Fill in the blanks: (a) The volume of a cube of side 1 cm is equal to .....m3 (b) The surface area of a solid cylinder of radius 2.0 cm and height 10.0 cm is equal to ...(mm)2 (c) A vehicle moving with a speed of 18 km h-1 covers....m in 1 s (d) The relative density of lead is 11.3. Its density is ....g cm-3 or ....kg m-3.
Hint. For (b), a solid cylinder's total surface area includes both circular ends plus the curved side, so use 2πr(r + h).
Step 1 — (a) Volume of the cube. Side = 1 cm = 10⁻² m, so volume = (10⁻²)³ = 10⁻⁶ m³.
Step 2 — (b) Total surface area of the cylinder. Using 2πr(r + h) with r = 2.0 cm, h = 10.0 cm: 2π(2.0)(12.0) = 48π ≈ 150.8 cm². Since 1 cm² = 100 mm², this is 150.8 × 100 ≈ 1.5 × 10⁴ mm², kept to 2 significant figures because the radius (2.0 cm) has only two.
Step 3 — (c) Speed conversion. 18 km h⁻¹ = 18 × 1000 m / 3600 s = 5 m s⁻¹, so the vehicle covers 5 m in 1 s.
Step 4 — (d) Density of lead. Relative density (specific gravity) is density relative to water, so density = 11.3 × (density of water) = 11.3 g cm⁻³, which converts to 11.3 × 1000 kg m⁻³ = 1.13 × 10⁴ kg m⁻³, since 1 g cm⁻³ equals exactly 1000 kg m⁻³.
✦ Answer: (a) 10⁻⁶ m³ (b) ≈ 1.5 × 10⁴ mm² (c) 5 m (d) 11.3 g cm⁻³ = 1.13 × 10⁴ kg m³
Where students slip. Using only the curved surface area (2πrh) in (b) and forgetting the two circular end caps — a 'solid cylinder' has a closed top and bottom, so both end areas (2πr²) belong in the total.
