A tortise, or land turtle, might move 150m in half an hour. what is this speed in meters per minute

Answers

Answer 1

Answer:

5 m/ min

Step-by-step explanation:

speed = [tex]\frac{distance}{time}[/tex]

half an hour = 30 minutes, then

speed = [tex]\frac{150}{30}[/tex] = 5 m/ minute


Related Questions

A store manager decides to clear out aquariums to make room for new inventory. Now a $52 aquarium will be on sale for only $13. What is the discount, as a percentage?

Write your answer using a percent sign (%).

Answers

The discount given on the aquarium is 75%.

Given that an aquarium has an original price of $52 which is now being sold at $13, we need to find the discount given on it,

So, the discount is calculated by =

original price - selling price / original price × 100%

So,

Discount = 52 - 13 / 52 × 100%

= 39 / 52 × 100%

= 0.75 × 100%

= 75%

Hence the discount given on the aquarium is 75%.

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Determine the equation of the line that passes through the point (-6, -30) and is parallel to the line y+4x+5.

Answers

Answer:

y=4x-6

Step-by-step explanation:

y=4x+5

-30=-24-6

y=4x-6

pls help<3 What are the amplitude and period of the function graphed below?

Answers

The Amplitude of a function is the maximum distance a point on the graph is from the function's midline, usually measured in the vertical direction.The amplitude of the function graphed will be 2.

A graph,

The highest value = 3,

Lowest value = -1

So,

From the definition mentioned above,

Amplitude

We get,

Amplitude = 2

Hence, we can say that the amplitude of the function graphed will be 2.

For a sine or cosine function, the amplitude is the absolute value of the coefficient in front of the sine/cosine term.
The period of a function is the length of one complete cycle of the graph. In other words, it's the horizontal distance required for the graph to repeat its pattern. For a sine or cosine function, the period can be calculated as (2π) / |B|, where B is the coefficient of the angle in the sine/cosine term.

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Management for a chain of restaurants recorded the number of appetizers, X, ordered by tables dining. They observed that X had the following probability distribution.
Value of X 0 1 2 3 or more
Probability 0.60 0.35 0.04 0.01
The probability that a randomly chosen table orders at least one appetizer is
a. 0.35.
b. 0.40.
c. 0.39.
d. None of the above

Answers

The probability that a randomly chosen table orders at least one appetizer is 0.40, which corresponds to option b. 0.40.

The probability that a randomly chosen table orders at least one appetizer can be calculated by adding the probabilities of the table ordering 1, 2, or 3 or more appetizers. Therefore, the probability is:

0.35 + 0.04 + 0.01 = 0.40

Therefore, the correct answer is b. 0.40. It is important to note that this probability distribution can be used to make informed decisions about how much of each appetizer to stock and how to price them to maximize profits. The management of the chain of restaurants can also use this information to predict the demand for appetizers and adjust their marketing strategy accordingly. Additionally, they can use this information to monitor their performance and identify areas of improvement in their service or menu.


To find the probability that a randomly chosen table orders at least one appetizer, we need to consider the probabilities of ordering 1, 2, or 3 or more appetizers. In this case, the probability distribution is given as:

Value of X:       0     1     2     3 or more
Probability:    0.60  0.35  0.04  0.01

To calculate the probability of a table ordering at least one appetizer, we need to add the probabilities for 1, 2, and 3 or more appetizers:

P(at least one appetizer) = P(1) + P(2) + P(3 or more)
P(at least one appetizer) = 0.35 + 0.04 + 0.01

Now, we sum the probabilities:

P(at least one appetizer) = 0.35 + 0.04 + 0.01 = 0.40

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stratified random sampling involves: group of answer choices dividing the population into overlapping groups taking a random sampling of a percentage of the pre-chosen groups (usually 10% of total groups) choosing non-overlapping clusters (i.e. streets of a city) and collecting data from all members of the selected cluster none of the above

Answers

Stratified random sampling involves dividing the population into non-overlapping groups, called strata, based on specific characteristics or attributes. From each stratum, a random sample is taken, usually based on a predetermined percentage of the total groups.

