$B:G=*99?7F|;~!'(B2018-09-07 21:29:01
N2 adsorption (1$B7o(B) | ||||
---|---|---|---|---|
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
306 | $BC1J,;6%J%NN3;R7|By1U$N@->u$,J.L84%Ag%J%NB?9&BN$N9=B$$K5Z$\$91F6A(B | 12-d | Silica nanoparticles N2 adsorption | 12/21 10:35:02 |
Na-ZSM-5 (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
407 | $B9b299b05?e>x5$$,(BNa-ZSM-5$BKl9=B$$KM?$($k1F6A(B | 4-a | Na-ZSM-5 steam stability membrane | 12/21 17:45:11 |
nano-particle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
81 | $B%J%NN3;R$NHyN32=$K8~$1$?%^%$%/%mGH$N3hMQK!!AIOMOG^8z2L$H5^B.2CG.$NAj>h8z2L!A(B | 12-d | nano-particle anti-solvent microwave | 12/14 13:20:28 |
nano-particles (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-k (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
574 | $BD62;GH>H | 12-k | ultrasound irradiation intercalation nano-particles | 12/22 14:00:19 |
nano-rods (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
113 | $BJ.L8G.J,2rK!$K$h$kO;J}>=(BWO3$B%J%N%m%C%I$N9g@.(B | 12-d | nano-rods spray pyrolysis tungsten oxide | 12/18 10:08:49 |
nanobubble (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
581 | $B%J%N%P%V%k$K$h$k%9%1!<%k$NKI;_$*$h$S=|5n(B | 13-a | nanobubble scale | 12/22 14:10:26 |
nanocapsule (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
228 | $B1UCf4%AgK!$rMQ$$$k6a@V30@~5[<}?'AG$r8GDj2=$7$?%J%N%+%W%;%k$NN37B@)8f$K4X$9$k8!F$(B | 12-d | nanocapsule near infrared ray absorbing dye solvent evaporation method | 12/20 15:46:33 |
nanocomposite (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
163 | $B%A%?%s;@%P%j%&%`%J%NN3;R$NJ#9g2=$K$h$kF)L@%J%N%3%s%]%8%C%H(BCNF$BGvKl$N9bM6EE2=(B | 12-i | cellulose nanofiber nanocomposite transparent | 12/19 11:31:28 |
Nanocomposite cathode (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-k (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
368 | $B0[$J$kC:AG8;$rMQ$$$?NU;@%3%P%k%H%j%A%&%`(B/$BC:AGJ#9gBN$N9g@.(B | 12-k | LiCoPO4 Nanocomposite cathode lithium ion batteries | 12/21 15:44:32 |
nanodispersion (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
710 | $B7P8}EjM?$K$*$1$k(BS/O$B@=:^$+$i$N9386=yJ|$H%o%/%A%s3+H/(B | 7-e | DDS oral vaccine nanodispersion | 12/22 18:18:12 |
Nanofiltration (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
174 | $B%-%l!<%HG[0L;R$rCr7?$H$9$k%J%NB?9&@-(BTiO2-ZrO2$BJ#9gKl$N:n@=$H@-G=I>2A(B | 4-a | Ceramic membrane Chelating ligand Nanofiltration | 12/19 14:47:51 |
428 | $BEE5$F)@OGS?eCf$N(B2$B2AM[%$%*%s$H(B2$B2A1"%$%*%s$rJ,N%$9$k?75,%J%N_I2aKl$N3+H/(B ($B?@8MBg1!2J5;%$%N%Y(B/$B@hC | 4-a | Nanofiltration Ion separation Polyamide | 12/21 18:59:44 |
nanofluids (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
571 | $BD6NW3&?eG.K!$K$h$j9g@.$7$?M-5!=$>~%J%NN3;R$NJ,;6@-(B | 12-d | dispersibility nanofluids | 12/22 13:51:55 |
nanogel (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
787 | $B29EYJQ2=$K1~Ez$7$F9bB.$+$DDc%(%M%k%.!<$G(BCO2$B$r2D5U5[<}$9$k%J%N%2%kC4;}BN$N3+H/(B | 4-d | nanogel CO2 separation energy efficiency | 12/22 22:47:23 |
Nanomaterials (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HQ-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
