$B:G=*99?7F|;~!'(B2018-02-12 17:39:01
tabulated chemistry (1$B7o(B) | ||||
---|---|---|---|---|
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-76 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
963 | $B%(%?%s$NG.J,2r$KBP$9$k(Btabulated chemistry$B$NE,MQ@-(B | SY-76 | tabulated chemistry detailed kinetic mechanism pyrolysis | 6/18 21:38:32 |
taste (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
881 | $BL#3P;I7c:^$NEjM?$K$h$k%"%a%U%i%7F,ItCf?u?@7P1~EzJQ2=$N7V8wKlEE0L%$%a!<%8%s%0$K$h$k4Q;!(B | SY-70 | neuroscience imaging taste | 6/18 11:33:51 |
Taylor-Couette Flow (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-55 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
432 | $B%F%$%i!<%/%&%'%C%HN.$l$K$*$1$k%]%j%^! | SY-54 | Taylor-Couette Flow Polymer Solution Drag Reduction | 6/15 17:28:00 |
921 | $B%F%$%i! | SY-55 | Taylor-Couette flow shear-thinning fluid heat transfer | 6/18 17:26:46 |
TBAB/CO2 Double Hydrate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-56 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
502 | TBAB/CO2$B%@%V%k%O%$%I%l!<%H$N8G(B-$B8GAjE>0\$*$h$S7k>=@8@.FC@-(B | SY-56 | TBAB/CO2 Double Hydrate Solid-Solid Phase Change Generation Characteristic | 6/16 10:59:06 |
TCE decomposition (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-65 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
293 | $BHsG.J?9U%W%i%:%^H?1~4o$rMQ$$$?(BTCE$BJ,2r$KBP$9$kEE6K>r7o$N1F6A(B | SY-65 | nonthermal plasma TCE decomposition electrode configuration | 6/14 16:17:41 |
TEC (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-78 (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
28 | [$B4pD49V1i(B] $BDc@~KDD%F<$a$C$-$NFC@-$H;v6H2=(B | SY-78 | Copper Electrodeposition TEC | 5/21 13:15:15 |
30 | $BDc@~KDD%F<$a$C$-$N<}=L%a%+%K%:%`(B | SY-78 | Copper electrodeposition TEC | 5/21 13:44:46 |
Technology assessment (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-67 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
485 | [$BE8K>9V1i(B] $B5;=Q$N4D6-Ii2Y:o8:%]%F%s%7%c%k$rB,$k$K$O(B:$B:#$HL$Mh$r1G$9>pJsE}9g%"%W%m!<%A(B | SY-67 | Technology assessment Consumer behavior Environmental impact | 6/16 09:37:53 |
technology innovation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SV-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
938 | [$B>7BT9V1i(B] $B86NAB?MM2=;~Be$N3W?7E*2=3X%W%m%;%9$NE8K>(B | SV-1 | chemical process diverse chemical sources technology innovation | 6/18 19:06:58 |
temperature cycling (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-81 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
475 | $B0eLtIJ86Lt$NN3EY$HN3;R7A>u$NF1;~@)8f(B | SY-81 | particle size particle shape temperature cycling | 6/16 07:32:29 |
Temperature-responsive polymer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-79 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
453 | $B29EY1~Ez@-$rM-$9$k<'@-5[Ce:`$N(BCs$B%$%*%s5[Ce$H9b8{G[<'5$J,N%K!$X$N1~MQ(B | SY-79 | Temperature-responsive polymer Adsorbent High-gradient magnetic separation | 6/15 19:10:58 |
tensile property (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-51 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
148 | Polytetrahydrofuran/glycerol propoxylate(Mn=1500)$B%V%l%s%I$N?d?JLt%P%$%s%@!<$X$N1~MQ(B | SY-51 | tensile property thermal decomposition propellant binder | 6/9 16:53:40 |
Ternary (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-51 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
210 | $BJ,;RF0NO3XK!$K$h$k(B3$B@.J,7O(BLennard-Jones$BN.BN$N5$1UJ?9U$N7W;;$*$h$S3hNL78?t%b%G%k$N8!F$(B | SY-51 | Activity coefficients model Ternary Molecular dynamics simulation | 6/13 13:59:46 |
tetracene (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-22 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
