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最終更新日:2025年4月21日

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グローバル教養科目(Women in Science)
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The course will take an intersectional approach to why we commonly find an underrepresentation of women in the Science, Technology, Engineering and Mathematics (STEM) fields. The course will begin by addressing our own unconscious biases and stereotypes, and question the research behind male and female differences. We will cover the brief history of the underrepresentation of minorities and explore research articles on why and how women and other minorities have been excluded from STEM fields. Students will be expected to read scientific articles, discuss them, and apply those concepts to examine their own social environments.
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7V0101050S-P/F
FGL-GL3150S3
グローバル教養科目(Women in Science)
RUIZ TADA Elisa
S1 S2
水曜3限
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グローバル教養科目(Women in Science)
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The course will take an intersectional approach to why we commonly find an underrepresentation of women in the Science, Technology, Engineering and Mathematics (STEM) fields. The course will begin by addressing our own unconscious biases and stereotypes, and question the research behind male and female differences. We will cover the brief history of the underrepresentation of minorities and explore research articles on why and how women and other minorities have been excluded from STEM fields. Students will be expected to read scientific articles, discuss them, and apply those concepts to examine their own social environments.
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7V0101050S
FGL-GL3150S3
グローバル教養科目(Women in Science)
RUIZ TADA Elisa
S1 S2
水曜3限
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Application of Biometrics and Biostatistics to Agricultural Science
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Statistics and biometrics have emerged as crucial disciplines not only in agricultural sciences but also in various other fields. This significance is primarily attributed to three factors: Firstly, advancements in data measurement techniques have facilitated the collection of extensive and diverse biological and agronomic data that were previously unattainable. Secondly, the evolution of data science methodologies has enabled the integration and modeling of such collected data. Thirdly, the enhancement of computational capabilities has empowered the utilization of these methodologies. These advancements have rendered statistical and biometric methods indispensable for extracting insights from the vast and varied biological and agronomic datasets. Throughout this lecture series, a diverse array of biological and agronomic datasets will serve as illustrative examples to demonstrate various analytical methods. Delivered in a hands-on format, utilizing R, Python, and Matlab, the aim is to equip students with practical analysis skills. The initial portion of the course, spanning the first one-third, will focus primarily on techniques for summarizing, visualizing, and modeling relationships within multivariate datasets. In the subsequent one-third, students will delve into linear models, linear mixed models, local regression, and nonlinear models. Finally, in the last segment, students will explore image analysis, machine learning, and deep learning methods. While the course will cover a broad spectrum of methods, ranging from introductory to advanced levels, the emphasis will be on developing the capability to independently conduct analyses rather than on elaborating on the theoretical underpinnings of the methods.
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3901165
Application of Biometrics and Biostatistics to Agricultural Science
岩田 洋佳
S1 S2
火曜5限
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統合物質科学俯瞰講義Ⅰ
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広く産学官にわたってグローバルに活躍するために必要な「俯瞰力」を養成することを目指す。物質科学の各分野について最先端の知識を修得し、自分の専門分野と周辺分野がどのように関連するか、あるいはし得るか、について深く考察するために、第一線で活躍する講師の方々にその分野の最前線を概観していただく。さらに、それらの講義を通して異分野間のコミュニケーションを円滑に進めるための具体的方法論を学ぶ。 This survey course is designed to enable students to develop the broad perspective that is required of global leaders working in and across industry, academia, and government. Students will gain knowledge and insight on advancements in each field of materials science research, given by leading researchers working on the frontline in those fields. This will allow students to consider how peripheral fields are related to their own area of expertise, and to consider the potential for forging bridges between related fields in the future. In addition, students will learn specific methodologies designed to facilitate smooth communication among different disciplines.
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3799-203
GEN-CO6z40L1
統合物質科学俯瞰講義Ⅰ
各教員
S1 S2
木曜6限
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ISAD Environmental Science
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This course covers principles and topics related to environmental sciences important for the development of the world. Global and local environmental issues related to climate change, agriculture and marine environment, will be introduced in the course.
