As a manager, it is important to make loan authorization decisions based on financial facts and objective analysis rather than personal biases or gut feelings.
As a responsible manager, it is essential to make loan authorization decisions based on objective criteria rather than personal biases or gut feelings. In the case where you disagree with your subordinate's recommendation to provide a loan to a customer intending to invest in a restaurant, it is important to evaluate the customer's financial facts such as their credit history, business plan, financial projections, and ability to generate sufficient revenue to repay the loan. Personal opinions about the viability of restaurants as investments should not be the sole basis for denial.
Similarly, if your subordinate recommends a loan for a medical operation, your decision should be based on the customer's financial stability, business plan, potential profitability, and risk management strategies.
When evaluating a loan application, it is crucial to focus on financial facts rather than personal opinions about family members. Assess the customer's creditworthiness, financial history, business plan, and repayment capacity to make an informed decision.
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A taxi charges a flat rate of $2.25 plus an additional $0.50 per mile.
Annie has at most $10 to spend on the cab ride. Could Annie travel
18 miles?
Answer:
No, she can't
Step-by-step explanation:
The equation to solve the problem is the following:
y=0.5x+2.25
where x is the # of miles and y is the amount charged based on the flat rate and the additional $0.50 per mile (x).
y should be less than or equal to 10 since that's the maximum Annie can pay.
y[tex]\leq[/tex]10
Substitute x with the number of miles asked (18)
y = 0.5(18) + 2.25 = 11.25
Annie would have to spend $11.25 to travel 18 miles, but she can spend at most $10 ⇒ she can't travel 18 miles.
What are the rectangular coordinates for (4. 24, 135°)?
a. (-3, 3) c. (3, 3)
b. (3, -3) d. (-3, -3)
The rectangular coordinates for (4. 24, 135°) are (-3, 3). Hence, option a is correct.
To convert the given polar coordinates (4.24, 135°) to rectangular coordinates, we use the formulas,
x = r * cos(θ)
y = r * sin(θ)
Plugging in the values,
x = 4.24 * cos(135°)
y = 4.24 * sin(135°)
Evaluating the trigonometric functions for 135°,
x = 4.24 * (-0.7071) ≈ -3
y = 4.24 * 0.7071 ≈ 3
Therefore, the rectangular coordinates for (4.24, 135°) are approximately (-3, 3). So the answer is a. (-3, 3).
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Unit 7: Quantifying Uncertainty: Probability, Binomial, and Normal Distributions
In a mathematics competition, students try
to find the correct answer from five options
in a multiple choice exam of 25 questions.
Alex decides his best strategy is to guess all
the answers.
a. State an appropriate model for the
random variable A = the number of
questions Alex gets correct.
Find the probability that the number of
questions that Alex gets correct is:
b. at most five c at least seven
d no more than three,
e. Write down E(/4) and interpret this
value.
f. Find the probability that Alex scores
more than expected.
g. In the test, a correct answer is awarded
4 points. An incorrect answer incurs a
penalty of 1 point. If Alex guesses all
questions, find the expected value of his
total points for the examination,
h. Four students in total decide to guess all
their answers. Find the probability that
at least two of the four students will get
seven or more questions correct.
a. The appropriate model for the random variable A is the binomial distribution.
b. The probability that Alex gets at most five questions correct can be calculated using the binomial distribution formula.
c. The probability that Alex gets at least seven questions correct can also be calculated using the binomial distribution formula.
d. The probability that Alex gets no more than three questions correct can be calculated using the binomial distribution formula.
e. E(A/4) represents the expected value of A divided by 4, which is the average number of correct answers Alex is expected to get per question.
f. The probability that Alex scores more than expected would depend on the specific values of the expected value and the distribution of the random variable.
g. The expected value of Alex's total points can be calculated by multiplying the expected number of correct answers by 4 and subtracting the expected number of incorrect answers multiplied by 1.
h. The probability that at least two of the four students will get seven or more questions correct would involve calculating the probabilities for each possible combination of students using the binomial distribution and summing them up.
What is probability?
Probability is a measure or quantification of the likelihood of an event occurring. It is a numerical value assigned to an event, indicating the degree of uncertainty or chance associated with that event.
a. The appropriate model for the random variable A, the number of questions Alex gets correct, is the binomial distribution.
b. To find the probability that the number of questions Alex gets correct is at most five, we need to calculate P(A ≤ 5) using the binomial distribution formula.
