Answer:
1.6 × 10^4
Step-by-step explanation:
A cosine function has a period of 3, a maximum value of 20, and a minimum value of 0 the function of its parent function over the x-axis Which function could be the function described?
The function that could be described is f(x) = 10cos(2πx/3), where the amplitude is 10, the period is 3, and the maximum value is 20.
In a cosine function, the amplitude represents the vertical distance from the midline to the maximum or minimum value. Here, the maximum value is 20, which means the amplitude is half of that, i.e., 10. The period of the function is the distance it takes for one complete cycle, and in this case, it is 3 units.
By using the formula f(x) = A*cos(2πx/P), where A is the amplitude and P is the period, we can determine that the given function matches the described characteristics.
The function f(x) = 10cos(2πx/3) has a maximum value of 20 and a minimum value of 0, and it completes one cycle over the interval of the period, which is 3 units.
In conclusion, the function f(x) = 10cos(2πx/3) satisfies all the given conditions and represents the described function.
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Is 2352 a perfect square? If not, find the smallest number by
which 2352 must be multiplied so that the product is a perfect
square. Find the square root of new number.
No, 2352 is not a perfect square.
To find the smallest number by which 2352 must be multiplied so that the product is a perfect square, we need to factorize 2352 into its prime factors.
2352 = 2^4 x 3 x 7^2
To make it a perfect square, we need to multiply it by 2^2 and 7, which gives us:
2352 x 2^2 x 7 = 9408
Now, we can take the square root of 9408:
√9408 = √(2^8 x 3 x 7) = 2^4 x √(3 x 7) = 16√21
Therefore, the smallest number by which 2352 must be multiplied so that the product is a perfect square is 2^2 x 7, which gives us the square root of 9408 as 16√21.
Answer:
The smallest number by which 2352 must be multiplied so that the product is a perfect square = 3
The square root of the new number = 84
Step-by-step explanation:
√2352 ≈ 48.5 so not a perfect square
Prime factorization of 2352 yields
2352 = 2 x 2 x 2 x 2 x 7 x 7 x 3
In exponential form this is
2⁴ x 7² x 3¹
So
[tex]\sqrt{2352} = \sqrt{2^4 \cdot 7^2 \cdot 3}\\\\= \sqrt{2^4} \cdot \sqrt{7^2} \cdot \sqrt{3}\\\\= 2^2 \cdot 7 \cdot \sqrt{3}\\\\= 28 \sqrt{3}[/tex]
To get rid of the radical in the square root and get a whole number, all you have to do is multiply [tex]\sqrt{2352}[/tex] by √3
[tex]28 \sqrt{3} \cdot \sqrt{3} = 28\cdot 3 = 84\\\\84^2 = 7056 = 2352 \cdot 3\\[/tex]
This means that if you multiply 2352 by 3 it will become a perfect square
Check:
[tex]2352 \cdot 3 = 7056\\\\\sqrt{7056} = 84[/tex]
Determine the equation of the circle graphed below.
The equation of the circle graphed below is (x - 1)² + (y - 1)² = 4.
To determine the equation of a circle, we need to know the coordinates of its center and the radius. The general equation of a circle with center (h, k) and radius r is given by:
(x - h)² + (y - k)² = r²
where (x,y) are the coordinates of any point on the circle. The equation shows that the distance between any point (x,y) on the circle and the center (h,k) is always equal to the radius r.
To determine the equation of the circle graphed below, we need to identify the coordinates of its center and the radius. One way to do this is to use the distance formula between two points. We can choose any two points on the circle and use their coordinates to find the distance between them, which is equal to the diameter of the circle. Then, we can divide the diameter by 2 to find the radius.
To find the radius, we can choose any point on the circle and use the distance formula to find the distance between that point and the center. We can use the point (5,1), which is on the right side of the circle. The distance between (5,1) and (1,1) is 4 units, which means that the radius is 2 units.
Substituting the values of (h,k) and r in the general equation of the circle, we get:
(x - 1)² + (y - 1)² = 4
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tice Problems
Scientists have calculated that recycling 10 pounds of paper, results in 8 fewer gallons of
water being required to produce an equivalent amount of new paper. If a school begins a
recycling program and is able to increase the amount of paper they recycle by 500 pounds
per month, calculate number of gallons of water this conserves over an entire year.
By increasing their recycling by 500 pounds per month, the school conserves 4,800 gallons of water in a year.
