MARK MAXIMISER 4567 2 I Date 21 This

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MARK MAXIMISER 4567 – 2 I Date: /21 ① This cube has a volume

MARK MAXIMISER 4567 – 2 I Date: /21 ① This cube has a volume of 729 cm 3. ② ③ 2 2 2 ④ ⑤ Find length AB (1 dp). ⑥ Calculate its surface area. Calculate the volume of this cone (1 sf). 7 cm 10 cm 44° A 2 2 ⑦ ⑧ This cumulative frequency graph shows the 2 B ⑨ weight of airmail crates. Find the median & the interquartile range. 80 2 1 ⑩ Shade the region that represents (A ∩ B’) ⑪ ξ A B Cumulative Frequency 7 cm 60 40 20 0 2 1 10 30 50 70 Weight (kg) 90 3

MARK MAXIMISER 4567 – 2 I ① This cube has a volume of 729

MARK MAXIMISER 4567 – 2 I ① This cube has a volume of 729 cm 3. Date: /21 ② ③ Calculate its surface area. 9 × 9 = 81 cm 2 × 6 = 486 cm 2 2 12 : 8 12 : 15 ④ Calculate the volume of this cone (1 sf). 7 cm cm 3 2 ⑤ Find length AB (1 dp). ⑥ 7 cm 12 : 8 : 15 AB = 5. 0 cm 44° A 2 2 ⑦ ⑧ This cumulative frequency graph shows the 2 B ⑨ weight of airmail crates. Find the median & the interquartile range. 80 2 1 ⑩ Shade the region that represents (A ∩ B’) ⑪ ξ A B Cumulative Frequency 500 10 cm 2 60 40 20 0 2 1 10 30 50 70 Weight (kg) 90 3

MARK MAXIMISER 4567 – 2 I ① This cube has a volume of 729

MARK MAXIMISER 4567 – 2 I ① This cube has a volume of 729 cm 3. Date: /21 ② ③ Calculate its surface area. 9 × 9 = 81 cm 2 × 6 = 486 cm 2 2 12 : 8 12 : 15 ④ Calculate the volume of this cone (1 sf). 7 cm cm 3 2 ⑤ Find length AB (1 dp). ⑥ 7 cm 12 : 8 : 15 AB = 5. 0 cm 44° A 2 2 ⑦ ⑧ This cumulative frequency graph shows the 2 B ⑨ weight of airmail crates. Find the median & the interquartile range. 80 (3, 1) 2 1 ⑩ Shade the region that represents (A ∩ B’) ⑪ ξ A B Cumulative Frequency 500 10 cm 2 40 20 0 2 1 50 60 10 38 34 30 M = 38 kg IR = 16 kg 50 70 Weight (kg) 90 3

Questions? Comments? Suggestions? …or have you found a mistake!? Any feedback would be appreciated

Questions? Comments? Suggestions? …or have you found a mistake!? Any feedback would be appreciated . Please feel free to email: tom@goteachmaths. co. uk