how many atoms of hydrogen are in 5.29 × 1021 molecules of ethanol, ch3ch2oh?

Answers

Answer 1

There are 1.053 × 10^23 hydrogen atoms in 5.29 × 10^21 molecules of ethanol.

How to calculate the total number of hydrogen atoms in a given number of molecules of ethanol?

The molecular formula for ethanol (C2H5OH) tells us that it contains 2 atoms of hydrogen per molecule.

First we can use the Avogadro's number, which gives us the number of molecules in a mole of a substance, and the molecular formula of ethanol:

1 mole of ethanol contains 2 moles of hydrogen atoms

1 mole of ethanol contains 6.022 × 10^23 molecules (Avogadro's number)

Therefore, we can calculate the number of hydrogen atoms in a given number of ethanol molecules as follows:

Number of hydrogen atoms = 2 x Number of ethanol molecules x (1 mole ethanol / 6.022 × 10^23 molecules)Number of hydrogen atoms = 2 x 5.29 × 10^21 molecules x (1 mole ethanol / 6.022 × 10^23 molecules)Number of hydrogen atoms = 0.175 moles of ethanolNumber of hydrogen atoms = 0.175 moles x (6.022 × 10^23 atoms/mole)Number of hydrogen atoms = 1.053 × 10^23 hydrogen atoms

Therefore, there are 1.053 × 10^23 hydrogen atoms in 5.29 × 10^21 molecules of ethanol.

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Related Questions

When the solvent molecules and the solute molecules mix this process is usually A)separation energy. B)heat of solvation. C)endothermic. D)exothermic. E)heat of solution.

Answers

When the solvent molecules and the solute molecules mix this process is usually heat of solution. Option E is correct answer.

When the solvent molecules and the solute molecules mix, this process is known as heat of solution. It is the energy change that occurs when a solute dissolves in a solvent to form a solution. This process can either be exothermic or endothermic, depending on whether energy is released or absorbed during the process

In an exothermic process, the heat is released to the surroundings, while in an endothermic process, heat is absorbed from the surroundings. Heat of solution is an important concept in chemistry and is used to understand the behavior of solutes in different solvents. The answer is option E.

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when an oceanic plate converges with another plate subduction occurs the oceanic plate is pushed beneath the other plate a trench is formed when the plate is being pushed beneath the other what rock can likely result?

Answers

When an oceanic plate is subducted beneath another plate during a convergent boundary, the rock that can likely result is metamorphic rock.

Explanation:

This occurs because as the oceanic plate is subducted, it is forced deep into the Earth's mantle where it is subject to extreme heat and pressure. This heat and pressure cause the minerals and rocks in the oceanic plate to recrystallize, creating metamorphic rocks.

Examples of metamorphic rocks that can be formed from subducted oceanic plates include blueschist, eclogite, and amphibolite. These rocks can then be brought to the surface through a process called uplift and can be studied to understand the geological history of the area.

~ Zeph

in an atom, what type of particle orbits the others?

Answers

Answer:

Electrons orbit the nucleus in an atom.

Using sediment cores, scientists discovered a time in the past when carbon dioxide levels were about the same as they are today. How far back in Earth's history do we have to go to see this?
-500,000 years
-15 million years
-35 million years ago
-25 million years ago

Answers

In the past when the carbon dioxide levels were about the same as they are today. The far back in the Earth's history do we have to go to see this is the correct option is 15 million years.

The Sediment cores that contain evidence that the CO₂ levels were the same as the today  were about the 15 million years ago. There is the no single, and the widely accepted response to this type of the  issues because the research has to produced the wide range of the dates, from the 800,000 to the 15 million years ago.

The atmospheric CO₂ levels is never be so high as they are the presently by digging for the ice cores and the examining the air bubbles that will result.

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what gas reacts with fossil fuels when burned for energy? A. oxygen b. natural gas
c. hydrocarbon d. carbon dioxide

Answers

When fossil fuels are mined and used for energy, carbon dioxide gas combines with them to form an essential heat-trapping gas known as a greenhouse gas.

