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Er. Vinay Kumar is a highly experienced physics educator with 30+ years of teaching for JEE & NEET. An alumnus of IIT Roorkee (B.Tech) and IT BHU (M.Tech), he is known for his clear, engaging teaching style that makes complex concepts easy to understand. His unique approach combines smart diagrams, animations, and real-life examples to help students visualize physics intuitively. Specializing in numerical problem-solving, he breaks down tough questions into simple, logical steps making this book a powerful tool for exam success as well as making physics simple & enjoyable! How do we teach physics? We help candidates to focus on developing and achieving expertise in the basic concept of physics and for this we have prepared a well-organized group of lectures equipped with attractive animations and tricks which help them solving most of the problems by using mathematics of negligible amount which helps in saving considerable amount of time in examination. Syllabus covered: 1. Unit & Dimension 2. Measurement 3. Vector 4. Motion In A Straight Line 5. Projectile 6. Curvilinear Motion 7. Dependent Motion 8. Newton’s Law 9. Friction 10. Work & Energy 11. Centre Of Mass 12. Conservation Of Momentum 13. Collision 14. Impulse 15. Combination Of Conservation Of Momentum & Work Energy Theorem 16. Power 17. Circular Motion 18. Rotational Mechanics 19. Gravitation 20. Elasticity 21. Hydrostatics 22. Hydrodynamics 23. Surface Tension 24. Calorimetry 25. Thermal Expansion 26. Thermal Conduction & Convection 27. Radiation 28. Process 29. Kinetic Theory Of Gases 30. Simple Harmonic Motion 31. Waves 32. Electrostatics 33. Current Electricity 34. Electromagnetism & Magnetism 35. Em Wave 36. Ray Optics 37. Waves Optics
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Unlock your potential with NEET Physics
Essential details: objectives, prerequisites, schedule, and outcomes
Analyze the kinematics and dynamics of systems using vector and scalar quantities, identifying motion profiles from motion graphs. Apply laws of thermodynamics to determine energy conversion and work done in real-world processes, including heat engines and refrigerators. Calculate electric circuits' parameters, such as current, voltage, and resistance, using Ohm’s law and Kirchhoff’s rules, and predict changes from component variations. Demonstrate wave phenomena—including interference, diffraction, and polarization—using mathematical models and experimental data. Interpret electromagnetic field behavior in different media, relating Maxwell’s equations to measurable physical effects.
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