Answer: the first one is 2924
If there’s a next question after that about the venue’s capacity the answer is 6800
Hope this helps! ^^
Complete the statement using the specified property.
Associative Property of Multiplication
7(2y) = _)y
Answer:14
Step-by-step explanation:
Let a = 24, b = 12, and c = 4. Evaluate ac+bc .
Answer:
144
Step-by-step explanation:
If u multiply 24 x4 it is 96 and when I multiply 12x4 is 48 and u add 96 plus 48 u get 144.
Solve for 8x + 17 = 41 for x. Show your work.
The value οf x is 3
What is variable?A variety οf issues are resοlved by algebraic calculatiοns that treat variables like explicit integers in a single cοmputatiοn. The quadratic fοrmula, fοr instance, can be used tο sοlve any quadratic equatiοn by exchanging the variables in the quadratic fοrmula fοr the numerical values οf the cοefficients in the equatiοn.
A variable in mathematical lοgic is either a symbοl fοr an undefined term οf the theοry (a meta-variable), οr it is a fundamental οbject οf the theοry that is changed withοut cοnsidering any pοtential intuitive meaning.
Given
8x+17 = 41
Sοlving fοr variable 'x'
Add '-17' tο each side.
17 + -17 + 8x = 41 + -17
Or, 8x=24
Divide each side by '8'
Or, x=3
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Find two integers whose sum is 2 and product is -3
Answer:
x = -1 and y = 3 x = 3 and y = -1
Step-by-step explanation:
Which of the following are solutions to the inequality below? Select all that apply.
To estimate the percent of red marbles in a large bag of marbles, margo will use the following sampling method. She will randomly select a marble, record its color, put it back into the bag, shake the bag to thoroughly mix the marbles, and then repeat those steps. She will perform the procedure many times. What type of sampling method is margo using?.
It is found that Margo are going to be using sampling.
• sampling in statistics may be a a part of the sampling technique within which each sample has an equal probability of being chosen. In other words, a sample chosen randomly is an unbiased representation of the entire population.
Sample strategies is also classified as :
1) Convenient: The sample that is taken from a pool that is readily accessible.
2) Random : When all options are into a hat and draw a number of team
3) Systematic : Every kth element
4) Cluster : once we divide population into groups called clusters, and every element of cluster is surveyed.
5) Stratified : In stratified also divides the population into groups, However just some of the weather of the group are surveyed. per the question Marbles are taken from the bag, and after they're taken they're again placed back within the bag so it depicts sampling.
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PLZ HELP Which of the following options have the same value as 2% of 90
Answer: its E and B
Step-by-step explanation:
2/100 is .02 which is 2%
Answer:
2%= 2/100= 0.02
so correct answer is b and e
A job placement agency advertised that last year its clients, on average, had a starting salary of 30,000. Assuming that average refers to the mean, which of the following claims must be true based on this information?
Note: More than one statement could be true. If none of the statements are true, mark the appropriate box.
The statements which are true in the given case are last year some of their clients had a starting salary of exactly $38,500; last year some of their clients had a starting salary of at least $38,500; and last year at least one of their clients had a starting salary of less than $40,000. Therefore, the correct option is B, D, and E.
Based on the information provided about the job placement agency's clients having an average starting salary of $38,500 last year, the following statements can be determined as true.
B) Last year, some of their clients had a starting salary of exactly $38,500.
Since the mean starting salary was $38,500, it is likely that at least some clients had a salary of exactly that amount to contribute to the calculation of the mean.
D) Last year, some of their clients had a starting salary of at least $38,500.
For the mean to be $38,500, there must have been some clients with starting salaries at or above this amount.
E) Last year, at least one of their clients had a starting salary of less than $40,000.
If the average salary is $38,500, it implies that there are clients with salaries both above and below that amount. Therefore, there must have been at least one client with a salary less than $40,000.
The other statements (A, C, F) cannot be confirmed as true based solely on the given information.
