨£ºpotentiometry Ö±½Óµçλ·¨£ºdirext potentiometry µçλµÎ¶¨·¨£ºpotentiometric titration ·ü°²·¨£ºvoltammetry ¼«Æ×·¨£ºpolarography Èܳö·¨£ºstripping method µçÁ÷µÎ¶¨·¨£ºamperometric titration »¯Ñ§Ë«µç²ã£ºchemical double layer Ïà½çµçλ£ºphase boundary potential ½ðÊôµç¼«µçλ£ºelectrode potential »¯Ñ§µç³Ø£ºchemical cell Òº½Ó½çÃæ£ºliquid junction boundary Ôµç³Ø£ºgalvanic cell µç½â³Ø£ºelectrolytic cell ¸º¼«£ºcathrode Õý¼«£ºanode µç³Øµç¶¯ÊÆ£ºeletromotive force ָʾµç¼«£ºindicator electrode ²Î±Èµç¼«£ºreference electroade ±ê×¼Çâµç¼«£ºstandard hydrogen electrode Ò»¼¶²Î±Èµç¼«£ºprimary reference electrode ±¥ºÍ¸Ê¹¯µç¼«£ºstandard calomel electrode Òø£ÂÈ»¯Òøµç¼«£ºsilver silver-chloride electrode Òº½Ó½çÃæ£ºliquid junction boundary ²»¶Ô³Æµçλ£ºasymmetry potential ±í¹ÛPHÖµ£ºapparent PH ¸´ºÏPHµç¼«£ºcombination PH electrode Àë×ÓÑ¡Ôñµç¼«£ºion selective electrode Ãô¸ÐÆ÷£ºsensor ¾§Ìåµç¼«:crystalline electrodes ¾ùÏàĤµç¼«£ºhomogeneous membrance electrodes ·Ç¾ùÏàĤµç¼«£ºheterog eneous membrance electrodes ·Ç¾§Ìåµç¼«£ºnon- crystalline electrodes ¸ÕÐÔ»ùÖʵ缫£ºrigid matrix electrode Á÷Á÷ÌåÔØ¶¯µç¼«£ºelectrode with a mobile carrier ÆøÃôµç¼«£ºgas sensing electrodes øµç¼«£ºenzyme electrodes ½ðÊôÑõ»¯Îï°ëµ¼Ì峡ЧӦ¾§Ìå¹Ü£ºMOSFET Àë×ÓÑ¡Ôñ³¡Ð§Ó¦¹Ü£ºISFET ×ÜÀë×ÓÇ¿¶Èµ÷½Ú»º³å¼Á£ºtotal ion strength adjustment buffer,TISAB ÓÀÍ£µÎ¶¨·¨£ºdead-stop titration Ë«µçÁ÷µÎ¶¨·¨£¨Ë«°²ÅàµÎ¶¨·¨£©£ºdouble amperometric titration ÆÕÀʿ˳£Êý£ºPlank constant µç´Å²¨Æ×£ºelectromagnetic spectrum ¹âÆ×£ºspectrum ¹âÆ×·ÖÎö·¨£ºspectroscopic analysis Ô×Ó·¢Éä¹âÆ×·¨£ºatomic emission spectroscopy ÖÊÁ¿Æ×£ºmass spectrum ÖÊÆ×·¨£ºmass spectroscopy,MS ×ÏÍ⣿ɼû·Ö¹â¹â¶È·¨£ºultraviolet and visible spectrophotometry;UV-vis ¼ç·å£ºshoulder peak Ä©¶ËÎüÊÕ£ºend absorbtion ÉúÉ«ÍÅ£ºchromophore ÖúÉ«ÍÅ£ºauxochrome ºìÒÆ£ºred shift ³¤ÒÆ£ºbathochromic shift ¶ÌÒÆ£ºhypsochromic shift À¶£¨×Ï£©ÒÆ£ºblue shift ÔöɫЧӦ£¨Å¨É«Ð§Ó¦£©£ºhyperchromic effect ¼õɫЧӦ£¨µÉ«Ð§Ó¦£©£ºhypochromic effect