Which of these substances contains a compound made up of exactly 2 different types of atom?

Which Of These Substances Contains A Compound Made Up Of Exactly 2 Different Types Of Atom?

Answers

Answer 1

The compound that is made up of exactly two atoms is option B.

What is a compound?

The term compound has to do with something that is formed by the combination of two or more atoms. We know that these atoms are components of elements. We have to say here that there is almost no limit to the number of atoms that could be combined in a compound.

Let us look at the images that we have in the options. The compound that would be made up of two a toms would have only two colors of balls in its depiction and that is what we must look out for.

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Related Questions

Give a structural formula for the carbocation intermediate that leads to the major product in the reaction of hydrogen chloride with cis−2−butene.

Answers

The major product formed when hydrogen chloride reacts with 2−methyl−2−butene proceeds through a tertiary carbo cation intermediate.

An addition reaction occurs when 2 methyl 2 butene and hydrogen chloride are combined. The Markovnickov rule states that the carbon atom with the fewest hydrogen atoms receives the negative part of the addition. As a result, carbon 2 will be increased by the addendum's negative portion.

The carbocation will be carbon-2 as indicated in the figure that is linked to this answer since this reaction proceeds through an ionic mechanism. This carbon atom is the one to which chlorine will finally bond.

A chemical compound known as hydrogen chloride (HCl) contains a polar covalent bond between chlorine and hydrogen atoms.

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In the nineteenth century, this material became both less costly and more widely available for construction.

a. glass
b. iron
c. concrete
d. steel
e. all of the other answers

Answers

In the nineteenth century, this material became both less costly and more widely available for construction all of the other answers. Option E.

This historic Mycenaean stone building constructed around 1250 BCE, uses a corbeled arch to span the entryway. This architectural production technique includes two uprights and a crossbeam. A vault is an arched overhead shape that provides a space with a ceiling or roof just like the arch the vault has been around seeing ancient instances.

Set-up art is one of the most effective and immersive of all artwork paperwork. In comparison with conventional mediums along with painting and sculpture, set-up artwork is designed to fill complete rooms or maybe whole gallery spaces. however, it become the Romans who created a rigid stable structure that didn't need any external buttresses or help.

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Complete the mechanism for the acid‑catalyzed alcoholysis of the epoxide by adding any missing atoms, bonds, charges, nonbonding electrons, and curved arrows.

Answers

The lone pair electron in alcohol undergoes protonation and stabilizes the cation that is present in the oxygen atom. The final product contains both the ether and alcohol functional groups.

The chemical element with the letters O and the atomic number 8 is called oxygen atoms. It belongs to the chalcogen group of the periodic table and is a highly reactive nonmetal that readily forms oxides with most elements as well as with other compounds. Chemical elements, or substances with only one sort of atom, include molecular oxygen. An oxygen atom has eight protons in its nucleus, as indicated by its atomic number of 8 and the official chemical symbol O. The manufacture of steel, plastics, and textiles, brazing, welding, and cutting of steel and other metals, rocket propellant, oxygen therapy, and life support systems in aircraft, submarines, spaceflight, and diving are just a few common uses for oxygen. Since many organisms use molecular oxygen for respiration, molecular oxygen is necessary for life.

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suppose you need to prepare 120.4 ml of a 0.183 m aqueous solution of nacl. what mass, in grams, of nacl do you need to use to make the solution?

Answers

The mass of NaCl required ( in grams) to make the aqueous solution is 1.287 g.

What is molecular mass? How do you calculate molecular mass?

A molecule's mass is the sum of the masses of all the atoms it contains. As it is the total mass of all the atoms in a molecule, it is calculated below

The molecular mass of NaCl = Atomic mass of Na + Atomic mass of Cl

                                               = 23 + 35.5

                                               = 58.5g/mol

Given the volume of aqueous solution = 120.4 ml or 0.1204 L

Molarity of solution = 0.183M

We know that,

Molarity = No. of moles/Volume

No. of moles = 0.183 × 0.1204

                      =  0.022 moThe molar.