The correct answer is D

Are people harmed by carbon dioxide?

Many health impacts from CO2 exposure may occur. These symptoms could include a coma, hypoxia, convulsions, sweating, disorientation, agitation, a tingling or pins-and-needles sensation, difficulty breathing, fatigue, increased heart rate, and high blood pressure.

What is the principal function of carbon dioxide?

As a significant greenhouse gas, carbon dioxide aids in keeping heat in the atmosphere. Our earth would be icy and inhospitable without it. But as CO2 levels grow in the atmosphere, average global temperatures rise as well, affecting other facets of Earth's climate.

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how many signals would you see in the alkene/aromatic region of a 13c nmr spectrum of the following molecule?

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Pentane has a straight mirror plane along the middle, much like ethane does. Pentane contains three different sorts of carbon atoms, which can be seen by rotating the molecule 180° at a time.

While carbon 3 is distinct, carbons 1 and 5, 2 and 4, and 3 and 4 are homotopic pairings. One signal will be produced for each of the two homotopic couples, and one for carbon 3 alone. As a result, despite pentane having five carbon atoms, there are a total of three 13C NMR signals.

Alkenes and alkynes also follow these alkane symmetry laws.

A mirror plane can be found in toluene. We can observe that two pairs of comparable carbon if we locate that mirrorplane and rotate around it.

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Which of the following formulas represents that of an unsaturated hydrocarbon with 3 degrees of unsaturation?a) C10H20b) C8H14c) C12H24d) C6H6e) C4H10f) C8H12

Answers

Hydrocarbons Unsaturation occurs in organic molecules because of the double and bonds present that are present.

What are the uses of hydrocarbons?

Hydrocarbon. The main components of natural gas and petroleum are hydrocarbons. They are used as lubricants, fuels, and raw materials for making industrial chemicals, polymers, fibers, rubber, solvents, and explosives.

Which firms produce the most hydrocarbons?

Exxon Mobil, Texaco, Royal Dutch Oil, Saudi Arabia, and PetroChina are a few of the biggest oil firms. The economies and financial markets around the world are significantly impacted by these businesses' success and capacity to offer energy resources effectively and affordably.

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What is the boiling point of 100% ethanol?

Answers

Answer:

Explanation:

The boiling point of 100% ethanol, or pure ethanol, at standard atmospheric pressure (1 atm or 760 mmHg) is approximately 78.37 degrees Celsius or 173.13 degrees Fahrenheit. This is slightly lower than the boiling point of water, which is 100 degrees Celsius or 212 degrees Fahrenheit at standard atmospheric pressure. However, the boiling point of ethanol can vary slightly depending on the pressure and the purity of the sample.

pls help I don't know how to equate it

Answers

To balance a chemical equation, we want to make sure that the number of atoms of each element is equal on both sides of the equation. Here's the balanced form of each of the chemical equations you provided:

C6H12O6 + 6O2 -> 6H2O + 6CO2

Ba + 2H2O -> Ba(OH)2 + H2

2K + 2H2O -> 2KOH + H2

2Al(OH)3 -> Al2O3 + 3H2O

The solubility of a gas in water will typically decrease most with Select the correct answer below:
A. increasing polarity.
B. decreasing polarity.
C. decreasing temperature.
D. increasing pressure.

Answers

The solubility of a gas in water will typically decrease with decrease in polarity. Hence, the correct choice is B.

Generally, the solubility of any gas in a particular liquid is defined as the volume of the gas present in cc which can dissolve in a unit volume of the liquid in order to form the saturated solution at the temperature of the experiment and under the pressure of one atmosphere.

Generally the solubility of the gas in a liquid solution decreases with increase in temperature and decrease in polarity. This is due to, with an increase in temperature, the kinetic energy present in the gas molecule usually increases, thus it becomes difficult for liquid molecules to hold them. Hence, the correct option is B.

