The manufacturing cycle efficiency (MCE) of Navems for its elevators is 38.6%
The correct answer choice is option A.
What is Navems manufacturing cycle efficiency (MCE) for its elevators?Manufacturing cycle efficiency (MCE) = Value-added production time / Total cycle time.
Value-added production time;
Inspection time = 12 days
Process time = 5 days
Total = 17 days
Total cycle time:
Wait time = 12 days
Inspection time = 12 days
Process time = 5 days
Move time = 6 days
Queue time = 9 days
= 44 days
Hence,
Manufacturing cycle efficiency (MCE) = Value-added production time / Total cycle time × 100
= 17 days / 44 days × 100
= 38.63636363636363
Approximately,
38.6%
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100 POINTS PLEASE HELP FAST
Select the correct answer.
The weight of a radioactive isotope was 96 grams at the start of an experiment. After one hour, the weight of the isotope was half of its initial weight. After two hours, the weight of the isotope was half of its weight the previous hour. If this pattern continues, which of the following graphs represents the weight of the radioactive isotope over time?
The top left graph represents the weight of the radioactive isotope over time.
How to define an exponential function?An exponential function has the definition presented according to the equation as follows:
[tex]y = ab^x[/tex]
In which the parameters are given as follows:
a is the value of y when x = 0.b is the rate of change.The parameter values for the function in this problem are given as follows:
a = 96, b = 0.5.
Hence the function is given as follows:
[tex]y = 96(0.5)^x[/tex]
Two points on the graph of the function are given as follows:
(1,48) and (2, 24).
Hence the top left graph represents the weight of the radioactive isotope over time.
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Answer:
Graph W
Step-by-step explanation:
The given information describes a radioactive decay process, where the weight of the isotope decreases by half at regular intervals. This type of decay is characteristic of exponential decay.
Based on the description, the graph that represents the weight of the radioactive isotope over time would be a decreasing exponential curve, where the y-axis represents the weight of the isotope (in grams), and the x-axis represents time (in hours).
The initial weight of the isotope is 96 grams, and after each subsequent hour, the weight becomes half of what it was in the previous hour. Therefore, the correct graph would start at 96 grams (the initial weight when x = 0) and then decrease by half every hour. It would be a curve that gets closer and closer to zero but never quite reaches it.
Initial weight: 96 grams
After 1 hour: 96 / 2 = 48 grams
After 2 hours: 48 / 2 = 24 grams
After 3 hours: 24 / 2 = 12 grams
After 4 hours: 12 / 2 = 6 grams
After 5 hours: 6 / 2 = 3 grams
So, the points on the graph would be:
(0, 96), (1, 48), (2, 24), (3, 12), (4, 6), (5, 3)Therefore, the graph that represents the weight of the radioactive isotope over time is Graph W.
The length of a classroom is 34 feet. What is this measurement in yards and feet?
Answer:
11 yards and 3 feet
What is the meaning of "there exists x ∈ S ∖ m. Then m ⊊ m ∪ {x} ∈ X; a contradiction"?
The statement "there exists x ∈ S ∖ m" means that there exists an element x that belongs to the set S but does not belong to the set m. In other words, x is an element that is present in S but is not present in m.
The phrase "m ⊊ m ∪ {x} ∈ X" states that the set m is a proper subset of the set m ∪ {x}, and this union belongs to the set X. This implies that the set m ∪ {x} contains all the elements of m along with the additional element x.
The phrase "a contradiction" indicates that the statement or assumption being made leads to a logical inconsistency or contradiction. In this context, the contradiction arises from the fact that the assumption that x is not in m contradicts the statement that m ∪ {x} is a proper superset of m.
Overall, the given statement implies that the existence of an element x in S, which is not in m, leads to a contradiction when considering the relationship between m and m ∪ {x}.
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Which tables could be used to verify that the functions they represent are inverses of each other? Select two options.
2
-6-10-14
0
0
0
0
X
Y
X
y
-5 -3
4
0
X
y
-14-10-6
0
-4 -2 0 3
X
-5
y -14 -10 -6
X -14
y 4
-5
-4
0
-10
2
-3 0 3 9
0
4
-3
0
4
4
5
-6
4
0 -3 -5
0 2
4
6 10
Answer:
A, D
Step-by-step explanation:
You want to identify the tables that represent inverse functions.
Inverse functionFor every ordered pair (x, y) of a function, there is an ordered pair (y, x) of its inverse function.
ApplicationThe first table shown has an ordered pair (x, y) = (4, -14). That means its inverse function must have the ordered pair (-14, 4). The two tables with that characteristic are shown in the attachment.
<95141404393>
Monthly deposits of $480 were made at the end of each month for eight years. If interest is 4.5% compounded semi-annually, what amount can be withdrawn immediately after the last deposit?
The amount that can be withdrawn immediately after the last deposit is approximately $8,876.80.
To solve this problemWe can use the formula for the future value of an ordinary annuity. The formula is given by:
[tex]FV = P * [(1 + r/n)^(^n^t^) - 1] / (r/n)[/tex]
Where
Future value is represented by FVmonthly deposit amount by Pannual interest rate by rnumber of compounding periods by n years by tGiven:
P = $480 (monthly deposit)r = 4.5% = 0.045 (annual interest rate)n = 2 (compounded semi-annually)t = 8 yearsPlugging in the values, we have:
[tex]FV = 480 * [(1 + 0.045/2)^(^2*^8^) - 1] / (0.045/2)[/tex]
Calculating the expression inside the brackets
[tex](1 + 0.045/2)^(^2^*^8^) = 1.0225^1^6[/tex]≈ 1.4197
Substituting this value back into the formula:
FV = 480 * (1.4197 - 1) / (0.045/2)
FV = 480 * 0.4197 / 0.0225
FV ≈ $8,876.80
So, the amount that can be withdrawn immediately after the last deposit is approximately $8,876.80.
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The mean age of 7 boys is 12yrs. What is the total age of the boys?
Answer:
total age = 84 years
Step-by-step explanation:
mean is calculated as
mean = [tex]\frac{total}{count}[/tex]
here count = 7 and mean = 12 , then
[tex]\frac{total}{7}[/tex] = 12 ( multiply both sides by 7 )
total = 7 × 12 = 84 years
help please!!!!!!!!!!
Answer:
The interval from -12 to -7
The interval from 6 to 12.
Step-by-step explanation:
The equation is log(x + 9) + log(x 9) = log[(x + 9)(x 9)]. = log(x² − 81)
Here is the equation:
log(x² - 81) = 0.47712
This can be expressed in exponential form:
x² - 81 = 10^(0.47712)
x² = 81 + 3.02343
x² = 84.02343
x ≈ ± 9.1658
The answers are therefore x -9.1658 and x 9.1658.
These intervals are where these solutions occur:
The answer, x -9.1658, can be found in the range from -12 to -7.
- The answer x = 9.1658 is found in the range of 6 to 12.
The appropriate choices are:
- The range between -7 and -12; - The range between 6 and 12.
For questions 1-3, calculate the full payment required on the payment date that reduces the balance on the invoice to zero. Assume this is not a leap year. Invoice Amount 2. 3. Invoice Date $136,294.57 January 14 $98,482.75 $48,190.38 September 28 February 21 Invoice Terms 2/10, n/30 3/10, 2/20, 1/30, n/50 EOM 4/15, 3/40, n/60 ROG Receipt of Goods Date January 10 October 3 February 27 Date of Full Payment January 22 October 19 April 3
(1) The full payment required on January 22 to reduce the balance on the invoice to zero is $136,294.57.
(2)The full payment required on October 19 to reduce the balance on the invoice to zero is $98,482.75.
(3)The full payment required on April 3 to reduce the balance on the invoice to zero is $48,190.38.
The calculation of the full payment required takes into account the terms specified on the invoice. In the first scenario, the invoice terms are 2/10, n/30, which means that a 2% discount can be applied if payment is made within 10 days, otherwise, the full payment is due within 30 days.
