How many 750.0-ml wine bottles can be purged with the argon in the canister at a pressure of 1.26 atm and a temperature of 283 k ?

Answers

Answer 1

Approximately 0.0305 wine bottles can be purged with the argon in the canister.

Let's go through the calculations step by step:

Given:
- Pressure (\(P\)) = 1.26 atm
- Volume (\(V\)) = 0.75 L (converted from 750.0 ml)
- Temperature (\(T\)) = 283 K
- Ideal Gas Constant (\(R\)) = 0.0821 L·atm/(mol·K)

Now, use the ideal gas law to find the number of moles [tex](\(n\)):\[ n = \frac{PV}{RT} \][/tex]

[tex]\[ n = \frac{(1.26 \, \text{atm}) \times (0.75 \, \text{L})}{(0.0821 \, \text{L·atm/(mol·K)}) \times (283 \, \text{K})} \]\[ n = \frac{0.945}{23.2263} \]\[ n \approx 0.0408 \, \text{mol} \][/tex]

Now, let's assume that the argon canister contains pure argon, and we need to find out how many moles of argon are in a wine bottle. Argon's molar mass is approximately 39.95 g/mol.

[tex]\[ \text{Moles of argon in a wine bottle} = \frac{\text{Molar mass of argon} \times \text{Volume of the bottle}}{\text{Molar volume at STP}} \]\[ \text{Moles of argon in a wine bottle} = \frac{(39.95 \, \text{g/mol}) \times (0.75 \, \text{L})}{22.4 \, \text{L/mol}} \]\[ \text{Moles of argon in a wine bottle} \approx 1.34 \, \text{mol} \][/tex]

Finally, to find the number of wine bottles that can be purged with the argon in the canister:

[tex]\[ \text{Number of bottles} = \frac{\text{Total moles in canister}}{\text{Moles in one bottle}} \]\[ \text{Number of bottles} = \frac{0.0408 \, \text{mol}}{1.34 \, \text{mol/bottle}} \]\[ \text{Number of bottles} \approx 0.0305 \][/tex]

Therefore, approximately 0.0305 wine bottles can be purged with the argon in the canister.


Related Questions

Anna applies a force of 19.5 newtons to push a book placed on a table. If the normal force of the book is 51.7 newtons, what is the coefficient of kinetic friction? A0.01 B0.20 C0.38 D0.48

Answers

The formula is Force = coefficient of friction times the weight or normal force (in newtons). Plug the numbers in the formula. Do the simple division math. The coefficient of friction should be any number between 0 and 1. If your answer is smaller than 0 or greater than 1, go back and check your work. The answer for this question is C. 0.38   

Answer:

[tex]\mu_k = 0.38[/tex]

Explanation:

As we know that the normal force on the book is given as

[tex]F_n = 51.7 N[/tex]

also the force required to push the book on the table is given as

[tex]F_f = 19.5 N[/tex]

now by the formula of friction force we know that

[tex]F_f = \mu_k F_n[/tex]

now plug in all values in it

[tex]19.5 = \mu_k (51.7)[/tex]

here we will have

[tex]\mu_k = \frac{19.5}{51.7}[/tex]

[tex]\mu_k = 0.38[/tex]

An audi travels at 88 km/hr over a distance of 22 km. calculate.25 the time taken for the audi to travel this distance.

Answers

The Audi covers 88 in one hour.
22 is one quarter of 88, so it takes one quarter of one hour. That's 15 minutes.
Note:. The answer would be the same for any other brand of car, motorcycle, airplane etc.

Final answer:

The time taken for an Audi to travel 22 km at a speed of 88 km/hr is 0.25 hours or 15 minutes.

Explanation:

To calculate the time taken for an Audi to travel a distance of 22 km at a speed of 88 km/hr, we use the formula:

Time = Distance / Speed

Plugging in the values, we have:

Time = 22 km / 88 km/hr

Time = 0.25 hours

Therefore, the Audi takes 0.25 hours to travel 22 kilometers. To get the time in minutes, we can multiply the hours by 60:

Time in minutes = 0.25 hours × 60 minutes/hour

Time in minutes = 15 minutes

The Audi will take 15 minutes to cover the 22 km distance at a speed of 88 km/hr.

