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Geometrical optics and ray tracing - Course Wiki
https://measurebiology.org/wiki/Geometrical_optics_and_ray_tracing#:~:text=%20Image%20formation%20with%20a%20lens%20%201,the%20bottom%20and%20use%20Rule%201...%20More%20
Geometrical optics and ray tracing - Course Wiki
https://measurebiology.org/wiki/Geometrical_optics_and_ray_tracing
Geometrical Optics 101: Paraxial Ray Tracing Calculations
https://www.edmundoptics.com/knowledge-center/application-notes/optics/geometrical-optics-101-paraxial-ray-tracing-calculations/
Ray tracing involves two primary equations in addition to the one for calculating power. Equations 2 – 3 are necessary for any ray-tracing calculations. (2)y′ = y+u′t′ y ′ = y + u ′ t ′ (3)n′u′ = nu−yΦ n ′ u ′ = n u − y Φ where an apostrophe denotes the subsequent surface, angle, thickness, etc.
Lecture 17: Lenses and ray tracing - Physics
https://physicscourses.colorado.edu/phys1230/phys1230_fa18/lectures/Lecture17_Lenses_and_Ray_Tracing_fa18.pdf
Ray tracing: 1. As long as ray stays in same medium, it goes straight. 2. At each interface to a different medium, calculate how it will bend. Go back to 1. Ray tracing to understand lenses and images This gets tedious!
Ray tracing (physics) - Wikipedia
https://en.wikipedia.org/wiki/Ray_tracing_(physics)
Ray Tracing - University of Washington
https://courses.cs.washington.edu/courses/csep557/19sp/assets/lectures/ray-tracing-1pp.pdf
Ray-tracing pseudocode We build a ray traced image by casting rays through each of the pixels. functiontraceImage(scene): for each pixel (i, j) in image A= pixelToWorld(i, j) P= C d= (A–P )/|| A–P || I(i,j)= traceRay(scene, P, d) end for end function functiontraceRay(scene, P, d): (t Ç, N, mtrl) ¬scene.intersect(P, d) Qßray (P, d) evaluated at t Ç
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