Ç¿´ø£ºstrong band Èõ´ø£ºweak band ÎüÊÕ´ø£ºabsorption band ͸¹âÂÊ£ºtransmitance,T Îü¹â¶È£ºabsorbance Æ×´ø¿í¶È£ºband width ÔÓÉ¢¹â£ºstray light ÔëÉù£ºnoise °µÔëÉù£ºdark noise É¢Á£ÔëÉù£ºsignal shot noise ÉÁÒ«¹âÕ¤£ºblazed grating ȫϢ¹âÕ¤£ºholographic graaing ¹â¶þ¼«¹ÜÕóÁмì²âÆ÷£ºphotodiode array detector Æ«×îС¶þ³Ë·¨£ºpartial least squares method ,PLS ñ޺ϹâÆ×·¨£ºconvolution spectrometry ñ޺ϱ任£ºconvolution transform,CT ÀëɢС²¨±ä»»£ºwavelet transform,WT ¶à³ß¶Èϸ»¯·ÖÎö£ºmultiscale analysis ¹©µç×ÓÈ¡´ú»ù£ºelectron donating group Îüµç×ÓÈ¡´ú»ù£ºelectron with-drawing group Ó«¹â£ºfluorescence Ó«¹â·ÖÎö·¨£ºfluorometry X-ÉäÏßÓ«¹â·ÖÎö·¨£ºX-ray fulorometry Ô×ÓÓ«¹â·ÖÎö·¨£ºatomic fluorometry ·Ö×ÓÓ«¹â·ÖÎö·¨£ºmolecular fluorometry Õñ¶¯³ÚÔ¥£ºvibrational relexation ÄÚת»»£ºinternal conversion Íâת»»£ºexternal conversion Ìåϵ¼ä¿çÔ½£ºintersystem crossing ¼¤·¢¹âÆ×£ºexcitation spectrum Ó«¹â¹âÆ×£ºfluorescence spectrum ˹ÍпËË¹Î»ÒÆ£ºStokes shift Ó«¹âÊÙÃü£ºfluorescence life time Ó«¹âЧÂÊ£ºfluorescence efficiency Ó«¹âÁ¿×Ó²úÂÊ£ºfluorescence quantum yield Ó«¹âϨÃ𷨣ºfluorescence quemching method É¢Éä¹â£ºscattering light ÈðÀû¹â£ºReyleith scanttering light ÀÂü¹â£ºRaman scattering light ºìÍâÏߣºinfrared ray,IR ÖкìÍâÎüÊÕ¹âÆ×£ºmid-infrared absorption spectrum,Mid-IR Ô¶ºìÍâ¹âÆ×£ºFar-IR ΢²¨Æ×£ºmicrowave spectrum,MV ºìÍâÎüÊÕ¹âÆ×·¨£ºinfrared spectroscopy ºìÍâ·Ö¹â¹â¶È·¨£ºinfrared spectrophotometry Õñ¶¯ÐÎʽ£ºmode of vibration ÉìËõÕñ¶¯£ºstretching vibration ¶Ô³ÆÉìËõÕñ¶¯£ºsymmetrical stretching vibration ²»¶Ô³ÆÉìËõÕñ¶¯£ºasymmetrical stretching vibration ÍäÇúÕñ¶¯£ºbending vibration ±äÐÎÕñ¶¯£ºformation vibration ÃæÄÚÍäÇúÕñ¶¯:in-plane bending vibration,¦Â ¼ôʽÕñ¶¯£ºscissoring vibration,¦Ä ÃæÄÚÒ¡°ÚÕñ¶¯£ºrocking vibration,¦Ñ ºË´Å¹²Õñ£ºnuclear magnetic resonance,NMR ºË´Å¹²Õñ²¨Æ×£ºNMR spectrum ºË´Å¹²Õñ²¨Æ×·¨£ºNMR spectroscopy ɨ³¡£ºswept field ɨƵ£ºseept frequency Á¬Ðø²¨ºË´Å¹²Õñ£ºcontinuous wave NMR,CW NMR Fourier±ä»»NMR£ºPFT-NMR,FT-NMR ¶þάºË´Å¹²ÕñÆ×£º2D-NMR ÖÊ×Ӻ˴ʲÕñÆ×£ºproton magnetic resonance spectrum,PMR ÇâÆ×£º1H-NMR ̼£13ºË´Å¹²ÕñÆ×£º13C-NMR spectrum,13CNMR ×ÔÐý½Ç¶¯Á¿£ºspin angular momentum |
