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Test: Geometrical Shapes and Solids - 2 - Class 4 MCQ


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10 Questions MCQ Test - Test: Geometrical Shapes and Solids - 2

Test: Geometrical Shapes and Solids - 2 for Class 4 2024 is part of Class 4 preparation. The Test: Geometrical Shapes and Solids - 2 questions and answers have been prepared according to the Class 4 exam syllabus.The Test: Geometrical Shapes and Solids - 2 MCQs are made for Class 4 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Geometrical Shapes and Solids - 2 below.
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Test: Geometrical Shapes and Solids - 2 - Question 1

Mensuration in geometry is applied to the computation of:

Detailed Solution for Test: Geometrical Shapes and Solids - 2 - Question 1

Mensuration in geometry involves the calculation of various measurements such as perimeter (distance around a shape), area (space occupied by a flat shape), and volume (space occupied by a solid object).

Test: Geometrical Shapes and Solids - 2 - Question 2

Analytical geometry is also known as:

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Analytical geometry is also known as coordinate geometry, as it involves the use of coordinates and algebraic equations to study geometric objects.

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Test: Geometrical Shapes and Solids - 2 - Question 3

In analytical geometry, points on a plane are defined using:

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Points on a plane in analytical geometry are defined using coordinates, which are ordered pairs of numbers representing the position of a point.

Test: Geometrical Shapes and Solids - 2 - Question 4

The direction cosines of a line are denoted by:

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The direction cosines of a line are denoted by l, m, and n, and they represent the cosines of the angles the line makes with the x-axis, y-axis, and z-axis, respectively.

Test: Geometrical Shapes and Solids - 2 - Question 5

Skew lines in geometry are lines that:

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The angle between two lines can be calculated using the formula cos θ = |l1l2 + m1m2 + n1n2|, where l1, m1, n1 and l2, m2, n2 are the direction cosines of the two lines.

Test: Geometrical Shapes and Solids - 2 - Question 6

The equation of a line passing through a point with the position vector →a and parallel to vector →b is given by:

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The vector equation of a line passing through a point with the position vector → a and parallel to vector → b is given by → r = → a + λ → b, where λ is a scalar parameter.

Test: Geometrical Shapes and Solids - 2 - Question 7

The angle between two lines can be computed using the formula:

Detailed Solution for Test: Geometrical Shapes and Solids - 2 - Question 7

The formula cos θ = |l1 + m1 + n1| is not used to calculate the angle between two lines. The correct formula is cos θ = |l1l2 + m1m2 + n1n2|.

Test: Geometrical Shapes and Solids - 2 - Question 8

Which of the following is not a three-dimensional geometric shape?

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A triangle is a two-dimensional shape, not a three-dimensional shape. It lies in a plane and has three sides and three vertices.

Test: Geometrical Shapes and Solids - 2 - Question 9

Which dimension is not considered in three-dimensional geometry?

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Depth is not considered in three-dimensional geometry. The three dimensions considered are length, width, and height.

Test: Geometrical Shapes and Solids - 2 - Question 10

The distance formula, section formula, midpoint formula, and other calculations in coordinate geometry are based on:

Detailed Solution for Test: Geometrical Shapes and Solids - 2 - Question 10

The distance formula, section formula, midpoint formula, and other calculations in coordinate geometry are based on analytical equations that involve coordinates and algebraic expressions. These formulas help determine geometric properties using numerical calculations.

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