if only cof2 is present initially at a concentration of 2.00 m , what concentration of cof2 remains at equilibrium?

Answers

Answer 1

If only cof2 is present at a concentration of 2.00 m at the start, the equilibrium concentration of cof2 is 0.388 M.

Kc=[CO2][CF4]/[COF2]2

let [CO2] = [CF4] = x

then [COF2] = 2.00 - 2x

[tex]\frac{x^{2} }{(2.00-2x) ^{2}}[/tex]=4.30

x=0.806

concentration of [COF2] = 2.00 - 2x = 0.388 M

Equilibrium is a state in a process in which the observable properties such as color, temperature, pressure, concentration, and so on do not change.

The word equilibrium means 'balance,' implying that a chemical reaction represents a balance between the reactants and products involved in the reaction. The equilibrium state is also observed in certain physical processes, such as the melting point of ice at 0°C, where both ice and water are present.

The equilibrium associated with physical processes such as solid melting, salt dissolution in water, and so on is known as physical equilibrium, whereas the equilibrium associated with chemical reactions is known as a chemical equilibrium.

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The complete question is:

2COF2(g)⇌CO2(g)+CF4(g), Kc=4.30

If only COF2 is present initially at a concentration of 2.00 M, what concentration of COF2 remains at equilibrium?


Related Questions

what glassware item is meant to be used to move liquid in an accurate and precise manner.

Answers

A pipette is a piece of glassware that is designed to have to accurately and precisely transport liquid.

What is the best explanation of a liquid?

A form of substance known as a liquid has characteristics that make this less stiff than that of a solid but far more rigid than that of a gas. Unlike a solid, which has a defined form, a liquid may flow. In contrast, a liquid takes on shape of the jar it is kept in.

What makes anything liquid?

Liquids are just fluids. The particles in a liquid get a lot more flexibility to move about than those in a solid. In a liquid, the forces that hold the atoms that make up a solid are just momentary.

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If you dissolve 0.3 moles of HBr in 1 L of water, what do you expect to be present in the beaker after the compounds have had time to react? a) H2Br, OH, and H2O. b) H30*, Br", and H2O. c) BrOH and H307. d) HBr, H307, Br", and H2O.

Answers

According to the question, choice d) HBr, H30+, Br-, and H2O is the best choice.

What do you mean by compound?

A compound in chemistry is a material comprised of two or more separate chemical elements mixed together in a certain proportion. When the constituents interact with one another, chemical bonds are formed that are difficult to break. These bonds occur as a consequence of atoms sharing or trading electrons.

What are an element and a compound?

Definition. A compound is made up of atoms from several elements that have been chemically mixed in a certain ratio. A pure chemical compound comprised of the same atom of an element is called an element. Composition. Compounds are made up of many different elements ordered through chemical bonding in a certain order and set ratio.

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what type of atom is represented by the small brown sphere in the center of this silica tetrahedron?

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Silicon is represented by small brown sphere in the center of this silica tetrahedron.

The silica tetrahedron that positions the support of all the silicate crystal is composed of silicon and oxygen. The mineral quartz SiO₂ is create in all types of rock and in all portions of the world.

Quarts falls into a group of minerals called the silicates, all of which comprise the elements silicon and oxygen in some amount. Silicates are by far the most shared minerals in earth’s crust and mantle creating up 95% of the crust and 97% of the mantle by most estimations.

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samples of natural selenium contain six stable isotopes. in terms of atomic structure, explain what these isotopes have in common, and how they differ.

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Stable isotopes of an element have the same number of protons in their atomic nuclei, but a different number of neutrons.

As a result, isotopes of an element have the same atomic number and therefore the same chemical properties, but they have different atomic masses.

The six stable isotopes of selenium have the same number of protons (34) but different numbers of neutrons, which results in different atomic masses. These isotopes therefore have the same atomic structure in terms of the number of protons, electrons and the arrangement of electrons in their shells. However, the difference in the number of neutrons results in a difference in the atomic mass of each isotope, which affects its physical properties, such as density and boiling point.