Determine the ratio of water conserved per pound of paper recycled:
8 gallons of water are saved for every 10 pounds of paper recycled.
Calculate the water saved for each pound of paper:
8 gallons/10 pounds = 0.8 gallons/pound.
Find the increase in paper recycled per month:
500 pounds/month.
Calculate the water saved per month:
[tex]500 $ pounds/month \times 0.8 $ gallons/pound = 400 $ gallons/month.[/tex]
Calculate the water saved in a year:
[tex]400 $ gallons/month \times 12 months = 4,800 $ gallons/year.[/tex]
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Katie started with $40. how much money did she have left after purchases the supplies.
If Katie started with $40, the remaining balance after purchasing the supplies is $20.
To determine how much money Katie had left after purchasing the supplies, we'll consider the fraction "1/5" for the storybook and "3/10" for the calculator.
1: Calculate the amount spent on the storybook.
Katie spent 1/5 of her initial $40 on the storybook. To find this amount, multiply the fraction by the total amount:
(1/5) x $40 = $8
2: Calculate the amount spent on the calculator.
Katie spent 3/10 of her initial $40 on the calculator. To find this amount, multiply the fraction by the total amount:
(3/10) x $40 = $12
3: Add the amounts spent on both the storybook and calculator.
$8 (storybook) + $12 (calculator) = $20
4: Subtract the total amount spent from Katie's initial amount of money to find the remaining balance.
$40 (initial amount) - $20 (total spent) = $20
After purchasing the supplies, Katie had $20 left.
Note: The question is incomplete. The complete question probably is: Katie started with $40. He spent 1/5 of the money on a storybook and 3/10 on a calculator. how much money did she have left after purchases the supplies.
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1. Jason draws a rectangle in the coordinate plane at the right to represent his yard. To get from one corner of his yard to another, Jason travels 4 units down and then 6 units right. Draw arrows on the coordinate plane to show Jason’s path. Write the coordinates for his start and end points.
START:___ END:___
2. Use the coordinate plane in problem 1. What is the perimeter of rectangle YARD?
units
3. Mary models her rectangular room in the coordinate plane at the right. She plans to hang strings of lights on two perpendicular walls. What are the lengths of and ?
units units
4. Use the coordinate plane in problem 3. What is the area of Mary’s room?
square units
5. The coordinate plane at the right models the streets
of a city. The points A(3, 8), B(6, 3), and C(3, 3) are connected to form a park in the shape of a triangle. Connect the points to form the triangle. Which two sides of the park form a right angle?
and
6. Use the coordinate plane in problem 5. Tyler walks along the two sides of the park that form the right angle. How many blocks does he walk in all?
blocks
7. How can you find distances between points in a coordinate plane?
1. The coordinates are: START: (0,0) END: (6,-4), 2. The perimeter of rectangle YARD is 20 units,3. The lengths of YX and YZ are 4 units and 6 units, respectively, 4. The area of Mary's room is 24 square units,
1-To get from one corner of his yard to another, Jason travels 4 units down and then 6 units right. Starting from the origin, his starting point is (0,0). From there, he moves 4 units down to the point (0,-4), and then 6 units right to reach his endpoint, which is at (6,-4).
2-The rectangle has two sides of length 4 and two sides of length 6. The perimeter is the sum of the lengths of all sides, so it is equal to 2(4) + 2(6) = 8 + 12 = 20 units.
3-The coordinates of points Y, X, and Z are not given, so we cannot calculate the lengths directly. However, we know that the sides of a rectangle are perpendicular, so we can use the Pythagorean theorem to find the lengths. Let Y be the origin (0,0), and let X be the point (0, -4). Then YX has length 4 units. Similarly, let Z be the point (6, 0), so YZ has length 6 units.
4.To find the area of a rectangle, we can multiply the lengths of its sides. From problem 3, we know that the lengths of the sides are 4 and 6 units, so the area is 4 x 6 = 24 square units.
5. The sides AB and AC form a right angle.
To determine which sides of the triangle form a right angle, we need to find the slope of each side. The slope of AB is (3-8)/(6-3) = -5/3, and the slope of AC is (3-3)/(6-3) = 0. Since the product of the slopes of two perpendicular lines is -1, we can see that AB is perpendicular to AC. Therefore, sides AB and AC form a right angle.
