Courses from 1000+ universities
Buried in Coursera’s 300-page prospectus: two failed merger attempts, competing bidders, a rogue shareholder, and a combined market cap that shrank from $3.8 billion to $1.7 billion.
600 Free Google Certifications
Psychology
Information Technology
Digital Marketing
AP® Microeconomics
Let's Get Started: Building Self-Awareness
Dino 101: Dinosaur Paleobiology
Organize and share your learning with Class Central Lists.
View our Lists Showcase
Explore dynamic 3D optofluidic control techniques and their applications in microfluidic systems through cutting-edge research insights.
Explore the principles of dissipation-enhanced adaptation and cooperative sensing in bacterial chemotaxis with David Hathcock in this BPPB seminar.
Explore how DNA methylation modeling can predict epigenetic patterns in cells with Andrew Spakowitz in this BPPB seminar.
Explore the mechanobiology of mesenchymal cell migration through holistic and reductionist modeling approaches in this BPPB seminar presentation by Nadir Kaplan.
Explore how cells detect and respond to chemical gradients in this biological physics seminar by Debraj Ghose.
Discover the principles of self-assembly timing in biological systems with Margaret Johnson's insightful BPPB seminar presentation.
Explore the locomotion of flagellated bacteria, examining how complex fluids and aerotaxis influence their movement in this BPPB seminar by Xiang Cheng.
Explore the fascinating world of airborne biology, from microbes that hitchhike through the atmosphere to nematodes capable of remarkable jumps.
Explore the connections between circadian rhythms and cellular dormancy through modeling and validation techniques in this biological physics seminar by Guang Yao.
Explore the physics of protein diffusion and its crucial role in cellular responses to electric fields in this BPPB seminar by Brian Camley.
Discover how cells exert forces on nanonets through advanced traction mapping techniques in this biological physics seminar presentation.
Dive into the fascinating dynamics of bacterial movement in complex fluids, exploring how microorganisms navigate upstream through various fluid environments.
Discover advanced techniques for tracking bacterial movement in three dimensions using holographic microscopy, with insights into experimental methods and data analysis.
Explore groundbreaking research on bacterial droplet patterns and their interfacial behavior through advanced physical biology concepts and experimental observations.
Explore groundbreaking research on cellular condensate aspiration techniques and their implications for understanding biological physics in living organisms.
Get personalized course recommendations, track subjects and courses with reminders, and more.