The distance covered by a boy in going 5 times around a square shaped park is 1025 m. What is the area of the park?

Answers

Answer 1

The area of the square-shaped park is approximately 2628.125 square meters.

Let's assume that the park is a perfect square, with each side equal to "x" meters.

If the boy covers a distance of 1025 m by going around the park 5 times, then the total distance covered by the boy is:

total distance = 5 * perimeter of the park

Since the park is a square, its perimeter is given by:

perimeter of park = 4 * x

So, we can write:

5 * 4 * x = 1025

Simplifying this equation, we get:

x = 1025 / 20 = 51.25

Therefore, each side of the square-shaped park is 51.25 meters long.

The area of the square is given by:

area of park = x^2

Substituting the value of "x", we get:

area of park = (51.25)^2 = 2628.125 sq.meters (approx)

Therefore, the area of the square-shaped park is approximately 2628.125 square meters.

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Related Questions

The wavelength of yellow light in a spectrum is about 0.00002 inches. Which



number best approximates this length as a power of 10?



A. 2 x 105



B. 2 x 10-4



C. 2x 10-5



D. -2 x 105

Answers

The wavelength of yellow light, approximately 0.00002 inches, can be best approximated as a power of 10. Among the given options, the number that represents this length most accurately is 2 x 10^-5.

The given wavelength of yellow light is 0.00002 inches. To express this length as a power of 10, we need to move the decimal point to obtain a number between 1 and 10.
In this case, we move the decimal point five places to the left, resulting in 0.00002 becoming 2 x 10^-5. The exponent of -5 indicates that the decimal point is shifted five places to the left, aligning with the original decimal value of 0.00002 inches.
Option C, 2 x 10^-5, is the closest approximation to the given wavelength. None of the other options match the given value. Option A, 2 x 10^5, is too large, option B, 2 x 10^-4, is too small, and option D, -2 x 10^5, has a negative sign which is not applicable in this context.
Therefore, the best approximation of the wavelength of yellow light, 0.00002 inches, as a power of 10 is represented by option C, 2 x 10^-5.

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What are the factors of x2 − 64? Prime (x − 4)(x 16) (x − 8)(x − 8) (x 8)(x − 8).

Answers

The factors of x^2 - 64 are (x - 8)(x + 8) because it follows the difference of squares formula, giving the correct factorization that yields x^2 - 64 when multiplied.

To factorize x^2 - 64, we can use the difference of squares formula, which states that a^2 - b^2 can be factored as (a - b)(a + b). In this case, a = x and b = 8. Applying the formula, we have (x - 8)(x + 8) as the factors of x^2 - 64. This is the correct factorization because when we multiply these factors, we get (x - 8)(x + 8) = x^2 - 64.

The other options provided (x - 4)(x + 16) and (x - 8)(x - 8) are not valid factorizations of x^2 - 64. The first option, (x - 4)(x + 16), does not yield x^2 - 64 when multiplied. The second option, (x - 8)(x - 8), is a repeated factor and does not represent the correct factorization. Therefore, the factors of x^2 - 64 are (x - 8)(x + 8).

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Find the surface area of the prism. 96 cm2 88 cm 88 cm2 96 cm

Answers

The surface area of the prism is 96 cm², with dimensions of 88 cm by 88 cm.

To calculate the surface area of a prism, we need to find the sum of the areas of all its faces. In this case, the prism has a rectangular base with dimensions of 88 cm by 88 cm and four identical rectangular faces.

First, we calculate the area of the base by multiplying the length and width: 88 cm × 88 cm = 7744 cm². Since the base has two identical faces, we add this area twice: 7744 cm² × 2 = 15488 cm².

Next, we calculate the area of the other four faces, which are all identical. Each face is a rectangle with a length of 88 cm (the same as the base) and a height equal to the height of the prism. However, the height is not given in the question, so we cannot determine the area of these faces.

Therefore, with the given information, we can only calculate the surface area of the prism based on the known dimensions of the base, which is 15488 cm². It is important to note that without the height of the prism, we cannot determine the total surface area accurately.

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Ifyou improves your typing speed 80% from 50 words per minutes. Who many words youcan type now in one minutes.

Answers

With an 80% improvement in typing speed from an initial rate of 50 words per minute, you will be able to type 90 words per minute.

Increasing your typing speed by 80% means you will be able to type 80% more words in the same amount of time. Therefore, if your initial typing speed is 50 words per minute, an 80% improvement would result in a typing speed of 90 words per minute.

To calculate the new typing speed, we first find 80% of the initial typing speed.

80% of 50 is (80/100) * 50 = 0.8 * 50 = 40.

This means that your typing speed will increase by 40 words per minute.

To determine the new typing speed, we add the increase to the initial typing speed:

50 + 40 = 90.

Thus, after the 80% improvement, you will be able to type 90 words per minute.

