Answer:
\( \frac{\frac{1}{5}}{\frac{15}{4}} \)
Step-by-step explanation:
Given:
Miles a van travel = \( 3\frac{3}{4} \) miles
Gallons of gas required = \( \frac{1}{5} \) gallon of gas
Required:
Unit rate in gallons per mile
SOLUTION:
Unit rate in gallons per mile = (gallons of gas)/miles
Unit rate = \( \frac{\frac{1}{5}}{3\frac{3}{4}} \)
Unit rate = \( \frac{\frac{1}{5}}{\frac{15}{4}} \)
The fraction that represents the unit rate in gallons per mile = \( \frac{\frac{1}{5}}{\frac{15}{4}} \)
Answer:
7/2 and 1/3
Step-by-step explanation:
Look for the fraction that has the number of miles in the numerator and the number of gallons in the denominator
What is the answer of this : 3+5-9*6/2
Answer:
3+5-9*6/2
3+5-9*3
3+5-27
8-27
-19
Plzz help me I'm going insane !!!
Destiny drew a scale drawing of a neighborhood park. The volleyball court, which is 18 meters long in real life, is 3 centimeters long in the drawing. What scale did Destiny use?
Answer:
probably 1cm=6 meters
Step-by-step explanation:
two unit squares share the same center. the overlapping region of the two squares is an octagon with perimeter $\frac{10}{3}$. what is the area of the octagon?
Two unit squares share the same center. the overlapping region of the two squares is an octagon with perimeter 10/3. The area of the octagon is 0.833 square unit.
Let the octagon's eight successive vertices be A, B, C, D, E, F, G, and H.
Connect the squares' vertices to the shared center O by drawing the segments OA, OB, OC, OD, OE, OF, OG, and OH.
The octagon is divided into 8 triangles by the segments.
The bases of these triangles are AB, BC, CD, DE, EF, FG, GH, and HA; each triangle's height equals 1/2 of a unit.
Consequently, the octagon's surface area is
Area = (1/2) × (1/2) × (AB + BC + CD + DE + EF + FG + GH + HA)
Area = (1/4) × Perimeter of the octagon
Perimeter of the octagon = 10/3
Area = (1/4) × (10/3)
Area = 10/12
Area = 0.833 square unit.
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Pls help me ASAP I have other homework to do and I don’t have time for this. It also detects if it’s right or wrong:(
Answer:
$20
Step-by-step explanation:
you divide 40 by the two tickets and get $20.
Answer:
$20
Step-by-step explanation:
2 into 40 = 20
3 into 60 = 20
4 into 80 = 20
Which of the following factors does NOT control the stability of a slope?
the angle of repose for intact bedrock
whether the slope is rock or soil
the amount of water in the soil
the orientation of fractures, cleavage, and bedding
The factor that does NOT control the stability of a slope is the angle of repose for intact bedrock. The angle of repose refers to the steepest angle at which a pile of loose material remains stable without sliding. It is mainly applicable to loose materials like soil and granular substances, not intact bedrock.
Bedrock stability depends on factors such as its strength, fracturing, and geological properties, rather than the angle of repose. Factors that control the stability of a slope include whether the slope is rock or soil. Rock slopes tend to be more stable than soil slopes due to the cohesive nature of intact rock.
The amount of water in the soil also affects slope stability, as excessive water can increase pore pressure and reduce the shear strength of the soil, leading to slope failure. Additionally, the orientation of fractures, cleavage, and bedding in the rock can influence slope stability by creating planes of weakness or strength.
To summarize, while the angle of repose is a significant factor in slope stability, it is not applicable to intact bedrock. The stability of a slope is influenced by the type of material (rock or soil), the presence of water, and the orientation of fractures and bedding.
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Write a rule for the geometric sequence with the given description: The first term is −3, and each term is 5 times the previous term. Then, use the rule to solve for the 9th term. All work must be shown.
Answer: -1171875
Step-by-step explanation:
From the question,
a = first term = -3
r = common ratio = 5
The ninth term will be:
= ar^8
= -3 × 5^8
= -3 × 390625
= -1171875
Therefore, the ninth term is -1171875.
