化学部门:精选参考文献 6121 光谱学和动力学 Dunkelberger, AD; Ratchford, DC; Grafton, AB; Breslin, VM; Ryland, ES; Katzer, DS; Fears, KP; Weiblen, RJ; Vurgaftman, I.; Giles, AJet al. 超快主动调节 Berreman 模式。ACS Photonics 2020, 7 (1), 279;https://doi.org/10.1021/acsphotonics.9b01578 Dunkelberger, AD; Ellis, CT; Ratchford, DC; Giles, AJ; Kim, M.; Kim, CS; Spann, BT; Vurgaftman, I.; Tischler, JG; Long, JPet al. 通过载流子光注入主动调节表面声子极化子共振。 Nature Photonics 2018, 12 (1), 50; https://doi.org/10.1038/s41566-017-0069-0 Grafton, AB; Dunkelberger, AD; Simpkins, BS; Triana, JF; Hernández, FJ; Herrera, F.; Owrutsky, JC 硝普钠中的激发态振动-极化子跃迁和动力学。Nature Communications 2021, 12 (1), 214.;https://doi.org/10.1038/s41467-020-20535-z Klug, CA; Miller, JB 自动检测宽 NMR 谱:顺磁性 UF4 的 19F NMR 和负载型 Pt 催化剂的 195Pt NMR。固态核磁共振 2018,92,14-18;https://doi.org/10.1016/j.ssnmr.2018.03.006 Maza, WA;Pomeroy, ED;Steinhurst, DA;Walker, RA;Owrutsky, JC 固体氧化物燃料电池合成气运行中硫污染的光学研究。电源杂志 2021,510,230398;https://doi.org/10.1016/j.jpowsour.2021.230398 6123 材料合成与加工 Chaloux, BL;Yonke, BL;Purdy, AP;Yesinowski, JP;Glaser, ER;Epshteyn, A.; P(CN)3 碳磷氮化物前体扩展固体材料化学,2015, 27 (13), 4507–4510;https://doi.org/10.1021/acs.chemmater.5b01561 Epshteyn, A.; Garsany, Y.; More, KL; Jain, V.; Meyer III, HM; Purdy, AP; Swider-Lyons, KE;通过将催化剂纳米粒子粘附固定在石墨碳载体上来提高电催化剂耐久性的有效策略,ACS Catalysis 2015, 5 (6), 3662–3674; https://doi.org/10.1021/cs501791z Maza, WA、Breslin, VM、Owrutsky, JC、Pate, BB、Epshteyn, A、水合电子的纳秒瞬态吸收和线性全氟烷基酸和磺酸盐的还原,环境科学技术快报,2021,8,7,525-530;https://doi.org/10.1021/acs.estlett.1c00383 MT Finn、BL Chaloux 和 A. Epshteyn,探索反应条件对声化学生成的 Ti-Al-B 燃料粉末形态和稳定性的影响,能源与燃料,2020,34,11373-11380; https://doi.org/10.1021/acs.energyfuels.0c01050 MD Ward、BL Chaloux、MD Johannes 和 A. Epshteyn,《硼硫酸铵中的便捷质子传输——一种适用于中温的未加湿固体酸聚电解质》,《先进材料》,2020 年,2003667;https://doi.org/10.1002/adma.202003667 6124 材料应用概念 Thum, MD;Casalini, R.;Ratchford, D.;Kołacz, J.;Lundin, JG,通过表面诱导无序实现的液晶芯纳米纤维的光致变色相行为。J. Mat. Chem. C,2021,9,12859-12867;https://doi.org/10.1039/D1TC02392F Giles, SL;Sousa-Castillo, A.;Santiago, EY;Purdy, AP;Correa-Duarte, MA;Govorov, AO;Baturina, OA 使用 SiO2-TiO2 复合颗粒和空气进行有害硫化物 2-氯乙基乙基硫化物的可见光驱动氧化。胶体界面科学通讯,2021,41,100362;https://doi.org/10.1016/j.colcom.2021.100362
This course aims at introducing the basic concepts and techniques in carrying out chemical analysis by using various modern spectroscopic and chromatographic instruments.Students will learn how to use modern instruments to determine the amounts of substances present in a mixture down to part per million levels (ppm), and identify the structure of a compound.Techniques such as UV-visible spectroscopy, infrared spectroscopy, mass spectrometry, nuclear magnetic resonance spectroscopy, gas chromatography and high performance liquid chromatography will be covered.This course will also discuss some common standard practices of collecting and preparing samples for laboratory testing, the accreditation system in testing laboratories.This course is conducted in the format of lecture.本课程旨在介绍化学分析中所用到的现代光谱和色谱仪器的基本概念和技术。学生将学习使用该 等仪器来分析浓度水平低至百万分之一的物质,并确定化合物的结构。课程内容包括紫外 − 可见光 谱法、红外线光谱法、质谱分析法、核磁共振、气相色谱法及高效能液相色谱法的操作技巧,以 及化验工作中的收集及制备样本的常用标准技巧和香港化验室所实行的认可系统。课程以讲课形 式进行。 Medium of Instruction:
