System of Particles and Rotational Motion Class 11 Physics Chapter 7 One shot | NEET & JEE examples

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Time Stamps
0:00 Introduction
1:46 Rigid Body
2:54 Types of Motion
6:46 Overview of Rotational Motion
16:15 Angular Quantities
20:14 Right Hand Rule (vector or not?)
26:17 Kinematics
37:25 Angular and Linear Motion
49:48 Frequency e
59:17 Angular Velocity e
1:04:59 Torque
1:20:44 Torque Vector
1:28:08 Cross Product
1:38:59 Need of Moment of Inertia
2:02:56 Moment of Inertia
2:29:57 MoI Comparision
2:35:50 Perpendicular Axes Theorem
2:48:10 Parallel Axes Theorem
3:15:53 Radius of Gyration
3:18:46 Center of Mass
3:20:31 Center of Gravity
3:23:11 Equilibrium of a Rigid Body
3:41:07 Topple
3:57:14 Levers
4:00:59 Couple
4:04:37 Dynamics
4:24:23 Kinetic Energy
4:36:38 Rolling Motion
4:41:01 Instantaneous Axis of Rotation
4:53:06 Translation to Rolling
5:03:56 Rolling on an Incline
5:09:24 Which will roll faster?
5:41:29 Angular Momentum
5:56:23 FlyWheel
5:58:52 Angular momentum around us
6:09:34 Angular Momentum Vector
6:43:48 3-Axes Stabilizer demo
7:00:09 Power
7:04:20 Gyroscopic Precession
7:10:38 Badminton Racket Theorem
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Time Stamps
1:46 Rigid Body
2:54 Types of Motion
6:46 Overview of Rotational Motion
16:15 Angular Quantities
20:14 Right Hand Rule (vector or not?)
26:17 Kinematics
37:25 Angular and Linear Motion
49:48 Frequency e
59:17 Angular Velocity e
1:04:59 Torque
1:20:44 Torque Vector
1:28:08 Cross Product
1:38:59 Need of Moment of Inertia
2:02:56 Moment of Inertia
2:29:57 MoI Comparision
2:35:50 Perpendicular Axes Theorem
2:48:10 Parallel Axes Theorem
3:15:53 Radius of Gyration
3:18:46 Center of Mass
3:20:31 Center of Gravity
3:23:11 Equilibrium of a Rigid Body
3:41:07 Topple
3:57:14 Levers
4:00:59 Couple
4:04:37 Dynamics
4:24:23 Kinetic Energy
4:36:38 Rolling Motion
4:41:01 Instantaneous Axis of Rotation
4:53:06 Translation to Rolling
5:03:56 Rolling on an Incline
5:09:24 Which will roll faster?
5:41:29 Angular Momentum
5:56:23 FlyWheel
5:58:52 Angular momentum around us
6:09:34 Angular Momentum Vector
6:43:48 3-Axes Stabilizer demo
7:00:09 Power
7:04:20 Gyroscopic Precession
7:10:38 Badminton Racket Theorem

nithinpranav
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Time Stamps
1:46 Rigid Body
2:54 Types of Motion
6:46 Overview of Rotational Motion
16:15 Angular Quantities
20:14 Right Hand Rule (vector or not?)
26:17 Kinematics
37:25 Angular and Linear Motion
49:48 Frequency e
59:17 Angular Velocity e
1:04:59 Torque
1:20:44 Torque Vector
1:28:08 Cross Product
1:38:59 Need of Moment of Inertia
2:02:56 Moment of Inertia
2:29:57 MoI Comparision
2:35:50 Perpendicular Axes Theorem
2:48:10 Parallel Axes Theorem
3:15:53 Radius of Gyration
3:18:46 Center of Mass
3:20:31 Center of Gravity
3:23:11 Equilibrium of a Rigid Body
3:41:07 Topple
3:57:14 Levers
4:00:59 Couple
4:04:37 Dynamics
4:24:23 Kinetic Energy
4:36:38 Rolling Motion
4:41:01 Instantaneous Axis of Rotation
4:53:06 Translation to Rolling
5:03:56 Rolling on an Incline
5:09:24 Which will roll faster?
5:41:29 Angular Momentum
5:56:23 FlyWheel
5:58:52 Angular momentum around us
6:09:34 Angular Momentum Vector
6:43:48 3-Axes Stabilizer demo
7:00:09 Power
7:04:20 Gyroscopic Precession
7:10:38 Badminton Racket Theorem

CrashUp
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When life gives you second chance to study rotational motion after coaching

Gaurav-rohh
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Bhaiya...the way you teach and the setup used can be revolutionary in the field of free education!!!!keep it up

chiranjibdatta
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I accidently discovered this channel
But as like discovery of penicillin in biology world was a revolution, same way this channel discovery is a revolution in physics world.🤩🤩🤩🤩🤩🤩🤩🤩🤩🤩🤩

sachinpal
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*Car can be controlled while in air*
Me who played Hill Climb Racing: I KNEW IT!!!

xg
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Oh my god, I can't believe that you put so much efforts into a video, the shooting, editing, preparations, gears, research and making all these ppt's.
I'm damn sure no one has ever released such quality content on the entire platform. even international teachers can't compete with you.
this is for the first time i'm so sad that i could like a video only once...
thank you so much mate.

jacobblack
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🕵I tried to find, the instant during 7 hours where he looked tired.

