Give an example of a matrix A such that (1) Ax=b has a solution for infinitely many bâR3, but (2) Ax=bdoes not have a solution for all bâR3

Answers

Answer 1

Ax=b has a solution for infinitely many b in R3, but Ax=b does not have a solution for all b in R3.

Consider the matrix A:

```
A = [1 2 3;
    4 5 6;
    7 8 9]
```

To find the solutions of Ax=b, we need to solve the system of linear equations:

```
x1 + 2x2 + 3x3 = b1
4x1 + 5x2 + 6x3 = b2
7x1 + 8x2 + 9x3 = b3
```

We can rewrite this system as:

```
x1 + 2x2 + 3x3 - b1 = 0
4x1 + 5x2 + 6x3 - b2 = 0
7x1 + 8x2 + 9x3 - b3 = 0
```

This is an homogeneous system of linear equations, and we can solve it using Gaussian elimination. We find that the rank of A is 2, since the third row is a linear combination of the first two rows. Therefore, the system has either one or infinitely many solutions.

If we solve for x1, x2, and x3 in terms of b1, b2, and b3 using Gaussian elimination, we get:

```
x1 = -b1 + 2b2 - b3
x2 = b1 - b2
x3 = (1/3)b1 - (2/3)b2 + (1/3)b3
```

These expressions show that the solution of Ax=b depends on the values of b1, b2, and b3. If we choose b1 = 1, b2 = 0, and b3 = 0, then we find that Ax=b has a solution. Similarly, if we choose b1 = 0, b2 = 1, and b3 = 0, then we find that Ax=b has a solution. In fact, for any values of b1, b2, and b3 such that b1 - b2 + b3 = 0, the system Ax=b has a solution.

However, if we choose b1 = 1, b2 = 1, and b3 = 1, then we find that Ax=b does not have a solution, since the equation b1 - b2 + b3 = 1 - 1 + 1 = 1 is not satisfied. Therefore, Ax=b has a solution for infinitely many b in R3, but Ax=b does not have a solution for all b in R3.

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Related Questions

Please help me with this homework

Answers

AnswerAnswer:1/11

Step-by-step explanation:

The circles in the model represent positive and
negative integers. Write and solve the equation
that represents the model.

Answers

The expression that represents the circles in the model is 4x

Solving the equation that represents the model.

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

The circles in the model

Represent each circle with x

Where

Positive = +xNegative = -x

Using the above as a guide, we have the following:

Positive = +9xNegative = -5x

When the above expressions are combined, we have

+9x - 5x

Evaluating the above expression

So, we have

4x

Hence, the solution is 4x

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how do you write the number for four million seven hundred thousand.

Answers

Step-by-step explanation:

four million seven hundred thousand can be written by

4,700,000

The table represents a quadratic function C(t). t C(t) −2 1 −1 4 0 5 1 4 2 1 What is the equation of C(t)?

Answers

The quadratic function is C(t) = - t² + 5.

We know the equation of the parabola will be given as,

y = a(x - h)² + k

From the table, the coordinate of the vertex will be at (0, 5).

So, the equation can be

C(t) = a(t - 0)² + 5

C(t) = at² + 5

Since, the equation is passing through the point (1, 4)

4 = a (1²) + 5

4 = a + 5

a = - 1

Thus, the required equation is C(t) = - t² + 5.

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Please find domain. Will mark brainliest.

Answers

Answer:

F. 100 <= u <= 110.

Step-by-step explanation:

The domain of a function is the set of all possible values of the independent variable (u) for which the function is defined.

In this case, the number of uniforms bought (u) must be at least 100 but not more than 110, since there are at least 100 members but not more than 110 members in the marching band.

Therefore, the domain of the function for this situation is:

100 <= u <= 110

So, the answer is F. 100 <= u <= 110.

Answer:

F: 100 [tex]\leq[/tex] u [tex]\leq[/tex] 110

Step-by-step explanation:

Which image shows 1/6 divided by 3

Answers

The image that shows 1/6 divided by 3 would have a result of 1/18

Which image shows 1/6 divided by 3

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

1/6 divided by 3

The images are not given

However, the expression can be solved

So, we have

1/6 divided by 3

Express as products

1/6 divided by 3 = 1/6 * 1/3

Evaluate the products

1/6 divided by 3 = 1/18

Hence, the result is 1/18

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In a parallelogram LMNO, the ratio of LM to MN is 4:3. Find LM if the perimeter of LMNO is 28.

