According to a college survey, 22% of all students work full time. find the mean for the number of 3) students who work full time in samples of size 16.
Assuming that the students
worldwide are being considered, because of the extremely large population, this
can be considered as a binomial distribution. A normal distribution is used most
usually as a fair approximation of the binomial. The mean is the expectation,
therefore:
E[x] = np = (16)(0.22) = 3.52
μ = 3.52
To find the mean for the number of students who work full time in samples of size 16, multiply the sample size by the percentage of students who work full time.
Explanation:To find the mean for the number of students who work full time in samples of size 16, we can simply multiply the sample size (16) by the percentage of students who work full time (22%):
Mean = 16 * 0.22 = 3.52
Therefore, the mean number of students who work full time in samples of size 16 is 3.52.
Karen massed an object 3 times using the same equal arm balance and gram massed. Her results were 18.324 g 18.308 g and 18.342 g. How could she best report the mass of the object
A river has a steady speed of 0.500 m/s. a student swims upstream a distance of 1.00 km and swims back to the starting point. if the student can swim at a speed of 1.20 m/s in still water, how long does the trip take? compare this with the time the trip would take if the water were still.
The student would take approximately 33.6 minutes to swim 1 km upstream and then 1 km downstream. Comparatively, if the water were still, the round trip would only take about 27.8 minutes.
Explanation:To calculate the time it takes for the trip upstream and downstream, we must consider the effect of the river's speed on the swimmer's speed.
Upstream: When the student swims upstream, the river speed works against his own speed. Here, we subtract the river's speed from the student's speed: effective speed = 1.20 m/s - 0.500 m/s = 0.700 m/s. The distance he covers is 1.00 km = 1000 m. The time taken going upstream is then t = Distance/Speed = 1000 m / 0.700 m/s = 1428.6 s.
Downstream: When swimming downstream, the river speed aids the student's speed. Now, we add the student's swimming speed to the river's speed: effective speed = 1.20 m/s + 0.500 m/s = 1.70 m/s. With the same distance to cover, the time taken to swim downstream is: t = 1000m / 1.70 m/s = 588.24 s.
In total, the round trip time amounts to: ttotal = 1428.6 s + 588.24 s = 2016.84 s, which is approximately 33.6 minutes.
If the water were still, the student would swim at his own speed both ways: t = 1000 m / 1.20 m/s = 833.33 s each way. So, the total round trip would take: ttotal = 833.33 s × 2 = 1666.66 s, or approximately 27.8 minutes.
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The round trip takes 2017 seconds with the current and 1666 seconds in still water. Swimming upstream and downstream times factor into this calculation.
To determine how long the trip takes for a student swimming upstream and then back downstream, we need to consider both the swimmer’s speed and the speed of the river current.
When swimming upstream:Swimmer's speed relative to ground = Swimmer's speed in still water - River's speed = 1.20 m/s - 0.50 m/s = 0.70 m/s.
Time taken to swim upstream = Distance / Speed = 1000 m / 0.70 m/s = 1429 s.
When swimming downstream:Swimmer's speed relative to ground = Swimmer's speed in still water + River's speed = 1.20 m/s + 0.50 m/s = 1.70 m/s.
Time taken to swim downstream = Distance / Speed = 1000 m / 1.70 m/s = 588 s.
Total time for the round trip = Time upstream + Time downstream = 1429 s + 588 s = 2017 s.
If the water were still, the student's speed would be 1.20 m/s in both directions:
Time for one direction in still water = Distance / Speed = 1000 m / 1.20 m/s ≈ 833 s.
Total time for the round trip in still water= 833 s + 833 s = 1666 s.
Therefore, it takes 2017 s to complete the trip with the current, compared to 1666 s without the current.
The density of uranium is 18.8 g/cm3 . part a what is this value in kilograms per cubic meter?
Final answer:
To convert the density of uranium from g/cm³ to kg/m³, multiply the density by the factors to convert grams to kilograms and then cubic centimeters to cubic meters, resulting in a density of 18,800 kg/m³.
Explanation:
To convert the density of uranium from grams per cubic centimeter (g/cm³) to kilograms per cubic meter (kg/m³), we will use the conversion factors of 1 kg being equal to 1000 grams and 1 m³ being equal to 1,000,000 cm³. The density of uranium given is 18.8 g/cm³.
Step 1: Convert grams to kilograms.
1 g = 0.001 kgMultiply the density value by the conversion factor to change grams to kilograms:
Density in kg/cm³ = 18.8 g/cm³ * 0.001 kg/g.
