chemicals x and y (both gases) react to form the gas xy, but it takes a bit of time for the reaction to occur. both x and y are placed in a container with a piston (free to move), and you note the volume. as the reaction occurs, what happens to the volume of the container? explain.

Answers

Answer 1

As the reaction between the two gases proceeds, the volume of the container will decrease due to the formation of a new gas, XY, which takes up less space than the two gases combined.

In a closed system, the decrease in volume is accompanied by an increase in pressure, as the molecules of XY have less space to move around in than the molecules of X and Y.

This is because the increased pressure will cause the molecules to move faster, thereby increasing the kinetic energy of the system. This increase in temperature will cause the reaction to speed up, leading to more molecules of XY being formed. As the reaction continues, the pressure, temperature, and volume will continue to change in a dynamic equilibrium until all the reactants are used up.

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Related Questions

Which statement is correct about the theory of combustion?
1. • The law of conservation of mass provided justification for the theory of combustion
2. • The theory of phlogiston provided justification for the theory of combustion.
3. • The theory of phlogiston became the theory of combustion.
4. The law of conservation of mass became the theory of combustion.

Answers

Answer:

Option C is correct

Explanation:

The theory of phlogiston was the first to explain the combustion process. J.J Becher proposed this theory and stated the existence of phlogisticated substances containing phlogiston and that they dephlogisticate when burned.

What is combustion?

Combustion is the reaction of gases with atmospheric oxygen producing carbon dioxide and water. Gases like hydrocarbons easily undergo combustion reactions.

Combustion is an exothermic reaction. Thus, heat is evolved to the surrounding. The conservation of mass is not only for combustion but it is the theory of every reaction.

The phlogiston idea, a debunked scientific hypothesis, suggested that combustible bodies contained a fire-like substance called phlogiston, which was produced after combustion.

Johann Joachim Becher originally put out the concept in 1667, and Georg Ernst Stahl later formalized it. The Phlogiston theory sought to explain a variety of chemical reactions, including burning and rusting Hence, option C is correct.

Final answer:

The law of conservation of mass provided a foundation for the theory of combustion. It explains that the same amount of matter exists before and after the combustion process. However, the old theory of phlogiston was found to be incorrect and was replaced by the modern theory of combustion.

Explanation:

The correct statement about the theory of combustion is the first one: 'The law of conservation of mass provided justification for the theory of combustion'.

The theory of combustion is a chemical concept that explains how substances combine with oxygen to produce heat and light. This process is also termed as burning. The law of conservation of mass, which states that mass in an isolated system is neither created nor destroyed by chemical reactions or physical transformations, became a foundation for understanding combustion. Scientists understood that the same amount of matter exists before and after the combustion process.

Meanwhile, the theory of phlogiston was an old scientific theory that suggested a fire-like element called 'phlogiston' was contained within combustible bodies and released during combustion. However, this theory was found to be incorrect and was replaced by the modern theory of combustion.

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why ph is an important controlling factor for chemical analysis of water

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The pH is the important controlling factor for the chemical analysis of the water because it will indicates the acidity and the basicity of the water.

The pH is use measure  the relative amount of the free hydrogen and the hydroxyl ions in the water. Water that has the more free hydrogen ions is the acidic nature, whereas the water that has the more free hydroxyl ions is basic in nature. The pH can be affected by the chemicals in the water, the pH is an important indicator of the water that is changed chemically.

Thus, the pH indicates the acidity and the basicity of the water.

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A student has measured the volume of a sample of hydrogen gas and has found that she has a total of 5.02 moles of the gas. What is the mass of this sample of hydrogen gas? Please round your answer to two digits after the decimal point, and remember to include correct, complete units (including substance formula).

Answers

0.00355moles is the mass of this sample of hydrogen gas when A student has measured the volume of a sample of hydrogen gas and has found that she has a total of 5.02 moles of the gas.

What is  hydrogen gas?

The chemical element hydrogen is represented by the letter symbol H and atomic number 1. The lightest element of all is  is hydrogen.

Fuel cells may produce energy, power, and heat using hydrogen. The two industries where hydrogen is currently most widely employed are fertilizer manufacturing and petroleum refining, with the developing markets of utilities and transportation.