Answers

We find LM: LM = 4x = 4 * 2 = 8 So, LM is 8 units long.  To solve this problem, we need to use the fact that the opposite sides of a parallelogram are equal in length. Let's start by calling the length of LM "4x", since the ratio of LM to MN is 4:3. That means the length of MN is "3x".

The perimeter of LMNO is the sum of the lengths of all four sides, so we can write an equation:

4x + 3x + 4x + 3x = 28

Simplifying this equation, we get:

14x = 28

Dividing both sides by 14, we find that:

x = 2

Now we can substitute this value of x back into our expressions for the lengths of LM and MN:

LM = 4x = 4(2) = 8

MN = 3x = 3(2) = 6

Since the opposite sides of a parallelogram are equal in length, the other two sides must also have lengths of 8 and 6. Therefore, the perimeter of LMNO is:

8 + 6 + 8 + 6 = 28

So we have found that LM has a length of 8.

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Question content area top Part 1 Write an equation of the line passing through the given point and satisfying the given condition. Give the equation (a) in slope-intercept form and (b) in standard form. ( 8,4 ); parallel to 8x-y=6

Answers

To write the equation of a line passing through the point (8,4) and parallel to 8x-y=6, we need to first find the slope of the given line. We can rewrite the given line in slope-intercept form y=8x-6, where the slope is 8.

Since the new line is parallel to the given line, it will have the same slope of 8. Now we can use the point-slope form of the equation of a line:

y - y1 = m(x - x1)

where (x1, y1) is the given point and m is the slope.

Substituting in the values, we get:

y - 4 = 8(x - 8)

Expanding and simplifying, we get:

y = 8x - 60

This is the equation of the line in slope-intercept form.

To convert it to standard form, we move all the variables to one side and simplify:

-8x + y = -60

This is the equation of the line in standard form.

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after calculating the between-group sum of squares and the within-group sum of squares, the next step is to calculate the mean square between and the mean square within. this is achieved by .

Answers

You'll obtain the mean square between and the mean square within, which are crucial for further statistical analyses such as the F-test or ANOVA. To calculate the mean square between and the mean square within after finding the between-group sum of squares and the within-group sum of squares, you can follow these steps:

mean squares:


1. Determine the degrees of freedom between groups (df_between):

Subtract 1 from the number of groups.
2. Determine the degrees of freedom within groups (df_within):

Subtract the number of groups from the total number of observations.
3. Calculate the mean square between (MS_between):

Divide the between-group sum of squares by the degrees of freedom between groups (MS_between = between-group sum of squares / df_between).
4. Calculate the mean square within (MS_within):

Divide the within-group sum of squares by the degrees of freedom within groups (MS_within = within-group sum of squares / df_within).

By following these steps, you'll obtain the mean square between and the mean square within, which are crucial for further statistical analyses such as the F-test or ANOVA.

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nine people sit in chairs in a room. in how many ways can four of these people be chosen to stand up?

Answers

There are 126 ways in which four people can be chosen to stand up out of nine people sitting in chairs.

We have,
The combination formula is:

C(n, r) = n! / (r! (n-r)!)

In this case,

n = 9 (total number of people) and r = 4 (number of people to be chosen to stand up).

Step 1: Calculate n! (9!): 9 x 8 x 7 x 6 x 5 x 4 x 3 x 2 x 1 = 362,880

Step 2: Calculate r! (4!): 4 x 3 x 2 x 1 = 24

Step 3: Calculate (n-r)! (5!): 5 x 4 x 3 x 2 x 1 = 120

Step 4: Plug these values into the combination formula: C(9, 4) = 362,880 / (24 * 120)

Step 5: Calculate the result: C(9, 4) = 362,880 / 2,880 = 126

Thus,

There are 126 ways in which four people can be chosen to stand up out of nine people sitting in chairs.

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Graph the piecewise function on the coordinate plane:

f(x) = {

−2x x< −1

x− 1 x ≥ −1

Answers

A graph of the piecewise function is shown on the coordinate plane in the image attached below.

