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Note: this sheet is obsolete. Please see:
Lecture list (Jpn./Eng.)
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Compulsory subjects required to complete the program
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Obtain 8 credits or more from the Special Lectures on Quantum Science and Technology (of which 2 credits or more for *, 2 credits or more for †, and 2 credits or
more from the lecture of the department different from the department of the fellowship student).
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Compulsory research training
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Participation in all of the following items is a requirement for completing the program.
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1. Q-STEP Seminar (About 1-2 hours per seminar. Take 3 or more times by the end of the program. Attendance will be checked)
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2. Q-STEP Colloquium (at the end of each fiscal year)
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3. Feedback from the sub supervisor (twice a year)
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Compulsory elective research training
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Participation in one or more of the following items is a requirement for completing the program.
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1. Engineering Competency I - Project-based learning-

工学コンピテンシーII -研究インターンシップ-
工学コンピテンシーⅢ -サマー・キャンプ-
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2. Engineering Competency II -Research Internship-
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3. Engineering Competency III -Summer Camp-
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4. Introduction to Quantum Computation (IBM Q training) * Since the number of participants is limited, advance course registration is necessary.
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5. Q-STEP Doctoral Exercise (The implementation differs depending on the department you belong to)
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* Semester, day, and period are subject to change. Please confirm at UTAS.
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Lecture/
research
training
Graduate School in chargeDepartmentCourse nameCreditsSemesterDay and periodCourse code on UTASRemarks
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Special Lectures on Quantum Science and TechnologyEngineeringCommonMultidisciplinary Lecture on Quantum Science and Technology I *2S1S2Thu. 43747-097Code share with Nano Quantum Information Electronics I
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Multidisciplinary Lecture on Quantum Science and Technology II *2S1S2Thu. 63799-203 or 204Code share with Global Focus on Materials Science I or II
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Multidisciplinary Lecture on Quantum Science and Technology III *2A1A2Thu. 43799-061Q-STEP's own lecture
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Entrepreneurship I †1S1Wed. 63799-371
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Entrepreneurship II †1S2Wed. 63799-372
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Engineering Literacy I -Innovation, Technology Management- †1S1S2Wed. 43799-149
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Engineering Literacy II -Business Strategy, Intellectual Property- †1A1A2Thu. 43799-150
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Engineering Literacy III -Advanced Academic Presentation- †1Year-longIntensive3799-151
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Electrical Engineering and Information SystemsSolid State Electronics I2S1S2Tue. 13747-035
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Solid State Electronics II2S1S2Mon. 33747-036
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Reliability Physics for Nanoscale Semiconductor Devices1S1Mon. 23747-105
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Fundamentals of Semiconductor Devices2A1A2Mon. 43747-046
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Integrated PhotonicsS1Mon. 13747-049
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Semiconductor Photonics2S1S2Thu. 23747-116
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Quantum theory of light and light-matter interaction2A1A2Fri. 13747-117
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Advanced Electromagnetics and Electromagnetic WavesA1A2Mon. 53747-113
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Fiber PhotonicsS1S2Tue. 33747-112
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Semiconductor Integrated Processing2S1S2Tue. 23747-015
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Bio Electronic and Information Engineering2A1A2Fri. 53747-096
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Integrated Device Engineering2S1S2Fri. 13747-038
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Properties of nanomaterialsA1Fri. 43747-114
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Fundamentals of Optics and Photonics2A1A2Wed. 33747-118
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Applied PhysicsAdvanced Lectures on Quantum Mechanics2A1A2Tue. 23752-001
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Surface Physics2S1S2Mon. 43752-006
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Fundamentals of Magnetics Resonance2S1S2Fri. 33752-008
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Quantum Information Physics2A1A2Tue. 23752-011
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Semiconductor Physics2S1S2Wed. 23752-012
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Advanced Lectures on Optics2S1S2Fri. 23752-017
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Optical Engineering2A1A2Wed. 53752-018
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Optical Physics2A1A2Thu. 23752-030
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Solid State Physics2A1Mon. 3, Thu. 33752-056
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Applied Nonlinear Optics2S1S2Fri. 23752-059
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Solid State Physics I2S1S2Tue. 33752-061
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Solid State Physics II2A1A2Tue. 33752-062
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Experimental Methods in Applied Physics (A)2A1A2Tue. 43752-065
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Experimental Methods in Applied Physics (B)2S1S2Wed. 33752-066
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Introduction to Condensed Matter Physics2S1S2Thu. 13752-074
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Statistical Physics2S1S2Tue. 23752-080
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Soft Matter Science2S1S2Mon. 33752-082
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Quantum Mechanics2S1S2Thu. 23752-083
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Material Science2S1S2Wed. 53752-084
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Computational Physics2S1S2Mon. 53752-085
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Computational Science for Many-Body Problems2S1S2Tue. 43752-091
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Information Compression in Computational Science23752-092
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Data Compression in Computational Science and Quantum Computing2A1A2Thu. 33752-094
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Special Lecture on Innovation and Applied Physics2S1S2Fri. 43752-093
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Special Lectures on Applied Physics I2Intensive3752-042
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Special Lectures on Applied Physics II23752-043
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Special Lectures on Applied Physics III2Intensive3752-044
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Special Lectures on Applied Physics IV2Intensive3752-045
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Special Lectures on Applied Physics V23752-046
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Special Lectures on Applied Physics VI23752-022
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Special Lectures on Applied Physics VII23752-027
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Special Lectures on Applied Physics VIII23752-041
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Special Lectures on Applied Physics IX13752-070
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Nuclear Engineering and ManagementAdvanced Laser and Photon Science2S1S2Wed. 53789-061Language: English. Held in even-numbered years.
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Advanced Lecture on Simulation Science2A1A2Wed. 53789-057 Language: English. Held in odd-numbered years.
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Fundamentals in Nuclear Physics2S1Tue. 1, Tue. 23789-038Language: English
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Radiation Biology2S1Wed. 1, Wed. 23789-037Language: English
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Advanced Radiation Measurements2S1S2Wed. 53789-048Language: English. Held in odd-numbered years.
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Quantum Beam Engineering2S1S2Wed. 43789-050Language: English. Held in even-numbered years.
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Applied Radiation Engineering2A1A2Wed. 23789-046Language: English
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Mechanical EngineeringMolecular Thermo-Fluid Engineering2S1Tue. 2, Thu. 23722-060Language: English
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Nanotechnology2A1A2Tue. 33722-161Language: English
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Information and Measurement2S1Tue. 2, Fri. 23724-080Language: English
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Applied Mathematics for Mechanical Engineering2S1Tue. 3, Fri. 33722-101 Language: English
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Molecular Orbital Methods and Molecular Dynamics Simulations2A1A2Thu. 33722-142
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Precision EngineeringUltra-Precision Machining2A1A2Wed. 23729-067
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Precision Dimensional Metrology2A1A2Wed. 13729-092
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Optical Measurement2A1A2Thu. 13729-036
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Theory of Measurement and Analysis of Biomedical Signals2S1S2Wed. 33729-068
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BioengineeringOverview of Biomaterials 22S1S2Tue. 33791-215
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Overview of Biodevices2S1S2Tue. 43791-203
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Overview of Biodevices 22S1S2Tue. 43791-213