| Math skills |
Precision, accuracy and significant figures |
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| Math skills |
Vectors, cos and sin rules. |
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| A1 |
Free-fall directions and patterns |
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| A1 |
A projectile motion problem fully solved |
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| A2 |
Galileo, free-fall and upthrust |
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| A2 |
Weightlessness in an elevator |
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| A2 |
The vomit comet |
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| A2 |
Terminal velocity of a projectile |
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| A2 |
Air resistance and loops |
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| A2 |
Recoil |
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| A2 |
Upthrust and the Titanic |
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| A3 |
Work energy theorem or constancy of mechanical energy |
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| A3 |
Skydiving |
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| A3 |
Elastic collision in slow motion |
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| A4 |
Translational and rotational equilibrium |
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| A5 |
Using spacetime diagrams |
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| B1 |
Mixing systems with phase changes |
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| B2 |
Thermal equilibrium and human intervention |
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| B3 |
PV = nRT, their 3 bits and SI constants |
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| B4 |
Gas cycles and graphs |
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| B5 |
Voltaic pile and the field of chemistry |
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| B5 |
Solving a full electric circuit |
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| C1 |
Vertical SHM of a spring |
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| C2 |
Two key graphs |
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| C3 |
Refraction and t.i.r. |
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| C4 |
Harmonics and electrons |
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| C5 |
Doppler and the Big Bang |
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| D1 |
Point masses and tides |
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| D2 |
Constant and variable fields |
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| D3 |
Cyclotrons |
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| D4 |
Power plants and Physics |
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| E1 |
The history of the model of the atom |
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| E2 |
Wave or particle |
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| E3 |
Radioactive dating |
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| E4 |
Nuclear energy, power plants and global warming |
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| E5 |
Nucleosynthesis |
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