Connelly cuts a solid object in half. What happens to the mass, volume, and density of the object that Connelly cuts? A)The mass and volume are both divided by two, and the density is divided by four. B) The volume is divided by two, but the mass and density do not change. C) The physical properties of the substance change, and all three properties must be re-measured. D) The mass and volume are both divided by two, but the density remains the same.

Answers

Answer 1
I think the correct answer would be D. After cutting the solid object in half, the mass and volume are both divided by two, but the density remains the same. The mass and volume would change accordingly to satisfy the law of conservation of mass which states that mass cannot be created or destroyed. So, after dividing the object the sum of the mass of the two parts should be equal to the original mass of the object. This would also be the same for the volume of the objects. Density is the ratio of mass and volume and, since the mass and volume change accordingly, the value of the density would still be the same regardless of the object being divided.
Answer 2

Final answer:

When an object is cut in half, its mass and volume are divided by two, but its density remains constant because both mass and volume change proportionately.

Explanation:

When Connelly cuts a solid object in half, both the mass and volume are divided by two. However, density, which is defined as the mass of an object divided by its volume, remains unchanged. This is because both the mass and volume change proportionately, which means the ratio of mass to volume (density) does not alter.

Therefore, the correct answer to what happens to the mass, volume, and density of the object that Connelly cuts is: D) The mass and volume are both divided by two, but the density remains the same.


Related Questions

What unit measurement would you use to find the amount of soda in a large bottle

Answers

I would say your answer would be in Liters !

Final answer:

The amount of soda in a large bottle should be measured in liters, as this is the standard unit for volume or capacity of liquids. Correct use of units is essential for clear communication and safety.

Explanation:

To find the amount of soda in a large bottle, the most appropriate unit of measurement is liters. This is because liters are a standard unit for measuring volume or capacity, specifically for liquids. When we discuss containers such as a soda bottle, the volume of liquid they can hold is typically measured in liters. For example, a 2-liter soda bottle has a volume that is exactly twice that of what is universally accepted as 1 liter.

It's crucial to use the correct units of measurement, as they provide a standard of comparison to quantify physical quantities. Without units, values would be meaningless and could lead to confusion or, in critical situations like medication dosages, dangerous outcomes. Therefore, when measuring the amount of soda in a large bottle, referring to liters ensures clear and accurate communication of the quantity.

the measurement of an exoplanet radius is measured in units compared to

Answers

After an exoplanet has been identified using a given detection method, scientists attempt to identify the basic properties of the planet which can tell us what it might be made of, how hot it might be, whether or not it contains an atmosphere, how that atmosphere might behave, and finally, whether the planet may be suitable for life. It is often useful to first determine basic properties of the parent star (such as mass and distance from the Earth). This is then followed by the use of planetary detection methods to calculate planetary mass, radius, orbital radius, orbital period, and density. The density calculation will provide clues as to what the planet is made of and whether or not it contains a significant atmosphere. Mass and Distance of Parent Star The mass and distance of an exoplanet's parent star must often be calculated first, before certain measurements of the exoplanet can be made. For example, determining the star's distance is an important step in determining a star's mass (see below). Knowing the mass of a star then allows the mass of the planet to be measured, for example when using the Radial Velocity Method.

Exoplanet radii are measured in comparison to known planetary sizes to understand their scale and characteristics.

Exoplanet radii are typically measured in units compared to either Earth's radius or the radius of Jupiter, which are used as reference points in astronomical studies.

The comparison of exoplanet radii to these well-known planetary sizes helps scientists understand the scale and characteristics of these distant worlds.

For example, if an exoplanet is said to have a radius of 0.5 times that of Jupiter, it means the exoplanet's radius is half the size of Jupiter's radius.

Drive at a speed that is _____ and _______ at all times. this means showings careful or ______ judgment.

Answers

1. Reasonable
2. Prudent
3. Good

how to calculate the average velocity, in m/s.

Answers

Using the average velocity formula which is total distance divided by total time. If the distance is given in km convert to m then divide by 1000 to get m and if time is given in minutes then divide by 60 to get seconds. And after converting, divide to get your final answer in m/s. Hope that helped!

Which classification scheme is based on the brightness of a star as it appears to you in the night sky?

Answers

The apparent magnitude scale is a classification scheme which is based on the brightness of stars. The range of brightness values is from 1 to 6.
The stars which are the most brightest are ranked as number 1 and also called first magnitude stars, stars which are little dimmer than number 1 are ranked as number 2 and also called second magnitude stars. Similarly the most faintest stars are ranked number 6 and also called as the sixth magnitude stars.

