how to write a thesis statement for this art piece


( Hubert Robert, Pont du Gard, 1787, oil on canvas (Musée du Louvre, Paris)

Answers

Answer 1

Answer: A possible thesis statement for this art piece could be:

Through his painting "Pont du Gard" (1787), Hubert Robert showcases his mastery of perspective and architectural detail, capturing the grandeur and beauty of the ancient Roman aqueduct and highlighting the interplay between nature and human engineering in the landscape.

Step-by-step explanation:


Related Questions

a study was conducted to determine if drinking a cup of tea before bedtime helped with falling asleep faster. after randomly assigning 50 people to one group that received tea before bedtime and 50 other people to a group that did not receive tea before bedtime, the researcher then compared the amount of time it took for each person to fall asleep. what is the explanatory variable? the 50 individuals in both groups the amount of time it took to fall asleep if a subject received tea and how long it took for that individual to fall asleep if subject received tea

Answers

The explanatory variable is whether or not a subject received tea before bedtime.

The theory behind this study is that drinking tea before bedtime may help with falling asleep faster.

Participants were randomly assigned to one group that received tea before bedtime and the other group that did not receive tea before bedtime.

The researcher then monitored the amount of time it took for each person to fall asleep.

The explanatory variable of this study is whether or not a subject received tea before bedtime, and the goal is to compare the amount of time it takes for each person to fall asleep depending on if they received tea before bedtime.

The results of this study will help determine if drinking tea before bedtime is an effective way to fall asleep faster.

The goal is to test whether or not this is true by comparing the amount of time it takes for each person to fall asleep depending on if they received tea before bedtime.

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How will the mean be affected if 68 is added to the data set below?

58,60,62,64,66

A.
The mean will increase by 5.
B.
The mean will increase by 1.
C.
The mean will not change.
D.
The mean will decrease by 1.

Answers

Answer:

b

Step-by-step explanation:

in order to find the mean you have find the sum of the numbers and divide them by the amount of numbers.without 68 the sum is 310 divide it by 5 and tge answer is 62.however if you add 68 the sum is 378 divide it by 6 and the answer is 63.

therefore the answer increased by 1.

hope this helps :)

The time needed to travel a certain distance varies inversely with the rate of speed. If it takes 10 hours to travel a certain distance at 24 miles per hour, how long will it take to travel the same distance at 54 miles per hour?

Answers

We can use the formula for inverse variation, which states that the product of the time and the speed is constant:

time × speed = constant

Let's use t to represent the time needed to travel the distance at 54 miles per hour. We know that the time is 10 hours when the speed is 24 miles per hour. So we can set up the equation:

10 × 24 = t × 54

Simplifying, we get:

240 = 54t

Dividing both sides by 54, we get:

t = 240/54

Simplifying this fraction, we get:

t = 40/9

So it will take approximately 4.44 hours, or 4 hours and 26 minutes, to travel the same distance at 54 miles per hour.

Violet throws a ball up in the air. The graph below shows the height of the ball h in feet after t seconds. How many seconds have gone by when the ball is at it's highest point?

Answers

From this graph , it takes 0.75 seconds to reach the highest position.

What exactly is graph?

A graph is a visual representation of the relationship between two sets of data or variables, typically via lines or curves. A diagram or pictorial representation of facts or values that is arranged might be referred to as a graph in mathematics. The relationship between two or more items is frequently represented by the points on the graph

The graph indicates that the peak is at (0.75, 9)

The x-axis displays the time in seconds, while the y-axis displays the height in feet.

Consequently, it takes 0.75 seconds to reach the highest position.

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15. if the integer n has exactly three positive divisors, including 1 and n, how many positive divisors does n2 have?

Answers

Positive divisors does n2 have are 5.

How to calculate how many positive divisors does n2 have?

If an integer n has exactly three positive divisors, including 1 and n, it means that n is a perfect square of a prime number.

The reason for this is that a prime number has only two divisors: 1 and itself. Therefore, if n has exactly three positive divisors, n must be a perfect square of a prime number, since the only divisors of a perfect square are the divisors of its square root, and its square root must be a prime number.

Let's say that n is equal to p², where p is a prime number. The positive divisors of n are 1, p, and n (which is p²).