Molar mass of NaCl = Mass of Na + Mass of Cl

                                 = 23 + 35.5

                                 = 58.5g/mol

Mass of NaCl = 0.022 × 58.5

                      = 1.287 g

So, the mass of NaCl required ( in grams) to make the aqueous solution is 1.287 g.

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the stanley miller apparatus demonstrated that organic molecules could assemble spontaneously in an environment lacking free oxygen and containing water, methane, and ammonia in the presence of an abundant energy source, such as an electric discharge. the research was considered supportive of the organic soup hypothesis, which states that the primitive atmosphere provided inorganic precursors from which organic molecules could have been synthesized in the presence of an energy source. based on subsequent research, the primordial atmosphere was determined to contain less methane and more carbon dioxide. the new data about the composition of the early atmosphere had which of the following effects on origin-of-life hypotheses?

Answers

The Stanley miller apparatus demonstrated , The new data about the composition of the early atmosphere had which of the following effects on origin-of-life hypotheses : A new organic soup hypothesis was proposed to account for the new data for the atmosphere.

The Stanley miller  hypothesis proposed the evolution of life on the earth. from the several theories the acceptance is on soup theory. The organic soup theory proposed the new data for the atmosphere also called as primordial soup theory.

Thus, The Stanley miller apparatus demonstrated , The new data about the composition of the early atmosphere had which of the following effects on origin-of-life hypotheses : A new organic soup hypothesis was proposed to account for the new data for the atmosphere.

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determine whether each of the following compounds is soluble or insoluble: drag the appropriate items to their respective bins. you did not open hints for this part. cu3(po4)2

Answers

Cu3(PO4)2   (Copper (11) Phosphate)

Inorganic compound.

→ It is cupric salt of phosphoric acid.

→ Insoluble in water and ethanol.

Solubility is defined as the maximum amount of a substance that will dissolve in a specified amount of solvent at a specified temperature. Solubility is a characteristic property of a particular solute/solvent combination, and different substances have very different solubilities.

Solubility indicates the maximum amount of a substance that can be dissolved in a solvent at a specific temperature. Such a solution is called saturated. Solubility is the formation of new bonds between solute and solvent molecules. In terms of quantity, solubility is the maximum concentration of a solute that will dissolve in a solvent of known concentration at a given temperature.

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predict the charge that an aluminum ion would have. question 10 options: a) 1 b) 5- c) 2 d) 3 e) 1-

Answers

An aluminum ion will have +3 charge.

The electronic configuration of Aluminum(Al) is 1s2 2s2 2p6 3s2 3p6. This shows that an aluminum has 3 shells from which the outermost shell contains 3 valence electrons. So, the Aluminum has the tendency to loose maximum 3 electrons which gives Al + charge called cation. The atomic number of Al is 13.

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how many single covalent bonds must a chlorine atom form to have a complete octet in its valence shell?

Answers

Answer:

Chlorine only needs to make one covalent bond. It has seven e- so it needs one more to make a full octet.

Explanation:

if 45.3 ml of a 0.108 m hcl solution is needed to neutralize a solution of koh, how many grams of koh must be present in the solution?

Answers

If 45.3 ml of a 0.108 M HCL solution is needed to neutralize a solution of KOH, then grams of KOH that  must be present in the solution is 0.274gm.

What is molarity?

The amount of a substance present in a certain volume of solution is termed as molarity . It can also be defined as the moles of a solute per liter of solution.

HCL +KOH --->  KCL+ H2O

Molarity= mol solute / L solution

Given volume of HCL= 45.3ml= 0.0453L

concentration = 0.108M

As we know that, No. of moles = concentration * Volume

=0.0453* 0.108

Number of moles=0.0048

Mass = no. of moles*molar mass

Molar mass of KOH = 56.1 g/mol

= 0.00489* 56.1

Grams of KOH= 0.274 gm.

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compare the elements na, b, al, and c with regard to the following property: which has the largest (most positive) ionization energy?

