Answer:
Step-by-step explanation:
7.
8.
9.
10.
11.
12.
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14.
15.
B=9
C=12
D=15
Thank you! Please show work.
The description of the transformation of the parent function is that the function f(x) is vertically stretched by a factor of 12 and then translatedup by 2 units to form h(x).
Here,
The function is given as;
h(x) = 12f(x) + 2
We have to describe the transformation(s) of the parent function.
How to describe the transformation(s) of the parent function?
Let the function g(x) is given as:
g(x) = a f(x) + b
Where, f(x) is the parent function.
Now,
In the function,
h(x) = 12f(x) + 2
Term 12 is implies that,
Function f(x) is vertically stretched by factor of 12.
And, The term 2 in h(x) = 12f(x) + [2] implies that,
The function is then translated up by 2 units.
Therefore, the description of the transformation(s) of the parent function is that the function f(x) is vertically stretched by a factor of 12 and then translated up by 2 units to form function h(x).
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Answer:
Vertical stretching by a factor of 12, followed by upward translation of 2 units.
Step-by-step explanation:
Let's assume you're starting with f(x), the parent function.
Multiplying f(x) by 12 will stretch the graph vertically by a factor of 12. A point (1,1) on the graph of f(x) will re-appear as (1,12) after this vertical stretching. Once you've done that, translate the entire graph upward by 2 units.
The electron configuration for each ion can be determined using the noble gas core notation.
The electron configuration for each of the given ions can be determined using the noble gas core notation. The noble gas notation involves representing the core electron configuration with the symbol of the noble gas that matches it, followed by the electron configuration of the valence electrons. For example, the electron configuration of a sodium ion ([Na]⁺) using the noble gascore notation is [Ne]3s².
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Answer:
The choice two
Step-by-step explanation: