Two angles are co-terminal, meaning they differ by a multiple of 360°.
a) We know that sin A = opposite/hypotenuse = 5/12. Therefore, the adjacent side of angle A must be negative, since it is located in the second quadrant. We can use the Pythagorean theorem to find the hypotenuse:
(5/12)^2 + (adjacent)^2 = hypotenuse^2
25/144 + (adjacent)^2 = hypotenuse^2
(adjacent)^2 = hypotenuse^2 - 25/144
(adjacent)^2 = (hypotenuse^2 * 144 - 25)/144
We also know that cosine is adjacent/hypotenuse and tangent is opposite/adjacent, so:
cos A = adjacent/hypotenuse = sqrt(hypotenuse^2 - 25/144)/hypotenuse
tan A = opposite/adjacent = 5/sqrt(hypotenuse^2 - 25/144)
b) To find angle A, we can use the inverse sine function:
A = sin^-1(5/12)
A ≈ 24.02°
We know that cosecant is the reciprocal of sine, so:
csc A = 1/sin A
We want to find angles that have a cosecant of V3, so:
1/sin A = V3
sin A = 1/V3
We can use the unit circle to find angles whose sine is 1/V3. One such angle is 60°, since sin 60° = V3/2. Another angle is 300°, since sin 300° = -V3/2. These two angles are co-terminal, meaning they differ by a multiple of 360°.
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Tam has $74. Then the following events happen, in order: Tam spends $5 on lunch. Tam's parents double the money she has left. Tam adds all the money to the $148 in her savings account. 2. Use the drop-down menus to answer the questions below. An expression that models this series of events is 148 + 2(74-5) C CLEAR Sarah also had some money. The amount she currently has is equal to 2 x 18 -9 + 50. A possible series of events that led to this amount would be: 1. starts with $18 O CHECK P
Answer:
Step-by-step explanation:
Tam's initial amount of money = $74
Tam spends $5 on lunch, so she has $74 - $5 = $69 left.
Tam's parents double the money she has left, so she now has $69 x 2 = $138.
Tam adds all the money to the $148 in her savings account, so her total amount of money becomes $138 + $148 = $286.Expression that models this series of events: 148 + 2(74-5)For Sarah:
Sarah starts with $18.
Sarah doubles her money, so she now has $18 x 2 = $36.
Sarah subtracts $9 from her current amount, so she now has $36 - $9 = $27.
Sarah adds $50 to her current amount, so she now has $27 + $50 = $77.A possible series of events that led to Sarah's current amount of money: Starts with $18, doubles it to $36, subtracts $9, and then adds $50.
Find the linearization L(x) of the function at a. F(x) = x3 - x2 + 5, a = -3 L(x) = Fl Show My Work
[tex]L(x) = 33x + 86[/tex] represents the regression of F(x) at a = -3.
We must apply the following formula to determine the regression L(x) of the equation: [tex]F(x) = x^{3} - x^{2} + 5[/tex] at a = -3: [tex]L(x) = F'(a)(x - a) + F(a)[/tex] , where a derivative of F(x) calculated at an is denoted by F'(a).
We calculate the amount of F(-3): F(-3)
[tex]= (-3)^3 - (-3)^2 + 5[/tex]
= -27 + 9 + 5 = -13
We determine F(x)'s derivative:
[tex]F'(x) = 3x^2 - 2x[/tex]
We assess F'(-3):
[tex]F'(-3) = 3(-3)^2 - 2(-3)[/tex]
= 27 + 6 = 33
Now we can change these numbers in the L(x) formula:[tex]L(x) = -13 + 33(x + 3)[/tex]. If we condense this expression, we get: L(x) = 33x + 86
We utilise the equation [tex]L(x) = F(a) + F'(a)(x - a)[/tex], to determine the linearization of an equation at a specific point, where F(a) represents the function's value at point a and F'(a) was the function's derivative calculated at point a. We can approximate the function close to point a linearly.
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Point A is reflected about the y-axis. Find A'.