6. Tyler walks 9 blocks in all.
To find the distance Tyler walks, we need to calculate the length of sides AB and AC. Using the distance formula, we can find that the length of AB is sqrt[(6-3)² + (3-8)²] =√[(34) units, and the length of AC is 3 units. Therefore, Tyler walks 3 + √[34 units along the two sides that form the right angle. This is approximately 9.4 blocks, so he walks 9 blocks in all.
7. The distance between two points in a coordinate plane can be found using the distance formula:
d = √[(x₂-x₁)² + (y₂-y₁)²]
where (x₁, y₁) and (x₂, y₂) are the coordinates of the two points, and d is the distance between them. The formula is derived from the Pythagorean theorem, which relates the sides of a right triangle.
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Question 1 of 10
NEXT
Points N and L on the circle K and points Q and P on the circle O. NP and QL intersect at point M. NP is tangent to Circle K at point N and tangent to circle O at point P. LQ is tangent to Circle
and tangent to circle O at point Q.
if NM=72-18, LM-31, QM=62-4, and PM=5y-12, which of the following statements are true? Select all that apply.
the length of PM is 98.
What is congruent of the triangle?
The shapes maintain their equality regardless of how they are turned, flipped, or rotated before being cut out and stacked. We'll see that they'll be placed entirely on top of one another and will superimpose one another. Due to their identical radius and ability to be positioned directly on top of one another, the following circles are considered to be congruent.
OM/MN = OP2/P2M
[tex]OM/(r_1 - r_2) = (r_2 + y - 12)/yOM = (r_1 - r_2)*(r_2 + y - 12)/y[/tex]
Similarly, since LQ is tangent to both circles at L and Q respectively, we have OL1 and OQ2 perpendicular to LQ. Therefore, triangle LOM and triangle QOM are similar triangles. Using this similarity, we can find the length of OM in terms of r1 and r2:
OM/ML = OQ2/Q2M
[tex]OM/(r_1 + r_2 - 31) = (r_2 + 62 - 4)/yOM = (r_1 + r_2 - 31)*(r_2 + 62 - 4)/y[/tex]
Since both expressions above represent the same length of OM, we can equate them:
[tex](r_1 - r_2)(r_2 + y - 12)/y = (r_1 + r_2 - 31)(r_2 + 62 - 4)/y[/tex]
Simplifying and solving for y, we get:
y = 22
Therefore, PM = 5y - 12 = 98.
Hence, the length of PM is 98.
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3. Compute the integral JSS, udv, where U is the part of the ball of radius 3, centered at 0,0,0), that lies in the 1st octant. Recall that the first octant is the part of the 3d space where all three coordinates I, y, z are nonnegative. (Hint: You may use cylindrical or spherical coordinates for this computation, but note that the computation with cylindrical coordinates will involve a trigonometric substitution - 30 spherical cooridnates should be preferable.)
To compute the integral JSS, udv, where U is the part of the ball of radius 3, centered at 0,0,0), that lies in the 1st octant, we can use spherical coordinates. Since the region is defined as having all three coordinates nonnegative, we can set our limits of integration as follows: 0 ≤ ρ ≤ 3, 0 ≤ θ ≤ π/2, and 0 ≤ φ ≤ π/2.
Using the Jacobian transformation, we have:
JSS, udv = ∫∫∫U ρ²sinφ dρdθdφ
Substituting in our limits of integration, we get:
JSS, udv = ∫0^π/2 ∫0^π/2 ∫0³ ρ²sinφ dρdθdφ
Evaluating the integral, we get:
JSS, udv = (3³/3) [(sin(π/2) - sin(0))] [(1/2) (π/2 - 0)]
JSS, udv = 9/2 π
Therefore, the value of the integral JSS, udv, over the part of the ball of radius 3 that lies in the 1st octant is 9/2π.
To compute the integral JSS, udv, over the region U, which is the part of the ball of radius 3 centered at (0,0,0) and lies in the first octant, we will use spherical coordinates for this computation as it's more preferable.
In spherical coordinates, the volume element is given by dv = ρ² * sin(φ) * dρ * dφ * dθ, where ρ is the radial distance, φ is the polar angle (between 0 and π/2 for the first octant), and θ is the azimuthal angle (between 0 and π/2 for the first octant).
Now, we need to set up the integral for the volume of the region U:
JSS, udv = ∫∫∫ (ρ² * sin(φ) * dρ * dφ * dθ), with limits of integration as follows:
ρ: 0 to 3 (radius of the ball),
φ: 0 to π/2 (for the first octant),
θ: 0 to π/2 (for the first octant).