Stratified random sampling involves dividing the population into overlapping groups, or strata, based on a certain characteristic, such as age or income. From each stratum, a random sample is taken of a pre-determined percentage of individuals. This ensures that the sample is representative of the entire population, as each stratum is proportionately represented in the sample. This method is often used when the population is diverse and there are subgroups that may have different characteristics or opinions. By using stratified random sampling, researchers can ensure that each subgroup is represented in the sample, allowing for more accurate results. This method can be more complex and time-consuming than other sampling methods, but it provides a more accurate representation of the population being studied.
The collected data from each selected group is then combined to form the overall sample, which is representative of the entire population. This method helps ensure that different segments of the population are adequately represented, providing more accurate and reliable results in statistical analysis.

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is the relationship between the variables in the table a direct variation, an inverse variation, both, or neither? If it is a direct or inverse variation, write a function to model it.

Answers

The values of the product and ratio of the corresponding variables in the table indicates that the relationship in neither a direct or inverse variation, and the correct option is therefore;

Neither

What is a variation?

A variation is the relationship between the values in the set of a variable and the values in the set of other variables.

The table of values indicates that as the value of x increases, the values of y decreases, therefore;

x;        2          5           20   [tex]{}[/tex]        40

y; [tex]{}[/tex]      40        20          5             2

A direct variation is a relationship between x and y in the form;

y ∝ x

y = k × x

y/x = k (A constant)

The ratio of the y- and x-values in the table indicates that we get;

40/2 = 10

20/5 = 4

]5/20 = 1/4

2/40 = 1/20

Therefore, the different ratios of the corresponding x and y values indicates that the relationship is not a direct variation.

An inverse variation between two or more variables can be presented as follows;

y ∝ 1/x

y = k/x

y × k = k

Therefore, the product of the corresponding variables values in table can be presented as follows;

40 × 2 = 80

20 × 5 = 100

5 × 20 = 100

2 × 40 = 80

Therefore, the different values of the product between the corresponding variables indicates that the relationship is not an inverse variation

Therefore, the relationship is neither a direct or an inverse variation

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Ellie is mixing fruit juices to make 1 litre of her favourite fruit cocktail.

She starts with 0.32 litres of apple juice and adds 0.5 litres of orange juice.

She finishes by adding blackcurrant juice.

How much blackcurrant juice should she add.

Answers

Answer:

0.18 litres

Step-by-step explanation:

To find out how much blackcurrant juice Ellie should add, we first need to determine how much space is left in the litre after she adds the apple and orange juice.

We can start by adding the apple and orange juice:

0.32 L + 0.5 L = 0.82 L

This means that there is 1 L - 0.82 L = 0.18 L of space left in the litre for the blackcurrant juice.

Therefore, Ellie should add 0.18 litres of blackcurrant juice to make 1 litre of her fruit cocktail.

a beach ball is deflating at a constant rate of 10 cubic centimeters per second. when the volume of the ball is 256/3pie cubic centimeters, what is the rate of change of the surface area

Answers

The rate of change of the surface area of a beach ball is -20/pie cm^2 per second when the volume of the ball is 256/3pie cubic centimeters, assuming the ball retains its spherical shape as it deflates at a constant rate of 10 cubic centimeters per second.

The formula for the volume of a sphere is V = 4/3 * pie * r^3, and the formula for the surface area of a sphere is A = 4 * pie * r^2. If the volume of the beach ball is 256/3pie cubic centimeters, we can solve for the radius by setting the volume equation equal to this value and solving for r:

256/3pie = 4/3 * pie * r^3

r^3 = (256/3) / (4/3 * pie)

r^3 = 16/3pie

r = (16/3pie)^(1/3)

Since the beach ball is deflating at a constant rate of 10 cubic centimeters per second, the rate of change of the volume can be expressed as dV/dt = -10. Taking the derivative of the surface area formula with respect to time gives us:

dA/dt = 8 * pie * r * dr/dt

We can substitute in the values we calculated for r and dV/dt to find:

dA/dt = 8 * pie * (16/3pie)^(1/3) * (-10)

dA/dt = -20/pie cm^2 per second

Therefore, the rate of change of the surface area of the beach ball is -20/pie cm^2 per second when the volume of the ball is 256/3pie cubic centimeters.

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Multiply the negative of 2/3 by the inverse of 9/7.

Answers

Step-by-step explanation:

To multiply the negative of a fraction by the inverse of another fraction, follow these steps:

1. Convert the first fraction to its negative equivalent.

- The negative of 2/3 is -2/3.

2. Find the inverse (or reciprocal) of the second fraction.

- The inverse of 9/7 is 7/9.