Answers

The increasing ionization energy order is Na< Al < B < C.

The ionization energy decreases in groups from top to bottom and increases over time from left to right. Therefore, helium has the highest initial ionization energy and francium has the lowest one. The ionization energy increases because the ratio of protons to electrons increases.

The higher the ionization energy the more difficult it is to remove an electron. Therefore, ionization energy is a measure of reactivity. Ionization energy is important because it can be used to predict the strength of chemical bonds. The process by which electrically neutral atoms or molecules are transformed into charged atoms or molecules by gaining or losing electrons.

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write the equations for the following reactions. make sure to balance the equation and include the states. zinc metal and hydrochloric acid

Answers

Balanced equations for the following reactions along with the states are:

Zn (s) + 2 HCl (aq)   ZnCl₂ (aq) + H₂ ( g)

Sn (s) + PbSO₄ (s)  →  Pb (s) + SnSO₄ (s)

a. Chemical equation

   Zn (s) + HCl (aq)  →  ZnCl₂ (aq) + H₂ ( g)

   Balanced chemical equation

   Zn (s) + 2 HCl (aq)   ZnCl₂ (aq) + H₂ ( g)

b. Chemical equation

   Sn (s) + PbSO₄ (s)  →  Pb (s) + SnSO₄ (s)

   Balanced chemical equation

   Sn (s) + PbSO₄ (s)  →  Pb (s) + SnSO₄ (s)

c. Chemical equation

   Mg (s) + Cu(NO₃)₂ (aq)  →  Mg(NO₃)₂ (aq) + Cu (s)

   Balanced chemical equation

   Mg (s) + Cu(NO₃)₂ (aq)  →  Mg(NO₃)₂ (aq) + Cu (s)

d. Chemical equation

   Ag (s) + H₂SO₄ (aq)  →  Ag₂SO₄ (aq) + H₂ ( g)

   Balanced chemical equation

   2 Ag (s) + H₂SO₄ (aq)  →  Ag₂SO₄ (aq) + H₂ ( g)

e. Chemical equation

   Fe (s) + H₃PO₄ (aq)  →  Fe₃(PO₄)₂ (aq) + H₂ ( g)

   Balanced chemical equation

   3 Fe (s) + 2 H₃PO₄ (aq)  →  Fe₃(PO₄)₂ (aq) + 3 H₂ ( g)

f. Chemical equation

   Pb (s) + CH₃COOH (aq)  →  Pb(CH₃COO)₂ (s) + H₂ ( g)

   Balanced chemical equation

   Pb (s) + 2 CH₃COOH (aq)  →  Pb(CH₃COO)₂ (s) + H₂ ( g)

(Complete question)

write the equations for the following reactions. Make sure to balance the equation and include the states. a.) zinc metal and hydrochloric acid b) tin metal and lead sulfate c) magnesium metal and copper nitrate d)silver metal and sulfuric acid e) iron metal and phosphoric acid f) lead metal and acetic acid.

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11. Reactions of Ni(CO)4 in which phosphines or phosphites replace CO to give Ni(CO)3L occur at effectively the same rate for different phosphines or phosphites. Classify the substitution process and provide an explanation for your answer.

Answers

It is a dissociative substitution process.

Write the reaction mechanism

Step 1:

    Ni(CO)₄  →  Ni(CO)₃ + CO

Step 2:

    Ni(CO)₃ + CO + L →  [Ni(CO)₃L

In the first step of the reaction or in the rate-determining step nickel tetracarbonyl dissociates into nickel tricarbonyl and carbon mono oxide. As the first step is the rate-determining step in which dissociation occurs so it is a dissociative mechanism. In the second step phosphines and phosphites replace carbon monoxide at the same rate, in simple words this step is the same for different phosphines and phosphites. This is because it is an SN1 reaction so the second step does not affect the rate of reaction.