Therefore, the full payment is calculated as the invoice amount minus the discount. Similarly, for the second scenario, the invoice terms are 3/10, 2/20, 1/30, and n/50, which involve multiple discounts based on different payment dates.
The full payment is determined by applying the applicable discounts. Finally, in the third scenario, the invoice terms are ROG (Receipt of Goods), and the full payment is due by April 15. Hence, the full payment required on the specified date is calculated.
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Jerry drew AJKL and AMNP so that ZK ZN, ZL 2P, JK= 6, and
MN = 18. Are AJKL and AMNP similar? If so, identify the similarity postulate
or theorem that applies.
A. Similar - SAS
B. Similar - AA
C. Similar - SSS
D. Cannot be determined
The two considered triangles JKL and MNP are similar by the AA rule of similarity as the two angles that is ∠K = ∠N and ∠L = ∠P are there.
What are similar triangles?Similar triangles are triangles that have the same shape, but their sizes may vary. All equilateral triangles, squares of any side lengths are examples of similar objects. In other words, if two triangles are similar, then their corresponding angles are congruent and corresponding sides are in equal proportion. We denote the similarity of triangles here by ‘~’ symbol.
It is given that two triangles that are JKL and MNP are considered in which:
∠K = ∠N∠L = ∠PJK = 6MN = 18Now, from ΔJKL and ΔMNP, we have
∠K = ∠N (Given in the question)
∠L = ∠P(Given in the question)
Thus, by AA rule of similarity,
ΔJKL is similar to ΔMNP.
Therefore, the two considered triangles JKL and MNP are similar by the AA rule of similarity as the two angles that is ∠K = ∠N and ∠L = ∠P are there.
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help me please i would appreciate it so so much
Step-by-step explanation:
I am going to assume that = sign should be the ≅.
For the Statements :
1. AB=DC
AB ll DC
2. Line AC is the transversal of AB and CD
3. Angle BAC ≅ Angle DCA
4. Angle BCA ≅ Angle DAC
5. Line AC=Line AC
6. Triangle ABC ≅ Triangle CDA
For the Reasons:
1. Given
2. Definition of a transversal
3. Alternate Interior Angles
4. Alternate Interior Angles
5. Reflexive Property
6. ASA
In 2020 there were 18,700 students at college a with a projected enrollment increase of 500 students per year in the same year there were 26,200 soon as a College been with a projected enrollment decline of 1000 students per year according to these projections when will the colleges have the same enrollment what will be the Roman each college at that time
In 5 years from 2020, the two colleges will have the same enrollment and At that time, both colleges will have an enrollment of 21,200 students.
To determine when the two colleges will have the same enrollment, we can set up an equation based on the given information.
Let's assume "x" represents the number of years from 2020.
For College A, the projected enrollment can be expressed as:
Enrollment_A = 18,700 + 500x
For College B, the projected enrollment can be expressed as:
Enrollment_B = 26,200 - 1000x
To find when the two enrollments will be equal, we set Enrollment_A equal to Enrollment_B and solve for "x":
18,700 + 500x = 26,200 - 1000x
Combining like terms:
1500x = 7,500
Dividing both sides by 1500:
x = 5
Therefore, in 5 years from 2020, the two colleges will have the same enrollment.
To find the enrollment at that time, we substitute "x = 5" into either of the enrollment equations. Let's use Enrollment_A:
Enrollment_A = 18,700 + 500(5)
Enrollment_A = 18,700 + 2500
Enrollment_A = 21,200
At that time, both colleges will have an enrollment of 21,200 students.
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5,10,15,20,25 what is the common difference
Answer:
The common difference in the given sequence is 5.
Step-by-step explanation:
The common difference in the sequence is 5 because they all add by 5 each time for example 5 + 5= 10 and 10+5=15
(a) From Latoya's results, compute the experimental probability of rolling a 1 or 6.
(b)Assuming that the cube is fair, compute the theoretical probability of rolling a 1 or 6.
(c)Assuming that the cube is fair, choose the statement below that is true.
