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Ray Optics is a high-scoring topic with around 1-3 questions every year in JEE Advanced. Watch the following Revision checklist videos as a pre-requisite: Ray Optics (Part-1 Reflection of Light): • Ray Optics (Part-1 Reflection of Light) | ... Ray Optics (Part-2 Refraction of Light): • Ray Optics (Part-2 Refraction of Light) | ... Ray Optics (Part-3) Thin Lenses & Dispersion: • Ray Optics (Part-3) Thin Lenses & Dispersi... The topics covered in Ray Optics for JEE Advanced | Booster Checklist 14: 00:00 Ray Optics for JEE Advanced 01:46 Precap 05:06 Type1- Cases of Paraxial Incidence 05:30 Formula for Spherical mirrors, spherical refraction & thin lenses 06:02 Sign convention for Spherical mirrors, spherical refraction & thin lenses 08:01 Important note about mirror formula, spherical refraction & lens formula 08:50 What are paraxial light rays? 09:06 Incident ray falls on spherical mirror. Where does reflected ray meet principal axis 10:52 Image formed by small radius light beam falling on concave mirror 11:30 Image formed by large radius light beam falling on spherical mirror 12:45 Image formed by large radius light beam falling on convex mirror 14:06 Image formation by non paraxial rays- Image of object placed btw focal point & center of concave mirror 17:09 Image formed by non paraxial rays falling on convex lens 17:54 Type2- Problems based on Image Formation on Screen 18:27 Image obtained on screen - real images only 18:53 Find distance of screen from concave mirror to obtain image of object placed between focus and center 20:26 Screen is a diffuser 21:15 Image formed on screen if it is moved away from point of image formation 22:45 Experiment on optical bench 23:24 Type3- Displacement method Experiment 23:45 Setup of displacement method experiment 24:10 Condition for real image formation on screen 24:42 Image when D=4f 25:06 Image when D is greater than 4f 25:25 What happens when image & object distance are interchanged in lens formula 25:52 Formula for object size if image sizes formed by interchanging u & v are given 26:02 Focal length of lens in displacement method experiment 26:34 Type4- Problems based on thin Lens & Mirror Combinations 27:01 Case1 Gap between Concave mirror & convex lens is filled with a liquid. Find equivalent power of this optical device 28:40 Gap between Concave mirror & convex lens is filled with a liquid. Find equivalent focal length of effective mirror 29:40 Sign of power & convex / concave mirror 30:09 Important note 31:30 Type5- Cases of Lens Combinations 31:40 Effective focal length when a convex & concave lens are joined 32:33 Equivalent focal length & nature of lens - convex / concave 33:06 Equivalent focal length of 2 thin convex lens separated by some distance 34:47 Position of effective length formed by 2 convex lens separated by some distance 36:25 Type6- Problems based on Grazing Incidence & Emergence 36:36 What is gazing emergence / total internal refraction 38:06 What is gazing incidence 38:44 Radius of disc floating on water to block light emitted from source perpendicularly below it at some depth 40:04 Find fraction of light emitted from source which comes out if source is at some depth in water 41:40 Light power escaping out from water 44:10 Cases of Grazing Ray on Prism 53:28 Problems based on Refraction at round surfaces 1:07:27 Problems based on re-tracing of light rays Advanced Illustrations of Geometrical Optics for JEE Advanced: • 1. Advance Illustration | Geometrical Opti... #boosterchecklist14 #jeeadvanced #rayoptics