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| SE-16 | 877 |
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| SE-16 | 805 |
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| SE-16 | 78 |
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| SE-16 | 4 |
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| SE-16 | 66 |
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| SE-16 | 604 |
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| SE-16 | 348 |
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| SE-16 | 547 |
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| SE-5 | 356 |
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| SE-5 | 407 |
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| SE-5 | 469 |
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| SE-5 | 693 |
10:20$B!A(B 10:40 | $B5Y7F(B |
10:40$B!A(B 11:00 | B306 | $B%K%e!<%H%j%N%l%9Fs=E&BJx2u8!=P$r4k?^$7$?1UBN%7%s%A%l!<%?!~(BZrO2$B%J%NN3;R$N9g@.(B
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| SE-5 | 863 |
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| SE-5 | 864 |
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| SE-5 | 1010 |
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| SY-7 | 338 |
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| SY-21 | 68 |
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| SY-21 | 618 |
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| SY-21 | 143 |
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| SY-21 | 157 |
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| SY-21 | 191 |
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| SY-21 | 284 |
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| SY-21 | 707 |
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| SY-21 | 50 |
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| SY-21 | 8 |
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| SY-19 | 337 |
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| SY-19 | 960 |
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(10:40$B!A(B12:00) ($B:BD9(B $B@>B<(B $BKS!&6b;X(B $B@58@(B) |
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($B$B!&(B ($B3X(B)$BBg1:(B $B6W2;(B$B!&(B ($B3X(B)$BKLEh(B $B85$B!&(B ($B3X(B)$BCSED(B $BJb(B$B!&(B ($B3X(B)$B>.Ln(B $BN5J?(B$B!&(B ($B=;M'EE9)(B) $B:XF#(B $B?r9-(B$B!&(B $BI6;3(B $BGn6)(B$B!&(B $B@P@n(B $B??Fs(B$B!&(B $B7,86(B $B0lLi(B | MFI zeolite membrane porous silica substrate NaF
| SY-19 | 330 |
11:00$B!A(B 11:20 | E307 | FAU$B7?%<%*%i%$%HKl$K$h$k%W%m%T%l%s!?%W%m%Q%sF)2aJ,N%FC@-$N2C05>r7o2<$K$*$1$k8!F$(B
($BAaBg@h?JM}9)(B/$BAaBgM}9)Am8&(B/JST-CREST) ($B@5(B)$B>>J}(B $B@5I'!&(B ($BAaBg@h?JM}9)(B) ($B3X(B)$B!{:4!9LZ(B $B9/?M(B$B!&(B ($B3X(B)$B$B!&(B ($B3X(B)$BGk86(B $B?p4p(B | zeolite membrane propylene separation pressurized conditions
| SY-19 | 412 |
11:20$B!A(B 11:40 | E308 | $BAB?e@-(BSilicalite-1$BKl$rMQ$$$??];@(B/$B?eJ,N%(B
($B4tIlBg1!9)(B) ($B3X(B)$B!{>eLn(B $B63J?(B$B!&(B ($B;:Am8&(B) ($B@5(B)$B:,4_(B $B=(G7(B$B!&(B ($B4tIlBg9)(B) ($B@5(B)$B5\K\(B $B3X(B$B!&(B ($B@5(B)$B>e5\(B $B@.G7(B$B!&(B ($B4tIlBg@8L?%;(B) ($B@5(B)$B6a9>(B $BLwB'(B | zeolite membrane separation acetic acid
| SY-19 | 500 |
11:40$B!A(B 12:00 | E309 | CHA$B7?%"%k%_%N%j%s;@1v7O%<%*%i%$%HKl$N9g@.$HF)2aJ,N%@-G=(B