256 | [$B0MMj9V1i(B] $BD6NW3&K!$K$h$k%J%N:`NA$NJ,;6@)8f9g@.(B | HQ-21 | Supercritical Fluids Nanomaterials Dispersibility | 12/20 18:19:20 |
Nanoparticle (8$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (3$B7o(B), 8-e (2$B7o(B), 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
232 | $B?;F)05B,DjK!$K$h$k%J%NN3;R%9%i%j!<$NJ,;6!&6E=8>uBVI>2A$*$h$S%J%NJ#9g:`NA$X$N1~MQ(B | 12-d | nanoparticle osmotic pressure slurry | 12/20 16:14:59 |
385 | $BJ,;R%$%s%W%j%s%H%J%NN3;R$HJ,;R%$%s%W%j%s%H%0%i%U%H%+!<%\%s%Z!<%9%HEE6K$N1~Ez@-$NHf3S8!F$(B | 7-e | Molecullarly imprinted polymer Nanoparticle Specific interaction | 12/21 16:47:14 |
389 | $BM-5!=$>~%J%NN3;R$rMQ$$$?Fs857O5,B'9=B$$N7A@.(B | 12-c | nanoparticle binary system ceria | 12/21 16:58:23 |
404 | $BIOMOG^E:2CK!$K$h$k8wA}46:^IuF~M-5!H>F3BN%]%j%^!<%J%NN3;R$N9g@.(B | 12-d | nanoparticle photosensitizer organic semiconductor polymer | 12/21 17:41:45 |
533 | $B0!NW3&?eG.9g@.K!$rMQ$$$?M-5!=$>~(BBi2O3$B%J%NN3;R$N:n@=$H(BX$B@~8!=P$N1~MQ(B | 8-e | Nanoparticle subcritical | 12/22 12:14:28 |
717 | $B%J%NN3;R$N:YK&KlF)2a$K$*$1$k3&LLEE5$8=>]$NJ,;RF0NO3X2r@O(B | 12-d | nanoparticle cell membrane interfacial electric phenomena | 12/22 18:36:12 |
719 | $BD6NW3&N.BN4^?;K!$K$h$k(BPd-Ru$BJ#9gN3;R$N9g@.(B | 8-e | Pd-Ru Supercritical CO2 nanoparticle | 12/22 18:39:44 |
745 | $B29OB$J>r7o2<$G%"%_%I$r4T85$9$k%P%$%a%?%k%J%NN3;R?(G^$N3+H/(B | 5-a | heterogeneous catalyst nanoparticle green chemistry | 12/22 19:28:54 |
nanoparticle permeation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
154 | $BJ#?t$N%J%NN3;R$N:YK&KlF)2a8=>](B:$BJ,;RF0NO3XK!$K$h$k2r@O(B | 12-a | nanoparticle permeation multiple nanoparticles external electric field | 12/18 19:13:34 |
nanoparticles (7$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (3$B7o(B), 13-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
173 | $BD6NW3&?eCf$K$*$1$kF)L@;@2=J*H>F3BN(BCuAlO2$B$NO"B3H?1~>=@O(B | 12-g | Supercritical water CuAlO2 Nanoparticles | 12/19 14:46:27 |
219 | $B%Q%s9ZJl$K$h$k%P%$%*%_%M%i%j% | 12-d | biomineralization palladium nanoparticles | 12/20 14:44:51 |
356 | Surfactant-Assisted Cementation for Recovery of Nanosized Copper from Acid Mine Drainage | 13-b | Cementation copper nanoparticles | 12/21 15:11:31 |
466 | $BD62;GH>H | 7-e | nanoparticles drug delivery ultrasound | 12/21 23:18:45 |
526 | $B?eG.9g@.K!$K$h$k(BNi@BaTiO3$B%3%"%7%'%k%J%NN3;R$N9g@.(B | 12-d | Hydrothermal synthesis Core-shell structure Nanoparticles | 12/22 11:54:09 |
567 | $B9ZJl:YK&$KBP$9$k%J%NN3;R$NIUCe!& | 12-d | Yeast cells Nanoparticles Flow cytometry | 12/22 13:44:55 |
640 | $BAj4V0\F0$r3h$+$7$?%J%NN3;R(B-$B%j%,%s%I4V$N5[Ce6/EY$N2D;k2=I>2A(B | 12-a | nanoparticles ligand exchange biphasic system | 12/22 15:46:21 |
nanostructure (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
11 | $B%]%jF};@$r%F%s%W%l!<%H$KMQ$$$?Cf6u%7%j%+HyN3;R$N1UAj9g@.(B | 12-c | hollow recovery nanostructure | 11/29 12:36:07 |
nanotubes (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 11-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
376 | $B%J%N%A%e!<%V$rMQ$$$?7ZNL!&=@Fp$JEECSEE6K!&%;%Q%l!<%?$N3+H/(B | 11-a | lithium ion buttery separator nanotubes | 12/21 16:11:16 |
