Master optics fundamentals from lens equations to wave interference and diffraction with calculus-based approach.
Master optics fundamentals from lens equations to wave interference and diffraction with calculus-based approach.
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 Physics of Waves and Optics 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.
Instructors:
English
What you'll learn
Master reflection and refraction principles
Understand lens equations and image formation
Analyze wave interference patterns
Solve diffraction problems using calculus
Apply optical principles to real devices
Use mathematical tools for problem solving
Skills you'll gain
This course includes:
6.6 Hours PreRecorded video
12 assignments
Access on Mobile, Desktop, Tablet
FullTime access
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There are 4 modules in this course
This comprehensive physics course explores both geometrical and physical optics at a rigorous undergraduate level. Students learn light propagation principles, lens equations, image formation, wave interference, and diffraction phenomena. The curriculum integrates mathematical tools including calculus and vector analysis for solving complex optical problems. Through extensive practice with graphical analysis and mathematical modeling, students develop strong problem-solving skills equivalent to on-campus physics courses at Rice University.
Geometrical Optics
Module 1 · 6 Hours to complete
Interference
Module 2 · 5 Hours to complete
Diffraction
Module 3 · 4 Hours to complete
Geometrical and Physical Optics Exam
Module 4 · 3 Hours to complete
Fee Structure
Instructor
Distinguished Physicist and Nanoscience Pioneer
Jason Hafner serves as a Professor of Physics Astronomy and Chemistry at Rice University bringing extensive expertise in both research and education His academic journey includes a BS in Physics from Trinity University in 1993 followed by his PhD from Rice University in 1998 under Richard Smalley focusing on carbon nanotubes He completed postdoctoral studies at Harvard University with Charles Lieber before returning to Rice in 2001 His research accomplishments include receiving the Beckman Young Investigator Award in 2002 and the Norman Hackerman Award for Chemical Research from the Welch Foundation in 2011 At Rice he has established himself as an exceptional educator teaching freshman and sophomore physics for over fifteen years while contributing to the development of innovative online physics courses His teaching style combines rigorous academic content with engaging demonstrations and humor making complex physics concepts accessible to students worldwide He serves as a founding member of Rice's Center for Teaching Excellence and has developed numerous MOOCs for platforms like edX and Coursera His work in nanophotonics and interfacial biology demonstrates his interdisciplinary approach to science As Magister of Jones College and Member of Scientia at Rice he continues to influence both research and education in physics while maintaining his quest to find a lecture demonstration that might get him fired His impact extends beyond traditional classroom teaching through his development of comprehensive online AP Physics preparation courses and interactive educational content.
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