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

Answers

Answer 1

The solution to the given system of equations is x = 5, y = -1.

The system of equations is given as follows:

7x - 2y = 37    ....(i)

4x + y = 19     ....(ii)

To eliminate y, we need to multiply the second equation by 2 so that the coefficients of y in both equations become opposites:

7x - 2y = 37

8x + 2y = 38

Now we can add the two equations together to eliminate y:

15x = 75

x = 5

Now we can substitute x = 5 into equation (ii) to solve for y.

4x + y = 19

4(5) + y = 19

20 + y = 19

y = -1

Thus, the solution to the system of equations is:

x = 5, y = -1

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Related Questions

I need help with this please

Answers

The range of a function is the set of all possible output values (y-values) of the function. To find the range of f(x) = (5/2)^x - 5, we need to find the minimum and maximum values of y that can be obtained by plugging in all possible x values.

Since (5/2)^x is always greater than 0 for any x, the minimum value of f(x) is -5.

To find the maximum value of f(x), we can take the limit as x approaches infinity:

lim (x → ∞) (5/2)^x - 5 = ∞ - 5 = ∞Therefore, the range of f(x) is (-5, ∞).

discuss possible sources of measurement error in this experiment. are these sources of error enough to account for the percent differences you calculated from your data? write out your answer in a clear and well supported paragraph.

Answers

The "possible-sources" of in the measurement error of an experiment are Instrument error, Human error, sampling error and environmental factors, these sources "may" or "may-not" be enough to account for the percent differences calculated from the data.

There are several possible sources of "measurement-error" in an experiment which affect the accuracy and precision of the results.

These sources include instrument error, human error, environmental factors, and sampling error.

(i) "Instrument-Error" : is defined as inaccuracies in the measuring instruments used in the experiment. This include issues such as calibration errors, sensitivity of the instruments.

(ii) "Human-Error" can arise from mistakes made by experimenters during data collection or analysis, such as misreading measurements or recording data incorrectly.

(iii) "Environmental-Factors", such as temperature, humidity, or electromagnetic interference, can also cause error into experiment if they affect performance of measuring instruments.

(iv) "Sampling-Error" occur when a subset of the population is used for the experiment, and the results are generalized to the entire population.

Depending on the magnitude of these sources of error, they may or may not be enough to account for the percent differences calculated from the data.

If the measurement errors are small and within an acceptable range for the experiment, they may not significantly impact the results.

If the errors are large or systematic, they can introduce significant bias into the data and affect the percent differences calculated.

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The given question is incomplete, the complete question is

Discuss the possible sources of measurement error in an experiment. Are these sources of error enough to account for the percent differences you calculated from your data? write out your answer in a clear and well supported paragraph.

Find the number of terms in this polynomial

Answers

Step-by-step explanation:

where is. the. polynomial.

Apply
6. Julian is going to build a birdhouse. The back of the birdhouse has
the dimensions shown. If wood costs $0.17 per square inch, what is
the least he will spend on the back of the bird house? Round to the
nearest hundredth if necessary.
14.60
8 in.
8 in.

Answers

we need the dimensions. i’m on mobile rn, so i can’t just comment on the question and say that, but i can answer in the reply to this answer once you provide them

which model represents the factors of x2 9x 8? an algebra tile configuration. 7 tiles are in the factor 1 spot: 1 is labeled x and 6 are labeled . 4 tiles are in the factor 2 spot: 1 is labeled x and 3 are labeled . 28 tiles are in the product spot: 1 is labeled x squared, 9 are labeled x, 9 are labeled , and 9 are labeled negative.

Answers

The product of 7 and 4 is 28, which is equal to the number of tiles in the product area.

Therefore, this configuration represents the factors of the quadratic expression [tex]x^2 + 9x + 8.[/tex]

To represent the factors of the quadratic expression x^2 + 9x + 8 using algebra tiles, we need to arrange the tiles into two rectangular areas representing the two factors, and the total number of tiles in the product area should be equal to the product of the number of tiles in each factor area.

