Classify each chemical compound 1. H2SO3 Ionic or molecular 2. MgF2 Ionic or molecular 3. N2O5 Ionic or molecular

Answers

Answer 1

H2SO3 is an acid because it can donate two H+ ions. Every bond is covalent. It is therefore a molecular substance. Magnesium fluoride is an example of an ionic compound, which is made up of a cation and an anion. Ionic N2O5 is a solid.

What is an example of a chemical compound?

H2O molecules are found in water, which has two hydrogen atoms for every one oxygen atom in its chemical composition. A chemical compound called sodium chloride is created when sodium (Na) and chlorine (Cl) are combined in a 1:1 ratio.

An ordinary compound is what?

Examples of typical ionic compounds include: sodium chloride, or NaCl (table salt) sodium bicarbonate, or NaHCO3 (baking soda) sodium carbonate, or Na2CO3 (washing soda) Magnesium sulfate, or MgSO4 (epsom salt).

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Related Questions

which will show maximum depression in freezing point when concentration is 0.1 M?
A. NaCl
B. Urea
C. Glucose
D. K2SO4

Answers

K2SO4 has the most ions out of the options, which means its freezing point will degrade the most. A collective attribute that depends on the quantity of particles is the depression in freezing point.

How do melting and freezing points differ?

The temperature at which a material becomes liquid or solid is known as the melting or freezing point of that substance. Various solids have various melting points.

What in chemistry is the freezing point?

Definition of the freezing point The temperature at which a liquid, under atmospheric pressure, transitions from a liquid to a solid is known as the freezing point. Both the solid and liquid states coexist at the freezing point because these two phases, liquid and solid, are in balance there.

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how many moles of ammonia are in 800. ml of a 1.25 m aqueous ammonia solution?

Answers

Therefore, 800ml of a 1.25m aqueous ammonia solution contains 1000moles of ammonia.

What is aqueous ammonia solution?

Ammonium hydroxide appears as an aqueous solution with no color. Ammonia concentrations might reach as high as 30%. The eyes become irritated by the solution's ammonia fumes. Ammonium hydroxide is created when ammonia is dissolved in water. A solution of ammonia in water is referred to as ammonia solution, ammonia water, ammonium hydroxide, aqua ammonia, aqueous ammonia, or ammonia. The symbols for it are NH3 and NH4.

How do you make aqueous ammonia solution and why it is used for?

Making an Aqueous Ammonia Solution: Ammonia is dissolved in water to create an aqueous solution. Ammonia dissolves in water at a relatively rapid pace, making water back suction a possibility. Rubber tubing is used to link a funnel to the delivery tube's exterior end in order to prevent this.

Ammonia produced by industry is used as fertilizer in agriculture to the tune of 80%. In addition to these uses, ammonia is made into plastics, explosives, textiles, pesticides, dyes, and other chemicals. Additionally, it is used to clean water sources.

Briefing:

Concentration (C) = number of moles (n) / volume (v)

number of moles (n) = concentration × volume

Concentration = 1.25M

Volume =800 L = 800dm³

n = 1.25 × 800

n = 1000 moles

There are 1000 moles of ammonia in the solution.

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In nuclear fission reactions, what causes the atom's nucleus to become
unstable?
A. Control rods being inserted into the nucleus
O B. Extreme temperatures released by fuel rods
O C. The absorption of a free-moving neutron by the atom's nucleus
OD. The nucleus absorbing freely moving protons

Answers

C. The absorption of a free-moving neutron by the atom's nucleus

In a nuclear fission reaction, the nucleus of an atom becomes unstable when it absorbs a free-moving neutron. This can cause the nucleus to break apart into two or smaller fragments, releasing a large amount of energy in the process. Other factors, such as the temperature and pressure of the surrounding environment, can also affect the stability of the nucleus, but the absorption of a neutron is typically the primary cause of instability in a nuclear fission reaction. Control rods, which are used to regulate the rate of the reaction, do not directly cause the nucleus to become unstable, and the absorption of protons by the nucleus is not typically a factor in nuclear fission reactions.

what is the molarity of a koh solution if 24.6 ml neutralizes 44.0 ml of a 0.211 m hcl?

Answers

The molarity of a KOH solution if 24.6 mL of it neutralizes 44.0 mL of a 0.211 M HCl would be 0.38 M.

Stoichiometric problem

KOH reacts with HCl to produce salt and water according to the following balanced equation:

[tex]KOH + HCl --- > KCl + H_2O[/tex]

From the balanced equation of reaction, the ratio of KOH to HCl is 1:1. In other words, for every 1 mol of KOH that reacts, 1 mole of HCl is required for complete neutralization.

Recall that, mole = molarity x volume.

Thus, the mole of 44.6 mL, 0.211 M HCl would be:

44.6/1000 x 0.211 = 0.0094 mol

Note: 1 mL = 0.001 L, thus, 44.6 mL would be equivalent to 44.6/1000 L

Going by the stoichiometric mole ratio which is 1:1, the equivalent mole of the KOH would also be 0.0094 mol.

Also, molarity = mol/volume

                       = 0.0094/0.0246

                       = 0.38 M

In other words, the molarity of the KOH solution needed to neutralize 44.0 mL, 0.211 M HCl would be 0.38 M.