In conclusion, the stable isotopes of selenium have the same atomic structure in terms of protons, electrons, and electron arrangements, but differ in the number of neutrons and thus the atomic mass.

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a 20.0-ml sample of 0.25 m hno3 is titrated with 0.15 m naoh. what is the ph of the solution after 30.0 ml of naoh have been added to the acid?

Answers

The pH of the solution after 30 ml of NaOH has been added to the acid is 2.00.

From the question, we are given this information:

Volume of HNO₃ = 20 ml = 0.020 lMolarity of HNO₃ = 0.25 MMolarity of NaOH = 0.15 MVolume of NaOH = 30 ml = 0.030 l

From there, we can calculate the moles of each compound.

 Moles of HNO₃ = 0.020 * 0.25 = 0.0050

 Moles of NaOH = 0.030 * 0.15 = 0.0045

Calculate the moles of HNO₃ in excess
 = 0.0050 - 0.0045
 = 0.00050

The total volume of the solution is 0.02 L + 0.03 L = 0.050 L

The concentration of H+ = 0.00050 / 0.050
 = 0.0100 M

After we figure out the molarity of the solution, we can find out the pH of the solution using a logarithm.

 pH = - log (0.0100) = 2.00

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how many moles of sodium are there in 4.51 moles of the following compounds? 1st attempt part 1 (0.3 point)see periodic table nacl moles of na part 2 (0.3 point) na2so4 moles of na part 3 (0.3 point) na3po4 moles of na part 4 (0.3 point)see hint nano3 moles of na

Answers

1. nacl:4.51,2.na2so4:9.02, 3.na3po4:13.53, 4.nan03:4.51 moles of na, moles of sodium are there in 4.51 moles of the following compounds

In 1 mole of NaCl, there are 1 mole of Na. In 1 mole of Na2SO4, there are 2 moles of Na. In 1 mole of Na3PO4, there are 3 moles of Na. In 1 mole of NaNO3, there are 1 mole of Na.

NaCl: 4.51 moles * 1 mole Na/1 mole NaCl = 4.51 moles of Na

Na2SO4: 4.51 moles * 2 moles Na/1 mole Na2SO4 = 9.02 moles of Na

Na3PO4: 4.51 moles * 3 moles Na/1 mole Na3PO4 = 13.53 moles of Na

NaNO3: 4.51 moles * 1 mole Na/1 mole NaNO3 = 4.51 moles of Na

The number of moles of solute that are dissolved in a specific volume is indicated by the concentration metric known as molarity (M). Applying the rule of three would be as follows: If there are 6.4 moles of NaCl in 1 litre of solution,

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f the concentration of a reactant doubles, and the rate of the reaction increases by a factor of 8, what is the reaction order with the respect to that reactant?

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If the concentration of reactant is doubled the rate of reaction becomes :rate=k[A]2,rate1​=k[2A]2=4rate,So, the reaction order is FOUR TIMES.

What factor does the response rate rise by when the amount of a doubles?

When the concentration of The a doubles, the response rate also doubles; similarly, when the amount of A is multiplied by ten, the reaction rate multiplies by ten; and so on.

What happens when a chemical reaction's reactant concentration rises to equilibrium?

At constant T and V, if the proportion of the a reaction species increases, the balance system will change so that the concentration of the that species decreases.The opposite impact will be seen if a reactive species' concentration is lowered.

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a 7.05 mass % aqueous solution of ethylene glycol (hoch2ch2oh) has a density of 1.07 g/ml. calculate the molarity of the solution.

Answers

The molarity (M) of an aqueous solution is defined as the number of moles of solute per liter of solution. The molarity of the 7.05 mass % aqueous solution of ethylene glycol is 0.12 M.