Answer:(2, 3)
Step-by-step explanation:
Because we are reflecting the point across the y axis, we know that we are changing the X coordinate. Reflecting across in this case, since there is no other given rule means we are changing the current X coordinate to be the negative version of itself, since it is already negative, this makes the new point a positive one.
This can be explained as moving the point across the given axis at the same distance as the original point from the axis, but in the opposite direction. If it is on the left of the axis, we move it the same distance from the axis to the right, and vice-versa.
We do not change the y coordinate, because we are reflecting the point across the Y axis, which is the vertical line that has an x origin of 0.
All of this means that the new coordinate for our point will be (2, 3).
Out of people wederval for the true population proportion of people with kids Give your awer as decimals to the places
What is the correct terpretation for the confidence intervalThe correct interpretation for the confidence interval is that with 95% confidence, the true proportion of people with kids will be in the above interval.
This means that if we were to repeat the same survey or study multiple times, about 95% of the time, the true proportion of people with kids would fall within the given interval.
It is important to note that we cannot say with certainty that the true proportion falls within the interval, as there is always a chance for sampling error or variability.
However, we can say with a high degree of confidence that the true proportion is likely to fall within the interval. Option A is incorrect because we cannot say with certainty that the true proportion is within the interval, even though it is likely. Option c is also incorrect because the confidence level refers to the long-run proportion of intervals that will contain the true value, not a probability statement about a single interval.
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gregor mendel is examining peas to try to understand how traits are passed from parents to offspring. today, gregor has 228 228228 peas to examine. the pods have 6 66 peas per pod. How many pods of peas are there?
The number of pods of peas would be 38. So there are 38.038 pods of peas for Gregor Mendel to examine.
To find out how many pods of peas there are, you simply need to divide the total number of peas by the number of peas per pod. In this case, Gregor Mendel has 228 peas, and each pod contains 6 peas.
Step 1: Divide the total number of peas by the number of peas per pod.
228 peas ÷ 6 peas/pod = 38 pods
Number of peas = 22.8228
Peas per pod = 6
Therefore, the number of pods of peas would be:
22.8228/6 = 38.038
So, there are 38 pods of peas for Gregor Mendel to examine in his study of traits passed from parents to offspring.
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12. What is the volume of a can of peanuts with a height of 5 in. and
a lid that is 4 in. wide? Use 3.14 for pie. Round the answer to the
nearest tenth of an inch.
62.8 cubic inches is the volume of a can of peanuts with a height of 5 in. and a lid that is 4 in. wide
We have to find the volume of a can of peanuts with a height of 5 in. and
a lid that is 4 in. wide
Volume of cylinder =πr²h
h is height which is 5 in
r is radius of can which is 2 in
Plug in values of h and r
Volume = 3.14×4×5
=62.8 cubic inches
Hence, 62.8 cubic inches is the volume of a can of peanuts with a height of 5 in. and a lid that is 4 in. wide
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6. Caleb wants to buy a skateboard that costs $73. 56. If sales tax is 7%, how much would his total purchase be?
Answer:
$78.7092
Step-by-step explanation:
He wants to buy a skateboard. The percentage value of the skateboard before any changes is 100%. So $73.56 = 100%. Now when you add a sales tax to it, the price will increase by 7% so it'll now be 107% right? You just have to find how much the 107% is equal to.
100% = 73.56
1% = 73.56÷100 = 0.7356
107 % = 0.7356 × 107 = 78.7092
find the number c that satisfies the conclusion of the mean value theorem on the given interval. (enter your answers as a comma-separated list. if an answer does not exist, enter dne.) f(x) = root(x), [0,4] Are the secant line and the tangent line parallel? 1. True 2. False
ANSWER: ln(x) is indeed continuous on [1,4] and differentiable on (1,4) therefore it satisfies the hypothesis of the mean value theorem.