($BAaBg@h?JM}9)(B) ($B@5(B)$B!{@%2<(B $B2mGn(B$B!&(B ($B3X(B)$B@P9u(B $BAOG72p(B$B!&(B ($B3X(B)Ataher Ahmed$B!&(B ($BAaBg@h?JM}9)(B/$BAaBgM}9)Am8&(B/JST-CREST) ($B@5(B)$B>>J}(B $B@5I'(B | Aluminophosphate Membrane synthesis Permeability
| SY-19 | 829 |
(13:00$B!A(B14:40) ($B:BD9(B $BW"ED(B $BM:0lO/!&5H=!(B $BH~5*(B) |
13:00$B!A(B 13:20 | E313 | $BB?9&@-G[0L9bJ,;R(BUiO-66$BKl$N9g@.$HKlJ,N%$X$N1~MQ(B
($B4tIlBg9)(B) ($B@5(B)$B!{5\K\(B $B3X(B$B!&(B ($B4tIlBg1!9)(B) ($B3X(B)$B9,B<(B $B;m?%(B$B!&(B $BKY(B $B7I2p(B$B!&(B $B9bC+(B $BD>51(B$B!&(B ($B4tIlBg@8L?%;(B) ($B@5(B)$B6a9>(B $BLwB'(B$B!&(B ($B4tIlBg9)(B) ($B@5(B)$B>e5\(B $B@.G7(B | Metal organic framework UiO-66 Solvothermal synthesis
| SY-19 | 649 |
13:20$B!A(B 13:40 | E314 | $B%<%*%i%$%HKl$rMQ$$$?%a%?%N!<%k9g@.%a%s%V%l%s%j%"%/%?!<$N2DG=@-(B
($BAaBg@h?JM}9)(B/$BAaBgM}9)Am8&(B/JST-CREST) ($B@5(B)$B>>J}(B $B@5I'!&(B ($BAaBg@h?JM}9)(B) ($B3X(B)$B!{5HED(B $BBg51(B$B!&(B ($B@5(B)$B@%2<(B $B2mGn(B | methanol synthesis membrane reactor ZSM-5 membrane
| SY-19 | 413 |
13:40$B!A(B 14:00 | E315 | $BB?9&@-%"%_%N%7%j%+Kl$N(BCO2$BF)2aFC@-$K5Z$\$9(BCs$B%I!<%W$*$h$S@=Kl>r7o$N1F6A(B
($B9-Bg1!9)(B) ($B3X(B·$B5;4p(B)$B!{1JHx(B $B5}=U(B$B!&(B ($B@5(B)$B5H2,(B $BJ~5W(B$B!&(B ($B@5(B)$BD9_7(B $B425,(B$B!&(B ($B@5(B)$B6b;X(B $B@58@(B$B!&(B ($B@5(B)$BETN1(B $BL-N;(B | Amino-silica membrane CO2 separation Cs doping
| SY-19 | 434 |
14:00$B!A(B 14:20 | E316 | $B%7%j%+Kl$rEk:\$7$?KlH?1~4o$rMQ$$$??e@-%,%9%7%U%HH?1~$N8!F$(B
(RITE) ($B@5(B)$B!{B?8U(B $BCR5.(B$B!&(B ($B@5(B)$B>>;3(B $B3(H~(B$B!&(B ($B@5(B)$B@FF#(B $B?r(B$B!&(B ($B@5(B)$B@>ED(B $BN<0l(B$B!&(B ($B@5(B)$BCfHx(B $B??0l(B | silica membrane membrane reactor water gas shift reaction
| SY-19 | 615 |
14:20$B!A(B 14:40 | E317 | V$B9g6bKl$N?eAGF)2a$K$*$h$\$96!5k%,%9$NAH@.$HN.NL$N1F6A(B
(NIMS) ($B@5(B)$B!{@>B<(B $BKS(B$B!&(B $Bhq(B $B@/1d(B$B!&(B ($BNkLZ>&4[(B) $BLZB<(B $B9@N4(B$B!&(B ($BNk9b@l(B) $B>.Ks(B $B9a?%(B$B!&(B $BFnIt(B $BCR7{(B | vanadium energy carrier permeation
| SY-19 | 619 |
(15:00$B!A(B17:00) ($B:BD9(B $B@V>>(B $B7{ |
15:00$B!A(B 15:20 | E319 | $B%Q%i%8%&%`7O9g6bKl$rMQ$$$??eAGF)2a@-G=I>2A(B
($BEl$B!&(B ($B@5(B)$BBgB<(B $B91M:(B$B!&(B ($B@5(B)$B;3ED(B $BOBLp(B | hydrogen permiability Alloy membrane
| SY-19 | 589 |
15:20$B!A(B 15:40 | E320 | $B%a%s%V%l%s%j%"%/%?!<$rMQ$$$?%a%A%k%7%/%m%X%-%5%sC&?eAG%W%m%;%9$N8!F$(B
(RITE) ($B@5(B)$B!{>>;3(B $B3(H~(B$B!&(B ($B@5(B)$B>B8}(B $BNKJ?(B$B!&(B ($B@5(B)$B1:0f(B $B9(H~(B$B!&(B ($B@5(B)$B@FF#(B $B?r(B$B!&(B ($B@5(B)$B@>ED(B $BN<0l(B$B!&(B ($B@5(B)$BCfHx(B $B??0l(B | counter diffusion CVD method silica membrane organic chemical hydride
| SY-19 | 684 |
15:40$B!A(B 16:00 | E321 | $B%7%k%;%9%-%*%-%5%sKl$N8w%>%k(B-$B%2%k@=Kl$*$h$S$=$NF)2aFC@-(B
($B9-Bg1!9)(B) ($B3X(B·$B5;4p(B)$B!{@>NS(B $BIq(B$B!&(B ($B@5(B)$BD9_7(B $B425,(B$B!&(B ($B@5(B)$B6b;X(B $B@58@(B$B!&(B ($B@5(B)$B5H2,(B $BJ~5W(B$B!&(B ($B@5(B)$BETN1(B $BL-N;(B | Photo-induced polymerization Membrane fabrication at low temperature Inorganic/organic hybrid membrane
| SY-19 | 444 |
16:00$B!A(B 16:20 | E322 | $B%7%j%+7O5U?;F)Kl$NF)2a%a%+%K%:%`(B
($B$B!&(B $B4XK\(B $B6F(B$B!&(B $BW"@%(B $BCR5W(B$B!&(B ($B3X(B)$B>.Ln(B $BN5J?(B$B!&(B ($B@5(B)$BLnB<(B $B4490(B | counter diffusion CVD method silica RO membranes permeation mechanism
| SY-19 | 719 |