Classify each quadrilateral in as many ways as possible using a trapezoid
A trapezoid is a quadrilateral with only one pair of parallel sides. By using a trapezoid, we can classify different quadrilaterals in several ways, such as:Rectangle:
When a trapezoid has two pairs of parallel sides, it's a rectangle.Rhombus: When a trapezoid has two pairs of congruent sides, it's a rhombus.Square:
When a trapezoid has two pairs of congruent, parallel sides, and four congruent angles, it's a square.Kite: When a trapezoid has two pairs of adjacent congruent sides, it's a kite.
Parallelogram: When a trapezoid has two pairs of parallel sides, it's a parallelogram.
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Write the ratio using fractional notation.
8 to 9
Answer:
Step-by-step explanation:
The GCF of 8 and 9 is 1
Divide both terms by the GCF, 1:
8 ÷ 1 = 8
9 ÷ 1 = 9
The ratio 8 : 9 cannot be reduced further by dividing both terms by the GCF = 1 :
This ratio is already in lowest terms.
Therefore:
8 : 9 = 8 : 9
one ticket will be drawn at random from the box below. let a be the event that the ticket has a value of 8 and b be the event that the ticket is white. screen shot 2022-05-05 at 10.42.16 check all the descriptors below that describe the relationship between events a and b. group of answer choices B. not mutually exclusive A. mutually exclusive C. dependent D. independent
Events a and b are not mutually exclusive.
Based on the information provided, it is not possible to determine the relationship between events a (the ticket has a value of 8) and b (the ticket is white) without further information. The relationship between two events can be classified as mutually exclusive, dependent, or independent based on their probabilities and how they are related.
Mutually exclusive events: Events that cannot occur at the same time. If events a and b are mutually exclusive, it means that a ticket cannot have a value of 8 and be white at the same time. In this case, a and b are not mutually exclusive because it is possible for a ticket to have a value of 8 and be white.
Dependent events: Events that are influenced by each other. To determine if events a and b are dependent, we need to know if the occurrence of one event affects the probability of the other event. Without further information, we cannot determine whether a and b are dependent or not.
Independent events: Events that are not influenced by each other. If events a and b are independent, it means that the probability of one event occurring does not affect the probability of the other event occurring. Without further information, we cannot determine whether a and b are independent or not.
In conclusion, based on the given information, we can only say that events a and b are not mutually exclusive. We cannot determine whether they are dependent or independent without additional information.
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You deposit $450 in an account that pays
6% interest compounded yearly. What is
the account balance after 6 years?
Answer:
638.33
Step-by-step explanation:
\(450(1+.06)^6\)
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On November 1st, Halloween candy is discounted 40%. If the original price of a bag of candy corn was $5, what is the final price of the candy, including the discount and a 10% sales tax?
$2.20
$2.50
$2.60
$3.30
Answer:
$2.20
Step-by-step explanation:
40% converted to decimal is 0.4.
$5 × 0.4 = $2
10% converted to decimal is 0.1.
Because the tax is increasing the price by a percentage you add a 1 to the 0.1.
1.1 × $2 = $2.20
Answer:
$3.30
Step-by-step explanation:
40% of $5 = $2
Therefore, discounted price of candy is $5 - $2 = $3.
10% sales tax = 1.1 x $3 = $3.30
Answer: $3.30
The average production amount of a certain type of apple tree is normally distributed with a mean of 10 apples and a standard deviation of 2 apples. If we select 25 apple trees, what is the probability that the total production of these trees will exceed 255 apples
Thus, the probability that the total production of these 25 apple trees will exceed 255 apples is 0.3085, or about 31%.
To solve this problem, we need to first find the distribution of the total production of the 25 apple trees.
We know that the average production amount of a single apple tree is normally distributed with a mean of 10 apples and a standard deviation of 2 apples.
