
Which is the path of rays of light when it enters with oblique incidence from water to air?
(A)

(B)

(C)

(D)

Answer
127.8k+ views
Hint: We know that refraction is the bending of light rays when they travel from one material medium to another. Refraction of light is mainly caused because of the change in speed of the light wave upon crossing a boundary.
Complete answer:
If a ray of light passes across the boundary from a material in which it travels with a fast speed into a material in which it travels at a slower speed, then the light ray will bend towards the normal line.
Similarly when a ray of light passes across the boundary from a material in which its speed is slower compared to a material in which its speed is much faster, then the ray of light will bend away from the normal.
In the question given above it is clear that the ray of light is travelling from a denser medium (in which its speed is much less) into a rarer medium (in which its speed is much more). Thus, the light ray should bend away from the normal line.
When we carefully analyse the figures given in options (A), (B) and (C) we see that all three of them do not fit into our description of bending of a refracted ray of light. Thus, only option (D) displays a ray of light which bends away from the normal while travelling from a denser medium (in which its speed is much less) into a rarer medium (in which its speed is much more).
Thus, (D) is the correct answer to this question.
Note: The tendency of a ray of light to bend one direction or another is dependent upon whether the light wave speeds up or slows down upon crossing the boundary. The speed of a light wave is dependent upon the optical density of the material through which it moves. For this reason, the direction that the path of a light wave bends depends on whether the light wave is traveling from a more dense (slow) medium to a less dense (fast) medium or from a less dense medium to a more dense medium.
Complete answer:
If a ray of light passes across the boundary from a material in which it travels with a fast speed into a material in which it travels at a slower speed, then the light ray will bend towards the normal line.
Similarly when a ray of light passes across the boundary from a material in which its speed is slower compared to a material in which its speed is much faster, then the ray of light will bend away from the normal.
In the question given above it is clear that the ray of light is travelling from a denser medium (in which its speed is much less) into a rarer medium (in which its speed is much more). Thus, the light ray should bend away from the normal line.
When we carefully analyse the figures given in options (A), (B) and (C) we see that all three of them do not fit into our description of bending of a refracted ray of light. Thus, only option (D) displays a ray of light which bends away from the normal while travelling from a denser medium (in which its speed is much less) into a rarer medium (in which its speed is much more).
Thus, (D) is the correct answer to this question.
Note: The tendency of a ray of light to bend one direction or another is dependent upon whether the light wave speeds up or slows down upon crossing the boundary. The speed of a light wave is dependent upon the optical density of the material through which it moves. For this reason, the direction that the path of a light wave bends depends on whether the light wave is traveling from a more dense (slow) medium to a less dense (fast) medium or from a less dense medium to a more dense medium.
Recently Updated Pages
Difference Between Vapor and Gas: JEE Main 2024

Area of an Octagon Formula - Explanation, and FAQs

Difference Between Solute and Solvent: JEE Main 2024

Absolute Pressure Formula - Explanation, and FAQs

Carbon Dioxide Formula - Definition, Uses and FAQs

Charle's Law Formula - Definition, Derivation and Solved Examples

Trending doubts
JEE Main 2025 Session 2: Application Form (Out), Exam Dates (Released), Eligibility & More

JEE Main Login 2045: Step-by-Step Instructions and Details

JEE Main Exam Marking Scheme: Detailed Breakdown of Marks and Negative Marking

JEE Main 2023 January 24 Shift 2 Question Paper with Answer Keys & Solutions

JEE Mains 2025 Correction Window Date (Out) – Check Procedure and Fees Here!

JEE Main Participating Colleges 2024 - A Complete List of Top Colleges

Other Pages
JEE Advanced Marks vs Ranks 2025: Understanding Category-wise Qualifying Marks and Previous Year Cut-offs

JEE Advanced 2025: Dates, Registration, Syllabus, Eligibility Criteria and More

JEE Main 2025: Conversion of Galvanometer Into Ammeter And Voltmeter in Physics

Dual Nature of Radiation and Matter Class 12 Notes: CBSE Physics Chapter 11

JEE Main 2025: Derivation of Equation of Trajectory in Physics

Diffraction of Light - Young’s Single Slit Experiment
