gases behave most ideally at choose... temperatures and choose... pressures.

Answers

Answer 1
Answer:

High temperatures and low pressures

Explanation:

Ideal gas is a hypothetical state of gases that allows for easier calculations with gases.

Ideal Gas Assumptions

There are 5 assumptions that scientists make to apply ideal gas laws.

Gases are constantly moving in linear motionThere are no intermolecular forces (IMFs) between gas particlesThe volume of gas particles is negligibleParticles have perfectly elastic collisionsKinetic energy is proportional to temperature.

Note that elastic collisions mean that no energy is lost through the collisions of particles. Additionally, very few gases actually follow these assumptions. However, sometimes the variation from these assumptions is small enough that the effects are negligible.

Most Ideal Behavior

Whilst ideal gases are not real, small gas particles at high temperatures and low pressures act mostly ideal. Gases at high temperatures move very quickly; this allows their motion to be mostly linear and for less energy to be lost in collisions.

Also, at low pressures, gas particles are further apart. The increased distance between the gas particles decreases the effect of IMFs, making gases more ideal. Additionally, the ratio of empty space to gas particles is larger when the volume is larger. This means that the volume of the particles is negligible.

Overall, high temperatures and low pressures help gases behave most ideally.


Related Questions

what is the mole fraction of ch4 for a solution containing 13.2 grams of ch4 dissolved in 52.4 grams of c2h6o

Answers

The mole fraction of 13.2g of CH₄ in the given problem when dissolved in 52.4g of C₂H₆O is 0.42.

Mole fraction of CH₄ in C₂H₆O  can be calculated in three steps:

1. The masses of CH₄ and C₂H₆Oneed to be converted into moles:

The mass of CH₄= 16.04g/mol

Therefore, the moles of CH₄ present in 13.2g = 13.2/16.04 moles = 0.82 moles.

The mass of C₂H₆O = 46.07 g/mol

Therefore, the moles of C₂H₆O present in 52.4g = 52.4/46.07 = 1.14 moles.

2. The total number of moles of solutes need to be calculated next,

Moles of CH₄+ Moles of C₂H₆O = 0.82 + 1.14 moles = 1.96 moles.

3. The last step is to divide the moles of CH₄by the total moles of solute = 0.82/1.96 = 0.42 moles.

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you have a stock solution of naoh which is 0.1 m. if you wanted to prepare 5 ml of 0.01 m naoh, how many ml of stock do you need?

Answers

You would need 0.5 mL of the 0.1 M NaOH stock solution to prepare 5 mL of 0.01 M NaOH.

Calculating the Volume of Stock Solution for Dilution

When preparing a solution of a specific concentration, it is often necessary to dilute a stock solution with a higher concentration to obtain the desired outcome. This can be achieved using the equation C1 * V1 = C2 * V2, where C represents the concentration and V represents the volume. The equation states that the product of the initial concentration (C1) and volume (V1) of a solution is equal to the product of the final concentration (C2) and volume (V2). To find the volume of stock solution required to prepare a specific volume of a desired concentration, the equation can be rearranged to solve for V1: V1 = (C2 * V2) / C1. By plugging in the known values of C2 and V2, and the known concentration of the stock solution (C1), the volume of stock solution required can be easily calculated. In the example of preparing 5 mL of 0.01 M NaOH from a 0.1 M stock solution, V1 was found to be 0.5 mL.

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deuterium and tritium are isotopes of hydrogen. what is different about them?

Answers

The most prevalent component in the universe, hydrogen, has radioactive materials called deuterium and tritium. All hydride isotopes have one proton, while hydride also has one neutron, and tritium has two.

What is the function of deuterium?

What uses does deuterium have? Deuterium is frequently used in experimental nuclear fusion, and it has factory, scientific, and industrial uses. It serves as a tracer in nuclear integration reactors and slows it down nuclear reactions in heavy water mediated fission reactors.

Is it safe to drink deuterium?

A hydrogen isotope with atomic weight is deuterium. Hydride has a greater density than hydrogen. Tiny amounts of high water intake are safe.

