MARK MAXIMISER 5678 1 E 48 7 cm





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MARK MAXIMISER ① 5678 – 1 E 48° ③ 7 cm 2 2 2 ④ A flower grows at approximately 6% per day. ⑤ What is the 6 th term in this sequence? ⑥ On the 1 st the flower was 10 cm tall. When will the flower be over 15 cm tall? 2 ⑦ /20 ② Find the area of this sector (1 dp). Date: 9 cm 22° 240, 120, 60 2 1 ⑧ The graph shows a car accelerating. ⑨ Estimate the distance it travels in the first 7 seconds. 80 8 cm 2 Find the equation of this circle. ⑩ 2 ⑪ Speed (m/s) 60 40 20 (− 8, − 3) 0 1 2 0 2 4 Time (s) 6 8 2
MARK MAXIMISER ① Date: /20 ② Find the area of this sector (1 dp). ③ 5678 – 1 E 7 cm 20. 5 cm 2 2 2 ④ A flower grows at approximately 6% per day. ⑤ What is the 6 th term in this sequence? On the 1 st the flower was 10 cm tall. When will the flower be over 15 cm tall? 10 × 1. 06 ANS × 1. 06 ⑦ 9 cm 22° 240, 120, 60 7 days = on the 8 th 2 48° 2 ⑥ 2 1 ⑧ The graph shows a car accelerating. ⑨ Estimate the distance it travels in the first 7 seconds. 80 8 cm 2 Find the equation of this circle. ⑩ 2 ⑪ Speed (m/s) 60 40 20 (− 8, − 3) 0 1 2 0 2 4 Time (s) 6 8 2
MARK MAXIMISER ① Date: /20 ② Find the area of this sector (1 dp). ③ ④ A flower grows at approximately 6% per day. ⑤ What is the 6 th term in this sequence? 10 × 1. 06 ANS × 1. 06 ⑦ 9 cm 2 ⑥ 2 1 ⑧ The graph shows a car accelerating. ⑨ Estimate the distance it travels in the first 7 seconds. 80 ≈ 165 m 22° 240, 120, 60 7 days = on the 8 th 2 8 cm 2 20. 5 cm 2 2 Find the equation of this circle. 7 cm 2 On the 1 st the flower was 10 cm tall. When will the flower be over 15 cm tall? 48° ⑩ 2 ⑪ (− 8, − 3) 40 75 20 1 90 60 Speed (m/s) 5678 – 1 E 0 2 4 Time (s) 6 8 2
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