Given,Number of moles of Aluminum fluoride = 12.52 mol AlF3The chemical equation of the reaction between aluminum oxide and fluorine is given by;
2Al2O3 + 6F2 → 4AlF3 + 3O2From the balanced equation above; 2 moles of Al2O3 will produce 4 moles of AlF3Hence, 1 mole of Al2O3 will produce 4/2 = 2 moles of AlF3Number of moles of Aluminum oxide needed to react with fluorine to produce 12.52 moles of aluminum fluoride = 12.52/2 = 6.26 moles Therefore, more than 250 moles of aluminum oxide are needed to react with fluorine to produce 12.52 moles of aluminum fluoride.
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Luci cuts a board that is 3/5 yard long into pieces that are 3/10 yard long how many pieces does she cut
Luci cuts a board that is 3/5 yard long into pieces that are 3/10 yard long.
Let's determine how many pieces she has cut.
Each piece will be 3/10 yard long;
thus, we can divide the total length of the board by the length of each piece to determine how many pieces we have:
3/5 ÷ 3/10 = 3/5 × 10/3 (multiplying by the reciprocal to divide)
= 2
Therefore, Luci has cut the board into 2 pieces.
Luci cuts a board that is 3/5 yard long into pieces that are 3/10 yard long. We can determine how many pieces she cut by dividing the length of the board by the length of each piece.
To divide fractions, we multiply the first fraction by the reciprocal of the second fraction.
Thus, if we have 3/5 ÷ 3/10, we can multiply 3/5 by 10/3, which equals 2.
Therefore, Luci cut the board into 2 pieces that are 3/10 yard long each.
It's important to understand fractions and how to divide them, especially when working with measurements like yards or feet. In this case, we need to make sure the fractions have the same denominator before dividing. Once we have a common denominator, we can divide the fractions by dividing the numerators and denominators separately. We can also simplify the fraction if possible, which may make it easier to work with. Thus Luci cut the board into 2 pieces that are 3/10 yard long each.
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In ΔABC, c = 5. 4, a = 3. 3, and measure of angle A = 20 degrees. What are the possible approximate lengths of b? Use the law of sines to find the answer. 2. 0 units and 4. 6 units 2. 1 units and 8. 7 units 2. 3 units and 7. 8 units 2. 6 units and 6. 6 units.
To find the approximate length of b in ΔABC, we will use the law of sines. Using the law of sines, we can write: b / sin B = c / sin C, where B is the angle opposite b and C is the angle opposite c.
We know the value of c, a, and A. Thus, we can find the value of sin C using the sine rule,i.e. c / sin C = 2R, where R is the radius of the circumcircle of ΔABC. The value of sin C can be found as sin C = c / 2R. Now, using the value of sin C, we can write:
b / sin B = c / sin C
b / sin B = c / (c / 2R)
b / sin B = 2R
Therefore, sin B = b / (2R)Now, we can find the value of R by using the formula
R = a / (2 sin A), where A is the angle opposite a. Putting the values in this formula, we get:
R = a / (2 sin A) = (3.3) / (2 sin 20°) = 5.004 units
Now, using the value of R, we can find the value of sin B, i.e. sin B = b / (2R)Using the formula, we get:
sin B = b / (2R)
sin B = b / (2 × 5.004)
sin B = b / 10.008
Therefore, we get: b = 10.008 sin B
Now, we can find the range of values of b by finding the range of values of sin B. The value of sin B can range from 0 to 1. Thus, the value of b can range from 0 to 10.008.
Therefore, the possible approximate lengths of b are between 0 and 10.008 units. Hence, the correct answer 2. 6 units and 6. 6 units.
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Start at 4 create a pattern that multiplies each number by 5 stop when you have 5 numbers
The pattern that multiplies each number by 5 starting at 4 and stopping after 5 numbers is:4, 20, 100, 500, 2500.
How to get the solution?
Given that we start at 4, and we are to multiply each number by 5, we have;
4 × 5 = 20
That gives us the second number.
To get the third number, we multiply 20 by 5 again.
20 × 5 = 100
To get the fourth number, we again multiply the third number by 5.
100 × 5 = 500
Finally, we multiply the fourth number by 5 to get the fifth number.500 × 5 = 2500.
Therefore, the pattern that multiplies each number by 5 starting at 4 and stopping after 5 numbers is:4, 20, 100, 500, 2500.
