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Zorluk: Çok zorQuadratic Functions and Graphs

In the xyxy-plane, the graph of the quadratic function f(x)=x2+bx+cf(x) = -x^2 + bx + c has a vertex at (h,k)(h, k). The graph of ff is translated 44 units to the right and 55 units up to form the graph of a quadratic function gg. If the graph of gg passes through the point (1,16)(1, 16) and has a yy-intercept of 1313, what is the value of kk?

Cevap: 12

Cevap

The value of kk is 1212.
By writing the function in vertex form as f(x)=(xh)2+kf(x) = -(x-h)^2 + k, we can apply the transformations directly. Translating the graph 44 units to the right and 55 units up gives the function g(x)=f(x4)+5=(xh4)2+k+5g(x) = f(x-4) + 5 = -(x-h-4)^2 + k+5. Using the given points g(0)=13g(0) = 13 and g(1)=16g(1) = 16, we set up a system of equations: (h+4)2+k+5=13-(h+4)^2 + k+5 = 13 and (h+3)2+k+5=16-(h+3)^2 + k+5 = 16. Solving these simultaneously gives h=2h = -2 and k=12k = 12.

Adım Adım Çözüm

1
Write the function f(x)f(x) in vertex form.
f(x)=(xh)2+kf(x) = -(x-h)^2 + k
Since the leading coefficient of f(x)=x2+bx+cf(x) = -x^2 + bx + c is 1-1, the vertex form must have a coefficient of 1-1.
2
Represent the translated function g(x)g(x).
g(x)=(xh4)2+k+5g(x) = -(x-h-4)^2 + k+5
Translating a function f(x)f(x) by 44 units to the right and 55 units up yields g(x)=f(x4)+5g(x) = f(x-4) + 5.
3
Use the yy-intercept of g(x)g(x) to write the first equation.
k(h+4)2=8k - (h+4)^2 = 8
The yy-intercept is the value of the function at x=0x = 0, so g(0)=13g(0) = 13.
4
Use the point (1,16)(1, 16) on g(x)g(x) to write the second equation.
k(h+3)2=11k - (h+3)^2 = 11
The graph passing through (1,16)(1, 16) means g(1)=16g(1) = 16.
5
Solve the system of equations for hh and kk.
h=2h = -2 and k=12k = 12
Equating the expressions for kk gives (h+4)2+8=(h+3)2+11(h+4)^2 + 8 = (h+3)^2 + 11, which simplifies to 2h=42h = -4, so h=2h = -2. Substituting h=2h = -2 into k=(h+4)2+8k = (h+4)^2 + 8 yields k=12k = 12.

Anahtar Kavram

Translating quadratic functions and solving systems of quadratic equations.
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