Why can't you you use a pump to lift water to the third floor?

Answers

As the pump removes air from the well, the pressure outside the well has a greater effect because the well has less air molecules pushing back. The pressure being forced down onto the water that pushes it up the pipe would not be enough to raise the water up the pipe that high.

Because there are fewer air molecules pushing back as the pump removes air from the well, the pressure outside the well has a greater impact. The amount of water that could be pushed up the pipe by the pressure being applied to it would be insufficient.

What is pump?

A mechanical device called a pump is used to move various fluids from one place to another. It is a hydraulic device that transfers fluids from low to high pressure and from low to high levels of elevation.

The pump moves fluid by transforming the mechanical energy of the fluid into pressure energy (hydraulic energy).

Processes requiring high hydraulic pressure can also use the hydraulic pump. With the aid of large machinery, it may be seen. In general, heavy machinery requires high discharge pressures and low suction pressures.

Therefore,Because there are fewer air molecules pushing back as the pump removes air from the well, the pressure outside the well has a greater impact. The amount of water that could be pushed up the pipe by the pressure being applied to it would be insufficient.

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Hideki is having trouble completing long workouts. What does he need to improve?

Answers

He needs to improve his endurance time.

What happens to the density of a substance as its temperature increases?

Answers

The molecules spread apart, so they take up more space. Because of this, they are less dense.

This means the density decreases as temperature increases.

Two current processes that can be used to ensure that there is enough clean water

Answers

Ensure that there is enough clean water can be achieved through appropriate treatment strategies, technical controls, online monitoring devices, operational control,...
Two current process towards this goal are:
1. Water Quality Monitoring- combination of online monitoring devices  and discrete measurements 
2. Attenuation of microbial and chemical contaminants of concern - established by multiple barriers

A wood block, after being given a starting push, slides down a ramp at a constant speed. what is the angle of the ramp above horizontal? suppose that μk = 0.2.

Answers

Refer to the diagram shown below.

μ = 0.2. the coefficient of dynamic friction
N = mg cosθ, the normal reaction
μN = μmg cosθ, the frictional force resisting motion down the inclined plane.
mg sinθ = the force driving the block down the inclined plane.

Because the block slides down the inclined plane with constant velocity, it is in dynamic equilibrium.
Therefore
mg sinθ = μmgcosθ
tanθ = μ = 0.2
θ =tan⁻¹ 0.2 = 11.3°

Answer: 11.3°

When rolled down a mountainside at 7.0 m/s, the horizontal component of its velocity vector was 1.8 m/s. what was the angle of the mountain surface above the horizontal? 75° 33° 57 ° 15°?

Answers

Given V = 7 m/s; Vx = 1.8 m/s.

Drawing a triangle, V becomes the hypotenuse and Vx becomes the adjacent side. From that image we derive the formula from the properties of a right triangle. We get cos x = Vx / V where x is the angle we are looking for.  Substituting the given values to the formula, we get cos x = 1.8 m/s / 7 m/s = 0.257. x = cos^-1 (0.257) = 75 degrees

The angle of the mountain surface above the horizontal is approximately 75°. Thus, the correct answer is 1). 75°.

When an object moves on an inclined surface with a certain velocity, we  resolve that velocity into horizontal and vertical components.

Given:

Total velocity (v) = 7.0 m/sHorizontal component of velocity (Vₓ) = 1.8 m/s

We can determine the angle (Ф ) using the cosine function in trigonometry:

cos(Ф) = horizontal component / total velocity

Substituting the  values:

cos(Ф) = 1.8 / 7.0

cos(Ф) = 0.2571

Taking the inverse cosine (cos⁻¹) of 0.2571:

Ф = cos⁻¹(0.2571) ≈ 75°

Therefore, the angle of the mountain surface above the horizontal is 1.)75°.

complete question:

When rolled down a mountainside at 7.0 m/s, the horizontal component of its velocity vector was 1.8 m/s. what was the angle of the mountain surface above the horizontal?