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A rectangular parking lot has a perimeter of 112 and a area of 768 square meter what are the dimensions of the parking lot
Therefore, the dimensions of the parking lot can be 32 m × 24 m or 24 m × 32 m.
Let's represent the dimensions of the rectangular parking lot as 'l' and 'w.' Therefore, the perimeter of the parking lot can be expressed as:Perimeter, P = 2l + 2w
We are given the perimeter of the parking lot as 112.
Therefore,112 = 2l + 2w
Now, let's solve for l in terms of w
112 - 2w = 2l
56 - w = l
l = 56 - w
Now, let's represent the area of the parking lot as 'A'.A = lw 768 = l w 768 = (56 - w)w768 = 56w - w²0 = w² - 56w + 768 To solve the above quadratic equation, we will use the quadratic formula:
x = (-b ± √(b² - 4ac))/2a
On substituting the given values in the above formula, we get:
w = 24 or w = 32If w = 24, then l = 56 - 24 = 32If w = 32, then l = 56 - 32 = 24
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A sugar cone for ice cream is shaped like a cone. If a sugar cone has a slant height of 4 inches and a diameter of 2 inches, what is the lateral surface area of the cone? Use 3. 14 for pi. [Hint: Exclude the base. ]
12. 6 square inches
37. 7 square inches
18. 8 square inches
15. 7 square inches
The required lateral surface area of the sugar cone is approximately 12.60 square inches. Option A is correct.
To find the lateral surface area of the sugar cone, we need to calculate the curved surface area of the cone excluding the base.
Given:
Slant height (l) = 4 inches
Diameter (d) = 2 inches
First, let's find the radius (r) of the cone by dividing the diameter by 2:
r = d/2 = 2/2 = 1 inch
The lateral surface area (A) of the cone can be calculated using the formula:
A = πrl
Substituting the given values:
A = 3.14 * 1 inch * 4 inches
A = 12.56 square inches
Therefore, the lateral surface area of the sugar cone is approximately 12.56 square inches.
Among the given answer choices, the closest option is:
12.6 square inches.
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Mr. Whittaker’s science class uses tide gauges to measure annual variations in water levels at different parts of a river, and then compares those variations to the average annual trend. Matea recorded that the water level in one part of the river fell 1. 05 millimeters per year for 2. 48 years. This data will be compared to the average annual trend, which shows the water level rising 1. 8 mm/year. Which number represents the rate at which the water level fell? Which number should the rate be multiplied by to find the total variation in water level?.
The water level in one part of the river fell at a rate of 1.05 millimeters per year for a duration of 2.48 years. The average annual trend, however, indicates that the water level rises at a rate of 1.8 mm/year.
In Matea's recorded data, the rate at which the water level fell is given as 1.05 millimeters per year. This represents the change in water level over a period of one year. To calculate the total variation in water level, we need to multiply the rate of change by the duration of the observation. In this case, the observation lasted for 2.48 years.
To find the total variation, we multiply the rate of change (1.05 mm/year) by the duration (2.48 years):
Total variation = Rate of change * Duration
= 1.05 mm/year * 2.48 years
= 2.604 mm
Therefore, the water level in that particular part of the river fell by 2.604 millimeters over the course of 2.48 years.
It is important to note that the average annual trend, which indicates the water level rising at a rate of 1.8 mm/year, is not relevant to determining the rate at which the water level fell or calculating the total variation. The average annual trend is simply a reference point for comparison to assess whether the observed variation is consistent with the overall trend.
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Answer:
yo
Step-by-step explanation:
1. 1.05mm/years
2. 2.48 years
A right circular cylinder has a height of 2214 ft and a diameter 225 times its height. What is the volume of the cylinder? Enter your answer as a decimal in the box. Use 3. 14 for pi and round only your final answer to the nearest hundredth.
Answer: To find the volume of the right circular cylinder, we can use the formula:
Volume = π * r^2 * h
Given that the height of the cylinder is 2214 ft and the diameter is 225 times its height, we can calculate the radius first.
The diameter of the cylinder is 225 times its height:
Diameter = 225 * Height = 225 * 2214 ft = 498150 ft
The radius is half of the diameter:
Radius = Diameter / 2 = 498150 ft / 2 = 249075 ft
Now we can substitute the values into the volume formula:
Volume = 3.14 * (249075 ft)^2 * 2214 ft
Calculating the volume:
Volume ≈ 3.14 * (62102225625 ft^2) * 2214 ft
Volume ≈ 4.88601e14 ft^3
Rounding to the nearest hundredth:
Volume ≈ 4.89e14 ft^3
Therefore, the volume of the cylinder is approximately 4.89 * 10^14 cubic feet.
