The value of (goh)(3) is 26.
The composition of a function is an operation where two functions say f and g generate a new function say h in such a way that h(x) = g(f(x)).
given:
g(x) = 2x , h(x) = x²+4
Now,
(goh)(3)
=g(h(3))
=g(9+4)
=g(13)
=2*13
=26
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Answer:
26
Step-by-step explanation:
26 is correct! Just took the test
-------- how do I solve this?
4x+12
answers anyone?
Answer: y= 2
Step by step: Multiply 2 and 1 to get 2
A. 11
B. 0
C. 1
D. none of these
2. From the set {0, 1, 10}, use substitution to determine which value of x makes the equation true.
23x + 29 = 52
A. 10
B. 1
C. none of these
D. 0
3.
Add 5 and b. Then, multiply by 2.
Which of the following expressions matches the statement above?
A. 5 + b × 2
B. (5 + b) × 2
C. 5 × (2 + b)
D. b + 5 × 2
4. What is the absolute value of the number indicated on the number line below?
-20
-19
-18
-17
-16
-15
-14
-13
-12
-11
-10
-9
-8
A. -18
B. 17
C. -17
D. 18
Answer:
1) the answer is C: 1, 23*(1) + 27 = 50
2) the answer is B: 1, 23*(1) + 29 = 52
3) the answer is B. (5 + b) × 2
4) the question is not clear
Step-by-step explanation:
b.(a + bi) × 0 = 0
c.(a + bi) × (c + di) = (c + di) × (a + bi)
d.(a + bi) × 1 = (a + bi)
Equation shows identity property of multiplication is (a + bi) × 1 = (a + bi)
The correct option is (d)
The identity property of multiplication says that the product of 1 and any number is that number.
We know, Identity property of multiplication states that
"the product of 1 and any number is that given number".
We know that every complex number have two parts one is real and other is imaginary.
If a is real number and b is imaginary part then by definition
(a + bi) × 1 = (a + bi).
1. Uses Distributive Property of Multiplication.
2. Zero product property.
3. Commutative property of multiplication
4. Identity property of multiplication.
Hence, equation shows identity property of multiplication is (a + bi) × 1 = (a + bi)
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