Now, to find the number of positive divisors of n², we can use the fact that any positive divisor of n² can be expressed in the form [tex]p^k[/tex], where 0 ≤ k ≤ 4 (since n² = p⁴).

Therefore, the positive divisors of n² are:

1, p, p², p³, and p⁴ (which is n²)

So, n² has 5 positive divisors: 1, p, p², p³, and n².

Hence, the answer is 5.

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the poisson distribution is applied to events for which the probability of occurrence over a given span of time, space, or distance is very small.truefalse

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The Poisson distribution is applied to events where the probability of occurrence of a certain number of events in a fixed interval of time, space, or distance is small but not necessarily "very small". False.

The Poisson distribution is used to model events that occur randomly and independently over a continuous or discrete interval of time, space, or distance, such as the number of phone calls received at a call center in an hour, the number of cars passing through a toll booth in a given time period, or the number of emails received per day. The Poisson distribution is characterized by a discrete probability mass function that describes the probability of a certain number of events occurring in a given interval, and it is widely used in probability theory and statistics for modeling events with low to moderate occurrence rates.

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The poisson distribution is applied to events for which the probability of occurrence over a given span of time, space, or distance is very small.

Given statement is False.

Because, The Poisson distribution is applied to events for which the probability of occurrence over a given span of time, space, or distance is not necessarily very small, but rather where the events occur randomly and independently at a constant average rate.

The Poisson distribution models the number of events that occur in a fixed time interval or within a certain area or volume of space, assuming that the events occur independently of each other and at a constant average rate. It is used in many fields, such as biology, physics, economics, and engineering, to model the occurrence of rare or common events.

The Poisson distribution has several important properties, including:

Its mean is equal to λ, and its variance is also equal to λ.

It is a discrete distribution, meaning that it models only whole numbers of events.

It is often used to model rare or unusual events, but can also be used for events that occur frequently, as long as they occur independently at a constant average rate.

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velvetleaf is a particularly annoying weed in cornfields. it produces lots of seeds, and the seeds wait in the soil for years until conditions are right for sprouting. how many seeds to velvetleaf plants produce? the histogram shows the counts from a random sample of 28 plants that came up in a cornfield when no herbicide was used.

Answers

The histogram shows that the majority of velvetleaf plants produced between 0 and 500 seeds. The highest count was 2,000 seeds, and the lowest count was 0 seeds. On average, velvetleaf plants produce around 500 seeds.

To conserve water, many communities have developed water restrictions. The water utility charges a fee of $29, plus an additional $1. 41 per hundred cubic feet (HCF) of water. The recommended monthly bill for a household is between $54 and $82 dollars per month. If x represents the water usage in HCF in a household, write a compound inequality to represent the scenario and then determine the recommended range of water consumption. (Round your answer to one decimal place. )


A. 54 ≤ 1. 41x + 29 ≤ 82; To stay within the range, the usage should be between 17. 7 and 37. 6 HCF.


B. 54 ≤ 1. 41x + 29 ≤ 82; To stay within the range, the usage should be between 17. 7 and 58. 2 HCF.


C. 54 ≤ 1. 41x − 29 ≤ 82; To stay within the range, the usage should be between 38. 2 and 78. 7 HCF.


D. 54 ≤ 1. 41x − 29 ≤ 82; To stay within the range, the usage should be between 58. 9 and 78. 7 HCF

Answers

Determine the recommended range of water consumption17.7 ≤ x ≤ 37.6

A.54 ≤ 1.41x + 29 ≤ 82; To stay within the range, the water usage should be between 17.7 and 37.6 HCF.

Scenario is that the water utility charges a fee of $29, plus an additional $1.41 per hundred cubic feet (HCF) of water, and the recommended monthly bill for a household is between $54 and $82.

Range of water usage in HCF (x) that fits this recommendation.
First, write the compound inequality to represent the scenario:
54 ≤ 1.41x + 29 ≤ 82
Now, to find the recommended range of water consumption, we need to isolate x in both inequalities.