Note: The question is incomplete. The complete question probably is: A job placement agency advertised that last year its clients, on average, had a starting salary of $38,500. Assuming that average refers to the mean, which of the following claims must be true based on this information? Note: More than one statement could be true. If none of the statements is true, mark the appropriate box. A) This year at least one of their clients will have a starting salary of at least $38,500. B) Last year some of their clients had a starting salary of exactly $38,500. C) Last year fewer than half of their clients had a starting salary of $38,500 or less. D) Last year some of their clients had a starting salary of at least $38,500 E) Last year at least one of their clients had a starting salary of less than $40,000. F) None of the above statements is true.
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Two trains leave stations 378 miles apart at the same time and travel toward each other. One train travels at 95 miles per hour while the other travels at 115 miles per hour. How long will it take for the two trains to meet?
Do not do any rounding.
Answer:
Step-by-step explanation:
The problem is the same as one train is fixed and the other is travelling
at speed of 95 mi/h+95mi/h=210 mi/h
\(Time\ spend\ =\dfrac{378}{210} = \dfrac{9}{5} (h)\ or\ 108\ (min)\)
Natural numbers and counting numbers describe the same set of numbers Agree or disagree?
Answer:
Agree
Step-by-step explanation:
They are the same group, just that they are referred to more as natural numbers.
Find the reference angle.
-230°
Answer:
pretty sure it would be like 90 or something, don't know if it's -90 or just 90 tho
Step-by-step explanation:
Answer:
50 degrees
Step-by-step explanation:
-230 is the same as 130 in quadrant II
reference angle 180 - 130 = 50 degrees
1. Choose the description that matches the inequality. x < 1
A line traveling to the left with an closed dot on x=1.
A line traveling to the right with an open dot on x=1.
A line traveling to the right with an closed dot on x=1.
A line traveling to the left with an open dot on x=1.
Answer:
A line traveling to the left with an open dot on x=1.
Explanation:
The inequality x < 1 basically means "less than 1." On number lines, the further left you go, the smaller the number becomes, and the further right you go, the larger the number becomes. So we know that because it's less or smaller than 1, then the line will be to the left. On the other hand, the inequality does not have a line under it to indicate a "less than or equal to 1," just "less than." Therefore, the dot is open. If there were a line under the inequality, then it would indicate "less than or equal to 1" and the dot would be closed.
The table of values shown below represents a linear function. Which of these points could also be an ordered pair in the table, and why?
(18,27), because the rate of change of the function is 4/3( answer B)
Answer:
Straight up B
Step-by-step explanation:
When graphing the solution of an inequality on a number line, you will see either an open or closed circle and a part of the line shaded.
Part A:
Describe what an open circle represents and when you would use it.
Part B:
Describe what a closed circle represents and when you would use it.
Part C:
Describe what the shading on the number line represents.
Part A: An open circle on a number line represents an excluded value, indicating that the endpoint is not included in the solution set of the inequality. It is used when the inequality includes the symbols < (less than) or > (greater than), which denote strict inequality.
Part B: A closed circle on a number line represents an included value, indicating that the endpoint is part of the solution set of the inequality. It is used when the inequality includes the symbols ≤ (less than or equal to) or ≥ (greater than or equal to), which denote inclusive inequality.
Part C: The shading on the number line represents the range of values that satisfy the given inequality. It indicates which values make the inequality true. Typically, the shading is done to the right or left of the circle(s) depending on whether the inequality is greater than or less than.
Part A:
For example, if we have the inequality x > 2, we would represent it with an open circle at 2 on the number line. This means that 2 itself is not a valid solution, but any value greater than 2 is included.
Part B:
For example, if we have the inequality x ≥ -3, we would represent it with a closed circle at -3 on the number line. This means that -3 itself is a valid solution, as well as any value greater than or equal to -3.
Part C:
For example, if we have the inequality x > 2, we would shade the portion of the number line to the right of the open circle at 2. The shaded region represents all the values greater than 2 that satisfy the inequality. The shading visually illustrates the solution set and helps identify the range of valid values for the variable in the given inequality.
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is this true or false? square root of n less or equal than log subscript 2 open parentheses n cubed close parentheses space space f o r space a l l space n space greater or equal than 4 true false
For all n that is higher than or equal to 4, this statement is true.
