Answer:
tan x° = 56.31°
Step-by-step explanation:
6/4= 1.5
hence x° = 56.31
The ratio of the 15 blue bracelets and 12 green bracelets is 5: 4. The correct option is D.
An ordered pair of numbers a and b, represented as a / b, is a ratio if b is not equal to 0. A proportion is an equation that sets two ratios at the same value. The numerical relationship between two values demonstrates how frequently one value contains or is contained within another.
Given that Kelly has 15 blue bracelets and 12 green bracelets. The ratio of the 15 blue bracelets and 12 green bracelets is calculated as:-
Ratio = blue bracelets / green bracelets
Ratio = 15 / 12
Ratio = 5 / 4
Hence, 12 green bracelets and 15 blue bracelets are distributed in a 5:4 ratio. The right answer is D.
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Answer:
D) 5 : 4
Step-by-step explanation:
Answer:
f(2) = 2 , f(6.8) = 6 and f(-3.3) = -4.
Step-by-step explanation:
We are given,
Floor function is .
That is, the function have value,
when .
So, we get,
For , we have f(2) = 2
For , we have f(6.8) = 6
For , we have f(-3.3) = -4
Thus, we have the values,
f(2) = 2 , f(6.8) = 6 and f(-3.3) = -4.
Answer:
The correct answers on edge .. yw have a great dayy
Step-by-step explanation:
f(2) =
2
f(6.8) =
6
f(–3.3) =
-4
Answer:
Jillian is Incorrect as fraction can never be balanced based on numerator or denominator.
Step-by-step explanation:
Given:
Measure of ribbon Kiara has =
Measure of ribbon Jillian has =
Now given:
Jillian says their ribbons are equal in length because her numerator is one more than kiara's and her denominator is one less, therefore balancing the two fractions.
we need to find whether statement is correct or not.
First we will find the decimal value of the given fraction's
can rewritten as
Measure of ribbon Kiara has = 0.25 inch
can be Rewritten as
Measure of ribbon Jillian has = 0.67 inch
Now we can see that;
0.67 inch is greater than 0.25 inch.
Hence we can say that ribbons are not in equal length.
Also the fraction can never be balanced by decreasing or increasing the numerator or denominator.
An inequality that shows the distance Johnathan could of ran any day this week is:
Solution:
Let "x" be the distance Johnathan can run any day of this week
Given that,
Johnathan ran 5 days this week. The most he ran in one day was 3.5 miles
Therefore,
Number of days ran = 5
The most he ran in 1 day = 3.5 miles
Thus, the maximum distance he ran in a week is given as:
The maximum distance he ran in a week is 17.5 miles
If we let x be the distance he can run any day of this week then, we get a inequality as:
If we let y be the total distance he can travel in a week then, we may express it as,