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Test: Perimeter of Various Shapes - 1 - Class 4 MCQ


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10 Questions MCQ Test Mathematics Olympiad Class 4 - Test: Perimeter of Various Shapes - 1

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

What is the formula to calculate the perimeter of a square?

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 1

The formula to calculate the perimeter of a square is given as P = 4 × Side units, where P represents the perimeter and Side represents the length of one side of the square.

Test: Perimeter of Various Shapes - 1 - Question 2

The perimeter formula of a rectangle is:

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 2

The perimeter formula of a rectangle is P = 2(l + b), where P represents the perimeter, l represents the length, and b represents the breadth of the rectangle.

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Test: Perimeter of Various Shapes - 1 - Question 3

What is the perimeter formula of a triangle?

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 3

The perimeter formula of a triangle is given as the sum of all three sides of the triangle, which can be expressed as Perimeter of a Triangle = a + b + c, where a, b, and c are the lengths of the three sides.

Test: Perimeter of Various Shapes - 1 - Question 4

Which formula represents the perimeter of an equilateral triangle?

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 4

The perimeter formula of an equilateral triangle is given as Perimeter of an Equilateral Triangle = 3 × a, where a represents the length of each side of the triangle.

Test: Perimeter of Various Shapes - 1 - Question 5

What is the perimeter formula of a parallelogram with two adjacent sides?

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 5

The perimeter formula of a parallelogram with two adjacent sides is given as P = 2(l + b), where P represents the perimeter, l represents the length, and b represents the breadth of the parallelogram.

Test: Perimeter of Various Shapes - 1 - Question 6

Which formula represents the perimeter of a circle?

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 6

The perimeter formula of a circle is given by the circumference of the circle, which can be expressed as Perimeter of a Circle = 2πr, where r represents the radius of the circle.

Test: Perimeter of Various Shapes - 1 - Question 7

The perimeter formula of a rhombus with sides is:

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 7

The perimeter formula of a rhombus with sides is given as P = 4a, where P represents the perimeter and a represents the length of the sides.

Test: Perimeter of Various Shapes - 1 - Question 8

The perimeter formula of a trapezoid is:

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 8

The perimeter formula of a trapezoid is calculated by adding the lengths of all four sides of the trapezoid, which can be expressed as P = a + b + c + d, where a, b, c, and d represent the lengths of the sides.

Test: Perimeter of Various Shapes - 1 - Question 9

What is the perimeter formula of a kite?

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 9

The perimeter formula of a kite is given as P = 2(a + b), where P represents the perimeter and a, b represent the lengths of the two pairs of kites.

Test: Perimeter of Various Shapes - 1 - Question 10

The perimeter formula of a regular hexagon is:

Detailed Solution for Test: Perimeter of Various Shapes - 1 - Question 10

The perimeter formula of a regular hexagon is given as Perimeter of a Hexagon = 6 × (length of one side), where the length of one side represents the length of each side of the hexagon.

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