What is a piecewise-defined function?

In Mathematics, a piecewise-defined function can be defined as a type of function that is defined by two (2) or more mathematical expressions over a specific domain.

Generally speaking, the domain of any piecewise-defined function simply refers to the union of all of its sub-domains. By critically observing the graph of the given piecewise-defined function, we can reasonably infer and logically deduce that it is decreasing over the interval x < -1 and increasing over the interval x ≥ −1.

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the total snowfall per year in laytonville is normally distributed with mean 99 inches and standard deviation 14 inches. based on the empirical rule, what is the probability that in a randomly selected year, the snowfall was less than 127 inches? enter your answer as a percent rounded to 2 decimal places if necessary.

Answers

We can say that approximately 95% of the total snowfall per year in Laytonville falls between 71 inches (99 - 2*14) and 127 inches (99 + 2*14).

According to the empirical rule, for a normal distribution, approximately 68% of the data falls within 1 standard deviation of the mean, 95% falls within 2 standard deviations, and 99.7% falls within 3 standard deviations.

Using this rule, we can calculate that the upper limit of 1 standard deviation above the mean is:

99 + 14 = 113 inches

And the upper limit of 2 standard deviations above the mean is:

99 + (2*14) = 127 inches



To answer the specific question, the probability that in a randomly selected year, the snowfall was less than 127 inches is approximately 95%. This can be interpreted as saying that in 95 out of 100 years, the total snowfall in Laytonville is less than 127 inches. As a percentage, this is rounded to 95.00%.

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I’m giving 20 points

Answers

Answer:

12

Step-by-step explanation:

-3(b - 5) + 7a - (9 - a) ^6                   a = 7 and b = -4

-3(-4 - 5) + 7(7) - (9 - 7)^6

= -3(-9) + 49 - (2)^6

= 27 + 49 - (64)

= 27 + 49 - 64

= 76 - 64

= 12      

help me pls math is too hared

Answers

Each angle is 53 degrees, 32 degrees, and 95 degrees.

We know that,

A triangle is a three-sided polygon that is sometimes (but not always) referred to as the trigon. Every triangle has three sides and three angles, which may or may not be the same. Triangles are three-sided polygons with three vertices. The angles of the triangle are formed by connecting the three sides end to end at a point. The total of the triangle's three angles equals 180 degrees. A triangle is a three-sided polygon with three vertices. The angle produced within the triangle is 180 degrees. It signifies that the total of a triangle's internal angles equals 180°.

Here,

The sum of angles of triangle is 180 degrees.

4x+5+7x+11+2x+8=180

13x+24=180

13x=156

x=12

T=4x+5

=4*12+5

=53 degree

U=2x+8

=2*12+8

=32 degree

V=7x+11

=7*12+11

=95 degree

The measure of each angle is 53 degree, 32 degree and 95 degree.

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a computer programming team has 17 members. (a) how many ways can a group of nine be chosen to work on a project? as in example 9.5.4, since the set of people in a group is a subset of the set of people on the team, the answer is 24310 correct: your answer is correct. . (b) suppose nine team members are women and eight are men. (i) how many groups of nine can be chosen that contain five women and four men?

Answers

Therefore, there are 8820 groups of 9 that contain 5 women and 4 men using combination formula.

To solve part (b)(i), we need to use the combination formula. The number of ways to choose 5 women out of 9 is given by the combination C(9,5), which is:

C(9,5) = 9! / (5! * 4!)

= 126

Similarly, the number of ways to choose 4 men out of 8 is given by the combination C(8,4), which is:

C(8,4) = 8! / (4! * 4!)

= 70

To get the total number of groups of 9 that contain 5 women and 4 men, we need to multiply these two numbers:

126 * 70 = 8820

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Use the Law of Sines to solve (if possible) the triangle. If two solutions exist, find both. Round your answers to two decimal places. A = 110^{\circ}, a = 125, b = 200

Answers

The value of the angle B is  56. 64 degrees

How to determine the value

Using the law of sines, we have;

sin A/a = sin B/b

Given that the parameters are;

A and B are the measure of the anglesa and b are the measure of the sides of the triangle

Now, substitute the values, we have;

sin 110/225 = sin B/200

cross multiply the values, we get;

sin B = sin 110(200)/225

find the values

sin B = 0.9396(200)/225

Multiply the values

sin B = 187. 93/225

sin B = 0. 8352

Find the inverse

B = 56. 64 degrees

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Giving the mid-point as( -4,7 ) and end point 3,8 calculate the other end point justify your answer

Answers

The other endpoint of the line segment with mid-point as( -4,7 ) and end point (3,8) is  (-11, 6).