Given:

volume of gas 5.02 moles

temp=293.15 K

Pressure= 0.025

Now putting the values accordingly

5.02  x 0.025 / 293.15 x 8.314472 =0.00355moles

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You make a 100 mL solution by dissolving 5g of a solid solute in water. The molar mass of the solute is 110 g/mol. What is the molarity of the solution? If the density of the solution above is 1 g/ml, what is the concentration using units of percent by mass? (Percent by mass = g solute/g solution * 100) What is the difference between these two concentrations units? Why would you use one rather than the other?

Answers

(1) Molarity of the solution is 0.450 M (2) Percentage by mass is 5%. (3) difference between two concentrations is unit of measurement. (4) because it provides a measure of the concentration of a solute in a solution in relation to its total mass.

1) Molarity = (moles of solute) / (volume of solution in liters)

To find the moles of solute, divide the mass of solute by its molar mass:

moles = 5g / 110 g/mol = 0.045 moles

The volume of the solution is 100 mL, which is equal to 0.100 L:

Molarity = 0.045 moles / 0.100 L = 0.450 M

2) To convert to percent by mass, multiply the mass of solute by 100 and divide by the mass of the solution:

Percent by mass = (mass of solute / mass of solution) x 100%

Percent by mass = (5g / (100 mL x 1 g/mL)) x 100% = 5%

3) The difference between molarity and percent by mass is the units of measurement. Molarity is the number of moles of solute per liter of solution, while percent by mass is the mass of solute per hundred grams of solution.

4) Molarity is often used in chemical reactions, as it measures the number of moles of solute present in a solution, which is directly related to the amount of substance present and can be used to calculate the amounts of reactants and products in a reaction. On the other hand, percent by mass is commonly used in food and pharmaceutical industries, as it provides a measure of the concentration of a solute in a solution in relation to its total mass.

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A student measured the temperature of boiling water to be 105.25 °C. The correct temperature for boiling water is 100.00 °C at 1 atm. What went wrong in the experiment?

Answers

Answer: See Explanation.

Explanation:

There could be several reasons why the student's measurement of the boiling temperature of the water was different from the expected value of 100.00 °C at 1 atm. Some possible reasons include:

The student may have used an inaccurate thermometer, or the thermometer may have been calibrated incorrectly.The student may have not allowed enough time for the thermometer to reach thermal equilibrium with the water.The student may have measured the temperature in an environment where the pressure was not 1 atm. The boiling point of water changes with pressure, so if the pressure was not 1 atm, the boiling point would not have been 100.00 °C.The student may have not cleaned the thermometer properly or the thermometer may have been contaminated.The student may have not used the correct technique for measuring the temperature.There may have been some other error in the experiment that was not noted.

It is important to note that measuring temperature is a difficult task, and it is not uncommon to get a result that is slightly different from the expected value. The student should repeat the experiment several times and take an average of the results to get a more accurate measurement. It is also important to ensure that the instrument used is calibrated and properly maintained.

how does dalton's atomic theory account for the fact that different samples of the same compound always contain a fixed mass percentage of its component elements? multiple choice question.

Answers

Dalton's atomic theory accounts for the fact that different samples of the same compound always contain a fixed mass percentage of its component elements as a given compound always contains a fixed ratio of its component elements. (Option B)

Dalton’s atomic theory refers to a scientific theory postulated by English physicist and chemist John Dalton in 1808. All substances, according to the theory, are made up of atoms. Atoms are indivisible and indestructible building units. All atoms of the same element are identical while different elements have different types of atoms.

Compound elements are formed when atoms of different elements join in simple ratios to form molecules. In order to account for the fact that different samples of the same compound always contain a fixed mass percentage of its component elements as a given compound always contains a fixed ratio of its component elements.

Note: The question is incomplete as it is missing options which are A) atoms are combined in varying ratio to form a compound B) a given compound always contains a fixed ratio of its component elements C) the atoms of same element are similar in all respects D) all of the above.

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For each compound, would you expect greater solubility in water or in hexane? Indicate the kinds of intermolecular forces that occur between the solute and the solvent in which the molecule is most soluble. a. glucose b. naphthalenec. dimethyl etherd. alanine (an amino acid)

Answers

Solute dissolves in the solvent according to the concept of 'like dissolves like '. That means polar solute dissolves in polar solvent and non-polar solute dissolves in non-polar solvent.

A) Glucose is a polar compound as it has polar bonds such as O-H ( As electronegativity of O is higher than H), thus it dissolves in polar solvent like water .

B) Napthalene being a non-polar molecule, it is soluble in non-polar solvent like hexane. The interaction present in napthalene is induced dipole - induced dipole interaction.

