SEC V Kinematics: Difference between revisions
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Created page with "<!-- Top-left mini menu --> <div style="float:left; font-size:90%; margin:0.25em 0 0.75em 0;"> ⬅ Back to Secondary 5 Physics </div> <br style="clear:both;" /> <!-- Page intro banner --> <div style="border-left: 5px solid #0ea5e9; padding: 1em; background-color: #ecfeff; margin: 0.75em 0 1em;"> <p style="margin: 0; font-weight: bold;">📘 Kinematics</p> </div> == General Resources == <div style="border: 1px solid #28a745; padding: 0.8em; b..." |
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== 📖 Readings == | == 📖 Further Readings == | ||
* [https://cnx.org/contents/A3gVi_44@1.67:4SMp5I1s@2 OpenStax: Intro to 1D Kinematics] | * [https://cnx.org/contents/A3gVi_44@1.67:4SMp5I1s@2 OpenStax: Intro to 1D Kinematics] | ||
* [https://cnx.org/contents/A3gVi_44@1.67:_H3EiPTs@5 OpenStax: Displacement] | * [https://cnx.org/contents/A3gVi_44@1.67:_H3EiPTs@5 OpenStax: Displacement] | ||
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== 🎥 Videos == | == 🎥 Videos == | ||
* [ | === Definitions === | ||
* [https://youtu.be/wyZZn6sri5U Definitions – Kinematics] | |||
=== Graphs === | |||
* [https://youtu.be/g4s1j9nCyi4 Position–Time Graphs] | |||
* [https://youtu.be/YXrLMZb5uBA Velocity–Time Graphs] | |||
* [https://youtu.be/wArPnyyZCFg How to find the Position-Time Graph from the Velocity-Time Graph ?] | |||
* [https://youtu.be/-8eGB1WH0jw v-t, a-t and s-t Graphs Example] | |||
* [https://youtu.be/EZXLkAYjmR0 Distance (position) to Velocity Time Graph Physics Help] | |||
=== Equations for Motion with Constant Acceleration === | |||
* [https://youtu.be/Mn_KTSHn6DY The formulas for motion with constant acceleration - Part 1: v_f=v_i+a*t] | |||
* [https://youtu.be/Xlxx1fpPe1c The formulas for motion with constant acceleration - Part 2: 0.5*(v_f-v_i)*dt] | |||
* [https://youtu.be/JONAOt2ECNg The formulas for motion with constant acceleration - Part 3: ds=v_i*dt+0.5*a*dt²] | |||
* [https://youtu.be/M6Yhs77TK8w The formulas for motion with constant acceleration: Part 4] | |||
=== Catch-up Problems === | |||
* [https://youtu.be/22N1kAFx0L8 Catch-up Example Problem] | |||
=== Free Fall === | |||
* [https://youtu.be/dKe0XFzSc6g An object thrown downward - Two Ways to Find the Final Velocity] | |||
=== Review === | |||
* [https://youtu.be/8G1oc5Qq90U Full Kinematics Review] | |||
=== More === | |||
* [http://stefan.bracher.info/files/physics/smart_phone_accelerometer.pdf Explore: Smartphone Accelerometer] | * [http://stefan.bracher.info/files/physics/smart_phone_accelerometer.pdf Explore: Smartphone Accelerometer] | ||
Latest revision as of 14:40, 26 November 2025
📘 Kinematics
General Resources
📖 Reference Textbook:
Physics 006 Lecture Notes by Harris Benson: Chapter "Kinematics"
📖 Further Readings
- OpenStax: Intro to 1D Kinematics
- OpenStax: Displacement
- OpenStax: Vectors, Scalars, Systems
- OpenStax: Time, Velocity, Speed
- OpenStax: Acceleration
- OpenStax: Graphical Analysis of Motion
- OpenStax: Equations for Constant Acceleration
- OpenStax: Problem-Solving Basics
- OpenStax: Falling Objects
- OpenStax: Intro to 2D Kinematics
- OpenStax: Kinematics in 2D
🎥 Videos
Definitions
Graphs
- Position–Time Graphs
- Velocity–Time Graphs
- How to find the Position-Time Graph from the Velocity-Time Graph ?
- v-t, a-t and s-t Graphs Example
- Distance (position) to Velocity Time Graph Physics Help
Equations for Motion with Constant Acceleration
- The formulas for motion with constant acceleration - Part 1: v_f=v_i+a*t
- The formulas for motion with constant acceleration - Part 2: 0.5*(v_f-v_i)*dt
- The formulas for motion with constant acceleration - Part 3: ds=v_i*dt+0.5*a*dt²
- The formulas for motion with constant acceleration: Part 4
Catch-up Problems
Free Fall
Review
More
🧪 Simulation
📝 Practice
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