Since we are selecting 25 apple trees, the total production will be the sum of the production of these 25 trees.Know more about the normally distributed
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a triangle is the shape used to represent the components of total health. rue or false
A triangle is a shape used to represent the components of total health. True
During the ceremony, a printing
company received a very large order to
carry out the production of campaign
material. It was estimated that the 3
machines would take 24 hours to
perform the entire service. Assuming
that one of these machines breaks
down before starting the service, how
long will it take to meet this demand?
If one of the three machines breaks down before starting the service, it would take the remaining two machines longer to meet the demand. If each machine can produce the same amount of material, it would take each machine 24 hours / 3 machines = 8 hours to perform the entire service.
So, with two machines working, it would take each machine 8 hours / 2 machines = 4 hours to complete the job. Thus, the total time to meet the demand would be 4 hours * 2 machines = 8 hours.
. Find the volume of each sphere or hemisphere. Round to the nearest tenth.
sphere: area of great circle =98.5m²
The volume of the sphere with an area of the great circle equal to 98.5m² is approximately 244.7 cubic meters.
To find the volume of a sphere, we need to know the radius or the area of the great circle. In this case, we are given the area of the great circle, which is 98.5m².
The formula to find the volume of a sphere is V = (4/3)πr^3, where V represents the volume and r is the radius of the sphere.
To find the radius, we need to determine the radius of the great circle. The radius of the great circle is equal to the radius of the sphere.
The formula for the area of a circle is A = πr^2, where A represents the area and r is the radius.
We are given the area of the great circle as 98.5m². Using the formula, we can solve for the radius of the great circle:
98.5 = πr^2
Solving for r, we get r ≈ √(98.5/π) ≈ 5.6 meters.
Substituting the radius value into the volume formula, we have:
V = (4/3)π(5.6)^3 ≈ 244.7 cubic meters.
Therefore, the volume of the sphere with an area of the great circle equal to 98.5m² is approximately 244.7 cubic meters when rounded to the nearest tenth.
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(20 Points) I just want to be done with this so, some fast help would be much appreciated.
Answer:
I think it would be C
I'm not completely sure though!
10 points and marked brainliest!!!!!
Answer:
10 degrees
Step-by-step explanation:
For an equilateral triangle, all three angles add up to 180, meaning that each angle is 60 degrees. Knowing that, we can substitute that number in to solve for x.
5x + 10 = 60
5x = 50
x = 10
Answer:
60 because equilateral triangle have 60-60-60 angles
Step-by-step explanation:
but for step by step:
3 (5x+10)=180
15x+30=180
15x= 150
x=10
5x+10= 5(10)+10= 60
ACME Exploding Faucets' income flows at the rate f(t)=500+40t (a) (2 pts) Find ACME's total money flow over the interval from t=0 years to t=20 years. (b) (2pts) Find the present value of ACME's money flow over the same interval. (c) (1 pt) Find the accumulated amount of ACME's money flow over the same interval. (d) (2 pts) Find the present value of ACME's money flow, assuming that the money flows forever. For full (or any) credit, show your work and explain your reasoning, briefly.
a) ACME's total money flow over the interval from t=0 years to t=20 years is $14,000. b) this integral, we need to use techniques like integration by parts. c) The cash flow is the income flow function f(t) = 500 + 40t, and the discount rate is r%.
(a) To find ACME's total money flow over the interval from t=0 years to t=20 years, we need to calculate the definite integral of the income flow function f(t) from t=0 to t=20:
Total money flow = ∫(500+40t) dt (from 0 to 20)
To evaluate this integral, we can apply the power rule of integration:
Total money flow = [500t + 20t^2/2] (from 0 to 20)
= [500(20) + 20(20^2)/2] - [500(0) + 20(0^2)/2]
= [10000 + 4000] - [0 + 0]
= 14000
Therefore, ACME's total money flow over the interval from t=0 years to t=20 years is $14,000.
(b) To find the present value of ACME's money flow over the same interval, we need to discount the future cash flows by an appropriate discount rate. Let's assume the discount rate is r%.
Present value = ∫(500+40t)e^(-rt) dt (from 0 to 20)
To evaluate this integral, we need to use techniques like integration by parts or substitution, depending on the value of r. Please provide the value of r so that we can proceed with the calculation.