In ΔXYZ, XY = 6.32, YZ = 5.83, and XZ = 11.05.m∠Y =
The measure of angle Y is approximately equal to 117.11 degrees. Therefore, m∠Y = 117.11°.
Given that a triangle ΔXYZ has the sides XY = 6.32, YZ = 5.83, and XZ = 11.05, we need to find the measure of angle Y.
Let's use the cosine law which states that c² = a² + b² - 2abcosC
where a, b, and c are the sides and C is the angle between the sides a and b.
Applying the cosine law to triangle ΔXYZ and substituting the given values, we have:
11.05² = 6.32² + 5.83² - 2(6.32)(5.83)cos Y
cos Y = (6.32² + 5.83² - 11.05²) / (2(6.32)(5.83))
cos Y ≈ -0.4151
Taking the inverse cosine on both sides, we get:
m∠Y = cos⁻¹(-0.4151)
m∠Y = 117.11°
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The sum of the interior angles of the polygon is 540 degrees. Create an equation to solve for x:
Part 2: Find the measure of x, then find the measures of each unknown angles
To find the measure of x and the unknown angles in a polygon, we can create an equation based on the sum of the interior angles, which is 540 degrees.final answer is 108°.
Let's assume the polygon has n sides. Each interior angle of a polygon can be calculated using the formula (n - 2) * 180° / n. In this case, we are given that the sum of the interior angles is 540 degrees.
So, we can set up the equation:
(n - 2) * 180° / n * n = 540°
Simplifying the equation:
(n - 2) * 180° = 540°
(n - 2) = 540° / 180°
(n - 2) = 3
Solving for n:
n = 3 + 2
n = 5
Now that we know the polygon has 5 sides, we can find the measure of x by substituting it back into the formula:
x = (5 - 2) * 180° / 5
x = 3 * 180° / 5
x = 540° / 5
x = 108°
In conclusion, the measure of x is 108 degrees, and each of the unknown angles in the polygon would also be 108 degrees since all angles in a regular polygon are equal.
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Tim’s gross pay is $1568. The amount of Social security deducted is 6. 2% of gross pay. How much of his gross pay will be deducted for the Social Security tax? $972. 16 $97. 22 $25. 29 $6. 20.
It's important to note that when working with percentages, it's crucial to pay attention to the decimal representation of the percentage and apply it correctly to the given value.
To calculate the amount of Tim's gross pay that will be deducted for the Social Security tax, we need to multiply his gross pay by the Social Security tax rate.
The Social Security tax rate is given as 6.2%, which can be written as 0.062 in decimal form.
To find the amount deducted, we multiply the gross pay by the tax rate:
$1568 * 0.062 = $97.216
Now, let's compare this result with the given options:
A. $972.16 - This is not the correct amount. It seems to be a different calculation.
B. $97.22 - This is the correct amount. It matches the result we obtained.
C. $25.29 - This value is significantly lower than the correct amount and does not match our calculation.
D. $6.20 - This value is significantly lower than the correct amount and does not match our calculation.
Based on the comparison, the correct amount of Tim's gross pay that will be deducted for the Social Security tax is $97.22.
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Samantha conducts an experiment. She makes many observations and measurements and records each very carefully. At the conclusion of the experiment she discovers that the data she collected do not support her hypotheses. What should Samantha do
In this situation, Samantha should carefully evaluate her experiment, hypotheses, and data to understand the reasons why her data did not support her hypotheses.
When Samantha's data do not support her hypotheses, it is important for her to approach the situation with a scientific mindset. She should first examine her experimental design and methodology to ensure that they were sound and reliable. Samantha should consider if any procedural errors, biases, or confounding factors may have influenced her results.
Next, Samantha should critically analyze her data to identify any patterns, trends, or inconsistencies. She should explore alternative explanations or factors that might account for the observed outcomes. It is possible that Samantha's initial hypotheses were based on incomplete information or flawed assumptions. By considering different perspectives and potential variables, Samantha can gain a deeper understanding of the phenomena she studied.
Based on her evaluation, Samantha may need to revise her hypotheses, adjust her experimental approach, or even consider pursuing a different research direction. Negative results can still provide valuable insights and contribute to scientific knowledge by ruling out certain explanations or suggesting new avenues for investigation.