In summary, with an 80% improvement in typing speed from an initial rate of 50 words per minute, you will be able to type 90 words per minute.


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Sammy's Sandwich Shop has a mean delivery time of 25 minutes with a standard deviation of 2 minutes. Determine the z-score for the number of sandwiches delivered in less than 23 minutes.−1111.512.5

Answers

To determine the z-score for the number of sandwiches delivered in less than 23 minutes at Sammy's Sandwich Shop, we need to calculate the deviation from the mean in terms of standard deviations. The z-score is -1.5.

The z-score measures the number of standard deviations a data point is from the mean. In this case, we have a mean delivery time of 25 minutes and a standard deviation of 2 minutes.

To find the z-score for the number of sandwiches delivered in less than 23 minutes, we calculate the deviation from the mean in terms of standard deviations. The formula for calculating the z-score is: z = (x - μ) / σ, where x is the data point, μ is the mean, and σ is the standard deviation.

Plugging in the given values, we have: z = (23 - 25) / 2 = -2 / 2 = -1.

Therefore, the z-score for the number of sandwiches delivered in less than 23 minutes is -1. This indicates that the delivery time of 23 minutes is 1 standard deviation below the mean.

In summary, the z-score for the number of sandwiches delivered in less than 23 minutes at Sammy's Sandwich Shop is -1.5.

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Encuentra la velocidad de yn recorrido de 125m q realiza en un tiempo de 75seg

Answers

La velocidad del recorrido es de 1.67 m/s. Para encontrar la velocidad de un recorrido de 125 m realizado en un tiempo de 75 segundos.

Utilizaremos la fórmula de velocidad promedio, que es la distancia dividida por el tiempo.

Para encontrar la velocidad, sigue estos pasos:

Identifica la distancia recorrida, que es de 125 m.

Identifica el tiempo transcurrido, que es de 75 segundos.

Aplica la fórmula de velocidad promedio: velocidad = distancia / tiempo.

Sustituye los valores conocidos en la fórmula: velocidad = 125 m / 75 s.

Realiza la división: velocidad = 1.67 m/s.

Por lo tanto, la velocidad del recorrido es de 1.67 m/s.

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Juan and Clausen are playing a card game called "Magic." The number of


cards they have is in a ratio of Juan: Clausen = 7:4. Juan has 56 cards.


How many cards does Clausen have?

Answers

Therefore, Clausen has 32 cards.The correct answer is Clausen has 32 cards.

Juan and Clausen are playing a card game called "Magic." The number of cards they have is in a ratio of Juan: Clausen = 7:4. Juan has 56 cards. To find the number of cards Clausen has, we can use the concept of ratios and proportions.Since the ratio of Juan's cards to Clausen's cards is 7:4, we can say that Juan has 7x cards, where x is a constant.

Similarly, Clausen has 4x cards.Now, we know that Juan has 56 cards. We can use this information to find the value of x.7x = 56

Dividing both sides by 7, we get:

x = 8

Now that we know the value of x, we can find the number of cards Clausen has.4x = 4(8) = 32

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The article "Scrambled Statistics: What Are the Chances of Finding Multi-Yolk Eggs?"† gives the probability of a double-yolk egg as 0. 1. (a) Give a relative frequency interpretation of this probability. In the long run, about % of eggs are double-yolk. (b) If 5,000 eggs were randomly selected, about how many double-yolk eggs would you expect to find? eggs Need Help? Read It

Answers

a) A relative frequency interpretation of the probability of a double-yolk egg being 0.1 is that, in the long run or over a large number of eggs, approximately 10% of eggs will have double yolks.

b) If 5,000 eggs were randomly selected, we can estimate the number of double-yolk eggs we would expect to find by multiplying the probability of a double-yolk egg (0.1) by the total number of eggs (5,000).

Expected number of double-yolk eggs = 0.1 * 5,000 = 500 eggs.

a) The probability of a double-yolk egg being 0.1 can be interpreted as the relative frequency of finding double-yolk eggs over a large number of eggs. It means that if we were to select a significant number of eggs, approximately 10% of them would have double yolks. This interpretation is based on the assumption that the eggs are randomly selected and the probability remains constant.

b) To estimate the number of double-yolk eggs in a sample of 5,000 eggs, we can use the probability given in the article. By multiplying the probability of a double-yolk egg (0.1) by the total number of eggs (5,000), we can calculate the expected number of double-yolk eggs. In this case, the expected number would be 500 eggs. This means that, on average, we would expect to find 500 double-yolk eggs out of the 5,000 eggs randomly selected. It is important to note that this is an expected value based on probability, and the actual number of double-yolk eggs found may vary in any given sample.

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Max invest $1000 in a savings account that earns simple 3% interest how long will he have to leave it there in order to make $150 in interest

Answers

Given information:

Max invest $1000 in a savings account that earns simple 3% interest.