This involves summing up the probabilities of getting 0, 1, 2, 3, 4, or 5 questions correct. The specific values will depend on the probability of guessing a question correctly.
c. To find the probability that the number of questions Alex gets correct is at least seven, we need to calculate P(A ≥ 7) using the binomial distribution formula. This involves summing up the probabilities of getting 7, 8, 9, ..., 25 questions correct. Again, the specific values will depend on the probability of guessing a question correctly.
d. To find the probability that the number of questions Alex gets correct is no more than three, we need to calculate P(A ≤ 3) using the binomial distribution formula. This involves summing up the probabilities of getting 0, 1, 2, or 3 questions correct.
e. E(A/4) represents the expected value of A divided by 4. The expected value is calculated by multiplying each possible outcome by its probability and summing them up. Dividing by 4 scales down the expected value. The interpretation of E(A/4) is the average number of correct answers Alex is expected to get per question.
f. To find the probability that Alex scores more than expected, we would need to compare the actual number of questions he gets correct to the expected value. The probability would depend on the specific values of the expected value and the distribution of the random variable.
g. If a correct answer is awarded 4 points and an incorrect answer incurs a penalty of 1 point, we can calculate the expected value of Alex's total points by multiplying the expected number of correct answers by 4 and subtracting the expected number of incorrect answers and multiply it by 1.
h. To find the probability that at least two of the four students will get seven or more questions correct, we would need to calculate the probabilities for each possible combination of students getting seven or more questions correct (e.g., 2 students, 3 students, 4 students) using the binomial distribution, and sum them up.
a. The appropriate model for the random variable A is the binomial distribution.
b. The probability that Alex gets at most five questions correct can be calculated using the binomial distribution formula.
c. The probability that Alex gets at least seven questions correct can also be calculated using the binomial distribution formula.
d. The probability that Alex gets no more than three questions correct can be calculated using the binomial distribution formula.
e. E(A/4) represents the expected value of A divided by 4, which is the average number of correct answers Alex is expected to get per question.
f. The probability that Alex scores more than expected would depend on the specific values of the expected value and the distribution of the random variable.
g. The expected value of Alex's total points can be calculated by multiplying the expected number of correct answers by 4 and subtracting the expected number of incorrect answers multiplied by 1.
h. The probability that at least two of the four students will get seven or more questions correct would involve calculating the probabilities for each possible combination of students using the binomial distribution and summing them up.
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2.9
10
Need step by step surface area
The area of the given triangle is 29 square unit.
For the given triangle
Half of altitude = 2.9
And one side = a = 10
Since we know that,
The height of a triangle is the perpendicular line segment traced from the triangle's vertex to the opposing side.
The height forms a right angle with the base of the triangle on which it rests. It is usually known as the height of a triangle and is represented by the letter 'h'.
It is calculated by measuring the distance between the vertex and its opposite side.
Therefore length of altitude be the height of triangle,
Then height = 2x2.9
= 5.8
Since we know that,
Area of triangle = (1/2)x 10 x 5.8
= 29 square unit.
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Amy teaches the four-year-old class at a local preschool. After taking her college psychology class, Amy determines that the majority of her students will be dealing with which psychosocial crisis
Given statement solution is :- If Preschool Psychosocial Crisis: Initiative children are discouraged, criticized, or experience excessive guilt for their actions, they may develop a sense of inadequacy or guilt.
Based on Erik Erikson's theory of psychosocial development, the majority of four-year-old children will be dealing with the psychosocial crisis known as "Initiative vs. Guilt." This stage typically occurs between the ages of three and six.
During this stage, children are eager to take on new tasks and assert their independence. They begin to develop a sense of purpose and initiative, exploring their surroundings, engaging in imaginative play, and expressing their ideas and desires. They may initiate games and activities, make decisions, and demonstrate a growing sense of autonomy.
However, if Preschool Psychosocial Crisis: Initiative children are discouraged, criticized, or experience excessive guilt for their actions, they may develop a sense of inadequacy or guilt. It is crucial for adults, such as teachers and parents, to provide a supportive environment that encourages the child's curiosity, initiative, and independence while setting appropriate limits and boundaries.