Ultimately, Samantha should embrace the opportunity to learn from her experiment and use the experience to refine her scientific approach. The process of questioning, analyzing, and adapting is crucial in advancing scientific understanding.
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Look for Relationships Chris is buying material
for an art project. Two stores have the material she
needs. Compare prices to find which material is the
better value. Explain.
To compare the prices and determine which material offers better value, Chris needs to consider several factors beyond just the price. Here are some key points to consider:
Quality: Compare the quality of the materials offered by both stores. Sometimes, a higher-priced material may offer better quality, durability, or performance, making it a better value in the long run.
Quantity: Check the quantity or size of the materials available for the price. If one store offers a larger quantity or size for a slightly higher price, it might be a better value as it provides more material for the money.
Features: Look for any additional features or benefits offered by the materials. For example, if one material includes extra accessories or tools at a slightly higher price, it may be a better value due to the added value and convenience.
Customer reviews: Research online or ask for recommendations from others who have used the materials from both stores. Their experiences and feedback can provide insights into the overall value and performance of the materials.
By considering these factors, Chris can make an informed decision and choose the material that offers the best overall value for her art project.
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Quadrilateral ABCD is a rhombus. Given that m<EDA = 37º, what are the measures of m <AED |
m<DAE, and m<BCE ? Show all calculations and work
In the given rhombus ABCD, where angle EDA is 37º, we can determine the measures of angle AED, angle DAE, and angle BCE. Angle AED is equal to 180º minus twice angle EDA, which gives us 106º. Angle DAE is equal to angle EDA, so it is 37º. Angle BCE is equal to angle AED divided by 2, resulting in 53º.
A rhombus is a parallelogram with all four sides equal in length. Since ABCD is a rhombus, all four angles are equal, denoted by m<ABC = m<BCD = m<CDA = m<DAB.
We are given that angle EDA is 37º. In a rhombus, opposite angles are congruent, so we have m<CDA = 37º.
To find the measure of angle AED, we use the fact that the sum of angles around a point is 360º. Since angle AED is an exterior angle to triangle CDA, we can write: m<AED + m<CDA + m<DAE = 360º. Substituting the given values, we have: m<AED + 37º + m<DAE = 360º. Rearranging the equation, we find: m<AED + m<DAE = 360º - 37º = 323º.
Since ABCD is a rhombus, opposite angles are congruent, so we have m<DAB = m<CDA = 37º. Therefore, m<DAE = m<DAB = 37º.
Substituting the value of m<DAE in the equation m<AED + m<DAE = 323º, we find: m<AED + 37º = 323º. Solving for m<AED, we get: m<AED = 323º - 37º = 286º.
Finally, to find the measure of angle BCE, we know that opposite angles in a rhombus are congruent, so m<BCD = m<DAB = 37º. Since BCE is an exterior angle to triangle BCD, we can write: m<BCE + m<BCD + m<CBE = 360º. Substituting the given values, we have: m<BCE + 37º + m<CBE = 360º. Rearranging the equation, we find: m<BCE + m<CBE = 360º - 37º = 323º.
Since opposite angles in a rhombus are congruent, m<BCE = m<DAB = 37º. Substituting this value in the equation m<BCE + m<CBE = 323º, we get: 37º + m<CBE = 323º. Solving for m<CBE, we find: m<CBE = 323º - 37º = 286º.
Therefore, the measures of the angles in the given rhombus ABCD are: m<AED = 286º, m<DAE = 37º, and m<BCE = 53º.
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Rich is attending a 4-year college. As a freshman, he was approved for a 10-year, federal unsubsidized student loan in the amount of $7,300 at 4. 29%. He knows he has the option of beginning repayment of the loan in 4. 5 years. He also knows that during the nonpayment time, interest will accrue at 4. 29%.
a. How much interest will Rich accrue during the 4. 5 year nonpayment period?
b. What will be the new principal amount when Rich begins making payments?
a. Rich will accrue $1,181.18 in interest during the 4.5-year nonpayment period.
b. The new principal amount when Rich begins making payments will be approximately $8,481.18.
a. To calculate the interest accrued during the 4.5-year nonpayment period, we can use the formula:
Interest = Principal x Interest Rate x Time
The principal amount is $7,300, and the interest rate is 4.29% expressed as a decimal, which is 0.0429. The time is 4.5 years.
