Wave Optics | JEE Main 2025 Solutions | Jan Session (All Shifts)

COACHengg Guide 1 years ago

Description

📌 Wave Optics | JEE Main 2025 Solutions | Jan Session (All Shifts)

🔍 Why Watch This Video?
Struggling with Wave Optics questions in JEE Main 2025? This video provides step-by-step solutions with easy explanations, shortcut tricks, and expert tips to help you master the topic. If you want to boost your accuracy and speed in JEE Physics, this video is a must-watch!
🚀 What You’ll Learn:
✅ Young’s Double-Slit Experiment (YDSE)
✅ Interference
✅ Polarization of Light
✅ Solving JEE-Level Problems with Smart Techniques
🎯 Who is this for?
✔ JEE Main, NEET & JEE Advanced 2025 Aspirants
✔ Class 12 CBSE, ICSE & State Board Students
✔ Anyone struggling with Wave Optics concepts
⏳ Timestamps:
00:00 - Analysis
01:37 - Paper 1 Assertion (A) : If Young’s double slit experiment is performed in an optically denser medium than air, then the ...
04:43 - Paper 2 Assertion (A) : In Young’s double slit experiment, the fringes produced by red light are closer as compared to those produced by ...
06:26 - Paper 2 A transparent film coating of refractive index 2.0, is coated on a glass slab of refractive index, 1.45 ...
17:08 - Paper 4 The width of one of the two slits in Young's double slit experiment is d while that of the other slit is xd. If the ratio of the ...
23:23 - Paper 5 The Young's double slit interference experiment is performed using light consisting of 480 nm and 600 nm wavelengths ...
30:06 - Paper 6 Young's double slit interference apparatus is immersed in a liquid of refractive index 1.44. It has slit separation of 1.5mm. The slits ...
35:00 - Paper 6 In a Young's double slit experiment, three polarizers are kept as shown in the figure. The transmission axes of P1 and P2 are ...
42:51 - Paper 7 A double slit interference experiment performed with a light of wavelength 600 nm forms an interference fringe pattern on a screen ...
47:21 - Paper 8 A thin transparent film with refractive index 1.4, is held on circular ring of radius 1.8 cm. The fluid in the film evaporates such ...


📚 Related Videos & Playlists:
▶ JEE Main 2025 January Solutions - https://tinyurl.com/bddhuhwp
▶ Modern Physics | JEE 2025 - https://youtu.be/AJ8yh0NUafU

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