(c) The accumulated amount of ACME's money flow over the same interval represents the sum of all the money flows received at each point in time. It can be calculated as the definite integral of the income flow function from t=0 to t=20:
Accumulated amount = ∫(500+40t) dt (from 0 to 20)
Using the same integration technique as in part (a), we find:
Accumulated amount = [500t + 20t^2/2] (from 0 to 20)
= 14000
Therefore, the accumulated amount of ACME's money flow over the interval from t=0 years to t=20 years is $14,000.
(d) To find the present value of ACME's money flow assuming the money flows forever, we need to consider the concept of perpetuity. A perpetuity represents a constant cash flow received indefinitely into the future.
The present value of a perpetuity can be calculated using the formula:
Present value = Cash flow / Discount rate
In this case, the cash flow is the income flow function f(t) = 500 + 40t, and the discount rate is r%.
Present value = (500 + 40t) / r
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The question is:
ACME Exploding Faucets' income flows at the rate f(t) = 500 + 40t
(a) (2 pts) Find ACME's total money flow over the interval from t = 0 years to t = 20 (b) (2 pts) Find the present value of ACME's money flow over the same interval. (c) (1pt) Find the accumulated amount of ACME's money flow over the same interval. (d) (2 pts) Find the present value of ACME's money flow, assuming that the money flows forever. years.
For full (or any) credit, show your work and explain your reasoning, briefly
Plsssss help with the equation
7. an application of the distribution of sample means people suffering from hypertension, heart disease, or kidney problems may need to limit their intakes of sodium. the public health departments in some us states and canadian provinces require community water systems to notify their customers if the sodium concentration in the drinking water exceeds a designated limit. in connecticut, for example, the notification level is 28 mg/l (milligrams per liter). suppose that over the course of a particular year the mean concentration of sodium in the drinking water of a water system in connecticut is 26.4 mg/l, and the standard deviation is 6 mg/l. imagine that the water department selects a simple random sample of 32 water specimens over the course of this year. each specimen is sent to a lab for testing, and at the end of the year the water department computes the mean concentration across the 32 specimens. if the mean exceeds 28 mg/l, the water department notifies the public and recommends that people who are on sodium-restricted diets inform their physicians of the sodium content in their drinking water. use the distributions tool to answer the following question. (hint: start by setting the mean and standard deviation parameters on the tool to the expected mean and standard error for the distribution of sample mean concentrations.)
Based on the given information, we have the mean concentration of sodium in the drinking water of a water system in Connecticut as 26.4 mg/l and the standard deviation as 6 mg/l.
The water department selects a simple random sample of 32 water specimens over the course of a year. To answer the question using the distributions tool, we need to set the mean and standard deviation parameters on the tool to the expected mean and standard error for the distribution of sample mean concentrations.
The expected mean for the distribution of sample mean concentrations is the same as the mean concentration of sodium in the drinking water, which is 26.4 mg/l.
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The water department in Connecticut is monitoring the concentration of sodium in their drinking water. By calculating the mean and standard error for the distribution of sample means, they can determine the probability of the mean concentration exceeding the notification level of 28 mg/l. If this probability is low, the water department will notify the public and recommend necessary actions.
In this scenario, the water department in Connecticut wants to monitor the concentration of sodium in their drinking water. They have set a notification level of 28 mg/l, meaning that if the mean concentration of sodium across a sample of 32 water specimens exceeds this level, they will notify the public.
To analyze this situation, we can use the distribution of sample means. The mean concentration of sodium in the drinking water of the water system is given as 26.4 mg/l, with a standard deviation of 6 mg/l.
To find the expected mean and standard error for the distribution of sample means, we can use the following formulas:
Expected mean of sample means = population mean
= 26.4 mg/l
Standard error of sample means = population standard deviation / square root of sample size
Using the given values, the standard error of sample means can be calculated as follows:
Standard error of sample means = 6 mg/l / square root of 32
≈ 1.06 mg/l
Now, we can use a distributions tool to find the probability that the mean concentration of sodium in the sample of 32 water specimens exceeds 28 mg/l. We will set the mean parameter on the tool to 26.4 mg/l and the standard deviation parameter to 1.06 mg/l.
