Answer:
(4, 5)
Step-by-step explanation:
Dilation by factor d about point (a, b) effects the transformation ...
(x, y) ⇒ d((x, y) -(a, b)) +(a, b)
⇒ (d(x-a) +a, d(y-b) +b)
(x, y) ⇒ (dx +a(1-d), dy +b(1-d))
We have (x, y) = (3, 4) and (a, b) = (1, 2) and d=3/2. Filling in these numbers, we get ...
(3, 4) ⇒ ((3/2)(3)+1(1-3/2), (3/2)(4)+2(1-3/2)) = (9/2 -1/2, 6 -1) = (4, 5)
Point E' is (4, 5).
_____
If you look at the graph, you realize that E is (2, 2) from (1, 2). Dilation by a factor of 3/2 moves it to (3/2)(2, 2) = (3, 3) from (1, 2). So ...
E' = (3+1, 3+2)
E' = (4, 5)
The region is bounded by 2 spheres, both centered at the origin and having radii 1 and 5, respectively.
B. 0, 1, 2, and 3
C. –2, –1, 0, 1, and 2
D. –3, –2, –1, 0, 1, 2, and 3
simplify complex fraction 3/4 + 1/3/1/6 + 3/4
Answer:
∠ P = 35°
Step-by-step explanation:
the sum of the 3 angles in a triangle = 180° , then
∠ P + ∠ Q ∠ R = 180° ( substitute given values )
∠ P + 100° + 45° = 180° , that is
∠ P + 145° = 180° ( subtract 145° from both sides )
∠ P = 180° - 145° = 35°