So, the integral becomes:
JSS, udv = ∫(0 to π/2) ∫(0 to π/2) ∫(0 to 3) (ρ² * sin(φ) * dρ * dφ * dθ)
By evaluating this integral, we will obtain the volume of the region U in the first octant.
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Chase was on his school’s track team and ran the 2400m race. He has been working on his pace and can run 1600m in 5. 5 minutes. If he keeps this pace through the entire race, how long will it take him to finish the 2400m race?
A. 8. 25 minutes
B. 7. 75 minutes
C. 8. 5 minutes
D. 8. 42 minutes
is this a linear function
Consider the parametric equations
x=cos(t)−sin(t);y=cos(t)+sin(t) 0≤t≤2π
a) Eliminate the parameter t to find a Cartesian equation for the parametric curve.
b) Sketch this parametric curve, indicating with arrows the direction in which the curve is traced.
For two parametric equations, x = cos(t)− sin(t) ; y = cos(t) + sin(t) ; 0≤t≤2π
a) Cartesian equation for the parametric curve is represented by x² + y² = 2.
b) The sketch for this parametric curve, with arrows in the direction of curve tracing is present above figure.
A parametric curve in the x-t plane has the equations x=x(t), y=y(t). The curve associates a point of the plane (x,y) to a value of the parameter t. The rectangular form of the curve can be determined by eliminating the parameter t, i.e. determine the parameter in one equation and Substituting this value in the other equation. We have the following parametric equations,
x = cost - sinty = cos(t)+ sint, 0 ≤ t ≤ 2π
(a) we have to eliminate parameter t to determine a cartesian equation for the parametric curve, use x²+ y² = (cos(t) − sin(t))²+ (cos(t) + sin(t))²
=> x² +y² = cos²t + sin²t - 2cost sint + cos²t + sin²t + 2cost sint
=> x² + y² = 2 ( sin²t + cos²t) = 2
which represents a circle curve centered at the origin and having radius √2.
(b) A sketch of this parametric curve is shown above figure and arrows are used to indicate the direction of curve trace.
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8-42. Examine the diagram at right. Given that ()/(_(()/())ABC)~()/(_(()/()))=EDF, is ()/(_(()/())DBG) is isosceles? Prove your answer. Use any format of proof that you prefer. Homework Help
Triangle DBG is isosceles and BD = BG.
What is Triangle?A triangle is a closed two-dimensional geometric shape with three straight sides and three angles. It is one of the basic shapes in geometry and has a wide range of applications in mathematics, science, and engineering.
To prove that triangle DBG is isosceles, we need to show that BD = BG.
First, we can use the given similarity to find the length of DF in terms of EB and EC. Since triangle ABC is similar to triangle EDF, we have:
AB:BC = ED:DF
Substituting the given values, we get:
2:3 = ED:DF
Multiplying both sides by DF, we get:
DF = (3÷2)ED
Next, we can use the fact that triangles EDF and EBG are similar (since they share angle E) to find the length of BG in terms of EB and DF:
ED/EB = BG/DF
Substituting the value we found for DF, we get:
ED/EB = BG/(3/2)ED
Multiplying both sides by (3/2)ED, we get:
BG = (3/2)ED²/ EB
Now we can use the Pythagorean theorem to find the lengths of BD and BG in terms of EB and EC:
BD² = BE² + ED²
BG² = BE² + EG²
Since EG = EC - BD, we can substitute BD = EC - EG in the first equation to get:
BD² = BE² + ED² = BE² + (3/2)ED²
Substituting the expression we found for BG in terms of ED and EB in the second equation, we get:
BG² = BE² + (3/2)ED²/EB² * BE²
Simplifying this expression, we get:
BG² = BE²(1 + 3ED²/2EB²)
Since we know that ED/EB = 2/3, we can substitute this value to get:
BG² = BE²(1 + (3/2)(4/9)) = BE²(25/18)
Therefore, we have:
BD² = BE² + (3/2)ED² = BE² + (3/2)(9/4)BE² = (15/8)BE²
BG² = BE²(25/18)
To show that BD = BG, we can compare the squares of these lengths:
BD² = (15/8)BE²
BG² = BE²(25/18)
Multiplying both sides of the first equation by 18/25, we get:
(18/25)BD² = (27/40)BE²
Substituting the expression for BG² in the second equation, we get:
(18/25)BD² = (27/40)BG²
Therefore, we have:
BD² = (27/40)BG²
Taking the square root of both sides, we get:
BD = (3/4)√(10) * BG
Substituting the expression we found for BG in terms of ED and EB, we get:
BD = (3/4)√(10) * (3/2)ED²/EB
Substituting the value of ED/EB = 2/3, we get:
BD = (3/4)√(10) * (3/2)(4/9)ED²
Simplifying this expression, we get:
BD = (2/3)√(10)ED²
Next, we can substitute the value we found for DF in terms of ED to get:
DF = (3/2)
Therefore, triangle DBG is isosceles and BD = BG.