By taking the cubes of both sides of the inequality, we can demonstrate this.
log2(n3) = \(3\sqrt{n}\)
n^(3/2) <= 3 * log2(n) (n)
Since log2(n) > 2 for n >= 4, we can write:
3 * 2 * (log2(n)) = 3 * n where n(3/2) = 3 * log2(n)
This suggests that:
\(\sqrt{n} =( \frac{3}{n{log 2}} + n) (n)\)
We come to the conclusion that the square root of n will eventually be less than or equal to log2(n3) for all n higher than or equal to 4 since the right-hand side of this inequality approaches zero as n goes to infinity. The assertion is accurate as a result.
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A random sample of size 36 is taken from a normal population with a mean of 50 and a standard deviation of 5. What is the sample standard deviation?
The sample standard deviation is approximately 0.83.
Sample size \(($n$)\) = 36
Population mean \(($\mu$)\) = 50
Population standard deviation \(($\sigma$)\) = 5
The sample standard deviation, denoted as \($s$\) can be estimated using the formula:
\(\[ s = \sqrt{\frac{\sum_{i=1}^{n}(x_i - \bar{x})^2}{n-1}} \]\)
where:
\($x_i$\) represents the individual data points in the sample
\($\bar{x}$\) is the sample mean
In this case, since we don't have individual data points, we can use the population standard deviation as an estimate for the sample standard deviation when the sample size is relatively large (as in this case \($n = 36$\)). This approximation is known as the standard error of the mean.
Therefore, the sample standard deviation can be approximated as:
\(\[ s \approx \frac{\sigma}{\sqrt{n}} \]\)
Substituting the given values:
\(\[ s \approx \frac{5}{\sqrt{36}} = \frac{5}{6} \] = 0.83\)
Hence, the sample standard deviation is approximately 0.83.
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Find the value of 2abcosC.
Answer:
7
Step-by-step explanation:
a=2
b=2
c=1
2ab cos C=a²+b²-c²=2²+2²-1²=4+4-1=7
Answer:
C
Step-by-step explanation:
Given
a² + b² - 2abcosC = c² ( subtract c² from both sides )
a² + b² - c² - 2abcosC = 0 ( add 2abcosC to both sides )
a² + b² - c² = 2abcosC
Here a = 2, b = 2, c = 1 , then
2² + 2² - 1² = 2abcosC
4 + 4 - 1 = 2abcosC , then
2abcosC = 7 → C
56:05
What is the equation of the line that is parallel to the
given line and passes through the point (-4,-6 )?
O x= -6
=)
O x=-4
O y = -6
O y = -4
10 x
(-4×-6) =-24÷6=4
24÷4=6. x=4. x=6
Consider the following problem. Minimize Z=2x1+3x2+x3,
subject to x1+4x2+2x3 ≥8
3x1+2x2 ≥6 and x1≥0, x2≥0, x3≥0. Introduce artificial variables to reformulate this problem as a convenient artificial problem for preparing to apply the simplex method.
The reformulated problem becomes minimize Z = 2x1 + 3x2 + x3 + M1 + M2 + M3, subject to - x1 + 4x2 + 2x3 - M1 + A1 = 8, 3x1 + 2x2 - M2 + A2 = 6, x1, x2, x3, M1, M2, M3, A1, A2 ≥ 0, where M1, M2, and M3 are the artificial variables associated with each constraint, and A1 and A2 are the artificial variables for the artificial objective function.
To convert the given problem into a convenient artificial problem for the simplex method, we introduce artificial variables. The objective function remains the same, Minimize Z = 2x1 + 3x2 + x3.
For each constraint, we subtract an artificial variable (M) to represent a surplus or excess value and add an artificial variable (A) to the left-hand side to form equality.
The first constraint becomes x1 + 4x2 + 2x3 - M1 + A1 = 8. Here, M1 serves as an artificial variable representing the surplus or excess of the constraint.
The second constraint becomes 3x1 + 2x2 - M2 + A2 = 6, with M2 as the artificial variable.