944 | $BD6NW3&N.BNCf$K$*$1$kMO2rEY$N29EY0MB8@-$rMxMQ$7$?%F%H%i%;%s$N@=Kl(B | ST-22 | supercritical fluid tetracene deposition | 6/18 19:47:32 |
Tetracene thin films (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-80 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
961 | $BFs;@2=C:AG$rMQ$$$?D6NW3&MOBN5^B.KDD%K!$K$h$k%F%H%i%;%sGvKlBO@Q%a%+%K%:%`$N2rL@(B | SY-80 | RESS Supercritical carbon dioxide Tetracene thin films | 6/18 21:31:50 |
The sugar chain cluster effect (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-61 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
529 | $B%]%j%^!<%V%i%7E|%/%i%9%?!<$K$h$k%?%s%Q%/ | SY-61 | radiation-induced graft polymerization Polymer brush The sugar chain cluster effect | 6/16 12:01:12 |
Theophylline microparticles (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-22 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
955 | $B%,%9K0OBMOBNJ.L84%AgK!$K$h$k%F%*%U%#%j%sHyN3;RAO@=$KBP$9$k1UE)4%Ag5sF0$N1F6A(B | SY-75 | PGSS-SD Theophylline microparticles Drying behavior | 6/18 21:20:02 |
1006 | $B%,%9K0OBMOBNJ.L84%AgK!$K$h$k%F%*%U%#%j%sHyN3;RAO@=$KBP$9$kMO1U$H(BCO2$B$N:.9gIt$N1F6A(B | ST-22 | PGSS-SD Supercritical carbon dioxide Theophylline microparticles | 6/19 02:07:46 |
Therapeutic Drug Monitoring (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-29 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
867 | $BJ,;R%$%s%W%j%s%H9bJ,;R8GDj%0%i%U%!%$%H%Z!<%9%HEE6K$rMQ$$$?7lCfLt:^%;%s%5$N3+H/(B | ST-29 | Molecularly Imprinted Polymer Therapeutic Drug Monitoring Paste Electrode | 6/18 10:05:43 |
Thermal conductivity (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-80 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
19 | $BB?9&=BN$NG.J*@-$NM}O@E*$*$h$S | SY-80 | Porosity Thermal conductivity Mullite | 5/15 20:29:54 |
Thermal Conductivity Analysis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-56 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
672 | $BG.EAF32r@O$K$*$1$kMWAG7A>u$,2r@O@:EY$*$h$S2r@O;~4V$K5Z$\$91F6A(B | SY-56 | Polyhedral Mesh Finite Volume Method Thermal Conductivity Analysis | 6/16 18:03:12 |
Thermal decomposition (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-51 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
148 | Polytetrahydrofuran/glycerol propoxylate(Mn=1500)$B%V%l%s%I$N?d?JLt%P%$%s%@!<$X$N1~MQ(B | SY-51 | tensile property thermal decomposition propellant binder | 6/9 16:53:40 |
423 | $B8GBN9bJ,;R7AG3NAEECS$KMQ$$$kC:AG?(G^@=K!$N8!F$(B | SY-64 | PEFC Carbon catalyst Thermal decomposition | 6/15 17:02:13 |
Thermal desorption (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-58 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
794 | $BCfDc29GQG.8;$rM-8zMxMQ$7$?%<%*%i%$%H$+$i$N9bG;EYCbAG;@2=J*$NC&Ce(B | SY-58 | Nitrogen Oxides Thermal desorption zeolite | 6/17 15:19:39 |
Thermal energy storage (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-24 (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
538 | Ni$BC4;}%^%$%/%m%+%W%;%k(BPCM$B$N?(G^@-G=D4::(B | ST-24 | Thermal energy storage Phase change material Catalyst | 6/16 12:07:20 |
545 | 500$B!nD69b29G.8;MxMQ$N$?$a$N(BPCM$B%3%s%]%8%C%H$N3+H/(B | ST-24 | Thermal energy storage Phase change material High temperature | 6/16 12:21:04 |
Thermal energy utilization (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-76 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
162 | Li$B7OJ#9g;@2=J*$N(BCO2$B$H$NH?1~@-I>2A(B | SY-76 | Carbon dioxide Capture and Storage Chemical heat storage Thermal energy utilization | 6/12 09:55:21 |
Thermal Management Fluid (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-54 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