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the following method is used to make crystals of hydrated nickel sulphate.

an excess of nickel carbonate, 12.0g, was added to 40cm^3 of sulphuric acid, 2.0mol/dm^3. the unreacted nickel carbonate was filtered off and the filtrate evaporated to obtain crystals.

A ) number of moles of H2SO4 in 40cm^3 of 2.0mol/dm^3 acid = 0.08
i) number of moles of NiCO3 reacted =
ii) mass of nickel carbonate reacted =
iii) mass of unreacted nickel carbonate =

B ) the experiment produced 10.4g of hydrated nickel sulphate. calculate the percentage yeild.

i) the maximum number of moles of NiSO4.7H2O that could be formed =
ii) the percentage yeild =

(PLS SOLVE WITH STEPS)

Answers

Answer:

Explanation:

i) The balanced equation for the reaction between nickel carbonate (NiCO3) and sulfuric acid (H2SO4) is:

NiCO3 + H2SO4 → NiSO4 + CO2 + H2O

From the equation, we can see that one mole of NiCO3 reacts with one mole of H2SO4 to form one mole of NiSO4. Therefore, the number of moles of NiCO3 reacted is equal to the number of moles of H2SO4 in the reaction mixture, which is 0.08 moles.

ii) The molar mass of NiCO3 is 118.7 g/mol, so 0.08 moles of NiCO3 has a mass of:

0.08 moles x 118.7 g/mol = 9.5 g

Therefore, the mass of nickel carbonate reacted is 9.5 g.

iii) The excess of nickel carbonate added to the reaction mixture is:

12.0 g - 9.5 g = 2.5 g

Therefore, the mass of unreacted nickel carbonate is 2.5 g.

B)

i) The molar mass of NiSO4.7H2O is 262.85 g/mol, which includes the mass of seven water molecules. To calculate the maximum number of moles of NiSO4.7H2O that could be formed, we need to use the amount of nickel carbonate reacted (0.08 moles) as the limiting reagent.

From the balanced equation, we know that one mole of NiCO3 reacts to form one mole of NiSO4.7H2O. Therefore, the maximum number of moles of NiSO4.7H2O that could be formed is also 0.08 moles.

The mass of NiSO4.7H2O that could be formed is:

0.08 moles x 262.85 g/mol = 21.028 g

ii) The percentage yield is calculated using the following formula:

percentage yield = (actual yield / theoretical yield) x 100%

The actual yield is given as 10.4 g. The theoretical yield is the mass of NiSO4.7H2O that could be formed, which is 21.028 g.

percentage yield = (10.4 g / 21.028 g) x 100% = 49.4%

Therefore, the percentage yield is 49.4%.

A calcium supplement contains 570 mg of calcium per tablet. Write the equality for this statement. Express your answer using correct number of significant figures.

1 tablet = mg of calcium​

Answers

A calcium supplement contains 570 mg of the calcium per tablet. The equality for this statement is 610 mg of the calcium = 1 tablet .

The Amount of the calcium present in the calcium supplement is 610 mg per tablet . The Equality statement are obtained is expressed as follows: 610mg of the calcium = 1 tablet

Our  body needs calcium to be build and to maintain the strong bones. Our heart, muscles and the nerves also need the calcium to function it properly. When our body calcium intake is insufficient, and our body will remove the calcium from the bones, and making them weak and the brittle.

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What mass of gold is deposited during the electrolysis of gold (iii) tetraoxosulphate(vi) when a current of 15A is passed for 193 seconds

Answers

Mass = (Current * Time * Faraday's constant) / Atomic mass of gold
Mass = (15A * 193s * 96,500 C/mol) / 196.966 g/mol
Mass = 2.928 g

What is Atomic mass?