Additionally, we introduce artificial variables M3, A1, and A2 in the objective function to track the artificial problem's feasibility.
All variables, including the artificial variables, are non-negative (x1, x2, x3, M1, M2, M3, A1, A2 ≥ 0).
By introducing artificial variables, we can transform the original problem into a form that can be solved using the simplex method, allowing us to determine the feasibility and optimal solution.
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Please help me solve this
a waitress sold 17 ribeye steak dinners and 10 grilled salmon dinners, totaling $580.22 on a particular day. Another day she sold 21 ribeye steak dinners and 5 grilled salmon dinners, totaling $582.19 how much did each type of dinner cost.
Answer:
\(each \: ribeye \: costs \: \boxed{(r) \to \: \$23.3664} ......................... .. \\ each \: grilled \: salmon \: dinners \: costs \: \boxed{(r) \to \: \$18.29912}\)
Step-by-step explanation:
\(let \: ribeye \: be \to \: (r).......................... \\ let \: grilled \: salmon \: dinners \: be \to \: (g) \\ \tt{hence} \to\\ (5) \times 17r + 10g = \$580.22 \\(10) \times 21r + 5g = \$582.19 \\ \to \\ (85r + 50g = 2,901.1) \\ - (minus)\\ (210r + 50g =5,821.9 ) \\ - 125r = - 2,920.8 \\ r = \frac{ -2,920.8 }{ - 125} \\ \boxed{r = \$23.3664} \\ \tt{hence} \to\\17r + 10g = \$580.22 \\ 17(23.3664) + 10g = \$580.22 \\1 0g = \$580.22 - \$397.2288 \\ 10g = \$182.9912 \\ g = \frac{\$182.9912}{10} \\ \boxed{g = \$18.29912}\)
Which angle is larger, angle B or angle E?
Answer:
<EStep-by-step explanation:
<E is larger than <B
hope it helps
In 1846 the depth of the river was 6.7 feet deep.
In 1847 it dropped 16%.
This year, 1848, it rose 6%.
Answer: 5.966 feet
Step-by-step explanation: To find the depth of the river in 1848, we can start by calculating the depth of the river in 1847 after the 16% drop.
16% of 6.7 feet is 0.16 x 6.7 = 1.072 feet.
So the depth of the river in 1847 was 6.7 - 1.072 = 5.628 feet.
Next, we can calculate the depth of the river in 1848 after the 6% rise.
6% of 5.628 feet is 0.06 x 5.628 = 0.338 feet.
So the depth of the river in 1848 was 5.628 + 0.338 = 5.966 feet.
Therefore, the depth of the river in 1848 was approximately 5.966 feet.
Please someone help me with this I am giving all of my points.
1. plug in the values
3(2) - (-1) = 7; true
2(2) + 3(-1) = 1
4 -3 = 1; true
yes, the point is true for the system. .
2.
the solution is referring to where both the lines intercept on the graph.
3. replace 'y' in the first equation with the second equation
3x + 6x + 1 = 10
9x + 1 = 10
9x = 9
x = 1
plug x = 1
y = 6(1) + 1
y = 7
(1,7)
4. elimiate the common terms which is 'n' which gives;
5m = -5
m = -1
plug in to find 'y' AKA 'n'
3(-1) - n = 2
-3 - n = 2
-n = 5
n = -5
I can futher explain if you'd like, let me know.
Can all problems be represented by graphs?
Answer:
depending on the size of graph
For each of the following, set up the integral of an arbitrary function f(x,y) over the region in whichever of rectangular or polar coordinates is most appropriate. (Use t for θ in your expressions.)(1 point) For each of the following, set up the integral of an arbitrary function f(x, y) over the region in whichever of rectangular or polar coordinates is most appropriate. (Use ttor 0 in your expressions.) (a) The region (sqr (3)1/2,1(2) With a pi/6 iii.b-pi/2 iii ,and d integral-a J (b) The region With a , and d = integral Ja Je
b) The integral can be written as:
∫[a to b] ∫[c to d] f(x, y) dx dy
(a) The region with sqrt(3) <= r <= 1 and pi/6 <= theta <= (b-pi/2):
In this case, polar coordinates are most appropriate. We can set up the integral as:
∫∫R f(rcos(theta), rsin(theta)) r dr dθ
Here, R represents the region in polar coordinates.