By entering these values into the distributions tool, we can find the probability of obtaining a mean concentration greater than 28 mg/l. If this probability is less than a certain threshold (e.g., 0.05), it indicates that the mean concentration exceeding 28 mg/l is unlikely to occur by chance alone. In such cases, the water department would notify the public and recommend that individuals on sodium-restricted diets inform their physicians of the sodium content in their drinking water.
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Choose the missing step in the given solution to the inequality −6x − 10 > 14 + 2x. (1 point)
−6x − 10 > 14 + 2x
_______________
-8x>24
x 14
B.) -8x -10 >14
C.)−4x − 10 < 14
D.) −8x − 10 < 14
Answer:
- 8x > 24
Step-by-step explanation:
Given
- 6x - 10 > 14 + 2x ( subtract 2x from both sides )
- 8x - 10 > 14 ( add 14 to both sides )
- 8x > 24 ← required missing step
Divide both sides by - 8, reversing the symbol as a result of dividing by a negative quantity.
x < - 3 ← is the solution
Luna mixes 3/4 of orange juice with 3/8 cup of cranberry juice. She gives 5/8 cup of the juice to Mags. How much is left in Lunas glass?
Answer:
Luna has half a cup (1/2) (0.5) left in her cup
Step-by-step explanation:
3/4+3/8=1.125 1.125-5/8 of a cup=0.5
Find the coordinates of the midpoint
Answer:
(2,2)
Step-by-step explanation:
(5+-1/2,8+-4/2)
(-2,2)
The relationship between osmotic pressure and osmosis Osmotic pressure may be calculated using the following formula: □=iRT(C
nn
−C
oul
) where □= Osmotic pressure in atmospheres T= temperature in degrees Kelvin (0
∘
C=273
∘
K) So room temp is (273
∘
+20
∘
=293
∘
Kelvin ) R= gas constant =0.082 atm/(K×M) C
in
= Concentration of solution inside bag in M(M= moles/ L ) C
out
= concentration of solution outside bag =0M i= the number of ions dissociated from each molecule in solution Note: non-electrolytes, like sugar, will not dissociate in solution, unlike electrolytes which will dissociate into two or more ions in solution. So i=1 for sugar. Use the equation above to calculate the initial osmotic pressure (in atmospheres) developed by each solution. (Show your calculations in the space provided below.) Hint: First calculate (C
1n
) the molarity (M= moles /L) of the solution in the dialysis bag. sucrose molecular weight =342 g/mole 70% sucrose =700 g/L... how many moles of glucose are in 1 L ? Then enter the appropriate values into the equation above. Osmotic pressure of 70% Sucrose solution. Please write out all the steps. Don't forget to include the units! (16%) Osmotic pressure of 35% Sucrose solution ( 8%) Osmotic pressure of water (control) (4\%) How are osmotic pressure and the rate of osmosis related? (4\%) Now that you understand the relationship between osmotic pressure and the rate of osmosis, you can now predict the rate of osmosis for other solutions. Predict what would happen if the dialysis membrane was impermeable to ions and instead of sucrose NaCl was used at the same molarity as the 70% sucrose. Make sure to explain why your prediction would occur. Hint: Remember NaCl will ionize in water. How many ions will form from each molecule of this salt? (i=?)(8%)
The relationship between osmotic pressure and osmosis is closely linked. Osmotic pressure is the pressure exerted by a solvent to prevent the flow of water into a solution through a semipermeable membrane. It is directly proportional to the concentration of solute particles in the solution.
To calculate osmotic pressure, we can use the formula: Π = iRT(Cin - Cout)
- Π represents osmotic pressure in atmospheres.
- i represents the number of ions dissociated from each molecule in solution. For non-electrolytes like sugar, i is equal to 1.
- R is the gas constant, which is 0.082 atm/(K×M).
- T represents the temperature in Kelvin. For room temperature, it is 293 Kelvin.