Based on the information given, we can arrange the tiles as follows:

Factor 1 area: 7 tiles, with 1 x-tile and 6 blank tiles (represented by underscores):

Copy code

x

_

_

_

_

_

_

Factor 2 area: 4 tiles, with 1 x-tile and 3 blank tiles (represented by underscores):

Copy code

x

_

_

_

Product area: 28 tiles, with 1 x^2-tile, 9 x-tiles, 9 negative tiles (represented by red tiles), and 9 blank tiles (represented by underscores):

Copy code

x^2   -     -     -

x     x     x     x

_     _     _     _

_     _     _     _

_     _     _     _

_     _     _     _

_     _     _     _

To check that this configuration represents the given quadratic expression, we can count the number of tiles in each area and verify that the product of the two factors equals the number of tiles in the product area:

Factor 1 area: 7 tiles

Factor 2 area: 4 tiles

Product area: 28 tiles.

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Can anyone help me please

Answers

sure,we can help you

Answer:

25

Step-by-step explanation:

the ratio of toddlers to infants at a day care center is 7 to 3. if twelve more infants join the day care to change the ratio to 7 to 5, how many toddlers are there at this day care center?

Answers

In order to change the ratio of toddlers to infants from 7 to 3 to 7 to 5, with an increase of 12 more infants, the number of toddlers in the daycare center has to be 42

Let the coefficient of the ratio be x

Therefore, before the addition of the 12 infants

the number of toddlers = 7x

number of infants = 3x

After the addition of 12 infants

the number of toddlers = 7x

the number of infants = 3x+12

According to the question, new ratio = 7 : 5

[tex]\frac{7x}{3x+12}=\frac{7}{5}[/tex]

5(7x) = 7(3x+12)

35x = 21x + 84

35x - 21x = 84

14x = 84

x = 6

Therefore, the original number of infants = 3 * 6 = 18

the number of toddlers = 7x = 7 * 6 = 42

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If twelve more infants join the day care to change the ratio to 7 to 5, then 126 toddlers are there at this day care center.

Let's first set up the initial ratio using variables: let T represent the number of toddlers and I represent the number of infants. The ratio of toddlers to infants is 7 to 3, so we can write:

T/I = 7/3

To solve for the actual number of toddlers and infants, we need more information. We are told that twelve more infants join the day care, so the new number of infants is I + 12. The new ratio is 7 to 5, so we can write:

T / (I + 12) = 7/5

Now we have two equations with two unknowns, so we can solve for T. First, we can use the initial ratio to solve for I in terms of T:

T/I = 7/3

3T = 7I

I = (3/7)T

Now we can substitute this expression for I into the second equation:

T / (I + 12) = 7/5

T / ((3/7)T + 12) = 7/5

Multiplying both sides by ((3/7)T + 12) gives:

T * (7/5) = ((3/7)T + 12) * (7/5)

Simplifying:

21T / 35 + 84 / 5 = 49T / 35

84 / 5 = 28T / 35

Solving for T:

T = (84/5) * (35/28)

T = 126

Therefore, there are 126 toddlers at this day care center.

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HELPP PLS ILL MARK U BRAINLIST

Answers

Maybe 9/12? I counted the amount of times 6 or 9 shows up on the graph. :D. Hope that helps.

the answer is 5/36.

there are 36 possibilities, and only 5 of those possibilities added to be 6.

Add. Express your answer in simplest form. 2/5 + 5/6

A. 1/3
B. 7/11
C. 7/30
D. 1 7/30

Answers

Answer:

d. 1 7/30...............

Answer:

D

Step-by-step explanation:

2/5 + 5/6

Make the denominator same

(2×6)/30 + (5×5)/30

12+25/30

37/30

1 7/30

TIME SENSITIVE! please help !

Consider the word PENCIL. If all the letters are used, and the first letter can’t be N or L, how many ways can the letters be arranged?

A) 720

B) 480

C) 360

D) 96

Answers

The number of ways to arrange the letters of PENCIL when the first letter can't be N or L is option (B) 480.