897 | $B;@2=%0%i%U%'%s$N5!3#E*J4:U$K$h$kGmN%8zN(8~>e$HEAG.N.BN$X$N1~MQ(B | SY-54 | Graphene Oxide Mechanical Grinding Thermal Management Fluid | 6/18 14:21:37 |
Thermal Marangoni Effect (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
51 | $B%(%s%H%m%T!<@8@.$K4p$E$/Hs@~7A8=>]$NAj9=B$2r@O(B | ST-21 | Entropy Production Thermal Marangoni Effect Nonlinear Phenomena | 6/1 17:02:15 |
Thermal plasma (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HQ-15 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
1010 | $BG.%W%i%:%^$rMQ$$$?%J%N:`NA$NBgNL@=B$ | HQ-15 | Thermal plasma Nanoparticles Multiphase AC arc | 6/19 20:32:24 |
Thermal plasmas (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-25 (3$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
460 | $BGQ4~J*J,2r$KMQ$$$k%j%s%07?M[6K$N%m%s%0(BDC$B%"!<%/$K$*$1$k%W%i%:%^%8%'%C%HFC@-(B | ST-25 | Thermal plasmas High-speed camera PFC decomposition | 6/15 20:18:55 |
461 | Ar-N2$B%"!<%/Cf$N%?%s%0%9%F%s1"6K8=>]$K5Z$\$9E:2C;@2=J* | ST-25 | Thermal plasmas Electrode erosion doped oxide | 6/15 20:22:09 |
751 | $BB?Aj8rN.%"!<%/$rMQ$$$?;@2=J*%J%NN3;R@8@.%W%m%;%9Cf$NA06nBN>x5$$NF0E*5sF0(B | ST-25 | Thermal plasmas High-speed visualization Nanoparticle | 6/16 21:41:44 |
Thermal Power Generation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-85 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
283 | [$B0MMj9V1i(B] $BH/EE;v6H$K$*$1$k(BNOx$BGS=PBP:v(B | SY-85 | Energy Mix Thermal Power Generation Low NOx Combustion | 6/14 14:46:07 |
Thermal storage (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-56 (2$B7o(B), SY-76 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
480 | $BC_G.:`N3;R= | SY-76 | Thermal storage Packed bed Vibration | 6/16 09:22:50 |
564 | $BDc29GQG.$rMxMQ2DG=$J5[Ce:`C_G.%7%9%F%`$N?tCM2r@O$K$h$kI>2A(B-$BBh(B2$BJs(B | SY-56 | thermal storage HAS-Clay adsorption | 6/16 13:48:48 |
577 | $BDc29GQG.$rMxMQ2DG=$J5[Ce:`C_G.%7%9%F%`$N | SY-56 | thermal storage HAS-Clay adsorption | 6/16 14:34:38 |
Thermal storage characteristic (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-24 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
1009 | $B%;%i%_%C%/%3%"%7%'%k9=B$BN$K$*$1$k%"%k%_%J$NmU | ST-24 | Radiation heat transfer Alumina Thermal storage characteristic | 6/19 17:48:21 |
Thermal storage material (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-24 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
677 | TBAB$B?eMO1U$KBP$9$k2aNd5QKI;_J* | ST-24 | Hydrate Supercooling Thermal storage material | 6/16 18:14:12 |
thermally induced phase separation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-62 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
359 | A novel preparation and fundamental characterization of polyamide 6 self-supporting hollow fiber membranes for OSN (organic separation nanofiltration) via TIPS process | SY-62 | polyamide 6 thermally induced phase separation hollow fiber membrane | 6/15 10:42:42 |
Thermo-physical Properties (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-56 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
7 | [$BM%=(O@J8>^(B] $BAjJQ2=C_G.G^BN(B($B;iKC;@(B)$B$NG.J*@-$H?eJ?L)JD6k7AMF4oFb$N<+A3BPN.G.EAC#(B | SY-56 | Phase Change Latent Heat Storage Natural Convection Heat Transfer Thermo-physical Properties | 5/8 16:02:41 |
thermogravimetric analysis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-28 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
829 | Solvent extraction and thermogravimetric analysis of crude oil from indigenous microalgae | ST-28 | Microalgae Crude oil extraction thermogravimetric analysis | 6/17 19:27:06 |
Thermophysical properties (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-51 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
