B) $0.2
C) –$0.2
D) $0.8
The new expected value is $0.8 if the auction house sold 200 tickets at $1 and had 16 prizes of $10 each.
It is value which is calculated in the present but expect to come in future also.
The expectedvalue will be calculated as under:
Value on 16 prizes=200/160=1.25
Expected value will be =(200+160)/1.25/160
=200.8
So the value expected will be $0.8.
Learn more about expected value at brainly.com/question/10675141
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Approximately what percentage of students signed up for neither canoeing nor trekking?
10%
12%
38%
32%
Fourth degree polynomial
Sixth degree polynomial
First degree binomial
Answer:
Fourth degree polynomial
Step-by-step explanation:
Given is an algebraic expression with 4 terms as
First let us arrange these terms in the descending powers of x.
We get
is the standard way of representing any polynomial.
This is a polynomial because x has powers only as non negative integers.
The degree is 4 since the leading term or highest degree term has degree 4.
This is a polynomial as this got more than 3 terms after simplification.
Hence Option B is the answer.
Answer:
Fourth degree polynomial.
Step-by-step explanation:
Took test this answer not third degree polynomial.
b. Wall length of 30 feet
c. Wall length of 3 feet
d. Wall length of 16 feet
Using the formula A=l•w to solve the wallpaper problem, where the area (A) is 240 square feet and the width (w) is the height of the walls (8 feet), we find that the wall length (length) that you can paper is 30 feet.
The subject of the word problem is finding the wall length you can cover with a given amount of wallpaper. In this case, the area of the wallpaper is 240 square feet, and the height of the walls is 8 feet.
The formula for the area of a rectangle is A=l•w, where A stands for area, l stands for length, and w stands for width. In this case, the 'width' is the height of the walls, which is 8 feet.
To find the length of the wall, we can rearrange the formula to l=A/w and substitute the given values. That means l=240/8, which gives us a wall length of 30 feet.
Therefore, the answer is b. Wall length of 30 feet.
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