Calculation of Ethylene Glycol Molarity in Aqueous Solution

The molarity of an aqueous solution refers to the number of moles of solute present in one liter of the solution. To determine the molarity of a 7.05 mass % aqueous solution of ethylene glycol (HOCH2CH2OH), the first step is to calculate the mass of ethylene glycol present in 100 g of the solution using the given mass percentage (7.05%). The volume of the solution can then be calculated using the density (1.07 g/ml). The number of moles of ethylene glycol present in the solution can be determined by dividing the mass of ethylene glycol by its molar mass (62.07 g/mol). Finally, the molarity of the solution is calculated by dividing the number of moles of ethylene glycol by the volume of the solution in liters. The result shows that the molarity of the 7.05 mass % aqueous solution of ethylene glycol is 0.12 M.

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A competitive inhibitor of an enzyme-catalyzed reaction is called: _______-

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Substrate analogues are competitive inhibitors of an enzyme-catalyzed process. Methotrexate, an antineoplastic medication, is an illustration of a competitive inhibitor.

Competitive inhibitor: what is it?

When an inhibitor binds to the enzyme's active site, where the substrate would typically bind, the enzyme's activity is inhibited. The substrate and the inhibitor both share a similar structure.

Why are they referred to as "competitive inhibitors"?

Competitive enzyme inhibitors compete with the substrate for the enzyme's active site by having a shape that is similar to the substrate molecule. As a result, enzyme-substrate complexes cannot form. As a result, the enzymes are able to attach to fewer substrate molecules, which slows down the reaction rate.

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determine the number of atoms in 35.0 grams of calcium, ca. (the mass of one mole of calcium is 40.08 g.)

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The number of atoms in 35.0 grams of calcium, ca. (the mass of one mole of calcium is 40.08 g) is 5.275*10^23 by avogardo's number

Avogadro's number is the number of particles in 1 mole (or mol) of a substance. These particles might be electrons, molecules, or even atoms.

How many atoms, molecules, or other components make up one mole of a substance is determined by Avogadro's Number. For instance, 6.022 x 1023 hydrogen atoms make up one mole of hydrogen.

The value of 6.023 x 1023 is equal to one mole of any substance (Avogadro's number) . It can be used to quantify the chemical reaction's byproducts. The symbol for the unit is mol.

35* [tex]\frac{1}{40.08}[/tex] = 0.873 mol ca

Using Avogadro's number, 6.022×10^23particles mol, we can calculate the number of atoms present:

0.873 * 6.022×10^23 = 5.275*10^23 no. of atoms

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n element has four naturally occurring isotopes with the masses and natural abundances given here. isotopemass (amu) abundance (%) 189.9047052.93 290.9056511.54 391.9050417.65 493.9063217.88 find the atomic mass of the element. express your answer to four significant figures and include the appropriate units.

Answers

The atomic mass of the element is 291.0646 amu, rounded to four significant figures: 291.1 amu.

The atomic mass of an element is the weighted average of the masses of its isotopes, where the weight is the fractional abundance of each isotope. To calculate the atomic mass, we need to multiply each isotope mass by its fractional abundance and then add up these products.

The fractional abundances need to be expressed as decimals, so we divide each percentage abundance by 100

52.93% ÷ 100 = 0.5293

11.54% ÷ 100 = 0.1154

17.65% ÷ 100 = 0.1765

17.88% ÷ 100 = 0.1788

Next, we multiply each isotope mass by its fractional abundance:

189.9047052.93 x 0.5293 = 100.3625 amu

290.9056511.54 x 0.1154 = 33.7147 amu

391.9050417.65 x 0.1765 = 69.1759 amu

493.9063217.88 x 0.1788 = 87.9715 amu

Finally, we add up these products to get the atomic mass of the element:

100.3625 + 33.7147 + 69.1759 + 87.9715 = 291.0646 amu

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prelab questionsin your own words, please state in one paragraph the purpose of this entire lab? q1) what are the units of measure for temperature, mass, volume, and length used by the si system, respectively? q2) what is the difference between a molar solution and a normal solution? q3) what are agar plates and how are they most commonly used in science?