Let's suppose the duration he needs to keep his money in the savings account is t years.

The interest rate is given as 3% in decimal form = 0.03

Max invests $1000 on the savings account that earns 3% simple interest.

This implies that the interest he will earn after t years is given by:

Interest (I) = Principal × Rate × Time

I = 1000 × 0.03 × t

I = 30t

From the problem, he wants to earn $150 in interest.

So, 30t = 150

Solving for t:

$$\begin{aligned}30t &= 150 \\t &= \frac{150}{30} \\t &= 5 \;years \end{aligned}$$

Max needs to leave his money in the savings account for 5 years to make $150 in interest.

Therefore, the answer is 5 years.'

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At 24 years of age, Megan is 5 feet, 6 inches tall. The national average for height in women is 5 feet, 4 inches, so Megan is taller than the average woman. The national average is a:

Answers

The national average for height in women is below Megan's height of 5 feet, 6 inches, indicating that Megan is taller than the average woman.

The given information states that Megan is 5 feet, 6 inches tall at the age of 24. It further states that the national average for height in women is 5 feet, 4 inches. By comparing Megan's height with the national average, we can determine that Megan is taller than the average woman.

Since Megan's height of 5 feet, 6 inches exceeds the national average of 5 feet, 4 inches, it is clear that she stands taller than the average woman in the country. This suggests that Megan's height falls above the mean height of women, indicating that she is relatively taller compared to the general female population.

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Find the perimeter of DEF, if DEF~CBF. The perimeter of CBF= 27, DF =6, and FC =8.

Answers

We can conclude that the perimeter of DEF is 20.25.

Given that DEF~CBF, DF = 6, and FC = 8.

We are supposed to find the perimeter of DEF.

To solve this question, we need to know that when two triangles are similar, the ratio of their corresponding sides are in proportion.

Using this information, we can say that the ratio of the perimeters of two similar triangles is equal to the ratio of their corresponding sides.

Therefore, we can use the following proportion to find the perimeter of DEF and CBF:

Perimeter of DEF/Perimeter of

CBF=DF/FC

= 6/8

= 3/4

Let P be the perimeter of DEF.

Using the above proportion, we can write:

Perimeter of DEF = (DF/FC) × Perimeter of CBF

= (3/4) × 27

= 20.25

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If the function y = xa − 31 is a linear function, what is the value of a? A. 1 B. 2 C. 3 D. 4.

Answers

None of the given options (1, 2, 3, or 4) is the correct value of a for the given function to be linear. The given function

y = xa − 31 is not a linear function because the power of the variable x is greater than 1. Thus its degree is greater than 1. Linear functions have a degree of 1. So, the correct option is none of the above.

For a function to be linear, it must have a degree of 1, i.e., the highest power of the variable is 1, and the graph of a linear function is a straight line. However, the given function y = xa − 31 has a degree of a because the variable x's power is greater than 1. Hence, the given function is not linear. Instead, the given function is a power function of y = an.

When graphed, a power function can have several shapes depending on the values of a and n. In general, if n is an even number and a > 0, the graph of the function has a shape similar to that of a quadratic function with its vertex at the origin. However, if n is an odd number and a > 0, the function graph increases or decreases without bounds depending on whether a is positive or negative.

The given function y = xa − 31 is not linear because its degree is greater than 1. Therefore, none of the given options

(1, 2, 3, or 4) is the correct value of a for the given function to be linear.

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Which equation, when graphed, has x-intercepts at (8, 0) and (−2, 0) and a y-intercept at (0, −48)? f(x) = −3(x − 8)(x 2) f(x) = −3(x 8)(x − 2) f(x) = 3(x − 8)(x 2) f(x) = 3(x 8)(x − 2).

Answers

The equation f(x) = 3(x - 8)(x + 2) satisfies the given conditions of having x-intercepts at (8, 0) and (-2, 0), and a y-intercept at (0, -48).

To further explain the equation f(x) = 3(x - 8)(x + 2), let's break it down step by step:

The equation is in factored form, where (x - 8) and (x + 2) represent the linear factors. The x-intercepts occur when f(x) = 0, which means the equation equals zero. By setting the equation equal to zero, we can find the values of x that make the equation true.

So, when we set f(x) = 0, we have: 3(x - 8)(x + 2) = 0

To satisfy this equation, either (x - 8) must equal zero or (x + 2) must equal zero, because multiplying anything by zero results in zero.

Setting (x - 8) = 0, we find x = 8, which gives us the x-intercept (8, 0).

Setting (x + 2) = 0, we find x = -2, which gives us the x-intercept (-2, 0).