A. The experimental and theoretical probabilities must always be equal.
B. As the number of rolls increases, we expect the experimental and theoretical probabilities to
become closer, though they might not be equal.
C. As the number of rolls increases, we expect the experimental and theoretical probabilities to
become farther apart.
(a) To compute the experimental probability of rolling a 1 or 6 from Latoya's results, we need to determine the number of times a 1 or 6 was rolled and divide it by the total number of rolls Latoya made.
Let's assume that Latoya rolled the dice 100 times and obtained 20 1's and 10 6's. The total number of successful outcomes (rolling a 1 or 6) is 20 + 10 = 30.
Therefore, the experimental probability of rolling a 1 or 6 is 30/100 = 0.3 or 30%.
(b) Assuming the cube is fair, the theoretical probability of rolling a 1 or 6 can be determined by considering the favorable outcomes (rolling a 1 or 6) divided by the total possible outcomes (rolling any number from 1 to 6).
Since there are two favorable outcomes (1 and 6) out of six possible outcomes (1, 2, 3, 4, 5, 6), the theoretical probability is 2/6 = 1/3 or approximately 0.3333.
(c) The correct statement is B. As the number of rolls increases, we expect the experimental and theoretical probabilities to become closer, though they might not be equal. This is due to the law of large numbers, which states that as more trials are conducted, the experimental probability tends to converge towards the theoretical probability. However, it is not necessary for them to be exactly equal. Random variations can cause some discrepancy, but with a larger number of rolls, the experimental probability should approach the theoretical probability more closely.
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the midpoint of a and b is (-3,-5) and point a is (-.5,0) what is point b
Therefore, the coordinates of point B are (-5.5, -10).
To find the coordinates of point B, we can use the midpoint formula. The midpoint formula states that the coordinates of the midpoint between two points (x1, y1) and (x2, y2) are given by:
Midpoint = ((x1 + x2) / 2, (y1 + y2) / 2)
We are given the midpoint coordinates as (-3, -5) and the coordinates of point A as (-0.5, 0). Let's assume the coordinates of point B as (x, y). Plugging the known values into the midpoint formula, we have:
(-3, -5) = ((-0.5 + x) / 2, (0 + y) / 2)
Simplifying, we get:
-3 = (-0.5 + x) / 2 ... (1)
-5 = y / 2 ... (2)
From equation (2), we can solve for y:
y = -5 * 2
y = -10
Now, substituting this value of y in equation (1), we can solve for x:
-3 = (-0.5 + x) / 2
-6 = -0.5 + x
x = -6 + 0.5
x = -5.5
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Does the point 8, 0 satisfy the equation Y equals 5X +8
Work Shown:
y = 5x+8
0 = 5*8+8
0 = 40+8
0 = 48
The last equation is false, so the original equation is false when x = 8 and y = 0. This means the point (8,0) is NOT found on the line.
Visual confirmation is shown below.
7
Drag each tile to the correct box.
h
Using the order of operations, what are the steps for solving this expression?
8 x 3÷ (42-13) +5² +4 × 3
Arrange the steps in the order in which they are performed.
Let's arrange the steps for solving the expression using the order of operations (also known as PEMDAS/BODMAS):
Subtract: (42-13) = 29
Multiply: 4 × 3 = 12
Exponentiation: 5² = 25
Multiply: 8 × 3 = 24
Divide: 24 ÷ 29 (result from step 1) = 0.8276 (rounded to 4 decimal places)
Add: 0.8276 (result from step 5) + 25 (result from step 3) = 25.8276 (rounded to 4 decimal places)
Add: 25.8276 (result from step 6) + 12 (result from step 2) = 37.8276 (rounded to 4 decimal places)
The steps should be performed in the following order:
Subtract -> Multiply -> Exponentiation -> Multiply -> Divide -> Add -> Add
So the steps should be performed in this order to evaluate the expression correctly.
