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03 Motion & Forces
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 01 Kinematics
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 01 Kinematics
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 01 Kinematics
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 01 Kinematics
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 01 Kinematics
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 01 Kinematics
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 01 Kinematics
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- Category: 01 Kinematics
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- Written by leongster
- Parent Category: 03 Motion & Forces
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- Written by leongster
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- Category: 01 Kinematics
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Newton's First Law Drone Hover Challenge is an HTML5 JavaScript physics lesson where students control a drone's thrust, compare thrust and weight, and decide whether the resultant force is zero or unbalanced.
The activity helps learners move beyond the common misconception that an object needs a continuous forward or upward force to keep moving. By watching altitude, velocity and force evidence together, students see that balanced forces mean zero acceleration, not necessarily zero velocity.
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 78
Interactive elevator phone accelerometer simulation for Newtonian mechanics: this browser-based model lets students use a phone accelerometer or a manual acceleration control to investigate normal force, weight, apparent weight and weighing-scale readings in a lift.
The activity goes beyond a static worksheet: learners observe live force arrows, calculate the scale reading, answer auto-marked questions, receive targeted hints, and generate xAPI/SLS-friendly learning evidence for teachers.
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 224
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 11167
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 5713
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 5164
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 2587
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- Written by Z. Darren Tan
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 6586
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- Written by Siti
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 10320
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 10372
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- Written by Loo Kang Wee
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 12221
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- Written by Wei Chiong
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 7673
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 6389
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 6634
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 7153
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 6226
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- Written by Wei Chiong
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 7084
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- Written by Wei Chiong
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 7891
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 6861
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 12732
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 8264
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 13467
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- Written by Fremont
- Parent Category: 03 Motion & Forces
- Category: 02 Dynamics
- Hits: 6190





