Start with the left inequality:
54 ≤ 1.41x + 29
Subtract 29 from both sides:
25 ≤ 1.41x
Divide both sides by 1.41:
25 / 1.41 ≤ x
x ≥ 17.7 (rounded to one decimal place)
Next, consider the right inequality:
1.41x + 29 ≤ 82
Subtract 29 from both sides:
1.41x ≤ 53
Divide both sides by 1.41:
x ≤ 53 / 1.41
x ≤ 37.6 (rounded to one decimal place)
Combine both inequalities:

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Please help me with this homework

Answers

Answer: Area = 144 π cm²

Step-by-step explanation:

We can use this formula to find the area of a circle:

➜ r is equal to the radius, also known as half the width of a circle.

      A = πr²

We will substitute our known values and solve for C by multiplying. Since the answer option includes π in our units, we do not multiply this into the 144.

      A = πr²

      A = π(12)²

      A = 144 π cm²

Distance between (7,-2) and (-1,-1)

Answers

Answer: The distance formula between two points (x1, y1) and (x2, y2) is:

d = sqrt((x2 - x1)^2 + (y2 - y1)^2)

Using this formula, we can find the distance between (7, -2) and (-1, -1):

d = sqrt((-1 - 7)^2 + (-1 - (-2))^2)

= sqrt((-8)^2 + (1)^2)

= sqrt(64 + 1)

= sqrt(65)

Therefore, the distance between (7, -2) and (-1, -1) is sqrt(65), or approximately 8.06 units.

Step-by-step explanation:

Starting at noon the temperature changed steadily at a rate of -0. 8°C every hour how many hours does it take for the temperature to change by -4. 4°C

Answers

Number of hours does it take for the temperature to change by -4. 4°C is 5.5 hours

To solve this problem, we can use the formula for finding the change in temperature

Change in temperature = rate of change × time

where the rate of change is -0.8°C per hour and the change in temperature we want to find is -4.4°C. So, we can plug in these values and solve for time

-4.4°C = (-0.8°C / hour) × time

Dividing both sides by -0.8°C / hour, we get

time = 5.5 hours

Therefore, it will take 5.5 hours for the temperature to change by -4.4°C.

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a sample consists of n observations which are sorted into k frequency bins. what is the degrees of freedom for a chi-square goodness-of-fit test?

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For a chi-square goodness-of-fit test with n observations sorted into k frequency bins, the degrees of freedom are equal to (k - 1).

The degrees of freedom for a chi-square goodness-of-fit test in this scenario would be (k-1) since there are k frequency bins and the total frequency is fixed (n). The chi-square test compares the observed frequencies with the expected frequencies in each bin, and the difference between these frequencies is used to calculate the test statistic. The degrees of freedom determine the critical value of the test statistic and are based on the number of independent pieces of information used to estimate the expected frequencies.
Hi! I'd be happy to help you with your question. In a chi-square goodness-of-fit test, the degrees of freedom can be calculated using the given terms: observations, frequency, and chi-square. Here's the step-by-step explanation:

1. You have a sample consisting of n observations.
2. These observations are sorted into k frequency bins.
3. The chi-square goodness-of-fit test is used to determine how well the observed frequencies match the expected frequencies.

To calculate the degrees of freedom for this test, use the following formula:
Degrees of freedom = (k - 1)
Where k is the number of frequency bins.

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The degrees of freedom (df) for a chi-square goodness-of-fit test in this scenario is k-1.

The chi-square goodness-of-fit test is used to test whether a set of observed frequencies fits a theoretical distribution.

The observed frequencies are sorted into k bins.

The test statistic is calculated by comparing the observed frequencies to the expected frequencies under the theoretical distribution, and summing the squared differences divided by the expected frequencies.

The degrees of freedom for the chi-square goodness-of-fit test is calculated as (k-1), where k is the number of frequency bins.

This is because once we have chosen the observed frequencies for k-1 of the bins, the frequency for the last bin is completely determined by the total number of observations and the frequencies in the other k-1 bins.

So, we only have (k-1) degrees of freedom to choose the observed frequencies independently.

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a plane cuts through a sphere with diameter 20 cm, but the closest it gets to the center is 3 cm. what is the area of the intersection of the sphere and the plane in sq cm?

Answers

The area of the intersection of the sphere and the plane in sq cm is 286.46 square centimeters.

The sphere is divided into two equal halves by the plane. The closest point on the plane is 3 cm away from the sphere's center. As a result, a right triangle is formed, with one leg equal to the sphere's radius and the other to the sphere's radius from the plane.

