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Lec 4 | Schrödinger Time Independent Wave Equation | Engineering Physics BTech 1st Year

EDVARA ENGINEERS

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Lec 4 | Schrödinger Time Independent Wave Equation | Engineering Physics BTech 1st Year

195 264 просмотра · 1 год назад
EDVARA ENGINEERS
34,2 тыс. подписчиков
195 264 просмотра · 1 год назад
Mobile Users ( Download App ) : https://play.google.com/store/apps/de... Laptop Users ( Visit edvara website ) : https://edvara.in/ ------------------------------------------------------------------------------------------------- ▶️ Coding Courses Java Dsa ( Placement Batch DEMO ):    • Coding junction - Launch   Java DSA ( Complete Course ) : https://ncdceh.courses.store/829104?u... ------------------------------------------------------------------------------------------------- ▶️ BTech First Year Courses RGPV Engineering Physics ( FREE ) :    • RGPV Engineering Physics Full Course | BTe...   RGPV Mathematics 2 ( DEMO ):    • RGPV Engineering Mathematics 2 | Maths 2 (...   RGPV Mathematics 2 ( Complete Course ) : https://ncdceh.courses.store/826545?u... RGPV Basic Civil & Engineering Mechanics ( FREE ) :    • RGPV Basic Civil & Engineering Mechanics (...   RGPV Basic Computer Engineering ( FREE ):    • Basic Computer Engineering RGPV B.Tech 1st...   RGPV Engineering Chemistry ( FREE ) :    • RGPV Engineering Chemistry | BTech 1st Year   RGPV Basic Electrical & Electronics Engineering ( BEEE ) ( FREE ) :    • RGPV Basic Electrical & Electronics Engine...   ⏱️ Time Stamps Will be added as soon as one of you helps with the timeline in the comments 🙂 This video lecture on the Schrödinger Time Independent Wave Equation (T.I.E.), a fundamental equation of Quantum Mechanics, is designed for BTech 1st Year Engineering Physics students. This lecture explains how the T.I.E. is derived from the Schrödinger Time Dependent Equation and how it is used to determine energy eigenvalues and eigenfunctions for bound systems. You will clearly understand the mathematical form of the equation, its assumptions, separation of variables, stationary states, boundary conditions, and how the equation applies to physical systems like the particle in a box. The explanation is simplified and exam-oriented, making it perfect for scoring in theoretical questions. This lecture is useful for RGPV BTech 1st Year students, covering all branches including CSE, IT, Mechanical, Electrical, Civil, and ECE, and also aligns with the syllabi of AKTU, VTU, JNTU, SPPU, and other Indian universities. 📘 This Engineering Physics Playlist Includes: Planck’s Quantum Hypothesis De Broglie Hypothesis Wave Function & Significance Schrödinger T.D.E. & T.I.E. Particle in a 1D Box Heisenberg Uncertainty Principle 🎯 This Video Is Helpful For: BTech 1st Year (RGPV) – All Branches Engineering Physics Quantum Mechanics Unit Students preparing for university exams Students needing clarity in Schrödinger Equations GATE / NET / IIT-JAM foundational physics Schrödinger Time Independent Wave Equation is a very important derivation, repeatedly asked in exams and viva. 🏷️ Keywords : schrodinger time independent equation time independent wave equation schrodinger equation derivation quantum mechanics schrodinger engineering physics quantum mechanics stationary states energy eigenvalues eigenfunctions particle in a box basics engineering physics btech btech 1st year quantum rgpv engineering physics quantum mechanics exam preparation schrodinger equation explained quantum state wave equation education point online sachin sir engineering physics sachin bhardwaaj engineering physics 🔖 Hashtags #EngineeringPhysics #QuantumMechanics #SchrodingerEquation #TimeIndependentEquation #BTech1stYear #RGPV #SachinSir #BTechJunction