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060414170
FAG-MI3018L2
ISAD Environmental Science
山本 光夫
A1 A2
火曜2限
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Advanced Study of Science & Technology
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This course aims to cultivate internationally competitive young researchers equipped with literacy and competency to become future leaders in industry and academia. The course deals with multidisciplinary application skills and the in-depth research in specialized fields so that students accomplish the ability to work in a broader spectrum and apply one’s skills to a multidisciplinary setting. The topics of the course include medical and biomedical robotics, medical high-tech industries, disease prevention, health care system, science technology and industrial policy, energy technology, and health security and community resilience.
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5130220
GPP-MP6Z30L3
Advanced Study of Science & Technology
新井 史人
A1
集中
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Science, Technology and Public Policy
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This course will deal with wide range of issues from local to global levels faced at the interface areas between science, technology and public policy from comparative perspective of Japan, the US and Europe. It offers key theoretical issues surrounding Science and Technology and provides students with the tools and frameworks, such as risk assessment/ management and transition management, to analyze them. This course invites students from both natural science backgrounds (i.e. the graduate school of engineering, new frontier science and so on) and social science backgrounds (graduate school of public policy, law and politics, and economics and public policy). We expect students to acquire interdisciplinary perspective in addition to their primary major, which is one of the critical skill in analyzing complex social technical issues posed by science and technology.
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3792-146
GEN-TM6n49L3
Science, Technology and Public Policy
松尾 真紀子
A2
月曜3限、水曜4限
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Liberal Arts for Advanced Students II
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"War is hell," said General William Tecumseh Sherman. He knew exactly what he meant. After all, he was the man who led the “March to the Sea" during the American Civil War, mercilessly burning and destroying every Southern town he came across. The 20th century, sometimes called the "century of war," made his words far more prophetic than he could have ever imagined. At least 108 million people have in died in wars during the 20th century. This is a staggering number, in comparison to those who died from all wars through the entirety of preceding human history, between 150 million and one billion people. And even now, more than 20 years into the 21st century, wars show no sign of ceasing. Why have modernization and science, which supposedly contributed to human progress, not yet abolished this barbaric practice of "war"? In 1947, three years after the term "genocide" was coined to describe the systematic destruction of particular race or ethnic group, comedian Charlie Chaplin remarked in his film Monsieur Verdoux: "One murder makes a villain; millions, a hero. Numbers sanctify, my good fellow.” What history and power make this absurdity possible? And what should be done to resolve it? In this class, we will explore the answers to these questions through various documentaries, texts, and vigorous discussion.
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08X0005
FAS-XA4A04L3
Liberal Arts for Advanced Students II
YANG Manuel
S1 S2
火曜5限
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Introduction to Social Science
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At the end of the course, the student should have familiarised with the key concepts informing epistemological and methodological debates in social science, such as hypothesis, theory, falsification, verification, covering law, causality, with particular consideration for positivistic paradigms and anti- or post-positivistic reactions. The student should be aware of the specific difficulties of social scientific disciplines in studying human societies arising from the problematic separation between the studied object and the studying subject, and the link between social science and the political dimension. He should familiarise with problems of social research design, starting from the specificities characterizing the various stages of social science research. The student should become aware of the functional classification of social science methods in qualitative and quantitative, familiarising with a number of techniques in both domains, while grasping that contemporary social research increasingly requires the application of different methods and interdisciplinary approaches, which also lead to the necessity of teamwork coordination. The course also aims at providing a large variety of examples where the concepts and principles described above find their application and didactic clarification. Those examples will focus in particular on the study of technology and its social impact. Finally, the student should become aware of the moral implications, limits and rules informing social science research, as well as of the role and importance of effective communication in the social sciences.
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5112250
GPP-MP5P10L3
Introduction to Social Science
ORSI Roberto
A1 A2
集中
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国際水産開発学特論(Global Fisheries Science and Economics)
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Basic knowledge on fishery economics will be reviewed through lectures using various academic papers. The following topics will be covered: 1) The state of fisheries 2) Fisheries biology and stock assessment 3) Economics of overfishing 4) Right-based fishery management 5) Small-scale fishery 6) Seafood consumption and health 7) Eco-labels 8) Fishbanks 9) Fishers' microbehaviors
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3910191
国際水産開発学特論(Global Fisheries Science and Economics)
阪井 裕太郎
A1 A2
集中
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