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if 4 ml of 0.0250 m cuso4 is diluted to 10.0 ml iwth pure water, what isthe molarity of copper ii sulfate in the diluted soltuion

Answers

The molarity of copper sulfate in the diluted solution if 4 ml of 0.0250 m cuso4 is diluted to 10.0 ml with pure water is 0.02M.

What is Molarity?

Molarity is defined as the ratio of moles of solute to the volume of solution.

Mathematically,

Molarity = moles of solute / volume of solution

Step 1 : Calculation of moles

Given,

Initial volume of CuSO4 = 4 ml = 4/1000 = 0.004 l

Molarity of CuSO4 = 0.0250 m

By substituting all the values, we get

0.025 = moles/ 0.004

moles = 0.025 × 0.004 = 0.000100 mol

Moles = 0.0001 mol.

Step 2 : Calculation of molarity of final volume

Total volume = 0.004 l + 10 ml

= 0.004 + 0.001 = 0.005 l

Moles of CuSO4 = 0.0001 mol

Molarity = 0.0001 / 0.005 = 0.02 M

Thus, we concluded that the molarity of copper sulfate in the diluted solution if 4 ml of 0.0250 m cuso4 is diluted to 10.0 ml with pure water is 0.02M.

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What is the name of the compound with the formula PI3 ?

Answers

Answer:

im pretty sure its Phosphorus triiodide

Which resource is a nonrenewable resource?
Responses

nuclear energy
nuclear energy

lumber
lumber

water power
water power

solar energy
solar energy

Answers

Nuclear energy is the answer.
Nuclear energy is a nonrenewable resource, renewable energy refers to energy from sources that are constantly replenished - like the water for hydroelectric dams that is topped up by the rain (option number 3), or the sunlight that reappears every day for solar panels (Orion number 4). Wood is a renewable resource, which means that additional resources can be grown to replace any wood that is cut down (option number 1). Because nuclear power uses up radioactive fuel, it is not renewable in the same way.
*it’s still debatable whether nuclear energy is a renewable energy or not (most believe it is) but I believe in this question it’s the right answer.

Why are the products of an exothermic reaction likely to be warmer than the reactants?.

Answers

If the energy produced in an exothermic reaction is released as heat, it results in a rise in temperature.

In exothermic reactions, more energy is launched while the bonds are shaped in the goods that are used to interrupt the bonds inside the reactants. Exothermic reactions are observed with the aid of a boom in the temperature of the reaction combination. If materials react and the temperature of the aggregate will increase, the reaction is exothermic.

A chemical response includes the breaking of bonds within the reactants and the forming of bonds in the goods. It takes power to break bonds. when strength is launched in an exothermic response, the temperature of the response mixture will increase. when electricity is absorbed in an endothermic reaction, the temperature decreases. you could monitor modifications in temperature by placing a thermometer inside the response aggregate.

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if you run the acetylation reaction (part 1) using the exact amounts described in the procedure, what is the limiting reagent?

Answers

A limiting reagent is one that is completely consumed during a reaction, hence restricting the product's yield. Compared to the limiting reagent, the other reactant(s) are present in excess.

The amount of product that could be produced based on the molar ratios is known as the theoretical yield. The amount that was actually retrieved is divided by the theoretical yield to determine the percent yield. For this amount to be expressed as a percentage, multiply it by 100.

What is Acetylation Reaction ?

Acetylation is an organic esterification reaction using acetic acid in organic chemistry. It gives a chemical molecule an acetyl group. These substances are known as acetate esters or just acetates. The opposing reaction, deacetylation, involves removing an acetyl group from a chemical molecule.

Deacetylation is the removal of an acetyl group from an organic chemical molecule, whereas acetylation is the introduction of an acetyl functional group (acetoxy group, CH3CO) into an organic chemical compound, specifically the substitution of the acetyl group for a hydrogen atom.