331 | $BB?CJ7?AjJQ2=C_G.<0G.8r49%7%9%F%`8~$1C_G.:`(B($B;iKC;@(B)$B$NG.!&J*M}FC@-(B | SY-51 | Phase Change Material freezing temperature Thermophysical properties | 6/14 22:20:15 |
Thermoplastics (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-89 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
831 | $B;g30@~Nt2=$r@8$8$?G.2DA:@-%W%i%9%A%C%/$NNt2=7ABV$HD62;GH$K$h$kI>2A(B | SY-89 | UV Degradation Ultrasonic Technique Thermoplastics | 6/17 19:51:29 |
thermoresponsive polymer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-58 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
544 | $B4629@-%]%j%^!<(B/$B%^%0%M%?%$%H%J%NN3;RJ#9g:`$ND4@=$H=E6bB0%$%*%s2s<}$X$N1~MQ(B | SY-58 | thermoresponsive polymer magnetite nanoparticle heavy metal ions | 6/16 12:14:15 |
thermosensitive hydrogel (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-65 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
994 | $B29EY1~Ez@-%O%$%I%m%2%k$r?(G^C4BN$H$7$FMxMQ$7$?%K%H%m%9%A%l%s$N?eAG2=H?1~(B | SY-65 | thermosensitive hydrogel catalyst support nitrostyrene hydrogenation | 6/18 23:17:50 |
Thermosensitive polymer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-80 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
657 | $B>o29:nF07?J,;RG'<1%2!<%HKl$N3+H/(B | SY-80 | Ion gating membrane Thermosensitive polymer Ion recognition | 6/16 17:39:37 |
Thin film (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-62 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
330 | $B%"%_%N;@%$%*%s1UBN4^M-%2%kGvKl$N:n@=$H$=$N%,%9J,N%@-G=I>2A(B | SY-62 | Gas separation Thin film Ionic liquids | 6/14 22:12:07 |
thin palladium membrane (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-58 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
86 | $B;THN$N5e>u%7%j%+HyN3;R$rCf4VAX$H$7$FF3F~$7$?B?9& | SY-58 | thin palladium membrane porous stainless-steel tube commercial spherical silica particle | 6/6 15:31:03 |
Thin-film composite membrane (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-58 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
384 | Relating osmotic performance and pressure resistance of thin-film composite membranes to the properties of reinforcing non-woven fabrics | SY-58 | pressure retarded osmosis thin-film composite membrane aliphatic polyketone | 6/15 13:15:05 |
570 | $BM-5!MOG^BQ@-$rM-$9$k9bJ,;R7OJ#9gGvKl$N3+H/(B | SY-62 | Organic solvent filtration Thin-film composite membrane Polyamide active layer | 6/16 14:08:52 |
Third Phase (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
435 | $BAj4X0\F0?(G^H?1~%W%m%;%9$K$*$1$kBh;0Aj7A@.$X$ND62;GH>H | ST-21 | Phase Transfer Catalyst Third Phase Ultrasound Irradiation | 6/15 17:40:51 |
three-dimensional cell culture (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
807 | $B%0%i%U%H%]%j%^!<:?$rM-$9$k9bJ,;RN3;R$rMQ$$$?9bL)EY$J;0 | SY-70 | Monolith Grafted polymer particle three-dimensional cell culture | 6/17 16:08:05 |
three-phase flow model (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-55 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
614 | $B1UAjCf$N5$K"$KIUCe$9$k8GBNN3;R$N%@%$%J%_%/%9(B | SY-55 | froth flotation particle attachment three-phase flow model | 6/16 16:02:30 |
three-way catalyst (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-64 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
276 | Ni-Cu/Al2O3$B$N;085?(G^@-G=(B | SY-64 | three-way catalyst non-PGM Ni-Cu/Al2O3 | 6/14 13:48:21 |
TiAlN (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-26 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
367 | $BG.(BCVD$BK!$K$h$j9g@.$7$?(BTi1-xAlxN$BKl$N7k>=9=B$$N86NA%,%9J,050MB8@-(B | ST-26 | CVD TiAlN cutting tool | 6/15 11:19:12 |