We may calculate the radius of the sphere using the Pythagorean theorem:

r^2 = (20/2)^2 - 3^2

r = sqrt(91) 9.54 cm and r2 = 91

A circle with a radius of 9.54 cm forms the point where the sphere and the plane cross. Its area is therefore: A = r2 A = (9.54)2 A 286.46 sq cm.

The sphere and plane's intersection therefore has a surface area of about 286.46 square centimeters.

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which of the following null hypothesis statistical tests require calculating degrees of freedom? group of answer choices all of the above two-sample t-test chi-squared one-sample t-test

Answers

The two null hypothesis that are correct answer are two-sample t-test and one-sample t-test.

Among the group of answer choices provided, the tests that require calculating degrees of freedom are the two-sample t-test and the one-sample t-test. Both of these tests belong to the t-test family and involve using degrees of freedom to determine the critical t-value.

In summary:
- Null hypothesis: The assumption that there is no significant difference between the sample and population or between two samples.
- T-test: A statistical test used to determine if there is a significant difference between the means of two groups or between a sample and population mean.
- Degrees of freedom: A value used in statistical tests that represents the number of independent values in a data set, which can affect the outcome of the test.

So answer is: two-sample t-test and one-sample t-test.

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The null hypothesis statistical tests that require calculating degrees of freedom are the two-sample t-test and the one-

sample t-test. The degrees of freedom are necessary to calculate the t-value for these tests. The chi-squared test also

requires degrees of freedom, but it is not a test for a null hypothesis.

The correct answer is: all of the above.

All these tests require calculating degrees of freedom:

1. Two-sample t-test:

Degrees of freedom are calculated using the formula (n1 + n2) - 2, where n1 and n2 are the sample sizes of the two

groups being compared.
2. Chi-squared test:

Degrees of freedom are calculated using the formula (rows - 1) * (columns - 1), where rows and columns represent the

number of categories in the data.
3. One-sample t-test:

Degrees of freedom are calculated using the formula n - 1, where n is the sample size.

The null hypothesis statistical tests that require calculating degrees of freedom are the two-sample t-test and the one-

sample t-test. The degrees of freedom are necessary to calculate the t-value for these tests. The chi-squared test also

requires degrees of freedom, but it is not a test for a null hypothesis.

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Establishing causality is often a main focus of statistical studies. What is the best type of study to conduct to establish causality? Use the situation in this task to support your answer.

Answers

The best type of study to establish causality is a randomized controlled experiment.

What is the best type of study to conduct to establish causality?

In this type of study, participants are randomly assigned to different groups, and at least one group is given a specific treatment or intervention, while the other group(s) serve as a control group. By randomly assigning participants to groups, researchers can control for potential confounding variables that could impact the results.

For example, let's say we want to determine if a new medication reduces blood pressure. In a randomized controlled experiment, we could randomly assign some participants to receive the medication and others to receive a placebo. This would allow us to compare the effects of the medication on blood pressure to the effects of the placebo, while controlling for other variables that could impact blood pressure.

In contrast, observational studies, such as cohort studies or case-control studies, can only establish correlations between variables, not causation. This is because researchers do not have control over the variables being studied, and there may be other factors that are influencing the relationship between the variables.

Therefore, to establish causality, a randomized controlled experiment is the best type of study to conduct.

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Using the graph, determine the coordinates of the vertex of the parabola.

Answers

Based on the information given, the vertex of the parabola can be found using the coordinates of the turning point (also known as the vertex).

What is the explanation for the above response?

The vertex is located at (4,-4), which means that the value of x is 4 and the value of y is -4. Therefore, the coordinates of the vertex are (4,-4).

The fact that the curve is on the upper and lower quadrants of the right side of the cartesian coordinate system suggests that the parabola opens upwards.

Also, since the curve meets the x-axis at two points, this indicates that the parabola intersects the x-axis at those two points, which are (2,0) and (6,0).

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12' of framing materical can be used to make a rectangular window with a semicircle top. what are the dimensions for the largest area

Answers

The dimension for the largest area is 181 sq ft.