What is the other end point?

The midpoint formula is expressed as:

Midpoint = [(x₁ + x₂)/2, (y₁ + y₂)/2]

Where (x₁, y₁) and (x₂, y₂) are the coordinates of the two endpoints of the line segment.

Given that the midpoint is (-4, 7) and one endpoint is (3, 8).

Let the other endpoint be (x, y). T

Hence, we can set up two equations:

(x + 3) / 2 = -4 (equation for x-coordinates)

(y + 8) / 2 = 7 (equation for y-coordinates)

Solving for x and y, we get:

x + 3 = -8

x = -8 - 3

x = -11

For y:

y + 8 = 14

y = 14 - 8

y = 6

Therefore, the other endpoint is (-11, 6).

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Given the mid-point as -4,7 and end Point 3,8 calculate the other and end point

Answers

If the midpoint is (-4, 7) then the second end point is (-11, 11).

Determining the midpoints and endpoints of coordinates

The formula for calculating the midpoint of coordinates is expressed as:

M(x,y) = {(x₁+x₂/2, y₁+y₂/2}

Given the following coordinate points

M(x, y) = (-4, 7)

(x₁, y₁) = (3, 8)

Substitute into the formula to have:

-4 = x₂+3/2

x₂ + 3 = -8

x₂ = -11

Similarly

7 = y₂+3/2

y₂ + 3 = 14

y₂ = 11

Hence the other end point of if the midpoint is (-4, 7) is (-11, 11)

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does the data provide sufficient evidence to indicate that blocking was effective in reducing the experimental error at the 95% confidence level?

Answers

It cannot be determined whether the data supports the conclusion that blocking was effective in reducing experimental error at the 95% confidence level. To assess the effectiveness of blocking, it is necessary to examine the specific data and perform appropriate statistical tests, such as Analysis of Variance (ANOVA).

Blocking is a technique used in experimental design to control for extraneous factors that may affect the results. It involves grouping experimental units with similar characteristics and then applying treatments within those groups. This method helps isolate the effect of the treatment and reduce variability in the data.

To determine if there is sufficient evidence to conclude that blocking is effective in this case, one must examine the experimental data and conduct a statistical test, such as ANOVA. This test allows researchers to compare the means of different groups and determine if there are significant differences. If the p-value obtained from the ANOVA test is less than the significance level (typically 0.05 for a 95% confidence level), it can be concluded that blocking was effective in reducing experimental error.

In summary, without access to the specific data and results from statistical tests, it is not possible to confirm whether the blocking method was effective in reducing experimental error at the 95% confidence level.

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Express the confidence interval using the indicated format.Express the confidence interval 0.27 space less than space pspace less than space 0.55 in the form of p with hat on topplus-or-minus E.

Answers

To find E, we take half of the width of the confidence interval, which is (0.55 - 0.27)/2 = 0.14. The confidence interval is p ± E, which is 0.41 ± 0.14.

The confidence interval 0.27 less than p less than 0.55 can be expressed in the form of p with a hat on top plus or minus E as p ± E, where p is the point estimate and E is the margin of error. To find p, we take the average of the upper and lower bounds of the confidence interval, which gives us (0.27 + 0.55)/2 = 0.41. To find E, we take half of the width of the confidence interval, which is (0.55 - 0.27)/2 = 0.14. Therefore, the confidence interval can be expressed as p ± E, or 0.41 ± 0.14.


To express the given confidence interval 0.27 < p < 0.55 in the form of p ± E, follow these steps:

Step 1: Find the midpoint of the interval, which represents the sample proportion p.
Midpoint = (Lower Limit + Upper Limit) / 2
Midpoint = (0.27 + 0.55) / 2 = 0.41

So, p = 0.41.

