PLATO ANSWER: 17%
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The maximum percentage of net disposable income that should be set aside for food is approximately one-third, or 33.33%, according to historical data gathered by the U.S. Department of Agriculture's Bureau of Home Economics and Human Nutrition. However, this figure can vary depending on factors like the number of family members and who controls the household income.
Based on the work of the U.S. Department of Agriculture's Bureau of Home Economics and Human Nutrition, the average family should ideally set aside approximately one-third, or about 33.33%, of its net disposable income for food. This estimation is based on the bureau's calculations of how much it would cost to feed a nutritionally adequate diet to a family and is used to determine the poverty line. However, factors like the location (whether a high-income or low-income country), the number of family members, and even who controls the household income can affect this percentage.
It's crucial to understand that this is an average approximation and may not necessarily apply to every household. For some families, spending even 25% of their income on food could lead to financial strain. Conversely, families with higher income levels might spend less than 20%.
Spending on food also tends to be higher in lower-income households compared to higher-income households. Furthermore, spending patterns can differ based on whether the father or mother controls a larger share of the family income. For example, when the mother controls a larger share of family income, families tend to spend more on child care and less on alcohol and tobacco, suggesting that who controls the household resources can affect spending in certain areas, including food.
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Answer:
2884.8 millimeters squared
Step-by-step explanation:
Given:
The radius of the disc is 35 millimeters, so the area of it is:
π = 3.14* = 3846.5
Then, we find out the area of the circular hold cut out of the bigger one, its radius is a haft of the radius of the bigger circle = 35/2 = 17.5
π = 3.14* =961.6
=> the area of the pendant = 3846.5 - 961.6 =2884.8 millimeters squared
B. red, red, red, yellow, red, red, green, red, red, yellow
C.red, red, red, red, red, red, green, red, red, yellow
D.red, red, green, red, red, red, green, red, red, yellow
frequency table:
Red: 7
Green: 2
Yellow: 1
Total: 10
Answer:
Greater
Step-by-step explanation:
The domain for f(x) is all real numbers greater than or equal to 2.
x>=2
The exponential equation is solved and the population in 2020 is given by the relation P ( A ) = 27,369
The exponential growth or decay formula is given by
x ( t ) = x₀ × ( 1 + r )ⁿ
x ( t ) is the value at time t
x₀ is the initial value at time t = 0.
r is the growth rate when r>0 or decay rate when r<0, in percent
t is the time in discrete intervals and selected time units
Given data ,
Let the initial population be P ( 0 ) = 4,200
Let the population in 10 years be P ( 1 ) = 5,000
Now , the population in 100 years is P ( 100 ) =
The exponential growth formula is given by
x ( t ) = x₀ × ( 1 + r )ⁿ
r = ln(5,000/4,200) / 10 = 0.017
Now we can use this value of r to predict the population in 2020, which is 100 years after 1920:
P(100) = 5,000 × e^(0.017 × 100) = 27,369
Hence , the predicted population of Centerville in 2020, assuming exponential growth, is 27,369
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Answer:
the real answer is 28588
Step-by-step explanation:
Answer:
65
Step-by-step explanation:
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