Therefore, the equation f(x) = 3(x - 8)(x + 2) satisfies the condition of having x-intercepts at (8, 0) and (-2, 0). Additionally, the y-intercept occurs when x = 0. Substituting x = 0 into the equation, we have: f(0) = 3(0 - 8)(0 + 2) = 3(-8)(2) = -48

This means that when x is zero, the y-value of the equation is -48, giving us the y-intercept (0, -48). Hence, the equation f(x) = 3(x - 8)(x + 2) satisfies the given conditions of having x-intercepts at (8, 0) and (-2, 0), and a y-intercept at (0, -48).

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Assume that military aircraft use ejection seats designed for men weighing between 138.5 lb and 204 lb. If​ women's weights are normally distributed with a mean of 161.3 lb and a standard deviation of 42.7 ​lb, what percentage of women have weights that are within those​ limits? Are many women excluded with those​ specifications?

Answers

Approximately 54.46% of women have weights that are within the specified limits of 138.5 lb to 204 lb.

To calculate the percentage of women with weights within the given limits, we first need to convert the weight limits into z-scores using the mean and standard deviation of the distribution. The z-score for the lower limit (138.5 lb) is approximately -0.5334, and the z-score for the upper limit (204 lb) is approximately 1.0009.

Using a standard normal distribution table or calculator, we find that the area to the left of the z-score -0.5334 is approximately 0.2967, and the area to the left of the z-score 1.0009 is approximately 0.8413.

To find the percentage of women within the specified limits, we subtract the lower probability from the upper probability:

0.8413 - 0.2967 = 0.5446

Converting this probability to a percentage, we get approximately 54.46%.

Therefore, approximately 54.46% of women have weights that fall within the specified limits. Since this percentage is less than 100%, it indicates that some women would be excluded with those specifications.

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Choose Yes or No to indicate which of the equations can be used to describe the pattern in the table.a56789b01234b + a = 5Choose...b = a + 5Choose...b = a – 5Choose...a = b – 5Choose...

Answers

Given table, b is the output and a is the input. If we take a look at the table, we can see that b increases by 1 when a increases by 1. So, a linear pattern exists in this table.

The answer is Yes.

The other equations do not have a constant rate of change. For instance, the equation b = a - 5 decreases by 5 when a increases by 1, but in the table, b increases by 1 when a increases by 1. Similarly, the equations a = b - 5 and b = a + 1234 have no correlation to the table. Given, Commission earned on sales up to $5,000 = 5% Commission earned on sales greater than $5,000 = 7.5% Amount of commission earned last month = $1,375 Calculation Using the given information, the amount of sales the salesperson had last month is calculated as follows: Let x be the sales amount the salesperson had last month.

So, the commission earned on the first $5,000 of sales is:$5,000 × 5% = $250 Commission earned on sales greater than $5,000 is: $1,375 − $250 = $1,125 So, we can write that: $1,125 = 7.5% × (x − $5,000)

⇒ x − $5,000

= $15,000 ⇒

x = $20,000 Therefore, the salesperson had $20,000 in sales last month. Given table, b is the output and a is the input. If we take a look at the table, we can see that b increases by 1 when a increases by 1. So, a linear pattern exists in this table. That means the correct equation would have a constant rate of change.

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A continuación, se definen las siguientes funciones: f(x)=5; g(x)=x h(x)=3x^2 j(x)=2x+1 Encuentre la derivada de las siguientes operaciones con las funciones dadas anteriormente. G(x)+h(x)+j(x)= h(x)+j(x)-g(x)= j(x)⋅g(x)= h(x)/g(x) = j(h(x))=

Answers

The derivative of the operations with the functions are: g(x) + h(x) + j(x) = 6x + 2, h(x) + j(x) - g(x) = 6x + 1, j(x)⋅g(x) = 4x + 1, h(x)/g(x) = 3 and j(h(x)) = 36x³ + 6x.

To find the derivatives of the given operations with the functions f(x) = 5, g(x) = x, h(x) = 3x², and j(x) = 2x + 1, we will apply the rules of differentiation.

Gg(x) + h(x) + j(x):

The derivative of a sum of functions is equal to the sum of their derivatives. Therefore, we find:

d/dx[g(x) + h(x) + j(x)] = d/dx g(x) + d/dx h(x) + d/dx j(x)

d/dx[g(x) + h(x) + j(x)] = 0 + 6x + 2

d/dx[g(x) + h(x) + j(x)] = 6x + 2

So, the derivative of g(x) + h(x) + j(x) is 6x + 2.

h(x) + j(x) - g(x):

Similarly, the derivative of a difference of functions is equal to the difference of their derivatives. We have:

d/dx[h(x) + j(x) - g(x)] = d/dx h(x) + d/dx j(x) - d/dx g(x)

d/dx[h(x) + j(x) - g(x)] = 6x + 2 - 1

So, the derivative of h(x) + j(x) - g(x) is 6x + 1.

j(x) ⋅ g(x):

