RAY OPTICS One Shot 🔥 | Physics Class 12 Boards | Full Chapter, Concepts & Numericals Arvind Academy
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RAY OPTICS One Shot 🔥 | Physics Class 12 Boards | Full Chapter, Concepts & Numericals Arvind Academy
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Chap 9 One shot RAY OPTICS
00:00:00 introduction
00:05:07 Reflection of light
00:06:03 Spherical Mirrors
00:06:53 Spherical Mirrors are of two type
00:07:42 Imp Definitions of Spherical Mirrors
00:09:05 Definitions in Convention with Spherical Mirrors
00:12:15 New Cartesian Sign Convention for Spherical Mirrors
00:14:22 Relation between f and R
00:15:03 Derivation of Relation between f and R
00:19:05 Rules for drawing images formed by spherical Mirrors
00:20:15 Formation of images by Concave Mirror
00:23:18 Formation of images by Convex Mirror
00:24:04 Mirror formula
00:24:42 Derivation Mirror formula
00:26:01 Derivation of mirror formula (convex real image)
00:32:12 Liner magnification
00:32:44 Derivation of Liner magnification
00:34:56 for your knowledge
00:36:11 Spherical Aberration
00:37:25 Remedy of Spherical Aberration
00:38:37 Uses of Curved Mirrors
00:41:03 numerical
00:44:39 Refraction of Light
00:45:40 Laws of Refraction of Light
00:48:00 Refractive Index Formula
00:48:42 Factors on which the Refractive Index depends
00:50:29 Cause of Refraction
00:52:44 Principle of Reversibility of Light
00:53:56 Refraction through a Combination of Media
00:55:37 Real & Apparent Depths
00:58:06 Derivation:Real & Apparent Depths & Normal shift
01:03:00 numerical
01:03:54 Total Internal Reflection
01:08:24 Conditions for total internal reflection
01:08:57 Relation between critical angle and refractive index
01:09:19 Derivation Relation between critical angle and refractive index
01:10:53 numerical
01:14:54 Optical Fibres (application of TIR)
01:16:08 Optical Fibres
01:16:51 Propagation of Light through an Optical Fibre
01:18:34 Spherical Lenses
01:19:57 Definition in connection with spherical lenses
01:24:05 New Cartesian sign convention for Spherical Lenses
01:25:03 Refraction at Spherical Surfaces
01:25:41 Refraction Formula
01:26:54 Refraction at a Convex Spherical Surface
01:30:05 Refraction at a Concave Spherical Surface
01:30:52 Derivation
01:39:23 Lens Maker's Formula
01:45:40 numerical
01:49:57 Rules for Drawing Images Formed by Spherical Lenses
01:50:32 Formation of Images by Lenses
01:52:56 Thin Lens Formula & Magnification
01:53:29 Assumption used in Derivation of thin lens formula
01:54:42 Derivation of thin lens formula
01:58:45 Linear Magnification
01:59:37 Derivation of Linear Magnification of Lenses
02:01:20 Linear Magnification
02:01:53 Power of a Lens
02:04:20 Derication Power of a Lens
02:04:55 Power of two thin Lenses in Contact (Equivalent Focal Length)
02:05:46 Derication Power of Two Thin Lenses in Contact
02:08:57 Refraction through a Prism
02:10:11 Refraction through a Prism: Deviation produced by a Prism
02:16:44 Variation of the angle of deviation with the angle of incidence
02:18:30 Relation b/w refractive index and angle of minimum Deviation
02:19:22 Derivation Relation b/w refractive index
02:19:22 Derivation for Small angled prism Relation b/w refractive index
02:23:02 numerical
02:25:35 Optical Instruments
02:27:27 V.Imp.concept
02:28:16 Visual Angle
02:29:33 Magnifying Power of Microscope
02:31:10 Simple Microscope
02:41:49 Uses of Simple Microscope
02:42:27 Compound Microscope
02:45:08 Magnification of Compound Microscope
03:00:14 Telescope
03:02:17 Magnifying Power of Telescope
03:03:19 Astronomical Telescope
03:05:10 Magnifying Power of Astronomical Telescope
03:13:36 Reflecting Telescope
03:15:49 Advantages of a Reflecting Type Telescope