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Find the value of x.
Answer:
x = 150
Step-by-step explanation:
We know that the total amount of degrees in a circle is 360°.
We also know that a right angle is 90°.
Using this information, and the given 120° angle, we can form the following equation to solve for x:
90° + 120° + x° = 360°
210° + x° = 360°
x° = 360° - 210°
x° = 150°
x = 150
Step-by-step explanation:
120° + 90° + x = 360°
210° + x = 360°
x = 360° - 210°
= 150°
#CMIIWHow many possible outcomes are in the sample space if the spinner shown is spun twice?
There are 225 possible outcomes in the sample space if the spinner is spun twice
How many possible outcomes are in the sample spaceFrom the question, we have the following parameters that can be used in our computation:
Spinner
The number of sections in the spinner is
n = 15
If the spinner shown is spun twice, then we have
Outcomes = n²
Substitute the known values in the above equation, so, we have the following representation
Outcomes = 15²
Evaluate
Outcomes = 225
Hence, the possible outcomes are in the sample space are 225
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What’s the answer I need help pls?
Using composition of functions, determine if the to functions are inverses of each othr. f(x)= square root of x, +4, x>0. g(x) x2-4, x>2.
Using the composition of functions, if the two functions are inverses of each other, therefore, we cannot conclude if f(x) and g(x) are inverses of each other.
To check if the two functions f(x) and g(x) are inverses of each other, we need to verify if their composition f(g(x)) and g(f(x)) results in the identity function f(x) = x.
Let's first find the composition f(g(x)):
f(g(x)) = f(x^2 - 4)
= sqrt(x^2 - 4) + 4
Now, let's find the composition g(f(x)):
g(f(x)) = g(sqrt(x) + 4)
= (sqrt(x) + 4)^2 - 4
= x + 16 + 8sqrt(x)
To check if f(x) and g(x) are inverses of each other, we need to check if f(g(x)) = x and g(f(x)) = x for all x in the domain of the functions.
For f(g(x)):
f(g(x)) = sqrt(x^2 - 4) + 4
This function is only defined for x > 2, since the square root of a negative number is not real. Therefore, the domain of f(g(x)) is (2, infinity).
For g(f(x)):
g(f(x)) = x + 16 + 8sqrt(x)
This function is only defined for x >= 0, since the square root of a negative number is not real. Therefore, the domain of g(f(x)) is [0, infinity).
Since the domains of f(g(x)) and g(f(x)) do not overlap, we cannot check if they are inverses of each other. Therefore, we cannot conclude if f(x) and g(x) are inverses of each other.
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The talk-time battery life of a group of cell
phones is normally disributed with a mean of 5
hours and a standard deviation of 15 minutes.
a)what percent of the phones have a battery life of at least 4 hours and 45 minutes? b)what percent of the phones have a battery life between 4. 5 hours and 5. 25 hours? c)what percent of the phones have a battery life less than 5 hours of greater than 5. 5 hours?
a) Approximately 79.38% of the phones have a battery life of at least 4 hours and 45 minutes.
b) Approximately 34.13% of the phones have a battery life between 4.5 hours and 5.25 hours.
c) Approximately 50% of the phones have a battery life less than 5 hours or greater than 5.5 hours.
a) What percentage battery life of 4 hours and 45 minutes?
a) For phones with a mean battery life of 5 hours and a standard deviation of 15 minutes, we can calculate the percentage of phones with a battery life of at least 4 hours and 45 minutes. By converting 4 hours and 45 minutes to minutes (4*60 + 45 = 285 minutes) and using the z-score formula, we find that the z-score is (285 - 300) / 15 = -1. Hence, the percentage is approximately 1 - 0.8359 = 0.1641, which is about 16.41%.
b) What percentage battery life between 4.5 hours and 5.25 hours?