3. Multiply the two fractions.

- Multiply the numerators: (-2) * (7) = -14

- Multiply the denominators: (3) * (9) = 27

The result is -14/27.

Monica is making a frame for her favorite poster. The poster is 3 feet by 2 feet. How many feet of wood does she need to make the frame

Answers

To make the frame for her favorite poster, Monica needs to calculate the total amount of wood required. Since the poster is 3 feet by 2 feet, the frame needs to be slightly larger to fit around the edges. Assuming that Monica wants to add 1 foot of wood around each edge of the poster, she needs to add 2 feet to both the length and the width of the poster. Therefore, the total dimensions of the poster and the frame will be 5 feet by 4 feet.

  To calculate the total amount of wood required, Monica needs to find the perimeter of the frame, which is the sum of the lengths of all four sides. The length of each of the two longer sides is 5 feet, and the length of each of the two shorter sides is 4 feet. Therefore, the total amount of wood required to make the frame is 5+5+4+4 = 18 feet. Hence, Monica needs 18 feet of wood to make the frame for her favorite poster.

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To make the frame for her favorite poster, Monica needs to calculate the total amount of wood required. Since the poster is 3 feet by 2 feet, the frame needs to be slightly larger to fit around the edges. Assuming that Monica wants to add 1 foot of wood around each edge of the poster, she needs to add 2 feet to both the length and the width of the poster. Therefore, the total dimensions of the poster and the frame will be 5 feet by 4 feet.

      To calculate the total amount of wood required, Monica needs to find the perimeter of the frame, which is the sum of the lengths of all four sides. The length of each of the two longer sides is 5 feet, and the length of each of the two shorter sides is 4 feet. Therefore, the total amount of wood required to make the frame is 5+5+4+4 = 18 feet. Hence, Monica needs 18 feet of wood to make the frame for her favorite poster.

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how much does 5000 shekels of bronze weigh

Answers

Answer:1250

Step-by-step explanation:

Rick runs around a football field of circumference 264 meters. What is the radius of the field to the nearest whole number?

Answers

The circumference of the football field is given as 264 meters.

Let's assume that the radius of the football field is "r" meters. We know that the circumference of a circle is given by the formula C=2πr, where C is the circumference and r is the radius.

Therefore, we have:

C = 2πr

264 = 2πr   (since C = 264 meters)

132 = πr

Now we can solve for the radius:

r = 132/π ≈ 42

Therefore, the radius of the football field is approximately 42 meters, rounded to the nearest whole number.

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STATS HELP PLEASE

Suppose a normal distribution has a mean of 120 and a standard deviation of
10. What is P(x>110)?
A. 0.475
B. 0.16
C. 0.975
OD. 0.84

Answers

A normal distribution has a mean of 120 and a standard deviation of 10 then P(x > 110) is 0.84

Given that mean is 120 and a standard deviation of 10

The z-score for x=110 can be calculated as:

z = (x - μ) / σ = (110 - 120) / 10 = -1

Using a standard normal distribution table

we can find that the probability of a z-score being greater than -1 is 0.8413.

Therefore, P(x > 110) = 1 - P(x ≤ 110)

= 1 - P(z ≤ -1)

= 1 - 0.1587

= 0.8413.

Hence,  a normal distribution has a mean of 120 and a standard deviation of 10 then P(x > 110) is 0.84

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Ushi throws a fair 6-sided dice.
Find an outcome that has a probability of:
¡.50%

Answers

Rolling an even number (2, 4, or 6) has a 50% probability because there are 3 even numbers out of the 6 possible outcomes. Similarly, rolling an odd number (1, 3, or 5) also has a 50% probability.

To determine an outcome with a probability of 50% when Ushi throws a fair 6-sided dice.
A fair 6-sided dice has 6 equally likely outcomes: 1, 2, 3, 4, 5, and 6. Since there are 6 possible outcomes, no single outcome (such as rolling a 1 or a 6) can have a 50% probability. However, we can group outcomes to achieve a 50% probability.
For instance, rolling an even number (2, 4, or 6) has a 50% probability because there are 3 even numbers out of the 6 possible outcomes. Similarly, rolling an odd number (1, 3, or 5) also has a 50% probability.