Step 2: Calculate the margin of error (E) by subtracting the lower limit from the midpoint or the upper limit from the midpoint.
E = Midpoint - Lower Limit = 0.41 - 0.27 = 0.14

Step 3: Express the confidence interval in the desired format.
The confidence interval is p ± E, which is 0.41 ± 0.14.

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s it possible to have a nonzero q-module (i.e., a q-vector space that has at least two elements) that has finitely many elements?

Answers

Yes, it is possible to have a nonzero q-module (q-vector space) with finitely many elements. A nonzero q-module has at least two elements, which distinguishes it from the trivial module containing only the zero element. When the module has finitely many elements, it is referred to as a finite q-module.

In a q-module, the elements are combined through operations that follow the module's underlying ring or field structure. For instance, in a q-vector space, the operations are defined over a field, like the rational numbers (Q) or real numbers (R). These operations adhere to certain rules such as associativity, commutativity, and distributivity.

An example of a finite q-module is the integers modulo n (Z/nZ) as a Z-module, where n is a positive integer. In this case, there are n elements (0, 1, 2, ..., n-1), which form a finite set. The operations of addition and scalar multiplication are performed modulo n, making this a finite module.

In summary, it is possible to have a nonzero q-module with finitely many elements, known as a finite q-module. The operations within the module follow the rules set by its underlying ring or field, allowing for a structured combination of its elements.

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What is the area of this trapezoid?
Enter your answer in the box.

[___] units2

Answers

Answer: 88

Step-by-step explanation:

First, separate into familiar shapes

The area of the triangles at each side is 10 because the formula is length times times width divided by 2, when you plug the numbers in, 5 times 4 divided by two, times 2 because there are two triangles which equals 20.

That leaves the rectangle and the formula for the area of a rectangle is length times width, 17 times 4 which equals 68.

Add them, 20 plus 68 equals 88.

2. A Company manager wishes to test a union leader's claim that employee absences occur on the different week days with the same frequencies. Test this claim at the 0.05 level of significance if the following sample data have been compiled. Select the correct conclusion about the null hypothesis.
Day: Mon Tue Wed Thru Fri
Abs: 37 15 12 23 43
A. Fail to reject the null hypothesis. There is sufficient evidence to warrant rejection fo the claim that absences occur on the different week days with the same frequency.
B. Reject the null hypothesis. There is sufficient evidence to warrant rejection of the claim that absences occur on different week days with the same frequency,
C. Fail to reject the null hypothesis. There is not sufficient evidence to warrant rejection of the claim that absences occur on the different week days with the same frequency.
D. Reject the null hypothesis. There is not sufficient evidence to warrant rejection of the claim that absences occur on the different week days with the same frequency.

5. Perform the indicated goodness-of-fit test. Use a significance level of 0.01 to test the claim that workplace accidents are distributed on workdays as follows: Monday: 25% Tuesday: 15% Wednesday: 15% Thursday: 15% and Friday: 30% In a study of 100 workplace accidents, 29 occurred on a monday, 12 occurred on a tuesday, 16 occurred on a wednesday, 15 occurred on a thursday, and 28 occurred on a Friday. Select the correct critical value.
A. Critical value: x^2=9.488
B. Critical value: x^=11.071
C. Critical value: x^=56.214
D. Critical value: x^=13.277

6. Use a Z^2 test to test the claim that in the given contingency table, the row variable and the column variable are independent. Responses to a survey question are borken down according to employment status and the sample results are given below. At the 0.10 significance level, test the claim that response and employment status are independent.
Yes No Undecided
Employed: 30 15 5
Unemployed: 20 25 10
Select the correct conclusion

7. Use a Z^2 test to test the claim that in the given contingency table, the row variable and the column variable are independent. Responses to a survey question are borken down according to employment status and the sample results are given below. At the 0.10 significance level, test the claim that response and employment status are independent.
Yes No Undecided
Employed: 30 15 5
Unemployed: 20 25 10
Select the correct test statistic and critical value.
A. Test statistic: x^2=4.231. Critical Value X^2=7.779
B. Test statistic: x^2=5.942. Critical Value X^2=4.605
C. Test statistic: x^2=5.942. Critical Value X^2=2.706
D. Test statistic: x^2=4.605 Critical Value X^2=2.706

