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Engineering Genetic Circuits: Design

Master the fundamentals of genetic circuit design, from cellular components to experimental techniques. Perfect for beginners in synthetic biology.

Master the fundamentals of genetic circuit design, from cellular components to experimental techniques. Perfect for beginners in synthetic biology.

This course cannot be purchased separately - to access the complete learning experience, graded assignments, and earn certificates, you'll need to enroll in the full Engineering Genetic Circuits Specialization program. You can audit this specific course for free to explore the content, which includes access to course materials and lectures. This allows you to learn at your own pace without any financial commitment.

4.7

(2,351 ratings)

2,125 already enrolled

English

پښتو, বাংলা, اردو, 3 more

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Engineering Genetic Circuits: Design

This course includes

19 Hours

Of Self-paced video lessons

Beginner Level

Completion Certificate

awarded on course completion

Free course

What you'll learn

  • Identify different cell types and their structural components

  • Understand genetic parts and their role in circuit design

  • Master experimental techniques for genetic construction

  • Design and analyze basic genetic circuits

  • Evaluate principles of genetic circuit design

Skills you'll gain

Synthetic Biology
Genetic Circuit Design
Cell Biology
DNA Assembly
Molecular Biology
Systems Biology
Circuit Construction
Biological Logic Gates
Gene Cloning
PCR

This course includes:

6.5 Hours PreRecorded video

9 quizzes, 1 assignment

Access on Mobile, Tablet, Desktop

FullTime access

Shareable certificate

Get a Completion Certificate

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There are 5 modules in this course

This comprehensive course introduces the fundamentals of genetic circuit design and synthetic biology. Starting with basic cellular biology and biochemistry, students learn about genetic parts, devices, and construction methods. The curriculum covers experimental techniques, design principles, and practical challenges in realizing genetic circuits. Through hands-on assignments and quizzes, learners develop skills in designing and analyzing genetic circuits while preparing for advanced applications in synthetic biology.

An Engineers Guide to Genetic Circuits

Module 1 · 3 Hours to complete

Genetic Parts

Module 2 · 7 Hours to complete

Genetic Devices

Module 3 · 2 Hours to complete

Genetic Construction

Module 4 · 3 Hours to complete

Principles of Genetic Circuit Design

Module 5 · 1 Hours to complete

Fee Structure

Instructors

Chris Myers
Chris Myers

2,848 Students

3 Courses

Professor of Electrical and Computer Engineering

Chris J. Myers is a Professor in the Department of Electrical and Computer Engineering at the University of Colorado Boulder, where he specializes in asynchronous circuit design and synthetic biology. He earned his B.S. degree in electrical engineering and Chinese history from the California Institute of Technology in 1991, followed by MSEE and Ph.D. degrees from Stanford University in 1993 and 1995, respectively. Prior to joining CU Boulder, he served as a professor and associate chair at the University of Utah, where he made significant contributions to the field.With over 180 technical papers to his name and several textbooks, including Asynchronous Circuit Design and Engineering Genetic Circuits, Professor Myers is a recognized leader in his research areas. His work focuses on formal verification of analog/mixed signal circuits, cyber-physical systems, and the modeling and design of genetic circuits. He has received numerous accolades throughout his career, including an NSF CAREER award and best paper awards at prestigious symposiums. As a fellow of the IEEE, he actively participates in editorial boards for various journals related to synthetic biology and engineering. Additionally, Dr. Myers plays a key role in developing standards for systems biology, serving as an editor for the Systems Biology Markup Language (SBML) standard and chairing several committees related to synthetic biology. Through his courses such as "Engineering Genetic Circuits: Abstraction Methods" and "Modeling and Analysis," he equips students with essential skills for advancing technology in these innovative fields.

Lukas Buecherl
Lukas Buecherl

2,848 Students

3 Courses

PhD Graduate in Biomedical Engineering

Lukas Buecherl is a recent PhD graduate in Biomedical Engineering from the University of Colorado Boulder, where he also completed his Master's degree. He holds a Bachelor's degree in Electrical Engineering and Computer Science from the University of Ulm, Germany. Throughout his academic career, Lukas was involved in the Interdisciplinary Quantitative Biology Program, which fostered his interests at the intersection of engineering and biology. His research primarily focuses on the analysis and enhancement of genetic circuit design, employing computational modeling techniques alongside experimental validation.In addition to his research, Lukas has contributed significantly to community engagement and education. He has served on the program committee for the International Workshop of Biodesign Automation and has received multiple accolades for his mentorship and research contributions, including the Excellent Mentorship Award and the Outstanding Graduate Researcher Award from the Electrical and Computer Engineering Department at CU Boulder. His expertise extends to laboratory automation and microfluidic devices, positioning him as a rising leader in urban sustainability and resilience. Through courses such as "Engineering Genetic Circuits: Abstraction Methods" and "Modeling and Analysis," Lukas aims to equip future engineers with essential skills for advancing technology in synthetic biology.

Engineering Genetic Circuits: Design

This course includes

19 Hours

Of Self-paced video lessons

Beginner Level

Completion Certificate

awarded on course completion

Free course

Testimonials

Testimonials and success stories are a testament to the quality of this program and its impact on your career and learning journey. Be the first to help others make an informed decision by sharing your review of the course.

4.7 course rating

2,351 ratings

Frequently asked questions

Below are some of the most commonly asked questions about this course. We aim to provide clear and concise answers to help you better understand the course content, structure, and any other relevant information. If you have any additional questions or if your question is not listed here, please don't hesitate to reach out to our support team for further assistance.