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Write the electron configurations for the following ions using spectroscopic ( spdf) and orbital box notation. (a) Li+ Full electron configuration = (do not use noble gas notation) Orbital box notation: 1s 2s 2p 3s 3p 4s (b) V2+ Noble gas electron configuration = Orbital box notation: 4s 3d

Answers

The electron configuration for the following ions using full electronic configuration method is :

a) Li⁺ = 1s²

b) V²⁺ = 1s² 2s² 2p⁶ 3s² 3p⁶ 3d³

1) the electronic configuration of  Li , the full for , the atomic number is 3 is :

Li = 1s² 2s¹

Li⁺ means one electrons is remove from the last shell.

Li⁺ = 1s²

b) the electronic configuration of Vanadium with atomic number 23 is :

V = 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d³

V²⁺ means 2 electrons are remove from the last shell of the atom.

V²⁺ = 1s² 2s² 2p⁶ 3s² 3p⁶ 3d³

Thus, The electron configuration for the following ions using full electronic configuration method is :

a) Li⁺ = 1s²

b) V²⁺ = 1s² 2s² 2p⁶ 3s² 3p⁶ 3d³

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draw all of the stereoisomers of 2-chloro-5-methylheptane. use a dash or wedge bond to indicate stereochemistry of substituents on asymmetric centers, where applicable.

Answers

The stereoisomers of 2-chloro-5-methyl heptane Iis in the 2 chloro 5 methyl hectare.

In stereochemistry, stereoisomerism, or spatial isomerism, is a form of isomerism wherein molecules have an equal molecular method and series of bonded atoms, however, fluctuate inside the 3-dimensional orientations in their atoms in area.

Stereoisomers are isomers that fluctuate inside the spatial arrangement of atoms, in preference to the order of atomic connectivity. one in every of their most exciting sort of isomers is the replicate-image stereoisomer, a non-superimposable set of molecules that are a replicate image of one another. Stereoisomers are isomeric molecules with identical chemical formulas but exceptional atomic arrangements. for this reason, they own similar chemical and physical homes.

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WILL MARK BRAINLIEST! 50 points! Can someone pls explain fully balancing chemical equations and how to do it. I’m so confused and I have a test on Friday.

Answers

Answer:

When you balance a chemical equation, you change (!!YOU MUST CHANGE IT DO NOT FORGET!!) coefficients. You never change subscripts. A coefficient is a whole number multiplier. To balance a chemical equation, you add these whole number multipliers (otherwise known as coefficients) to make sure that there are the same number of atoms on each side of the arrow.

For those of you who may not have a clear understand of what a coefficient is, here's a simple definition that you can look at. A coefficient can be simply explained a number or symbol by which another number or symbol (as a mathematical variable) is multiplied.

Also, here's a simple definition of a subscript! A subscript is a distinguishing symbol (such as a LETTER OR NUMERAL) written immediately above or below and to the right or left of another character.

Here's an example.

The equation that were trying to solve is:

Zn + 2HCl ---> ZnCl^2 + H^2

Answer:

There are two chlorines on the right but only one on the left, and the chlorine is in a single chemical species on each side. Put a 2 in front of the HCl on the left hand side.

Zn + 2HCl ---> ZnCl^2 + H^2

And if you look carefully, you will see that the equation is now balanced, with one Zn on each side, two hydrogens on each side and two chlorines on each side. Some examples can be rather easy!

Explanation:

Like always, don't have a good day, have a great day!

a sample of an ideal gas at 12.4 atm and 15.0 l is allowed to expand against a constant pressure 3.00 atm at a constant temperature. what is the work done (in kj) by the expanding gas?

Answers

A sample of an ideal gas at 12.4 atm and 15.0 l is allowed to expand against a constant pressure 3.00 atm at a constant temperature.  -13.2kJ  is the work done (in kj) by the expanding gas.

What is Constant temperature ?

Since the heat energy created during a state change is used up by altering the state of matter as well as by breaking many bonds or attractive forces, the temperature of any substance stays constant during the process.

Isothermal processes are defined as those that occur at constant temperature. There are many isothermal processes that are used often. At constant temperatures, the working fluid undergoes a change in phase during the boiling and condensing processes.