8. Use a Z^2 test to test the claim that in the given contingency table, the row variable and the column variable are independent. Responses to a survey question are broken down according to gender and the sample results are given below. At the 0.05 significance level, test the claim that response and gender are independent.
Yes No Undecided
Male: 25 50 15
Female: 20 30 10
Select the correct conclusion

9. Use a Z^2 test to test the claim that in the given contingency table, the row variable and the column variable are independent. A study of 160 students who were majoring in either math or english were asked a test question, and the researcher recorded whether they answered correctly. The sample results are given below. At the 0.10 significance level, test the claim that response and major are indepedent.
Correct Incorrect
Math 27 53
English 43 37
Select the correct degrees of freedom
A. df=2
B. df=3
C. df=4
D. df=1

10. A researcher wishes to test whether the proportion of college students who smoke is the same in four different colleges. She randomly selects 100 students from each college and records the number that smoke. The results are shown below.
College A College B college C College D
Smoke 17 26 11 34
Don't smoke 83 74 89 66
Use a 0.01 significance level to test the claim that the proportion of students smoking is the same at all four colleges.
Select the correct test statistic and conclusion.
A. Test statistic: x^2=17.832. Reject the null hypothesis.
B. Test statistic: x^2=11.345. Reject the null hypothesis.
C. Test statistic: x^2=17.832. Fail to reject the null hypothesis.
D. Test statistic: x^2=11.345. Fail to reject the null hypothesis.

Answers

The correct conclusion is:

Fail to reject the null hypothesis.

There is not sufficient evidence to warrant rejection of the claim that absences occur on different weekdays with the same frequency.

Option C is the correct answer.

We have,

To test the claim that employee absences occur on different weekdays with the same frequencies, we need to use the chi-squared goodness of fit test.

First, we calculate the expected frequencies for each weekday assuming they have the same frequency.

Since there are 5 weekdays, we divide the total number of absences (130) by 5 to get the expected frequency of 26 for each weekday.

Using the formula for the chi-squared goodness of fit test, we can calculate the test statistic as follows:

χ² = Σ (O - E)² / E

where O is the observed frequency and E is the expected frequency.

Using the sample data, we get:

χ² = [(37-26)^2/26] + [(15-26)^2/26] + [(12-26)^2/26] + [(23-26)^2/26] + [(43-26)^2/26]

χ² = 8.658

The degrees of freedom for this test is (5 - 1) = 4, since we have 5 weekdays and one parameter (the frequency) has been estimated.

Using a chi-squared distribution table with 4 degrees of freedom and a significance level of 0.05, we find the critical value to be 9.488.

Since the test statistic (8.658) is less than the critical value (9.488), we fail to reject the null hypothesis.

Thus,

The correct conclusion is:

Fail to reject the null hypothesis.

There is not sufficient evidence to warrant rejection of the claim that absences occur on different weekdays with the same frequency.

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(-3,6) (-2,9) write the equation in slope intercept form

Answers

Answer:

y = 3x + 15

Step-by-step explanation:

The slope-intercept form is y = mx + b

m = the slope

b = y-intercept

Slope = rise/run or (y2 - y1) / (x2 - x1)

Points (-3,6) (-2,9)

We see the y increase by 3 and the x increase by 1, so the slope is

m = 3

Y-intercept is located at (0,15)

So, the equation is y = 3x + 15

a certain population of mice is growing exponentially. the growth rate of the population (r) is 2.0 and the current population size (n) is 2,500 individuals. how many mice are added to the population each year?

Answers

The number of mice added to the population each year is approximately 15,721. In this situation, we have a population of mice that is growing exponentially with a growth rate (r) of 2.0 and a current population size (n) of 2,500 individuals.

To calculate the number of mice added to the population each year, we can use the formula for exponential growth:

N = N0e^(rt)

Where:
N0 = initial population size
N = final population size
r = growth rate
t = time

In this case, we know that:
N0 = 2,500
r = 2.0 (since it is given as the growth rate)
t = 1 year (since we want to find the number of mice added each year)

So, we can plug these values into the formula and solve for N:

N = 2,500e^(2.0*1)
N = 2,500e^2
N ≈ 18,221

Therefore, the number of mice added to the population each year is approximately 18,221 - 2,500 = 15,721.