Interest = $7,300 x 0.0429 x 4.5
Interest = $1,181.18
Therefore, Rich will accrue approximately $1,181.18 in interest during the 4.5-year nonpayment period.
b. To determine the new principal amount when Rich begins making payments, we need to add the accrued interest to the original principal.
New Principal = Principal + Accrued Interest
New Principal = $7,300 + $1,181.18
New Principal = $8,481.18
Therefore, when Rich begins making payments, the new principal amount will be approximately $8,481.18.
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There are 254 counties in Texas. Zane rounds the number to nearest ten. What is the difference between actual number of counties and Zane rounded number of counties and zane's rounded number? solve this problem using an equation and an unknown.
The difference between the actual number of counties in Texas and Zane's rounded number of counties can be found by subtracting Zane's rounded number from the actual number. Let's represent the actual number of counties as "x" and Zane's rounded number as "y". The equation representing the difference is x - y.
Let's assume that the actual number of counties in Texas is "x". Zane rounds the number to the nearest ten, so his rounded number of counties can be represented as "y". The difference between the actual number and Zane's rounded number can be calculated by subtracting Zane's rounded number from the actual number, which gives us the equation x - y. Substituting the given values, where x = 254 (actual number of counties) and y is the rounded number, we can find the difference.
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$16000 is invested for 5 years with an APR of3 % and quarterly compounding
The accumulated value in 5 years of the investment compounded quarterly is approximately: $18578.946
How to find the compound interest?Compound interest differs from simple interest in that the interest received in one period will itself accrue in the next period. As a result, the amount in the account increases exponentially.
The future value of a compounding account depends on the number of compounding periods per year. Another factor is the annual interest rate. The higher the APR, the greater the cumulative value over time.
The formula for compound interest is:
FV = P(1 + (r/m))^(mt)
where:
FV is the future value of the investment.
P is the principal or initial amount invested.
r is the annual interest rate.
m is the number of compounding per year.
t is the time in years,
P = $16000
t = 5
m = 4
r = 3% = 0.03
Thus:
FV = 16000(1 + (0.03/4))^(4 * 5)
FV = $18578.946
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Complete Question is:
$16000 is invested for 5 years with an APR of3 % and quarterly compounding.
Write a numerical expression that would compute the value of the investment after 5 years.
You can get some great new space for $126,000 per year. You will be leasing 3,900 square feet. What will your rent be per square foot per year?
Given that a space is leased for $126,000 per year and 3,900 square feet leased area.
What will be the rent per square foot per year?
We can obtain the rent per square foot per year by using the following formula;`
Rent per square foot per year = Total rent per year / Total area leased`
Using the formula above, the rent per square foot per year can be calculated as follows;
`Rent per square foot per year = 126,000 / 3,900 = $32.31
`Therefore, the rent per square foot per year is $32.31.
let's do it in more detail:
To calculate the rent per square foot per year, you can divide the total annual rent by the total square footage.
Rent per square foot per year = Total annual rent / Total square footage
Given:
Total annual rent: $126,000
Total square footage: 3,900 square feet
Rent per square foot per year = $126,000 / 3,900 square feet
Using a calculator, we can compute:
Rent per square foot per year ≈ $32.31
Therefore, the rent per square foot per year would be approximately $32.31.
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What is the place value and value of the digit 5 in 48.56
The digit 5 in the number 48.56 holds the place value of hundredths and has a value of 0.05.
In the decimal number system, each digit has a specific place value based on its position in the number. The digit 5 in the number 48.56 is located in the hundredths place. This means that it represents a fraction of one hundredth or 0.01.
The digit 5 contributes to the overall value of the number by adding 0.05 to it. The place value system allows us to understand the positional significance of digits in a number, enabling accurate representation and computation of values.
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An airplane cruises 1 kilometer in112of a minute. What is its cruising speed?Simplify your answer and write it as a proper fraction, mixed number, or whole number
The cruising speed of the airplane can be determined by dividing the distance it traveled by the time it took. In this case, the airplane cruised 1 kilometer in 1/12 of a minute. Therefore, its cruising speed is 12 kilometers per minute.
To calculate the cruising speed of the airplane, we divide the distance traveled (1 kilometer) by the time it took (1/12 of a minute). Dividing these values yields a cruising speed of 12 kilometers per minute.