b) To determine the percentage of phones with a battery life between 4.5 hours and 5.25 hours, we need to calculate the z-scores for both values. Converting the hours to minutes, we have 4.5 hours = 270 minutes and 5.25 hours = 315 minutes. The z-scores are (270 - 300) / 15 = -2 and (315 - 300) / 15 = 1. By referring to the standard normal distribution table, we find that the area between -2 and 1 is approximately 0.6141. Thus, the percentage is 0.6141 * 100 = 61.41%.
c) What percentage battery life less than 5 hours?c) For the percentage of phones with a battery life less than 5 hours or greater than 5.5 hours, we need to calculate the z-score for both cases. The z-score for 5 hours is (300 - 300) / 15 = 0, and the z-score for 5.5 hours is (330 - 300) / 15 = 2. By referring to the standard normal distribution table, we find that the area to the left of 0 is 0.5 and the area to the right of 2 is 1 - 0.9772 = 0.0228. Adding these percentages, we get 0.5 + 0.0228 = 0.5228, which is approximately 52.28%.
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Evaluate the integral. 8 Vi s dt Vi 8V1 ſ Vi dt=U Help me solve this Ca
The integral evaluates to (16/3)s³/² + C.
What is power rule of integration?The power rule of integration is a method for finding the indefinite integral of a function of the form f(x) = x^n, where n is any real number except for -1. The rule states that the indefinite integral of f(x) is (x^(n+1))/(n+1) + C, where C is an arbitrary constant of integration.
To evaluate the integral 8√(s) ds, follow these steps:
1. Rewrite the integral with a rational exponent: ∫8s¹/² ds
2. Apply the power rule for integration: ∫sⁿ ds = (sⁿ⁺¹/(n+1) + C, where n ≠ -1
3. Substitute n=1/2: (s³/²)/(3/2) + C
4. Multiply by 8: 8*(s³/²)/(3/2) + C
5. Simplify the expression: (16/3)s³/² + C
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Sarah tells her mom that there is a 40% chance she will clean her room, a 70% she will do her homework, and a 24% chance she will clean her room and do her homework. What is the probability of Sarah cleaning her room or doing her homework?
To find the probability of Sarah cleaning her room or doing her homework, we can use the addition rule for probabilities. However, we need to be careful not to count the probability of Sarah cleaning her room and doing her homework twice. Therefore, we need to subtract the probability of Sarah cleaning her room and doing her homework from the sum of the probabilities of Sarah cleaning her room and doing her homework separately.
Let C be the event that Sarah cleans her room, and let H be the event that Sarah does her homework. Then we know:
P(C) = 0.40 (the probability that Sarah cleans her room)
P(H) = 0.70 (the probability that Sarah does her homework)
P(C and H) = 0.24 (the probability that Sarah cleans her room and does her homework)
Using the addition rule, we can find the probability of Sarah cleaning her room or doing her homework as follows:
P(C or H) = P(C) + P(H) - P(C and H)
= 0.40 + 0.70 - 0.24
= 0.86
Therefore, the probability of Sarah cleaning her room or doing her homework is 0.86, or 86%.
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15/51+16/27-(-2/27-2/51)
Answer:
1
Step-by-step explanation:
USE PEMDAS OR ORDER OF OPERATIONS
1. Evaluate parenthesis.
-2/27 - 2/51 = - 52/459.
2. Add
15/51 + 16/27 = 407/459
3. Subtract to get the final answer
407/459 - -52/459 = 407/459 + 52/459 = 1
So, 15/51+16/27-(-2/27-2/51) = 1
Nancy's Cupcakes recorded how many cupcakes it recently sold of each flavor. â
â
âchocolate cupcakes 2
âpistachio cupcakes â 1
âbanana cupcakes â 5
âpumpkin cupcakes â 6
ââConsidering this data, how many of the next 21 cupcakes sold would you expect to be pumpkin cupcakes?â
A
9
B
7
C
6
D
3
Part B
What is probability of a chocolate cupcakes being sold?
â Probability (chocolate cupcakes) =
%
Note: Write your answer as a percentage rounded to the nearest whole number. â
We would expect 9 pumpkin cupcakes to be sold in the next 21 cupcakes. The probability of a chocolate cupcake being sold is approximately 14%.
The question asks to determine how many of the next 21 cupcakes sold would be expected to be pumpkin cupcakes, and also to find the probability of a chocolate cupcake being sold.
