Answer:
Since we know that,
cos2x= cos²x-sin²x=(cosx-sinx)(cosx+sinx)
And, sin2x=2sinx.cosx
Therefore,
1-sin2x= cos²x+sin²x-2sinx.cosx
1-sin2x= (cosx-sinx)²
Then let
y=cos2x/(1-sin2x)
Answer:
so bro according to my calculations it's b good luck
just put it to slope or standard form
On a coordinate plane, a curve approaches x = negative 2 in quadrant 3, increases to a put of inflection at (0, 1), and then increases again and approaches x = 2.
On a coordinate plane, a straight line has a positive slope.
On a coordinate plane, a function has a line with positive slope that intersects with a line with a negative slope.
The graph that is an example of a cubic function is the one that approaches x = negative 2 in quadrant 3, increases to a point of inflection at (0, 1), and then increases again and approaches x = 2.
A polynomial function is a mathematical function that may be written as a sum of terms, where each term is made up of a variable raised to a non-negative integer power multiplied by a constant coefficient. The degree of the polynomial is the largest power of the variable in the function.
The graph that is an example of a cubic function is the one that approaches x = negative 2 in quadrant 3, increases to a point of inflection at (0, 1), and then increases again and approaches x = 2. This is because a cubic function is a polynomial function of degree three
Learn more about polynomial function here:
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The image posted below
(6, 8). Substitute the numbers in for x and y and then solve the equation. The coordinates are (x, y).
Answer:
(6,8)
Step-by-step explanation:
All integers where n ≥ 1
All integers where n ≥ 5
All integers where ≤ 5
Answer:
Hence, All integers where n ≥ 1
Option 2 is correct.
Step-by-step explanation:
Given: The geometric sequence
where, a1 = a = 5 and the common ratio (r) = −3
Now we will find the general term of Geometric sequence.
Now we write as function,
f(1)=5
For n=1,
Geometric series start from n=1
Therefore, Domain: n≥1
Hence, All integers where n ≥ 1
Answer:
Al integers where n≥1
Step-by-step explanation:
Yessirrrr