75° 33° 57 ° 15°

Which best describes a chain reaction associated with a nuclear reaction?

Answers

Final answer:

A nuclear chain reaction is a sequence of reactions that sustain themselves, as seen with nuclear fission, where released neutrons from one atom causes the fission of other atoms in a domino effect, requiring critical mass to be sustained and controlled by control rods.

Explanation:

A chain reaction associated with a nuclear reaction best describes a process where one event causes additional events, which in turn cause further events in a continual sequence. This is commonly seen in nuclear fission, where the nucleus of an atom, such as uranium-235, splits into smaller parts (two middle-sized nuclei) and releases several neutrons. These neutrons can then trigger the fission of more uranium-235 atoms, creating a domino effect. The reaction can sustain itself provided there is a sufficient amount of fissionable material, known as critical mass. If enough neutrons escape without causing further fissions, the chain reaction will not be sustained. In nuclear reactors, this process is carefully controlled using control rods that absorb excess neutrons. Nuclear fusion is another type of nuclear reaction, where lighter nuclei merge to create a heavier nucleus, releasing energy; this is the process powering the sun, and it can also create chain reactions.

Final answer:

A chain reaction in a nuclear reaction is a self-sustaining process where the fission of one atom causes subsequent fissions, leading to an exponential increase in reactions and energy released. It requires reaching a critical mass, and control rods are used to regulate the reaction.

Explanation:

The concept of a chain reaction best describes a multi-stage nuclear process in which the fission of one atom leads to a self-sustaining series of reactions. In a nuclear chain reaction, when a heavy nucleus such as uranium-235 undergoes fission, it splits into smaller fragments and releases two or three neutrons. These neutrons may initiate the fission of other uranium-235 atoms, leading to the release of more neutrons that can cause more fission events. This process can continue, creating an exponential increase in the number of fission events and energy released.

For a chain reaction to be self-sustained, it must reach a critical mass, the smallest amount of fissile material needed to maintain the reaction at a constant level. If a sufficient number of neutrons are lost and do not interact with other fissile atoms, the chain reaction will not occur. Control rods are often used in nuclear reactors to absorb neutrons and control the rate of the chain reaction, preventing it from becoming uncontrolled or reaching a runaway state.

Which quantity causes a change in linear momentum?

Answers

which quantity causes a change in linear momentum?

An atom of gadolinium has an atomic number of 64 and a mass number of 154. how many electrons, protons, and neutrons does it contain?

Answers

no. of protons = atomic number = 64
no. of neutrons = mass no. - no. of protons= 154 -64 = 90
no. of electrons = no. of protons = 64

Another element is silvery-white with a shiny luster, is very brittle, and forms ions with a −2 charge. give one possible identity of this element. enter the symbol for the element.

Answers

the element is magnesium ( Mg )

Answer:

It is Telurium

Explanation:

This element since belong to the family VI A in the periodic table, the charge -2 is the most common of these elements. Also, its color is silver - white, because is a metalloid has luster (a property of metals) and is very brittle ( a property of non-metals). Its symbol is Te.

What is the acceleration of a car that moves at a steady velocity of 100km/h for 100s?

Answers

Answer:

the answer is 0

Explanation:

The acceleration of a car that maintains a constant velocity of 100 km/h for 100s is zero. Acceleration is a change in velocity. Thus, if velocity is constant, that means there is no change and velocity stays the same.

Gina estimates that her moms truck weighs about 6,000 pounds. How can you write 6,000 using exponents?

Answers

6x10^3  six times ten to the third power :)

Answer:

[tex]6\times 10^{3} Pounds[/tex]

Explanation:

Given that the Gina moms truck weight is 6000 pounds.

And we also know that the 6000 pounds can be written as in the form.

[tex]6000=6\times 10\times 10\times 10[/tex]

Further more it can be written as,

[tex]6000Pounds=6\times 10^{3} Pounds[/tex]

Therefore the weight of the truck which is 6000 Pounds can be written in exponential form as [tex]6\times 10^{3} Pounds[/tex].