5th floor of the Fusion Building 5th floor of the Fusion Building 5th floor of the Fusion Building 5th floor of the Fusion Building 5th floor of the Fusion Building Online reservations Available Online reservations Available Online reservations Available ・Optical microscope related 〇 〇 〇 〇 (Microstructure observation) (Microstructure observation) (Microstructure observation) (Microstructure observation) ・・・・Cell-related equipment Cell-related equipment Cell-related equipment Cell-related equipment Cell-related equipment Cell-related equipment 〇 〇 〇 (Cell analysis and preparation) (Cell analysis and preparation) (Cell analysis and preparation) (Cell analysis and preparation) ・・・Protein-related equipment Protein-related equipment Protein-related equipment Protein-related equipment △ △ △ △ (Mass analysis and protein analysis) (Mass analysis and protein analysis) (Mass analysis and protein analysis) (Mass analysis and protein analysis) ・・・・Nucleic acid-related equipment Nucleic acid-related equipment Nucleic acid-related equipment Nucleic acid-related equipment Nucleic acid-related equipment 〇 〇 〇 (DNA分析)・离心分离〇(生物学成分的纯化和浓度)・光分析相关(使用光谱吸收,荧光等质量和定量)基础医学基础医学构建基本医学基础医学构建基本医学基础医学构建基本医学builder buildent builtion fotecenter x photoctenter x x×posters ID,图片,图像/图像,图像/图像△(超细结构观察,分析,样品制备) *在线预订确认仅・ tsubstance标本制备××××(轻松的组织样品制备服务)・总通用设备△通用设备△
资料来源:https://towardsdatascience.com/machine-learning-methods-to-aid-in-coronavirus-response-70df8bfc7861、https://bdtechtalks.com/2020/03/09/artificial-intelligence-covid-19-coronavirus/、https://news.yahoo.co.jp/byline/kazuhirotaira/20200326-00169744/
体育与运动的基础知识(A:Yukawa)B1021005a机电工程II(INADA)[A-312] B12530070 B12530070概率和统计(A:MATSUO)[A-109] B1013004a B1013004a基本磁性锻炼基本物理学化学3(KAWAWASHIMA)(tenori)3(Kawawashima)[aawashima)[aawashima)[aawashima)] [A-308] Basic Physics Chemistry 4 B12530160 (Tenori) [A-309] B14533020 Basic Mechanical Engineering Experiments Basic Electrical and Electronic Information Mathematics Basic Analytical Chemistry 3 (Each Faculty) (Lim) (Arakawa) [A-309] B14533030 B11510110 [A-308] Basic Analytical Chemistry 4 B12510170 (Shibatomi)[A-309] B14533040
范围:涵盖岩石力学和实验室测试的印度标准,岩石采样,岩石和岩石块的分类,用于工程目的,岩石质量的负载能力,岩石质量和岩石斜坡的改善。联络:
实验室名称1富士实验室2山摩托实验室3山原实验室4萨萨哈拉实验室5木马实验室6 Murata实验室7 Murata实验室8 Kawabata Laboratory 9 Kawabata实验室9 Okubo实验室10 Shibuo Laboratory 10 Shibuo实验室实验室11 Matsuoka Laboratory 12 Yamada Laboratory 13 YAMADA Laboratory 14 Okub sheratory 14 Okuubi fujiuchi 14 o实验室18 SASA实验室19 Shibuo实验室20 Noguchi实验室21 Fujiuchi Laboratory 22 Kawabata Laboratory 23 SASA实验室23 SASA实验室24 Noguchi Laboratory 25 Shibuo实验室25 Shibuo实验室26 IWAI实验室27 SASA实验室27 Sasa Laboratory 28 Kawabata Labotoration 28 Kawabata实验室29 Haseguchi Laguchi Laguchi Laboratory 30 Noguchi Laboratory 31 Noguchi Laboration 31 31 Murata实验室32 Fujiuchi实验室33 Yamada Laboratory 34 Fujiuchi Laboratory 35 Sakamoto Laboratory 36 SASA实验室37 Hasegawa Laboratory 38 Hasegawa Laboratory