The rectangle has width. [tex]$w$[/tex] and height [tex]$h$[/tex],and let the radius of the semicircle be [tex]$r$[/tex]. We want to maximize the area [tex]$A$[/tex] of the window, which is given by:

[tex]A= 21 \pi r 2 +wh[/tex]

We also have the constraint that the total length of framing material is 12 feet:

[tex]2r+2w+h=12[/tex]

Solving this equation for [tex]$h$[/tex] we get:

[tex]h=12-2r-2w[/tex]

Substituting this expression for [tex]$h$[/tex] into the equation for [tex]$A$[/tex], we get:

[tex]A= 21 \pi r ^2+w(12-2r-2w)[/tex]

Expanding this expression, we get:

[tex]A= 21\pi r^2 +12w-2rw-2w^2[/tex]

To find the values of [tex]$r$[/tex], [tex]$w$[/tex], and [tex]$h$[/tex] that maximize[tex]$A$[/tex], we take the partial derivatives of [tex]$A$[/tex] with respect to each variable, set them equal to zero, and solve for the variables.

We get:

[tex]\partial r/\partial A=\pi r-2w=0 \Rightarrow r= 2w/\pi[/tex]

[tex]\partial w/\partial A=12-2r-4w=0 \Rightarroww= (6-r)/2= (6-2w/\pi)/2=3- w/\pi[/tex]

Substituting the expression for [tex]$w$[/tex] into the equation for [tex]$r$[/tex], we get:

[tex]r= 2/\pi (3-w/\pi )= 6/\pi - 2/\pi^2w[/tex]

Substituting these expressions for [tex]$r$[/tex] and [tex]$w$[/tex] into the equation for [tex]$h$[/tex], we get:

[tex]h=12-2r-2w=12- (4/\pi)w[/tex]

So the dimensions that maximize the area are:

[tex]w= \pi/2,r= 3\pi /4 ,h= (48-8\pi) / \pi[/tex]

The area of the window is:

[tex]A= (1/2)\pir^2 +wh= (1/2)\pi ( 3\pi/4)^2 + (\pi/2)\cdot (48-8\pi)/\pi = 9\pi/8+24-4\pi\approx 18.1 sq ft[/tex]

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Therefore, the dimensions of the largest area rectangular window with a semicircle top that can be made with 12' of framing material are approximately 1.55' * 3.38'. The maximum area is: Area = 4.82 square feet.

To find the dimensions for the largest area of a rectangular window with a semicircle top using 12' of framing material, we need to use optimization techniques.

Let's denote the width of the rectangular window as "w" and the height of the rectangular portion as "h". We also know that the semicircle top will have a radius equal to the width of the rectangular portion, so its diameter will be 2w.

The perimeter of the window is given by:

Perimeter = 2w + h +[tex]\pi w[/tex]

Since we have 12' of framing material available, we can write:

2w + h + [tex]\pi w[/tex] = 12

We can rearrange this equation to solve for h:

h = 12 - 2w - [tex]\pi w[/tex]

The area of the window is given by:

Area = w * h + 1/2 * [tex]\pi w^2[/tex]

Substituting the expression for h from the perimeter equation, we get:

Area = w(12 - 2w - [tex]\pi w[/tex]) + 1/2 * [tex]\pi w^2[/tex]

Expanding and simplifying, we get:

Area = 12w - [tex]2\pi w^2[/tex] - [tex]w^2[/tex]

To find the dimensions that maximize the area, we need to take the derivative of the area equation with respect to w and set it equal to zero:

d(Area)/dw = 12 - [tex]4\pi w[/tex] - 2w = 0

Solving for w, we get:

w = 12/(4\pi+2) ≈ 1.55'

Substituting this value back into the perimeter equation, we can find the height:

h = 12 - 2w - \piw ≈ 3.38'

Therefore, the dimensions of the largest area rectangular window with a semicircle top that can be made with 12' of framing material are approximately 1.55' * 3.38'. The maximum area is:

Area ≈ 4.82 square feet.

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Find the value of x .
J
30°
M
to
K
(2x - 30)°
[

Answers

The value of x in the Intersecting chords is 15

Finding the value of x .

From the question, we have the following parameters that can be used in our computation:

Intersecting chords

The value of x is then calculated as

x = 1/2(30 - 2x + 30)

So, we have

2x = 30 - 2x + 30

Evaluate the like terms

4x = 60

Divide

x = 15

Hence, the value of x is 15

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The answer to this question

Answers

The volume of the basketball is 4.19x³

The volume of the box is 8x³

The volume of air is 3.81x³

What is the volume of the basketball?