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if your new destination list needs a water park adventure, we gathered the top contenders in the world for your consideration. nrh2o in texas brought us a slide that enjoys the badge of being

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The world's largest uphill water ride. The water park, NRH2O in Texas, boasts a slide that has the distinction of being the world's largest uphill water ride.

This means that the slide has been designed in such a way that it provides a unique and thrilling experience to water park-goers by allowing them to travel uphill on their raft or inner tube. This type of ride is rare and provides a different type of experience compared to traditional water slides that follow a downhill slope. NRH2O in Texas is one of the top contenders for a water park adventure and is a must-visit destination for those who are looking for an exciting and unique water ride experience.

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Complete question:

If your new destination list needs a water park adventure, we gathered the top contenders in the world for your consideration. NRH2O in Texas brought us a slide that enjoys the badge of being _____________

what is the ph of a solution that consists of 0.20 m ammonia, nh3, and 0.20 m ammonium chloride, nh4cl?

Answers

The pH of a solution is determined by the relative concentrations of the two components, with ammonia having a pKa of 9.25 and ammonium chloride having 9.24.

What is pH?

A solution's acidity or alkalinity is determined by its pH, which ranges from 0 to 14, with 7 representing neutrality. Acidic solutions have a pH under 7, while basic or alkaline solutions have a pH beyond 7.

The pH of a solution containing 0.20 M each of ammonium chloride (NH4Cl) and ammonia (NH3) depends on the ratio of the two substances' concentrations. Ammonium chloride has a pKa of 9.24 while ammonia has a pKa of 9.25. The pH of the solution will be determined by the relative concentrations of the two components. The component that is present in the highest concentration will have a pH that is the closest to its pKa. For instance, the pH of the solution would be closest to 9.25, the pKa of ammonia, if the relative quantities of ammonium chloride and ammonia are equal.

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what is the ph of 0.00058 m csoh? is the solution neutral, acidic, or basic? the ph is: the solution is: basic neutral acidic

Answers

The solution of 0.00058 M calcium hydroxide is basic as it is a base and pH of it is 12.

What is a base?

According to the Arrhenius concept, base is defined as a substance which yields hydroxyl ions on dissociation.These ions react with the hydrogen ions of acids to produce salt in an acid-base reaction.

Bases have a pH higher than seven as they yield hydroxyl ions on dissociation.They are soapy in touch and have a bitter taste.According to the Lowry-Bronsted concept, base is defined as a substance which accepts protons .Base react violently with acids to produce salts .Aqueous solutions of bases can be used to conduct electricity .They can also be used as indicators in acid-base titrations.

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Explain crystalization as method of separating mixtures. Imk.​

Answers

Crystallization is primarily employed as a separation technique in order to obtain pure crystals of a substance from an impure mixture

What is crystallization in separating mixtures?

Crystallization from solution is a separation approach where a solid phase is separated from the mother liquor. In disparity with other separation procedures, however, the dispersed phase consisting of numerous solid particles also forms the final product, which has to meet the needed product specifications.

Crystallization is used to separate a soluble material from a solvent. For example, crystallization can be used to separate salt from a salt solution. We begin with a soluble solid melt in a solvent.

So we can conclude that Crystallization is a powerful and adaptable technique to separate components from a liquid mixture.

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calculate the boiling point of a solution containing 124.14 g of ethylene glycol in 2000 g of water. (the molar mass of ethylene glycol is 62.07 g and the molal boiling-point elevation constant for water is 0.52 oc/m).

Answers

The molal boiling point of a solution of ethylene glycol and water is 100.052 °C.

number of mol of ethylene glycol = (given mass)/(molar mass)

= 124.14/62.07

= 2.000 mole

mass of water = 2000 g

= 2.000 kg

molality = (number of mol of ethylene glycol)/(mass of water in Kg)

= 2.000/2.000

= 1.000 m

ΔTb = Kb*m

Tb - 100 = 0.052*1.000

Tb - 100 = 0.052

Tb = 100.052  °C

Molal boiling-point elevation is a term used in thermodynamics and refers to the change in boiling point of a solvent due to the addition of a non-volatile solute. The molal boiling-point elevation is proportional to the molality (number of moles of solute per kilogram of solvent) of the solution and is an important colligative property, which means it depends only on the concentration of solute particles and not on their identity.