C) Dimethyl ether being non-polar molecule, it is soluble in non-polar solvent like hexane. The interaction present in napthalene is induced dipole - induced dipole interaction.

D) Alanine is a polar molecule. Hence, it dissolves in water through hydrogen bonding.

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in a total enthalpy calculation over several segments of a heating curve, which constant should be used to calculate the enthalpy change in the segment of the curve in which the substance is melting?

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In a total enthalpy calculation over several segments of a heating curve, the constant should be used to calculate the enthalpy change in the segment of the curve in which the substance is melting is specific heat of solids

The enthalpy change is the change in energy from the start to the end of a chemical reaction. This relates to the law of energy immunity that energy cannot be created, but energy can be changed from one form to another.

The heating curve is a graph that states the change in temperature and the state of matter on heating. When a substance is heated, the graph on the curve will form a plateau which shows the phase transition. The melting point indicates the specific heat of the solid which is heated and melts from solid to liquid as it absorbs heat.

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concisely describe the differences between a perfect gas, calorically perfect gas, thermally perfect gas, and chemically reacting gas. generally, what are the temperature ranges for these flows at standard pressure for air for use within aeronautical engineering?

Answers

The differences between perfect gas, calorically perfect gas, thermally perfect gas, and chemically reacting gas are as follows:

Perfect gas is gas that obeys the ideal gas law in its physical behavior.Calorically perfect gas has a constant value as its specific heat capacity,Thermally perfect gas is gas that obeys the equation of state p = ρRT.Chemically reacting gas is gas that is undergoing a chemical reaction.

The temperature ranges for air to flow at standard pressure to be used within aeronautical engineering are 1000K for perfect (ideal) gas. For thermally perfect gas, the temperature range should be between 1000K and 2500K. The air is chemically reacting once the temperature reaches 2500 K.

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what is molar concentrations of n2, h2, and nh3 at 75onversion?

Answers

The concentrations of NH3, H2, and N2 are respectively 1.2102, 3.0102, and 1.5102M at equilibrium.

At 700K, 0. 036M N2 and 0. 15M H2 are present in an equilibrium mixture of N2,H2, and NH3. N2(g)+3H2(g)2NH3(g) has a Kc of 0 at this temperature. For the synthesis of NH3 from N2 and H2 at equilibrium at 500K, the following concentrations were discovered. [N2] = 1.5 x 10−2M. H2 is 3.0 x 102 M while NH3 is 1.2 x 102 M in terms of mass. NH3, H2, and N2 have equilibrium concentrations of 1. 2 102, 3. 0 102, and 1. 5 102 M, respectively. Since molecular hydrogen has a molar mass of about 2 mg/milimole, 1 mg is roughly equivalent to 0.5 mM, or 1 ppm. About 8.65 x 10-7 mg/L of hydrogen gas (H2) is present in typical water (such as tap, bottled, filtered, etc.).

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How do operators analyze the ability of a treatment process to remove or an activate oocysts
Coagulation, flocculation , and sedimentation

Answers

Operators analyze the ability of a treatment process to remove or an activate oocysts by coagulation and flocculation.

Coagulation and flocculation are methods that are used to separate the suspended solids portion from the water. Suspended particles may vary in source, charge, particle size, shape, and density. Correct application of coagulation and flocculation usually depends upon these factors.

Coagulation is also defined as the destabilization of colloidal particles brought about by the addition of a chemical reagent called as coagulant. Flocculation is defined as the agglomeration of destabilized particles into micro-floc and after into bulky floccules which can be settled called floc.

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how many ml of 4.55 m libr solution contain 1.87 mol of libr?

Answers

The volume of the 4.55 M LiBr solution that contains the 1.87 moles of the LiBr is 410.9 mL.

The molarity of the LiBr solution = 4.55 M = mol/L

The moles of the LiBr solution contains = 1.87 mol

The molarity is expressed as follows :

Molarity = moles / volume in L

The volume is expressed as :

Volume = moles/ molarity

Volume = 1.87 mol  / 4.55 mol/ L

Volume = 0.4109 L

Volume = 410.9 mL

Thus, the volume in the mL is 410.9 mL with the molarity of the 4.55 M and the moles of 1.87 moles .

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explain how moisture-catalyzed adhesives are cured (hardened)

Answers

Moisture-catalyzed adhesives are cured by the reaction of an activator with the adhesive resin, which results in the formation of a polymeric structure that binds the substrates together.