Atomic mass is a measure of the total mass of a single atom or molecule. It is the total mass of the protons, neutrons and electrons that make up the atom. The atomic mass of an element is usually expressed in atomic mass units (AMU), also called daltons (Da). The atomic mass of an element has a fixed value and does not change. This value is determined by the number of protons and neutrons and the mass of each particle.

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What is a major difference between inorganic and organic compounds? A.There are many more inorganic compounds than organic compounds B.Organic compounds contain carbon; few inorganic compounds do. C.Organic compounds are never ionic. D.Organic compounds tend t0 be more polar than inorganic compounds.

Answers

The significant difference between inorganic and organic compounds is that an organic compound contains carbon; few inorganic compounds do. The correct answer is option(B).

Organic compounds are molecules made up of a combination of carbon, hydrogen, and oxygen atoms. Organic compounds are said to be more volatile and also highly combustible. These compounds are often associated with living organisms and are found in foods and medicines. These are insoluble in water.

Examples of organic compounds are carbohydrates, fats (lipids), proteins, and nucleic acids, which are the basis for the molecules of life.

Inorganic compounds are made up of atoms from different elements, such as metals, sulfur, or nitrogen, and are not associated with living things. These compounds are not flammable and are non-volatile in nature. These are soluble in water and also non-soluble in some of the organic solutions.

           Examples of inorganic compounds include table salt (sodium chloride), bleach (sodium hypochlorite), and ammonia (NH3). The compound which despite having carbon are inorganic are graphite, carbon dioxide, carbon monoxide, carbides (e.g, Silicon Carbide), carbonates ( Calcium Carbonate), and some cyanides.

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The mass of a certain substance is 17. 5 kg. The density of the substance is 1. 71 g/ml. Determine the volume (in liters) of the substance

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The volume of the substance is approximately 10.20468 liters.

Volume is the three-dimensional area that a material occupies or that is encircled by a surface. The cubic metre is the common unit of volume in the International System of Units (SI) (m3). The litre (L) is the volume unit used in the metric system.

First, we need to convert the mass to grams since the density is given in grams per milliliter:

17.5 kg = 17,500 g

Then, we can use the formula:

Density = mass / volume

to solve for the volume:

volume = mass / density

volume = [tex]17,500 g / 1.71 g/ml[/tex]

volume = 10,204.68 ml

Finally, we can convert milliliters to liters by dividing by 1000:

volume =[tex]10,204.68 ml / 1000 ml/liter[/tex]

volume = 10.20468 liters (rounded to 5 decimal places)

Therefore, the volume of the substance is approximately 10.20468 liters.

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30.00grams of H3PO4 mass-mole

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0.30moles is the moles of H[tex]_3[/tex]PO[tex]_4[/tex]. a mole, sometimes spelt mol, is a common scientific measurement unit.

What is mole?

In chemistry, a mole, sometimes spelt mol, is a common scientific measurement unit for significant amounts of extremely small objects like atoms, molecules, or even other predetermined particles. The mole signifies  6.022×10²³  units, which is a very big quantity.

Under the International System of Units (SI), the mole is defined as this quantity as of May 20, 2019, according the General Conference upon Weights and Measurements. The amount of atoms discovered via experimentation to be present within 12 grams pure carbon-12 was originally used to define the mole.

mole = given mass/ molar mass

        = 30.00/97.9

        =0.30moles

Therefore, 0.30moles is the moles of H[tex]_3[/tex]PO[tex]_4[/tex].

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Choose the best answer. Nuclear power plants produce electricity using energy from the radioactive decay of (a) uranium-235. (b) uranium-238. (c) plutonium-235. (d) plutomium-238.

Answers

Nuclear power plants produce electricity using energy from the radioactive decay of uranium-235. Option A is correct.

Nuclear power plants use nuclear reactors to produce heat through a process called nuclear fission, in which the nucleus of an atom is split into two smaller nuclei, releasing a large amount of energy. Uranium-235 is a naturally occurring radioactive isotope of uranium that is used as fuel in nuclear reactors because it undergoes nuclear fission more readily than other isotopes.

