Nigeria · Grade 12 · Practice Sheet 24
Sheet code: NIGERIA-G12-S24 · 20 questions
- 1.
Two masses 3,300 kg and 530 kg are 17 m apart. Find the gravitational force between them. (G = 6.674×10⁻¹¹)
- 2.
Find the sum of the first 16 terms of an arithmetic series with first term a = 6 and common difference d = 7.
- 3.
Two masses 6,800 kg and 610 kg are 20 m apart. Find the gravitational force between them. (G = 6.674×10⁻¹¹)
- 4.
₦2,100 is invested at 6% compound interest per annum for 3 years. Find the final amount (to 2 d.p.).
- 5.
Find the population standard deviation of: 3, 3, 5, 18, 15 (to 2 d.p.).
- 6.
Two masses 5,100 kg and 190 kg are 16 m apart. Find the gravitational force between them. (G = 6.674×10⁻¹¹)
- 7.
An object with initial velocity 8 m/s accelerates at 2 m/s² for 3 s. Find the distance travelled.
- 8.
Find the sum of the first 11 terms of an arithmetic series with first term a = 9 and common difference d = 6.
- 9.
Find the population standard deviation of: 8, 11, 5, 15, 12 (to 2 d.p.).
- 10.
In a triangle, a = 10, b = 11 and the included angle C = 70°. Find side c (to 2 d.p.).
- 11.
A device runs at 143 V drawing 2.4 A. Find its power consumption.
- 12.
A population of 4,000 grows 8% per year. Find its size after 6 years (nearest whole number).
- 13.
Find the sum of the first 18 terms of an arithmetic series with first term a = 12 and common difference d = 5.
- 14.
A cone has base radius 10 cm and height 19 cm. Find its volume. (π ≈ 3.14159)
- 15.
A body starts at 19 m/s and accelerates at 1.1 m/s² for 10 s. Find its final velocity.
- 16.
Find the sum of the first 8 terms of an arithmetic series with first term a = 1 and common difference d = 1.
- 17.
A population of 3,100 grows 10% per year. Find its size after 3 years (nearest whole number).
- 18.
A force of 43 N moves an object 8 m in the direction of the force. Find the work done.
- 19.
An object with initial velocity 7 m/s accelerates at 3.7 m/s² for 10 s. Find the distance travelled.
- 20.
A body starts at 8 m/s and accelerates at 5 m/s² for 3 s. Find its final velocity.
© FormulaWon — formulawon.app · Answers & step-by-step working available on the solutions sheet.