National institute of technology (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HC-11 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
531 | [$B0MMj9V1i(B] $B9b@l$G$N8&5f3hF0!A5.6bB02s<}5;=Q$r%F!<%^$H$7$F(B | HC-11 | National institute of technology precious metal | 12/22 12:12:34 |
Natural convection (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
238 | $B?eJ?L)JD6k7AMF4oFb$KH/8=$9$k<+A3BPN.M"Aw8=>]$N?tCM%7%_%e%l!<%7%g%s(B | 2-a | Natural convection Transport phenomena Numerical simulation | 12/20 16:51:24 |
Natural rubber (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
759 | $B%4%`N3;R%?%s%Q%/ | 7-a | Natural rubber Rubber elongation factor Small rubber particle protein | 12/22 20:11:35 |
near infrared ray absorbing dye (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
228 | $B1UCf4%AgK!$rMQ$$$k6a@V30@~5[<}?'AG$r8GDj2=$7$?%J%N%+%W%;%k$NN37B@)8f$K4X$9$k8!F$(B | 12-d | nanocapsule near infrared ray absorbing dye solvent evaporation method | 12/20 15:46:33 |
Near-infrared spectra(NIR) (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
302 | $B6a@V30J,8wK!$rMQ$$$?%W%i%9%A%C%/H=JL | 6-f | Discriminant analysis Near-infrared spectra(NIR) Artificial neural network(ANN) | 12/21 10:22:23 |
NEDO (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
344 | [$B0MMj9V1i(B] $B%P%$%*%^%9E|2=MQ%;%k%i!<%<$N3+H/(B | SS-2 | cellulase biomass NEDO | 12/21 14:11:14 |
Nernst Potential (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
602 | $BHs?eMOG^$rMQ$$$?G;EY:9H/EE$K4X$9$k4pAC8&5f(B | 9-e | Electrodialysys-Reversal Nernst Potential Ion exchange Membrane | 12/22 14:44:57 |
neutron radiography (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
688 | $BCf@-;R%i%8%*%0%i%U%#$rMQ$$$?= | 2-a | neutron radiography heavy oil packed bed | 12/22 17:37:17 |
Ni catalyst (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
641 | $BB?9&@-%7%j%+$GHoJ$$5$l$?(BNi $BN3;R$"$k$$$O(BNi $BHD$+$i$N(BCNT$B@8@.(B | 5-h | carbon nanotube Ni catalyst silica coating | 12/22 15:50:23 |
Ni-Pt alloy (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
137 | Enhancement of hydrogen production via formic acid decomposition on carbon supported Pt-Ni alloy catalysts with high metal loading | 5-a | Ion-exchange resin Ni-Pt alloy formic acid decomposition | 12/18 15:26:58 |
Nickel catalyst (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
388 | Mg1-xNixAl2O4$B%9%T%M%kJ#9g;@2=J*$rMQ$$$?%a%?%s(BCO2$B2~ | 5-a | Magnesium aluminate spinel Nickel catalyst CO2 reforming | 12/21 16:52:49 |
nickel powder (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
96 | $B%R%I%i%8%s4T85K!$K$h$k%K%C%1%kN3;R9g@.$K$*$1$k%9%k%U%#%I2=9gJ*$N8z2L(B | 12-g | nickel powder hydrazine reduction sulfide compound | 12/15 11:35:48 |
NiMo catalyst, Boron (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
276 | Effect of boron and phosphor promoters on NiMo-based catalyst for hydrodeoxygenation of palm oil | 5-a | Vegetable oil Hydrodeoxygenation NiMo catalyst, Boron | 12/20 21:08:53 |
Nitrate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