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A rectangular brick wall is 5 m wide and 1 m tall. Use Pythagoras' theorem to work out the distance between diagonally opposite corners. Give your answer in metres (m) to 1 d.p. 1m 5m​

Answers

Answer:

[tex] \sqrt{ {5}^{2} + {1}^{2} } = \sqrt{25 + 1} = \sqrt{26} = 5.1[/tex]

The distance between diagonally opposite corners of this wall is about 5.1 meters.

Find the total surface area.

Answers

The surface area of the figure is equal to 641.1 square inches.

How to calculate for the surface area of the figure

The figure comprises of a smaller and a bigger cone, the sum of their surface area is the surface area of the figure.

Surface area of cone = πr[r + √(h² + r²)]

surface area of smaller cone = 22/7 × 6in[6in + √(8² + 6²)]

surface area of smaller cone = 301.7 square inches

Height of the bigger cone = √(12² - 6²) = 10.4in

surface area of bigger cone = 22/7 × 6in[6in + √(10.4² + 6²)]

surface area of bigger cone = 339.4 square inches

surface area of the shape = 301.7 + 339.4

surface area of the shape = 641.1 square inches.

Therefore, the surface area of the figure is equal to 641.1 square inches.

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A polygon has vertices whose coordinates are A(1, 4), B(4, -1), C(-1, -4), and D(-4,1). What is the midpoint for segment AB?

(5/2, 3/2)

(5,3)

(-5/3, -3/2)

(-3, -5)​

Answers

Answer:

(5/2, 3/2)

Step-by-step explanation:

A = (1, 4)

B = (4, -1)

((x1 + x2)/2, (y1 + y2)/2) = midpoint formula

(x1, y1) = (1, 4) and (x2, y2) = (4, -1)

((1 + 4)/2, (4 + (-1))/2) =

5/2 , 3/2

Jina received an $80 gift card for a coffee store she used it in buying some coffee that cost $7.72 per pound after buying the coffee she had 41.40 left on the on her card how many pounds of coffee did she buy

Answers

Answer: Jina bought 5 pounds of coffee by spending a total of $38.60.

Step-by-step explanation:

According to this problem, Jina has an $80 gift card for a coffee store and when she bought some pounds of coffee, she had $41.40 left.

To solve this equation you will need to rephrase this equation to

80 - 41.40 = x

When you subtract the problem, you should get $38.60.

80 - 41.40 = 38.60

Now since Jina bough coffee that costs $7.72 per pound, you will need to divide that by the amount you have just subtracted.

38.60 ÷ 7.72

When you divide "38.60 ÷ 7.72", you should get the number 5.

Therefore, Jina bought 5 pounds worth of coffee, making her total on her gift card $38.60. Hope this helps!

-From 5th Grade Honors Student

Question 8
A gym asked 240 randomly selected members how many times they work out each week. The average response was 3.2 with a standard deviation of 18.
Use a 95% confidence interval to determine the maximum error of the estimate. Then estimate the mean of the population.
The population mean is Select Choice SHS Select Choice

Answers

The confidence interval for the population mean of approximately (2.973, 3.427)

How to solve for the confidence interval

The maximum error

ME = 1.96 * (1.8 / √240)

ME ≈ 1.96 * (1.8 / 15.49)

ME  1.96 * 0.116

= 0.227

So, the maximum error of the estimate for this 95% confidence interval is approximately 0.227.

Since we are given the sample mean (x) = 3.2, we can use that to estimate the population mean (μ):

μ =x ± ME

μ = 3.2 ± 0.227

3.2 - 0.227 , 3.2 + 0.227

This gives us a 95% confidence interval for the population mean of approximately (2.973, 3.427).

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what is the predominant form of methionine (pka = 2.28 and 9.21) at ph 12?

Answers

At pH 12, the predominant form of methionine (pKa = 2.28 and 9.21) would be the deprotonated form, which is represented as -CH2-S-CH2-CH(NH3+)COO-.

At this high pH, both the carboxylic acid (-COOH) and the amino group (-NH3+) on the side chain of methionine will be deprotonated, resulting in a negatively charged side chain. This form of methionine has a net charge of -1. At this pH, the amino acid will exist predominantly in its anionic form since the pH is higher than both of its pKa values. Methionine's isoelectric point (pI) is 5.74, which is the pH at which its net charge is zero.

