Sci: Biology & Life Sciences

Filter Courses within "Sci: Biology & Life Sciences" (Click to filter)
Advanced Bioconductor (edX) EdX
HarvardX,Harvard University

Advanced Bioconductor (edX)

Dive deep into the world of genomics with our Advanced Bioconductor course. Gain expertise in visualizing genome-scale data, building interactive interfaces for discovery, and mastering reproducible analysis through knitr and rmarkdown. Explore data architecture and analyze large consortium-generated datasets at scale.

Self Paced
Self-Paced
Case Studies in Functional Genomics (edX) EdX
HarvardX,Harvard University

Case Studies in Functional Genomics (edX)

Dive into the world of functional genomics with our expert-led course. Master advanced techniques such as RNA-Seq, ChIP-Seq, and DNA methylation data analysis using powerful open source software including R and Bioconductor. Gain insights into processing raw genomic data to answer complex biological questions.

Self Paced
Self-Paced
Finding Hidden Messages in DNA (Bioinformatics I) (Coursera) Coursera
University of California, San Diego

Finding Hidden Messages in DNA (Bioinformatics I) (Coursera)

Embark on a fascinating journey into the world of bioinformatics with 'Finding Hidden Messages in DNA (Bioinformatics I)', an online course offered by Coursera. This course introduces you to the intersection of biology and computer science, where we explore how computational techniques can be used to decipher genetic information without stepping foot in a lab. Dive deep into understanding DNA replication and discover the algorithms that help us identify key starting points within bacterial genomes.

Sep 28th 2026
5-12 Weeks
Why Do We Age? The Molecular Mechanisms of Ageing (FutureLearn) FutureLearn
University of Groningen,University Medical Center Groningen - UMCG

Why Do We Age? The Molecular Mechanisms of Ageing (FutureLearn)

Ever wondered why we age and if there's a limit to our lives? This free online course, 'Why Do We Age? The Molecular Mechanisms of Ageing', offers insights into the science behind aging. Uncover the mysteries of cellular aging and learn about current research aimed at prolonging human life.

Self Paced
5-12 Weeks
Principles of Biochemistry (edX) EdX
HarvardX,Harvard University

Principles of Biochemistry (edX)

Dive into the world of biochemistry with an introductory course that explores the fascinating molecules of life. From simple building blocks to complex metabolism, Principles of Biochemistry offers a thorough understanding of cellular functions and the principles governing them. This course is ideal for students and professionals looking to grasp the basics of biochemistry.

Self Paced
Self-Paced
Basic Steps in Magnetic Resonance (edX) EdX
École Polytechnique Fédérale de Lausanne,EPFLx

Basic Steps in Magnetic Resonance (edX)

Discover the basics of magnetic resonance and delve into its fascinating applications across various scientific fields with our introductory course. Whether you're a student or a professional looking to expand your knowledge, this course offers a structured approach to understanding magnetic resonance principles and their real-world implications.

Self Paced
Self-Paced
Managing Addiction: A Framework for Successful Treatment (edX) EdX
University of Adelaide,AdelaideX

Managing Addiction: A Framework for Successful Treatment (edX)

Explore the complexities of addiction management in this insightful online course. Gain essential knowledge on the biological aspects of addiction and learn various strategies for successful treatment. Equip yourself to provide effective support to individuals battling drug and alcohol issues across different healthcare settings.

Self Paced
Self-Paced
The Basics of Transport Phenomena (edX) EdX
Delft University of Technology,DelftX

The Basics of Transport Phenomena (edX)

Explore the essential framework for tackling a wide range of engineering challenges related to heat, mass, and momentum transfer with 'The Basics of Transport Phenomena' course from edX. Learn through practical examples drawn from home, laboratory, and industrial settings. Understand why processes like cooling drinks or sterilizing milk work as they do, and apply these principles to design solutions for complex systems.

Self Paced
Self-Paced