The molal boiling-point elevation can be calculated using the equation ΔTb = Kb × m, where ΔTb is the change in boiling point, Kb is the molal boiling-point elevation constant, and m is the molality of the solution. The value of Kb is different for each solvent and is used to quantify the effect of the solute on the boiling point of the solvent.

Molal boiling-point elevation has several important applications, including the purification of liquids by fractional distillation, the determination of the concentration of dissolved substances, and the production of high-purity solvents. It is also used in the food and pharmaceutical industries, where the boiling point of solutions is often used as a quality control criterion.

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Convert 7.6 moles of HCl to moles of H₂.

Answers

Mole is one of the International System of Units' seven foundation units (SI). Therefore, the moles of  H[tex]_2[/tex] is  7.6 moles.

What is mole?

A mole is just a measuring scale. In reality, it's one of the International System of Units' seven foundation units (SI). When already-existing units are insufficient, new ones are created.

The levels at which chemical reactions frequently occur exclude the use of grams, yet utilizing actual numbers of atoms, molecules, or ions would also be unclear. To fill this gap between extremely small and extremely huge numbers, scientists created the mole.

Zn + HCl [tex]\rightarrow[/tex] ZnCl[tex]_2[/tex] + H[tex]_2[/tex]

moles of HCl = 7.6 moles

the mole ratio between HCl and  H[tex]_2[/tex] is 1:1

moles of H[tex]_2[/tex] = 7.6 moles

Therefore, the moles of  H[tex]_2[/tex] is  7.6 moles.

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how many moles of magnesium hydroproaxide are requierd to produce 12 moles of water

Answers

We would need six moles of magnesium hydroxide in the reaction.

What is the equation of the reaction?

We must note that the reaction that we want to deal with here is a neutralization reaction and the reaction would involve the combination of the hydrochloric acid and the magnesium hydroxide molecule.

The equation of the reaction is something like this;

2HCl + Mg(OH)2 ----> MgCl2 + 2H2O

We have from the balanced reaction equation;

1 mole of magnesium hydroxide would yeild 2 moles of water

x moles of magnesium hydroxide would yeild 12 moles of water

x = 1 * 12/2

= 6 moles

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nuclei above the belt of stability can lower their neutron-to-proton ration by undergoing what process? choose all correct answers; you may make more than one choice.

Answers

Nuclei above the belt of stability can lower their neutron-to-proton ratio by beta emission.

What is difference between beta emission, gamma emission and alpha emission?

Alpha emission: A new element Y (daughter nucleus) with a mass number equal to (A-4) and an atomic number equal to is created when the nucleus of a radioactive element X with mass number A and atomic number Z emits a particle (Z-2). Atomic number Z thus drops by two units and mass number drops by four units as a result of the emission of an alpha particle.

Beta emission: The number of nucleons in the nucleus (protons and neutrons) remains constant during beta emission, however the number of neutrons is reduced by one and the number of protons is increased by one.

Gamma emission: When a gamma particle is emitted, the atomic number Z and mass number A of the nucleus remain unchanged.

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Correct question:

Nuclei above the belt of stability can lower their neutron-to-proton ratio by_____

A) gamma emission.

B) positron emission.

C) beta emission.

D) electron capture.

E) Any of the above processes will lower the neutron-to-proton ratio.

For the following, determine if a physical change or chemical change is being described by the underlined phrase

Answers

The energy of both the changes in the system when a chemical shift takes place. The given process is a chemical change.

What is chemical change?

An alteration of one or more compounds within one or more new and distinct substances is referred to as a chemical change or chemical reaction. In other terms, a chemical reactions is indeed an atomic rearrangement-based chemical process.

A chemical change normally cannot be reversed unless through additional chemical processes, although a physical change may frequently be done so. The energy of both the changes in the system when a chemical shift takes place. The given process is a chemical change.

Therefore, the given process is chemical change.