Tin Dioxide (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-24 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
115 | $B;@2=%9%:$rMQ$$$??'AGA}46B@M[EECS$N@-G=I>2A(B | ST-24 | Tin Dioxide Dye-sensitized Solar Cell Maximum Output | 6/8 14:53:02 |
tin-copper (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-24 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
84 | $BEE@OK!$rMQ$$$?%J%H%j%&%`%$%*%sFs2A(B | ST-24 | tin-copper Na-ion battery negative electrode | 6/6 14:24:24 |
TiO2 (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-25 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
924 | $B%_%9%H86NA$rMQ$$$?%W%i%:%^%W%m%;%9$K$h$k;@2=%A%?%sGvKl$N7A@.(B | ST-25 | plasma process TiO2 mist source | 6/18 17:38:26 |
TiO2 Photocatalysis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-65 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
87 | $B%<%*%i%$%H$rAH$_9~$s$@B%?J;@2=AuCV$K$h$k(Bm-$B%"%_%N%U%'%N!<%k$NJ,2r=|5n(B | SY-65 | Advanced oxidation processes (AOP) TiO2 Photocatalysis Zeolite | 6/6 15:49:58 |
TIPS process (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-62 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
404 | The study on co-extrusion to tailor pore structure of PVDF hollow fiber membranes via TIPS process: the effect of solvents | SY-62 | Co-extrusion TIPS process PVDF hollow fiber membrane | 6/15 15:20:21 |
TIPS-Pentacene thin films (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-75 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
996 | RESS$BK!$K$h$k(BTIPS$B%Z%s%?%;%sGvKlBO@Q$KBP$9$k4pHD$NI=LL>uBV$H@_CV3QEY$N1F6A(B | SY-75 | RESS TIPS-Pentacene thin films Substrate surface conditions | 6/18 23:29:34 |
Tissue Engineering (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
116 | $BLSJq864p$rMQ$$$?H/LS:^%9%/%j!<%K%s%0%D!<%k$N3+H/(B | SY-70 | Hair regeneration Screening assay Tissue engineering | 6/8 14:53:17 |
257 | [$BE8K>9V1i(B] $B9b@E?e05=hM}$K$h$kC&:YK&2=@8BNAH?%$N3+H/$H$=$N0eNE1~MQ(B | SY-75 | Decellularization High-hydrostatic pressure Tissue Engineering | 6/14 10:08:40 |
911 | $B1U2=%8%a%A%k%(!<%F%k$rMQ$$$?@8BN:`NAAO@=(B | ST-22 | Decellularization Tissue Engineering dimethyl ether | 6/18 16:35:55 |
titanium (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-79 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
204 | Ti-CHA$B7?%<%*%i%$%H%J%NN3;R$N9g@.$*$h$SBQG.@-I>2A(B | SY-79 | zeolite chabazite titanium | 6/13 12:55:51 |
titanium dioxide (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-24 (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
548 | $B9bI=LL@Q%"%b%k%U%!%9;@2=%A%?%s%J%NN3;R$rMQ$$$?%A%?%s;@%j%A%&%`%J%NN3;R$N9g@.$HEE6KFC@-(B | ST-24 | Titanium dioxide Lithium titanate Lithium ion battery | 6/16 12:32:51 |
642 | Effect of nano-roughness of compacted TiO2 layer by using various precursors and deposition techniques on characteristics of perovskite solar cell | ST-24 | titanium dioxide Perovskite solar cell | 6/16 17:17:46 |
titanium oxide (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-75 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
197 | $B9b05NO5$1U3&LL%W%i%:%^$K$h$k(BTiO2/C$BJ#9g%J%NN3;R$N%o%s%9%F%C%W9g@.(B | SY-75 | plasma photocatalyst titanium oxide | 6/13 10:18:33 |
titanium precursor (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-22 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
539 | $BD6NW3&%>%k%2%kH?1~$K$h$j9g@.$7$?%A%?%K%"$N:.9gAj7k>=$K5Z$\$9A06nBN | ST-22 | supercritical sol-gel titanium precursor mixed-phase crystal | 6/16 12:08:55 |
Tk-SP (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
914 | $BD69%G.8E:Y6]M3Mh9ZAG(BTk-SP$B$N@.=O2=M^@)$K$h$kBgNLH/8=7O$N9=C[(B | SY-70 | Tk-SP maturation toxic protease | 6/18 17:01:06 |