We know that the basketball is a sphere of radius x, and the volume of a sphere of radius R is:

V = (4/3)*pi*R³

Where pi = 3.14

In this case the radius is x, so the volume is:

V = (4/3)*3.14*x³

V = 4.19x³

b) The cube has a side length of 2x, then the volume (the cube of that) is:

V = (2x)³

V = 8x³

c) The volume of air is the difference between the volume of the cube and the volume of the ball:

volume of air = 8x³ -  4.19x³ = 3.81x³

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For the function 8-(x-3)^2,

state the domain

Answers

The domain of the function 8 - [tex](x-3)^{2}[/tex] is R which is all the real numbers.

What is domain of a function?

The set or grouping of all potential values that may be used in the function is known as the domain.

We are given a function as 8 - [tex](x-3)^{2}[/tex].

Now, in order to find the domain, we need to find the values where the function is not defined for a value of x.

But, there is no such value for x where the function is not defined.

This means that all values of x give an output.

So, the domain is the set of all the real numbers.

Hence, the domain of the given function is R.

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John has 10 ribbons, each measured 3 ½ inches long. How long are the 10 ribbons placed end to end?

Answers

The total length of all 10 ribbons is 35 inches when they are placed end to end.

What are inches?

Inches are a unit of length in the imperial system of measurement, which is primarily used in the United States, the United Kingdom, and some other countries. One inch is equal to 1/12 of a foot or 2.54 centimeters.

The inch is commonly used to measure the length or distance of small objects, such as the size of a computer screen, the length of a pencil, or the height of a person. Inches are also used to measure the dimensions of larger objects, such as the width of a door or the size of a piece of furniture.

According to the given information

If John has 10 ribbons, each measuring 3 ½ inches long, we can find the total length of all the ribbons by multiplying the length of one ribbon by the number of ribbons:

Total length = 10 × 3 ½ inches

To multiply a whole number and a mixed number, we can first convert the mixed number to an improper fraction, then multiply:

Total length = 10 × (7/2) inches

Total length = 35 inches

Therefore, the 10 ribbons, placed end to end, would be 35 inches long.

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A chef used some bouillon cubes when making chicken noodle soup. The volume of each of the bouillon cubes was 1/27
cubic inch. How long was an edge of one of the bouillon cubes that the chef used?

Answers

Answer: 1/3

Step-by-step explanation:

1/3x1/3x1/3=1/27

a number g multiplied by 67

Answers

Answer:

67g

Step-by-step explanation:

the correct form of g multiplied by 67 is 67g

how to solve Systems of equations with substitution: -3x-4y=-2 & y=2x-5
PLEASE HELPPP I NEED THIS BEFORE TW BY 11:59 PLSSSSSSSSSSSSS HELPPPPPPPP

Answers

Answer:

5x+20

Step-by-step explanation:

you are given that y=2x-5 so you can substitue that for the y value.

-3x-4(2x-5) is your new equation. You can further simply it and you will get:

-3x+8x+20

5x+20

Calculate the slope of the line between pairs of points in each of the tables to determine which table represents a linear function? A. B. C. D.

Answers

Answer:

Table D represents the linear function

y = x + 1.

Joey deposits $6000 each into the two savings accounts described below. If he doesn’t make any other deposits or withdrawals, find the combined amount of accounts after 10 years.

Account 1
3.5% annual simple interest

Account 2
3.5% annual compound interest

Answers

The combined amount in both accounts after 10 years is $16,869.58

What is formula of simple interest and compound interest  ?

To solve the problem, we need to use the following formulas:

Simple Interest = Principal x Rate x Time

Compound Interest = [tex]Principal * (1 + Rate/ n)^{n * Time}[/tex]

where:

Principal = the initial deposit

Rate = the interest rate (in decimal form)

Time = the number of years

n = the number of times interest is compounded per year

For Account 1:

Simple Interest = Principal x Rate x Time

= $6000 x 0.035 x 10

= $2100

The amount in Account 1 after 10 years will be the initial deposit plus the interest earned:

= $6000 + $2100

= $8100

For Account 2:

Since the interest is compounded annually, n = 1.