WHY:
The mean value theorem states that the slope of the secant line connecting the points (x1, f(x1)), (x2, f(x2)) equals the slope of the tangent line at some c in the open interval (x1, x2)
The slope of the secant line, say m = ln(4) - ln(1) / (4-1) = ln(4) / 3
f'(x) = 1/x
Setting the derivative equal to the slope of the secant and solving for x:
1/x = ln(4) / 3
x = 3 / ln(4)
Since 3 / ln(4) ~ 2.16, this value of x does indeed fall in the open interval (1,4) and so satisfies the conclusion of the mean value theorem. Therefore the function satisfies the conclusion of the mean value theorem on [1, 4] with c = 3 / ln 4
The mean value theorem states that if a function f(x) is continuous on the closed interval [a, b] and differentiable on the open interval (a, b), then there exists a number c in the open interval (a, b) such that:
f'(c) = (f(b) - f(a)) / (b - a)
In other words, there exists a point c in the interval where the instantaneous rate of change (slope of the tangent line) is equal to the average rate of change (slope of the secant line) between the endpoints of the interval.
For the given function f(x) = sqrt(x) on the interval [0, 4], we can first find the average rate of change using the endpoints:
(f(4) - f(0)) / (4 - 0) = (2 - 0) / 4 = 1/2
To find the point c where the instantaneous rate of change is equal to 1/2, we can take the derivative of f(x):
f'(x) = 1 / (2sqrt(x))
Setting f'(c) equal to 1/2 and solving for c, we get:
1 / (2sqrt(c)) = 1/2
sqrt(c) = 2
c = 4
Therefore, the number c that satisfies the conclusion of the mean value theorem on the interval [0, 4] is 4.
To determine if the secant line and the tangent line are parallel, we need to compare their slopes. The slope of the secant line between the endpoints [0, 4] is 1/2, as we found earlier. The slope of the tangent line at x = 4 is:
f'(4) = 1 / (2sqrt(4)) = 1/4
Since the slopes are not equal, the secant line and the tangent line are not parallel. Therefore, the statement "2. False" is correct.
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The line 2x+3y=-19 is tangent to a circle centered at (-4,5). What is the tangent point?
Answer:
First, let's find the equation of the circle with a centre at (-4,5). the standard form of a circle is (x - h)^2 + (y - k)^2 = r^2, where (h,k) is the centre of the circle and r is the radius.
So, substituting the center point (-4,5) into the equation, we get:
(x - (-4))^2 + (y - 5)^2 = r^2
(x + 4)^2 + (y - 5)^2 = r^2
Now, let's find the slope of the line 2x + 3y = -19 by putting it into slope-intercept form:
2x + 3y = -19
3y = -2x - 19
y = (-2/3)x - (19/3)
The slope of this line is -2/3.
At a given location, the tangent to a circle is perpendicular to the radius. As a result, we must calculate the radius of the circle with centre (-4,5) that passes through the line's point of tangency (x,y).
The radius of the circle is equal to the length of the perpendicular line segment from the centre to the tangent line (-4,5). This perpendicular line segment will be denoted by the letter d.
We may use the formula for the distance between a point and a line to get d. The distance d between the point (x,y) and the line 2x + 3y = -19 is calculated as follows:
d = |2x + 3y + 19| / sqrt(2^2 + 3^2)
To be tangent to the circle, the radius should be equal to d. Let's call this radius r.
So, we have two equations:
(x + 4)^2 + (y - 5)^2 = r^2 (equation of circle)
d = |2x + 3y + 19| / sqrt(13) (equation of distance between point and line)
Substituting d = r into the second equation, we get:
r = |2x + 3y + 19| / sqrt(13)
We can now substitute this expression for r into the equation of the circle:
(x + 4)^2 + (y - 5)^2 = (|2x + 3y + 19| / sqrt(13))^2
Since the point of tangency lies on the line 2x + 3y = -19, we can substitute (-19 - 3y)/2 for x in the above equation and solve for y:
((-19 - 3y)/2 + 4)^2 + (y - 5)^2 = (|2((-19 - 3y)/2) + 3y + 19| / sqrt(13))^2
Simplifying and solving for y, we get:
y = -5 ± 2√13
Therefore, the two tangent points are (-19/2, -5 + 2√13) and (-19/2, -5 - 2√13).