The word PENCIL has 6 letters, here we have to use permutation method.  If all the letters are used, there are 6! = 720 ways to arrange them. However, the first letter can’t be N or L. This means that there are only 4 choices for the first letter (P, E, C, or I). After choosing the first letter, there are 5 letters left to arrange,

So there are 5! = 120 ways to arrange them.

Therefore, the total number of ways to arrange the letters of PENCIL when the first letter can’t be N or L is

4 x 5! = 4 x 120 = 480

Therefore, the correct option is (B) 480.

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PLEASE HELP
The equation ( x + 6)^2 + ( y + 4) ^2 = 36 models the position and range of the source of a radio signal.

1. Where is the signal located?

2. What is the range of the signal? Only enter numerical values.​​

Answers

Answer:

It is located at point (-6,-4), and it can reach a distance of 6 units.

Step-by-step explanation:

The equation is a circle equation:

(x-a)²+(y-b)²=r², where a and b are coordinates and r is the radius

We easily see that point a is -6, and point b is -4.

Since the square root of 36 is 6, we see that the radius of the circle is also 6, which is also the signals maximum range.

Hope this helps!

a description of the distribution of the values of a random variable and their associated probabilities is called a a. probability distribution. b. table of binomial probability. c. bivariate distribution. d. empirical discrete distribution.

Answers

A description of the distribution of the values of a random variable and their associated probabilities is called a probability distribution. The correct answer is a.

A probability distribution is a mathematical function that describes the possible values of a random variable and the likelihood of each value occurring. It provides a complete description of the probabilities of all possible outcomes of a random experiment or event.

Probability distributions can be classified into two types: discrete probability distributions and continuous probability distributions. Discrete probability distributions are used when the possible outcomes of a random variable are countable or finite, such as the number of heads in a coin toss.

Continuous probability distributions, on the other hand, are used when the possible outcomes of a random variable are infinite, such as the time it takes for a person to complete a task.

Probability distributions are used in various fields, such as statistics, finance, engineering, and science, to model and analyze random phenomena and make predictions about future events. They are an essential tool for understanding uncertainty and making informed decisions based on probabilistic outcomes.

The correct answer is a.

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For what value of x is the rational expression below equal to zero? x-4/x-6​ A. -6 B. 4 C. -4 D. 6

Answers

the answer is 4 therefore it’s b

At the candy store, Bianca bought 1 kilogram of gummy bears and 2 kilograms of jelly beans for $38.00. James bought 2 kilograms of gummy bears and 3 kilograms of jelly beans for $62.75. What is the cost of 1 kilogram of jelly beans?

Answers

Answer:

$13.25 .

Step-by-step explanation:

In case 1 he buys 1 kg of gummy bears and 2 kg of jelly beans .

So By the given condition :-

••••This will serve as equation (1) .

In case 2 he buys 2 kg of gummy bears and 3kg of jelly beans .

So by given condition :-

•••••This will serve as equation (2) .

Solving equation (1) and (2)

From equation (1)

x=38-2y .

we obtain,

2(38-2y)+3y=62.75

76-4y+3y=62.75

y=76-62.75=13.25 .

So cost of 1 kg of jelly bean is $13.25 .

The function f(x) = -4(3)-4+3 represents the value of a savings account in dollars, x months after the individual opened
the account.
In how many months will be account have a balance of $0?
O 0.26 months
O 2.46 months
O 3.74 months
O 4.26 months
NEED HELP ASP

Answers

Answer: A

Explanation:

In a triangle PQR,the sides PQ, QR and PR measure 15 in, 20 in and 25 in respectively.

Answers

Thus, the in a triangle PQR, with the sides PQ, QR and PR formed a right angled triangle.

Explain about the  Pythagorean theorem:

If we know the lengths of two of the sides of a right triangle, we can apply the Pythagorean theorem to determine the third side.

According to the Pythagorean theorem, the hypotenuse squared equals the total of the squared legs. The vertical and horizontal sides, which make a 90° angle, are the legs of a right triangle. The longest side, or hypotenuse, is located on the other side of the right angle.