16:20$B!A(B 16:40 | E323 | $B%$%*%s1UBNKl$K$h$k?eAG(B/$B%Y%s%<%s:.9g7O$+$i$N%Y%s%<%s$NA*BrE*F)2a2s<}(B
($B:eBg1!4p9)(B) ($B@5(B)$B!{W"ED(B $BM:0lO/(B$B!&(B ($B3X(B)$BA0ED(B $BMNJ?(B$B!&(B ($B:eBg1!4p9)(B/JST-CREST) ($B@5(B)$B@>;3(B $B7{OB(B$B!&(B ($BEl9)Bg1!M}9)(B) ($B@5(B)$B0KEl(B $B>O(B | ionic liquid membrane organic hydride H2 purification
| SY-19 | 235 |
16:40$B!A(B 17:00 | E324 | Triethoxysilane(TRIES)$B$rMQ$$$?5$BNJ,N%Kl$N:n@=$H:Y9&7B@)8f(B
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| SY-19 | 855 |
F $B2q>l(B
|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
$BIt2q%;%C%7%g%s(B SE-2. <$B:F@80eNE$K$*$1$k2=3X9)3XE*%"%W%m!<%A(B> |
(9:00$B!A(B10:20) ($B:BD9(B $B0fEh(B $BGnG7!&?eK\(B $BGn(B) |
9:00$B!A(B 9:20 | F301 | $B%^%$%/%m%&%'%kG]M\$rMQ$$$?%^%&%9(BiPS$BfuMMBNJ,2=FC@-$N@)8f(B
($BKL6eBg1!9)(B) ($B3X(B)$B!{5\K\(B $BBgJe(B$B!&(B ($B3X(B)$B;38}(B $B7rB@(B$B!&(B ($B@5(B)$BCf_7(B $B9@Fs(B | microwell culture mouse iPS cells Embryoid body
| SE-2 | 186 |
9:20$B!A(B 9:40 | F302 | $B4VMU7O44:YK&A}?#MQ$N%^%$%/%m%-%c%j%"$H3IYB>r7o$N8!F$(B
($BKLBg9)(B) $B9b66(B $B0K?%(B$B!&(B $B:4F#(B $B7<8g(B$B!&(B ($BIp8K=wBg!&7r%9%](B) $BL\NI(B $B91(B$B!&(B ($B9-Bg0e(B) $BOFC+(B $B<"G7(B$B!&(B ($BKLBg9)(B) ($B@5(B)$B!{9bLZ(B $BKS(B | Mesenchymal stem cell microcarrier agitation
| SE-2 | 27 |
9:40$B!A(B 10:00 | F303 | $B:YK&NEK!$X8~$1$?%7%s%0%k%f!<%95;=Q$rMQ$$$?@8;:%W%i%C%H%U%)!<%`(B
($B%a%k%/(B) ($B@5(B)$B!{IY2,(B $BM%2p(B$B!&(B (EMD Millipore) Schnitzler A.$B!&(B Rigby S.$B!&(B Kehoe D.$B!&(B Aysola M.$B!&(B Punreddy S.$B!&(B Verma A.$B!&(B Lawson T.$B!&(B Murrell J.$B!&(B Rook M.$B!&(B ($B%a%k%/(B) ($B@5(B)$B0KF#(B $BN4IW(B | Stem Cell Cell Therapies single use
| SE-2 | 151 |
10:00$B!A(B 10:20 | F304 | $B%-%a%i
($BElBg1!9)(B) ($B@5(B)$B!{2O86(B $B@59@(B$B!&(B ($B3X(B)$BCfNS(B $B=(?M(B$B!&(B $B@D;3(B $B9,7C;R(B$B!&(B ($B3X(B)$BD@(B $B>bA?;R(B$B!&(B ($B@5(B)$BD9Eo(B $B519T(B | chimeric receptor cell differentiation cost reduction
| SE-2 | 305 |
(10:40$B!A(B11:20) ($B;J2q(B $B:j;3(B $BN<0l(B) |
10:40$B!A(B 11:20 | F306 | [$B>7BT9V1i(B] $B:F@80eNE$K$*$1$k:YK&$NIJ
($B%5!<%b%U%#%C%7%c!<%5%$%(%s%F%#%U%#%C%/(B) ($B@5(B)$B_'C+(B $BL@9((B | BioProduction Cell Therapy Pharma Analytics
| SE-2 | 250 |
(11:20$B!A(B12:00) ($B:BD9(B $BJ!ED(B $B=_Fs(B) |
11:20$B!A(B 11:40 | F308 | $BD62;GHI=LL=$>~K!$K$h$k%;%U%!%>%j%s=yJ|@-%"%Q%?%$%HJ#9gpyN3$N5!G=@_7W$HFC@-I>2A(B
($BF;Am8&(B) ($B@5(B)$B!{@V_7(B $BIRG7(B$B!&(B $BLnB<(B $BN4J8(B$B!&(B ($BKL0eBg(B) $BB!(B$B!&(B $BFnED(B $B9/?M(B$B!&(B ($BKL3$F;0eNE%;(B) $B0KEl(B $B3X(B$B!&(B (HOYA Technosurgical) $BCfEg(B $BIpI'(B$B!&(B $B:dK\(B $BH~CN;R(B | Hydroxyapatite Composite Granules Cefazolin-Release Characteristics Supersonic Surface Modification
| SE-2 | 271 |
11:40$B!A(B 12:00 | F309 | $BJ"Kl%b%G%k$N:n@=$HJ"Kl=}320x;R$K$h$kMO2A(B
($BEl=w0eBgNW9)(B) ($B@5(B)$B!{:j;3(B $BN<0l(B$B!&(B ($BK!@/Bg1!M}9)(B) ($B3X(B)$BBgFb(B $BTw(B$B!&(B ($BK!@/Bg@8L?(B) ($B@5(B)$B;32<(B $BL@BY(B$B!&(B ($BEl=w0eBg@hC<@8L?0e2J3X8&(B) $BBgOB(B $B2mG7(B$B!&(B ($BEl=w0eBgNW9)(B) ($B@5(B)$BJvEg(B $B;0@iCK(B | peritoneal model cell sheet
| SE-2 | 385 |
G $B2q>l(B
|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
$BIt2q%7%s%]%8%&%`(B SY-10. <$B%^%$%/%m2=3X%W%m%;%98&5f$N%U%m%s%F%#%"(B> |
(9:00$B!A(B10:20) ($B:BD9(B $BLZKs(B $B8w@5!&CfC+(B $B1Q |