Compound Interest = [tex]Principal * (1 + Rate/ n)^{n * Time}[/tex]

= [tex]6000 *(1 + 0.035/1)^{1 * 10}\\= $6000 (1.035)^{10}\\= $8769.58[/tex]

After ten years, the amount in Account 2 will be $8769.58.

After ten years, the combined amount in both accounts will be:

$8100 minus $8769.58 equals $16869.58, resulting in a total of $16,869.58 in both accounts after ten years.

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Solving systems by eliminations; finding the coeficients
please write all the problems down, 10 points for each problem, and Brainliest

Answers

Therefore, the solution to the system of equations is (x, y) = (-3, 4).

What is equation?

An equation is a mathematical statement that shows that two expressions are equal. It typically consists of two parts: the left-hand side (LHS) and the right-hand side (RHS), separated by an equal sign (=). The LHS and RHS can be composed of variables, constants, and mathematical operations such as addition, subtraction, multiplication, and division. Equations are used to solve problems in various fields such as physics, engineering, economics, and mathematics.

To solve the system of equations using elimination, we need to manipulate one or both equations so that one of the variables has the same coefficient with opposite signs. Here's how we can solve the system:

Multiply the first equation by -2 to get -4x - 10y = -28.

Add the second equation to the new equation to get -8y = -32.

Divide both sides by -8 to get y = 4.

Substitute y = 4 into either equation to solve for x.

Using the first equation:

[tex]2x + 5(4) = 14[/tex]

[tex]2x + 20 = 14[/tex]

[tex]2x = -6[/tex]

[tex]x = -3[/tex]

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Inverse of this in (x-A)^c

—-

( B )

Answers

The inverse of (x-A)^c = B, where A = 2x + 1, is x = -(B^(1/c) + 1).

To find the inverse of the expression in (x - A)^c = B, where A = 2x + 1, we can use the following steps:

First, solve for x in terms of A

x = (A - 1) / 2

Substitute the expression for A into the original equation

(x - (2x + 1))^c = B

Simplify

(-x - 1)^c = B

Take the c-th root of both sides

-x - 1 = B^(1/c)

Solve for x

x = -(B^(1/c) + 1)

Therefore, the inverse of the expression in (x - A)^c = B, where A = 2x + 1, is given by

x = -(B^(1/c) + 1)

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--The given question is incomplete, the complete question is given

" Inverse of this in (x-A)^c = (B)

—-

where A = 2X+1 "--

Indicate the method you would use to prove the two triangles congruent if new method applies, enter none. SSS, ASA, AAS, SAS, none.

Answers

The two triangles are congruent based on the ASA Congruence Postulate.

What is the ASA Congruence Postulate?

The ASA Congruence Postulate states that if two angles and the included side of one triangle are congruent to two angles and the included side of another triangle, then the two triangles are congruent.

The image shown above shows two triangles that has three pairs of congruent triangles and a pair of corresponding congruent sides.

Therefore, both triangles are congruent by the ASA Congruence Postulate.

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at a carnival game, the chance of winning a prize is 0.45. kylee plays the game 3 times. using the table, what is the probability that she wins at most 2 prizes?

Answers

The probability that Kylee wins at most 2 prizes in 3 attempts is 0.95625.

To answer this question, we can use the binomial distribution formula:

P(X ≤ 2) = P(X = 0) + P(X = 1) + P(X = 2)

where X is the number of times Kylee wins a prize, and P(X = k) is the probability of winning k prizes in 3 attempts.

Using the binomial distribution formula, we can calculate these probabilities using the following formula:

[tex]P(X = k) = (n choose k) × p^k × (1-p)^(n-k)[/tex]

where n is the number of trials (in this case, 3), p is the probability of winning a prize (0.45), and k is the number of

successes we want to calculate the probability for.

Now, let's plug in the values for k = 0, 1, and 2:

[tex]P(X = 0) = (3 choose 0) × 0.45^0 × (1-0.45)^3 = 0.342

P(X = 1) = (3 choose 1) × 0.45^1 × (1-0.45)^2 = 0.4095

P(X = 2) = (3 choose 2) × 0.45^2 × (1-0.45)^1 = 0.20475[/tex]

Now, we can add up these probabilities to find the probability that Kylee wins at most 2 prizes:

P(X ≤ 2) = P(X = 0) + P(X = 1) + P(X = 2) = 0.342 + 0.4095 + 0.20475 = 0.95625

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