NU_Research (@nu__research) 's Twitter Profile
NU_Research

@nu__research

This NU_Research Twitter has been integrated into the official Nagoya University twitter.

ID: 2481420884

linkhttps://twitter.com/NagoyaUniv calendar_today07-05-2014 05:05:28

625 Tweet

287 Takipçi

136 Takip Edilen

名古屋大学博物館 (@nagoyau_museum) 's Twitter Profile Photo

本日スタート!!【第24回名古屋大学博物館特別展カニコレ'18 - カニのハサミは使いよう】ぜひお越しください。入場無料です。num.nagoya-u.ac.jp/event/special/…

本日スタート!!【第24回名古屋大学博物館特別展カニコレ'18 - カニのハサミは使いよう】ぜひお越しください。入場無料です。num.nagoya-u.ac.jp/event/special/…
Asia Research News (@researchsea) 's Twitter Profile Photo

Researchers found #molecules that control #BodyClocks. Great work by Dr Taeko Nishikawa-Ohkawa, Dr Yusuke Nakane, Dr Ayato Sato, Dr T. Katherine Tamai, Prof Takashi Yoshimura Nagoya Univ ITbM NU_Research & colleagues! buff.ly/2H0vcc0 Got any #AsiaResearchPics? Share here :)

Researchers found #molecules that control #BodyClocks. Great work by Dr Taeko Nishikawa-Ohkawa, Dr Yusuke Nakane, Dr Ayato Sato, Dr T. Katherine Tamai, Prof Takashi Yoshimura <a href="/NagoyaITbM/">Nagoya Univ ITbM</a> <a href="/NU__Research/">NU_Research</a> &amp; colleagues! buff.ly/2H0vcc0 Got any #AsiaResearchPics? Share here :)
Chemical Communications (@chemcommun) 's Twitter Profile Photo

The ortho-substituent on 2,4-bis(trifluoromethyl)phenylboronic acid catalyzed dehydrative condensation between carboxylic acids and amines - Prof Ishihara ow.ly/h7Kd30kgMPD

The ortho-substituent on 2,4-bis(trifluoromethyl)phenylboronic acid catalyzed dehydrative condensation between carboxylic acids and amines -  Prof Ishihara ow.ly/h7Kd30kgMPD
NU_Research (@nu__research) 's Twitter Profile Photo

"Tricking" Bacteria into Hydroxylating Benzene bit.ly/2JDuO5t NU_Research Angewandte Chemie E.coli biocatalyst hydroxylates C-H bonds in benzene #science #Biochemistry #bacteria

"Tricking" Bacteria into Hydroxylating Benzene bit.ly/2JDuO5t <a href="/NU__Research/">NU_Research</a> <a href="/angew_chem/">Angewandte Chemie</a> E.coli biocatalyst hydroxylates C-H bonds in benzene #science  #Biochemistry #bacteria
Asia Research News (@researchsea) 's Twitter Profile Photo

Researchers (L-R) Dr Ayato Sato, Prof Toshinori Kinoshita and Dr Yosuke Toda Nagoya Univ ITbM NU_Research found compounds that keep #plants fresh, like #roses and #oats buff.ly/2LM3hzt We want to see you behind your #research. Check out #AsiaResearchPics and share yours!

Researchers (L-R) Dr Ayato Sato, Prof Toshinori Kinoshita and Dr Yosuke Toda <a href="/NagoyaITbM/">Nagoya Univ ITbM</a> <a href="/NU__Research/">NU_Research</a> found compounds that keep #plants fresh, like #roses and #oats buff.ly/2LM3hzt We want to see you behind your #research. Check out 
 #AsiaResearchPics and share yours!
Asia Research News (@researchsea) 's Twitter Profile Photo

Although its field originated in Europe, Takehiko Takahashi Nagoya University was the first to coin the term ‘solid ionics’ in 1967. The largest commercial application of solid state ionics is #lithium-ion #batteries buff.ly/2l8B0Yt NIMS (物質・材料研究機構) NU_Research #AsiaResearchPics

Although its field originated in Europe, Takehiko Takahashi <a href="/NagoyaUniv/">Nagoya University</a> was the first to coin the term ‘solid ionics’ in 1967. The largest commercial application of solid state ionics is #lithium-ion #batteries buff.ly/2l8B0Yt <a href="/NIMS_PR/">NIMS (物質・材料研究機構)</a> <a href="/NU__Research/">NU_Research</a> #AsiaResearchPics
Asia Research News (@researchsea) 's Twitter Profile Photo

Can you see me?: A material that can mimic animals’ changes in color like the chameleon developed by researchers Nagoya University NU_Research Find out more: buff.ly/2ItRsf6

Can you see me?: A material that can mimic animals’ changes in color like the chameleon developed by researchers <a href="/NagoyaUniv/">Nagoya University</a> <a href="/NU__Research/">NU_Research</a>  Find out more: buff.ly/2ItRsf6
NU_Research (@nu__research) 's Twitter Profile Photo

Recreating the Chameleon: Material Mimics Color Changes Of Living Organisms bit.ly/2Mu8bRN NU_Research Researchers create chameleon-mimicking color-changing material #biomechanics #color #materials #ecology Nagoya University