9:00$B!A(B 9:20 | G301 | In situ UV-Vis microspectroscopic monitoring of dehydrogenation in microreactor
(Nagoya U.) ($B3X(B)$B!{(BSuarnaba E. G.$B!&(B ($B@5(B)Yamada H.$B!&(B ($B@5(B)Tagawa T. | UV-Vis microspectroscopy In situ microreactor
| SY-10 | 820 |
9:20$B!A(B 9:40 | G302 | $B%^%$%/%m%j%"%/%?!<$K$*$1$k:.9gB.EY$HH?1~B.EY$N4X78@-I>2A(B
($B5~Bg1!9)(B) ($B3X(B·$B5;4p(B)$B!{@uLn(B $B<~:n(B$B!&(B ($B@5(B)$BKR(B $BBYJe(B$B!&(B ($B@5(B)$B1JLZ(B $B0&0lO:(B$B!&(B $B5HED(B $B=a0l(B$B!&(B ($B@5(B)$BA0(B $B0lW"(B | Microreactor Mixing Rate analysis
| SY-10 | 108 |
9:40$B!A(B 10:00 | G303 | $B%9%i%$%I<0;0J}J[$rMQ$$$FH/@8$5$;$?%9%i%0N.$K$h$k1U1UCj=P(B
($B:eI\Bg1!9)(B) ($B@5(B)$B!{IpF#(B $BL@FA(B$B!&(B $B;3K\(B $BE/Li(B$B!&(B ($B@5(B)$BFAK\(B $BM&?M(B | Electromagnetic Actuator Three-Port Valve Slug Flow
| SY-10 | 341 |
10:00$B!A(B 10:20 | G304 | $B%^%$%/%mN.O)$K$*$1$k(BCO2$B$N5$1U5[<}A`:n$N8!F$(B
($B?@8M@=9]=j(B) ($B@5(B·$B=$=,(B)$B!{H>C+(B $B9-1{(B$B!&(B ($B@5(B)$BF#_7(B $B>4Mx(B$B!&(B ($B@5(B)$B>>2,(B $BN<(B$B!&(B ($B@5(B)$BLn0l?'(B $B8xFs(B | micro channel slug flow CO2 absorption
| SY-10 | 830 |
(10:40$B!A(B12:00) ($B:BD9(B $BEBB<(B $B=$!&9bLZ(B $BF;:H(B) |
10:40$B!A(B 11:00 | G306 | W/O$B%9%i%0N.$rH?1~>l$H$7$?L5F}2==E9g$K$h$kHyN3;R9g@.(B
($B2,;3Bg9)(B) ($B3X(B)$B!{ED86(B $B98$B!&(B ($B2,;3Bg1!<+A3(B) ($B@5(B)$B>.Ln(B $BEX(B | slug flow soap-free emulsion polymerization monodispersity
| SY-10 | 883 |
11:00$B!A(B 11:20 | G307 | T$B;z7?%^%$%/%m%j%"%/%?$K$h$k%7%j%+%^%$%/%m%+%W%;%k$ND4@=(B
($B;37ABg1!M}9)(B) ($B3X(B)$B!{B<;3(B $B5.G7(B$B!&(B ($B@5(B)$BLZKs(B $B8w@5(B$B!&(B ($B@5(B)$BD9C+@n(B $B@/M5(B | Microcapsule Silica Microreactor
| SY-10 | 775 |
11:20$B!A(B 12:00 | G308 | [$B>7BT9V1i(B] $B%^%$%/%mN.BN%G%P%$%9$K$h$kC1J,;6%(%^%k%7%g%s$*$h$S%^%$%/%m%+%W%;%k$N:n@=(B
($B2#9qBg1!9)(B) ($B@5(B)$B6b0f(B $B=S8w(B | microfluidics emulsions microcapsules
| SY-10 | 594 |
(13:00$B!A(B14:00) ($B:BD9(B $BIpF#(B $BL@FA!&0B@n(B $BH;Li(B) |
13:00$B!A(B 13:20 | G313 | $BJBNs5$1U%9%i%0N.%W%m%;%9$K$*$1$k%9%i%0D9$5?dDj(B
($B5~Bg1!9)(B) ($B@5(B)$B!{EBB<(B $B=$(B$B!&(B ($B3X(B)$B5\NS(B $B7=Je(B$B!&(B $BHxFi(B $BMN$B!&(B ($B@5(B)$BC+8}(B $BCR(B$B!&(B ($B@5(B)$BD9C+It(B $B?-<#(B | Gas-liquid microreactors Slug length estimation Process monitoring
| SY-10 | 940 |
13:20$B!A(B 13:40 | G314 | $B%^%$%/%m%A%c%M%k9=B$$,5Z$\$9FsAjN.Cf$N1UE)@)8f(B
($BElM}Bg1!(B) ($B3X(B)$B!{2,Eh(B $B0l51(B$B!&(B ($BElM}Bg(B) ($B@5(B)$BG;OB(B$B!&(B ($B@5(B)$BEhED(B $BM'0lO:(B$B!&(B ($B@5(B)$BBgC](B $B>!?M(B$B!&(B ($B@5(B)$B>1Ln(B $B8|(B | Microreactor Droplet Two phase flow
| SY-10 | 920 |
13:40$B!A(B 14:00 | G315 | $B%9%i%0N.$K$*$1$kAj4VJ*
($BFAEgBg1!(BSTS$B8&(B) ($B@5(B)$B!{30NX(B $B7r0lO:(B$B!&(B ($BFAEgBg1!@hC<(B) $BNk9>(B $B98J?(B$B!&(B $B5\0f(B $B=SJe(B$B!&(B $BF|OB:4(B $B7r8c(B$B!&(B ($BFAEgBg1!(BSTS$B8&(B) ($B@5(B)$BKY2O(B $B=S1Q(B$B!&(B ($B3$(B)$B%"%k%+%s%?%i%"%S%i(B $B%X%9!<%9%i%U%!%(%k(B | Slug flow Mass Transfer Computational Fluid Dynamics
| SY-10 | 957 |
H $B2q>l(B
|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
$BIt2q%;%C%7%g%s(B SE-18. <$B4pACJ*@-It2q%;%C%7%g%s(B> |
(9:00$B!A(B10:20) ($B:BD9(B $B=ULZ(B $B>-;J!&6b5WJ](B $B8w1{(B) |
9:00$B!A(B 9:20 | H301 | $BM6EEJ*@-$rMxMQ$7$?1UBNCf$NHyNL?eJ,B,DjAuCV$N3+H/(B