tobermorite (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-75 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
259 | [$BE8K>9V1i(B] $B$=$N>l(BX$B@~2s@^$rMQ$$$??eG.2<$K$*$1$k%H%P%b%i%$%H@8@.2aDx$N2r@O(B | SY-75 | synchrotron in situ XRD tobermorite | 6/14 10:23:12 |
Top seeded solution growth (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-56 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
260 | $BM6F32CG.(BTSSG$BK!$K$h$k(BSiC$B7k>=@.D9;~$NLLFb@.D9B.EYJ,I[$K5Z$\$93F | SY-56 | Numerical Simulation Top seeded solution growth momentum, mass, and species transports | 6/14 10:41:26 |
toxic protease (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
914 | $BD69%G.8E:Y6]M3Mh9ZAG(BTk-SP$B$N@.=O2=M^@)$K$h$kBgNLH/8=7O$N9=C[(B | SY-70 | Tk-SP maturation toxic protease | 6/18 17:01:06 |
transcriptome analysis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
928 | $B%H%i%s%9%/%j%W%H!<%`2r@O$K4p$E$$$?@w?'BN0[?t@-$r;}$D93BN@8;:(BCHO$B:YK&$NFCD'E*$J%7%0%J%kEAC#7PO)(B | SY-70 | Chinese hamster ovary (CHO) cells chromosome aneuploidy transcriptome analysis | 6/18 17:47:51 |
Transdermal delivery (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-29 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
271 | $B@8BN9bJ,;R$NL}Cf%J%NJ,;62=5;=Q$rMxMQ$7$?7PHi%G%j%P%j!<$H7PHiLH1V(B | ST-29 | Drug delivery Transdermal delivery Emulsion | 6/14 13:02:05 |
transdermal vaccine (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
153 | $B%"%_%N;@E:2C(BS/O$B@=:^$rMxMQ$7$?7PHi%o%/%A%s$N3+H/(B | SY-70 | transdermal vaccine | 6/9 18:40:07 |
Transgenic chicken (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
723 | Evaluation of genome manipulation in egg white protein genes for generating transgenic hen | SY-70 | CRISPR/Cas9 Transgenic chicken genome manipulation | 6/16 19:50:18 |
transglutaminase (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-73 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
109 | $B%W%m%Z%W%A%IG[Ns$N2~JQ$K$h$k3h@-7?%H%i%s%9%0%k%?%_%J!<% | SY-73 | propetide transglutaminase zymogen | 6/7 23:25:20 |
transglycosylated material (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
431 | $B%-%5%s%A%s%*%-%7%?!<%<3h@-AK328z2L$r;}$D5F2VCj=PJ*$r4^M-$9$k?eJ,;6@-J4Kv$N:n@=(B | SY-70 | transglycosylated material spray-drying chrysanthemum flower oil | 6/15 17:23:38 |
Translation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-77 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
280 | [$B0MMj9V1i(B] Guidelines for Risk Based Process Safety$BK]Lu(BWG$B?JD=$H:#8e(B | SY-77 | Process Safety Management Risk Based Process Safety Translation | 6/14 14:29:00 |
translation control (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-74 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
36 | $BG[Ns%G!<%?%Y!<%92#CG2r@O$K4p$E$/%?%s%Q%/ | SY-74 | upstream open reading frame bioinformatics translation control | 5/25 18:44:30 |
Transport Scientific Approach (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
63 | $B= | ST-21 | Packed Distillation Column Transport Scientific Approach Mass Transfer Resistance | 6/5 13:12:26 |
Transrational-orientational coupling behavior (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-84 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
438 | $B1U>=EyJ}Aj$K$*$1$kE:2CJ*:.9g7O$G$NJB?JG[8~7k9g5sF0$N:F8!F$(B | SY-84 | Transrational-orientational coupling behavior | 6/15 18:03:52 |
trehalose (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
934 | Tret1$BF3F~(BCHO$B:YK&$NG]M\$K$*$1$k%H%l%O%m!<%9$rMQ$$$?93BN$N6E=8M^@)%a%+%K%:%`(B | SY-70 | Chinese hamster ovary (CHO) cells antibody aggregation trehalose | 6/18 18:23:26 |
trehalose ester (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