The limits of integration for r are sqrt(3) to 1, and the limits of integration for theta are pi/6 to (b-pi/2).
The integral can be written as:
∫[pi/6 to (b-pi/2)] ∫[sqrt(3) to 1] f(rcos(theta), rsin(theta)) r dr dθ
(b) The region with a <= x <= b and c <= y <= d:
In this case, rectangular coordinates are most appropriate. We can set up the integral as:
∫∫R f(x, y) dx dy
Here, R represents the region in rectangular coordinates.
The limits of integration for x are a to b, and the limits of integration for are c to d.
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What is the perimeter of the quadrilateral JKML? Show complete work.
Answer:13cm
Step-by-step explanation:
In hypothesis testing, if the null hypothesis is rejected, __________. Group of answer choices no conclusions can be drawn from the test the alternative hypothesis must also be rejected the data must have been collected incorrectly the evidence supports the alternative hypothesis
Therefore, if the null hypothesis is rejected, the evidence supports the alternative hypothesis. This means that the test results provide enough evidence to conclude that the alternative hypothesis is more likely true than the null hypothesis.
In hypothesis testing, if the null hypothesis is rejected, it means that there is sufficient evidence to support the alternative hypothesis. A null hypothesis is a statement that there is no significant difference or relationship between variables, while the alternative hypothesis states that there is a significant difference or relationship. To determine if the null hypothesis is true or not, we conduct a statistical test and calculate the p-value. If the p-value is less than the level of significance, usually set at 0.05, we reject the null hypothesis and accept the alternative hypothesis. Therefore, the correct answer is that the evidence supports the alternative hypothesis. This means that we have found significant results that support our research hypothesis.
Keep in mind that rejecting the null hypothesis does not prove the alternative hypothesis, but it does suggest that it's more plausible based on the data collected.
Therefore, if the null hypothesis is rejected, the evidence supports the alternative hypothesis. This means that the test results provide enough evidence to conclude that the alternative hypothesis is more likely true than the null hypothesis.
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Which table shows a proportional relationship between x and y?
I really need help with part a and b, please help. Incorrect answers will be downvoted, correct answers will be upvoted. 1. The army is interested in characterizing the acoustic signature of a helicopter. The following data show measurements of acoustic pressure (made dimensionless) for a two-bladed helicopter rotor through of a rotor revolution. The data points are equally spaced in time, and the period of the data collection is of a second. p=00.00040.0015 0.0028 0.0040 0.0048 0.0057 0.0071 0.0095 0.0134 0.0185 0.02420.0302 0.0364 0.0447 0.0577 0.0776 0.0955 0.0907 -0.0477 -0.0812 -0.0563 -0.0329 -0.0127 0.0032 0.0147 0.0221 0.0256 0.0255 0.0222 0.0170 0.0112 0.0064 0.0035 0.0023 0.0020 0.0019 0.0016 0.0009 0.0002 a) Find the real discrete Fourier transform for this data set. (b) Any term in the Fourier series can be written: ak Cos(kwt)+bk sin(kwt) =ck Cos(kwt+$k) ak Find the ck's and plot their amplitude on a bar graph vs. k to illustrate the relative size of each term in the series. Explain the significance of the plot
(a) The real discrete Fourier transform (DFT) is calculated for the given data set to analyze the helicopter's acoustic signature.
(b) To obtain the ck values and illustrate the relative size of each term in the Fourier series, we calculate the magnitude of each coefficient and plot their amplitudes on a bar graph against the corresponding frequency component, k.
To analyze the helicopter's acoustic signature, the real DFT is computed for the provided data set. The DFT transforms the time-domain measurements of acoustic pressure into the frequency domain, revealing the different frequencies present and their corresponding amplitudes. This analysis helps in understanding the spectral characteristics of the helicopter's acoustic signature and identifying prominent frequency components.
