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2021 연구성과별 연구자 정보 (1071 / 2991)

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Document Title Author Full Name Author Short Name Index Corresponding Address ResearcherID ResearcherID Author Name ORCID ORCID Author Name Related Email
Here, There, Anywhere: Profiling-Driven Services to Tame the Heterogeneity of Edge Applications Pandey, Manish Pandey, M 1 교신저자 Kyungpook Natl Univ, Sch Comp Sci & Engn, Daegu, South Korea J-6825-2019 Pandey, Manish 0000-0002-1049-0926 Pandey, Manish manish@knu.ac.kr;bdantasc@cs.vt.edu;minhld38@gmail.com;ywkwon@knu.ac.kr;tilevich@cs.vt.edu;
Here, There, Anywhere: Profiling-Driven Services to Tame the Heterogeneity of Edge Applications Cruz, Breno Dantas Cruz, BD 2 Virginia Tech, Software Innovat Lab, Blacksburg, VA USA HHN-1163-2022 Dantas Cruz, Breno manish@knu.ac.kr;bdantasc@cs.vt.edu;minhld38@gmail.com;ywkwon@knu.ac.kr;tilevich@cs.vt.edu;
Here, There, Anywhere: Profiling-Driven Services to Tame the Heterogeneity of Edge Applications Le, Minh Le, M 3 Walmart, Bentonville, AR USA manish@knu.ac.kr;bdantasc@cs.vt.edu;minhld38@gmail.com;ywkwon@knu.ac.kr;tilevich@cs.vt.edu;
Here, There, Anywhere: Profiling-Driven Services to Tame the Heterogeneity of Edge Applications Kwon, Young-Woo Kwon, YW 4 Kyungpook Natl Univ, Sch Comp Sci & Engn, Daegu, South Korea HGE-6607-2022 Kwon, Young-Woo 0000-0003-0625-8232 Kwon, Young-Woo manish@knu.ac.kr;bdantasc@cs.vt.edu;minhld38@gmail.com;ywkwon@knu.ac.kr;tilevich@cs.vt.edu;
Here, There, Anywhere: Profiling-Driven Services to Tame the Heterogeneity of Edge Applications Tilevich, Eli Tilevich, E 5 Virginia Tech, Software Innovat Lab, Blacksburg, VA USA 0000-0003-2415-6926 Tilevich, Eli manish@knu.ac.kr;bdantasc@cs.vt.edu;minhld38@gmail.com;ywkwon@knu.ac.kr;tilevich@cs.vt.edu;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Shin, Sang Su Shin, SS 1 Korea Inst Energy Res KIER, Photovolta Res Dept, Daejeon 34129, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Shin, Sang Su Shin, SS 1 Kyungpook Natl Univ, Dept Elect Engn, Daegu 41566, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Kim, Kihwan Kim, K 2 Korea Inst Energy Res KIER, Photovolta Res Dept, Daejeon 34129, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Yoo, Jinsu Yoo, J 3 Korea Inst Energy Res KIER, Photovolta Res Dept, Daejeon 34129, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Kim, Ji Hye Kim, JH 4 Ind Surface Adv Coating ISAC Res Inc, Daejeon 34036, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Ahn, Seungkyu Ahn, S 5 Korea Inst Energy Res KIER, Photovolta Res Dept, Daejeon 34129, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Cho, Ara Cho, A 6 Korea Inst Energy Res KIER, Photovolta Res Dept, Daejeon 34129, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Kim, Dongryeol Kim, D 7 Korea Inst Energy Res KIER, Photovolta Res Dept, Daejeon 34129, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Kim, Dongryeol Kim, D 7 Kyungpook Natl Univ, Sch Mat Sci & Engn, Daegu 41566, South Korea joopark@kier.re.kr;
Heterojunction interface passivation strategy for Cu(In1-x,Gax)Se2 solar cell with nano-level engineering of Zn-based buffer structure via atomic layer deposition method Jo, Yonghee Jo, Y 8 Korea Inst Energy Res KIER, Photovolta Res Dept, Daejeon 34129, South Korea joopark@kier.re.kr;
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