Answers

Pre-Lab Activities: All pre- and post-lab assignments of laboratories will be presented on Canvas. You should finish all of the tasks with in Canvas Module, such as reading and viewing videos, to get ready for each lab.

What should you do four things before beginning a lab experiment?

Identify four things to do before beginning a lab experiment. I Don the appropriate attire and safety gear (goggles, gloves, aprons). ii) Remove all books and clothing from the lab benches. iii) Wear fitted attire, and tie back your hair. iv) If you use contact lenses, let the teacher know in advance.

Why are lab exercises important?

Through laboratory experiences, students' understanding of specific scientific concepts and facts, as well as how these facts and or concepts are ordered within the scientific disciplines, may be improved. building a rational argument for science.

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a 1.0 l balloon has a pressure of 2 atm. when the pressure increases to 2,000 kpa, what is the volume? responses 0.1 l 0.1 l 0.2 l 0.2 l 2.0 l 2.0 l 510 l 510 l

Answers

When the pressure of the 1.0 L balloon increases to 2,000 kPa, the volume will be 510 L.

The ideal gas law also states that if the temperature of the gas is increased while the pressure is held constant, the volume of the gas will increase. This is because the increased temperature will cause the gas particles to move faster, and the faster they move, the more space they will take up, resulting in an increase in volume.

Therefore, if the temperature of the 1.0 L balloon is increased while the pressure is held constant, the volume of the gas will increase.

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acetylene is a fuel used in weilding torches. calculate the heat released in the reaction for the combustion of acetylene

Answers

The heat of combustion of the acetylene is;  -1253.3 kJ/mol

What is the heat of combustion of acetylene?

The heat of combustion of acetylene (C2H2) is the amount of heat energy released when acetylene is burned in excess oxygen. The heat of combustion is a measure of the energy content of a substance and is usually expressed in units of energy per unit of substance, such as joules per mole (J/mol) or calories per gram (cal/g).

The heat of combustion is;

[2(-393.5) + (-241.6)] - [-226.7]

= -1253.3 kJ/mol

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during an exothermic chemical reaction, a solid is consumed and a gas produced. is this reaction spontaneous? group of answer choices yes no not enough information

Answers

Yes, a solid is consumed and a gas is created during an exothermic chemical process. Is this response unprompted?

An illustration of a spontaneous exothermic reaction

Exothermic reactions, such those caused by burning wood, fireworks, and the addition of alkali metals to water, comprise the majority of spontaneous chemical reactions. An exothermic nuclear reaction occurs spontaneously when a radioactive atom splits, releasing energy.

Is the response natural?

The energy change, temperature, pressure, and entropies of the reactants and products are only a few of the variables that affect whether a chemical reaction is spontaneous or not. It is impossible to tell if the reaction is spontaneous or not from the information given in the question.

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(a) in table 1.1 we see that 57 wt% of the listed pollutants are co. does it follow from that table that 57 percent of the air pollution problem in the united states is a co problem?

Answers

"No, 57% CO only reflects a portion of air pollutants, not overall air pollution."

The information presented in Table 1.1 only shows the weight percentage of carbon monoxide (CO) among the listed pollutants. It does not provide information about other sources of air pollution, such as particulate matter, sulfur dioxide, nitrogen oxides, and other pollutants. Therefore, it cannot be concluded from Table 1.1 that 57% of the air pollution problem in the United States is a CO problem. Further data and analysis would be required to determine the extent to which CO contributes to overall air pollution in the United States. The data in Table 1.1 provides important information, but it should be viewed in the context of a larger body of data and analysis to draw accurate conclusions about air pollution in the United States.

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If we triple the temperature and double the volume, what would the new pressure of the system be?