A ball is thrown vertically upward with a speed v. an identical second ball is thrown upward with a speed 2v. how many times higher does the second ball go than the first one?

Answers

It goes twice as fast as the first one. Twice

The second ball, thrown upward with speed 2v, will go 4 times higher than the first ball thrown with speed v.

When a ball is thrown vertically upward with a speed v, the height to which it rises can be calculated by using the kinematic equation for uniformly accelerated motion, assuming acceleration due to gravity g is the only force acting on it. The equation is h = [tex]v^2[/tex] / (2g), where h is the maximum height, v is the initial velocity, and g is the acceleration due to gravity (approximately 9.81 m/s2 on Earth). If the second ball is thrown upward with a velocity 2v, the maximum height it reaches is h' = [tex](2v)^2[/tex] / (2g), which simplifies to h' = [tex]4v^2[/tex] / (2g). Thus, the second ball goes 4 times higher than the first because h' / h = 4. This is because height reached is directly proportional to the square of the initial velocity.

Hello Peeps can y'all PLEASE HELP ME? I need to graduate!

Answers

0A: accelerating
AB: constant
BC: decelerating
CD:at rest
DE:accelerating
EF: constant


hope this helps

A parallel-plate capacitor has an area of 4.59 cm2, and the plates are separated by 1.28 mm with air between them. it stores a charge of 334 pc. what is the potential difference across the plates of the capacitor?

Answers

 a) 
Capacitance = k x ε° x area / separation 
ε° = 8.854 10^-12 F/ m 
k = 2.4max 
average k = 0.78 / 1.27 * 2.4 +(1.27- 0.78) / 1.27 * 1 = 1.474 + 0.386 = 1.86 
(61.4 % separation k = 2.4 --- 38.6 % k = 1 air --- average k = 0.614 * 2.34 + 0.386 * 1 = 1.86 
area = 145 cm2 = 0.0145 m2 
separation = 1.27 cm 0.0127 m 

C = 1.86 * 8.854 10^-12 * 0.0145 / 0.0127 = 18.8 pF 
b) Q = C * V --- 18.8 * 83 = 1560.4 pC = 1.5604 nC 
c) E = V / d = 83 / 0.0127 = 6535.4 V/m 

Scientists should not repeat experiments to see if their data is reproducible.
True or False?

Answers

False but not 100 percent sure


The variety of species in an ecosystem is known as ____

Answers

The variety of a species in an ecosystem is known as

Biodiversity

The variety of species in an ecosystem is known as biodiversity.

What is an ecosystem?

All of the species that interact with one another, as well as the physical habitat in which they live, make up an ecosystem.

What is biodiversity?

Biodiversity, or biological diversity, refers to the variety and variability of life present on earth. It is a measure of genetic, species, and ecosystem variation on earth.

What is the significance of biodiversity?Biodiversity is essential for the maintenance of ecological balance. It also contributes to high productivity.What is biodiversity conservation?

Biodiversity conservation refers to the preservation and management of biodiversity in order to gain resources for long-term development.

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Ecologically speaking, which is bigger, a population or a community? Explain.

Answers

Here are a few of the fundamental words in ecology, which are simple, but may be easy to mix up because they are so similar. It is, however, quite important to be clear of what they mean. I will here try to explain how they differ by defining them and giving a few examples to illustrate how they could be applied. 

A habitat is basically the site where an organism or a group lives. It may be anything from a stone in a lake, on which algae grows, to a forest containing all sorts of creatures. Note that groups within a habitat do not need to be of the same species. However, one usually speaks of habitats of individuals, species, or larger groups. For instance, the habitat of the algae would be the stone in the lake, and the forest could be the habitat of a single bear – regardless of what other organisms live there and how they are geographically distributed; here we are interested in the bear, so we define the habitat as its home range, and all that falls within it will arbitrarily be a apart of its habitat. hope this helps

A population is a group of the same organisms living in a place.
On the other hand, many populations in the same place are called a community.
So......Community is bigger

a woman driving at a speed of 23 m/s sees a deer on the road ahead and applies the brakes when she is 210 m from the deer. If the deer does not move and the car stops right before it hits the deer, what is the acceleration provided by the car's brakes?