So, Density in kg/cm³ = 0.0188 kg/cm³.
Step 2: Convert cubic centimeters to cubic meters.
1 cm³ = 1/1,000,000 m³Now, multiply the density in kg/cm³ by the conversion factor to change cubic centimeters to cubic meters:
Density in kg/m³ = 0.0188 kg/cm³ * 1,000,000 cm³/m³.
So, Density in kg/m³ = 18,800 kg/m³.
A car increases its speed from 9.6 meters per second to 11.2 meters per second in 4.0 seconds. the average acceleration of the car during this 4.0-second interval is answer
Avg Acceleration is
[tex]\rm 0.4\;m/sec^2[/tex]
Step by Step Solution :
Given :
Final Speed, v = 11.2 m/sec
Initial Speed, u = 9.6 m/sec
Time, t = 4 sec
Calculation :
We know that,
[tex]\rm Avg\;Acceleration = \dfrac{v - u }{t}[/tex]
[tex]\rm Avg \; Acceleration = \dfrac{11.2-9.6}{4}[/tex]
[tex]\rm Avg\;Acceleration =\dfrac{1.6}{4}=0.4 \;m/sec^2[/tex]
Therefore avg acceleration is
[tex]\rm 0.4\;m/sec^2[/tex]
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Which type of friction prevents a pile of rocks from falling apart?
Rolling friction
Kinetic friction
Cohesive friction
Static friction
why would the size of a star affect its luminosity
The size of a star directly affects its luminosity because larger stars have a larger surface area and can emit more light and heat. On the other hand, smaller stars have a smaller surface area and emit less light, resulting in a lower luminosity.
Explanation:The size of a star affects its luminosity because the luminosity of a star is directly related to its surface area. Larger stars have a larger surface area, which allows them to emit more light and heat, resulting in a higher luminosity. On the other hand, smaller stars have a smaller surface area and emit less light, leading to a lower luminosity.
For example, let's consider two stars of the same temperature, but different sizes. The larger star will have a greater luminosity because it has a larger surface area from which it can radiate energy. Conversely, the smaller star will have a lower luminosity due to its smaller surface area.
Therefore, the size of a star directly impacts its luminosity, with larger stars being more luminous than smaller stars.
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Colorful light emissions are applicable to everyday life. where else have you observed colorful light emissions? are these light emission applications related? explain.
Colorful light emissions are applicable to everyday life.
What is science?Science is the methodical, empirically-based pursuit and application of knowledge and understanding of the natural and social worlds.
People may contribute to the development of new knowledge through science and utilize it to promote their objectives.
Every time matter produces light All materials emit light when heated.
The part of a cooking stove, the metal filaments in a lightbulb, and even solar radiation from the sun creating multicolored lights are just a few examples of how this happens in the world around us.
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If there was an sudden change in exchange rates that resulted in fewer U.S. Dollars being required to buy a Euro, you could expect
Answer:
The correct answer is "the dollar to appreciate when compared to the Euro".
Explanation:
If fewer US dollars are required to buy one euro, this means that the value of the euro concerning this currency would fall. Therefore the dollar appreciates against the euro. This way you can buy more euros with the same amount of dollars you had before.
Have a nice day!
In gym class you run 22 m horizontally, then climb a rope vertically for 6.2 m. What is the direction angle of your total displacement, as measured from the horizontal?
Express your answer using two significant figures and include the appropriate units.
Answer:
[tex]\theta = 16 degree[/tex]
Explanation:
Displacement in horizontal direction(d) = 22 m
displacement in vertical direction(h) = 6.2 m
As we know that total displacement is the straight line which joins the initial position and final position of the object
so here we will have
[tex]tan\theta = \frac{h}{d}[/tex]
now plug in all data in it
[tex]tan\theta = \frac{6.2}{22}[/tex]
[tex]\theta = tan^{-1}(0.282)[/tex]
[tex]\theta = 15.74 degree[/tex]
since we have to give the answer in two significant digit so it is
[tex]\theta = 16 degree[/tex]
If the temperature at the surface of earth (at sea level) is 40°c, what is the temperature at 2000 m if the normal lapse rate is 6.4°c/1000 m?
If the temperature at the surface of the earth (at sea level) is 40° Celcius, then the temperature at 2000 meters would be 27.2 degrees Celcius if the normal lapse rate is 6.4° c / 1000 meters.
What is the kelvin scale of temperature?It is a scale of temperature used to measure the temperature, the kelvin scale of temperature is also known as the absolute scale of temperature.
