Elementary Chinese Listening a
CHIN B1014
Course Code
CHIN B1014
Course Name
Elementary Chinese Listening a
Credit
2.0 - 2.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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2022/2023 Fall Winter
陈大龙, Tkalbarczyk,Zbigniew
Introduction
<p>Elementary Chinese Listening and Speaking II</p>
Elementary Chinese Listening and Speaking
CHIN B1013
Course Code
CHIN B1013
Course Name
Elementary Chinese Listening and Speaking
Credit
2.0 - 2.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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2020/2021 Spring Summer
无
Introduction
Introduction to Contemporary China
Embedded DSP Laboratory
ECE 420
Course Code
ECE 420
Course Name
Embedded DSP Laboratory
Credit
2.0 - 2.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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Introduction
Development of real-time digital signal processing (DSP) systems using a DSP microprocessor; several structured laboratory exercises, such as sampling and digital filtering; followed by an extensive DSP project of the student's choice.
2 undergraduate hours. 2 graduate hours. Prerequisite: ECE 310.
Embedded Systems
CS 431
Course Code
CS 431
Course Name
Embedded Systems
Credit
3.0 - 4.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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Introduction
A survey of sampled data systems and embedded architecture; key concepts in common embedded system applications; signal processing and control; embedded microprocessor and device interface; time-critical I/O handling; data communications; real-time operating systems and techniques for the development and analysis of embedded real-time software; hands-on laboratory projects.
3 undergraduate hours. 3 or 4 graduate hours. Prerequisite: CS 241 or ECE 391.
Students must register for one lab and one lecture section.
Emergence of Life
GEOL 111
Course Code
GEOL 111
Course Name
Emergence of Life
Credit
3.0 - 3.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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Introduction
Examines important theoretical and practical questions regarding the origin and evolution of life, as well as the search for life elsewhere in the universe. Uses the pioneering work of Carl Woese, whose "Tree of Life" revolutionized our understanding of the fundamental structure and evolutionary relatedness of all living entities on Earth.
Endocrine and Reproductive Biology 3
IBMS9005
Course Code
IBMS9005
Course Name
Endocrine and Reproductive Biology 3
Credit
5.0 - 5.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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2022/2023 Spring Summer
Brunton,Paula
2021/2022 Spring Summer
Brunton,Paula
2021/2022 Fall Winter
Holmes,Robert
2019/2020 Spring Summer
Brunton, Paula
Introduction
<p>Endocrine and Reproductive Biology 3 (ERB3) comprises an integrated series of lectures, practical classes, workshops and tutorials focused on major aspects of endocrinology and reproductive biology in human health and disease. The aim of this elective is to develop knowledge in major aspects of endocrinology and reproductive biology in human health and disease. A particular focus of the course will be how the different endocrine systems interact and how hormones affect the actions of different systems throughout the body.
Energy Conversion Systems
ME 400
Course Code
ME 400
Course Name
Energy Conversion Systems
Credit
3.0 - 3.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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2020/2021 Fall Winter
Lee, Timothy
Introduction
Processes and systems for energy conversion, including power and refrigeration cycles, air conditioning, thermoelectrics and fuel cells; ideal-gas mixtures and psychrometrics.
3 undergraduate hours. 4 graduate hours. Prerequisite: ME 200.
Engineering Graphics & Design
SE 101
Course Code
SE 101
Course Name
Engineering Graphics & Design
Credit
3.0 - 3.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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2022/2023 Spring Summer
Wang Xinlei
2021/2022 Spring Summer
Wang Xinlei
2021/2022 Fall Winter
王琤
2019/2020 Spring Summer
UIUC教师1, Wang Xinlei
2018/2019 Spring Summer
Wang Xinlei
Introduction
<p>Computer-aided design (CAD) software modeling of parts and assemblies. Parametric and non-parametric solid, surface, and wireframe models. Part editing and two-dimensional documentation of models. Planar projection theory, including sketching of perspective, isometric, multiview, auxiliary, and section views. Spatial visualization exercises. Dimensioning guidelines, tolerancing techniques. Team design project. Credit is not given for both SE 101 and ME 170. Students must register for one lab and one lecture section beginning with the same letter.
Engineering Materials
ME 330
Course Code
ME 330
Course Name
Engineering Materials
Credit
4.0 - 4.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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2022/2023 Spring Summer
Celebi,Kemal
Introduction
<p>Structures of polymers, metals, and ceramics as the basis for their mechanical behavior. Manipulation of structure through such processes as heat treatment and solidification. Mechanisms of material failure in service (yielding, fracture, fatigue, creep, corrosion, and wear) and simple design techniques to avoid these failures. Strategies for materials selection in design. Credit is not given for both ME 330 and either CEE 300 or MSE 280. Prerequisite: CHEM 102 and TAM 251. Students must register for one lab and one lecture section.</p>
Engineering Orientation
ENGR 100
Course Code
ENGR 100
Course Name
Engineering Orientation
Credit
1.0 - 1.0
Instructors
Parent ID
Semester (field_semester)
- Any -2016/2017 Fall Winter2016/2017 Spring Summer2017/2018 Fall Winter2017/2018 Spring Summer2018/2019 Fall Winter2018/2019 Spring Summer2019/2020 Fall Winter2019/2020 Spring Summer2020/2021 Fall Winter2020/2021 Spring Summer2021/2022 Fall Winter2021/2022 Spring Summer2022/2023 Fall Winter2022/2023 Spring Summer2023/2024 Fall Winter2023/2024 Spring Summer2024/2025 Fall Winter2024/2025 Spring Summer
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2021/2022 Fall Winter
李尔平, 胡欢, Demartino,Cristoforo
2020/2021 Fall Winter
Demartino, Cristoforo, 胡欢
2019/2020 Fall Winter
胡欢, 肖岩
2018/2019 Fall Winter
Philip, Krein
2017/2018 Fall Winter
Philip, Krein
Introduction
Orientation required of new freshmen in the College of Engineering.
Freshmen should enroll in the section corresponding to their major.