Answers

velocity initial = 23 m/s
velocity final= 0m/s (car comes to a stop)
distance = 210 m
a=?

plug it in

0 = (23)^2 + 2(a)(210)

-529=420a

a= -1.26 meters per seconds squared

The acceleration provided by the car's brakes is -1.259 [tex]m/s^2[/tex].

Given the following data:

Initial speed = 23 m/s.Distance = 210 meters.Final speed = 0 m/s (since the car comes to a stop).

To find the acceleration provided by the car's brakes, we would use the third equation of motion:

[tex]V^2 = U^2 + 2aS[/tex]

Where:

V represents the final speed.U is the initial speed.a represents the acceleration.S is the distance covered.

Substituting the parameters into the formula, we have;

[tex]0^2 = 23^2 + 2a(210)\\\\-529 = 420a\\\\a = \frac{-529}{420}[/tex]

Acceleration, a = -1.259 [tex]m/s^2[/tex]

Therefore, the acceleration provided by the car's brakes is -1.259 [tex]m/s^2[/tex].

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PLEASE HELP!!!
If you are driving 100 km/h along a straight road and you look to the side for 1.8 s , how far do you travel during this inattentive period?

Answers

100km/h
100km/(3600sec)
(100/2000)km/1.8sec
0.05km

Which substance will form a solution when mixed with solid sodium chloride

Answers

When diluted with water

Answer:

Answered

Explanation:

Water when mixed with Sodium chloride also called common salt to form a solution called Brine. Brine high concentration solution of Nacl( sodium chloride or salt and water). It is used as preservatives. It is also used as a refrigerating fluid and it is also used for deicing in lower temperatures.  

A bucket of water can be whirled in a vertical circle without the water spilling out, even at the top of the circle when the bucket is upside down. explain.

Answers

Final answer:

A bucket of water stays contained when whirled in a vertical circle due to the centripetal force, which must exceed gravity's pull. Fluid dynamics, explained by Bernoulli's Equation, also dictates that water will squirt further from a hose when the opening is partially covered, water streams widen when shot upwards from a fountain, and narrow when falling downward from a faucet.

Explanation:

A bucket of water can be whirled in a vertical circle without the water spilling out because of the phenomenon known as centripetal force. At the top of the circle, even though the bucket is upside down, the water stays in the bucket due to the inward force that is directed towards the center of the circle. This force keeps the water pressed against the bottom of the bucket. The key factor here is maintaining a speed that is high enough so that the centripetal force exceeds the force of gravity acting on the water. If the speed is too slow, gravity will overcome this force and the water will spill out.

Bernoulli's Equation can help further understand similar phenomena involving fluid dynamics. For instance, covering the end of a garden hose with a thumb causes the water to squirt out at a greater distance due to the increased water velocity as a result of the reduced cross-sectional area. Similarly, when water is shot nearly vertically upward in a decorative fountain, it broadens as it rises due to decreased velocity and increased pressure. Conversely, a stream of water falling straight down narrows due to the increase in velocity and decrease in pressure as it falls.

The water does not spill out of the bucket when it is whirled in a vertical circle, including at the top of the circle when the bucket is upside down, due to the centripetal force that keeps the water adhered to the bottom of the bucket.

When a bucket of water is whirled in a vertical circle, several forces come into play. The key force that prevents the water from spilling out is the centripetal force. This force is directed towards the center of the circular path that the bucket follows.

At the top of the circle, when the bucket is upside down, gravity is acting in the opposite direction to the centripetal force. However, if the bucket is whirled fast enough, the centripetal acceleration \( a_c \) required to keep the water moving in a circle can exceed the acceleration due to gravity \( g \). This can be expressed by the equation:

[tex]\[ a_c = \frac{v^2}{r} \][/tex]

For the water to remain in the bucket at the top of the circle, the following condition must be met:

[tex]\[ \frac{v^2}{r} \geq g \][/tex]

This means that the centripetal acceleration must be greater than or equal to the acceleration due to gravity for the water to stay in the bucket. When this condition is satisfied, the water is pressed against the bottom of the bucket (which is now above it) with a force that is equal to or greater than the force of gravity pulling down on the water.