As given in the problem If the temperature at the surface of the earth (at sea level) is 40° Celcius,
Normal lapse rate = 6.4° c / 1000 meters
The decrease in the temperature for 2000 meter height = 6.4×2
=12.8° Celcius
The temperature at 2000 meters height = 40 - 12.8
=27.2° Celcius
Thus, the temperature at 2000 meters would be 27.2 degrees Celcius.
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Final answer:
By applying the normal lapse rate of 6.4°C per 1000 meters, the temperature decrease from 40°C at sea level to 27.2°C at 2000 meters above sea level can be calculated.
Explanation:
The question asks about the change in temperature with altitude, applying the concept of the normal lapse rate. If the temperature at the surface of the earth (at sea level) is 40°C, and considering the normal lapse rate is 6.4°C per 1000 meters, one can calculate the temperature at 2000 meters above sea level. The formula to calculate this is: Temperature at altitude = Surface temperature - (Lapse rate × altitude/1000).
Using the given values in the above formula: 40°C - (6.4°C/1000m × 2000m) = 40°C - 12.8°C = 27.2°C. Therefore, the temperature at 2000 meters above sea level would be 27.2°C.
What happens to the force between two charges if the distance between them is tripled?
What is the potential engery of a 150 kg diver standing on a diving board that is 10m high?
Answer:
anime
Explanation:
anime=LIFE
Can someone check if what i wrote so far makes sense and if i made a mistake.
The alignment of atoms where the north poles face one way and the south poles face the opposite way is also known as which of the following? A) area B) domain C) properties D) force
The energy transfer diagram represents the energy of a light bulb.
How much electrical energy is involved in this transformation?
60 J
80 J
100 J
120 J
Answer: 120 J
Explanation:
The law of conservation of energy states that energy cannot be created nor destroyed, but only converted into other forms.
In this problem, we have an initial amount of electrical energy, E, converted into two forms of energy: light energy (L) and heat (H). For the law of conservation of energy, we have:
[tex]E=L+H[/tex]
So, we can find the initial amount of electrical energy:
[tex]E=20 J+100 J=120 J[/tex]
The disturbance that occurs as longitudional waves travel through a medium can be described as a series of
oscillations and refractions.
destructions and constructions.
propagations and compressions.
rarefactions and compressions.
Answer:
The disturbance that occurs as longitudinal waves travel through a medium can be described as rarefactions and compressions.
Explanation:
As longitudinal waves travel, particles in the medium are pushed together and then pulled apart. We call this rarefactions and compressions.
You are discussing a material that has a strong resistance to the flow of electrons. This is a description of a(n)
conductor.
semi–insulator.
insulator.
semi–conductor.
How much does a gold bar weigh and how much is it worth?
The weight of a standard gold bar is approximately 12.4 kilograms with a market value of around $744,000, based on a gold price of $60,000 per kilogram. The density of gold is critical for determining its authenticity, distinct from similar materials like tungsten.
The weight of a gold bar and its worth can vary significantly depending on the size of the bar and the current market value of gold. Generally, gold bars can come in different sizes, but a standard bar, also known as a gold ingot, is approximately 400 troy ounces or about 12.4 kilograms. Based on the density of gold, which is 19.30 g/cm3, a standard gold bar would have a volume of approximately 643.15 cm3 (since 12400 g / 19.3 g/cm3).
If we consider the approximate market value of gold, which is about $60,000 per kilogram, a standard 400 troy ounce gold bar would be worth around $744,000. However, the price of gold fluctuates constantly due to market conditions. It's also worth mentioning that the density of gold is a critical factor in determining its authenticity; fraudsters have been known to sell gold-plated tungsten ingots as pure gold because of tungsten's similar density to gold.
During fuel burn, the vertically launched Terrier-Sandhawk rocket had an acceleration of 300 m/s2 (about 30 times free-fall acceleration called 30 g). The fuel burned for 7.0 s . Find the height of the Terrier-Sandhawk rocket at the end of fuel burn.
The equation that we can use in this case is:
y = v0 t + 0.5 a t^2
where, y is the height, v0 is initial velocity = 0, t is time, a is acceleration so that:
y = 0 + 0.5 * (300 m/s^2) * (7 s)^2
y = 7350 m
f your muscles are not getting enough oxygen during exercise, they will stop moving.