Given data:

Triangle :PQR, PQ = 15 inQR = 20 inand PR = 25 in

IN right triangle, the longest side is called the hypotenuse.

So,

hypotenuse H = 25

Now using Pythagorean theorem:

(PR)² = (PQ)² + (QR)²

(25)² = (20)² + (15)²

625 = 400 + 225

625 = 625

LHS = RHS

Thus, the in a triangle PQR, with the sides PQ, QR and PR formed a right angled traingle.

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Complete question:

In a triangle PQR,the sides PQ, QR and PR measure 15 in, 20 in and 25 in respectively. prove that triangle PQR, is the right traingle.

what number is the greatest common factor of 90 and 315 divided by the least common multiple of 5 and 15?

Answers

The greatest common factor of 90 and 315 when divided by the least common multiple of 5 and 15 is 45.

When we multiply all the common prime factors, we get the greatest common factor of the numbers.

These prime factors should come from the prime factorization of the numbers given. These should be in all the unique combinations possible.

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quiz 7the following table shows the individual measurements for five samples taken every 15 minutes starting at 10:00 am to be used in monitoring the quality of a process.10:00 am2.01.82.01.810:15 am2.02.02.02.010:30 am1.81.92.12.210:45 am2.12.11.91.911:00 am1.62.02.21.71. how many measurements are in each sample?2. suppose a mean control chart is being used with an upper limit of 2.2 and a lower limit of 1.8. using the data above, what would be the first point to plot on the control chart?

Answers

The first point to plot on the mean control chart would be at 1.9 at control chart with both limits.

1. There are four measurements in each sample, as shown in the table.

2. To plot the first point on the mean control chart, we need to calculate the mean of the first sample. Adding up the four measurements from the 10:00 am sample (2.0 + 1.8 + 2.0 + 1.8) gives a total of 7.6. Dividing by the number of measurements in the sample (4) gives a mean of 1.9. Since the mean is within the control limits of 1.8 and 2.2, the first point on the chart would be plotted at 1.9.
1. To determine how many measurements are in each sample, we simply count the number of measurements provided for each time.

10:00 am: 4 measurements (2.0, 1.8, 2.0, 1.8)
10:15 am: 4 measurements (2.0, 2.0, 2.0, 2.0)
10:30 am: 4 measurements (1.8, 1.9, 2.1, 2.2)
10:45 am: 4 measurements (2.1, 2.1, 1.9, 1.9)
11:00 am: 4 measurements (1.6, 2.0, 2.2, 1.7)

Each sample contains 4 measurements.

2. To plot the first point on a mean control chart, we need to calculate the mean of the first sample (10:00 am).

Mean = (2.0 + 1.8 + 2.0 + 1.8) / 4
Mean = 7.6 / 4
Mean = 1.9

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1. There are 4 measurements in each sample.

2. The first point to plot on the mean control chart would be 1.9, corresponding to the 10:00 am sample.

To determine the number of measurements in each sample, simply count the number of values for each time point.
10:00 am: 4 measurements (2.0, 1.8, 2.0, 1.8)
10:15 am: 4 measurements (2.0, 2.0, 2.0, 2.0)
10:30 am: 4 measurements (1.8, 1.9, 2.1, 2.2)
10:45 am: 4 measurements (2.1, 2.1, 1.9, 1.9)
11:00 am: 4 measurements (1.6, 2.0, 2.2, 1.7)
There are 4 measurements in each sample.
To plot the first point on the mean control chart, calculate the mean of the first sample (10:00 am).
Mean = (2.0 + 1.8 + 2.0 + 1.8) / 4 = 7.6 / 4 = 1.9.

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what is the probability of obtaining exactly as many heads as you just obtained if your coin is the fair coin?0.14260.13570.24610.0321

Answers

The probability of obtaining exactly as many heads as you just obtained if your coin is the fair coin is 0.2461.

Option C is correct

The probability of obtaining exactly as many heads as you just obtained if your coin is the fair coin is given by the binomial probability formula:

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

where X is the random variable representing the number of heads, n is the total number of coin flips, k is the number of heads obtained, and p is the probability of getting a head on any individual flip.