In the preschool setting, Amy can foster the resolution of this psychosocial crisis by allowing her students to engage in imaginative play, providing opportunities for decision-making and problem-solving, encouraging their creativity and independence, and offering praise and constructive feedback to build their self-confidence.
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American jurists ____ and ____ defined law in a functional sense as predictions of the way that a court will decide specific legal questions.
American jurists (fill in the names) defined law as predictions of how a court will decide specific legal questions, based on a functional perspective.
American jurists Oliver Wendell Holmes Jr. and Benjamin Cardozo are known for their functionalist approach to defining law. They viewed law not merely as a set of abstract principles or rules, but as a prediction of how courts will decide specific legal questions in practice. According to their perspective, the law should be seen as a dynamic and evolving system that adapts to societal changes and reflects the judgments and decisions of the judiciary. By emphasizing the functional aspect of law, Holmes and Cardozo recognized the importance of considering how legal principles are actually applied and interpreted in real-world scenarios. Their approach acknowledges that the interpretation and application of law by judges can vary and evolve over time, depending on factors such as legal precedent, social context, and the specific facts of the cases before them.
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A plane flies round-trip to Philadelphia. It flies to Philadelphia at 220 miles per hour and back home with a tailwind at 280 miles per hour. If the total flying time takes 6.5 hours, how many miles does the plane fly round trip?
560 miles
800.8 miles
1,300 miles
1,601.6 miles
The one-way distance between the starting point and Philadelphia is approximately 800.8 miles. The round trip distance would be 2D, which is approximately 2 * 800.8. Option D
To determine the total distance the plane flies round trip, we can use the concept of average speed. The average speed is calculated by dividing the total distance traveled by the total time taken.
Let's assume the one-way distance between the starting point and Philadelphia is D miles. Therefore, the round trip distance would be 2D.
When flying to Philadelphia at a speed of 220 miles per hour, the time taken is D/220 hours.
On the return trip, the plane has a tailwind and flies at 280 miles per hour. The time taken to return is D/280 hours.
The total flying time is given as 6.5 hours, so we can set up the equation:
D/220 + D/280 = 6.5
To solve this equation, we can find a common denominator and simplify:
280D + 220D = 6.5 * 220 * 280 500D = 6.5 * 220 * 280 D = (6.5 * 220 * 280) / 500 D ≈ 800.8. Option D is correct.
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Answer:
800.8 miles
Step-by-step explanation:
you want to obtain a sample to estimate a population mean age of the incoming fall term transfer students. based on previous evidence, you believe the population standard deviation is approximately . you would like to be 99% confident that your estimate is within 2.3 of the true population mean. how large of a sample size is required?
We need an approximate sample size of n = 122 to estimate the population means the age of the incoming fall term transfer students, with a population standard deviation of 5.4, a margin of error of 2.3, and a confidence level of 99%. Therefore, the answer is 122.
The formula for calculating the sample size, given the population standard deviation, the desired level of confidence, and the margin of error, is as follows:
n = (zα/2)² * σ² / E²
Where, α is the significance level, zα/2 is the z-score at the α/2 percentile of the standard normal distribution, σ is the population standard deviation, E is the margin of error
To calculate the sample size required to estimate the population means age of the incoming fall term transfer students, with a population standard deviation of 5.4, a margin of error of 2.3, and a confidence level of 99%, we can substitute these values in the formula:n = (zα/2)² x σ² / E²
Where α = 0.01 (since we want a 99% confidence level, we need to subtract 1 from 100 and convert it to a decimal)
E = 2.3σ = 5.4
Using a z-table or a calculator, we can find the z-score at the 0.005 level of the standard normal distribution. The z-score is approximately 2.576.
n = (2.576)² * (5.4)² / (2.3)²
n ≈ 121.28
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Determine if the situation can be modeled by a linear function or an exponential function: Sarah's fees decrease by $5 each time she visits the chiropractor
The situation described can be modeled by a linear function.
In a linear function, the relationship between the variables is constant and can be represented by a straight line on a graph. In this case, as Sarah's visits to the chiropractor increase, her fees decrease by a fixed amount of $5 each time. This means that there is a constant rate of change between the number of visits and the corresponding decrease in fees.
Let's say the number of visits is represented by the variable 'x' and the fees by the variable 'y'. The relationship can be expressed as:
y = mx + b
Where 'm' represents the rate of change (in this case, -5 because the fees decrease by $5) and 'b' represents the initial fee or the y-intercept.