Jaxon bought two boxes of eggs at a market and recorded the mass of each egg
in the stem-and-leaf diagram below.
a) Which of the boxes has the smaller range of masses?
b) What is the value of this range? Give your answer in grams (g).
Box A
9865 4 39
2 5
84 6
65321 7
Box A
Box B
Box B
4679
157
258
Key
25 represents a mass of 52 g
5/4 represents a mass of 54 g
The range of Box A is 31 grams which is smaller.
Given that, Jaxon bought two boxes of eggs at a market and recorded the mass of each egg in the stem-and-leaf diagram,
So, the ranges are ;
Box A = 76 - 45 = 31 grams
Box B = 78 - 43 = 35 grams
Therefore, we see that the range of the box A is smaller than the range of the box B.
Hence, the range of Box A is 31 grams which is smaller.
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Suppose we modify the production model to obtain the following mathematical model: Max 10X s.t. ax ≤ 40 x ≥ 0 Where a is the number of hours of production time required for each unit produced. With a=5, the optimal solution is x=8. If we have a stochastic model with a=3,a=4,a=5, or a=6 as the possible values for the number of hours required per unit, what is the optimal value for x? What problems does this stochastic model cause?
The optimal value for x in the stochastic model is a range of values from x=6 to x=8. The stochastic model causes problems due to the uncertainty in the optimal solution and the assumptions.
With a=5, the optimal solution is x=8. However, with the addition of stochasticity and possible values for a of 3, 4, and 6, the optimal value for x becomes a range of values.
The expected value of a is 4.5, which means that there is a higher probability of a lower value for a, resulting in a lower optimal value for x. Therefore, the optimal value for x becomes x=6 when a=3 or a=4, x=7 when a=5, and x=8 when a=6.
The stochastic model causes problems because the optimal solution is no longer a fixed value but rather a range of values that are dependent on the probability distribution of a.
Additionally, this model assumes that the production time is the only constraint on production, which may not always be the case in real-world production scenarios. Therefore, the stochastic model may not accurately reflect the actual production process and could lead to suboptimal production decisions.
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find n and m using the image of the parallelogram
n= ?
m= ?
The length of the line segments m and n which are halves of the diagonals AC and BD in the parallelogram ABCD are 6 and 11 respectively.
Diagonals of a parallelogramA parallelogram is a quadrilateral, and the diagonals always bisect each other. However, diagonals only form right angles if the parallelogram is a rhombus or a square.
For the parallelogram ABCD; the lines AC and BD are its diagonals, and they both bisect each other, that is they cut each other to form two equal parts.
So AP and PC are equal halves of the line AC, while BP and PD are equal halves of the line BD
Therefore, since PC = 6 then m = 6, and for PD = 11, then n = 11 because they form diagonals of the parallelogram ABCD.
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Find the area of each shaded sector. Round to the hundredths place
The area of each shaded sector of a circle with radius 6 units and measure of central angle 36 degrees is approximately equals to the 11.31 square units.
The area of a sector is defined as the space inside a section of the circle made by two radius and an arc. The area of a circular sector is written by the following formula [tex]Area = \frac{θ}{360°}\pi \: r^2[/tex], where, r represents the radius
θ represents the measure of central angle in degreesπ is math constant and π = 3.14See the above figure, we have a circle with radius of circle, r = 6 units
Measure of central angle, θ = 36°
Area of circle = πr²
Substitute all known values, so, Area = π× 6² = 36π
Using the formula for the area of a sector, Area of sector of circle with radius 6
[tex] = \frac{36°}{360°}π(6)²[/tex]
[tex]= \frac{1}{10} \times 36 × 3.14[/tex]
= 11.304 ~ 11.31
Hence, the required area of the shaded sector is approximately 11.31 square unit.