That's right; using Boyle's Law to determine V2 requires P2, which is based on the constant external pressure of 2.00 atm.

But after that, you must look for a job. w= P(ΔV)

Constant pressure = 3.00 atm

Since the gas is releasing energy, our pressure is negative in this situation.

Consequently, w= -2.00atm*(65L)= -130Latm

But because the inquiry requests working in kJ, it must first be transformed to J before kJ.

-13.169J/1000J/kJ = -130L/atm (101.3J/L/atm)

So the final answer is -13.2kJ .

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endotoxins are also known as endotoxins are also known as prostaglandins. lipid a. cytokines. interleukin-1.

Answers

Endotoxins are also known as: Lipid A. Because the lipid A portion of LPS is the cause of the endotoxin activity.

What are endotoxins and Lipid A?

Lipid A is an endotoxin component responsible for the gram-negative bacteria’s toxicity. The lipid A is the innermost lipopolysaccharide (LPS) that is mainly known as an endotoxin molecule. Endotoxin is a toxin from bacterial cells causing diseases as it disrupts humoral and cellular mediation systems as it disintegrates. Exposure to endotoxin can cause chest tightness, fever, cough, shortness of breath, and wheezing. Hence, endotoxins are in fact lipid A.

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for the following reaction, 6.47 grams of chlorine gas are mixed with excess sodium iodide. the reaction yields 7.11 grams of sodium chloride. chlorine (g) sodium iodide (s) sodium chloride (s) iodine (s) what is the theoretical yield of sodium chloride ? grams what is the percent yield of sodium chloride ?

Answers

5.323 gm is the theoretical yield and 133.5 is the percentage yield .

What is chemical reaction ?

Chemical reaction is a  process in which one or more substances are transformed into one or more other substances (products). Substances are either chemical elements or compounds. Chemical reactions rearrange the constituent atoms of reactants to produce different substances as products.

Chemical reactions are an integral part of technology, culture, and even life itself. Fuel combustion, iron smelting, glass and pottery making, beer brewing, and wine and cheese making are just a few examples. Activities involving chemical reactions that have been around for thousands of years. Chemical reactions are more in a variety of processes occurring in the Earth's geology, atmosphere and oceans, and in all biological systems.

Cl2 is limiting reagent , moles of cl2 = 0.091

moles of NaCl = 0.121

Theoretical yield of NaCl will be 0.091 moles = 0.091 moles X 58.5 g/mole = 5.3235 g

percentage yield = (7.11/5.3235) X 100 = 133 %

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For the following balanced equation, which has the highest coefficient?
4 H2 + 2 C → 2 CH4

Answers

H2 has the highest coefficient.

Considering a balanced equation,

4 H2+2 C

————>2 CH4

=> The hydrogen molecule's (H2) coefficient is 4.

=> The carbon (C) coefficient is 2.

=> Methane CH4 has a coefficient of 2.

As a result, H2 has the greatest coefficient of 4, which is.

H2 has the highest coefficient, hence.

Gases made of hydrogen have no color or smell. It is quickly set ablaze. It burns with a light blue, nearly undetectable flame once lit. They are lighter than air, the vapors. It ignites easily at a variety of vapor/air concentrations. While asphyxiating easily due to the displacement of oxygen in the air, hydrogen is not poisonous. 

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Write a thermochemical equation for the combution of ethanol (C 2 H 5 OH).
∆Hcomb = -1367 kJ/mol

Answers

Thermochemical C2H5OH(l) + 3 O2(g) → 2 CO2(g) + 3 H2O(l) ΔHcomb = -1367 kJ/mol

What is Thermochemistry?
The study of thermochemistry examines the heat energy involved in chemical reactions and/or phase transitions like melting and boiling. Energy can be released or absorbed during a reaction or phase change. Thermochemistry focuses on the heat-based energy transfer between a system and its surroundings. In order to forecast the quantities of reactants and products throughout a specific reaction, thermochemistry is helpful. It is also used to foretell whether a reaction will be spontaneous or non-spontaneous, favourable or unfavourable, in conjunction with entropy determinations. While exothermic reactions discharge heat, endothermic reactions absorb heat. The concepts of thermodynamics and the idea of energy in form of chemical bonds are combined in the field of thermochemistry.