It's important to note that the speed of an object is defined as the distance traveled per unit of time. In this case, the distance traveled by the airplane is given as 1 kilometer, and the time taken is 1/12 of a minute. Dividing these values provides us with the cruising speed of the airplane.
The cruising speed of 12 kilometers per minute represents the rate at which the airplane covers distance during its cruise phase. It is essential to simplify the answer and express it as a whole number or fraction to provide a clear and concise representation of the cruising speed.
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A survey asked people of different ages whether they get their news by reading the paper. What is the probability that a person surveyed gets the news by reading the paper, given that he or she is under 40? If necessary. round your answer to the nearest percent. HELP HELP ME HELP
the example of a permutation is: A) The number of ways 3 people can win 3 different prizes.
A) The number of ways 3 people can win 3 different prizes.
This scenario involves the arrangement of 3 people winning 3 different prizes. Since the order in which the people win the prizes matters, this is an example of a permutation. For instance, if we have three people named A, B, and C, the possible permutations of them winning the prizes could be A winning the first prize, B winning the second prize, and C winning the third prize. Therefore, option A is an example of a permutation.
B) Picking 10 CDs to lend to a neighbor from a collection of 35.
This scenario involves selecting 10 CDs out of a collection of 35. The order in which the CDs are selected does not matter; only the selection itself is important. Therefore, this is an example of a combination rather than a permutation. Option B does not represent a permutation.
C) The number of ways 8 books can be selected from 10 to take on a trip.
Similarly to option B, this scenario involves selecting 8 books out of a group of 10 books. The order of the selected books does not matter; only the selection itself is relevant. Thus, this is also an example of a combination rather than a permutation. Option C does not represent a permutation.
D) Selecting 4 students to represent their class for the school.
This scenario involves selecting 4 students from a group to represent their class. Since the order in which the students are selected does not matter, this represents a combination rather than a permutation. Option D does not represent a permutation.
Option A
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1. Lorena fue al supermercado y compró 1 de plátanos, cuyo kilogramo cuesta $4. 70.
¿Cuánto debe pagar?
Solving a product, we can see that Lorena must pay a total of $5.88
How much must she pay?We know taht each kilogram of bananas costs $4.70, and Lorena bought a total of 1 and 1/4 kilograms, then to find the cost we just need to solve the following product:
C = (1 + 1/4)*$4.70
We can distribute it to get:
C = $4.70 + $4.70/4
C = $4.70 + $1.18
C = $5.88
That is the total amount that Lorena must pay.
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"complete question.
Lorena fue al supermercado y compró 1 1/4 de plátanos, cuyo kilogramo cuesta $4. 70.
¿Cuánto debe pagar?"
We have to estimate the allocation base and the total manufacturing overhead costs in advance in order to be able to determine a
In order to determine the predetermined overhead rate and allocate manufacturing overhead costs, it is necessary to estimate the allocation base and the total manufacturing overhead costs in advance.
These estimates help in establishing a systematic method for assigning overhead costs to products or services based on a relevant allocation base.
Manufacturing overhead costs include various indirect expenses such as factory rent, utilities, equipment maintenance, and supervision. These costs cannot be easily traced directly to specific products or services. Instead, they are allocated based on a predetermined overhead rate.
The allocation base is a measure or activity that serves as a common denominator for distributing overhead costs. Common allocation bases include direct labor hours, machine hours, or material costs. The choice of allocation base depends on the nature of the business and the activities that drive overhead costs.
To determine the predetermined overhead rate, the total estimated manufacturing overhead costs for a specific period are divided by the estimated allocation base. This rate is then applied to the actual allocation base incurred during production to allocate the overhead costs to individual products or services.
Estimating the allocation base and the total manufacturing overhead costs in advance allows for a more accurate and consistent allocation of overhead expenses. It helps businesses establish a systematic approach to assign costs, aiding in decision-making, cost analysis, and determining product or service pricing.
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Jadah takes the bus to school every morning. 3 out of the last 5 days last week, her bus was late. Based on those results, in how many out of the 180 school days would you expect her bus would be late?
Based on the given information, we can expect Jadah's bus to be late for approximately 108 out of the 180 school days.
To determine the expected number of days Jadah's bus would be late out of 180 school days, we can use the proportion of late days from the previous week.
Out of the last 5 days, her bus was late for 3 days. This can be represented as a ratio: 3/5.