Recreating the Chameleon: Material Mimics Color Changes Of Living Organisms bit.ly/2Mu8bRN <a href="/NU__Research/">NU_Research</a> Researchers create chameleon-mimicking color-changing material #biomechanics #color #materials #ecology <a href="/NagoyaUniv/">Nagoya University</a>
NU_Research (@nu__research) 's Twitter Profile Photo

Check out the Video Abstract! youtu.be/LF4ApAEG8zc Recreating the Chameleon: Material Mimics Color Changes Of Living Organisms AdvSci NU_Research bit.ly/2Mu8bRN

Chemical Communications (@chemcommun) 's Twitter Profile Photo

Reconstitution of full-length P450BM3 with an artificial metal complex by utilising the transpeptidase Sortase A - by Osami Shoji & Yoshihito Watanabe #NagoyaUniv ow.ly/SycJ30kV3m8

Reconstitution of full-length P450BM3 with an artificial metal complex by utilising the transpeptidase Sortase A - by Osami Shoji &amp; Yoshihito Watanabe #NagoyaUniv   ow.ly/SycJ30kV3m8
NU_Research (@nu__research) 's Twitter Profile Photo

KMI Film is released! You must see this! Nagoya University youtu.be/TP2WFsN_k6wKMI Kobayashi-Maskawa Institute for the Origin of Particles and the Universe(KMI) tries to answer the big questions of all time; what is the universe made of? What is the origin of the space-time? And more!

NU_Research (@nu__research) 's Twitter Profile Photo

Rice plants evolve to adapt to flooding bit.ly/2JxxcJR NU_Research @sciencemagazine An international research team have discovered a gene in rice that is critical to its survival in flood conditions and shed light on its molecular function and evolutionary history.

Rice plants evolve to adapt to flooding bit.ly/2JxxcJR <a href="/NU__Research/">NU_Research</a> @sciencemagazine An international research team have discovered a gene in rice that is critical to its survival in flood conditions and shed light on its molecular function and evolutionary history.
K. Ishihara Lab. 石原研 (@piodide) 's Twitter Profile Photo

[北大 松永研との共同研究成果] "Pentamethylcyclopentadienyl rhodium(III)–chiral disulfonate hybrid catalysis for enantioselective C–H bond functionalization" T. Yoshino* & S. Matsunaga* et al. Nature Catal. 2018. DOI: 10.1038/s41929-018-0106-5 nature.com/articles/s4192…

Common-S. サカエ大学|運営:松坂屋名古屋店 (@sakae_common_s) 's Twitter Profile Photo

【セミナー参加者募集】 第72回名大カフェ〝Science, and Me" 世界が絶賛したピラミッド投資技術でスタートアップ! 2019年7月10日(水) 19:00〜20:15 松坂屋南館隣 S.Coreにて kokuchpro.com/event/1907101/ #サカエ大学 #コモンズ #名古屋大学 #セミナー #栄 #名古屋

【セミナー参加者募集】
第72回名大カフェ〝Science, and Me" 世界が絶賛したピラミッド投資技術でスタートアップ! 
2019年7月10日(水) 19:00〜20:15
松坂屋南館隣 S.Coreにて
kokuchpro.com/event/1907101/
#サカエ大学 #コモンズ #名古屋大学 #セミナー #栄 #名古屋
あいちサイエンスフェスティバル (@aichisciencefes) 's Twitter Profile Photo

【名大カフェScience, and Me】 世界が絶賛したピラミッド透視技術で、スタートアップ! -ふりそそぐ宇宙線で、見えない場所を診る- 7月10日(水) 19:00〜20:15 会場:S.Core(名古屋市中区栄3-30-28岩田サカエビル5F) 講師:森島邦博(名古屋大学大学院理学研究科特任助教) cm-s.net

【名大カフェScience, and Me】
世界が絶賛したピラミッド透視技術で、スタートアップ!
-ふりそそぐ宇宙線で、見えない場所を診る-
7月10日(水) 19:00〜20:15
会場:S.Core(名古屋市中区栄3-30-28岩田サカエビル5F)
講師:森島邦博(名古屋大学大学院理学研究科特任助教)
cm-s.net
NU_Research (@nu__research) 's Twitter Profile Photo

Keep the Light Off: A Material with Improved Mechanical Performance in the Dark bit.ly/2IurCse NU_Research “Shy” inorganic #semiconductor crystals perform best in the dark Nagoya University #electronics #physics #material science.sciencemag.org/content/360/63…

Keep the Light Off: A Material with Improved Mechanical Performance in the Dark bit.ly/2IurCse  <a href="/NU__Research/">NU_Research</a> “Shy” inorganic #semiconductor crystals perform best in the dark <a href="/NagoyaUniv/">Nagoya University</a> #electronics #physics #material science.sciencemag.org/content/360/63…
Asia Research News (@researchsea) 's Twitter Profile Photo

I'm flexible in the dark 🕶️ Inorganic semiconducting crystal, which is brittle under light, is actually flexible in the dark, researchers found buff.ly/2rUky0Z Nagoya University NU_Research #materialsscience #electronics #semiconductor #crystals

I'm flexible in the dark 🕶️ Inorganic semiconducting crystal, which is brittle under light, is actually flexible in the dark, researchers found buff.ly/2rUky0Z  <a href="/NagoyaUniv/">Nagoya University</a> <a href="/NU__Research/">NU_Research</a> #materialsscience #electronics #semiconductor #crystals