True
False
Answer:
FALSE
Explanation:
The lesson says-
"At first, the body can't change quickly enough to give the muscles the amount of oxygen they need. This situation produces an oxygen deficit in the muscles. During this oxygen deficit, the muscles don't have the necessary amount of oxygen they need in order to produce enough energy to keep moving. Instead of the muscles just stopping, however, the body has a second system that kicks in during emergencies."
Given the distance between the crest of one wave and the crest of the next wave, you can determine the wavelength. amplitude. frequency. equilibrium.
Answer:
Wavelength
Explanation:
The distance between the crest of one wave and the crest of the next wave is called wavelength of a wave. It is denoted by lambda λ. The maximum displacement of the particle of a wave is called amplitude of wave. The topmost value of displacement of the wave is called crest of a wave while the lowermost value of displacement of the wave is called trough of the wave.
Hence, by finding the distance between the crest of one wave and the crest of the next wave, we can determine the wavelength of a wave.
Which question about dogs could be answered through scientific investigation?
How loving a pet is an Irish terrier?
How fast does an Australian terrier grow?
Which type of dog gets along the best with cats?
Which breed of dog is the cutest to children?
The question 'How fast does an Australian terrier grow?' could be answered through scientific investigation. This requires data collection and analysis about dog growth rates. Other questions are subjective and lack the objective criteria necessary for scientific studies.
Explanation:Out of the questions listed, the one that could be answered through scientific investigation is: 'How fast does an Australian terrier grow?' This question involves research and data collection on the growth rates of dogs, specifically Australian terriers. Scientists and veterinarians could conduct studies, measuring the size of these dogs at regular intervals and calculating average growth rates. Information can be analyzed statistically to derive at an answer.
Questions pertaining to dogs' affection, compatibility with cats, or attractiveness to children might not fulfil the objective criteria needed for a scientific investigation. These largely depend on subjective assessments and personal experiences, which could vary greatly among individuals.
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How to calculate the gain in Kinetic Energy?
Jurgen Habermas introduced this concept in the concept of intersubjectivity?to designate an individual capacity and a social domain.?
Jurgen Habermas is a German philosopher and sociologist which is an expert in the field of critical conjecture and pragmatism. He is most widely known for his theories regarding communicative rationality and the public sphere. This concept of intersubjectivity is called as:
“Intersubjectivity of mutual understanding”
Jürgen Habermas's concept of intersubjectivity relates to the individual and social capacity to create understanding through communication. It is central to the public sphere where free, rational discourse among citizens influences political action. Habermas emphasizes communicative action as essential for democratic governance.
Explanation:The concept of intersubjectivity, introduced by Jurgen Habermas, refers to an individual capacity and a social domain where understanding is constructed in communication among individuals. Habermas places emphasis on the role of the public sphere, an arena separate from the state and the private sector, that facilitates free, rational discourse among citizens. This realm enables the collective deliberation and influence on political action. The development of the public sphere historically marked the movement away from feudal structures towards more democratic forms of governance, particularly during the European Enlightenment. Moreover, Habermas's view on communicative action as the process by which social actors engage and create shared understandings, shapes the political landscape through open and inclusive debate.
What does the slope of a line on a graph of motion refer to?
What are three problems that can result from poor soil management? Erosion Nutrient depletion Development Desertification
Erosion, Nutrient Depletion and Desertification are the three problems that can result from poor soil management.
Poor soil management is damages environment and is a threat to our food supply. It results in erosion, nutrient depletion, desertification which makes the soil less fertile and unproductive and thus affects our food supply.
The atomic mass of an element is
A.The average mass of all the isotopes of the element
B. A measure of the density of that element
C.The mass of the most common isotope of that element
D.The number of protons and electrons in the atoms of the element
Cecelia dropped a ball from a height of 2 m. The ball fell in a straight path down to the ground. According to Newton’s universal law of gravitation, which would change the path of the ball so it traces out the widest curved path possible?
Answer:
tossing it horizontally at a faster speed
Explanation:
The property that objects have to fall when released from a certain height from the ground was well known since ancient times. For much of our history, the free-falling motion of objects was considered natural, ignoring the need for any causative agent. It was not until the seventeenth century that the English scientist Isaac Newton formulated a theory capable of explaining the cause of these movements and describing them precisely: the law of universal gravitation.
Under this law, free fall is a uniformly accelerated motion and causes any object influenced by the acceleration of gravity to move. This explains why the ball, dropped by Cecelia, fell in a straight path to the ground. According to this law, if Cecelia wanted the ball to travel the widest possible path during the fall, she should play the ball horizontally at a faster speed.
when two or more substances are mixed together without undergoing a chemical reaction result in a a/n