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DIVE DEEP INTO A HIGH-LEVEL PROBLEM INVOLVING CIRCULAR MOTION, WORK-ENERGY THEOREM, AND NEWTON'S LAWS. THIS VIDEO RIGOROUSLY SOLVES FOR THE MAXIMUM MASS (M) OF A RING REQUIRED TO MAINTAIN ZERO TENSION IN THE CONNECTING ROPE AS TWO IDENTICAL BEADS SLIDE DOWN. A CRITICAL CONCEPT FOR ASPIRANTS PREPARING FOR IIT JEE, OLYMPIADS, AND ADVANCED PHYSICS EXAMS. WE SYSTEMATICALLY BREAK DOWN THE WORK-ENERGY-THEOREM APPLICATION AND THE FORCE ANALYSIS REQUIRED TO DETERMINE THE CONDITION FOR THE ROPE TENSION TO VANISH. MASTER THE INTERPLAY BETWEEN CONSERVATION OF ENERGY AND DYNAMIC FORCE EQUATIONS IN CIRCULAR PATHS. VIDEO TIMESTAMPS: 0:00 INTRODUCTION: DETAILED PROBLEM STATEMENT AND SYSTEM SETUP 1:45 APPLYING THE WORK-ENERGY THEOREM TO THE SYSTEM (RING + BEADS) 5:10 FREE BODY DIAGRAM AND FORCE ANALYSIS ON THE BEADS AT THE CRITICAL POINT 9:25 SETTING UP THE EQUATION FOR ZERO TENSION (T=0) 14:00 FINAL CALCULATION AND DERIVATION OF MAXIMUM RING MASS (M) KEY CONCEPTS COVERED: CIRCULAR MOTION DYNAMICS (CENTRIPETAL FORCE) CONSERVATION OF MECHANICAL ENERGY NEWTON'S SECOND LAW IN ROTATING FRAMES CONSTRAINT RELATIONS EXAM FOCUS: #IITJEE #JEEADVANCED #OLYMPIADPHYSICS #ADVANCEDMECHANICS #SATPHYSICS #GREPHYSICS CONNECT WITH US: DON'T FORGET TO LIKE, SHARE, AND SUBSCRIBE TO PRAKASH ACADEMY FOR MORE ADVANCED PHYSICS AND MATHEMATICS PROBLEM-SOLVING VIDEOS. COMMENT BELOW WITH ANY QUESTIONS OR TOPICS YOU WANT US TO COVER NEXT!