Additionally, the surface tension of the water and the adhesive forces between the water and the bucket can also help to keep the water from spilling out. These forces create a sort of film that can hold the water together and to the bucket, especially if the bucket is whirled quickly enough.

Therefore, as long as the bucket is whirled with sufficient speed to generate a centripetal force that counteracts gravity, the water will not spill out, even when the bucket is upside down at the top of the vertical circle."

A 50.0-kg block is being pulled up a 15.0° slope by a force of 250 n which is parallel to the slope. the coefficient of kinetic friction between the block and the slope is 0.200. what is the magnitude of the acceleration of the block?

Answers

The magnitude of the block's acceleration is determined as 0.57 m/s².

How to calculate the magnitude of the block's acceleration?

The magnitude of the block's acceleration is calculated by applying the following formula as shown below;

F(net) = ma

where;

F(net) is the net horizontal force of the blockm is the mass of the block

F(applied) - F(parallel component of weight) - F(friction) = ma

F - mg sinθ - μmg cosθ = ma

where;

g is acceleration due to gravityμ is coefficient of frictionθ is inclination of the plane

The magnitude of the block's acceleration is calculated as;

250 - (50 x 9.8 x sin 15) - (0.2 x 50 x 9.8 x cos 15) = 50a

28.52 = 50a

a = 28.52 / 50

a = 0.57 m/s²

The electrostatic force of attraction between two charges, a and b, is proportional to

Answers

the product of the magnitudes of charges

The electrostatic force of attraction between two charges, a and b, is proportional to the product of their magnitudes.

What is Coulomb's law?

The force of attraction between two point charges is given by Coulomb's law:

F = k  |q₁ × q₂| / r²

where k is the Coulomb constant, q1 and q2 are the magnitudes of the charges, and r is the distance between the charges.

The force of attraction or repulsion between two charged particles is directly proportional to the product of their charges and inversely proportional to the square of the distance between them.

This relationship is known as Coulomb's law.

Thus, they proportional to the product of their magnitudes.

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Which early president passed the unpopular Alien & Sedition acts, which restricted people speaking out against the government and allowed him to deport foreigners? A) President John Adams B) President James Madison C) President Thomas Jefferson D) President George Washington

Answers

President John Adams

The answer is A. President John Adams

A ball rolled along a horizontal surface maintains a constant speed because

Answers

There is no friction witch is impossible but good question.
Gravity is in the vertical direction, so there's no horizontal force on the ball to rob kinetic energy from it. (except friction with the floor and the air ...)

If you are given force and time you can determine power if you know

Answers

If you are given force and time you are able to determine power if you also know the distance to which in the most basic case, you are moving a given object.

P = W/t = F•d/t.

Explanation:

The power used by an object is calculated using the work done and the time. The mathematical formula for the power is given by :

[tex]P=\dfrac{W}{t}[/tex]

Where

W = work done

t = time taken

Work done is the product of force and distance. The equation (1) becomes :

[tex]P=\dfrac{F\times d}{t}[/tex]

Where

F is the force applied

d is the distance

So, power depends on the force, distance and time taken. Hence, if you are given force and time you can determine power, if you know the distance covered.

Gravity is pulling an object into the sun. The closer the object gets to the sun, the greater the gravitational force that acts on the object, increasing its acceleration. A line graph plotting the speed of the object against time would have which shape?


straight line of negative slope


curved line that slopes downward


curved line that slopes upward


straight line of positive slope

Answers

curved line that slopes upward

The line graph of speed versus time for an object pulled into the sun would be a curved line that slopes upward, indicating continuously increasing speed due to increasing gravitational force.

When an object is pulled into the sun by gravity, the gravitational force increases as it gets closer to the sun. This results in the object accelerating more as it approaches. Therefore, a line graph plotting the speed of the object against time would display a curved line that slopes upward. This curve represents the object's continuously increasing speed over time due to the increasing gravitational pull.

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