($B2&;R%[!<%k%G%#%s%0%9(B) ($B@5(B)$B!{1JED(B $B?B0l(B$B!&(B $B_7K\(B $B1QCi(B$B!&(B $B(B$B!&(B $B?9@n(B $B5.;R(B$B!&(B $BNkLZ(B $BM35*;R(B | Moisture Measurement Dielectric Property Solvent
| SE-18 | 32 |
9:20$B!A(B 9:40 | H302 | $B%8%a%A%k%(!<%F%k(B+$B%/%m%m%[%k%`(B+$B%(%?%N!<%k:.9g7O$NM6EEN(B,Dj$H6I=jAH@.%b%G%k$K$h$kM6EEN($N?d;;(B
($BF|Bg@8;:9)(B) ($B3X(B·$B5;4p(B)$B!{:4F#(B $BOBHO(B$B!&(B ($B@5(B)$BJ]2J(B $B5.N<(B$B!&(B ($B@5(B)$BDT(B $BCRLi(B$B!&(B ($B@5(B)$BF|=)(B $B=SI'(B | dielectric constant ternary mixture local composition model
| SE-18 | 359 |
9:40$B!A(B 10:00 | H303 | Mass transfer coefficient of organic solvent in supercritical carbon dioxide drying
($BEl9)Bg1!M}9)(B) ($B3X(B)$B!{(BKunanusont Nattanai$B!&(B ($B3X(B)$BLZ2<(B $B85Bg(B$B!&(B ($B@5(B)$B2<;3(B $BM52p(B | supercritical carbon dioxide drying mass transfer coefficient
| SE-18 | 620 |
10:00$B!A(B 10:20 | H304 | 2$B@.J,7OF0G4EY$N(BEyring-Wilson$B<0$K$h$kAj4X(B
($BF|BgM}9)(B) ($B@5(B)$B!{FJLZ(B $B>!8J(B$B!&(B ($B@5(B)$B>>ED(B $B909,(B$B!&(B ($B@5(B)$B7*86(B $B@6J8(B$B!&(B ($BCf1{BgM}9)(B) ($B@5(B)$BA%B$(B $B=S9'(B$B!&(B (Panjab U.) Rattan V. K. | Kinematic Viscosity Eyring-Wilson equation Excess free energy at activated state
| SE-18 | 221 |
(10:40$B!A(B12:00) ($B:BD9(B $B< |
10:40$B!A(B 11:20 | H306 | [$B>7BT9V1i(B] $B%/%i%9%l!<%H%O%$%I%l!<%H$K$h$k%,%9CyB"$H@-G=I>2A(B
($B;:Am8&(B) $BC]C+(B $BIR(B | clathrate hydrate gas capacity
| SE-18 | 930 |
11:20$B!A(B 11:40 | H308 | $B%"%s%b%K%&%`1v6&B82<$K$*$1$k%a%?%s%O%$%I%l!<%H$NAjJ?9U>r7o$NB,Dj(B
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| SE-18 | 335 |
11:40$B!A(B 12:00 | H309 | $B%;%_%/%i%9%l!<%H@8@.7O(B(Nitrogen + Tetra-n-butylammonium Bromide + Water)$B$K$*$1$kCbAG%,%9$NMO2rEYB,Dj(B
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| SE-18 | 780 |
(13:00$B!A(B14:40) ($B:BD9(B $BEl(B $B=(7{!&J]2J(B $B5.N<(B) |
13:00$B!A(B 13:40 | H313 | [$BE8K>9V1i(B] $B%;%_%/%i%9%l!<%H%O%$%I%l!<%H$NG.NO3XE*0BDj@-(B
($B;:Am8&(B) ($B@5(B)$B< | semiclathrate hydrate thermodynamic stability phase change material
| SE-18 | 372 |
13:40$B!A(B 14:00 | H315 | $B%7%"%N7O%$%*%s1UBN$NFs;@2=C:AG5[<}FC@-(B
($BF|Bg1!9)(B) ($B3X(B)$B!{EOn4(B $B@551(B$B!&(B ($BF|Bg9)(B) ($B@5(B)$B;y6L(B $BBgJe(B$B!&(B ($B;:Am8&(B) ($B@5(B)$BKRLn(B $B5.;j(B$B!&(B ($B@5(B)$B6b5WJ](B $B8w1{(B | ionic liquid carbon dioxide solubility
| SE-18 | 482 |
14:00$B!A(B 14:20 | H316 | $B?];@$r%"%K%*%s$H$9$k%$%*%s1UBN$N(BCO2$B5[<}FC@-(B
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| SE-18 | 294 |
14:20$B!A(B 14:40 | H317 | 2$B%j%&%`7O%$%*%s1UBN:.9gMO1U$NJ*M}2=3XE*@-2$B5[<}FC@-(B
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| SE-18 | 365 |
(15:00$B!A(B16:00) ($B:BD9(B $BKRLn(B $B5.;j!&1JED(B $B?B0l(B) |
15:00$B!A(B 15:20 | H319 | CO2/isopentane$BFs@.J,:.9gJ*$N5$1UJ?9U@-
($BIY;38)Bg(B) ($B3X(B)$B!{>1;J(B $BM$$B!&(B ($B@5(B)$B5\K\(B $BBY9T(B | Recirculation method VLE Binary mixture
| SE-18 | 766 |
15:20$B!A(B 15:40 | H320 | $B>uBVJ}Dx<0$rMQ$$$?(BCO2+$B?eMO1U7O$NAjJ?9U$H(BpH$B$N?d;;(B
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| SE-18 | 472 |
15:40$B!A(B 16:00 | H321 | $B%/%i%9%?!<%b%G%k$K$h$k5$1UJ?9U$N?d;;(B
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| SE-18 | 555 |
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9:00$B!A(B 9:20 | I301 | $B938693BNH?1~$rMxMQ$7$??e6d%$%*%s$N4J0WJ,@O(B
