Skip to content
  • Home
  • 中文 (香港)
Solving Master

Solving Master

Resources for HKDSE Mathematics

  • Revision Note
    • Math
      • Number and Algebra
        • Complex Number
        • Errors and Estimations
        • Exponential and Logarithm
        • Identities
        • Inequalities
        • Percentage
        • Polynomials
        • Quadratic Equation and Function
        • Sequences
        • Variations
      • Measures, Shape and Space
        • Coordinates
        • Lines and Angles
        • Mensuration
        • Properties of Circle
        • Quadrilaterals
        • Transformations
        • Triangles
        • Trigonometry
      • Data Handling
        • Probability
        • Statistics
    • M2
      • Mathematical Induction
      • Binomial Theorem
      • Trigonometry (M2)
  • HKDSE-MATH
    • 2023
      • Paper 1
      • Paper 2
    • 2022
      • Paper 1
      • Paper 2
    • 2021
      • Paper 1
      • Paper 2
    • 2020
      • Paper 1
      • Paper 2
    • 2019
      • Paper 1
      • Paper 2
    • 2018
      • Paper 1
      • Paper 2
    • 2017
      • Paper 1
      • Paper 2
    • 2016
      • Paper 1
      • Paper 2
    • 2015
      • Paper 1
      • Paper 2
    • 2014
      • Paper 1
      • Paper 2
    • 2013
      • Paper 1
      • Paper 2
    • 2012
      • Paper 1
      • Paper 2
    • 2012PP
      • Paper 1
      • Paper 2
    • 2011SP
      • Paper 1
      • Paper 2
  • HKDSE-M2
    • 2023
    • 2022
    • 2021
    • 2020
  • HKCEE
    • 2011
      • Paper 1
      • Paper 2
    • 2010
      • Paper 1
      • Paper 2
    • 2009
      • Paper 1
      • Paper 2
    • 2008
      • Paper 1
      • Paper 2
    • 2007
      • Paper 1
      • Paper 2
    • 2006
      • Paper 1
      • Paper 2
  • Other Resources
  • Toggle search form

2019-I-09

Posted on 16-06-2021 By app.cch No Comments on 2019-I-09
Ans: (a) $288\pi\text{ cm}^3$ (b) $180\pi\text{ cm}^2$

  1. Let $r\text{ cm}$ be the radius of the larger sphere.

    Since the two spheres are similar, then the ratio of the volume of the larger sphere to that of the smaller sphere

    $\begin{array}{cl}
    = & \left( \dfrac{r}{\frac{1}{2}r} \right)^3 \\
    = & \dfrac{8}{1} \\
    = & 8 : 1
    \end{array}$

    Hence, the volume of the larger sphere

    $\begin{array}{cl}
    = & 324\pi \times \dfrac{8}{8 + 1} \\
    = & 288\pi \text{ cm}^3
    \end{array}$

  2. By the result of (a), we have

    $\begin{array}{rcl}
    \dfrac{4}{3} \pi r^3 & = & 288\pi \\
    r^3 & = & 216 \\
    r & = & 6
    \end{array}$

    Therefore, the radii of the larger sphere and smaller sphere are $6\text{ cm}$ and $3\text{ cm}$ respectively.

    Hence, the sum of the surface areas of the two spheres

    $\begin{array}{cl}
    = & 4 \pi (6)^2 + 4 \pi (3)^2 \\
    = & 180\pi \text{ cm}^2
    \end{array}$

Same Topic:

Default Thumbnail2019-II-15 Default Thumbnail2019-II-16 Default Thumbnail2019-II-19 Default Thumbnail2020-II-15
2019, HKDSE-MATH, Paper 1 Tags:Mensuration

Post navigation

Previous Post: 2020-II-45
Next Post: 2018-I-01

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Topic Cloud

3D Problems (41) Basic Functions (13) Basic Geometry (68) Binomial Theorem (7) Change of Subject (32) Complex Numbers (16) Coordinates (46) Differentiation (16) Equations of Circle (54) Equations of Straight Line (43) Estimations and Errors (35) Factorization (39) Graph of Functions (3) Inequality (39) Integration (15) Laws of Indices (43) Linear Programming (21) Locus (13) Logarithm (34) Mathematical Induction (7) Matrices (4) Mensuration (98) Numeral System (19) Percentage (42) Polynomials (49) Probability (85) Properties of Circles (56) Quadratic Equations and Functions (57) Rate and Ratio (30) Rational Functions (20) Sequences (66) Simultaneous Linear Equations (27) Statistics (122) System of Linear Equations (3) Transformations (44) Trigonometry (M2) (7) Trigonometry and Its Applications (67) Variations (38) Vectors (3)

Copyright © 2025 Solving Master.

Powered by PressBook Grid Blogs theme