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how do the equations differ for the neutralization reaction between a strong acid/strong base and a weak acid/strong base? multiple select question. the anion of the weak acid is a product, not a spectator ion. the equations do not differ. the weak acid reactant must appear as an undissociated, intact molecule in the equation. the strong acid reactant must appear as an undissociated, intact molecule in the equation. the weak acid must appear as an undissociated, intact molecule both on the reactant and product sides of the equation.

Answers

The anion of the weak acid is a product, not a spectator ion.

The weak acid reactant must appear as an undissociated, intact molecule in the equation.

How do the equations for the reaction between a strong acid and a strong base differ?

How do the equations for a strong acid/strong base and a weak acid/strong base neutralise one another? The weak acid's anion is a product and not a spectator ion. The weak acid reactant must show up in the equation as an undissociated, complete molecule.

The weak acid's anion is a produced ion, not a spectator ion. The equations are same. The weak acid reactant must be represented in the equation as an undissociated, complete molecule.

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Which one of the following can be classified as a strong electrolyte? A) C₆H₁₂O₆. B) CH₃OH. C) NH₄NO₃. D) HC₂H₃O₂. E) H₂O

Answers

C) NH₄NO₃. The NH₄NO₃ is a  strong electrolyte from the given options. A powerful electrolyte is sodium chloride.

An electrolyte is what?

When dissolved in water, chemicals known as electrolytes acquire a natural positive or negative electrical charge. They support a variety of bodily functions, including maintaining the harmony of fluids within and outside of your cells and regulating chemical processes.

What makes them electrolytes?

An electrolyte is a substance that produces ions when dissolved in a solution, such as water, according to a chemical professor's definition of the term. Since these ions contain an electrical charge that is either positive or negative, we refer to these substances as electrolytes.

Which 3 electrolytes are the primary ones?

The important electrolytes are sodium, potassium, chloride, magnesium, calcium, phosphate, and bicarbonate. Our food and beverages include electrolytes.

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When oil from a tin is poured through a funnel placed tightly into the neck of a bottle, the oil stays in the funnel. Why?

Raise the funnel a little and place it again on the bottle. Oil starts flowing into the bottle. Why does this happen?​

PLEASE ANSWER IT

20 POINTS

Answers

When oil from a tin is poured through a funnel placed tightly into the neck of a bottle, the oil stays in the funnel because the air pressure inside the bottle prevents the oil from entering the bottle.

What is air pressure?

The force that air, whether compressed or unconfined, applies to whatever surface it comes into touch with is known as air pressure.

The air in the bottles exerts a force on the liquid that is to be poured inside it.

Since the air has no way of escaping, the oil cannot be poured into the bottle.

However, if a little space is allowed by the funnel for the air to escape, the liquid can then be poured into the bottle.

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What particles are used to calculate the atomic mass *?

Answers

The number of protons and the number of neutrons determine an  element’s atomic mass: mass number = protons + neutrons.

Atoms of each element contain a characteristic number of protons. In fact, the number of protons determines what atom we are looking at (e.g., all atoms with six protons are carbon atoms); the number of protons in an atom is called the atomic number. In contrast, the number of neutrons for a given element can vary. Forms of the same atom that differ only in their number of neutrons are called isotopes. Together, the number of protons and the number of neutrons determine an element’s mass number: mass number = protons + neutrons. If you want to calculate how many neutrons an atom has, you can simply subtract the number of protons, or atomic number, from the mass number. A property closely related to an atom’s mass number is its atomic mass. The atomic mass of a single atom is simply its total mass and is typically expressed in atomic mass units or amu. By definition, an atom of carbon with six neutrons, carbon-12, has an atomic mass of 12 amu. Other atoms don’t generally have round-number atomic masses for reasons that are a little beyond the scope of this article. In general, though, an atom's atomic mass will be very close to its mass number, but will have some deviation in the decimal places. Since an element’s isotopes have different atomic masses, scientists may also determine the relative atomic mass—sometimes called the atomic weight—for an element. The relative atomic mass is an average of the atomic masses of all the different isotopes in a sample, with each isotope's contribution to the average determined by how big a fraction of the sample it makes up. The relative atomic masses given in periodic table entries—like the one for hydrogen, below—are calculated for all the naturally occurring isotopes of each element, weighted by the abundance of those isotopes on earth. Extraterrestrial objects, like asteroids or meteors, might have very different isotope abundances.

