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If the perpendicular bisector of a chord AB of a circle PXAQBY intersects the circle at P and Q, prove that arc PXA ≅ arc PYB.

[9] Circles
Chapter: [9] Circles
Concept: undefined >> undefined

A, B and C are three points on a circle. Prove that the perpendicular bisectors of AB, BC and CA are concurrent.

[9] Circles
Chapter: [9] Circles
Concept: undefined >> undefined

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If BM and CN are the perpendiculars drawn on the sides AC and AB of the triangle ABC, prove that the points B, C, M and N are concyclic.

[9] Circles
Chapter: [9] Circles
Concept: undefined >> undefined

Two circles with centres O and O′ intersect at two points A and B. A line PQ is drawn parallel to OO′ through A(or B) intersecting the circles at P and Q. Prove that PQ = 2 OO′.

[9] Circles
Chapter: [9] Circles
Concept: undefined >> undefined

With the help of a ruler and a compass it is not possible to construct an angle of ______.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

The construction of a triangle ABC, given that BC = 6 cm, ∠B = 45° is not possible when difference of AB and AC is equal to ______.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

The construction of a triangle ABC, given that BC = 3 cm, ∠C = 60° is possible when difference of AB and AC is equal to ______.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

An angle of 52.5° can be constructed.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

An angle of 42.5° can be constructed.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

A triangle ABC can be constructed in which AB = 5 cm, ∠A = 45° and BC + AC = 5 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

A triangle ABC can be constructed in which BC = 6 cm, ∠C = 30° and AC – AB = 4 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

A triangle ABC can be constructed in which ∠B = 105°, ∠C = 90° and AB + BC + AC = 10 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

A triangle ABC can be constructed in which ∠B = 60°, ∠C = 45° and AB + BC + AC = 12 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

Construct a triangle whose sides are 3.6 cm, 3.0 cm and 4.8 cm. Bisect the smallest angle and measure each part.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

Construct a triangle ABC in which BC = 5 cm, ∠B = 60° and AC + AB = 7.5 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

Construct the following and give justification:

A triangle PQR given that QR = 3 cm, ∠PQR = 45° and QP – PR = 2 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

Construct the following and give justification:

A right triangle when one side is 3.5 cm and sum of other sides and the hypotenuse is 5.5 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

Construct the following and give justification:

An equilateral triangle if its altitude is 3.2 cm.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

Construct the following and give justification:

A rhombus whose diagonals are 4 cm and 6 cm in lengths.

[4.07] Constructions
Chapter: [4.07] Constructions
Concept: undefined >> undefined

The perimeter of an equilateral triangle is 60 m. The area is ______.

[10] Areas - Heron’S Formula
Chapter: [10] Areas - Heron’S Formula
Concept: undefined >> undefined
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