231 | $BN.?eCf$KH/@8$5$;$?%W%i%:%^$K$h$k?e9L:OG]MQ1UHn$N@=B$$HMxMQ(B | 7-i | Flow system Water treatment Nitrate | 12/20 16:07:51 |
Nitrification (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
448 | $B;6?e$m>27?2K2=:Y6]J,I[(B | 13-b | Biofilm Nitrification Trickling Filter | 12/21 20:57:54 |
nitrogen monoxide (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
603 | $B%<%*%i%$%H$rMQ$$$?0l;@2=CbAG$N?(G^E*;@2=H?1~$NH?1~B.EY2r@O(B | 4-d | nitrogen monoxide zeolite reaction kinetics | 12/22 14:47:23 |
Nitrogen Reduction (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
714 | Influence of Cathode Structures on Ammonia Electrosynthesis with Proton-Conducting Solid Electrolyte Fuel Cells | 9-e | Cathode Electrode Ammonia Electrosynthesis Nitrogen Reduction | 12/22 18:24:43 |
Nitrogen Source (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
26 | Lactobacillus$BB0$N(B2$B | 7-g | Lactic Acid Fermentation Nitrogen Source Lactobacillus Genus | 12/6 14:48:51 |
Nitrous oxide reducing bacteria (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
425 | $B0!;@2=CbAG4T85:Y6]$NGS?e=hM}%7%9%F%`$X$NE,MQ$K$h$k29<<8z2L:o8:(B:$BJq3g8GDj2=%2%k$N8z2L(B | 13-a | Nitrous oxide reducing bacteria wastewater treatment process Gel immobilization | 12/21 18:52:21 |
NMR (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
517 | $B?eAG2=%[%&AG%J%H%j%&%`$N<<29$K$*$1$k%"%s%b%K%"5[B"(B/$BJ|=PFC@-$H$=$N%a%+%K%:%`2r@O(B | 9-e | Ammonia NMR Sodium borohydride | 12/22 11:31:44 |
NO (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
712 | Cu-ZSM-5$B%<%*%i%$%H7k>=Fb$K$*$1$k(BNO$B$H(BNH3$B$N3H;678?tB,Dj(B | 5-a | Intracrystalline diffusivity Cu-ZSM-5 NO | 12/22 18:20:35 |
Non Equilibrium Molecular Dynamics (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
362 | $BC:2=?eAGJ,N%$rBP>]$H$7$?(BMFI$B7?%<%*%i%$%H$K$*$1$kB?@.J,%,%9F)2a%b%G%k$N9=C[(B | 4-a | Zeolite membrane Non Equilibrium Molecular Dynamics Multicomponent gas | 12/21 15:32:23 |
non-adherent cells (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
424 | $B%R%I%m%2%k%I!<%`$rG[Ns$7$?IbM7:YK&%"%l%$$N3+H/(B | 7-i | cell array non-adherent cells hydrogel | 12/21 18:47:14 |
non-aqueous solvent (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
508 | Development of non-aqueous amine based absorbents for post-combustion CO2 capture | 4-d | amine absorbent non-aqueous solvent carbon dioxide | 12/22 11:12:31 |
Non-catalytic (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
538 | $B3h@-2=CbAG5$Aj!??eAj$NAj3&LLH?1~>l$K$*$1$kL5?(G^%"%s%b%K%"9g@.(B | 5-c | Plasma Ammonia Non-catalytic | 12/22 12:41:54 |
non-equilibrium heating (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
121 | $B%^%$%/%mGH6I=j2CG.$K$h$k1U1U3&LL$NFC0[8z2L(B | 1-a | microwave interfacial tension non-equilibrium heating | 12/18 12:26:59 |
Non-equilibrium molecular dynamics (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
693 | $B>xN1BeBX$rL\;X$7$?(BY$B7?%<%*%i%$%HKl$K$h$k5U?;F)J,N%$NJ,;R%7%_%e%l!<%7%g%s(B | 4-a | Reverse osmosis membrane zeolite-Y Non-equilibrium molecular dynamics | 12/22 17:40:33 |
Non-equimolar diffusion (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-j (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