($BEECf8&(B) ($BK!(B)$B!{0KC#(B $B0B4p(B$B!&(B ($BK!(B)$B@DED(B $B?7(B | mercury antibody simple analysis
| SY-11 | 577 |
9:20$B!A(B 9:40 | I302 | $B%W%m%;%9GS?e4IM}$N$?$a$NA4%;%l%sG;EY%b%K%?!<$N%;%s%546EY0BDj2=(B
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| SY-11 | 399 |
9:40$B!A(B 10:00 | I303 | $BGS?eCfFq=hM}@-(BCOD$B@.J,$G$"$k4^N2CbAG2=9gJ*$NJ,@O(B
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| SY-11 | 398 |
10:00$B!A(B 10:20 | I304 | $B%-%l!<%H:^$rMQ$$$?%P%$%]!<%iKlEE5$F)@O$K$h$k6bB0$N%j%5%$%/%k(B
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| SY-11 | 239 |
(10:40$B!A(B12:00) ($B:BD9(B $BB<;3(B $B7{90!&@DED(B $B?7(B) |
10:40$B!A(B 11:00 | I306 | $B3F
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| SY-11 | 367 |
11:00$B!A(B 11:20 | I307 | Ca$B$^$?$O(BFe(III)$B$rC4;}$7$?%$%*%s8r49
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| SY-11 | 111 |
11:20$B!A(B 11:40 | I308 | $B3$?eC8?e2=5U?;F)Kl$K7A@.$5$l$k%P%$%*%U%#%k%`$N2r@O$H4J0W%b%K%?%j%s%0J}K!$N3+H/(B
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| SY-11 | 895 |
11:40$B!A(B 12:00 | I309 | $BN.F0>2$rMQ$$$?@8J*3XE*%j%s=|5nFC@-$N8!F$(B
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| SY-11 | 303 |
(13:00$B!A(B14:40) ($B:BD9(B $B;{ED(B $B> |
13:00$B!A(B 13:20 | I313 | $B2
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| SY-11 | 279 |
13:20$B!A(B 13:40 | I314 | $BN.F0>2<0@8J*Kl%j%"%/%?!<$rMQ$$$?%"%J%b%C%/%9%W%m%;%9$K4X$9$k4pAC8!F$(B
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| SY-11 | 345 |
13:40$B!A(B 14:00 | I315 | $B7y5$@-KlJ,N%3h@-1xE%K!$H@5?;F)Kl$rMQ$$$?AO%(%M%k%.!<7?2
($B?@8MBg1!9)(B/$B@hC$B!&(B ($B@5(B)$B;09%(B $BB@O:(B$B!&(B ($B@5(B)$B>.LnED(B $BAp2p(B$B!&(B ($B@5(B)$B0B@n(B $B@/9((B$B!&(B ($B@5(B)$B9b66(B $BCR51(B$B!&(B ($B@5(B)$B>>;3(B $B=(?M(B | Anaerobic membrane bioreactor Forward osmosis Net energy production
| SY-11 | 497 |
14:00$B!A(B 14:20 | I316 | $BL}J,$r4^$`M-5!GQ?e$N7y5$=hM}$K$*$1$k%a%?%s@8;:(B
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| SY-11 | 709 |
14:20$B!A(B 14:40 | I317 | $BGS?eCf(B6$B2A%;%l%s$N@8J*3XE*=hM}(B
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| SY-11 | 814 |
(15:00$B!A(B16:00) ($B:BD9(B $B6b(B $B_f_=!&@.ED(B $B900l(B) |
15:00$B!A(B 15:20 | I319 | $B;HMQ:Q$_%j%A%&%`%$%*%sEECS$+$i$N%3%P%k%H2s<}$KE,$7$?2CG.%W%m%;%9$N8!F$(B
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| SY-11 | 234 |
15:20$B!A(B 15:40 | I320 | $B4D6-1F6AI>2A$K4p$E$/9)6HEIAu%W%m%;%9$N2~A1;Y1g(B
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| SY-11 | 764 |
15:40$B!A(B 16:00 | I321 | $BF
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| SY-11 | 445 |
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16:00$B!A(B 16:20 | I322 | $B9b2s<}N($G=E6bB0=|5n$,2DG=$J1xE%3%$+$i$N%j%s2s<}K!(B
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| SY-11 | 907 |
16:20$B!A(B 16:40 | I323 | $B%"%_%I4^M-Bh;05i%"%_%s$K$h$k(BPt(IV)$BCj=P5sF0$*$h$SJ,N%%a%+%K%:%`$N2rL@(B
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| SY-11 | 690 |
16:40$B!A(B 17:00 | I324 | $B0p$o$i$r4p
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| SY-11 | 729 |
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| SY-15 | 705 |
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| SY-15 | 527 |
10:00$B!A(B 10:20 | K304 | $B%=!<%W%U%j!