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Complete question:
The above figure complete the question.
Find the area of each shaded sector. Round to the hundredths place
the shape of a colony of bacteria on a petri dish is circular. find the approximate increase in its area if its radius increases from mm to mm. a) let represent the radius and represent the area. write the formula for the area of the petri dish.
The formula for the area of a circular petri dish can be represented as A = πr², where "A" represents the area and "r" represents the radius.
To find the approximate increase in the area when the radius increases from r₁ mm to r₂ mm, we can calculate the difference between the areas by subtracting the initial area (A₁ = πr₁²) from the final area (A₂ = πr₂²). This can be expressed as ΔA = A₂ - A₁ = πr₂² - πr₁².
In the second paragraph, let's explain the formula and how to calculate the approximate increase in the area of the bacterial colony on the petri dish. The area of a circular shape is given by the formula A = πr², where "A" represents the area and "r" represents the radius. By substituting the initial radius, r₁, into the formula, we can find the initial area, A₁ = πr₁².
Similarly, by substituting the final radius, r₂, into the formula, we can find the final area, A₂ = πr₂². To calculate the approximate increase in area, we subtract the initial area from the final area: ΔA = A₂ - A₁ = πr₂² - πr₁². This formula allows us to find the difference in the areas of the bacterial colony on the petri dish when the radius increases from r₁ to r₂.
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What is the RACI matrix?
a. Resource Allocation & Cost Inventory matrix
b. Matrix of Responsible and Certified Individuals
c. Responsible, Accountable, Consult & Inform matrix
d. Recently Added Control Incident reporting matrix
The RACI matrix is the Responsible, Accountable, Consult & Inform matrix. It is a tool used in project management to clearly define the roles and responsibilities of team members in relation to a project.
c. Responsible, Accountable, Consult & Inform matrix
The RACI matrix is a tool used in project management to clearly define roles and responsibilities. It stands for Responsible, Accountable, Consulted, and Informed. Assigning these roles to individuals or teams, it ensures efficient allocation of resources and effective communication throughout the project.
The matrix identifies who is Responsible for a task, who is Accountable for its completion, who needs to be Consulted before decisions are made, and who needs to be Informed about progress. This helps to avoid confusion and ensure that resources are allocated appropriately, which can ultimately impact the cost of the project.
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keisha just deposited a total of 900 into savings accounts at two different banks. the 550 she deposited at bank A will earn 2.25% interest compounded anually
The total amount she earned $945.75.
We have,
P= 900
bank A deposition= 550
R= 2.25%
So, the interest from Bank A
= 550/100 x 2.25
= 12.375
and, Interest from Bank B
= (900 - 550)/100 x 3
= 350/100 x 3
= 10.5
So, total she earned
= 10.5 + 12.375 = 22.875
In 2 years she will earned
= 22.875 x 2
= 45.75
Thus, the total amount she earned
= 900 + 45.75 = 945.75
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1. An integer is chosen randomly between 1 and 1000. What is the probability that the number
picked is divisible by either 4 or 5 or both?
2. An integer is chosen randomly between 1 and 1000. What is the probability that the number
picked is divisible by 4 and not 3?
1. The probability that the number picked is divisible by either 4 or 5 or both is 0.4. 2. The probability that the number picked is divisible by 4 and not 3 is 0.167.
1. Using the principle of inclusion-exclusion. There are 250 integers between 1 and 1000 that are divisible by 4, and 200 integers that are divisible by 5.
However, some integers are divisible by both 4 and 5 (i.e., by 20), and we have counted them twice. There are 50 integers in the range [1, 1000] that are divisible by 20.
So, the number of integers between 1 and 1000 that are divisible by either 4 or 5 or both is:
250 + 200 - 50 = 400
Therefore, the probability that the integer picked is divisible by either 4 or 5 or both is:
400/1000 = 0.4
2. Using the principle of inclusion-exclusion again, there are 250 integers between 1 and 1000 that are divisible by 4, and 333 integers that are not divisible by 3.