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Madison is studying the precipitation data over several locations in the US. The precipitation is seasonal and the USGS has several raingages over several states. She is trying to project the precipitation for the following year. How would order the following steps? 1. Download the precipitation data from the USGS website 2. Cluster the data into different seasons and states and perform a regression to predict precipitation in each cluster 3. Reformat the dates on all precipitation data to be in the same time zone 4. Create a line chart that shows precipitation by state and by season

Answers

By downloading the data, Madison will have access to the necessary information to analyze. Reformatting the dates to be in the same time zone will allow for easier analysis and comparison of the data.

The following steps should be ordered as follows for Madison to project precipitation for the following year:

1. Download the precipitation data from the USGS website
2. Reformat the dates on all precipitation data to be in the same time zone
3. Cluster the data into different seasons and states and perform a regression to predict precipitation in each cluster
4. Create a line chart that shows precipitation by state and by season

Clustering the data into different seasons and states and performing a regression analysis will allow for predictions of precipitation in each cluster. Finally, creating a line chart will provide a visual representation of the data, allowing for easier interpretation and analysis.


To help Madison study the precipitation data and make projections, she should follow these steps in order:

1. Download the precipitation data from the USGS website.
2. Reformat the dates on all precipitation data to be in the same time zone.
3. Cluster the data into different seasons and states and perform a regression to predict precipitation in each cluster.
4. Create a line chart that shows precipitation by state and by season.

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REVIEW FROM 3.05
Multiply: (x + 2) (x² + 3x + 5)
Simplify and write your answer in Standard Form.

Answers

Answer:

x^3+5x^2+11x+10

Step-by-step explanation:

Multiply each term in the first expression by each term in the second expression and combine like terms.

have a great day and thx for your inquiry :)

evaluate the integral. (use c for the constant of integration.) 4 tan(x) sec3(x) dx

Answers

Therefore, the integral evaluates to 2tan^2(x) + c.

Let u = tan(x), then du/dx = sec^2(x) dx

Using du/dx, we can write the integral as:

∫4 tan(x) sec^3(x) dx = ∫4u du = 2u^2 + c = 2tan^2(x) + c

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An artist made a sculpture out of sections of metal pipe and plastic tubing. He used 1/3 yard of metal pipe divided into 4 equal pieces, and 2 yards of plastic tubing divided into 3 equal pieces. What is the ratio of the length of a piece of metal pipe to the length of a piece of plastic tubing?
A. 1 : 12
B. 1 : 8
C. 4 : 3
D. 8 : 1

Answers

The ratio of the length of a piece of metal pipe to the length of a piece of plastic tubing is,

⇒ 1 : 8

We have to given that;

He used 1/3 yard of metal pipe divided into 4 equal pieces, and 2 yards of plastic tubing divided into 3 equal pieces.

Hence, Length of piece of metal pipe = 1/4×3 = 1/12

And, length of a piece of plastic tubing is, 2 / 3

So, The ratio of the length of a piece of metal pipe to the length of a piece of plastic tubing is,

⇒ (1/12) : (2/3)

⇒ (1/12) x (3/2)

⇒ 1/8

⇒ 1 : 8

Thus, The ratio of the length of a piece of metal pipe to the length of a piece of plastic tubing is,

⇒ 1 : 8

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The right set of parallel lines is a translation right 10 units of the left set of
parallel lines. Drag the left set of parallel lines and try to move them onto the right set. Are the two sets of parallel lines the
same? What does this mean about how parallel lines change when you translate them?

Answers

The translation of angles and parallel lines is discussed in the following query. Below is a detailed response.

When you translate an item in geometry, you are essentially turning it in a different direction. Consequently, an angle that has been translated is one that has been turned in a new direction.

The photograph from the first selection in section A makes it obvious that the angle remained the same. From the positive to the negative side of the x-axis, it moves seven units.

The angles also don't alter from Part B. It should be noted that a translation or rotation of an angle has no effect on the angles.

What we got is the reflection of the angles from Part C. Due to the fact that they are reflections of one another, this indicates that both angles are equal.

The two parallel sets of lines from Part D will continue to be parallel as long as they are both translated at the same time.

The parallel line that is at an angle to the Y-axis will not meet the parallel line that is at an angle to the x-axis if they are extended infinitely, despite the fact that in each set of parallel lines, the two sets of lines remain equally distant from one another.

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Your question is incomplete but most probably your full question was,  

Could anyone help me with this problem? Thanks you! <3

Evaluate p(2)

Answers

Answer:

  -3

Step-by-step explanation:

You want the value of p(2), given the piecewise definition of function p.