Uranium-238 is also used in nuclear reactors, but it must first be converted into plutonium-239 through a process called nuclear transmutation. Plutonium-235 and plutonium-238 are also used as nuclear fuel in certain types of nuclear reactors, but they are produced artificially through nuclear transmutation.

Hence, A. uranium-235 is the correct option.

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How do mineral nanoparticles in sunscreens protect from UV radiation? Multiple Choice A) The particles scatter incoming UV light B) The particles absorb incoming UV light C) The particles dissolve with incoming UV light D) None of these choices are correct

Answers

Mineral nanoparticles in sunscreens protect from UV radiation by scattering incoming UV light and the correct option is option A.

What are nanoparticles?

A nanoparticle is a small particle that ranges between 1 to 100 nanometres in size. Undetectable by the human eye, nanoparticles can exhibit significantly different physical and chemical properties to their larger material counterparts.

Nanoparticles have a very large surface area to volume ratio when compared to bulk material, such as powders, plate and sheet.

This feature enables nanoparticles to possess unexpected optical, physical and chemical properties, as they are small enough to confine their electrons and produce quantum effects.

Protective properties of sunscreens work on the basis of absorption and scattering of incident radiation by their ingredients (UV filters). These chemical and physical compounds are organic molecules that absorb UV light and mineral nanoparticles that exhibit absorbing and scattering properties, respectively.

Therefore, mineral nanoparticles in sunscreens protect from UV radiation by scattering incoming UV light and the correct option is option A.

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12. what mass of glycerin (c3h8o3), a nonelectrolyte, must be dissolved in 200.0 g water to give a solution with a freezing point of -1.50 °c?

Answers

The mass of the glycerin, C₃H₈O₃ a nonelectrolyte, that must be dissolved in 200.0 g water to give a solution with the  freezing point of -1.50 °C is 14.8 g.

Mass of solvent = 200.0 g

Depression at freezing point = - 1.50 °C

Kf = 1.86 °C / m

The molality is given as :

0 - ΔT = Kf × m × i

Where ,

ΔT = - 1.50 °C

Kf =  1.86 °C / m

m = molality = ?

i = 1

m = 1.50 / 1.86

m = 0.806 m

The molality = ( mass of solute × 1000) / ( molar mass of solute × mass of solvent)

Mass of solute =( 0.806 ×  92 × 200 ) / 1000

Mass of the solute = 14.8 g

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which of the two cations, lithium or sodium, has stronger ion–dipole interactions with water?

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In general, the strength of ion-dipole interactions with water depends on the charge and size of the ion. Larger ions with higher charges tend to have stronger ion-dipole interactions with water.

Cations and anions play a crucial role in various chemical reactions, as they are responsible for the formation of ionic compounds, electrolytes, and the conduction of electricity in solutions. The interaction between cations and anions creates an electrostatic attraction that holds them together in ionic compounds.

In the case of lithium (Li+) and sodium (Na+) ions, lithium has a smaller ionic radius and a higher charge density compared to sodium. This means that the positive charge of the lithium-ion is concentrated over a smaller area, leading to stronger interactions with the negatively charged oxygen atoms in water molecules.

Therefore, lithium ions tend to have stronger ion-dipole interactions with water compared to sodium ions.

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An experimental volume of 21.4 L is determine for 1 mole of gas at STP. What is the experimental error?|Accepted−Experimental / Accepted ×100%A)Between 5 and 10%B) Between 10 and 15%C) Between 15 and 20%D) A little less than 5%

Answers

The experimental error is a little less than 5%, which corresponds to option D.

What is the experimental error?

Experimental error refers to the difference between a measured or observed value and the true value of a quantity. In other words, it is the difference between the value obtained from an experiment or measurement and the value that would be expected in theory or from a known reference.