There are 250 integers in the range [1, 1000] that are divisible by 4, and 83 integers that are divisible by 12.
So, the number of integers between 1 and 1000 that are divisible by 4 but not 3 is:
250 - 83 = 167
Therefore, the probability that the integer picked is divisible by 4 and not 3 is:
167/1000 = 0.167
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taxes for last year, 7 had their taxes prepared by a local professional, and the remaining 3 by H&R Block.
a.What is the probability of selecting a family that prepared their own taxes?
b.What is the probability of selecting two families, both of which prepared their own taxes?
c.What is the probability of selecting three families, all of which prepared their own taxes?
d.What is the probability of selecting two families, neither of which had their taxes prepared by H&R Block?
The probability of selecting two families, neither of which had their taxes prepared by H&R Block is (7/10) * (6/9) = 42/90, which simplifies to 7/15.
a. There are a total of 10 families. 7 had taxes prepared by a local professional, and 3 by H&R Block. This means 0 families prepared their own taxes. The probability of selecting a family that prepared their own taxes is 0/10 = 0.
b. Since no families prepared their own taxes, the probability of selecting two families, both of which prepared their own taxes is 0.
c. Similarly, the probability of selecting three families, all of which prepared their own taxes is 0.
d. If we want to select two families, neither of which had their taxes prepared by H&R Block, we are looking for families that had their taxes prepared by a local professional. There are 7 such families. The probability of selecting the first family is 7/10. After selecting the first family, there are now 9 families left, 6 of which had their taxes prepared by a local professional. The probability of selecting the second family is 6/9. Therefore, the probability of selecting two families, neither of which had their taxes prepared by H&R Block is (7/10) * (6/9) = 42/90, which simplifies to 7/15.
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what’s the answer to this
The value of cos X is approximately given as .80000.
The correct answer choice is option C.
What is the value of cos X?Hypotenuse = 50
Adjacent = 30
Opposite = 40
cos X = adjacent / hypotenuse
= 30/50
= 0.6
Cos 0.6 = 0.825335614
Approximately,
.80000
Hence, cos X is .8000
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Let f be a permutation on the set {1,2,3,4,5,6,7,8,9}, defined as follows f = 1 2 3 4 5 6 7 8 9
4 1 3 6 2 9 7 5 8
(a) Write f as a product of transpositions (not necessarily disjoint), separated by commas (e.g. (1,2), (2,3), ... ). f = (b) Write f-l as a product of transpositions in the same way. f-1 =
Assume multiplication of permutations f,g obeys the rule (fg)(x) = f(g(x)so (1,3)(1, 2) = (1,2,3) not (1,3,2)
Which sends 1 to 2, and then apply the permutation (1,3) to the result, which sends 2 to 3. So (1,3)(1,2) = (1,2,3), not (1,3,2).
(a) To write f as a product of transpositions, we can track the movement of each number in the permutation. Starting from 1, we see that it goes to 4, which means we can write the transposition (1,4). Next, we look at where 4 goes, which is to 6, so we can write the transposition (4,6). Continuing this process, we get:
f = (1,4)(4,6)(6,9)(9,8)(8,5)(5,2)(2,1)(7,3)
So f can be written as the product of the transpositions (1,4), (4,6), (6,9), (9,8), (8,5), (5,2), (2,1), and (7,3).
(b) To find f-1, we need to reverse the order of the transpositions in f and also reverse each transposition. For example, the transposition (1,4) becomes (4,1). Applying this process to all the transpositions in f, we get:
f-1 = (3,7)(1,2)(2,5)(5,8)(8,9)(9,6)(6,4)(4,1)
So f-1 can be written as the product of the transpositions (3,7), (1,2), (2,5), (5,8), (8,9), (9,6), (6,4), and (4,1).
(c) The rule for multiplication of permutations (fg)(x) = f(g(x)) means that we apply the permutation g to x first, and then apply the permutation f to the result. For example, if we have the permutations f = (1,2,3) and g = (1,3), then (fg)(1) = f(g(1)) = f(3) = 2. To see why this is true, note that g sends 1 to 3, and then f sends 3 to 2.