Moisture-catalyzed adhesives, also known as polyurethane adhesives, are a type of adhesive that are cured by the reaction of water with the adhesive resin. The curing process is initiated by the addition of a chemical activator, typically an isocyanate, to the adhesive resin.

When the activator and the resin are mixed, they undergo a chemical reaction that results in the formation of a polymeric structure. This structure acts as a bond that physically attaches the substrates to each other. The presence of water in the air or on the surfaces to be bonded acts as a catalyst for the reaction between the activator and the resin, leading to the cure of the adhesive.

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why is it important to heat the melting point apparatus or block slowly (~1ºc per minute) when the temperature gets close to the mp?

Answers

It is important to heat the melting point apparatus or the block slowly, when the temperature gets close to the melting point is

The melting point of the  substance is the temperature at which the substance changes the state from the solid to liquid. When heat energy is provided to substance it will changes from the solid phase to the liquid phase. So, it is important to add the heat energy slowly because when the substance changes a phase then it will absorb the much energy till it reaches up to the melting.

Therefore the heat will be provided slowly. The slow heating will provide the more accurate reading of the melting point.

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how would you define a system to determine the rate at which an automobile adds carbon dioxide to the atmosphere

Answers

I would determine the rate at which an automobile adds carbon dioxide to the atmosphere by taking an open system, a control volume just around the area of the outlet where the exhaust gases are released. The boundaries are the sides (for example) of the pipe through which the gas is released.

A general study says that a typical passenger vehicle emits about 4.6 metric tons of carbon dioxide per year. This makes possible assumption that the average gasoline vehicle on the road today has a fuel economy of about 22.0 miles per gallon and drives around 11,500 miles per year. Each and every gallon of gasoline burned creates about 8,887 grams of CO₂.

The amount of CO₂ can be calculated by the above given process.

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Which of the following mixtures/compounds has ion–dipole forces between them?
a HF/H2O
b Na2CO3/H2O
c NaCl/C6H14
d NH3/H2O

Answers

[tex]\rm Na_2CO_3/H_2O[/tex] among the following mixtures/compounds has ion–dipole forces between them. Therefore, the correct option is option B.

A mixture is a physical combination of two or more substances, meaning their chemical compositions are unaltered. It follows that each component of a combination maintains its unique characteristics and is simple to physically separate. Intermolecular forces between an ion and a polar molecule are known as ion-dipole forces. They happen when a charged particle called an ion interacts with a polar molecule's partial charges. [tex]\rm Na_2CO_3/H_2O[/tex]: [tex]\rm Na_2CO_3[/tex](sodium carbonate) is an ionic compound, and [tex]\rm H_2O[/tex] is a polar molecule. Hence, there are ion-dipole forces between [tex]\rm Na_2CO_3[/tex] and [tex]\rm H_2O[/tex].

Therefore, the correct option is option B.

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A ga i compreed from an initial volume of 5. 50 L to a final volume of 1. 20 L by an external preure of 1. 00 bar. During the compreion, the ga releae 128 J of heat. What i the change in internal energy of the ga?

Answers

The change in internal energy of the gas is 123.7 J.

The change in internal energy of a gas can be calculated using the equation: ΔU = Q - W, where ΔU is the change in internal energy, Q is the heat added to or removed from the gas, and W is the work done on or by the gas.

In this case, the work done on the gas can be calculated as W = P * ΔV, where P is the pressure and ΔV is the change in volume. Since the pressure is 1.00 bar and the change in volume is 5.50 L - 1.20 L = 4.30 L, the work done on the gas is W = 1.00 bar * 4.30 L = 4.30 J.

Therefore, the change in internal energy of the gas is ΔU = Q - W = 128 J - 4.30 J = 123.7 J.

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Is Br2 diamagnetic or paramagnetic?

Answers

Answer: paramatic

Explanation: as bromine has one unpaired electron in its valence shell, the bromine atom has paramagnetic nature. if that makes any sense

how many lone pairs of electrons are assigned to the carbon atom in the lewis dot structure of carbon dioxide?

Answers

In carbon dioxide, there are no single carbon atoms. There are 2 lone pairs for each oxygen.

Each atom of oxygen in the [tex]CO_{2}[/tex] two electrons in the molecule are in lone pairs. The carbon atom does not contain any lone pairs. Between carbon and oxygen, double bonds are present.

In order for the octet rule to be followed, carbon must form a total of four bonds with the oxygen atoms. As a result, the carbon atom and the oxygen atoms must share four bond pairs. Obviously, they require two double bonds due to their numbers: O = C = O

However, for both oxygen atoms to adhere to the octet rule, they still require two additional electron pairs each. Therefore, we need to add two lone pairs to each oxygen atom.

