Ch. 2: Physical Quantities and Measurement
Learn what physical quantities are, why we need standard units, the metric/SI system, and how to measure length and mass carefully — with conversions by powers of 10.
Interactive lab — Measurement
Play with units, convert lengths, and remember: every measurement needs a number + unit.
Line up with zero!
Object length: 12.0 cm = 120 mm
Tip: Always place the 0 mark at one end. Read the other end carefully (avoid parallax — eye straight above the mark).
Metric ladder (×10 / ÷10)
3 m = 300 cm
Going down the ladder (bigger → smaller unit) → ×10 each step. Going up → ÷10.
Mass chain: t → kg → g → mg
- 2.5 kg = 2500 g
- 2.5 kg = 0.0025 tonne
- 2.5 kg = 2 500 000 mg
Mass stays the same everywhere. Weight changes with gravity (lighter on the Moon!).
Seven SI base units (flash)
Also remember: measurement = magnitude + unit. “35” alone is meaningless!
Topics in this chapter
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Physical quantity
Any physical property that can be measured using numbers (length, mass, time, temperature).…
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Standardisation
Measurement = magnitude + unit. Units must be accurate, universal, stable over time and place.…
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Metric & SI system
Metric system powers of 10. SI has 7 base units: m, kg, s, A, K, mol, cd.…
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Length
Horizontal length, height, width/breadth, distance. Ruler and tape. 0-mark alignment. Direct and ind…
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Mass and weight
Mass = amount of matter (kg). Weight = gravity force (changes). Convert t-kg-g-mg by 1000.…
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Time & temperature
Time in seconds; clocks. Temperature with thermometer (°C, K).…
Philosophy check
- What is this civilization?
- Why was it advanced?
- How did cities work?
- Where do we still see these ideas?
- Exams — what will be asked?