First, let's analyze the given data:
- Chocolate cupcakes: 2
- Pistachio cupcakes: 1
- Banana cupcakes: 5
- Pumpkin cupcakes: 6
Total cupcakes sold: 2 + 1 + 5 + 6 = 14
To find the expected number of pumpkin cupcakes in the next 21 sold, calculate the proportion of pumpkin cupcakes in the original data, and then multiply by 21:
(6 pumpkin cupcakes / 14 total cupcakes) * 21 = 9 (rounded)
So, we would expect 9 pumpkin cupcakes to be sold in the next 21 cupcakes (Answer A).
For Part B, we need to find the probability of a chocolate cupcake being sold. To do this, divide the number of chocolate cupcakes by the total number of cupcakes:
Probability (chocolate cupcakes) = (2 chocolate cupcakes / 14 total cupcakes) = 0.142857
Now, convert this probability to a percentage and round to the nearest whole number:
0.142857 * 100 = 14.29% ≈ 14%
So, the probability of a chocolate cupcake being sold is approximately 14%.
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Transformations and Congruence:Question 3 Triangle ABC is reflected over the x-axis. Which is the algebraic rule applied to the figure? Select one:
Hi! I'd be happy to help you with your question about transformations and congruence. When Triangle ABC is reflected over the x-axis, the algebraic rule applied to the figure is:
Your answer: (x, y) → (x, -y)
This rule states that the x-coordinate remains the same, while the y-coordinate is multiplied by -1, resulting in a reflection over the x-axis. This transformation preserves congruence, as the size and shape of Triangle ABC remain the same, only its position changes.
The algebraic rule applied to the figure when Triangle ABC is reflected over the x-axis is (x,y) → (x,-y), where x represents the x-coordinate and y represents the y-coordinate. This is because reflecting a figure over the x-axis involves keeping the x-coordinate the same while changing the sign of the y-coordinate. This preserves the congruence of the original and reflected triangles.
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Madie and Clyde buy another circular plot of land, smaller than the first, on which to plant an orchard. They have set up coordinates as before, with the center of the orchard at (0, 0). They will plant trees at all points with integer coordinates that lie within the orchard, except at (0, 0).
In this orchard, the tree at (5, 12) is on the boundary. What are the coordinates of the other trees that must also be on the boundary? Explain your answer
The coordinates of the other trees that must also be on the boundary are (-5, 12), (5, -12), (-5, -12), (12, 5), (12, -5), (-12, 5), and (-12, -5).
The coordinates of the other trees that must be on the boundary of the circular orchard, given that the tree at (5, 12) is on the boundary and the center of the orchard is at (0, 0) can be determined as follows.
1. Calculate the radius of the orchard using the distance formula:
sqrt((x2-x1)^2 + (y2-y1)^2).
In this case, (x1, y1) = (0, 0) and (x2, y2) = (5, 12).
2. Radius = sqrt((5-0)^2 + (12-0)^2) = sqrt(5^2 + 12^2) = sqrt(25 + 144) = sqrt(169) = 13.
Now, we know the radius of the orchard is 13. To find the other boundary points, we can use the property of circles that states that the points on the boundary are equidistant from the center.
Since the coordinates are integers and symmetric, we can list the other points as follows:
3. The coordinates of the other trees on the boundary are:
(-5, 12), (5, -12), (-5, -12), (12, 5), (12, -5), (-12, 5), and (-12, -5).
These points are also 13 units away from the center, making them equidistant from the center and thus on the boundary of the circular orchard.
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Mariah is training for a sprint distance triathlon. She plans on cycling from her house to the library, shown on the grid with a scale in miles. If the cycling portion of the triathlon is 12 miles, will mariah have cycled at least 2/3 of that distance during her bike ride?
Mariah cycles a distance of 8.6 miles, which is more than 8 miles, hence more than 2/3 of the cycling portion of the triathlon.
What is a triathlon?A triathlon is described as an endurance multisport race consisting of swimming, cycling, and running over various distances.
The coordinates are given as follows:
Library (4,9).Mariah's House: (9, 2).Suppose that we have two points, and . The distance between them is given by:
distance = √(x2 - x1)² + (y2-y1)²
We substitute in the equation
Hence the distance between her house and the library is:
D = 8.6 miles.
She cycles a distance of 8.6 miles, which is more than 8 miles, hence more than 2/3 of the cycling portion of the triathlon.
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Graph a right triangle with the two points forming the hypotenuse. Using the sides,
find the distance between the two points in simplest radical form.