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which of the following explain(s) the observations made by rutherford? i. most of the volume of the gold atom is empty space. ii. the mass of an atom is evenly distributed throughout the entire volume of the atom. iii. the alpha particles and the gold nuclei are both positively charged.

Answers

Rutherford's experiments showed that most of the volume of the gold atom is empty space and the alpha particles and the gold nuclei are both positively charged therefore, option C is the right answer.  

Rutherford put out the idea that elements are composed of atoms. The Rutherford atomic model states that:

A majority of an atom's mass and the vast majority of its positive charge are packed into a very small space. He coined the term "nucleus" to describe this part of the atomic structure.

According to Rutherford's hypothesis, an atom's negatively charged electrons should orbit the positively charged nucleus. He also theorized that the electrons that orbit the nucleus do so in a circular fashion at extremely high velocities. These arcs got the orbital naming from him.

Electrons, being negatively charged, are attracted to the positively charged nucleus with a strong electrostatic force of attraction.

Rutherford bombarded a thin gold foil with α-particles and examined their trajectory after impact. Rutherford focused radioactive α-particles towards a thin gold sheet in his experiment. He wrapped a fluorescent zinc sulfide screen around the thin gold foil to analyze α-particle deflection. Rutherford's observations contradicted Thomson's atomic model.

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how much of a radioactive kind of ruthenium will be left after 16 hours if you start with 721,248 grams and the half-life is 4 hours?

Answers

The amount of radioactive kind of ruthenium left after 16 hours is 44717.37 grams.

Natural radioactive processes are characterized by a half-life, the time it takes for half of the material to decay radioactively. The amount of material left over after a certain number of half-lives can be easily calculated.

The amount of radioactive element present follows the exponential function,

[tex]N(t) = N(0)e^{-kt}[/tex]

N(0) is the initial amount at t = 0, so N(0) = 721,248 g

To find k, use the fact that after 4 hours, N drops by half (definition of half-life):

k = [tex]\dfrac{0.693}{t_{1/2}}[/tex]

Using the value 4 hours for half life,

k = 0.1732 per hour

Using t = 16 hours, finding N(t),

[tex]N(t) = 721,248 \times e^{-0.1732 \times 16}[/tex]

[tex]N(t) = 721,248 \times e^{-2.7712}[/tex]

[tex]N(t) = 44717.37[/tex] g.

The amount of ruthenium left after 16 hours is 44717.37 grams.

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a solution contains 100mm pyruvate (pka = 2.45) and 10mm pyruvic acid. what is the ph of this solution?

Answers

The solution contains 100mm pyruvate with the pka = 2.45 and 10mm pyruvic acid. The pH of this solution is 3.45.

The Henderson Hasselbalch equation is as follows :

pH = pka + [salt] / [acid]

Where

The value pka = 2.45

Concentration of pyruvic acid = 10 mm

The concentration of pyruvate = 100 mm

By solving the value, we get :

pH = 2.45 + log [ 100 ] / [ 10 ]

pH = 2.45 + 1

pH = 3.45

Thus the pH of the solution is 3.45. The pH value less then 7 is for the acidic solution. The pH value more than 7 is for basic solution.

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The quantum mechanical approach to atomic structure permits the calculation of?

Answers

Generally, the quantum mechanical approach to atomic structure permits the calculation of a region about the nucleus in which an electron of specified energy will probably be found.

By the help of quantum mechanics we can easily find the wave function that describes the movement of the particles, the interpretation of this wave function is done through the probability density (φ* φ).

This probabilistic interpretation of the energies, position and amounts of motion electrons often allow us to find the region around the nucleus where an electron of specific energy can be found with a given probability.

Hence, option B is correct.

The given question is incomplete and the complete question is given below.

The quantum mechanical approach to atomic structure permits the calculation of?

1. the most probable distance between any two specified electrons.

2. a region about the nucleus in which an electron of specified energy will probably be found.

3. the most probable radius of an orbit that an electron of specified energy will follow.

4. the most probable spin value that will be associated with an electron of specified energy.

5. the number of electrons in an atom.