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10:40$B!A(B 11:00 | K306 | D$BAjF}2=5;=Q$rMQ$$$?E7A3B?E|N`$K$h$k3&LL0BDj8z2L(B
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| SY-15 | 802 |
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| SY-15 | 803 |
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| SY-15 | 400 |
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| SY-15 | 852 |
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| SE-24 | 184 |
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| SE-24 | 446 |
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| SE-24 | 531 |
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| SE-24 | 97 |
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| SE-24 | 914 |
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| SE-8 | 283 |
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| SE-8 | 109 |
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| SE-8 | 149 |
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| SE-8 | 453 |
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| SE-8 | 431 |
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| SE-8 | 934 |
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| SE-8 | 584 |
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| SE-8 | 524 |
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| SE-8 | 262 |
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| SE-8 | 716 |
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| SE-8 | 735 |
14:20$B!A(B 14:40 | M317 | $BM[6K;@2=%"%k%_%K%&%`$X$N1v2=%+%k%7%&%`E:Ce$H?e>x5$<}C&CeFC@-$N4XO"@-(B
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| SE-8 | 909 |
O $B2q>l(B
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| SY-9 | 861 |
9:20$B!A(B 9:40 | O302 | $BD69b%"%9%Z%/%HHf%_%/%m%-%c%S%F%#$rMQ$$$?(BSiC-CVI$BK!$N%b%G%j%s%0(B
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| SY-9 | 747 |
9:40$B!A(B 10:00 | O303 | $B86NAC:2=?eAG
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| SY-9 | 278 |
(10:00$B!A(B11:00) ($B:BD9(B $B?9(B $B?-2p(B) |
10:00$B!A(B 10:20 | O304 | $BF3F~%,%9$r@Z$jBX$($k(BCVD$B%W%m%;%9$NHsDj>o%,%9N.$l%7%_%e%l!<%7%g%s(B
($B%"%F%J%7%9(B) ($B@5(B)$BCSED(B $B7=(B | CVD ALD simulation
| SY-9 | 608 |
10:20$B!A(B 10:40 | O305 | SiHCl3$B$K$h$k%7%j%3%s@.Kl;~$NI{@8@.J*7A@.5!9=(B
($B2#9qBg1!9)(B) $B:y0f(B $B$"$f$_(B$B!&(B $Bc7F#(B $B$"$fH~(B$B!&(B ($B@5(B)$B!{1)?<(B $BEy(B | Silicon epitaxial growth trichlorosilane by-products
| SY-9 | 11 |
10:40$B!A(B 11:00 | O306 | $B1vAG(B-$B%1%$AG4^2=9gJ*$rMQ$$$?(BCVD$B$G$N2
($BElBg1!9)(B) ($B3X(B)$B!{:4F#(B $BEP(B$B!&(B ($B3X(B)$BEh(B $B9IJ?(B$B!&(B ($B3X(B)$BgULg(B $BM$0l(B$B!&(B $B?y1:(B $B=(=S(B$B!&(B ($B3X(B)$BCf86(B $BBsLi(B$B!&(B (IHI$B4pHW8&(B) ($B@5(B)$BJ!Eg(B $B9/G7(B$B!&(B ($BElBg1!9)(B) ($B@5(B)$BI4@%(B $B7r(B$B!&(B ($B3X0L$B!&(B ($BElBg1!9)(B) ($B@5(B)$BAz3@(B $B9,9@(B | silicon-chlorine compounds by-products elementary reaction simulation
| SY-9 | 840 |
(11:00$B!A(B12:00) ($B:BD9(B $BAz3@(B $B9,9@(B) |
11:00$B!A(B 11:20 | O307 | $BM-5!H>F3BN:`NA>:2Z@:@=%W%m%;%9$N2r@O(B
($BElBg1!9)(B) ($B3X(B)$B!{4dCK(B $BBs:H(B$B!&(B ($B@5(B)$B;38}(B $BM34tIW(B$B!&(B ($BElBg4D0B%;(B/$BElBg1!9)(B) ($B@5(B)$BDT(B $B2B;R(B | sublimation purification organic semiconductors
| SY-9 | 468 |
11:20$B!A(B 11:40 | O308 | $B5$AjK!$K$h$k(BAg-TiO2$B%J%NN3;R:.9gBO@QKl$N:n@=(B
($B9-Bg1!9)(B) ($B3X(B·$B5;4p(B)$B!{A}ED(B $B1Q9b(B$B!&(B $BED0f(B $BM*2p(B$B!&(B ($B@5(B)$B5WJ](B $BM%(B$B!&(B ($B@5(B)$BEgED(B $B3X(B | PECVD Nanoparticle synthesis PVD
| SY-9 | 273 |
11:40$B!A(B 12:00 | O309 | [$B>7BT9V1i(B] $BH>F3BN%W%m%;%9MQM-5!6bB086NA$N@_7W!"9g@.$*$h$S(BALD$B$X$NE,MQ(B
($B%(%"!&%j%-!<%I(B) Dussarrat Christian | atomic layer deposition conformal growth reaction mechanism
| SY-9 | 132 |
(13:00$B!A(B14:00) ($B:BD9(B $BLnED(B $BM%(B) |
13:00$B!A(B 13:40 | O313 | [$BE8K>9V1i(B] $B2=9gJ*H>F3BN%J%N%o%$%d$N%X%F%m%(%T%?%-%7%c%k@.D9$HE8K>(B
($BKLBgNL;R=8@Q%(%l%/%H%m%K%/%98&5f%;(B) $B!{IZ2,(B $B9n9-(B$B!&(B $BK\5W(B $B=g0l(B$B!&(B $BJ!0f(B $B9';V(B | compound semiconductor nanowire heteroepitaxial growth
| SY-9 | 128 |
13:40$B!A(B 14:00 | O315 | $BG.(BCVD $BK!$G:n@=$7$?;@2=0!1tGvKl$NFC@-(B
($BEl3$Bg1!9)(B) ($B3X(B)$B!{9uED(B $B?88c(B$B!&(B ($BEl3$Bg9)(B) $B5WJ](B $B;K9a(B$B!&(B $B2#;3(B $BM%5.(B$B!&(B $BEOn5(B $B2m=S(B$B!&(B ($BEl3$Bg1!9)(B) $BBg5WJ](B $BC#@8(B$B!&(B ($B@5(B)$B=);3(B $BBY?-(B | CVD Zinc oxide transparent conductive film
| SY-9 | 767 |
(14:00$B!A(B15:00) ($B:BD9(B $B=);3(B $BBY?-(B) |
14:00$B!A(B 14:20 | O316 | $B0[$J$k;@AG05NO$G:n@=$7$?F3EE@-;@2=J*EE6K$rM-$9$k6/M6EEBN%-%c%Q%7%?$NEE5$FC@-(B