Answers

If you triple the temperature of an ideal gas and double its volume, the pressure of the system would be 3/2 times the original pressure.

The change is according to the Ideal Gas Law, which states that PV = nRT, where,

P = pressure

V = volume

n = no. of moles of gas

R = ideal gas constant

T = temperature.

To find the new pressure, we can rearrange the equation as P = (nRT) / V.

If we triple the temperature and double the volume, the new pressure would be:

P = (nRT) / (2V) = (3 * nRT) / (2 * 2V) = 3P / 2.

So, the new pressure would be 3/2 times the original pressure.

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when hcl(aq) is added to the solution containing co(h2o)62 (aq) the color changed from pink to blue. when agno3(aq) is added to this solution, what color will the solution be?

Answers

The color change from blue to white is due to the fact that AgCl is an opaque solid that does not allow light to pass through, making the solution appear white.

When aqueous HCl is added to a solution containing cobalt(II) hydroxide [Co(H2O)6]2+, the pink color of the solution changes to blue because the reaction produces cobalt(II) chloride [CoCl2]2+ and water:

                       Co(H2O)6^2+ + 6 HCl ⇒ CoCl2^2+ + 6 H2O

When aqueous silver nitrate (AgNO3) is added to this solution, the cobalt(II) chloride will react with silver nitrate to form a precipitate of silver chloride (AgCl), which is white:

CoCl2^2+ + AgNO3 -> Co(NO3)2^2+ + AgCl (precipitate)

Therefore, the solution will turn white after the addition of AgNO3.

The reaction between cobalt(II) chloride [CoCl2]2+ and silver nitrate (AgNO3) is a classic example of a precipitation reaction. Precipitation reactions occur when two ionic compounds are mixed together and the positively charged cations and negatively charged anions combine to form an insoluble solid that separates from the solution. In this case, the cation is CoCl2^2+ and the anion is NO3^-, which combine to form AgCl, an insoluble solid. The reaction is a double replacement reaction, in which the cations and anions switch partners to form new compounds.

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What mass of barium sulfate would be produced from 10 g of barium chloride in the following reaction?

BaCl2 + H2SO4 —> BaSO + 2HCl

Answers

Taking into account the reaction stoichiometry, 11.2 grams of BaSO₄ are produced from 10 g of barium chloride.

Reaction stoichiometry

In first place, the balanced reaction is:

BaCl₂ + H₂SO₄ → BaSO₄ + 2 HCl

By reaction stoichiometry, the following amounts of moles of each compound participate in the reaction:

BaCl₂: 1 mole H₂SO₄: 1 moleBaSO₄: 1 moleHCl: 2 moles

The molar mass of the compounds is:

BaCl₂: 208.24 g/moleH₂SO₄: 98 g/moleBaSO₄: 233.34 g/moleHCl: 35.45 g/mole

By reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

BaCl₂: 1 mole ×208.24 g/mole= 208.24 gramsH₂SO₄: 1 mole ×98 g/mole= 98 gramsBaSO₄: 1 mole ×233.34 g/mole= 233.34 gramsHCl: 2 moles×35.45 g/mole= 71.9 grams

Mass of BaSO₄ formed

The following rule of three can be applied: if by reaction stoichiometry 208.24 grams of BaCl₂ form 233.34 grams of BaSO₄, 10 grams of BaCl₂ form how much mass of BaSO₄?

mass of BaSO₄= (10 grams of BaCl₂× 233.34 grams of BaSO₄) ÷208.24 grams of BaCl₂

mass of BaSO₄= 11.2 grams

Finally, 11.2 grams of BaSO₄ are formed.

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we can only do ideal calculations when we are at standard temperature and pressure. True or False

Answers

It is true that we can only perform ideal calculations under normal pressure and temperature.

Why do scientists utilize normal pressure and temperature?