890 | $B%j%Q!<%<$r?(G^$H$9$k%H%l%O%m!<%9$N%"%7%k2=H?1~$K$*$1$k%"%7%k6!M?4p | SY-70 | lipase-catalyzed synthesis trehalose ester triglyceride | 6/18 13:14:28 |
trench (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-26 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
942 | CVD$B%H%l%s%AKd9~%W%m%;%9$N%^%k%A%9%1!<%k2r@O$H%7%_%e%l!<%7%g%s(B | ST-26 | CVD trench Multiscale | 6/18 19:33:41 |
triblock copolymers (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-84 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
54 | $B%$%*%s2M66@-%H%j%V%m%C%/%3%]%j%^!<%2%k$N3+H/(B | SY-84 | triblock copolymers hydrogels ionic cross-linking | 6/1 20:17:32 |
triblock-copolymer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-22 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
945 | $B%H%j%V%C%m%/%3%]%j%^! | ST-22 | self-emulsification triblock-copolymer solubility | 6/18 19:58:56 |
triglyceride (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-70 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
890 | $B%j%Q!<%<$r?(G^$H$9$k%H%l%O%m!<%9$N%"%7%k2=H?1~$K$*$1$k%"%7%k6!M?4p | SY-70 | lipase-catalyzed synthesis trehalose ester triglyceride | 6/18 13:14:28 |
TSA (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-61 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
978 | $B5?;w0\F0AX%5%$%/%k$G:nF0$9$k29EY%9%$%s%05[Ce(B(TSA)$B$NFC@-(B | SY-61 | Gas separation TSA SMB cycle | 6/18 22:26:08 |
Tungsten oxide (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-87 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
789 | $B%"%_%N;@$r3hMQ$7$?%?%s%0%9%F%s$N9b8zN(2s<}$H:F;q8;2=(B | SY-87 | Precipitation Recovery of rare metal Tungsten oxide | 6/17 14:53:45 |
Tuning fork vibro viscometer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-53 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
112 | $B2;:5?6F0<0G4EY7W$K$h$kJ4BNN.F0FC@-I>2A$N;n$_(B | SY-53 | Tuning fork vibro viscometer Powder Flowability | 6/8 14:43:16 |
Turbulence (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-54 (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
415 | PIV$B7WB,$N2sE>:BI8JQ49$K$h$k%i%7%e%H%s%?!<%S%s<~$j$NN.B.J,I[$NDjNL2=(B | SY-54 | turbulence fluid velocity PIV | 6/15 16:37:44 |
871 | [$BE8K>9V1i(B] $BYxYBN.$N%U%k%\%j%e!<%`(BPIV$B7WB,$K$h$kMpN.M"Aw5!9=$N2r@O(B | SY-54 | Turbulence PIV Stirred flow | 6/18 10:31:48 |
Turbulence intensity (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-76 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
909 | $BMp$l6/$5$*$h$SN3;RG;EY$,5e>u$KEAGE$9$kHyJ4C:2P1j$K5Z$\$91F6A(B | SY-76 | Coal combustion Coal concentration Turbulence intensity | 6/18 16:24:59 |
turbulent heat transfer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-56 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
64 | [$B>7BT9V1i(B] $B3$MNCO5e2J3X$K8+$i$l$kMpN.G.M"Aw8=>]$KBP$9$kBg5,LO?tCM2r@O(B | SY-56 | turbulent heat transfer CFD | 6/5 13:17:53 |
Turbulent Shear Rate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-52 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
16 | [$BM%=(O@J8>^(B] Shear-Induced Microbubble Generation at High Pressures | SY-52 | Bubble Size Distribution Shear Coalescence Turbulent Shear Rate | 5/12 19:40:50 |
Two step (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B ST-24 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
601 | $BG.2=3XE*?eJ,2r$NDc292=$N$?$a$N(B2$BCJ3,K!$NDs0F(B | ST-24 | Water splitting Two step Metallic oxide | 6/16 15:25:17 |
two-step synthesis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SY-79 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
661 | $BFsCJ3,$N29EY@)8f$K$h$k(BZSM-5$B%J%NN3;R$N9g@.(B | SY-79 | zeolite nano particle two-step synthesis | 6/16 17:44:22 |