How much electricity does an electric oven use/?

Answers

Electric ovens are found in many houses nowadays.They are for baking mostly. However, they can be used for cooking other meals.Electric ovens consume 1000-5000 watts. The average of nowadays consumption is 2400 watts on medium to high heat.

The electricity usage of an oven is found by multiplying the power rating in kilowatts by the duration in hours. For a 3600 W oven used for 1 hour, the consumption is 3.6 kWh. The cost can be calculated by multiplying the energy consumed by the unit price of electricity.

The electricity usage of an electric oven can be calculated by multiplying its power rating by the amount of time it is used. For instance, if an oven with a power rating of 3600 W (watts) is used for baking a cake for 1 hour, the energy consumption can be determined using the formula:

Energy consumption (kWh) = Power rating (kW) times Time used (h)

Since 1 kW = 1000 W, we convert the power rating to kilowatts (kW) first:

3600 W = 3.6 kW

So, the energy consumed by the oven for baking the cake would be:

3.6 kW times 1 hour = 3.6 kWh (kilowatt-hours)

This is the energy consumption for that specific use. To calculate the cost, you can multiply the energy consumed by the unit price of electricity, which varies depending on the region and the service provider. For other appliances with different power ratings and usage times, the same formula applies, with the hours adjusted accordingly. The duty cycle, or how often an appliance is on, also significantly impacts energy usage. A microwave oven, for example, might have a high-power rating but generally uses less energy overall because it's on for much shorter periods compared to something that might run continuously, like a television tuner box.

By definition, work is a force that's applied over a specific
a. weight.
b. period of time.
c. amount of horsepower.
d. distance.

Answers

the best answer is letter D.) distance

the answer for this one will be D.

A red apple will appear black when illuminated with

Answers

A red apple will appear black when illuminated with cyan light
Cyan, Magenta and Yellow light.

If a tank filled with water contains a block and the height of the water above point A within the block is 0.6 meter, what's the pressure at point A? A. 7.84 kPa B. 3.85 kPa C. 9.80 kPa D. 5.88 kPa

Answers

[tex]Given:\\\rho=1000 \frac{kg}{m^3}\\g=9.8 \frac{m}{s^2} \\h=0.6m\\\\Find:\\p=?\\\\Solution:\\\\p=\rho gh\\\\p=1000 \frac{kg}{m^3}\cdot 9.8 \frac{m}{s^2} \cdot0.6m=5880Pa=5.88kPa\\\\Correct\;is\;answer\;\;D[/tex]

If a tank filled with water contains a block and the height of the water above point A within the block, then the pressure will be equal to 5.88 Kpa. Hence, option D is correct.

What is Pressure?

In the natural sciences, pressure is defined as the vertical unit area of force or even the strain at a particular location inside a confined fluid. The force multiplied by the area throughout which it is exerted, and one pound per square inch, determines the pressure that a 42-pound box with an 84-square-inch bottom will impose on a surface.

Atmospheric pressure, which is at sea level is roughly 15 pounds per square inch, is the amount of weight that the atmosphere exerts on each unit area of the Earth's surface.

As per the given information in the question,

ρ = 1000 kg/m³

g = 9.8 m/s²

h = 0.6 m

Use the formula of pressure,

p = ρ × g × h

p = 1000 × 9.8 × 0.6

p = 5880 Pa or,

p = 5.88 Kpa

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Why does a balloon that is rubbed on someoneâs shirt stick to a wall at a party?

Answers

when we rub balloon on a shirt the balloon will steal electrons from the shirt and the shirt will become positively charged and balloon will negatively charged.The reason that the balloon will stick to the wall is because the negative charges in the balloon will make the electrons in the wall move to the other side of their atoms and this leaves the surface of the wall positively charged.

A particular wave can be described as transverse and self-propagating. What type of wave could it be?
A sound wave
A seismic wave
An ocean wave
A radio wave

Answers

Radio waves are transverse. Self-propagating, I guess means without any specific support, like a string or a body, so radio waves can propagate in vacuum.

So, the last one, radio wave

Answer:

A radio wave

Explanation:

Self propagating waves are those type of waves in which wave will induce the effect of by its own components.

One of the best example for this is Electromagnetic waves.

In electromagnetic waves electric field components and magnetic field components will oscillate perpendicular to each other and they both are perpendicular to the direction of propagation of wave also.

