Answer: She would have to burn between 220 and 240 calories per minute to have a calorie burn rate between those of Martin and Paul.
Step-by-step explanation:
Martin:
360 calories / 30 min = 12 calories/min
Paul:
165 calories / 15 min = 11 calories/min
Kara:
Needs to burn between 11 and 12 calories/min, so we'll calculate the range:
11 calories/min x 20 min = 220 calories (minimum # calories she can burn)
12 calories/min x 20 min = 240 calories (maximum # calories she can burn)
Entertainment
Health Care en
5%
5%
Clothing
Housing
33%
Insurance/
Pensions
9%
Other
11%
Food
14%
Transportation
17%
Answer:
$1644.
Step-by-step explanation:
We have been a typical household in the United States has an average after-tax income of $41,100. We are asked to find how much more is spent on insurance/pensions than on health care.
We have been given that 5% is spent on health care and 9% is spent on insurance/pensions. This means that 4% (9%-5%) is more on insurance/pensions than on health care.
Now, we need to find 4% of $41,100.
Therefore, $1644 is more spent on insurance/pensions than on health care.
Answer:
9% + 5%
Step-by-step explanation:
Answer:
-4x+4
Step-by-step explanation:
Answer:
12 chickens and 11 pigs
Step-by-step explanation:
We know that...
Chickens have 2 feet and 1 tail.
Pigs have 4 feet and 1 tail.
Let c represent chickens.
Let p represent pigs.
We need to create two equations. One for feet, and one for tails.
Tails:
Because each animal has 1 tail, we can say that the number of pigs, (p) plus the number of chickens, (c) must equal 23. So...
c + p = 23
Feet:
Because each chicken has two feet, and each pig has 4 feet, we can say that 2 times the number of chickens, (c) plus 4 times the number of pigs, (p) needs to equal 68. So...
2c + 4p = 68
Now we have two equations.
2c + 4p = 68
and
c + p = 23
We can use the substitution method to find c and p. The substitution method involves solving for one of the variables with one of the equations, then placing it into the other equation, so that you only have one variable to solve for, which you can do with simple algebra.
Solve for c
c + p = 23
c = 23 - p
Add that to the other equation.
2c + 4p = 68
2(23 - p) + 4p = 68
Solve for p
46 - 2p + 4p = 68
46 + 2p = 68
2p = 22
p = 11
Now that we know p, we can plug that into one of the equations to find c.
c + p = 23
c + (11) = 23
c = 12
Now we have c and p.
There are 12 chickens and 11 pigs on the farm.
B. y = two-seventhsx – 12
C. y = 12x–two-sevenths
D. y = 12x + two-sevenths
Answer:
y = (2/7)x -12 (Answer Choice B)
Step-by-step explanation:
Take the given values ( m=2/7 and y-intercept (0,-12) ) and substitute them into y = mx + b:
y = (2/7)x -12
The equation of a line in slope-intercept form, given the slope is two-sevenths and the y-intercept is (0, -12), is y = (two-sevenths)x - 12. So, the correct answer is B: y = two-seventhsx – 12.
The equation of a line in the slope-intercept form is usually represented as y = mx + b, where 'm' represents the slope of the line, and 'b' is the y-intercept. In your given conditions, the slope 'm' is given to be two-sevenths and the y-intercept as (0, –12). Therefore, replacing these values in the general slope-intercept equation will give you the specific equation of the line: y = (two-sevenths)x - 12. So, the correct answer is B: y = two-seventhsx – 12. This equation tells you that for each step you move to the right on the x-axis, you move two-sevenths steps up or down on the y-axis, beginning from the point where y is -12.
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