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6-1: Intro to Quadrilaterals
Do NOW Use the following diagram to solve: x y x + y 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Worksheet Key 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Worksheet Key 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Worksheet Key 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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Properties of Parallelograms
Section 6-2 Geometry PreAP, Revised Β©2013 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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Properties of Parallelograms
If a quadrilateral is a parallelogram, then its opposite sides are congruent The opposite sides are congruent The opposite angles are congruent The consecutive angles are supplementary The diagonals bisect each other 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Theorem 1 If a quadrilateral is a parallelogram, then its opposite sides are congruent. If PQRS is a parallelogram, then π·πΈ β
πΉπΊ and πΈπΉ β
π·πΊ . 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Theorem 2 If a quadrilateral is a parallelogram, then its opposite angles are congruent. If PQRS is a parallelogram, then β π·β
β πΉ and β πΈβ
β πΊ. 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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Theorem 3 If a quadrilateral is a parallelogram, then its opposite angles are congruent. If PQRS is a parallelogram, then π+π=πππΒ°. 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Theorem 4 If a quadrilateral is a parallelogram, then its diagonals bisect each other. 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Example 1 Find the value of x and y that ensure the quadrilateral is a parallelogram. 6x 4x+8 y yΒ² 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Example 2 In Parallelogram CDEF, DE = 74 mm, DG = 31 mm, and mοFCD = 42Β°. Find CF. 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Your Turn In Parallelogram CDEF, DE = 74 mm, DG = 31 mm, and mοFCD = 42Β°. Find DF. 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Example 3 WXYZ is a parallelogram. Find YZ. YZ = XW 8a β 4 = 6a + 10 2a = 14 a = 7 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Your Turn WXYZ is a parallelogram. Find mοZ. 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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Example 4 Determine if the quadrilateral must be a parallelogram. Justify your answer. Yes. The 73Β° angle is supplementary to both its corresponding angles. 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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6-3: Conditions of Parallelograms
Example 5 Determine if the quadrilateral must be a parallelogram. Justify your answer. No. One pair of opposite angles are congruent. The other pair is not. The conditions for a parallelogram are not met. 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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Your Turn Determine if the quadrilateral must be a parallelogram. Justify your answer. Yes. The diagonal of the quadrilateral forms 2 triangles. 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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6-3: Conditions of Parallelograms
Example 6 PQRS is a parallelogram for x = 10 and y = Find mοS and mοR 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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6-3: Conditions of Parallelograms
Example 7 Solve for x and y of MLPN 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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6-3: Conditions of Parallelograms
Your Turn Solve for a and c of MLPN 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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Example 8 Three vertices of JKLM are J(3, β8), K(β2, 2), and L(2, 6). Find the coordinates of vertex M. J K L J K L M The coordinates of vertex M are (7, β4). 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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6-3: Conditions of Parallelograms
Your Turn Three vertices of PQRS are P(β3, β2), Q(β1, 4), and S(5, 0). Find the coordinates of vertex R. 2/5/2019 3:29 PM 6-3: Conditions of Parallelograms
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6-1: Intro to Quadrilaterals
Video 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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6-1: Intro to Quadrilaterals
Assignment Pg 395: 15-24, 32-43, 46, 47 Pg 402: 11-15, 20-23 2/5/2019 3:29 PM 6-1: Intro to Quadrilaterals
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