On a coordinate plane, 2 quadrilaterals are shown. quadrilateral a b c d has points (2, negative 2), (4, negative 2), (3, negative 4), and (1, negative 4). quadrilateral j k l m has points (4, negative 4), (8, negative 4), (6, negative 9), and (2, negative 9). is quadrilateral jklm the result of a dilation of quadrilateral abcd by a scale factor of 2? why or why not? yes, because sides jk and ml are twice as long as sides ab and dc. yes, because both figures are parallelograms, so corresponding sides are parallel. no, because sides jk and ml are not twice as long as sides ab and dc. no, because sides jm and kl have different slopes from sides ad and bc.
On A Coordinate Plane, 2 Quadrilaterals Are Shown. Quadrilateral A B C D Has Points (2, Negative 2), (4, Negative 2), (3, Negative 4), And (1, Negative 4). Quadrilateral J K L M Has Points (4, Negative 4), (8, Negative 4), (6, Negative 9), And (2, Negative 9). Is Quadrilateral Jklm The Result Of A Dilation Of Quadrilateral Abcd By A Scale Factor Of 2? Why Or Why Not? Yes, Because Sides Jk And Ml Are Twice As Long As Sides Ab And Dc. Yes, Because Both Figures Are Parallelograms, So Corresponding Sides Are Parallel. No, Because Sides Jk And Ml Are Not Twice As Long As Sides Ab And Dc. No, Because Sides Jm And Kl Have Different Slopes From Sides Ad And Bc.
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On A Coordinate Plane, 2 Quadrilaterals Are Shown. Quadrilateral A B C D Has Points (2, Negative 2), (4, Negative 2), (3, Negative 4), And (1, Negative 4). Quadrilateral J K L M Has Points (4, Negative 4), (8, Negative 4), (6, Negative 9), And (2, Negative 9). Is Quadrilateral Jklm The Result Of A Dilation Of Quadrilateral Abcd By A Scale Factor Of 2? Why Or Why Not? Yes, Because Sides Jk And Ml Are Twice As Long As Sides Ab And Dc. Yes, Because Both Figures Are Parallelograms, So Corresponding Sides Are Parallel. No, Because Sides Jk And Ml Are Not Twice As Long As Sides Ab And Dc. No, Because Sides Jm And Kl Have Different Slopes From Sides Ad And Bc.. The smaller quadrilateral has points (negative 2, 2), (0, 2),. The larger quadrilateral has points (negative 4, 3), (0, 3), (2, 0), and (negative 2, 0).
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Rs = √[38.25] r's' = √[4.25] scale factor = rs / r's' = √[38.25] / √[4.25] the square root of 38.25 is. Figure 2 has points a prime (2, 1), b. The first figure has points a (negative 2, 1), b (negative 4, 1), c (negative.
The First Figure Has Points A (Negative 2, 1), B (Negative 4, 1), C (Negative.
Figure 2 has points a prime (2, 1), b. This question is asking is this showing a dilation of scale factor 2? The smaller quadrilateral has points (negative 2, 2), (0, 2),.
On A Coordinate Plane, 2 Quadrilaterals Are Shown.
If side jk is actually twice the length of side ab, and side ml is twice the length of side dc, then jk and ml could correspond to ab and dc under dilation by a factor of 2. We can take any pair of corresponding sides for this comparison: On a coordinate plane, 2 quadrilaterals are shown.
A Graph That Shows A Dilation Include The Following:
Rs = √[38.25] r's' = √[4.25] scale factor = rs / r's' = √[38.25] / √[4.25] the square root of 38.25 is. If m∠fhg = 61°, what is the measure of ∠fdg? Triangle bca with inscribed circle d.
On A Coordinate Plane, 2 Quadrilaterals Are Shown.
For example, rs and r's': So in order for us to say yes to this, the distance from each point has to be multiplied by 2. Point d is the incenter of triangle bca.
4, 5), And D (Negative 2, 4).
The larger quadrilateral has points (negative 4, 3), (0, 3), (2, 0), and (negative 2, 0). Segments bf and bh, cf and cg, and ag and gh are tangent. A dilation with a scale factor of and then a translation triangle def was dilated according to the rule do,(x,y) to create similar triangle d'e'f'.