204 | $B:Y9&Fb$K$*$1$kDjMF7O$G$NFs@.J,%,%9$NHsEy%b%k3H;68=>]$N2r@O(B | 4-j | Gas diffusion Graham's law Non-equimolar diffusion | 12/20 08:23:28 |
Non-freezing Water (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
371 | $BJ,;RF0NO3XK!$K$h$k9bJ,;R:`NAI=LL$NCf4V?e!&ITE`?e$NDjNL2=(B | 4-a | Intermediate Water Non-freezing Water Molecular Dynamics | 12/21 15:51:33 |
non-linear (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-m (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
665 | $B:.9g>uBV$N?dDj!>2=3X?6F0H?1~$+$i$N%"%W%m!<%A(B- | 12-m | BZ reaction mixing non-linear | 12/22 16:50:25 |
Non-linear phenomena (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-m (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
462 | $B%^%i%s%4%K8z2L6nF07?$N%Z%s%?%N!<%k1UE)1?F0@)8f$N8!F$(B | 12-m | Marangoni Non-linear phenomena Spontaneous motion | 12/21 22:22:09 |
non-Newtonian fluid (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
600 | $BHs%K%e!<%H%sN.BN7O$K$*$1$k%F%$%i! | 2-a | Taylor-Couette flow non-Newtonian fluid Heat transfer | 12/22 14:38:48 |
765 | $BHs%K%e!<%H%sN.BN$rMQ$$$?%R%H(BiPS$B:YK&$N@{2sMc%U%j! | 7-a | Human induced pluripotent stem cells mass production non-Newtonian fluid | 12/22 20:34:50 |
Non-spherical Particles (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
249 | $B@E?e05B,DjK!$rMQ$$$?Hs5e7AN3;R%9%i%j!<$NJ,;6!&6E=8>uBVI>2A(B | 2-f | Hydrostatic Pressure Non-spherical Particles Slurry | 12/20 17:42:25 |
Noncompetitive homogeneous immunoassay (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
319 | NanoLuc$B$rMxMQ$7$?(B3$BJ,;R4V(BPCA$B86M}$K4p$E$/Hs6%9gLH1VB,Dj7O(B | 7-a | PCA Noncompetitive homogeneous immunoassay | 12/21 12:05:07 |
Nonequilibrium Molecular Dynamics (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
692 | $B@5?;F)Kl$K$*$1$kJ,;RF)2a$N%@%$%J%_%/%9(B | 4-a | Water Selective Membrane Nonequilibrium Molecular Dynamics Osmotic Pressure | 12/22 17:40:13 |
Nonionic-surfactant vesicle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
514 | $BM6EEJ,;62r@O$K$h$k(BSpan/Tween$B7O%Y%7%/%k$NIT6Q0l9=B$$NI>2A(B | 7-i | Dielectric dispersion Nonionic-surfactant vesicle Self-assemblies | 12/22 11:27:14 |
nonlinear phenomenon (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HQ-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
119 | [$B0MMj9V1i(B] $BHs@~7A8=>]$H2=3X9)3X(B | HQ-21 | nonlinear phenomenon autonomous motion self-organization | 12/18 11:30:18 |
norfloxacin (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
566 | Cocrystal formation with norfloxacin using carbon dioxide switchable system | 4-g | cocrystal carbon dioxide switchable system norfloxacin | 12/22 13:44:29 |
normal force (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HC-11 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
350 | [$B0MMj9V1i(B] $B%l%*%m%8! | HC-11 | lipstick rheology normal force | 12/21 14:40:38 |
NOx gas (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
246 | $B9b29(BNOx$B%,%9$K$h$k$mI[$NNt2=FC@-(B | 2-f | Filter media NOx gas Tensile strength | 12/20 17:35:20 |