So here the disturbance due to electric field and magnetic field is since perpendicular to wave propagation so it is known as transverse wave.

So here we can say that correct answer must be an electromagnetic type of wave

so it must be

A Radio Wave.

Science cannot be used to answer questions about _____.

Answers

Science cannot be used to answer questions about Moral judgements
Moral judgements. !!!!!!!!!

Can a vector have nonzero magnitude if a component is zero?

Answers

The vector may have at least two components. These are the x-component and the y-component. The resultant vector (or vector, as referred in this item) is the summation of the components. With this, it is still possible for the vector or resultant to have a nonzero magnitude even if one of its components is zero. 

A major benefit of the daguerreotype process is that ________.

Answers

Daguerreotype is defined as the first practical photographic process which was introduced in Paris on January 7, 1839. To make the image permanent, Daguerre used salt solution. The result of his introduced process is a finely defined image with surface which is delicate. The major benefit of daguerreotype is if the images are correctly preserved, the pictures could last forever. Aside from this, since it produces superior quality of outline, it is thus suitable for portraitures. 

Final answer:

The major benefit of the daguerreotype process was its ability to produce sharp, clear images with reduced exposure time, making photography more accessible and affordable for the general public in the 19th century.

Explanation:

A major benefit of the daguerreotype process is that it produced exceptionally sharp and clear images with reduced exposure time compared to previous photographic methods. The daguerreotype, invented by Louis Daguerre in 1839, utilized a polished copper plate coated with silver iodide to capture images. Despite the limitation of creating only a single, non-reproducible image, the daguerreotype was the first widely available and relatively affordable photographic technique for the general public, fulfilling the burgeoning middle-class demand for portraiture during that era.

A certain car is capable of accelerating at a rate of 10.60 m/s 2 . how long does it take for this car to go from a speed of 55 mi/h to a speed of 60 mi/h

Answers

Given:
acceleration rate: 10.60 m/s²
1st speed: 55 mi/hr
2nd speed: 60 mi/hr

notice that they use different units. m/s² and mi/hr. We need to convert one unit to the other for uniformity and consistency.

1 m/s = 2.23694 mi/hr     OR    1 mi/hr = 0.44704 m/s

1st speed: 55 mi/hr → 55mi/hr * 0.44704 m/s / 1mi/hr = 24.5872 m/s
2nd speed: 60 mi/hr → 60mi/hr * 0.44704 m/s / 1mi/hr = 26.8224 m/s

Acceleration formula:
Acceleration = Change in velocity / time → Vf-Vi / t

10.60 m/s² = (26.8224 m/s - 24.5872 m/s) / t
10.60 m/s²  * t = 2.2352 m/s
t = 2.2352 m/s ÷ 10.60 m/s²
t = 0.2109 s. 

It would take 0.2109 seconds to change from 55 mi/hr to 60 mi/hr at 10.60 m/s² acceleration rate.

Final answer:

To calculate the time required for a car to accelerate from 55 mi/h to 60 mi/h with an acceleration of 10.60 m/s², convert the speeds to m/s, then use the formula Δt = (ο - νi) / a to find that it takes approximately 0.2106 seconds.

Explanation:

The question involves calculating the time it takes for a car to accelerate from 55 miles per hour (mi/h) to 60 miles per hour (mi/h) given an acceleration rate of 10.60 meters per second squared (m/s2). First, convert the speeds from miles per hour to meters per second. One mile per hour is approximately 0.44704 meters per second. Therefore, 55 mi/h is about 24.5872 m/s, and 60 mi/h is about 26.8224 m/s.

To find the time (Δt) taken to accelerate from the initial speed (νi) to the final speed (ο), one can use the formula Δt = (ο - νi) / a, where a is the acceleration. Plugging in the given values, Δt = (26.8224 m/s - 24.5872 m/s) / 10.60 m/s2 = 0.2106 seconds. Therefore, it takes approximately 0.2106 seconds for the car to accelerate from 55 to 60 miles per hour.

An object launched from ground level at a velocity of 5 m/sat a 37 degree angle. Neglecting air resistance, what is the speed of the object when it hits the ground?

a)9 m/s
b) 5 m/s
c)8 m/s
d) 2 m/s

Answers

Final answer:

In physics, an object launched and falling freely (ignoring air resistance) will hit the ground with the same speed it had upon launch. Therefore, if the object was launched at 5 m/s, it will also hit the ground at 5 m/s.