Since we are assuming that the coin is fair, p = 0.5. Let's say you flipped the coin n times and obtained k heads. Then the probability of obtaining exactly k heads with a fair coin is:

P(X = k) = (n choose k [tex]* 0.5^k * ()1-0.5)^(n-k)[/tex]

We don't know what n or k are, so we can't compute the exact probability. However, we can use the fact that the coin is fair to get an estimate. If we assume that the number of heads obtained is roughly half of the total number of flips, then k = n/2. Plugging this into the formula, we get:

[tex]P(X = n/2) = (n choose n/2) * 0.5^(n/2) * (1-0.5)^(n/2)[/tex]

Simplifying this expression, we get:

[tex]P(X = n/2) = (n choose n/2) * 0.5^n[/tex]

Now, we want to find the probability of obtaining exactly as many heads as we just obtained. Let's say we flipped the coin 10 times and obtained 5 heads. Then we want to find P(X = 5), which is:

P(X = 5) = (10 choose 5) [tex]* 0.5^5 * (1-0.5)^(10-5)[/tex] = 0.2461

Therefore, the probability of obtaining exactly as many heads as you just obtained if your coin is the fair coin is 0.2461.

Option C is correct

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Y+5=2(x+1) what is the x and y intercepts

Answers

Answer: x-intercept is (3/2, 0),  y-intercept is (0, -3)

Step-by-step explanation:

If you spin the spinner 36 times, what is the best prediction possible for the number of times it will not land on yellow?

Answers

The best prediction possible for the number of times the spinner will not land on yellow is 18.

What is probability?

Probability is a measure of the likelihood of an event occurring. It is a number between 0 and 1, where 0 means the event is impossible and 1 means the event is certain to happen.

Assuming that the spinner is fair and all outcomes are equally likely, we can calculate the probability of the spinner not landing on yellow in one spin by adding up the probabilities of all other outcomes, which are green, blue, and red.

The probability of the spinner not landing on yellow in one spin is:

P(not yellow) = P(green) + P(blue) + P(red)

= 1/6 + 1/3 + 1/6

= 1/2

Therefore, the expected number of times the spinner will not land on yellow in 36 spins is:

E(not yellow) = 36 x P(not yellow)

= 36 x 1/2

= 18

So the best prediction possible for the number of times the spinner will not land on yellow is 18. However, it's important to note that this is just a prediction based on probabilities, and the actual number of times the spinner doesn't land on yellow in 36 spins may vary.

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Algebra - Make x the subject of the equation

Can someone please show me step by step how to solve this equation please. The correct order of operations.

Answers

The equation solved for x can be written as follows:

x = s/(p - q)

How to make x the subject?

just isolate the equation for x, we start wit the equation:

p = q + s/x

Now we can subtract q in both sides:

p - q = s/x

Now we can multiply both sides by the variable x

x*(p - q) =s

Finally, divide both sides by (p - q), in this way you can completley isolate the variable in the left side.

x = s/(p - q)

There you have it.

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a teacher wants to see if a new unit on factoring is helping students learn. she has five randomly selected students take a pre-test and a post test on the material. the scores are out of 20. has there been improvement? (pre-post) what value of t would you use for the 90% confidence interval? student 1 2 3 4 5 pre-test 12 14 11 12 13 post- test 15 17 15 20 13 group of answer choices 2.776 2.132 4.604 3.747 1.645

Answers

The paired t-test results suggest that there is no significant improvement in students' learning after the new unit on factoring, based on a 90% confidence level.

How to find the value of t?

To determine if there has been an improvement in students' learning after a new unit on factoring, we can perform a paired t-test on the pre-test and post-test scores of the five randomly selected students.

The differences between the pre-test and post-test scores for each student are: 3, 3, 4, 8, 0.

The mean of the differences is 3.6, and the sample standard deviation is 2.39.

The t-value for a 90% confidence interval with 4 degrees of freedom is 2.776. Since the calculated t-value of 2.68 (calculated as the mean of the differences divided by the standard error of the mean of the differences) is less than the critical t-value of 2.776, we fail to reject the null hypothesis that there is no improvement in students' learning.