To differentiate the product of two functions, we use the product rule. Applying the rule, we get:

d/dx [j(x) ⋅ g(x)] = g(x) ⋅ d/dx j(x) + j(x) ⋅ d/dx g(x)

d/dx [j(x) ⋅ g(x)] = x ⋅ 2 + (2x + 1) ⋅ 1

Simplifying, we have:

d/dx [j(x) ⋅ g(x)] = 2x + 2x + 1

d/dx [j(x) ⋅ g(x)] = 4x + 1

Therefore, the derivative of j(x) ⋅ g(x) is 4x + 1.

h(x) / g(x):

To differentiate the division of two functions, we use the quotient rule. The rule states:

d/dx [h(x) / g(x)] = (g(x) ⋅ d/dx h(x) - h(x) ⋅ d/dx g(x))/g(x)²

Applying the rule, we find:

d/dx [h(x) / g(x)] = (x ⋅ 6x - 3x² ⋅ 1)/x²

Simplifying, we get:

d/dx [h(x) / g(x)] = (6x² - 3x²) / x²

d/dx [h(x) / g(x)] = 3

Therefore, the derivative of h(x) / g(x) is 3.

j(h(x)):

To find the derivative of a composite function, we use the chain rule. The chain rule states:

d/dx [f(g(x))] = f'(g(x)) ⋅ g'(x)

Applying the chain rule, we have:

d/dx [j(h(x))] = d/dx [j(u)] (where u = h(x))

d/dx [j(h(x))] = d/du [j(u)] ⋅ du/dx

d/dx [j(h(x))] = (2u + 1) ⋅ (d/dx [h(x)])

d/dx [j(h(x))] = (2(3x²) + 1) ⋅ (6x)

Simplifying, we get:

d/dx [j(h(x))] = (6x² + 1) ⋅ (6x)

d/dx [j(h(x))] = 36x³ + 6x

Therefore, the derivative of j(h(x)) is 36x³ + 6x.

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The complete question is:

Next, the following functions are defined: f(x) = 5; g(x) = x h(x) = 3x² j(x) = 2x+1 Find the derivative of the following operations with the functions given above.

g(x)+h(x)+j(x)=

h(x)+j(x)-g(x)=

j(x)⋅g(x)=

h(x)/g(x) =

j(h(x))=

A rectangular prism with a volume of 400 cubic centimeters has the dimensions x 1 centimeters, 2x centimeters, and x 6 centimeters. The equation 2 x cubed 14 x squared 12 x = 400 can be used to find x. What is the length of the longest side? Use a graphing calculator and a system of equations to find the answer.

Answers

By using a graphing calculator and a system of equations, we can determine the value of x and then calculate the lengths of the sides. Substituting the value of x into the dimensions, we can identify the longest side among the three.

Using a graphing calculator, enter the equation 2x^3 + 14x^2 + 12x - 400 = 0 and graph it. Find the x-values where the graph intersects the x-axis, which represent the solutions. Using the calculator's "zero" or "intersect" function, determine the numerical values of x. Substitute these values into the dimensions (x, 2x, and x/6) to find the lengths of the sides. Compare the lengths and identify the longest side. This process allows us to find the length of the longest side using a graphing calculator and a system of equations.

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A room is 15 feet tall. An architect wants to include a window that is 6 feet tall. The distance between the floor and the bottom of the window is b feet. The distance between the ceiling and the top of the window is a feet. This relationship can be described by the equation a=15−(b+6)
.

Which variable is independent based on the equation given? , 1 of 3.

If the architect wants b to be 3, complete the statements about what this means.

It means the architect wants , 2 of 3. This would work if a is , 3 of 3.
Listen to the complete question
Part B
Fill in the blanks to complete the sentence.
The customer wants the window to have 5 feet of space above it. Is the customer describing a or b?

What is the value of the other variable? ft

Answers

The independent variable in the equation a=15−(b+6) is b. If the architect wants b to be 3, it means that the distance between the floor and the bottom of the window is 3 feet, and for this to work, a must be 6 feet. The customer wants 5 feet of space above the window, which means that b must be 4 feet.

Part A:

The independent variable is the variable that can be freely chosen or varied. In the given equation a=15−(b+6), the independent variable is b because we can choose any value of b and then calculate the corresponding value of a using the equation.

Part B:

If the architect wants b to be 3, this means that the distance between the floor and the bottom of the window is 3 feet.

This would work if a is 6 feet, because:

a = 15 - (b + 6)

a = 15 - (3 + 6)

a = 6

Therefore, if b is 3, then a must be 6 for the relationship described by the equation to hold.

Part C:

The customer wants the window to have 5 feet of space above it. This means that the distance between the top of the window and the ceiling is 5 feet. According to the equation, we know that:

a = 15 - (b + 6)

So we can substitute the value of a as 5 and solve for b:

5 = 15 - (b + 6)

5 = 9 - b

b = 4

Therefore, the value of b is 4 feet when the customer wants the window to have 5 feet of space above it.