Nuclear expression (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
565 | Generation of transgenic Chlamydomonas reinhardtii by site-specific modification of nuclear genome | 7-d | Nuclear expression Cre-loxP Chlamydomonas reinhardtii | 12/22 13:43:12 |
Nucleation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
294 | $B@8BNFb$K$*$1$k>=@O8=>]$H@O=P7k>=$N@->u(B | 12-g | Biomineraklization Crystal growth Nucleation | 12/21 08:32:39 |
Nucleation Promoting (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
490 | $BA^F~$7$?6bB0K@:`$K$h$k1v2=%+%k%7%&%`(B6$B?e1vM;1U$N3K2=M6F3(B | 12-g | Supercooled Melt Nucleation Promoting Solid Contact | 12/22 10:02:40 |
nucleolar stress (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
363 | $B3K>.BN%9%H%l%91~Ez$,M6F3$9$k:YK&O72=$K4X$9$k4pACE*8&5f(B | 7-d | nucleolar stress sell senescence multinucleate cell | 12/21 15:34:29 |
Numerical analysis (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
3 | $BFs2A(B | 2-b | Mixing Streak line Numerical analysis | 11/17 16:56:32 |
771 | $B5e7AHyN3;R6E=8BN$N05=L6/EY$N?tCM2r@O(B | 12-d | compression strength aggregate numerical analysis | 12/22 21:11:56 |
Numerical calculation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
44 | $B9bEE>l$K$*$1$k%3%m%$%I$NHs@~7AEE5$1KF0(B | 2-a | Electrophoresis High electric fields Numerical calculation | 12/11 11:39:12 |
Numerical simulation (9$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 3-a (3$B7o(B), 12-h (2$B7o(B), 2-a (2$B7o(B), 2-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
25 | $B9bB.YxYB$K$h$k%&%k%H%i%U%!%$%s%P%V%k7A@.%a%+%K%:%`2rL@$N$?$a$N?tCM7W;;(B | 2-e | Ultrafine Bubble Lattice Boltzmann Method Numerical Simulation | 12/6 13:08:12 |
238 | $B?eJ?L)JD6k7AMF4oFb$KH/8=$9$k<+A3BPN.M"Aw8=>]$N?tCM%7%_%e%l!<%7%g%s(B | 2-a | Natural convection Transport phenomena Numerical simulation | 12/20 16:51:24 |
381 | SiC$BMO1U@.D9$K$*$1$k$k$D$\%5%$%:5Z$S$k$D$\2sE>$N1F6A$K4X$9$k?tCM2r@O(B | 3-a | Numerical simulation Crystal growth Momentum, heat and mass transfer | 12/21 16:40:20 |
437 | $BD62;GH%-%c%S%F!<%7%g%sM3Mh$N2;6AN.$KBP$9$k?75,?tCM%b%G%k3+H/(B | 2-a | Acoustic streaming Numerical simulation Ultrasound | 12/21 19:48:49 |
441 | $B%"%k%_%K%&%`6E8G;~$KH/@8$9$k?eAG5$K"$N%@%$%J%_%/%9$KBP$9$k%b%G%k3+H/(B | 3-a | Euler-Lagrange coupling Solidification Numerical simulation | 12/21 20:14:59 |
543 | $B2=3XC_G.AuCV$K$*$1$kEAG.8=>]$N?tCM2r@O(B | 9-b | chemical heat storage numerical simulation magnesium hydroxide | 12/22 12:48:11 |
589 | $B%+!<%F%s%3!<%F%#%s%0$N?tCM%7%_%e%l!<%7%g%s(B | 12-h | Curtain coating Numerical simulation OpenFOAM | 12/22 14:19:22 |
752 | $BN3;R7O$N4%AgFC@-%b%G%k(B | 12-h | Colloidal suspension Drying rate Numerical simulation | 12/22 19:54:43 |
758 | $B%P%$%*%^%9 | 3-a | pyrolysis biomass Numerical simulation | 12/22 20:11:02 |
numerical study (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 3-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
328 | Numerical investigation for the effect of a static magnetic field on the improvement of SiC growth rate in the TSSG process | 3-a | TSSG numerical study static magnetic field | 12/21 12:53:46 |