Therefore, there is not enough evidence to conclude that the new unit on factoring has helped students learn based on the sample data.

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traffic engineers in florida want to reduce the rate of accidents between pedestrians and cars at intersections. research has shown that replacing stoplights with roundabouts (also called traffic circles) can improve safety for bikers and pedestrians. engineers wanted to test this concept so it can be applied across florida, and last year, they replaced five timed stoplights in a florida city with roundabouts. the accident rates at five intersections before the intervention were 5.1, 3.4, 6.1, 4.9, and 4.1 accidents per month. after installing roundabouts, the new rates of pedestrian accidents were 4.5, 3.6, 5.5, 4.8, and 4.1 accidents per month. does replacing stoplights with roundabouts significantly reduce the rate of accidents at intersections? use an alpha value of 0.05 in your decision.

Answers

Replacing stoplights with roundabouts does not significantly reduce the rate of accidents at intersections based on the given data.

Based on the statistical analysis, replacing stoplights with roundabouts does not significantly reduce the rate of accidents at intersections.

To test this hypothesis, we will use a paired t-test, which compares the means of two sets of paired data. The null hypothesis is that there is no significant difference between the mean accident rates before and after installing roundabouts, while the alternative hypothesis is that the mean accident rate after installing roundabouts is significantly lower than before.

Here are the steps to conduct the paired t-test:

Calculate the difference between the accident rates before and after installing roundabouts for each intersection.Calculate the mean and standard deviation of the differences.Calculate the t-value using the formula: t = (mean of the differences) / (standard deviation of the differences / sqrt(n)), where n is the number of paired observations.Calculate the degrees of freedom using the formula: df = n - 1.Find the critical t-value at a 0.05 level of significance and df from a t-distribution table.Compare the calculated t-value with the critical t-value. If the calculated t-value is greater than the critical t-value, reject the null hypothesis. If the calculated t-value is less than or equal to the critical t-value, fail to reject the null hypothesis.

Using the given data, the differences between the accident rates before and after installing roundabouts are:

-0.6, 0.2, 0.6, -0.1, 0

The mean of the differences is 0.02, and the standard deviation is 0.43. There are 5 paired observations, so the degrees of freedom are 4.

Using the formula, we get:

t = 0.02 / (0.43 / √(5)) = 0.14

The critical t-value at a 0.05 level of significance and 4 degrees of freedom is 2.776 from a t-distribution table.

Since the calculated t-value (0.14) is less than the critical t-value (2.776), we fail to reject the null hypothesis. Therefore, we can conclude that replacing stoplights with roundabouts does not significantly reduce the rate of accidents at intersections based on the given data.

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This table contains equivalent ratios between x and y
——————-
x
1
3

7
——————-
y
5
15
25
35

Answers

The missing values in the table that contains the equivalent ratios between X and Y would be = 5

What is an equivalent ratio?

An equivalent ratio is defined as the constant that exists between two different numbers when compared.

The figures in the table is as follows:

X= 1 3 ? 7

y = 5 15 25 35

If X = 1 when y = 5, X= ? when y= 25

That is;

1 =5

?= 25

? = 25/5 = 5

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Zain's current credit card balance is $9,160.00 with a minimum payment of $325.00. Over the next month he spends $1,098.00. If the APR is 18.99% (billed monthly), what will the new balance be, including interest?

Answers

Answer: To find the new balance including interest, we need to take into account the interest charged on the current balance and the new purchase.

First, let's calculate the interest charged on the current balance. The monthly interest rate is 18.99% / 12 = 1.5825%.