Using this rule, we can see that (1,3)(1,2) means that we apply the permutation (1,2) first, which sends 1 to 2, and then apply the permutation (1,3) to the result, which sends 2 to 3. So (1,3)(1,2) = (1,2,3), not (1,3,2).
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After 4 years, $20,000 deposited in a savings account with simple interest had earned $800 in interest. What was the interest rate?
The interest rate for the savings account is 5% after 4 years, $20,000 deposited in a savings account with simple interest earned $800 in interest.
We can use the formula for simple interest to solve the problem:
Simple interest = (Principal * Rate * Time) / 100
where Principal is the initial amount deposited, Rate is the interest rate, and Time is the time period for which the interest is calculated.
We know that the Principal is $20,000 and the time period is 4 years. We are also given that the interest earned is $800. So we can plug in these values and solve for the interest rate:
$800 = (20,000 * Rate * 4) / 100
Multiplying both sides by 100 and dividing by 20,000 * 4, we get:
Rate = $800 / (20,000 * 4 / 100) = 0.05 or 5%
Therefore, the interest rate for the savings account is 5%.
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insect Survival Most
invertebrates produce large
numbers of offspring. Most of
these offspring die before reaching
adulthood. Suppose an insect lays
80 eggs on a plant. If 70 percent
of the eggs hatch and 80 percent
of those that hatch die before
reaching adulthood, how many
insects will reach adulthood?
The required out of the 80 eggs laid, only 11 insects are expected to reach adulthood.
If an insect lays 80 eggs on a plant, and 70% of the eggs hatch, then the number of hatched eggs is:
80 x 0.7 = 56
Now, if 80% of the hatched eggs die before reaching adulthood, then the number of insects that reach adulthood is:
56 x 0.2 = 11.2
However, we cannot have a fractional number of insects, so we need to round this to the nearest whole number. Since we are asked for how many insects will reach adulthood, we round up if the decimal is 0.5 or greater and round down if the decimal is less than 0.5. In this case, since 0.2 is less than 0.5, we round down to get:
11 insects
Therefore, out of the 80 eggs laid, only 11 insects are expected to reach adulthood.
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How much is 4 plus 78?
Answer:
83
Step-by-step explanation:
78 + 4= 83
Solve using the zero product property. The problem has been factored for you.
What is the special case for perfect square trinormial
64x^6-y^6
Answer: I think it’s (2x+y)•(4x2-2xy+y2)•(2x-y)•(4x2+2xy+y2)
Place point D where it partitions
the segment into a 1:2 ratio.
1
+
2
3
D
+
4
5
6
Answer: Partitioning a Segment in a Given Ratio ; Find the coordinates of the point that divides the directed line segment · with the coordinates of endpoints at M(−4,0) ...
Step-by-step explanation:
For this activity, your task is to collect two 3-D items from your environment in order to
calculate their volumes and surface areas. One item will be either a prism or a pyramid,
the other item will be either a cone or a cylinder. Some items that will work for this
activity are canned goods, food storage containers, recyclable cardboard items, etc.
Make sure to show all work for your calculations and answer each reflection question in
two to three sentences.
Prism/Pyramid (Object 1) Cone/Cylinder (Object 2)
Object 1: Object 2:
3-D Shape: 3-D Shape:
Dimensions: Dimensions:
Base Area Calculations:
Base of Object 1: Base of Object 2:
Area Formula: Area Formula:
Base Area: Base Area:
Volume Calculations:
3-D Shape of Object 1: 3-D Shape of Object 2:
Volume Formula: Volume Formula:
Volume: Volume:
Surface Area Calculations:
3-D Shape of Object 1: 3-D Shape of Object 2:
Surface Area Formula: Surface Area Formula:
Surface Area: Surface Area:
It should be noted that to obtain measurements for the Prism or Pyramid:
- Identify prism or pyramid as 3-D shape
- Measure length, width, and height
- Calculate base area. For a prism: find the base's dimension (i.e., rectangle or triangle) and multiply it by height. For a pyramid: halve the calculation of the base and then multiply it by height.