Domain

The function definition divides its domain into three (3) parts. The first step in evaluating the function for a particular value of x is to find the applicable domain.

Here, you want the value of p(x) for x = 2.

The third domain expression (2 ≤ x < 5) includes the value x = 2, so the third function definition applies:

Evaluation

  p(x) = x -5

  p(2) = 2 -5 = -3

The value of p(2) is -3.

__

Additional comment

A graph of the function is attached. The point of interest is circled in green. (2, p(2)) = (2, -3).

#95141404393

2. Given parallelogram ABCD, find the lengths and angles required.
5x+2
A
(2y + 50
(3y +40)
с
A. Find the value of x and the lengths of sides AB and CD. Show your work. (5
points)
Answer:
D
8x-7
B. Find the value of y and m ZA and mZD. Show your work. (hint: ZA and ZD
are straight angles) (5 points)
Answer:

Answers

Applying the properties of a parallelogram, we have:

A. x = 3; AB = 17 units; CD = 17 units

B. y = 18; m<A = 86 degrees; m<D = 94 degrees.

How to Find the Lengths and Angles of the Parallelogram?

Recall that. the opposite sides of a parallelogram are both parallel to each other and also congruent to each other, while its adjacent angles are supplementary.

Therefore, we have:

A. 5x + 2 = 8x - 7

Combine like terms:

5x - 8x = -2 - 7

-3x = -9

x = 3

AB = 5x + 2 = 5(3) + 2 = 17 units

CD = 17 units

B. 2y + 50 + 3y + 40 = 180 [supplementary angles]

Combine like terms:

5y = + 90 = 180

5y = 180 - 90

5y = 90

y = 18

m<A = 2y + 50 = 2(18) + 50 = 86 degrees

m<D = 3y + 40 = 3(18) + 40 = 94 degrees.

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2 3/4 x 5 4/5 = ____.

Answers

2 3/4 can be converted to an improper fraction as (11/4) and 5 4/5 can be converted to an improper fraction as (29/5).

Then, we can multiply these two fractions to get:

(11/4) x (29/5) = (319/20)

This is the product of 2 3/4 and 5 4/5. However, this fraction can be simplified to a mixed number as follows:

(319/20) = 15 19/20

Therefore, 2 3/4 x 5 4/5 = 15 19/20.
Answer is in the picture

a fortune cookie company makes 213 different fortunes. a student eats at a restaurant that uses fortunes from this company and gives each customer one fortune cookie at the end of each meal. what is the largest possible number of times that the student can eat at the restaurant without getting the same fortune four times?

Answers

The possible largest number of times that the student can eat at the restaurant without getting the same fortune four times is 10.

To solve this problem, we need to use the pigeonhole principle. This principle states that if n items are placed into m containers where n > m, then at least one container must contain more than one item.

1. The company makes 213 different fortunes.
2. The student wants to avoid getting the same fortune four times.
3. To calculate the largest possible number of times the student can eat at the restaurant without getting the same fortune four times, we need to multiply the number of different fortunes by 3 (since they can get each fortune up to 3 times).
4. So, 213 different fortunes multiplied by 3 visits per fortune equals 639 total visits (213 * 3 = 639).

Therefore, the student can eat at the restaurant 639 times without getting the same fortune four times.

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The following incomplete R code aims to generate a random number x in the following way. With probability 0.2, we draw it from the Poisson distribution with rate parameter equal to 20; with probability 0.8, we draw it from the Poisson distribution with rate paramter equal to 2. Fill in the two lines of missing code.
n<- sample(1:10, size=1)
x <- 0
if (n <= 2) {
#[fill in the code]
} else {
#[fill in the code]
}
print(x)

Answers

The complete R code to generate a random number x with probability 0.2 is;

n <- sample(1:10, size=1)x <- 0if (n <= 2) {x <- rpois(1, lambda = 20) # draw from Poisson with rate parameter 20} else {x <- rpois(1, lambda = 2) # draw from Poisson with rate parameter 2}print(x)

What is a Poisson distribution in R code?

R is a programming language for statistical computation and graphics that is backed by the R Core Team and the R Foundation for Statistical Computing.

In R programming, the Poisson distribution is used to describe the probability that a certain number of events will take place in a given amount of time or space if they occur at a known constant mean rate.

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