View solutions
FormulaWon

Singapore · Grade 12 · Practice Sheet 19

Sheet code: SINGAPORE-G12-S19 · 20 questions

Name: ______________
Date: ______________
  1. 1.

    A device runs at 125 V drawing 6.7 A. Find its power consumption.

    Formula:Electrical Power
    P=VIP = V I
    View formula →
  2. 2.

    An object with initial velocity 11 m/s accelerates at 3.7 m/s² for 4 s. Find the distance travelled.

    Formula:Kinematics (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^2
    View formula →
  3. 3.

    Two masses 1,900 kg and 440 kg are 4 m apart. Find the gravitational force between them. (G = 6.674×10⁻¹¹)

    Formula:Newton’s Law of Gravitation
    F=Gm1m2r2F = G\dfrac{m_1 m_2}{r^2}
    View formula →
  4. 4.

    Find the sum of the first 12 terms of an arithmetic series with first term a = 1 and common difference d = 1.

    Formula:Sum of an Arithmetic Series
    Sn=n2(2a+(n1)d)S_n = \tfrac{n}{2}\left(2a + (n-1)d\right)
    View formula →
  5. 5.

    An object with initial velocity 15 m/s accelerates at 3.3 m/s² for 9 s. Find the distance travelled.

    Formula:Kinematics (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^2
    View formula →
  6. 6.

    Find the sum of the first 12 terms of an arithmetic series with first term a = 7 and common difference d = 8.

    Formula:Sum of an Arithmetic Series
    Sn=n2(2a+(n1)d)S_n = \tfrac{n}{2}\left(2a + (n-1)d\right)
    View formula →
  7. 7.

    Two masses 1,400 kg and 730 kg are 19 m apart. Find the gravitational force between them. (G = 6.674×10⁻¹¹)

    Formula:Newton’s Law of Gravitation
    F=Gm1m2r2F = G\dfrac{m_1 m_2}{r^2}
    View formula →
  8. 8.

    An object with initial velocity 7 m/s accelerates at 1.2 m/s² for 10 s. Find the distance travelled.

    Formula:Kinematics (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^2
    View formula →
  9. 9.

    A device runs at 210 V drawing 7.8 A. Find its power consumption.

    Formula:Electrical Power
    P=VIP = V I
    View formula →
  10. 10.

    A body starts at 15 m/s and accelerates at 4.3 m/s² for 6 s. Find its final velocity.

    Formula:Kinematics (v = u + at)
    v=u+atv = u + at
    View formula →
  11. 11.

    An object with initial velocity 10 m/s accelerates at 1.9 m/s² for 4 s. Find the distance travelled.

    Formula:Kinematics (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^2
    View formula →
  12. 12.

    Find the volume of a sphere of radius 8 cm. (π ≈ 3.14159)

    Formula:Volume of a Sphere
    V=43πr3V = \tfrac{4}{3} \pi r^3
    View formula →
  13. 13.

    A force of 136 N acts on an area of 6.8 m². Find the pressure.

    Formula:Pressure
    P=FAP = \dfrac{F}{A}
    View formula →
  14. 14.

    A wave has frequency 751 Hz and wavelength 2.53 m. Find its speed.

    Formula:Wave Speed
    v=fλv = f\lambda
    View formula →
  15. 15.

    In a triangle, a = 12, b = 8 and the included angle C = 110°. Find side c (to 2 d.p.).

    Formula:Cosine Rule
    c=a2+b22abcosCc = \sqrt{a^2 + b^2 - 2ab\cos C}
    View formula →
  16. 16.

    $2,500 is invested at 5% compound interest per annum for 2 years. Find the final amount (to 2 d.p.).

    Formula:Compound Interest
    A=P(1+r100)tA = P\left(1 + \dfrac{r}{100}\right)^{t}
    View formula →
  17. 17.

    Find the population standard deviation of: 13, 3, 3, 10, 7 (to 2 d.p.).

    Formula:Standard Deviation (Population)
    σ=(xxˉ)2n\sigma = \sqrt{\dfrac{\sum (x - \bar{x})^2}{n}}
    View formula →
  18. 18.

    An object with initial velocity 12 m/s accelerates at 3.8 m/s² for 2 s. Find the distance travelled.

    Formula:Kinematics (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^2
    View formula →
  19. 19.

    A current of 3.7 A flows through a 58 Ω resistor. Find the voltage across it.

    Formula:Ohm's Law
    V=IRV = I R
    View formula →
  20. 20.

    An object with initial velocity 2 m/s accelerates at 4.9 m/s² for 7 s. Find the distance travelled.

    Formula:Kinematics (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^2
    View formula →

© FormulaWon — formulawon.app · Answers & step-by-step working available on the solutions sheet.