Therefore, the situation of Sarah's fees decreasing by $5 each time she visits the chiropractor can be modeled by a linear function.
Find the volume
Please help quick!!!
Answer:
Step-by-step explanation:
Suppose that a simple linear regression model has been fit, and the following information is available:
SSE = 552
n = 21
sx = 27.45
x with bar on top equal 9
A researcher wants to construct a 95% prediction interval for a new observation at the value x = 6. The fitted value at this point is
y with hat on top equal 29.82.
Find the upper bound of the prediction interval, to two decimal places.
The upper bound of the prediction interval is approximately 41.1.
How can the upper bound of a prediction interval be calculated?The upper bound of a prediction interval in a linear regression model can be calculated by adding the product of the critical value ([tex]\frac{t\alpha }{2}[/tex]) and the standard error (SE) to the fitted value (y). The critical value represents the desired level of confidence, such as 95%, and the standard error quantifies the variability of the model. By combining these components, the upper bound of the prediction interval provides a range within which a new observation is likely to fall, accounting for the uncertainty associated with the regression model.
To find the upper bound of the prediction interval, we can use the formula:
[tex]Upper Bound = y +(\frac{t\alpha }{2})* SE[/tex]
where y is the fitted value at x = 6, t[tex]\alpha[/tex]/2 is the critical value for a 95% confidence level (with degrees of freedom n - 2), and SE is the standard error.
Given information:
SSE = 552
n = 21
sx = 27.45
[tex]\bar x[/tex] = 9
y = 29.82
To calculate the standard error (SE) using the formula:
[tex]SE = \sqrt\frac{SSE}{ (n - 2)}[/tex]
[tex]SE = \sqrt\frac{552}{(21 - 2)}[/tex]
[tex]SE = \sqrt\frac{552}{ 19}[/tex]
SE ≈ 5.39
To find the critical value t[tex]\alpha[/tex]/2 for a 95% confidence level with degrees of freedom (n - 2). Since n = 21, degrees of freedom = 21 - 2 = 19.
Using statistical tables or a calculator, the tα/2 value for a 95% confidence level with 19 degrees of freedom is approximately 2.093.
Now, we can calculate the upper bound of the prediction interval:
[tex]Upper Bound = y + \frac{t\alpha }{2} * SE[/tex]
Upper Bound = 29.82 + (2.093 *5.39)
Calculating:
Upper Bound ≈ 29.82 + 11.28
Upper Bound ≈ 41.1
Therefore, the upper bound of the prediction interval, rounded to two decimal places, is approximately 41.1
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Lauren is going to a carnival that has games and rides. Each game costs $2 and each
ride costs $4.75. Lauren spent $50 altogether at the carnival and the number of rides
she went on is 2 more than the number of games she played. Write a system of
equations that could be used to determine the number of games Lauren played and
the number of rides Lauren went on. Define the variables that you use to write the
system.
Let
Let
System of Equations:
pls help!!
Using first the customary ruler and then the metric
ruler, measure the length of the side of the wooden
block. remember to estimate to one place value
beyond the rulers' gradations.
1 3/32 in inches
y 2.78 cm centimeter
complete
calculate ratios for the number of centimeters in
an inch and the number of inches in a centimeter:
cm in or in/cm
1
hength
done
The number of centimeters in an inch is approximately 2.54, while the number of inches in a centimeter is approximately 0.39.
Using the customary ruler, the length of the side of the wooden block is measured as 1 3/32 inches.
This means the length is slightly over 1 inch but less than 1 1/8 inches.
To estimate one place value beyond the ruler's gradations, we can round the measurement to 1.1 inches.
Using the metric ruler, the length is measured as 2.78 centimeters. This measurement provides a more precise value in the metric system.
To calculate the ratio between centimeters and inches, we find that there are approximately 2.54 centimeters in an inch.
This means that for every 1 inch, there are approximately 2.54 centimeters.
Conversely, there are approximately 0.39 inches in a centimeter.
This means that for every 1 centimeter, there are approximately 0.39 inches.
In conclusion, the length of the wooden block's side is measured as 1.1 inches using the customary ruler and 2.78 centimeters using the metric ruler.
The conversion ratios between centimeters and inches are approximately 2.54 cm/inch and 0.39 inch/cm, respectively.