(-5, -9) and (-7,-2)
Answer:
I believe the distance between these points is (2, 7), because the difference between -5 and -7 is 2, and the for -9 and -2, it's 7. Hope I helped.
Which of the following is the correct ratio for the image:
Responses
Sin 25 = 8 over b
Sin 25 = b over 8
Tan 25 = 8 over b
Tan 25 = b over 8
252-(18x8)
Ross says that he does not need parenthesis. Is he correct?
Yes
Step-by-step explanation:PEMDAS explains the order that operations are done.
PEMDAS
PEMDAS stands for Parentheses, Exponents, Multiplication and Division, Addition and Subtraction. This is the order of operations. Always start with operations inside parentheses, then exponents, then multiplication and division, and the last operations are addition and subtraction. In the problem above, parentheses come first, so means start with 18 x 8 and then do subtraction afterward.
Without Parentheses
Take the new expression, 252 - 18 x 8. Following the order of operations, multiplication goes first. This means multiply 18 x 8 first and then subtract. This order of operations is the same with or without parentheses. Since multiplication comes before subtraction, parentheses are not needed.
percent of birds in Forest A that are robins
Answer: To determine the percent of birds in Forest A that are robins, we need to know the number of robins and the total number of birds in Forest A. Let's assume that we have conducted a bird survey and found the following information:
Number of robins in Forest A = 50
Number of other birds in Forest A = 150
Total number of birds in Forest A = 50 + 150 = 200
To calculate the percentage of birds in Forest A that are robins, we can use the following formula:
Percentage = (Number of robins / Total number of birds) x 100%
Plugging in the values, we get:
Percentage = (50 / 200) x 100% = 25%
Therefore, 25% of the birds in Forest A are robins.
Step-by-step explanation:
PLEASE HELP
A cone frustum has height 2 and the radii of its bases are 1 and 2 1/2.
What is the volume of the frustum?
What is the lateral area of the frustrum?
The volume of the frustum is 132.84 cubic units.
The lateral area of the frustum is 7π√17/4 square units.
To calculate the volume of the frustum, we can use the formula:
V = (1/3) × π × h × (r₁² + r₂² + (r₁ * r₂))
where:
V is the volume of the frustum,
h is the height of the frustum,
r₁ is the radius of the smaller base,
r₂ is the radius of the larger base, and
π is a mathematical constant approximately equal to 3.14159.
Plugging in the values given:
h = 2,
r₁ = 1, and
r₂ =[tex]2\frac{1}{2}[/tex] = 5/2,
V = (1/3)× π × 2 × (1² + (5/2)² + (1 × (5/2)))
V = (1/3) × π × 2 × (1 + 25/4 + 5/2)
V = 132.84
Therefore, the volume of the frustum is approximately 132.84 cubic units.
To calculate the lateral area of the frustum, we can use the formula:
A = π × (r₁ + r₂) × l
To find the slant height, we can use the Pythagorean theorem:
l = √(h² + (r₂ - r₁)²)
Plugging in the values given:
h = 2, r₁ = 1, and r₂ =5/2
l = √ 2² + ((5/2) - 1)²
l = √(4 + (5/2 - 2)²)
l = √(17/4)
l = √(17)/2
Now, plugging in the values into the lateral area formula:
A = π×(1 + 5/2)× √17/2
A = π × (7/2) × √(17)/2
A = 7π√17/4
Therefore, the lateral area of the frustum is 7π√17/4 square units.
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X is a random variable with the probability function: f(x) = x/6 for x = 1, 2, or 3. the expected value of x is _____.
The expected value of X is 2.33.
To find the expected value of the random variable X, we need to use the given probability function f(x) and the formula for expected value: E(X) = Σ[x * f(x)]. Here's a step-by-step explanation:
1. Identify the possible values of x: 1, 2, and 3.
2. Calculate f(x) for each x value using the given probability function f(x) = x/6:
f(1) = 1/6
f(2) = 2/6 = 1/3
f(3) = 3/6 = 1/2
3. Apply the expected value formula by multiplying each x value by its corresponding f(x) and summing the results:
E(X) = (1 * 1/6) + (2 * 1/3) + (3 * 1/2) = 1/6 + 2/3 + 3/2
4. Simplify the expression to find the expected value:
E(X) = 1/6 + 4/6 + 9/6 = (1 + 4 + 9)/6 = 14/6 = 7/3
The expected value of the random variable X is 7/3 or 2.33.
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