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A substance’s flashpoint is the temperature at which it will explode.a. Trueb. False

Answers

Answer:

false. The flashpoint of a substance is the lowest temp at which it can vaporize to form an ignitable mixture in air.

the ability of water molecules to form hydrogen bonds with other water molecules and water's ability to dissolve substances that have charges or partial charges are group of answer choices both caused by water's two electron shells due to water's partial charges and low molecular mass, respectively both caused by water's partial charge both caused by water's ability to form covalent bonds with hydrophobic substances

Answers

The ability of water molecules to form hydrogen bonds with other water molecules and water's ability to dissolve substances that have charges or partial charges are respectively both caused by water's partial charge.

About water molecule

Water is a chemical substance with the chemical formula H2O: one molecule of water is composed of two atoms of hydrogen which are covalently bonded to one atom of oxygen. Water is colourless, tasteless and odorless under standard conditions, namely at a pressure of 100 kPa (1 bar) and temperature of 273.15 K (0°C).

This chemical substance is an important solvent, which has the ability to dissolve many other chemical substances, such as salts, sugars, acids, several types of gases and many types of organic molecules.

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true or false: when our goal is to establish an assertion, the negation of the assertion is .

Answers

Aristotle focuses only on propositions, assertions, or statements that are (or could be) true or untrue (apophanseis).

Like the majority of logicians after him, he concentrates on a small number of quantifiers. He asserts that each premise is either general, specific, or ambiguous. Therefore, a proposition (protasis) is a statement that affirms or denies something of something, and it might be general, specific, or indefinite. When I say something is universal, I mean that it belongs to everything or to nothing; when I say something is particular, I mean that it belongs to some people or not to some people or to all; and when I say something is indefinite, I mean that it does or does not belong without any indication that it is universal or particular, for example, "contraries are subjects of the same science" or "pleasure is not good."

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Please answer now thank you

Answers

Losing all of its leaves

A rigid cylinder of nitrogen shows a pressure of 4100 torr at 25C. The cylinder is then transported to the desert where it shows a pressure of 4300 torr. What is the temperature in the desert?

Answers

The temperature in the desert is approximately 307.87 K, which is equivalent to 34.72C.

The relationship between pressure, volume, and temperature for a gas is described by the Ideal Gas Law, which states that PV = nRT, where P is pressure, V is volume, n is the number of moles of gas, R is the ideal gas constant, and T is temperature in kelvins.

Assuming the cylinder is rigid, meaning its volume does not change, we can use the Ideal Gas Law to calculate the temperature in the desert.

Starting with the initial conditions:

P1 * V = n * R * T1

And after the cylinder is transported to the desert:

P2 * V = n * R * T2

Since the volume is constant, we can divide both equations by V to obtain:

P1 = n * R * T1 / V

P2 = n * R * T2 / V

Next, we can set the two equations equal to each other and solve for T2:

P1 * V / n * R = T1

P2 * V / n * R = T2

T2 = P2 * V / (n * R) = 4300 * V / (n * R)

T1 = P1 * V / (n * R) = 4100 * V / (n * R)

T2 = 4300 * V / (n * R) = T1 * P2 / P1

T2 = (4100 * V / (n * R)) * (4300 / 4100) = 25 * (4300 / 4100)

Since temperature is in kelvins, we need to convert the initial temperature of 25C to kelvins:

T1 = 25 + 273.15 = 298.15 K

Finally, we can substitute this value into the equation for T2 and solve for the temperature in the desert:

T2 = 298.15 * (4300 / 4100) = 307.87 K

The temperature in the desert is approximately 307.87 K, which is equivalent to 34.72C.

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how many different elements are in sulfuric acid (h2so4)

Answers

Answer:

three 3

Explanation:

oxygen, sulphur and hydrogen.

which of the following elements could reasonably be the cationic portion of an ionic compound? select all that apply. multiple select question. carbon (c) silver (ag) sulfur (s) potassium (k) calcium (ca)

Answers

Among the given, Potassium (K), Calcium (Ca), Silver (Ag) could reasonably be the cationic portion of an ionic compound.

Between cations and anions, ionic bonds develop. When a metal ion loses a valence electron, a cation is generated, whereas an anion is formed when a nonmetal gets a valence electron. Through this interchange, they both obtain a more stable electrical arrangement.

The cationic part of an ionic compound might be made up of the following elements:

Potassium (K)

Calcium (Ca)

Silver (Ag)

These are all metals that have been shown to create positive ions (cations) in ionic compounds.

Carbon (C) and sulfur (S) are nonmetals that often generate negative ions (anions) in ionic compounds, making them unlikely to constitute the cationic component of an ionic molecule.

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