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2nd equation of motion # derivation of 2nd equation of motion #physics
Amit physics academy
2nd equation of motion , derivation of 2nd equation of motion
📘 **Derivation of Second Equation of Motion | Class 9 & 11 Physics**
In this video, we explain the **derivation of the 2nd equation of motion (s = ut + ½at²)** step-by-step using basic concepts of **kinematics**. This equation helps us calculate the displacement of an object under uniform acceleration.
✨ Topics Covered:
* Concept of uniformly accelerated motion
* Step-by-step derivation using algebra
* Explanation with example
* Useful for Class 9, Class 11, NEET, JEE, and other competitive exams
📚 **Equation**:
s = ut + ½at²
👉 where:
s = displacement
u = initial velocity
a = acceleration
t = time
👍 Don’t forget to **Like, Share, and Subscribe** for more physics tutorials and derivations!
\#SecondEquationOfMotion #PhysicsDerivation #Class9Physics #Class11Physics #Kinematics #NEETPhysics #JEEMains #PhysicsWithAmit
📘 **Derivation of Second Equation of Motion | गति का दूसरा समीकरण | Class 9 & 11 Physics**
In this video, we will derive the second equation of motion:
👉 **s = ut + ½at²**, step-by-step in an easy and clear way.
इस वीडियो में हम गति का दूसरा समीकरण **(s = ut + ½at²)** को सरल और स्पष्ट तरीके से समझेंगे और सिद्ध करेंगे।
---
✨ **Topics Covered | शामिल विषय:**
* Uniformly Accelerated Motion की अवधारणा
* Step-by-step Derivation | चरणबद्ध सिद्ध करना
* आसान उदाहरण के साथ समझाया गया
* Class 9, 11, NEET, JEE छात्रों के लिए उपयोगी
---
📚 **Equation | समीकरण**
s = ut + ½at²
👉 जहां:
s = विस्थापन (Displacement)
u = प्रारंभिक वेग (Initial Velocity)
a = त्वरण (Acceleration)
t = समय (Time)
---
👍 Like, Share, and Subscribe करें अगर वीडियो पसंद आए।
और ऐसी और Physics की videos के लिए हमारे चैनल से जुड़े रहें!
\#SecondEquationOfMotion #गतिकासमीकरण #PhysicsDerivation #Class9Physics #Class11Physics #NEET2025 #JEE2025 #Kinematics
Видео 2nd equation of motion # derivation of 2nd equation of motion #physics канала Amit physics Academy
2nd equation of motion , derivation of 2nd equation of motion
📘 **Derivation of Second Equation of Motion | Class 9 & 11 Physics**
In this video, we explain the **derivation of the 2nd equation of motion (s = ut + ½at²)** step-by-step using basic concepts of **kinematics**. This equation helps us calculate the displacement of an object under uniform acceleration.
✨ Topics Covered:
* Concept of uniformly accelerated motion
* Step-by-step derivation using algebra
* Explanation with example
* Useful for Class 9, Class 11, NEET, JEE, and other competitive exams
📚 **Equation**:
s = ut + ½at²
👉 where:
s = displacement
u = initial velocity
a = acceleration
t = time
👍 Don’t forget to **Like, Share, and Subscribe** for more physics tutorials and derivations!
\#SecondEquationOfMotion #PhysicsDerivation #Class9Physics #Class11Physics #Kinematics #NEETPhysics #JEEMains #PhysicsWithAmit
📘 **Derivation of Second Equation of Motion | गति का दूसरा समीकरण | Class 9 & 11 Physics**
In this video, we will derive the second equation of motion:
👉 **s = ut + ½at²**, step-by-step in an easy and clear way.
इस वीडियो में हम गति का दूसरा समीकरण **(s = ut + ½at²)** को सरल और स्पष्ट तरीके से समझेंगे और सिद्ध करेंगे।
---
✨ **Topics Covered | शामिल विषय:**
* Uniformly Accelerated Motion की अवधारणा
* Step-by-step Derivation | चरणबद्ध सिद्ध करना
* आसान उदाहरण के साथ समझाया गया
* Class 9, 11, NEET, JEE छात्रों के लिए उपयोगी
---
📚 **Equation | समीकरण**
s = ut + ½at²
👉 जहां:
s = विस्थापन (Displacement)
u = प्रारंभिक वेग (Initial Velocity)
a = त्वरण (Acceleration)
t = समय (Time)
---
👍 Like, Share, and Subscribe करें अगर वीडियो पसंद आए।
और ऐसी और Physics की videos के लिए हमारे चैनल से जुड़े रहें!
\#SecondEquationOfMotion #गतिकासमीकरण #PhysicsDerivation #Class9Physics #Class11Physics #NEET2025 #JEE2025 #Kinematics
Видео 2nd equation of motion # derivation of 2nd equation of motion #physics канала Amit physics Academy
derivation of 2nd equation of motion 2nd equation of motion st line equation of motion 9th physics 11th equation of motion second equation of motion derivation of second equation of motion equation of motion class 9 class 9 physics motion v = u + at derivation physics equations of motion kinematics equations derivation physics class 9 equations of motion
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5 июня 2025 г. 4:29:47
00:02:42
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