To find the expected number of late days out of 180 school days, we can set up a proportion:
(3/5) = x/180
Cross-multiplying, we get:
5x = 3 * 180
5x = 540
x = 540/5
x = 108
Therefore, based on the results from the previous week, we can expect Jadah's bus to be late for approximately 108 out of the 180 school days.
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Question 17 1 pts Last year 500 students enrolled in both math and art class. Of these students 82 got an A in math, 73 in art class, and 42 in both statistic and psychology. Find the probability that randomly selected student got an A in math or art class (or both).
To find the probability that a randomly selected student got an A in math or art class (or both), we need to use the principle of inclusion-exclusion.
Let's define the events:
M = Getting an A in math class
A = Getting an A in art class
We are given the following information:
n(M) = 82 (number of students who got an A in math)
n(A) = 73 (number of students who got an A in art)
n(M ∩ A) = 42 (number of students who got an A in both math and art)
To calculate the probability of getting an A in math or art class (or both), we can use the formula:
P(M ∪ A) = P(M) + P(A) - P(M ∩ A)
We need to find the probabilities P(M) and P(A) first.
P(M) = n(M) / total number of students
P(M) = 82 / 500
P(M) = 0.164
P(A) = n(A) / total number of students
P(A) = 73 / 500
P(A) = 0.146
Now, we can calculate the probability of getting an A in math or art class (or both):
P(M ∪ A) = P(M) + P(A) - P(M ∩ A)
P(M ∪ A) = 0.164 + 0.146 - (42 / 500)
P(M ∪ A) ≈ 0.164 + 0.146 - 0.084
P(M ∪ A) ≈ 0.226
Therefore, the probability that a randomly selected student got an A in math or art class (or both) is approximately 0.226, or 22.6%.
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Which of these statements about alpha is true? (Choose all that apply)
1. Alpha is the probability of a Type 1 error
2. A high alpha proves that the alternative hypothesis is true.
3. 0.10,0.05, and 1.00 are all possible values of alpha.
4.When the p-value is smaller than the alpha, we reject the null hypothesis.
statements 1 and 4 are true regarding alpha.Among the given statements about alpha:
1. Alpha is the probability of a Type 1 error: This statement is true. Alpha, represented by the symbol α, is the significance level or the probability of making a Type 1 error, which is rejecting the null hypothesis when it is actually true.
2. A high alpha proves that the alternative hypothesis is true: This statement is false. Alpha does not prove or indicate the truth of the alternative hypothesis. The alternative hypothesis is supported by evidence such as statistical significance, effect size, and other factors, not by the value of alpha.
3. 0.10, 0.05, and 1.00 are all possible values of alpha: This statement is true. Alpha can take on various values, including 0.10, 0.05, and 1.00, depending on the desired level of significance and the specific research or analysis.
4. When the p-value is smaller than the alpha, we reject the null hypothesis: This statement is true. In hypothesis testing, if the calculated p-value is smaller than the chosen alpha level, typically 0.05 or 0.01, we reject the null hypothesis in favor of the alternative hypothesis.
Therefore, statements 1 and 4 are true regarding alpha.
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What is the solution to -48 - 3x) 6x - 8?
O X> -4/3
O x<-4/3
O x>4
Ox<4
The solution to the inequality -48 - 3x > 6x - 8 is x < -40/9
How to determine the solution to the inequalityFrom the question, we have the following parameters that can be used in our computation:
-48 - 3x > 6x - 8
Collect the like terms in the above inequality
So, we have
-6x - 3x > 48 - 8
When the like terms are evaluated, we have
-9x > 40
Divide both sides by -9
x < -40/9
Hence, the solution to the inequality is x < -40/9
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A child flies a kite at a height of ft, the wind carrying the kite horizontally away from the child at a rate of. How fast must the child let out the string when the kite is ft away from the child?
To find the rate at which the child must let out the string, we can use the concept of related rates.
Let's assign variables to the given quantities: Let h represent the height of the kite in feet. Let x represent the horizontal distance of the kite from the child in feet. Let dh/dt represent the rate at which the height is changing in feet per second. Let dx/dt represent the rate at which the horizontal distance is changing in feet per second. We are given that the height of the kite is h ft, the horizontal distance is x ft, and the rate of change of the horizontal distance is dx/dt ft/s. By using the Pythagorean theorem, we have the equation: x^2 + h^2 = d^2. Differentiating both sides of the equation with respect to time t, we get: 2x(dx/dt) + 2h(dh/dt) = 2d(dd/dt). Since the child is not letting out or pulling in the string, the rate at which the length of the string (d) is changing is zero. Therefore, dd/dt is equal to 0. Now, we can substitute the given values: 2x(dx/dt) + 2h(dh/dt) = 0. Solving for dx/dt, the rate at which the child must let out the string, we get: dx/dt = -h(dh/dt) / x.