- Cin represents the concentration of the solution inside the dialysis bag in moles per liter (M).
- Cout represents the concentration of the solution outside the dialysis bag.
Let's calculate the osmotic pressure for each of the given solutions:
1. Osmotic pressure of 70% Sucrose solution:
First, we need to calculate the molarity of the solution inside the bag (Cin). The molecular weight of sucrose is 342 g/mol. So, for a 70% sucrose solution, we have 700 g of sucrose in 1 L of solution. To convert this to moles, we divide by the molecular weight: (700 g / 342 g/mol) = 2.05 mol/L.
Now we can substitute the values into the formula:
Π = iRT(Cin - Cout)
Π = (1)(0.082 atm/(K×M))(293 K)(2.05 M - 0 M)
Π = 47.79 atm
Therefore, the osmotic pressure of the 70% Sucrose solution is 47.79 atm.
2. Osmotic pressure of 35% Sucrose solution:
Using the same process as above, we find that the molarity of the solution inside the bag (Cin) is 1.02 M.
Π = iRT(Cin - Cout)
Π = (1)(0.082 atm/(K×M))(293 K)(1.02 M - 0 M)
Π = 23.67 atm
Therefore, the osmotic pressure of the 35% Sucrose solution is 23.67 atm.
3. Osmotic pressure of water (control):
For water, the concentration of solute (Cin) is 0 M, as there is no solute present.
Π = iRT(Cin - Cout)
Π = (1)(0.082 atm/(K×M))(293 K)(0 M - 0 M)
Π = 0 atm
Therefore, the osmotic pressure of water is 0 atm.
The relationship between osmotic pressure and the rate of osmosis is that higher osmotic pressure leads to a faster rate of osmosis. Osmosis is the movement of solvent molecules from an area of lower solute concentration to an area of higher solute concentration through a semipermeable membrane. The higher the osmotic pressure, the greater the driving force for water molecules to move across the membrane.
If the dialysis membrane were impermeable to ions and NaCl was used instead of sucrose at the same molarity (2.05 M), the osmotic pressure would be different. NaCl dissociates into two ions in solution, so the value of i would be 2.
Π = iRT(Cin - Cout)
Π = (2)(0.082 atm/(K×M))(293 K)(2.05 M - 0 M)
Π = 97.98 atm
Therefore, if NaCl were used instead of sucrose, the osmotic pressure would be 97.98 atm. This is because NaCl generates more particles (ions) in solution, increasing the osmotic pressure compared to sucrose.
By understanding the relationship between osmotic pressure and the rate of osmosis, we can predict that a solution with higher osmotic pressure will have a faster rate of osmosis compared to a solution with lower osmotic pressure.
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Work out x^2- 2x
when x =4
Answer:
8
Step-by-step explanation:
\(x^2-2x \\x=4\\(4)^2-2(4)\\16-8\\8\)
A graduate student is designing a research study. She is hoping to show that the results of an experiment are statistically significant. What type of p-value would she want to obtain?.
Answer: significant
Step-by-step explanation:
Determine whether a triangle with the given side lengths is a right triangle. side lengths right triangle not a right triangle not enough information 5, 13, 14 18, 24, 30 8, 15, 17 22, 29, 36
Answer:
It is a right triangle
Step-by-step explanation:
Please help me ASAP.
The 3 inside angles of a triangle need to equal 180.
X = 180 - 70 - 20 = 90
x = 90 degrees
Laquida has a circular garden with a radius of 4.5ft. She wants to put a vinyl fence around half of her garden and
a wooden fence around the other half.
The vinyl fencing is sold in panels that are 36 inches long.
Vinyl fencing costs $23.00 for each 36-inch panel
About how much will the vinyl fencing cost? Use 3.14 for pie.
F. $14
G.$115
H.$220
J.$650
The circumference of a circular garden is 78.5 feet. What is the radius of the garden? Use 3.14 for it and do not round your answer.
?
Work Shown:
C = 2*pi*r
78.5 = 2*3.14*r
78.5 = 6.28r
r = (78.5)/(6.28)
r = 12.5