» ÊÕ¼±¾ÌûµÄÌÔÌûר¼ÍƼö
ºÃÊ飡 |
» ²ÂÄãϲ»¶
¿¼Ñи´ÊÔµ÷¼Á£¬¹ý¹ú¼ÒÏßµÄͬѧ¶¼¿É±¨Ãû
ÒѾÓÐ5È˻ظ´
085600 Ó¢Ò»Êý¶þ272Çóµ÷¼Á
ÒѾÓÐ13È˻ظ´
Àíѧ£¬¹¤Ñ§£¬Å©Ñ§µ÷¼Á£¬ÉÙ×ßÍä·£¬ÕâÀï»¶ÓÄú£¡
ÒѾÓÐ5È˻ظ´
½ÓÊÕµ÷¼Á
ÒѾÓÐ7È˻ظ´
Ò»Ö¾Ô¸»ªÄÏÀí¹¤´óѧ²ÄÁÏÓ뻯¹¤326·Ö£¬Çóµ÷¼Á
ÒѾÓÐ3È˻ظ´
290Çóµ÷¼Á
ÒѾÓÐ5È˻ظ´
Ç廪´óѧ ²ÄÁÏÓ뻯¹¤ 353·ÖÇóµ÷¼Á
ÒѾÓÐ4È˻ظ´
²ÄÁÏ284Çóµ÷¼Á£¬Ò»Ö¾Ô¸Ö£ÖÝ´óѧӢһÊý¶þר˶
ÒѾÓÐ12È˻ظ´
»¯Ñ§£¬²ÄÁÏ£¬»·¾³ÀàÇóµ÷¼Á
ÒѾÓÐ3È˻ظ´
²ÄÁÏ»¯¹¤µ÷¼Á
ÒѾÓÐ14È˻ظ´
» ±¾Ö÷ÌâÏà¹ØÉ̼ÒÍÆ¼ö: (ÎÒÒ²ÒªÔÚÕâÀïÍÆ¹ã)
![]() |
2Â¥2006-06-02 18:35:53
0.25
|
3Â¥2006-06-02 18:50:46
hxie70
½ð³æ (СÓÐÃûÆø)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ½ð±Ò: 855.7
- Ìû×Ó: 55
- ÔÚÏß: 48·ÖÖÓ
- ³æºÅ: 152773
- ×¢²á: 2006-01-02
- ÐÔ±ð: MM
- רҵ: ÉúÎïÖÆÒ©
4Â¥2006-06-02 19:21:45
D.Fisher
ľ³æ (СÓÐÃûÆø)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ½ð±Ò: 3552.3
- Ìû×Ó: 298
- ÔÚÏß: 168.2Сʱ
- ³æºÅ: 207408
- ×¢²á: 2006-03-04
- ÐÔ±ð: GG
- רҵ: Ò©¼Áѧ
5Â¥2006-06-05 16:51:19
hongbing
Ìú³æ (³õÈëÎÄ̳)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ½ð±Ò: 39.2
- Ìû×Ó: 47
- ÔÚÏß:
- ³æºÅ: 224458
- ×¢²á: 2006-03-22
- רҵ: »¯Ñ§
6Â¥2006-06-05 21:23:06
naoy
ľ³æ (ÕýʽдÊÖ)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ½ð±Ò: 2701.7
- É¢½ð: 50
- ºì»¨: 1
- Ìû×Ó: 918
- ÔÚÏß: 39.8Сʱ
- ³æºÅ: 176929
- ×¢²á: 2006-02-05
- רҵ: ÖÐÒ©ÖÆ¼Á

7Â¥2006-06-05 21:42:22
shich68
ľ³æ (ÖøÃûдÊÖ)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ¹ó±ö: 1.56
- ½ð±Ò: 3359.4
- ºì»¨: 3
- Ìû×Ó: 2104
- ÔÚÏß: 26.5Сʱ
- ³æºÅ: 240956
- ×¢²á: 2006-04-09
- ÐÔ±ð: GG
- רҵ: Ò©ÎïѧÆäËû¿ÆÑ§ÎÊÌâ
8Â¥2006-06-05 22:17:40
mfx
ľ³æ (Ö°Òµ×÷¼Ò)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ½ð±Ò: 7229
- Ìû×Ó: 4155
- ÔÚÏß: 21.1Сʱ
- ³æºÅ: 205165
- ×¢²á: 2006-03-03
- רҵ: »·¾³ÎÛȾ»¯Ñ§
9Â¥2006-09-22 04:00:28
10Â¥2006-09-22 07:32:11













»Ø¸´´ËÂ¥



30