Glad to say...I FAILED.🕵👳🙇🙌🙏

PrinceKumar-hhyn
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Time Stamps
0:00 Introduction
1:46 Rigid Body
2:54 Types of Motion
6:46 Overview of Rotational Motion
16:15 Angular Quantities
20:14 Right Hand Rule (vector or not?)
26:17 Kinematics
37:25 Angular and Linear Motion
49:48 Frequency e
59:17 Angular Velocity e
1:04:59 Torque
1:20:44 Torque Vector
1:28:08 Cross Product
1:38:59 Need of Moment of Inertia
2:02:56 Moment of Inertia
2:29:57 MoI Comparision
2:35:50 Perpendicular Axes Theorem
2:48:10 Parallel Axes Theorem
3:15:53 Radius of Gyration
3:18:46 Center of Mass
3:20:31 Center of Gravity
3:23:11 Equilibrium of a Rigid Body
3:41:07 Topple
3:57:14 Levers
4:00:59 Couple
4:04:37 Dynamics
4:24:23 Kinetic Energy
4:36:38 Rolling Motion
4:41:01 Instantaneous Axis of Rotation
4:53:06 Translation to Rolling
5:03:56 Rolling on an Incline
5:09:24 Which will roll faster?
5:41:29 Angular Momentum
5:56:23 FlyWheel
5:58:52 Angular momentum around us
6:09:34 Angular Momentum Vector
6:43:48 3-Axes Stabilizer demo
7:00:09 Power
7:04:20 Gyroscopic Precession
7:10:38 Badminton Racket Theorem

MastarGaming
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I personally feel that one shot with time stamps is the best for those who are serious about studies... People can take break to bring concentration back 👍

fawazsm
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You literally are one of the few teachers who can actually make a digital class come alive.👍

harshvardhan
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ohkay, He's gonna bring a revolution in the one shot series. ATB for that.

abhinavsingh
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Time Stamps
0:00 Introduction
1:46 Rigid Body
2:54 Types of Motion
6:46 Overview of Rotational Motion
16:15 Angular Quantities
20:14 Right Hand Rule (vector or not?)
26:17 Kinematics
37:25 Angular and Linear Motion
49:48 Frequency e
59:17 Angular Velocity e
1:04:59 Torque
1:20:44 Torque Vector
1:28:08 Cross Product
1:38:59 Need of Moment of Inertia
2:02:56 Moment of Inertia
2:29:57 MoI Comparision
2:35:50 Perpendicular Axes Theorem
2:48:10 Parallel Axes Theorem
3:15:53 Radius of Gyration
3:18:46 Center of Mass
3:20:31 Center of Gravity
3:23:11 Equilibrium of a Rigid Body
3:41:07 Topple
3:57:14 Levers
4:00:59 Couple
4:04:37 Dynamics
4:24:23 Kinetic Energy
4:36:38 Rolling Motion
4:41:01 Instantaneous Axis of Rotation
4:53:06 Translation to Rolling
5:03:56 Rolling on an Incline
5:09:24 Which will roll faster?
5:41:29 Angular Momentum
5:56:23 FlyWheel
5:58:52 Angular momentum around us
6:09:34 Angular Momentum Vector
6:43:48 3-Axes Stabilizer demo
7:00:09 Power
7:04:20 Gyroscopic Precession
7:10:38 Badminton Racket Theorem

pranshursaini
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Those stickers and pop sounds in between just gives a refreshing feel

karthikgopalakrishnan
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Abhi abhi ALAKH SIR JI ne ROTATIONAL MOTION ka 8 hrs. 20 min. Ka LIVE LECTURE liya hai aur aapne bhi 7 hrs. Ka lecture ....
How HARDWORKING TEACHERS WE HAVE ❤❤😍😍😍😇😇😇

vinaysolanki
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Moment of Inertia Formulas:

Uniform Rod(Axis at edge): 2:07:00
I=Mr²/3
Uniform Rod (Axis at middle)2:10:30
I=Mr²/12
Triangle: 2:13:55
I=Mr²/6
Uniform Ring: 2:20:00
I=Mr²
Uniform Disc and Cylinder :2:22:00
I=Mr²/2
Hollow Sphere: 2:27:39
I=2Mr²/3
Solid Sphere: 2:29:40
I=2Mr²/5

forsakeshaik
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*Finally i complete whole lecture*
Ek alag level ki khushi ho rhi h 😃😃😃
Because my concepts are crystal clear now and able to solve my aakash module question...
Thank you so much bhaiya... 🙏🙏🙏🙏
U r great...

latikabansal
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THIS IS HOW A TEACHER MUST TEACH THEIR STUDENTS A PERFECTION HAS BEEN SHOWN, YOU ARE BRINGING A CHANGE BIG BROTHER ❤❤

PradyumanGupta-oplt
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Who agrees that sir somehow look like raj from tarzan the wonder car😂
Just joking btw i found a great teacher today

gunjotsingh
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Damn I thought who will waste time in 7 hrs but damn I was forced to like the video🙏

psv