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Complete the statement to describe the expression (a+b+c)(d+e+f)


the expression consists ____ of terms and each term contains _____ factors


(fill in the blank) (Khan Academy) (6th Grade)

Answers

The expression (a+b+c)(d+e+f) consists of six terms, and each term contains three factors.

Binomial expression

To understand the number of terms and factors in this expression, we need to expand it using the distributive property. The distributive property states that each term in the first expression is multiplied by each term in the second expression.

(a+b+c)(d+e+f): ad + ae + a f + bd + be + bf + cd + ce + cf

From the above, we can see that there are six terms, which are ad, ae, a f, bd, be, and bf.

Each term contains three factors: a factor from the first parentheses (a, b, or c), a factor from the second parentheses (d, e, or f), and a multiplication sign connecting them.

Therefore, the expression (a+b+c)(d+e+f) consists of six terms and each term contains three factors.

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Sabrina can type 2 ⅖ pages per hour. How many pages can she type in 8 hours and 20 minutes?

Answers

a) Sabrina can type 2 ⅖ pages per hour. To find out how many pages she can type in 8 hours and 20 minutes, we need to convert the time to hours.

b) To convert 8 hours and 20 minutes to hours, we divide the minutes by 60 and add the result to the number of hours. Then, we multiply the total number of hours by Sabrina's typing rate of 2 ⅖ pages per hour to find the total number of pages she can type.

a) Sabrina's typing rate is given as 2 ⅖ pages per hour. This means she can type 2 and two-fifths of a page in one hour.

b) To calculate the total number of pages Sabrina can type in 8 hours and 20 minutes, we convert the time to hours. Since there are 60 minutes in an hour, we divide the minutes by 60 to convert them to hours. In this case, 20 minutes divided by 60 equals 1/3 hours. Adding this to the 8 hours gives us a total of 8 and 1/3 hours.

Next, we multiply the total number of hours (8 1/3) by Sabrina's typing rate (2 ⅖ pages per hour). To multiply fractions, we multiply the numerators and denominators separately. The result is (25/3) * (12/5) = 300/15 = 20 pages.

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Solve for the missing parts of the triangle. Angle A and AC show all work

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triangle ABC with angle A and AC missing, we need to solve for the missing parts of the triangle.

Step-by-step explanation:We are given triangle ABC, with angle A and side AC missing. To solve for the missing parts of the triangle, we can use the properties of triangles and trigonometry.Let's start by finding angle A. We know that the sum of angles in a triangle is 180°.

Therefore, we can write:∠A + ∠B + ∠C = 180°

Substituting the values we know, we get:∠A + 60° + 45° = 180°

Simplifying the equation, we get:∠A = 180° - 60° - 45°∠A = 75°

Therefore, angle A measures 75°.Now, we can use trigonometry to find the length of side AC. Since we know the length of sides AB and BC, we can use the Law of Cosines to find the length of AC.

The Law of Cosines states that: c² = a² + b² - 2ab cos(C)

where a, b, and c are the lengths of sides of a triangle, and C is the angle opposite to side c.

Substituting the values we know, we get:AC² = AB² + BC² - 2(AB)(BC) cos(A

)AC² = 6² + 8² - 2(6)(8) cos(75°)

AC² = 36 + 64 - 96 cos(75°)

AC² = 100 - 96 cos(75°)

Using a calculator, we can find that cos(75°) = 0.2588. Substituting this value, we get:AC² = 100 - 96(0.2588)AC² = 100 - 24.8448AC² = 75.1552

Taking the square root of both sides, we get:AC ≈ 8.67

Therefore, side AC has a length of approximately 8.67 units.

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3 integers, all less than 20

range is 7

mean is 12

Answers

The three integers are 10, 12 and 14.

To find three integers that satisfy the given conditions, we can use the properties of range and mean.

Let's assume the three integers are x, y, and z.

Range is the difference between the largest and smallest values. In this case, the range is given as 7. Therefore, we can set up the equation:

max(x, y, z) - min(x, y, z) = 7.

Mean is the average of the values. The mean is given as 12. Therefore, we can set up the equation:

(x + y + z) / 3 = 12.

We also know that all three integers are less than 20.

Let's solve these equations simultaneously:

From the equation for the mean, we can rewrite it as:

x + y + z = 36.

Now, let's list all the possible combinations of three integers that satisfy the given conditions:

x = 9, y = 12, z = 15

x = 10, y = 12, z = 14

x = 11, y = 12, z = 13

Out of these combinations, only the second one satisfies the condition that all three integers are less than 20.

Therefore, the three integers that meet the given conditions are:

x = 10, y = 12, z = 14.