These ratios can be used to convert measurements between customary and metric systems.
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Suppose that A is a subset of the reals. Select one: a. A is countably infinite b. A is uncountable c. A is finite d. Can't tell how big A is.
The correct answer is: d. Can't tell how big A is.
Based on the given information, can we determine the size of the subset A in the real numbers?
No, we cannot determine the size of subset A in the real numbers based on the given information. The size of A could be countably infinite, uncountable, finite, or we may not have enough information to determine its size.
To determine the size of subset A in the real numbers, we can consider the given options.
a. A is countably infinite:
This means that A can be put in a one-to-one correspondence with the set of natural numbers (counting numbers). In other words, A has the same cardinality as the set of natural numbers.
b. A is uncountable:
This means that A cannot be put in a one-to-one correspondence with the set of natural numbers. A set is uncountable if its cardinality is greater than that of the natural numbers.
c. A is finite:
This means that A contains a finite number of elements.
d. Can't tell how big A is:
This indicates that we do not have enough information to determine the size of A based on the given information.
Without any specific information about the subset A, we cannot determine its size.
Therefore, the correct answer is d. Can't tell how big A is.
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Jeff's roof is three times larger than Monica's roof. What is the measurement of the side where there is a question mark in the picture below? 24.9 ft. Jeff's Roof Monica's Roof OA) 8.1 ft OB) 8.3 ft OC) 8.7 ft OD) 12.5 ft
The value of the side in Monica's roof that is marked with a question mark would be = 8.3ft. That is option B.
How to determine the missing length of Monica's roof?To determine the missing length of Monica's roof the following steps should be taken as follows:
Jeff's roof = 3× Monica's roof
That is the dimensions of Monica's roof is three times Jeff's roof
Therefore, the missing length of Monica's roof = 24.9/3 = 8.3ft.
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Answer: The person above me is correct!
B) 8.3
Step-by-step explanation: 24.9 divided by 3 equals 8.3!
Explain the meaning of the scale 1 :100 in words
Answer:
-> The scale 1:100 means that every measurements in the plan will probably represent a size of 100 times larger in real life.
-> For example:
Adam is drawing a plan of an office room with a scale of 1:100. In the plan, it is shown that the width of the room is 0.8 feet. We then proceed to calculate the width in real life as follow:
0.8 × 100 = 80 ft
=> So the width of the office room is 80 ft.
The most valid and reliable test of this hypothesis would include an experimental group of pine seeds that was recovered from a fire area and pine seeds that were
To test the hypothesis, a valid and reliable experiment should include two groups of pine seeds: one group recovered from a fire area and another group that was not affected by fire.
In order to test the hypothesis effectively, a controlled experiment with two groups is necessary. The experimental group would consist of pine seeds that were recovered from a fire area, while the control group would include pine seeds that were not affected by fire.
By comparing the growth and development of these two groups of pine seeds under similar conditions, it would be possible to determine the impact of fire on the germination and growth of the seeds. The experiment should ensure that all other variables are kept constant between the two groups, except for the presence or absence of fire.
This experimental design would provide a valid and reliable test of the hypothesis by allowing for a direct comparison between the two groups of seeds. It would help determine whether the fire has any significant effect on the germination and growth of pine seeds.
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To conduct a valid and reliable test of the hypothesis, an experimental group of pine seeds recovered from a fire area should be compared with a control group of pine seeds that were not affected by fire?
In time-series data, _____ are regularly repeating upward or downward movements in series values that can be tied to recurring events.
A) seasonal variations
B) seasonal relatives
C) naive variations
D) exponential relatives
The answer is: A) seasonal variations, Seasonal variations in time-series data refer to regularly repeating upward or downward movements tied to recurring events. hese patterns occur over fixed periods, such as daily, weekly, monthly, or yearly cycles.
Determine the seasonal variations?In time-series data, seasonal variations are regularly repeating upward or downward movements in series values that can be tied to recurring events.
These variations occur over a fixed period, such as daily, weekly, monthly, or yearly cycles. Seasonal variations can be observed in various phenomena, including sales data, weather patterns, and economic indicators.
By identifying and analyzing seasonal variations, patterns and trends can be detected, helping to make predictions and informed decisions.
Seasonal variations are commonly represented using seasonal indices or seasonal adjustment techniques to remove the effects of seasonality and better understand the underlying trends in the data.