Explanation:

The subject of this problem is the physics principle of conservation of energy, specifically kinetic energy. An object that has been launched and is falling freely (neglecting air resistance) will have the same speed when it hits the ground as it had when it was launched from the ground. This is because the gravitational potential energy it gains while ascending is completely converted back to kinetic energy as it descends. Consequently, if an object was launched from ground level at a velocity of 5 m/s at a 37-degree angle, it will hit the ground with the same speed of 5 m/s.

Therefore, the answer is (b) 5 m/s.

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An electrical motor spins at a constant 2035 rpm. if the armature radius is 5.862 cm, what is the acceleration of the edge of the rotor?

Answers

An object that moves in a uniform circular motion would have a constant speed. However, we would not say that acceleration would be zero. The object would be accelerating due to the changes in the direction. Acceleration or this case would be the ratio of the square of its velocity an the radius of the circular motion. We would calculate as follows:

Acceleration = velocity^2 / radius
         velocity = 2035 rpm (1 min / 60 s) (5.862 cm)
         velocity = 198.8195 cm/s
Acceleration = (198.8195 cm/s)^2 / 5.862 cm = 33.92 cm/s^2

Therefore, the acceleration of the edge of the rotor would be 33.92 cm per s^2.
Final answer:

The acceleration at the edge of the rotor in the electrical motor spinning at a constant 2035 rpm with an armature radius of 5.862 cm is approximately 267476.4 m/s², found using the principles of centripetal acceleration in physics.

Explanation:

To solve this question, we first need to convert the given motor speed from revolutions per minute (rpm) to radians per second, which is the SI unit for angular velocity. This is done by multiplying by 2π, which is the radian equivalent of one revolution, and dividing by 60, the number of seconds in a minute. In this case, our conversion gives us a value for the angular velocity ω of approximately 213.2 rad/s.

We then use the formula for centripetal acceleration: ac = rω². Here, r is the radius of the armature (0.05862 meters using SI units), and ω is the angular velocity we converted earlier. Computing these, we find the centripetal acceleration ac to be around 267476.4 m/s².

Therefore, the acceleration at the edge of the rotor in the electrical motor spinning at a constant 2035 rpm with an armature radius of 5.862 cm is approximately 267476.4 m/s².

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A packaging company purchases corrugated cardboard boxes in which to pack its goods. The boxes are not made up when they are delivered, but are flat,A bundle of these boxes measures 0.60 m x 0.50 m x 0.20 m and has a
weight of 72 N. Calculate the pressure exerted by the cardboard boxes

Answers

Pressure is force divided by area, P = F/A, so we don't actually care about the dimension of depths, the 0.20 m, in this problem at all. All we have to do to get the area of the boxes is multiple the length times the width, or A= Area = 0.60*0.50 = 0.30 m², then we can just take the 70 N of force and divide by that area to get pressure. So P = 70 N/0.30 m² = 233.33 Pa. Pascals (Pa) are the standard unit of pressure and are the same thing as N/m².
Final answer:

To calculate the pressure exerted by cardboard boxes, divide the force due to gravity (weight) by the area over which it is applied. Using the given weight of 72 N and the calculated base area of 0.30 m², the pressure exerted by the boxes can be determined.

Explanation:

The question relates to calculating the pressure exerted by a stack of corrugated cardboard boxes on a surface. Pressure is defined as the force applied per unit area. The formula to calculate pressure (P) is P = F / A, where F is the force in newtons (N) and A is the area in square meters (m²). Given that the weight of the boxes is 72 N (which is the force due to gravity acting on them) and the base area of the boxes is calculated from the provided dimensions (0.60 m x 0.50 m = 0.30 m²), the pressure exerted can be calculated by dividing the force by the area over which it is applied.

To find the pressure, we thus use: P = 72 N / 0.30 m². Executing this calculation provides the pressure exerted by the cardboard boxes on the surface they are lying on.