Using the Fourier series representation, the amplitudes (ck's) of the different frequency components in the Fourier series are determined. These amplitudes represent the relative sizes of each term in the series, indicating the contribution of each frequency component to the overall acoustic signature. By plotting the amplitudes on a bar graph, the relative strengths of different frequency components become visually apparent, enabling a clear comparison of their importance in characterizing the helicopter's acoustic signature.
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2. (15 points) You need to study for your math and physics finals. Your grade on both exams is proportional to the number of hours per day (so capped at 24 total hours) you spend studying that subject times your ability to absorb the material. You estimate that your ability to absorb math material falls from 100% by 4% for every hour you spend studying math and Page 2 of 4 by 3% for every hour you spend studying physics. Similarly, you find your ability to absorb physics material falls by 2% for each hour of studying math and by 5% for each hour of studying physics. (a) Find the optimal number of hours that you should study math and physics to maximize your average grade. Set the problem up and define all the variables and find the answer. (b) If you studied the optimal number of hours you found in part (a), which exam would you be better prepared for? (c) Now assume that your exam scores in both subjects improves by an additional 10% for every hour of the day that you do not study math or physics. Now what is the optimal number of hours spent studying for the two exams? (d) Examine the sensitivity of your answer to the additional 10\% benefit he gets from the time not studying. How would increasing the effect of this benefit affect your average grade?
A. These equations will give us the optimal values of x and y.
B. (b) To determine which exam you would be better prepared for, we compare the Math_grade and Physics_grade using the optimal values obtained in part (a).
C. We can follow the same steps as in part (a) to set up the equations and find the optimal number of hours spent studying for the two exams.
D. the specific impact would depend on the magnitude of the increase and how it interacts with the other variables and constraints in the problem.
(a) Let's define the variables:
Let x represent the number of hours spent studying math.
Let y represent the number of hours spent studying physics.
We want to maximize the average grade, which is proportional to the product of the hours spent studying and the ability to absorb the material.
The math grade is proportional to x * (1 - 0.04x) * (1 - 0.02y)
The physics grade is proportional to y * (1 - 0.03y) * (1 - 0.05x)
We want to maximize the average grade:
Average grade = (math grade + physics grade) / 2
Now, let's set up the optimization problem:
Maximize: (x * (1 - 0.04x) * (1 - 0.02y) + y * (1 - 0.03y) * (1 - 0.05x)) / 2
Subject to:
0 ≤ x ≤ 24 (maximum hours per day)
0 ≤ y ≤ 24 (maximum hours per day)
To solve this optimization problem, we can use calculus or numerical optimization methods.
(b) To determine which exam you would be better prepared for, calculate the average grade for the optimal number of hours obtained in part (a). Compare the average grade of math and physics to determine which one is higher.
(c) Now, assuming the exam scores improve by an additional 10% for every hour not studying, we need to modify the objective function in the optimization problem. Let's redefine the variables:
Let x represent the number of hours spent studying math.
Let y represent the number of hours spent studying physics.
Let z represent the number of hours not spent studying (24 - x - y).
The math grade is proportional to x * (1 - 0.04x) * (1 - 0.02y)
The physics grade is proportional to y * (1 - 0.03y) * (1 - 0.05x)
The additional benefit is 10% * z.
The new objective function to maximize the average grade is:
(x * (1 - 0.04x) * (1 - 0.02y) + y * (1 - 0.03y) * (1 - 0.05x) + 0.1 * z) / 2
Subject to:
0 ≤ x ≤ 24 (maximum hours per day)
0 ≤ y ≤ 24 (maximum hours per day)
z = 24 - x - y
(d) To examine the sensitivity of the answer to the additional 10% benefit from not studying, you can perform sensitivity analysis by changing the percentage value and observing the effect on the average grade. Increasing the effect of this benefit would likely result in a higher average grade as more emphasis is placed on the additional benefit gained from not studying. However, the exact impact would depend on the specific values used and the relationships between the variables and grades.
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