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a decrease in free hydrogen ion concentration (h ) in the serum results in a/an in serum ph, and a/an in serum alkalinity:

Answers

A decrease in free hydrogen ion concentration (H⁺) in the serum results in an increase in serum pH, and an increase in serum alkalinity.

A hydrogen ion is an ion that is created when a hydrogen (H) atom either loses or gains an electron. The concentration of this ion would affect the pH of the aqueous solution that it is in; as the concentration increase, the pH would decrease.

While a base provides hydroxide ions (OH⁻) that will combine with hydrogen ions to reduce their concentration (which results in a raising pH), an acid will simply increase the H⁺ concentration, usually by having one of its hydrogen atoms dissociate.

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the molar mass and density of acetic acid are 60.1 g/mol and 1.049 g/ml, respectively. what is the volume in ml of 3.2 mmol of acetic acid?

Answers

The volume of acetic acid with the molar mass and density of acetic acid are 60.1 g/mol and 1.049 g/ml = 5.729 L

The volume occupied by one mole of a chemical element or chemical compound at standard temperature and pressure (STP) is known as the molar volume (Vm). By dividing the mass density (ρ) by the molar mass (M), it can be computed. One mole of any gas has a defined volume when it is at a particular temperature and pressure.

The equation:

Vm = M/ρ

Where,

Vm = molar volume (L)

M = molar mass (g/mol)

ρ = density (g/ml)

Hence,

The volume of acetic acid:

Vm = (60.1 g/mol) / (1.049 g/ml)

= 5.729 L

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The chemical release of _________ plays a role in bonding and forming secure relationships.

Answers

Bonding and the development of trusting relationships are facilitated by the chemical release of oxytocin.

Bond releases what kind of chemical?

Your brain releases oxytocin, referred to as the "bonding hormone," when you hug someone or engage in other nonsexual touching. By doing this, stress hormones like cortisol and norepinephrine are decreased while the release of additional feel-good hormones like dopamine and serotonin is stimulated.

What is a good illustration of a chemical bond?

Chemical bonds, for instance, hold the carbon atom and the two oxygen atoms together in the carbon dioxide (CO2) molecule. Ions bonded together by a chemical bond make up salts, which are substances. For instance, in a crystal of NaCl, table salt, a chemical link holds Na+ and Cl- together.

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a _____ is described as a device that converts chemical energy to electric energy.

Answers

A battery is a device that converts chemical energy to electric energy.

Battery acid contains what substances?

Battery acid does not have a set formula, but it is commonly only made of sulphuric acid (H2SO4) and water (H2O), with a concentration of 4-5 mol/L and an approximate pH level of 0.8. Lead-acid batteries utilise sulfuric acid.

What governs a battery's operation?

An instrument that stores energy stored and transforms it into electrical energy is a battery. Electrons move from one materials (electrode) to another through an external circuit throughout chemical reactions in batteries. An electric current can be generated by the flow of electrons and utilized to perform tasks.

What kind of battery is it?

Principal cells or nonrechargeable batteries. rechargeable batteries or backup cells. batteries depending to use. Calcium ion battery (zinc manganese oxide, carbon) Air and aluminium battery.

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what are the units of k for a third order reaction?

Answers

A third order reaction's rate constant has the units M-3/s.

What is third order reaction?

A third order reaction's rate constant (k) is measured in units of M-3/s. The rate of a third order reaction is inversely proportional to the concentration of one or more of the reactants, expressed as a cube.

The rate of reaction for a third order reaction can be written as:

Where [A] is the reactant A concentration and k is the rate constant, the equation is -d[A]/dt = k[A]3.

The units of the rate constant for a third order reaction are M-3/s, which represent the fact that the rate of the reaction depends on the cube of the reactant concentration.

Given the concentrations of the reactants, the rate constant can be used to calculate the rate of reaction at a specific temperature and pressure.