The interest charged on the current balance is therefore:

interest on current balance = 0.015825 * 9160.00 = 144.98

So the total balance including interest for the current month is:

current balance including interest = 9160.00 + 144.98 = 9304.98

Next, let's calculate the interest charged on the new purchase of $1,098.00. The interest charged on the new purchase is:

interest on new purchase = 0.015825 * 1098.00 = 17.39

So the total balance including interest for the new purchase is:

new balance including interest = 1098.00 + 17.39 = 1115.39

Finally, we add the current balance including interest and the new balance including interest to get the total balance including interest:

total balance including interest = current balance including interest + new balance including interest

total balance including interest = 9304.98 + 1115.39

total balance including interest = 10420.37

Therefore, the new balance including interest is $10,420.37.

Step-by-step explanation:

(15 POINTS) HELP ASAP TY!!

How are solving systems of two linear equations or inequalities and solving systems of two quadratic equations or inequalities alike? How are they different?

Answers

Solving systems of two linear equations or inequalities and solving systems of two quadratic equations or inequalities are both ways of finding the intersection points between two curves in the plane.

The main difference between the two methods is that linear equations and inequalities are much simpler and easier to solve than quadratic equations and inequalities. In fact, linear systems can be solved using straightforward algebraic methods, such as substitution, elimination, or graphing, while quadratic systems require more advanced techniques, such as factoring, completing the square, or using the quadratic formula.

Another important difference is that linear systems always have either one solution, no solution, or infinitely many solutions, while quadratic systems can have one, two, or no real solutions depending on the discriminant of the equations.

The shapes of the curves represented by linear and quadratic equations are also different. Linear equations and inequalities always produce straight lines, while quadratic equations and inequalities can produce parabolas or other more complex shapes.

Graph y ≥ -x2 - 1.



Click on the graph until the correct graph appears.

Answers

Answer:

To graph this inequality, you can start by graphing the related function y = -x^2 - 1. This is a downward-facing parabola that opens downwards and has a vertex at (0, -1).

To graph the inequality y ≥ -x^2 - 1, you need to shade the region above the graph of the parabola. This is because any point above the parabola will have a y-coordinate that is greater than or equal to the corresponding y-coordinate on the parabola.

So, to graph the inequality, you can shade the region above the parabola. You can use a dotted line to represent the boundary of the inequality, since the inequality includes the possibility of equality (y = -x^2 - 1).

I hope this helps!

Kelley surveyed people to find their favorite hat color. She is making a circle graph of the data. What is the measure in degrees of the
central angle in the graph for the people that chose red?

Number of Hats
brown: 180
Black: 60
Red: 90
Blue: 120

Answers

The measure in degrees of the central angle in the circle graph for the people that chose red is 72 degrees.

What is the central angle?

A central angle is an angle formed by two radii (or rays) that intersect at the center of a circle. It is an angle whose vertex is at the center of the circle, and its sides are the radii that intersect the circle's circumference.

According to the given information:

To find the measure in degrees of the central angle for the people that chose red, we need to calculate the percentage of people that chose red out of the total number of people surveyed, and then convert that percentage into degrees.

Total number of people surveyed = 180 (brown) + 60 (black) + 90 (red) + 120 (blue) = 450

Percentage of people that chose red = (Number of people that chose red / Total number of people surveyed) * 100 = (90 / 450) * 100 = 20%

Now, we can convert the percentage into degrees using the formula for calculating the central angle in a circle graph:

Central angle = (Percentage / 100) * 360

Plugging in the percentage of people that chose red:

Central angle for red = (20 / 100) * 360 = 72 degrees

So, the measure in degrees of the central angle in the circle graph for the people that chose red is 72 degrees.

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The population of your town is about 30,000. This is about 1/10 the population of your friend’s town about what is the population of your friend’s town?

Answers

The population of your friend's town is 300,000 if the population of your town is about 30,000.

To solve this problem, we can use the fact that if one quantity is a fraction of another quantity, we can multiply or divide the given quantity by that fraction to find the other quantity. In this case, we know that the population of your town is 1/10th of your friend's town's population, so we can multiply your town's population by 10 to get your friend's town's population.

If the population of your town is about 30,000, and it's about 1/10 the population of your friend's town, we can calculate your friend's town's population by multiplying your town's population by 10.

So, the population of your friend's town is

30,000 x 10 = 300,000

Therefore, your friend's town has a population of about 300,000.

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