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the equation below represents the total price of Michigan State University per semester where c represents the number of classes and t represents the total cost for the semester including a one time fee for room and board
The equation that represents the total price of Michigan State University per semester is determined by the number of classes taken (c) and the total cost for the semester, which includes a one-time fee for room and board (t).
The equation captures the relationship between these variables and calculates the overall cost for a student attending the university. It is important to note that the equation provides a quantitative representation and does not take into account other factors such as scholarships, financial aid, or additional expenses. Therefore, the equation serves as a useful tool for estimating the total cost of attending Michigan State University, allowing students and their families to plan and budget accordingly for their education.For such more question on equation
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Work out the area of the trapezium below.
20 cm
16 cm
19 cm
10 cm
The area of the trapezium with bases 20cm and 10cm and a height of 16cm is 240 square centimeters.
What is the area of the trapezium?A trapezium is simply a two-dimensional quadrilateral that has one pair of parallel sides.
The area of a trapezium is expressed as:
Area = 1/2 × ( a + b ) × h
Where a and b are the base measure and h is the height.
From the diagram:
Base a = 20 cm
Base b = 10 cm
Height h 16 cm
Area = ?
Plug the values into the above formula and solve for the area:
Area = 1/2 × ( a + b ) × h
Area = 1/2 × ( 20 + 10 ) × 16
Area = 1/2 × ( 30 ) × 16
Area = 15 × 16
Area = 240 cm²
Therefore, the area of the trapezium is 240 square centimeters.
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There arw 8 social studies books on the back table. This is 1/3 of the total number of social studies books in the classroom. Write the total number of Social studies books in the classroom.
Answer:
24 u jus gotta multiply by 3 cuz it is 1 out of 3
Step-by-step explanation: hi :)
−3x^2 +2−11x=− 4x2− 3 in standard form
Answer:
x² - 11x + 5 = 0
Step-by-step explanation:
the standard form of a quadratic equation is
ax² + bx + c = 0 ( a ≠ 0 )
given
- 3x² + 2 - 11x = - 4x² - 3 ( add 4x² to both sides )
x² + 2 - 11x = - 3 ( add 3 to both sides )
x² + 5 - 11x = 0 , that is
x² - 11x + 5 = 0 ← in standard form
Fill in the missing values below one at a time to find the quotient when x^3 - x^2 - 3x + 2 is divided by x - 2.
Therefore, the quotient when x³ - x² - 3x + 2 is divided by x - 2 is x² - 2x - 5 with a remainder of -3.
To find the quotient when x³ - x² - 3x + 2 is divided by x - 2, we will use the long division method. Here is the solution:
Step 1: The first term of the quotient is x². Multiply x² by x - 2 to get x³ - 2x². Subtract this product from x³ - x² to get: x² - 3x² = -2x²
Step 2: Bring down the next term of the dividend, which is -3x. The new dividend is -2x² - 3x.
Step 3: The second term of the quotient is -2x. Multiply -2x by x - 2 to get -2x² + 4x. Subtract this product from -2x² - 3x to get -5x.
Step 4: Bring down the last term of the dividend, which is +2. The new dividend is -5x + 2. Step 5: The third term of the quotient is -5. Multiply -5 by x - 2 to get -5x + 10. Subtract this product from -5x + 2 to get -3.
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Mushrooms have a yield factor of 90%. A 15 pound flat of mushrooms cost $29.85. What is the ap,cost per pound?
Answer: $2.21
Step-by-step explanation:
To calculate the cost per pound of mushrooms, we need to use the yield factor given in the question. The yield factor tells us the percentage of the total weight of the mushrooms that can be used for cooking or sale. Here, the yield factor is 90%, which means that 90% of the weight of the mushrooms can be used. Let's begin with the calculation:
First, we need to find out how much of the weight of the mushrooms is usable: 90% of 15 pounds = 0.9 x 15 = 13.5 pounds
Now, we can find out the cost per pound of the mushrooms:
Cost per pound = Total cost / Total usable weight
Total cost = $29.85
Total usable weight = 13.5 pounds
Therefore, the cost per pound of mushrooms = $29.85 / 13.5 pounds ≈ $2.21 per pound
Therefore, the cost per pound of mushrooms is $2.21 per pound.