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Calculate the mass of copper metal product. Show work!
CuSO4 + Zn →→ Cu + ZnSO4
g Cu=???

Answers

Explanation:

Given:

mass of CuSO4 = 0.3 g

mass of Zn = 0.2 g

Formula:

mass of Cu = mass of CuSO4 - (mass of Zn x (mole mass of Cu / mole mass of Zn))

Calculations:

mass of Cu = 0.3 g - (0.2 g x (63.55 g/mol / 65.39 g/mol))

Answer:

mass of Cu = 0.27 g

Answer:

To calculate the mass of copper produced in this reaction, you need to know the mass of CuSO4 and Zn used and the balanced chemical equation for the reaction. Without this information, I cannot perform the calculation for you.

at s.t.p,a certain mass of gas occupies a volume of 800cm3 ,find the temperature at which the gas occupies 940cm3 and has a pressure of 675mmhy.​

Answers

The temperature of the gas is 285 K

What is the Boyle's law?

Boyle's law is a fundamental law of physics that describes the relationship between the pressure and volume of a gas at constant temperature. The law states that the pressure of a gas is inversely proportional to its volume, such that if the volume of a gas increases, its pressure decreases, and vice versa. Mathematically, this relationship is expressed as:

P * V = k (constant)

P1V1/T1 = P2V2/T1

P1V1T2 = P2V2T1

T2 = P2V2T1/P1V1

T2 =  675 * 940 * 273/760 * 800

T2 = 285 K

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how much volume does 3 moles of gas occupy at standard temperature and pressure?

Answers

3 moles⋅22.4 L/1 mole=67.2 L Likewise, 0.5 moles of gas will occupy half the volume 1 mole occupies 0.5 moles⋅22.4 L/1 mole = 11.2 L

Standard Temperature and Pressure conditions imply a temperature of 273.15 K and a pressure of 1 atm. When these conditions are met, 1 mole of any ideal gas occupies exactly 22.4 L. Keep in mind that ideal gas particles are assumed to have no volume of their own, that's why, for example, at STP 1 mole of helium gas will occupy the same volume as, say, 1 mole of chlorine gas.

However, as you can see in the picture, the two gases will have different masses because of the difference in their molar mass. The balloon filled with helium will weigh less than the one filled with chlorine, despite the fact that they occupy the same volume.

So, if 1 mole occupies 22.4 L, the immediate conclusion is that a bigger number of moles will occupy more than 22.4 L, and a smaller number of moles will occupy less than 22.4 L.

In your case, 3 moles of gas will occupy 3 times more volume than 1 mole of gas.

3 moles⋅ 22.4 L/1 mole=67.2 L

Likewise, 0.5 moles will occupy half the volume 1 mole occupies

0.5 moles⋅ 22.4 L/1 mole=11.2 L

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upon heating a sample of nicl2•6h2o, a sample originally weighing 3.5 g yields an anhydrous salt residue weighing 2.1g. how many moles of water were in the sample?

Answers

The sample contained 0.0777 moles of water, as indicated by the question.

Describe mole.

Chemists employ the mole, a very significant unit of measurement. Like a dozen eggs means twelve eggs, having a mole of anything indicates we have 602,214,076,000,000,000,000,000 of such a thing. For extremely small objects such as atoms, molecules, or other particles, chemists must quantify using moles.

the amount of water lost while heating.

mass of water = original mass - anhydrous salt residue

mass of water = 3.5 g - 2.1 g

mass of water = 1.4 g

molar mass of water (18.015 g/mol).

moles (n) of water = mass / molar mass

moles of water = 1.4 g / 18.015 g/mol

moles of water = 0.0777 moles

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when solute is added to a pure solvent what happens to the freezing point?

Answers

When a solute is added to a pure solvent the freezing point decreases as the boiling point increases.

The temperature at which a substance's liquid and solid forms have the same vapour pressure is known as its freezing point. Vapour pressure decreases as soon as a solute is added to the solvent. As a result, the temperature where the vapour pressure of the solid and liquid phases is equal is likewise decreased, and the freezing point is lowered as a result.