It is now simpler to compare various measures for gasses, such as the number of molecules of gas in a certain volume. For scientists to be able to compare different sets of data in a meaningful way, a global standard for temperature and pressure must be established.

What is the usual temperature and pressure?

The nominal air temperature at sea level are referred to as STP, or normal temperature and pressure. The conditions are 0 °C and 1 atmosphere of pressure, respectively.

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Who were the first people to attempt to explain why chemical changes occur?A. metallurgistsB. the GreeksC. alchemistsD. physicistsE. physicians

Answers

C. Alchemists were the first people to attempt to explain why chemical changes occur.

Alchemists were a group of ancient philosophers and proto-scientists who lived from around the 1st to the 17th century. They aimed to transform base metals into gold and to discover the elixir of life that would grant immortality. Despite their ultimate failure to achieve these goals, alchemists made important contributions to the development of modern chemistry. They developed early ideas about elements and compounds, as well as methods for chemical experimentation. Alchemists also discovered many important substances, including mercury, zinc, and sulfuric acid. Their work laid the foundation for modern chemical science and paved the way for future scientific advancements.

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are the alkali metals highly reactive or non-reactive?

Answers

Alkali metals are extremely reactive, hence they are almost never encountered in nature in their elemental state instead appearing as ionic compounds.

Alkali metals are not reactive, so why?

Lithium, sodium, potassium, and all other alkali metals have a single electron in their valence shell. This one electron has little attraction to the atom since it is most likely located far from the nucleus.

How reactive are alkali metals?

One of the most reactive metals is alkali metal. They have greater atomic radii and low ionization energies, which contribute to this. They have an oxidation state of 1, and they frequently give electrons during reactions. These metals stand out for their supple texture and silvery hue.

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ni has a higher atomic number than co, but co has a higher atomic mass. co-59 has a 100% natural abundance. the 5 stable isotopes of ni are ni-58, ni-60, ni-61, ni-62, and ni-64. which ni isotope has the highest natural abundance?

Answers

Answer:

Ni-58

Explanation:

What provides an acid or basic environment to optimize digestion?

Answers

In order to create a highly acidic environment, the stomach secretes hydrochloric acid (HCl), which lowers the pH of the stomach.

What is digestion?

Food is broken down into more digestible, smaller pieces throughout the digestion process so that the body can absorb and use them.

The digestive system's secretions produce the acidic or basic environment necessary for effective digesting. In order to create a highly acidic environment, the stomach secretes hydrochloric acid (HCl), which lowers the pH of the stomach. Proteins are broken down, digestive enzymes are activated, and potentially hazardous microorganisms are killed in this acidic environment.

The small intestine, on the other hand, is kept at a pH that is somewhat basic to enhance the activity of the digestive enzymes that break down carbs, proteins, and lipids. The release of bicarbonate, a basic chemical, from the pancreas and the small intestinal wall maintains the basic environment of the organ.

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recall the photo of the melting ice cubes. if you put the water from the melted ice cubes back in the freezer it will become solid again. describe the transfer of thermal energy as the ice cubes melt and then as they become solid again. in both situations, describe which substanes are gaining and losing energy.

Answers

Convection heat is one way to deliver the energy as heat. The cooler water underneath the ice will fall into the warmer water below it while it is floating on the water.

Ice warms up when heated, but once it begins to melt, the temperature remains constant until all of the ice has melted. This occurs as a result of all the convection heat energy being directed toward dissolving the ice's crystal lattice.

The transfer of heat between two bodies by currents of moving gas or fluid is known as convection heat transfer. In free convection, air or water rises and is replaced by a cooler parcel of air or water as it moves away from the hot body.

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According to the electron sea model, the melting points of metals are not as extreme as the boiling points. This is because the cations and electrons are - in a metal. It does not take much energy for a solid to become liquid. But metallic bonds are very - , so it does require a lot of energy to separate atoms from the cations in their sea of electrons.