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URGENT a(n)= a(1)r"-1


A bacteria cell reproduces by splitting in half. Write an explicit formula that can be used


to find the number of bacteria cells after each generation. Then use the formula to find


how many cells there are after 10 generations. Show your work.

Answers

The explicit formula is [tex](n) = 1 * 1^{(n-1)} = 1[/tex] for all values of n and the number of cells after 10 generations will be 1.

The formula for finding the number of bacteria cells after each generation is given by

[tex]a(n) = a(1)r^{(n-1)}[/tex] where a(1) is the initial number of bacteria cells, r is the growth factor, and n is the number of generations.

The exponent n-1 indicates the number of generations.

To find the number of bacteria cells after 10 generations, we will substitute the given values in the formula.

We are given that a(n)= a(1)r"-1 where r is the growth factor and n is the number of generations.

We know that the initial number of bacteria cells is 1.

Thus, a(1) = 1.

Substituting these values in the formula, we get [tex]a(n) = 1 x r^{(n-1)}[/tex]. For 10 generations, n = 10.

Thus, the formula becomes [tex]a(10) = 1 x r^{(10-1)} = r^9[/tex].

Now, we need to find the value of r.

We are given that [tex]a(n) = a(1)r^{(-1)}[/tex], which means that a(n)/a(1) = 1/r.

Substituting [tex]a(n) = r^9[/tex] and a(1) = 1, we get: [tex]r^9/1 = 1/r[/tex]

Therefore, [tex]r^{10} = 1r = 1^{(1/10)} = 1[/tex]

Thus, the explicit formula becomes [tex]a(n) = 1 * r^{(n-1)}[/tex] = 1 for all values of n.

Therefore, the number of cells after 10 generations will be 1.

Summary: A formula that can be used to find the number of bacteria cells after each generation is [tex]a(n) = 1 * r^{(n-1)}[/tex] where a(1) is the initial number of bacteria cells, r is the growth factor, and n is the number of generations. To find the number of bacteria cells after 10 generations, we can substitute the given values in the formula. The explicit formula for the given problem is [tex]a(n) = 1 * r^{(n-1)}[/tex] where r = 1. Thus, the number of cells after 10 generations will be 1.

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A runner finishes a race in 2;27;15 explain the meaning of the digis

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The digits 2, 27, and 15 in the time 2;27;15 represent different units of measurement in the race.

In the context of a running race, the first digit 2 represents the number of hours it took the runner to finish the race. This means that the runner completed the race in 2 hours.

The second digit 27 represents the number of minutes it took the runner to finish the race after the hours. In this case, the runner completed the race in 27 minutes.

The third digit 15 represents the number of seconds it took the runner to finish the race after the minutes. Therefore, the runner completed the race in 15 seconds.

By breaking down the total time into hours, minutes, and seconds, the digits provide a detailed representation of the runner's finishing time, allowing for a more precise measurement and comparison of race performances.

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The area of Asia is approximately 4.46 × 107 square kilometers. Its population is approximately 3.70 × 109 people. What is the approximate population density (people per square kilometer) of Asia? Write your answer in standard form. If necessary, round your answer to the nearest hundredth. Please Show your work!!

Answers

The approximate population density of Asia is 83.03 people per square kilometer.

Population density is the measure of the number of people per unit area, usually per square kilometer. It is calculated by dividing the population of a region by the area of that region. It is important because it gives us an idea of how crowded or sparse a region is.

To find the population density of Asia, we need to divide the population by the area of the continent. Given,The area of Asia = 4.46 × 107 km²The population of Asia = 3.70 × 109 peopleWe can use the formula,Population density = Population/Area= (3.70 × 109 )/(4.46 × 107)≈ 83.03 people per square kilometer

Therefore, the approximate population density of Asia is 83.03 people per square kilometer.

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When solving an equation, Emily’s first step is shown below. which property justifies Emilys first step? answer if you sure about the answer <3

Answers

The property that justifies Emily's first step include the following: C. division property of equality.

What is the Commutative Property of Addition?

In Mathematics and Geometry, the Commutative Property of Addition states that when two (2) or three (3) numerical values (numbers) are added together, the output (end result) would always remain the same, irrespective of the way in which the numerical values are arranged.

Generally speaking, the Commutative Property of Addition allows the addends to be re-ordered without causing a change in the result, output, or outcome.

By applying the division property of equality to Emily's equation, we have the following;

2(-3x² + 2) + 4 = 18x² - 20

2(-3x² + 2) + 2(2) = 2(9x² - 10)

(-3x² + 2) + 2 = (9x² - 10) ⇒ (division property of equality)

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Suppose we spin the wheel, observe the color that the pointer stops on, and repeat the process until the pointer stops on blue. What is the probability that we will spin the wheel exactly three times?.