Using the formula for experimental error, we have:

Experimental error = {Accepted - Experimental} / Accepted x 100%

Substituting the given values, we get:

Experimental error = |22.4 L - 21.4 L| / 22.4 L x 100%

Experimental error = 0.9 L / 22.4 L x 100%

Experimental error = 4.02%

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Methyl isocyanate is used in the industrial synthesis of a type of pesticide and herbicide known as a carbamate. As a historical note, an industrial accident in Bhopal, India in 1984 resulted in leakage of an unknown quantity of this chemical into the air. An estimated 200,000 persons were exposed to its vapors and over 2000 of these people died.
Methyl isocyanate reacts with strong acids, such as sulfuric acid, to form a cation. For protonation on O , which resonance contributor is most important?

Answers

Protonation of isocyanate happens on Oxygen atom. Here the nitrogen atom attached to the carbocation is the resonance contributor

Methyl isocyanate is a  precursor or intermediate in the production of carbamate, which is a popular pesticide and herbicide. Protonation happens in the carbenium ion, or carbocation, since it is sp hybridized with oxygen and nitrogen.( Image is given below)

There are two contributing resonance structures in the image. The protonation of nitrogen leads to a formation of resonance structure with triple bond on oxygen, which is very unlikely. The other structure contributes to the formation of protonated product, since triple bonded nitrogen atom is very likely to form.

So nitrogen is the resonance contributor for the protonation of oxygen.

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the strength of dipole interactions are mostly determined by what?

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The strength of dipole interactions is mostly determined by the difference in electronegativity between atoms in a molecule.

Dipole interactions occur between polar molecules, which have a separation of electric charge resulting from a difference in electronegativity between the atoms that make up the molecule. Electronegativity is a measure of how strongly an atom attracts electrons towards itself in a covalent bond.

The greater the difference in electronegativity between the atoms in a molecule, the larger the dipole moment and the stronger the dipole-dipole interactions. This is because the partial positive and negative charges in a polar molecule are more pronounced when the electronegativity difference is higher, which leads to stronger attractions between the molecules.

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Classify each of the following substances and descriptions as an electrolyte or a nonelectrolyte.

Answers

When dissolved in a solvent, an electrolyte separates into ions and has the ability to conduct electricity, whereas a nonelectrolyte does not separate into ions and has neither of these properties.

The descriptions and classifications for the substances are as follows NaOH(s) - Nonelectrolyte HCl(aq) - Electrolyte C6H12O6(aq) - Nonelectrolyte (since it is not dissolved in a solvent) Electrolyte KNO3(aq), nonelectrolyte CH3OH(aq), and electrolyte NH3(aq) (to a limited extent due to its weak base nature) Water is an electrolyte and MgCl2(aq) is an electrolyte. It should be noted that a material's behavior in a solution determines whether it is an electrolyte or a nonelectrolyte, and the same chemical can act in a variety of ways depending on the solvent employed.

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Which of the pairs of amino acids can form a salt bridge at physiological pH?aspartic acid and histidineglutamic acid and aspartic acidtwo cysteinesarginine and tyrosinelysine and glutamic acid

Answers

The pair of amino acids which can form a salt bridge at physiological pH is glutamic acid and aspartic acid.

What are amino acids?

Amino acids are defined as the substances which are considered to be the monomers of proteins.Every amino acid has the same structure consisting of a central carbon which is bonded to an amino group , carboxyl group and a hydrogen.

Each amino acid also has another atom or a group of atoms bonded to the alpha carbon which are also known as the R group or the variable group of the side chain.There are 20 common amino acids present in natural proteins and each amino acid has the same backbone.

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what is definition of equilibrium?

Answers

It is a state of equilibrium between opposing forces or actions that can be static (as in a body acted on by forces with a zero resultant) or energetic.

Equilibrium in a process is a state in which the evident assets such as color, ambient temperature, tension, concentration, and so on do not change. In a reversible reaction, chemical equilibrium is the state where both the forward and backward events happen at the same rate.