Which expression represents the quotient of this model?
X
X
X
The expression which represents the quotient of the model is x² + 5x.
The correct answer choice is option B.
Which expression represents the quotient of this model?The quotient of a number is the number resulting from the division of one number by another.
There is one x²
There are 5 x
Hence, the quotient of the expression is x² + 5x
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The number of subsets for the set in this problem is given as follows:
16 subsets.
How to obtain the number of subsets in a set?Considering a set with n elements, the number of subsets in the set is the nth power of 2, that is:
[tex]2^n[/tex]
The set in this problem is given as follows:
{C, D, E, F}.
Hence the cardinality of the set is given as follows:
n = 4.
Then the number of subsets is given as follows:
[tex]2^4 = 16[/tex]
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Solve (t-3)^2=6
The arrow is at a height of 48 ft after approx. ___ s and after ___ s.
The arrow is at a height of 48 ft after approx. 3 - √6 s and after 3 + √6 s.
To find the time it takes for the arrow to reach a height of 48 ft, we can use the formula for the height of the arrow:
s = v0t - 16t^2
Here, s represents the height of the arrow, v0 is the initial velocity, and t is the time.
Given that the initial velocity, v0, is 96 ft/s and the height, s, is 48 ft, we can set up the equation:
48 = 96t - 16t^2
Now, let's solve this equation to find the time it takes for the arrow to reach a height of 48 ft.
Rearranging the equation:
16t^2 - 96t + 48 = 0
Dividing the equation by 16 to simplify:
t^2 - 6*t + 3 = 0
We now have a quadratic equation in the form of at^2 + bt + c = 0, where a = 1, b = -6, and c = 3.
Using the quadratic formula:
t = (-b ± √(b^2 - 4ac)) / (2a)
Plugging in the values:
t = (6 ± √((-6)^2 - 413)) / (2*1)
t = (6 ± √(36 - 12)) / 2
t = (6 ± √24) / 2
Simplifying the square root:
t = (6 ± 2√6) / 2
t = 3 ± √6
Therefore, the arrow reaches a height of 48 ft after approximately 3 + √6 seconds and 3 - √6 seconds.
In summary, the arrow takes approximately 3 + √6 seconds and 3 - √6 seconds to reach a height of 48 ft, assuming an initial velocity of 96 ft/s.
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Note the complete question is
The height of an arrow shot upward can be given by the formula s = v0*t - 16*t², where v0 is the initial velocity and t is time.How long does it take for the arrow to reach a height of 48 ft if it has an initial velocity of 96 ft/s?
Solve (t-3)^2=6
The arrow is at a height of 48 ft after approx. ___ s and after ___ s.
a. From Tammy's results, compute the experimental probability of landing on red or yellow.
b. Assuming that the spinner is fair, compute the theoretical probability of landing on red or yellow.
c. Assuming that the spinner is fair, choose the statement below that is true.
a. As the number of spins increases, we expect the experimental and theoretical probabilities to
become closer, though they might not be equal.
b. As the number of spins increases, we expect the experimental and theoretical probabilities to
become farther apart.
c. The experimental and theoretical probabilities must always be equal.
a) The experimental probability of landing on red or yellow is:
P(red or yellow) = 33/40
b) The theoretical probability can be computed as follows:
P(red or yellow) = 8/10
c) As the number of spins increases: Option A: we expect the experimental and theoretical probabilities to become closer, though they might not be equal.
How to solve Experimental and Theoretical Probability?Theoretical probability represents the likelihood of an event occurring. The theoretical probability of getting heads is 1/2, because we know that the probability of heads and tails on a coin is equal. Experimental probability describes how often an event actually occurred in an experiment.
a) The experimental probability of landing on red or yellow is:
P(red or yellow) = (20/40) + (13/40) = 33/40
b) The theoretical probability can be computed as follows:
P(red or yellow) = (4/10) + (4/10) = 8/10
c) As the number of spins increases, we expect the experimental and theoretical probabilities to become closer, though they might not be equal.