Answers

The overall probability can be calculated as P(exactly three spins) = (1 - P(blue)) × (1 - P(blue)) × P(blue).

To determine the probability of spinning the wheel exactly three times until the pointer stops on blue, we need to understand the given conditions and calculate the likelihood of this specific outcome.

Assuming the wheel has multiple colors and the pointer stops on one color each time, we'll focus on the probability of stopping on blue after spinning the wheel three times.

Let's consider the possible outcomes for each spin. Assuming each spin is independent and the probability of stopping on blue is constant, the probability of stopping on blue for a single spin is denoted as P(blue).

To calculate the probability of spinning the wheel exactly three times until stopping on blue, we multiply the probabilities of not stopping on blue for the first two spins and then stopping on blue on the third spin. Since the spins are independent, we multiply the probabilities together.

The probability of not stopping on blue for the first two spins is given by (1 - P(blue)) × (1 - P(blue)). The probability of stopping on blue on the third spin is simply P(blue).

Thus, the overall probability can be calculated as:

P(exactly three spins) = (1 - P(blue)) × (1 - P(blue)) × P(blue).

Without knowing the specific alue of P(blue), we cannot provide an exact numerical probability. However, if the probability of stopping on blue for a single spin is known, it can be substituted into the formula above to calculate the probability of spinning the wheel exactly three times until stopping on blue.

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What is x, the angle at which the diagonal beam meets the 10-foot beam at the top of the frame? 16. 7° 17. 5° 72. 5° 73. 3°.

Answers

The angle x, at which the diagonal beam meets the 10-foot beam at the top of the frame is 16.7°.

Given a right-angled triangle which is given below.

The lengths of the legs are given as 10 feet and 3 feet.

It is required to find the angle x.

The trigonometric function which relates the given angles and sides of the triangle is:

tan x = 3/10

So,

tan x = 0.3

So, x = tan⁻¹(0.3)

         = 0.291 radians

         = 16.699°

         ≈ 16.7°

Hence the correct option for the angle x is 16.7°.

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Rectangle TUVW is on a coordinate plane at T (a, b), U (a 2, b 2), V (a 5, b â’ 1), and W (a 3, b â’ 3). What is the slope of the line that is parallel to the line that contains side WV? â’2 2 â’1 1.

Answers

According to the question the slope of the line parallel to the line containing side WV is -1.

To find the slope of the line parallel to the line containing side WV, we need to determine the slope of side WV.

Sure! Here are the coordinates of points [tex]T, U, V, and[/tex] [tex]W[/tex] properly aligned:

[tex]\[T &: (a, b) \\U &: (a + 2, b + 2) \\V &: (a + 5, b - 1) \\W &: (a + 3, b - 3) \\\][/tex]

To find the slope of the line parallel to the line containing side WV, we can calculate the slope between points W and V using the slope formula:

[tex]\[ \text{Slope} = \frac{{\text{change in } y}}{{\text{change in } x}} \][/tex]

Substituting the coordinates of points W and V into the formula:

[tex]\[ \text{Slope} = \frac{{(b - 1) - (b - 3)}}{{(a + 5) - (a + 3)}} \][/tex]

Simplifying the expression:

[tex]\[ \text{Slope} = \frac{{-2}}{{2}} \][/tex]

Therefore, the slope of the line parallel to the line containing side WV is -1.

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In the United States, mothers who live in poverty generally have babies with lower birthweight than those who do not live in poverty. The mean birthweight for babies born in the U.S. to mothers living in poverty is approximately 2800 grams. The CDC carries out a study to test the effectiveness of a new prenatal care program increasing the weight of babies born into poverty. For the study, 30 mothers, all of whom live in poverty, participate in the program and birthweight data is recorded. Which hypothesis test would be most appropriate for this study?



_____ One sample z-test, why?_____ One sample t-test, why?_____ Paired-samples t-test, why?

Answers

One sample t-test, as it compares the mean birthweight of the mothers in the program to a known population mean.

We have,

The most appropriate hypothesis test for this study would be a

one-sample t-test.

A one-sample t-test is suitable when we want to compare the mean of a single sample to a known population mean or hypothesized value.

In this case, the study aims to test the effectiveness of a new prenatal care program in increasing the birth weight of babies born into poverty.

The researchers would compare the mean birthweight of the 30 mothers who participated in the program to the known population mean birthweight for babies born to mothers living in poverty, which is approximately 2800 grams.

Since the population standard deviation is not given, the t-test is preferred over the z-test, which requires knowledge of the population standard deviation.

The t-test allows for estimating the population standard deviation based on the sample data.

Additionally, the study involves comparing a single sample (30 mothers) to a known population mean, rather than comparing two related samples, making the paired-sample t-test inappropriate for this scenario.

Thus,

The most appropriate hypothesis test for this study would be a

one-sample t-test.

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