The temperature at which air pressure and vapour pressure are equal is known as the boiling point. Because there are fewer water molecules on the surface of the salt solution, fewer water molecules evaporate, resulting in lower vapour pressure. Therefore, a greater temperature was required to reach atmospheric pressure, consequently, the boiling point rises.

When something is frozen, it solidifies. Ice is made of water, compared to liquids, particles in solids are significantly closer to one another. To produce ice crystals, the water molecules must expend energy and get very near to one another (closely packed).

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if the temperature is kept at the value found in part a and the gas is compressed, what is the volume when the pressure again becomes 3.00 atm ?

Answers

The volume will be 0.100 L when the pressure returns to 3.00 atm

A surface can experience pressure when another force is applied to it. It is often stated in terms of the pascal and may be quantified in terms of force per unit area (Pa).

Gravity, air, water, and other physical things may all produce pressure. A liquid or gas can be moved or its flow controlled by applying pressure. Additionally, it is employed in manufacturing, engineering, and other fields. The quantity of energy held in a system, such as in a pressure cooker, may be determined by measuring pressure.

Measurements of blood pressure and atmospheric pressure are two examples of how pressure is employed in medical and scientific applications.

This is due to the fact that a gas's volume and pressure are inversely related. As a result, the volume reduces as the pressure rises. In this instance, the starting pressure and volume were both 1 atm and 1 L. The volume must be reduced by half, to 0.100 L, because the pressure increased to 3.00 atm.

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what mass in grams of a 0.500 m solution of sodium acetate, ch3co2na , in water would you use to obtain 0.170 mol of sodium acetate?

Answers

13.74 gm of a 0.500 m solution of sodium acetate, in water would you use to obtain 0.170 mol of sodium acetate.

To calculate the mass of sodium acetate in a 0.500 m solution, use the following equation:-

= Mass (g)

= Molarity (m) x Volume (L) x Molecular Weight (g/mol).

For sodium acetate, the molecular weight is 82.03 g/mol. Therefore, the mass of sodium acetate in a 0.500 m solution is:

= Mass (g)

= 0.500 m x 0.500 L x 82.03 g/mol

= 20.51 g

To obtain 0.170 mol of sodium acetate, use the following equation:-

= Moles (mol)

= Mass (g) / Molecular Weight (g/mol).

Therefore, the mass of sodium acetate required to obtain 0.170 mol is:

= Mass (g)

= 0.170 mol x 82.03 g/mol

= 13.74 g

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what type of reaction combines a carbon-hydrogen compound with oxygen to form carbon dioxide and water?

Answers

Combustion is a chemical process in which a carbon-hydrogen molecule reacts with oxygen to produce carbon dioxide and water.

How is carbon dioxide produced?

Carbon dioxide (CO2) is produced by both natural (such as volcanoes, animal breath, and plant degradation) and anthropogenic factors (primarily the burning of fossils fuels like coal, oil and natural gas to generate energy).

Is carbon dioxide harmful to people?

Inhaling CO2 is thought to be only mildly harmful. The fundamental health impacts of CO2 are a result of its basic asphyxiant nature. A gas that decreases or replaces the natural oxygen in breathing oxygen is referred to as a simple asphyxiant. Mild CO2 exposure symptoms might include headache and sleepiness.

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which of the following correctly reflect ways in which a chemical equilibrium can be disturbed? select all that apply. multiple select question. changing the volume of the reaction container for a reaction involving gases changing the temperature of the system using a larger container for a reaction in aqueous solution changing the concentrations of reactants or products

Answers

Changing the volume of the reaction container for a reaction involving gases, changing the temperature of the system, and changing the concentrations of reactants or products can all disturb a chemical equilibrium.

Correct answer: letter B.

Additionally, using a larger container for a reaction in aqueous solution can also cause a shift in the equilibrium.

Chemical equilibrium is a state of balance reached between the forward and reverse reactions in a chemical system. In a chemical equilibrium, the rate of the forward and reverse reactions is equal, and the concentrations of reactants and products remain constant. This is because the rate of the forward reaction is equal to the rate of the reverse reaction, and the system is in a state of dynamic balance.

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