Thermochemical is the relation between heat ,work, temperature and energy.

We can only use the energy quality when it's high,

It means that heat easily cover when the gallon is burn.

The energy of the fuel has ready converted into heat .

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A student dissolves 13. g of stilbene (C14H12) in 100. mL of a solvent with a density of 0.85 g/mL. The student notices that the volume of the solvent does not change when the stilbene dissolves in it.

Answers

The molarity and molality of the student's Stilbene solution is 0.72 M and 0.85 m.

Molarity is calculated by the formula - number of moles of solute ÷ volume of solution in litres

Molality is calculated by the formula - number of moles of solute ÷ mass of solvent in kilograms

Molar mass of Stilbene = 180 gram/mole

Number of moles = mass ÷ molar mass

Number of moles = 13 ÷ 180

Performing division

Number of moles = 0.072 mol

Volume of solution= 100 ml

As per the fact, 1000 ml = 1 l

Volume = 0.1 l

Mass of solvent = volume × density

Mass of solvent = 100 × 0.85

Mass of solvent = 85 gm

1000 gm = 1 kg

85 gm = 0.085 kg

Molarity = 0.072/0.1

Molarity = 0.72 M

Molality = 0.072/0.085

Molality = 0.847 m

Molality = 0.85 m

Thus, the molarity and molality is 0.72 M and 0.85 m.

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The complete question is attached in the diagram.

In naming a binary molecular compound,the number of atoms of each element present in the molecular is indicated by?

Answers

Using prefixes before the name of each element, the number of atoms of each element present in the molecular is indicated.

A prefix is placed before the name of the element when naming a binary compound to indicate how many atoms are present.For example:In carbon dioxide which is CO2  (prefix di- meaning 2)In carbon tetrachloride which is CCl4 (prefix tetra- meaning 4)  In N2O5, the name is dinitrogen pentoxide (prefix di- and pent- meaning 2 and 5)It depends on the number of atoms present in a compound.A binary compound is a compound composed of two elements.

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Diamond has a similar structure to silicon dioxide. How many covalent bonds does each carbon
atom have with other carbon atoms?

Answers

Answer:

Four covalent bonds.

Explanation:

In a diamond, each carbon atom forms four covalent bonds with four other carbon atoms. In a diamond, each carbon shares electrons with four other carbon atoms.

Carbon can form single, double, or even triple bonds with other carbon atoms. In a single bond, two carbon atoms share one pair of electrons. In a double bond, they share two pairs of electrons, and in a triple bond, they share three pairs of electrons.

what is the relationship between the kinetic energy of particles and the forces of attraction between particles

Answers

The relationship between the kinetic energy of particles and the forces of attraction between particles is that if average kinetic energy increases than  the force of attraction then particles will not condensed to form liquid or solid.

If the kinetic energy less than force of attraction between the particle then the particles will tends to form solid or liquid.  the kinetic energy is directly proportional to distance between the particles. The distance between the particles is inversely proportional to  the intermolecular forces.

Thus, The relationship between the kinetic energy of particles and the forces of attraction between particles is that if average kinetic energy increases than  the force of attraction then particles will not condensed to form liquid or solid.

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Under what conditions of temperature and pressure would you expect gases to obey the ideal-gas equation?.

Answers

Gases obey the ideal-gas law at high temperatures and low pressures.

What is the ideal gas law?

The equation of state for a hypothetical ideal gas is known as the ideal gas law, sometimes known as the general gas equation. Although it has some restrictions, it is a good approximation of the behavior of numerous gases under various circumstances.

PV = nRT

where,

P = pressure

V = volume

n = amount of substance

R = ideal gas constant

T = temperature

Hence, the gases are expected to obey the ideal gas equation at low pressures and high temperatures.

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