Understanding and accounting for seasonal variations are crucial for accurate forecasting and decision-making in various fields.
Hence, the correct option is (A) seasonal variations.
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What’s the answer guys I need it quick
Answer: its c obviously
Step-by-step explanation:
its easy
Find the greatest common factor of 54gh, 72g
The greatest common factor the expressions is 2g
Finding the greatest common factor the expressionsFrom the question, we have the following parameters that can be used in our computation:
54gh, 72g
The terms of the above expressions are
54gh and 72g
The terms of the above expressions have common factors g and 2
So, we have
2g is common in 54gh and 72g
Hence, the greatest common factor the expressions is 2g
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A triangle has sides of lengths 6x, 8x + 2, and 10x. If the perimeter of the triangle is 122, what is the length of the longest side?
The length of the longest side is 50 units based on the stated length of sides and perimeter.
As per the relation between sides of triangle and it's perimeter, the formula is -
Side + side + side = perimeter
Keeping the values in formula to find the value of x
6x + 8x + 2 + 10x = 122
Performing addition on Left Hand Side of the equation
24x + 2 = 122
Rearranging the equation
24x = 122 - 2
Subtract the values
24x = 120
x = 120/24
Performing division on Right Hand Side
x = 5
Length of each side = 6×5 + ((8×5)+2), 10×5
Length = 30, 42, 50
Hence, the length of the longest side is 50.
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PLEASE HELP 30 points!!!!
One of the logos meets the building requirements. Which? EXPLAIN!!!!
The logo that fits the requirement is the triangle logo i.e. logo 2
Calculating the area and the width in meters?From the question, we have the following parameters that can be used in our computation:
The figures that represent the logos
For the triangle logo, we have
Area = 1/2 * 10 * 12
Convert units to meters using the scale
Area = 1/2 * (0.3 * 10) * (0.3 * 12)
Evaluate
Area = 5.4 sq meters
Also, we have
Width = 10 cm * 0.3
Width = 3.0 meters
For the logo 1, we have
Area = 2 * 8 * 3 + 6 * (12 - 2 * 3)
Convert units to meters using the scale
Area = 2 * 8 * 0.3 * 3 * 0.3 + 6 * 0.3 * (12 * 0.3 - 2 * 3 * 0.3)
Evaluate
Area = 7.56 sq meters
Also, we have
Width = 12 cm * 0.3
Width = 3.6 meters
Hence, the logo that fits the requirement is the triangle logo i.e. logo 2
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Work out the area of the circle below. Give your answer to 1 d.p. 16.9 cm
If the valve A is opened and the flowing water is under a gauge pressure of 240 psi , determine the longitudinal stress developed in the wall of the pipe.
If the flowing water is under a gauge pressure of 240 psi, the longitudinal stress developed in the wall of the pipe would be approximately 866,400 pounds per square foot (psf).
What is longitudinal stress?Axial stress is another name for longitudinal stress. Axial stress, also referred to as longitudinal stress, is a sort of stress that runs along the object's length, or along the material's longitudinal axis.
To determine the longitudinal stress developed in the wall of the pipe, we need to know the diameter of the pipe and the material it is made of. The longitudinal stress can be calculated using the formula:
Longitudinal Stress = (Pressure × Diameter) / (2 × Wall Thickness)
Let's assume that we have a pipe with a diameter of 10 inches (0.8333 feet) and a wall thickness of 0.2 inches.
First, we need to convert the gauge pressure from psi to pounds per square foot (psf):
240 psi = 240 * 144 psf = 34,560 psf
Substituting the values into the formula:
Longitudinal Stress = (34,560 psf × 0.8333 ft) / (2 × 0.2 inches)
Converting the wall thickness to feet:
0.2 inches = 0.2/12 ft = 0.0167 ft
Calculating the longitudinal stress:
Longitudinal Stress = (34,560 psf × 0.8333 ft) / (2 × 0.0167 ft)
Longitudinal Stress ≈ 866,400 psf
Therefore, if the flowing water is under a gauge pressure of 240 psi, the longitudinal stress developed in the wall of the pipe would be approximately 866,400 pounds per square foot (psf).