A 750.0-kg boulder is raised from a quarry 125 m deep by a long uniform chain having a mass of 575 kg. this chain is of uniform strength, but at any point it can support a maximum tension no greater than 2.50 times its weight without breaking. (a) what is the maximum acceleration the boulder can have and still get out of the quarry, and (b) how long does it tak

Answers

Answer:

Part a)

[tex]a = 0.82 m/s^2[/tex]

Part b)

[tex]t = 17.44 s[/tex]

Explanation:

Part a)

Maximum tension that is obtained by the rope is 2.5 times the weight of the rope

So here we know that

mass of the boulder = 750 kg

mass of the chain = 575 kg

now total mass of the boulder and chain = 750 kg + 575 kg

[tex]M = 1325 kg[/tex]

Now we have maximum tension in the rope is given as

[tex]T = 2.5 \times 575 \times 9.8[/tex]

[tex]T = 14087.5 N[/tex]

now from Newton's 2nd law we have

[tex]T - Mg = Ma[/tex]

[tex]14087.5 - (1325\times 9.81) = 1325 a[/tex]

[tex]a = 0.82 m/s^2[/tex]

Part b)

Time taken by the boulder to raise by 125 m depth

we can use kinematics and we will assume here that it will start from rest and accelerate at above maximum value that we found in part a)

so by kinematics

[tex]d = v_i t + \frac{1}{2}at^2[/tex]

[tex]125 = 0 + \frac{1}{2}(0.82)t^2[/tex]

[tex]t = 17.44 s[/tex]

The method of body composition measurement that sends a small current through the body to measure the resistance based on percentage of body water is

Answers

The method of body composition measurement that sends a small current through the body to measure the resistance based on percentage of body water is called the Bioelectrical Impedance Analysis. The opposition of the flow of electric current through the body is measured as the composition of body water and body fat.

The moon has a mass of 7.35 e 22 kg and is located 3.84 e 8 meters from the earth. if ellen, an earthling, has a mass of 47 kg, what is the gravitational force between ellen and the moon?

Answers

Answer:

The gragitacional force is 1.56 10⁻³ Kg

Explanation:

The gravitational force between two bodies is proportional to their mass and inversely proportional to the square of the distance between them, is described by the equation

      F = G m₁ m₂ / r²

With G being the universal gravitation constant with a value of 6.67 10⁻¹¹ Nm²/Kg², as they give us the mass of the bodies and the distance between them, we can calculate the force.

     F = 6.67 10⁻¹¹ 47  7.35 10²² / (3.84 10⁸)²

     F =  1.56 10⁻³ Kg

 lo cuales muy pequeño

The nature of a volcanic eruption is determined largely by the ________ of the magma.

Answers

The properties of magma that determines the intensity or nature of volcanic eruptions are: (1) viscosity, (2) temperature, and (3) the amount of dissolved gases. Viscosity describes the flowability of a fluid and its resistance to flow. Magma with low viscosity are more fluid-like and lets gases escape. 

Answer:

Chemistry

Explanation:

The composition of magma, the temperature of magma and the amount of dissolved gasses in the magma are all responsible for the nature of eruption.

Magma could be composed of dust, blocks, bombs, cinders and other gases.

The nature of eruption also depends on the temperature as magma could erupt at varying temperatures from 700[tex]^{2}[/tex]C to 1300[tex]^{2}[/tex]C and even at higher temperatures reaching 1600[tex]^{2}[/tex]C.

An object with an initial velocity of 3.0 m/s has a constant acceleration of 2.0 m/s2. When its speed is 19.0 m/s, how far has it traveled?

Answers

V2=(Vo)2+2aS
2aS=V2-(Vo)2
S=(V2-(Vo)2)/2a
S=(361-9)/2*2
S=352/4
S=88m

People with long-term clinical depression tend to have more heart disease because A. people who are clinically depressed eat foods that are higher in fat. B. depressed people don't care about their heart health. C. the levels of heart-damaging chemicals in the blood are generally higher in depressed people. D. exercise is too difficult for people who are depressed.

Answers

The correct answer is C. the levels of heart-damaging chemicals in the blood are generally higher in depressed people.

Answer:

Option (A).

Explanation:

Depression may be defined as physical condition in which the individual may get depress and loss the interest in any activity. Depression can leads to various mental health problems in the individual.

The depressed people eat foods that include more content of food. The high fatty food causes the heart related problems in the organisms and may completely block the functioning of heart.

Thus, the correct answer is option (A).

A thin film of oil (n = 1.27) is located on smooth, wet pavement. when viewed perpendicular to the pavement, the film reflects most strongly red light at 640 nm and reflects no blue light at 427 nm. how thick is the oil film?

Answers

You are given a thin film of oil (n = 1.27) that is located on smooth, wet pavement. Also, it is said that it is viewed perpendicular to the pavement and that the film reflects most strongly red light at 640 nm and reflects no blue light at 427 nm. You are asked to find the thickness of the oil film.