The word principle says 'balance,' implying that even a reaction mechanism represents harmony here between the reactants and products involved. The equilibrium state can also be observed in certain physical processes, such as the melting temperature of ice at 0°C, where both ice and water are present.

The equilibrium related to physical processes, such as solid melting or salt dissolution in water, is known as physical equilibrium, whereas the equilibrium caused by chemical reactions is known as a chemical equilibrium.

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Benzene is a minor component of gasoline. The standard molar enthalpy of formation of benzene C6H6() is 48.95 kJ/mol. For the balanced reaction equation of benzene use:
2C6H6(I) +1502 --> 12CO2 + 6H₂O.
Benzene is a liquid, but all the other chemicals in this reaction are gases. What is the enthalpy change of this reaction in kJ?

Answers

The enthalpy change of the reaction, given that the standard molar enthalpy of formation of benzene, C₆H₆ is 48.95 kJ/mol, is 97.9 KJ

How do I determine the enthalpy change for the reaction?

From the question given above, we were told that the standard molar enthalpy of formation of benzene, C₆H₆ is 48.95 kJ/mol.

Thus, we can use the standard molar enthalpy change of benzene to determine the enthalpy change for the reaction as follow:

2C₆H₆ + 15O₂ -> 12CO₂ + 6H₂O

From the balanced equation above, 2 moles of benzene, C₆H₆ were used up in the reaction.

Thus, we can say that:

1 mole of benzene, C₆H₆ gave an enthalpy change of 48.95 KJ.

Therefore,

2 moles of benzene, C₆H₆ will result in an enthalpy change of = 2 × 48.95 = 97.9 KJ

Thus, the enthalpy change is 97.9 KJ

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79. Chemical Symbol Parade

Answers

Answer:Chart that arranges all of the known elements in a particular order.

cExplanation:Chart that arranges all of the known elements in a particular order.Chart that arranges all of the known elements in a particular order.Chart that arranges all of the known elements in a particular order.Chart that arranges all of the known elements in a particular order.

Mass (g) to mass (g)
2Na + 2H2O >2NaOH+ H2
How many moles of NaOH are produced if 120 grams of H2O are available?

Answers

Answer:

4.44 g

Explanation:

First, we need to determine the limiting reactant. The balanced chemical equation is:

2Na + 2H2O → 2NaOH + H2

From the equation, we see that 2 moles of sodium reacts with 2 moles of water to produce 1 mole of hydrogen.

Moles of Na in 120 g of Na:

Molar mass of Na = 22.99 g/mol

Number of moles of Na = mass/molar mass = 120 g / 22.99 g/mol = 5.22 mol

Moles of water in 80 g of H2O:

Molar mass of H2O = 18.02 g/mol

Number of moles of H2O = mass/molar mass = 80 g / 18.02 g/mol = 4.44 mol

Since 5.22 moles of Na requires 5.22 moles of H2O, water is the limiting reactant.

The moles of hydrogen produced is equal to the moles of the limiting reactant, which is 4.44 mol.

The mass of hydrogen produced is:

Mass = number of moles x molar mass

Mass = 4.44 mol x 1 g/mol = 4.44 g

So the grams of hydrogen produced by the 120 grams Na and 80 grams of water is 4.44 grams.

__________ structure influences how atoms are bonded together

Answers

Atomic structure influences how atoms are bonded together.  Atomic derives from the Latin atoms, "indivisible particle," from the Greek atomos, "uncut" or "indivisible." Adjective of, pertaining to, or consisting of atoms is defined as "atomic."

The fundamental unit of chemistry is the atom. It is the smallest particle that can be separated into the matter without releasing electrically charged particles. Moreover, it is the smallest piece of matter with the characteristics of a chemical element.

Quarks and electrons, two different types of basic particles, make up atoms. The area around the nucleus of an atom is filled with electrons. A single electron has a -1 electrical charge. Protons and neutrons are made of quarks, and the nucleus of an atom is made up of these particles.

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