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When a piece of aluminum is placed in a 25 mL graduated cylinder that contains 10.0 mL of water, the water level rises to 13.5mL. What is the mass of the aluminum if the density is 2.69g/mL
The mass of the aluminum can be calculated using the change in volume and the density. the mass of the aluminum is approximately 9.415 grams.
The change in volume when the aluminum is added to the graduated cylinder is equal to the volume of the aluminum. The change in volume is obtained by subtracting the initial volume (10.0 mL) from the final volume (13.5 mL), resulting in 3.5 mL.
Since the density of aluminum is given as 2.69 g/mL, we can use this information to calculate the mass of the aluminum. The density of a substance is defined as the mass per unit volume. Therefore, we can multiply the density by the volume to obtain the mass.
Using the given density of 2.69 g/mL and the volume of 3.5 mL, the mass of the aluminum can be calculated as follows:
Mass = Density x Volume = 2.69 g/mL x 3.5 mL = 9.415 g
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A solution of quinine fluoresces with an intensity of 3.7 units. When the concentration of quinine is increased by 4.0 mg/L it fluoresces with 6.5 units. (a) What is the concentration of quinine in mg/L
The concentration of quinine in mg/L can be determined by calculating the difference in fluorescence intensity and using the given information. In this case, the concentration of quinine is approximately 6.5 mg/L.
The relationship between the concentration of quinine and its fluorescence intensity can be described using a linear equation. By comparing the fluorescence intensities at two different concentrations, we can determine the concentration of quinine in mg/L.
The change in fluorescence intensity is given by:
ΔI = I2 - I1
In this case, ΔI = 6.5 units - 3.7 units = 2.8 units.
ΔI = mΔC
where m is the slope of the line, representing the change in intensity per unit change in concentration.
Rearranging the equation, we have:
m = ΔI / ΔC
Substituting the values, we get:
m = 2.8 units / 4.0 mg/L
m ≈ 0.7 units/mg/L
Now, we can find the concentration of quinine by rearranging the linear equation:
ΔC = ΔI / m
ΔC = 2.8 units / 0.7 units/mg/L
ΔC ≈ 4.0 mg/L
Therefore, the concentration of quinine in mg/L is approximately 6.5 mg/L.
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A fountain is made up of two semicircles and a quarter circle. Find the perimeter of the fountain. Round your answer to the nearest tenth
The perimeter of the fountain is approximately 28.3 times the radius (r).
To find the perimeter of the fountain, we need to calculate the combined lengths of the two semicircles and the quarter circle.
Let's assume the radius of the semicircles is "r" and the radius of the quarter circle is "r/2" (since the quarter circle is half the size of the semicircle).
The perimeter of a semicircle is given by half the circumference of a full circle:
Perimeter of a semicircle = (1/2) × 2πr = πr
The perimeter of the quarter circle is given by one-fourth the circumference of a full circle:
Perimeter of a quarter circle = (1/4) × 2π(r/2) = (1/4) × πr = πr/4
Since we have two semicircles and one quarter circle, the total perimeter of the fountain is:
Total Perimeter = 2 × (Perimeter of a semicircle) + (Perimeter of a quarter circle)
Total Perimeter = 2πr + πr/4
Total Perimeter = (8πr + πr)/4
Total Perimeter = 9πr/4
Now, we need to round the answer to the nearest tenth. The value of π (pi) is approximately 3.14159. Therefore, we can substitute this value to get an approximate answer:
Total Perimeter ≈ 9 × 3.14159 × r/4
Total Perimeter ≈ 28.27431 × r
So, the perimeter of the fountain is approximately 28.3 times the radius (r).
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what is 14 + 54+56+65 divided by 2
Answer:
94.5
Step-by-step explanation:
14 + 54 + 56 + 65 = 189
189 ÷ 2 = 94.5
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Answer:
GF = 25
Step-by-step explanation:
Δ DFE and Δ GFH are similar , by the AA postulate , then the ratios of corresponding sides are in proportion , that is
[tex]\frac{GF}{DF}[/tex] = [tex]\frac{FH}{FE}[/tex] ( substitute values )
[tex]\frac{GF}{40}[/tex] = [tex]\frac{GF+5}{48}[/tex] ( cross- multiply )
48 GF = 40(GF + 5) ← distribute parenthesis
48 GF = 40 GF + 200 ( subtract 40 GF from both sides )
8 GF = 200 ( divide both sides by 8 )
GF = 25
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