- To calculate volume, obtain the product of the base area and height
- Compute surface area via summation of each face, including the base.
How to explain the informationAlso, to determine measurements for Cone or Cylinder:
- Recognize cone or cylinder as 3-D shape
- Take note of dimensions through measuring the radius and the height
- Compute for Area of Base. For a cone, use the formula πr^2; while for a cylinder, make use of 2πr^2 instead
- In order to measure volume of a cone, get the result of multiplying base area by height and dividing by 3. Meanwhile, the cylinder requires solely multiplying the base area by height.
- Tabulate surface area for cone after applying Pythagorean theorem to solve slant height divided by curved surface area with formula πrl. Do not neglect inclusion of base area in computation.
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Question 2 (10 points) When hydrogen is added to the structure of an oil, the melting points goes down, and the oil becomes thinner and easier to pour. True False
This statement is generally true.
When hydrogen is added to the structure of an oil through a process called hydrogenation, the oil becomes more saturated with hydrogen atoms, which reduces the amount of double bonds in the oil's molecules. This can cause the melting point of the oil to decrease and the oil to become more liquid and easier to pour. Additionally, hydrogenated oils tend to have a longer shelf life and are more stable at high temperatures, making them useful in many food processing applications.
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Given the parabola in which the vertex is the origin and the directrix is a horizontal line passing through the point (0,-7), a student determined that the parabola opens to the right and that the equation of the parabola is y^2=28x. Evaluate the student’s answer. A. The student’s answer is correct. B. The student determined the direction of the parabola correctly but did not correctly determine the equation of the parabola. C. The student determined the equation of the parabola correctly but did not correctly determine the direction of the parabola. D. The student used the equations for a horizontal parabola instead of a vertical parabola. Both the equation and direction of the parabola are incorrect. Please select the best answer from the choices provided
The given parabola has its vertex at the origin and the directrix as a horizontal line passing through the point (0,-7), and the equation is y^2 = 28x, which opens to the right. So, the correct answer is A) The student's answer is correct.
To determine if the student's answer is correct, we need to check if the equation of the parabola and the direction of its opening match the given conditions.
The given parabola has its vertex at the origin and the directrix as a horizontal line passing through the point (0,-7). Therefore, the axis of symmetry is the y-axis, and the focus is located at (0,7).
The standard equation of a parabola with the vertex at the origin and the directrix as a horizontal line passing through the point (0,-p) is y² = 4px, where p is the distance from the vertex to the directrix. In this case, p = 7, so the equation of the parabola is y² = 28x.
The coefficient of x in the equation is positive, indicating that the parabola opens to the right. Therefore, the student correctly determined the direction of the parabola as well.
Hence, the answer is A. The student's answer is correct.
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A pizza owner asked 50 customers to taste a new type of topping and found that 40 people liked its taste Which of these is an example of descriptive statistics?
A. 80% of the people in the city where the pizza shop is located like the taste of the pizza topping
B. 80% of all the pizza shop's customers like the taste of the pizza topping,
C. 80% of all people like the taste of the pizza topping,
D. 80% of the surveyed customers like the taste of the pizza topping.
D. 80% of the surveyed customers like the taste of the pizza topping. This is an example of descriptive statistics because it describes a specific group of 50 customers who were surveyed and their response to the new topping.
Descriptive statistics are used to summarize and describe data, often by using measures such as percentages, means, and standard deviations. In this case, the percentage of customers who liked the new topping is a descriptive statistic that summarizes the data collected from the survey.
This answer represents descriptive statistics because it summarizes and describes the information collected from the specific sample of 50 customers who participated in the taste test. It does not make assumptions or predictions about the entire population or customer base, but instead focuses solely on the data collected from the sample group.
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