It's important to note that the growth rate is a key factor in determining the rate of population growth. A higher growth rate means that the population will increase at a faster rate, while a lower growth rate means that the population will increase more slowly. In this case, a growth rate of 2.0 is relatively high, which is why the population is growing so quickly. Understanding the growth rate can help us make predictions about how a population will change over time and how it might be impacted by various factors such as disease, predation, or changes in habitat.

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Can someone help ASAP. It’s due today in a hour!!

Any help Is appreciated

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The speed of sound at the coldest place on Earth. Temperatures on the East Antarctic Plateau can reach -100° C is B. 231 m/s

How to calculate the speed

In this equation, v signifies the pace of sound measured in meters per second, while T represents the temperature expressed in Celsius degrees; and 273.15 denotes the standardized temperature in Kelvin.

When substituting T value as -100°C into our function implies that:

v = 331.3 * ✓(-100)/273.15)

v = 231 m/s

Thus, select option indicating 231 m/s.

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if we know the 4 numbers used but dont know the order, how many possible combinations do we need to use to find the password

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If we know the 4 numbers used but do not know the order, there are 24 possible combinations to use to find the password.

When you have 4 distinct numbers and need to find the order, you are looking to determine the number of possible combinations.
A combination is an arrangement of items in a specific order. In your case, you are trying to find the possible arrangements for the 4 numbers you know, which can be used to unlock the password.
To calculate the number of combinations, you can use the formula for permutations, which is n!/(n-r)!, where n is the total number of items (numbers) and r is the number of items you want to arrange.
In this situation, n = 4 (the 4 numbers you know), and r = 4 (since you want to arrange all of the numbers). Applying the formula, you'll have:
4!/(4-4)!
4! (which is 4 x 3 x 2 x 1) divided by 0! (0! is equal to 1)
4! = 24
So, you have 24 different possible combinations for the order of the 4 numbers. To find the correct password, you would need to try each of these 24 combinations.

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It's a multiple choice question

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In 3rd part, option (c) is not a function. In the 4th part, option (b) is not a function. In the 5th part, option (d) is the parent function for the given y.

For 3rd part,

We have to identify that which relation is not a function. A relation is said to be a function if all the elements of one set have a unique image in another set. In our question, as we can see in option (c), element 1 is connected to 2 elements which are 1 and -1. Element 4 is also connected to two elements which are 2 and -1. Therefore, it is not a function. All the other options are functions as each element has a unique image.

For 4th part,

If we observe option (a), we will get one value of y on equating x to any value. In option (b), y = [tex]\pm\sqrt{36 - x^{2}}[/tex], if we equate x to something, we will get two values of y. In options (c) and (d) also, we will get a unique value of y. Therefore, option (b) is not a function as we do not get a unique image for y.

For 5th part,

y = [tex]3\sqrt{x - 2} + 7[/tex]

To identify the parent function, we strip away all the arithmetic values to leave behind one higher-order operation on just x. Therefore, we will first strip away 3 which is a multiple, and 7 which is being added. Then, we will strip away 2. Now, we are left with just one operation on x which is [tex]\sqrt{x}[/tex]. Therefore, option (d) is the parent function for the given function.

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Compound statements that are made up of the same simple statements and have the same corresponding truth values for all true-false combos of these simple statements are said to be

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Compound statements that are made up of the same simple statements and have the same corresponding truth values for all true-false combinations of these simple statements are said to be logically equivalent.



In other words, if two compound statements are logically equivalent, they have the same truth value for every possible combination of truth values of the simple statements that they are composed of. This means that the logic of the two statements is exactly the same, and they can be used interchangeably in any logical argument or deduction.

For example, the compound statement "not (A or B)" is logically equivalent to "not A and not B". This can be shown using a truth table, which lists the truth values of the compound statement for all possible combinations of truth values of A and B. In this case, the truth table shows that the two compound statements have the same truth values for all possible combinations of A and B, and therefore they are logically equivalent.

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help quick pls i need to get this done

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Answer: The best i could come up with was the BLUE figure

Step-by-step explanation:

Sorry if it is wrong

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