Therefore, the child must let out the string at a rate of (-h(dh/dt)) / x feet per second when the kite is x feet away from the child.
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150 people are asked how many siblings they have? # of Siblings Frequency Relative Frequency Cumulative Frequency 0 35 0.2333 35 1 29 64 2 0.1533 87 3 29 0.1933 116 4 34 0.2267
Therefore, the answer is:Number of Siblings Frequency Relative Frequency Cumulative Frequency0 35 0.2333 351 29 0.1933 642 0 0 873 29 0.1933 1164 34 0.2267 150
Here is how to calculate the Relative Frequency and Cumulative Frequency based on the data given:
Number of Siblings Frequency Relative Frequency Cumulative Frequency
0 35 0.2333 351 29 0.1933 642 0 0.1533 873 29 0.1933 1164 34 0.2267 150
Relative frequency for 0 siblings:
As per the given data, frequency of 0 siblings = 35
And, total number of people asked = 150
Therefore, relative frequency for 0 siblings = 35/150= 0.2333
Relative frequency for 1 sibling:
As per the given data, frequency of 1 sibling = 29And, total number of people asked = 150Therefore, relative frequency for 1 sibling = 29/150 = 0.1933Relative frequency for 2 siblings:
As per the given data, frequency of 2 siblings = 0And, total number of people asked = 150Therefore, relative frequency for 2 siblings = 0/150 = 0Relative frequency for 3 siblings:
As per the given data, frequency of 3 siblings = 29And, total number of people asked = 150Therefore, relative frequency for 3 siblings = 29/150 = 0.1933Relative frequency for 4 siblings:
As per the given data, frequency of 4 siblings = 34And, total number of people asked = 150Therefore, relative frequency for 4 siblings = 34/150 = 0.2267Cumulative frequency:
To calculate the cumulative frequency, add the frequency of each category to the sum of the frequencies of all categories below it. The last cumulative frequency should equal the total number of observations.So, the cumulative frequency for each category is as follows:For 0 siblings:
35For 1 or fewer siblings:
35+29=64For 2 or fewer siblings: 64+0=64For 3 or fewer siblings:
64+29=93For 4 or fewer siblings:
93+34=127For all 5 siblings:
127+23=150
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Write the equation of the trigonometric graph.
5
3
21
8
JVVV
-1
-2
-3
ch
즈
4
37
4
The trigonometric equation is:
y = 2*cos(2x) - 2
How to find the trigonometric equation?The general form of the equation is:
y = A*cos(k*x) + M
Where A is the amplitude, k is the angular frequency and M is the midline.
First, A is half of the difference between a maximum and a minimum, soi:
A = (0 - (-4))/2 = 2
M is the maximum minus the amplitude:
M = 0 - 2 = -2
So we have:
y = 2*cos(kx) - 2
And we can see that we have a maximum at 0 and the next one is at π/2.
So the value of K must be 2, because the number of maximums is doubled in that interval.
y = 2*cos(2x) - 2
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given solid of hemisphere and cylinder having total height 35 cm and radius is 7 cm find the volume of solid
Given a solid of hemisphere and cylinder having a total height 35 cm and radius 7 cm, the volume of the solid is 6105.19 cm³.
So the volume of the solid is 6105.19 cm³.
To begin with, we must identify the volume of each hemisphere and cylinder before we can add them up to find the volume of the entire solid.
The volume of a hemisphere of radius r is given by the formula;
V = 2/3πr³
And the volume of a cylinder of radius r and height h is given by;
V = πr²h
Hence, the volume of the hemisphere with radius 7cm will be;
V₁ = 2/3π(7)³
= 718.81cm³
And the volume of the cylinder with radius 7cm and height 35cm will be;
V₂ = π(7)²(35)
= 5386.38cm³
The volume of the entire solid is given by the sum of the volumes of the hemisphere and cylinder.
V = V₁ + V₂
= 718.81 + 5386.38
= 6105.19 cm³
Therefore, the volume of the solid is 6105.19 cm³.
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