Answers

According to the electron sea model, the melting points of metals are not as extreme as the boiling points. Therefore, the given statement is correct is true.

What is electron sea model?

The Electron Sea Model's whole hypothesis relies around the behavior of atoms throughout this bonding. The movement of unpaired electrons between positively charged metal ions in a mesh is known as metallic bonding.

According to the electron sea model, the melting points of metals are not as extreme as the boiling points. This is because the cations and electrons are - in a metal. It does not take much energy for a solid to become liquid. But metallic bonds are very - , so it does require a lot of energy to separate atoms from the cations in their sea of electrons. This statement is true.

Therefore, the given statement is correct is true.

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the lattice energy of lif is -1036 kj/mol. when 2.036 g of lif is dissolved in water, 0.371 kj of heat is absorbed. calculate the enthalpy of hydration of lif.

Answers

The enthalpy of hydration of LiF is 1040.76 kJ/mol. This value represents the amount of heat absorbed when 1 mole of LiF is dissolved in water.

The enthalpy of hydration of lithium fluoride (LiF) can be calculated as follows:

Convert the mass of LiF to moles:

2.036 g LiF / 25.9 g/mol = 0.078 moles LiF

Calculate the heat absorbed per mole of LiF:

0.371 kJ / 0.078 moles = 4.76 kJ/mol

Calculate the enthalpy of hydration by subtracting the lattice energy from the heat absorbed per mole:

Enthalpy of hydration = heat absorbed per mole - lattice energy

= 4.76 kJ/mol - (-1036 kJ/mol)

= 1040.76 kJ/mol

So, the enthalpy of hydration of LiF is 1040.76 kJ/mol. This value represents the amount of heat absorbed when 1 mole of LiF is dissolved in water.

The enthalpy of hydration, or the heat of solution, is a measure of the energy change that occurs when a substance is dissolved in a solvent. It is a measure of the amount of heat absorbed or released during the dissolution process.

When a solid substance is dissolved in a solvent, energy is required to break the attractive forces between the solid particles, allowing the particles to move freely in the solvent. This energy is called the lattice energy, which is the energy required to separate a solid into its constituent ions in the gas phase.

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for each solute, click the button under the better solvent. solute which is the better solvent? oohocchch2cohoh och3cch3

Answers

For this question, the better solvent for the solute OOHOCC H2COHOH is OCH3CCH3.

OOHOCC H2COHOH is a hydrocarbon, which means it is non-polar. Therefore, the only solvent that can dissolve this solute is another non-polar solvent, such as OCH3CCH3 (methane).

Non-polar solutes dissolve best in non-polar solvents. This is because the non-polar nature of the solute and solvent allows them to mix and form a homogeneous solution. Non-polar solutes include hydrocarbons, alcohols, ethers and alkanes. Polar solutes, on the other hand, dissolve best in polar solvents. Polar solutes include acids, bases, salts, sugars and amino acids.

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I need help with 11 and 12 please and thank you so much:)

Answers

In the first chemical equation the coefficients are 2,1,1,2 while in second chemical equation are 2,2,4,1.

What is chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

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how do the relative humidity measurements for the inside and outside location that you measured compare? why do you think your determinations are similar or different?

Answers

Because evaporation is considerably more rapid whenever the relative humidity is lower, even though the amount of moisture present in the atmosphere is the same inside as outside, the inside will be much drier.

Is high or low humidity preferable?

Lower humidity can have major health repercussions, and the ideal range is between 40 or 60 percent. The combination of indoor heating in the winter and the chilly outside air can produce extremely dry indoor air. Numerous health issues are exacerbated by dry air: a skin condition known as eczema.

Is less humidity a good thing?

Low humidity causes the mucus lining your respiratory tract to become inflamed and dry, as well as dry and itchy skin, dry eyes, and itchy, flaky skin. This significantly raises the risk of the common cold, the flu, and other illnesses.

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