The first thing you need to do is to divide the wavelength of the red light by the index of refraction of the oil to determine the wavelength of the red light in the oil. Then you will use 2t = mλ where t is the thickness, λ is the wavelength and m is the magnification. Note that it is viewed in a perpendicular pavement, m = 1 because it is a constructive interference. 

2t = mλ
2t = (1) (640nm/1.27)
2t = 503.94 nm
t = 251.97 nm

A car travels south at 30 m/s for 5 minutes. What is its velocity

Answers

Answer:

Explanation:

Velocity = 30 (-j) m/s

Displacement = velocity x time = 30 x 5 x 60 = 9000 m South = - 9000 j m

The velocity of the car traveling south for 5 minutes is 30 m/s is 9000 m and acceleration of the car is 0.1 m/s² (if its direction is changing).

What is velocity ?

Velocity of an object is the distance travelled by the object per unit time. Velocity is a vector quantity having both direction and magnitude. It is the ratio of distance to the time taken for travel.

Given that,

velocity v = 30 m/s

time t = 5 minutes

t = 5 × 60 = 300 seconds

Then, distance travelled = v × t

d = 300 s × 30 m/s =9000 m

Acceleration of the object is the rate of change in its velocity. If the object is moving with constant speed and there is a change in direction there will be an acceleration.

a = v/t

a = 30 m/s/300 s = 0.1 m/s².

Therefore, the distance travelled by the car is 9000 m and its acceleration is 0.1 m/s².

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Your question is incomplete. But your complete question probably was:

A car travels south at 30 m/s for 5 minutes. What is distance of travel and acceleration ?

In thinking of an inductor as a circuit element, it is helpful to consider its limiting behavior at high and low frequencies. at one extreme, the inductor might behave like a short circuit, that is, like a resistor with almost no resistance (an ideal wire) having essentially no voltage drop across it no matter what the current. alternatively, the inductor might behave like an open circuit, that is, like a resistor with large resistance so that essentially no current will flow no matter what the applied voltage. based on the formula you obtained for the reactance, how does an inductor behave at high and low frequencies?

Answers

An inductor is just a coil of wire with magnetic properties. It is a device that stores electromotive force or energy in the form of magnetic field.  A current yields a magnetic field around it through a conductor. The pattern of flux for this magnetic field would be the number of concentric circle perpendicular to the detection of current. The capacity of the inductor is affected by the number of coils which would give more inductance, the material that is used for the coil, the cross sectional area of the coil and the length of the coil. For instance you have an 8 meters diameter coil with seven loops of wire. You place the coil on an area where there is a parked car. The inductance of the coil will be much larger compared to the coil without a parked car nearby because of the presence of the steel from the car. It changes the magnetic field of the coil because it acts as a core of the inductor.

When you make a cell phone call, which type of electromagnetic wave is most likely transmitting the signal?

Answers

Radio waves are the only electromagnetic wave 
the cell towers are equipped to receive and process.

microwaves

A microwave is an electromagnetic wave with a wavelength in the range 0.001–0.3 m, shorter than a normal radio wave but longer than an infrared wave.

What is the average rate of formation of br2?

Answers

time interval is 8.40* 10^-5 moles/sec.maArk as brainliest


A large balloon is initially filled to a volume of 25.0 l at 353 k and a pressure of 2575 mm hg. what volume of gas will the balloon contain at 1.35 atm and 253 k? 6) _______
a.45.0 l
b.11.4 l
c.87.5 l
d.22.2 l
e.58.6 l

Answers

Use the combined law of gases:

PV / T = constant => P1 * V1 / T1 = P2 * V2 / T2

=> V2 = (P1 * V1 * T2) / (T1 * P2)

=> V2 = (2575 mmHg * 1 atm / 760 mmHg * 25.0 l * 253 K ) / (353K * 1.35 atm)

V2 = 44. 97 l ≈ 45.0 l

Answer: option a. 45.0 l

The final volume of the balloon at the given temperature is 45 l.

General gas law

The volume of the balloon is determined by applying general gas law as shown below;

V₂ = (V₁P₁T₂)/(T₁P₂)

Where;

P₁ = 25 L

V₁ = 2575 mmHg

T₁ = 353 K

P₂ = 1.35 atm = 1206 mmHg

T₂ = 253 K

V₂ = ?

The final volume of the balloon at the given temperature is calculated as follows;

V₂ = (25 x 253 x 2575)/(353 x 1026)

V₂ = 45 l

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