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-) Find the equation of the line that passes through (1,0) and (3,6).
The equation of the line that passes through the points (1,0) and (3,6) is y = 3x - 3.
What is the equation of the line that passes through (1,0) and (3,6)?The formula for equation of line is expressed as:
y = mx + b
Where m is slope and b is the y-intercept.
Given that, the line passes through points (1,0) and (3,6).
First, we determine the slope:
[tex]Slope\ m = \frac{y_2 - y_1}{x_2 - x_1} \\\\Slope\ m = \frac{6 - 0}{3 - 1} \\\\Slope\ m = \frac{6}{2} \\\\Slope\ m = 3[/tex]
Now we plug the slope m = 3 and one point (1,0)into the point-slope form to find the equation:
( y - y₁ ) = m( x - x₁ )
( y - 0 ) = 3( x - 1 )
y = 3x - 3
Therefore, the equation of the line is y = 3x - 3.
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The set intersection X' ∩ Y' is expressed as; {e, 24}
How to find the intersection of the sets?We are given the sets as;
U = {a, b, c, d, e, f, 19, 20, 21, 22, 23, 24}
X = {a, b, c, 20, 21, 22}
Y = {b, d, f, 19, 21, 23}
Union of the sets A and B , denoted A ∪ B , is the defined as the set of all objects that are a member of A , or B , or both. The union of {1, 2, 3} and {2, 3, 4} is the set {1, 2, 3, 4} . Intersection of the sets A and B , denoted A ∩ B , is the set of all objects that are members of both A and B
Thus:
X' ∩ Y' is as follows;
X' = {d, e, 19, 23, 24}
Y' = {a, c, e, 20, 22, 24}
X' ∩ Y' = {e, 24}
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A rotating light is located 15 feet from a wall. The light completes one rotation every 4 seconds. Find the rate at which the light projected onto the wall is moving along the wall when the light's angle is 15 degrees from perpendicular to the wall.
To find the rate at which the light projected onto the wall is moving along the wall, we can use trigonometry and calculus. Let's denote the angle between the rotating light and the wall as θ.
Given:
Distance from the light to the wall, r = 15 feet
Rate of rotation, dθ/dt = 1 rotation every 4 seconds
We need to find the rate at which the light's projection moves along the wall, which is represented by dx/dt.
Using trigonometry, we know that the tangent of the angle θ is equal to the ratio of the distance along the wall (dx) to the distance from the light to the wall (r).
tan(θ) = dx / r
Differentiating both sides of the equation with respect to time t, we get:
sec^2(θ) * dθ/dt = dx/dt
Since we are given that the angle θ is 15 degrees, we can substitute the values and solve for dx/dt.
sec^2(15°) * (1 rotation / 4 seconds) = dx/dt
Simplify and calculate the value to find the rate at which the light's projection moves along the wall in feet per second.
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Which system of equations is represented by the graph?
PLEASE HELP WILL GIVE THE BRAINLIEST
The system of equations that is represented by the graph include:
D. y = x - 4
[tex]y=\frac{x-4}{x+2}[/tex]
How to determine an equation of this line?In Mathematics and Geometry, the point-slope form of a straight line can be calculated by using the following mathematical equation (formula):
y - y₁ = m(x - x₁)
Where:
x and y represent the data points.m represent the slope.First of all, we would determine the slope of the red line;
Slope (m) = (y₂ - y₁)/(x₂ - x₁)
Slope (m) = (0 + 5)/(4 + 1)
Slope (m) = 5/5
Slope (m) = 1
At point (4, 0) and a slope of 1, a linear equation for C can be calculated by using the point-slope form as follows:
y - y₁ = m(x - x₁)
y - 0 = 1(x - 4)
y = x - 4
Since the rational function has a y-intercept of (0, -2), it would have a vertical asymptote and the denominator would be undefined at x = 2;
[tex]y=\frac{x-4}{x+2}[/tex]
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Missing information:
The question is incomplete and the complete question is shown in the attached picture.