($B:eI\Bg1!9)(B) ($B3X(B)$B!{9bED(B $B`v;R(B$B!&(B ($B3X(B)$BE7Ln(B $BBY2O(B$B!&(B ($B@5(B)$B2,K\(B $B>0$B!&(B ($B@5(B)$BsnF#(B $B>f{J(B$B!&(B ($B@5(B)$B6aF#(B $BOBIW(B$B!&(B $B5HB<(B $BIp(B$B!&(B $BF#B<(B $B5*J8(B$B!&(B ($B:eBg;:8&(B) $BHu8}(B $B9(Fs(B$B!&(B $BKLEg(B $B>4(B | Ferroelectric capacitor pulsed laser deposition oxygen pressure
| SY-9 | 645 |
14:20$B!A(B 14:40 | O317 | p$B7?%@%$%d%b%s%I>e$K(BEB$B>xCeK!$G7A@.$7$?(BTi$B2=9gJ*(B/Pt/Au$BEE6K$N(BTLM$BI>2A(B
($B:eI\Bg1!9)(B) ($B3X(B)$B!{NkLZ(B $BAo0lO:(B$B!&(B ($B@5(B)$B2,K\(B $B>0$B!&(B ($B@5(B)$BsnF#(B $B>f{J(B$B!&(B ($B@5(B)$B6aF#(B $BOBIW(B$B!&(B ($B;:Am8&(B) $B>>K\(B $BMc(B$B!&(B $BKRLn(B $B=S@2(B$B!&(B $B>.AR(B $B@/I'(B$B!&(B $B2CF#(B $BCh8w(B$B!&(B $BC]Fb(B $BBgJe(B$B!&(B $B;3:j(B $BAo(B$B!&(B $BBg6z(B $B=(@$(B | diamond contact resistance electron beam evaporated
| SY-9 | 787 |
14:40$B!A(B 15:00 | O318 | [$B>7BT9V1i(B] $BCb2=J*GvKl$NHy:Y9=B$@)8f$H%i%8%+%k$rMQ$$$?Dc29$G$N@.KlJ}K!(B
($BKL8+9)Bg(B) $B!{Ip;3(B $B??5](B$B!&(B $B:4F#(B $B>!(B$B!&(B $BLnLp(B $B8|(B | nitride thin film sputtering radical nitridization
| SY-9 | 130 |
(15:00$B!A(B15:40) ($B:BD9(B $BsnF#(B $B>f{J(B) |
15:00$B!A(B 15:20 | O319 | $B5^B.>xCe$H$=$N>lMOM;7k>=2=$K$h$kBgN37B7k>=(BSi$BGvKl:n@=K!$N3+H/(B
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| SY-9 | 827 |
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| SY-13 | 532 |
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| SY-13 | 504 |
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| SY-13 | 640 |
11:20$B!A(B 11:40 | Q308 | $BD>@\?tCM7W;;$K$h$kFsJv@-%J%NN3;RJ,;61U$NN.F0%a%+%K%:%`$N8!F$(B
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| SY-13 | 665 |
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| SY-13 | 424 |
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| SY-13 | 562 |
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| SY-13 | 285 |
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| SY-13 | 542 |
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| SE-7 | 944 |
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| SE-7 | 202 |
9:40$B!A(B 10:00 | S303 | $BAH49$(9ZJl$K$h$k%M%*%"%,%m%S%*!<%9$+$i$N%P%$%*%(%?%N!<%k@8;:(B
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| SE-7 | 203 |
10:00$B!A(B 10:20 | S304 | Decomposition kinetics of mannose, mannitol and mannuronic acid under hydrothermal condition
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| SE-7 | 515 |
(10:40$B!A(B12:00) ($B:BD9(B $B>>B<(B $B9,I'(B) |
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| SE-7 | 1005 |
11:20$B!A(B 11:40 | S308 | $B8GBN;@?(G^$rMQ$$$?E|N`$+$iM-MQ2=9gJ*$N8zN(E*@8@.$N8!F$(B
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| SE-7 | 104 |
11:40$B!A(B 12:00 | S309 | $B8GBN;@?(G^$rMxMQ$7$?E|N`$+$i$N%l%V%j%s;@%a%A%k$N9g@.(B
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| SE-7 | 43 |
(13:00$B!A(B14:40) ($B:BD9(B $BD.ED(B $BMN!&>>B<(B $B9,I'(B) |
13:00$B!A(B 13:20 | S313 | $BGz:U%P%,%9$NE|2=H?1~%b%G%k<0$N3NN)(B
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| SE-7 | 260 |
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| SE-7 | 614 |
13:40$B!A(B 14:00 | S315 | UCT$BMO:^$rMQ$$$?%P%,%9$N?eG.J,2r$K$*$1$k:GE,>r7o$N8!F$(B
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| SE-7 | 906 |
14:00$B!A(B 14:20 | S316 | $B%;%k%m!<%97O%(%?%N!<%k@=B$5;=Q$N3+H/(B
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| SE-7 | 49 |
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| SE-7 | 669 |
(15:00$B!A(B16:40) ($B:BD9(B $B |
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| SE-7 | 254 |
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| SE-7 | 117 |
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| SE-7 | 56 |
16:00$B!A(B 16:20 | S322 | $B%"%k%+%jG.?eCf$G$N%j%0%K%s$NC14D%U%'%N!<%kN`$X$NJ,2r$*$h$S%,%92=(B
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| SE-7 | 910 |
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| SE-7 | 922 |
V $B2q>l(B
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| SY-8 | 788 |
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| SY-8 | 477 |
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| SY-8 | 257 |
10:00$B!A(B 10:20 | V304 | $B?eAGH/@8MQ?e;@%"%Q%?%$%HC4;}Fs856bB0?(G^$N3h@-$K$*$h$\$9G.=hM}$N1F6A(B
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| SY-8 | 917 |
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| SY-8 | 798 |
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| SY-8 | 938 |
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| SY-8 | 522 |
11:40$B!A(B 12:00 | V309 | CH4$B$NC:;@%,%92~2O3$B?(G^$X$N(BCe$BE:2C8z2L(B
($B?@8MBg1!9)(B) ($B3X(B)$B!{2-Ln(B $BCRLi(B$B!&(B $BCfEg(B $B>=G7(B$B!&(B $BKLLn(B $BM*4p(B$B!&(B ($B3X(B)$B23K\(B $BFF;K(B$B!&(B ($B@5(B)$BC+20(B $B7$B!&(B ($B@5(B)$B;T66(B $BM40l(B$B!&(B ($B@5(B)$B@>;3(B $B3P(B | dryreforming carbon deposition Ce/Ni/Al2O3
| SY-8 | 418 |