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A scientist measures the standard enthalpy change for the following reaction to be -14.1 kJ: 3Fe2O3(s) + H2(g)2Fe3O4(s) + H2O(g) Based on this value and the standard enthalpies of formation for the other substances, the standard enthalpy of formation of H2O(g) is kJ/mol.
b. A scientist measures the standard enthalpy change for the following reaction to be -582.2 kJ : H2CO(g) + O2(g)CO2(g) + H2O(l) Based on this value and the standard enthalpies of formation for the other substances, the standard enthalpy of formation of CO2(g) is kJ/mol.

Answers

(a)The standard enthalpy of formation of H2O(g) is -249.3 kJ/mol

(b)The standard enthalpy of formation of CO2 is -187.25 kJ/mol

ΔHrxn = ΔHf(products) - ΔHf(reactants)

(a) Standard enthalpy of formation of the following is:-

Fe2O3(s) = -824 kJ/mol

H2(g) = 0 kJ/mol

Fe3O4(s) = -1118.4 kJ/mol

H2O(g)= Let it be x kJ/mol

Putting these values in the given equations, we get:-

-14.1 = [ 2(-1118.4) + 1(x) ] - [ 3(-824) + 1(0) ]

-14.1 = (-2236.8 + x) - (-2472)

-14.1 = -2236.8 + x + 2472

-14.1 = x + 235.2

x = -14.1- 235.2

x = -249.3

Hence, standard enthalpy of formation of H20(g) is -249.3 kJ/mol

(b) Standard enthalpy of formation of the following is:-

H2CO(g) = -109.15 kJ/mol

02(g) = 0

CO2(g) = Let it be x kJ/mol

H2O(l) = −285.8 kJ/mol

Putting these values in the given equations, we get:-

-582.2  = [ 1(x) + 1(−285.8) ] - [ 1(-109.15) + 1(0) ]

-582.2 = x −285.8 + 109.15

x = -582.2 + 285.8 + 109.15

x = -187.25

Hence, standard enthalpy of formation of CO2 is -187.25 kJ/mol

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a carbon atom with tetrahedral geometry is surrounded by multiple choice question. two atoms and no lone pairs of electrons. three atoms and no lone pairs of electrons. three atoms and one lone pair of electrons. four atoms and no lone pairs of electrons.

Answers

Option (d) is correct. Because in tetrahedral gheomtry there forming 4 bonds and must be all are bond pairs and no lone pairs of electrons.

A carbon atom with tetrahedral geometry there are 4 bond pairs of electrons. In a tetrahedral molecular geometry, a central atom is located at the center with four substituents that are located at the corners of a tetrahedron. Because it is forming 4 bonds, these must all be bonding pairs. Four electron pairs arrange themselves in space in what is called a tetrahedral arrangement. This molecule is made up of 4 equally spaced  sp3 hybrid orbitals forming bond angles of 109.5o. Some of these molecules include methane (CH4), phosphate (PO4), Ammonium(NO4).

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Choose the correct names of all possible isomers of dimethylcyclobutane molecule. Select all that apply.
O 1,1-dimethylcyclobutane
O 2,3-dimethylcyclobutane
O 1,2-dimethylcyclobutane
O 2,2-dimethylcyclobutane
O 1,3-dimethylcyclobutane
O 1,4-dimethylcyclobutane

Answers

1,1 1,2 and 1,3 are all possible isomers of dimethylcyclobutane.

the specific heat capacity of silver is 0.24j/g oc . a. calculate the energy required to raise the temperature of from 0 oc to 25oc.

Answers

900J energy is required to raise the temperature of from 273K to 298K.

Knowing the mass of the substance, the change in the system's temperature, and the substance's specific heat capacity will allow you to compute the quantity of heat transmitted in a given system.

Given in the question:

Specific heat capacity, c = 0.24J/[tex]g^{0}[/tex]c

Mass, m = 150.0g

initial temperature, [tex]T_{1}[/tex] = 273K = [tex]0^{0}C[/tex]

Final temperature, [tex]T_{2}[/tex] = 298K = [tex]25^{0}C[/tex]

The heat absorbed (q) by the system is calculated as follows:

=> [tex]q = cm(T_{2}-T_{1})[/tex]

=> [tex]q = 0.24J/g^{0}C \times 150.0g(25^{0}C-0^{0}C)[/tex]

=> [tex]q = 900J[/tex]

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Two lewis structures can be drawn for the molecule formamide HCONH2, with the true structure being a resonance hybrid of the two. Draw both Lewis Structures, then propose a bonding scheme for the resonance hybrid. Explain why the C-N bond doesn't rotate freely.

Answers

When a single Lewis structure is insufficient to properly explain the bonding, resonance structures are used. A resonance hybrid, which depicts the total delocalization of electrons inside the molecule, is defined as the mixture of possible resonance structures.

As shown in the diagram below, resonance delocalization limits rotation around the C-N bond in the peptide bond. The carbonyl group's lone pairs on nitrogen can be delocalized, giving the C-N bond a partial double bond structure. Rotation is hampered by this double bond nature.

Can CN bonds rotate freely?

Most carbon-carbon single bonds have an energy barrier that prevents rotation, which is typically in the range of 3-5 kcal/mol. These connections can freely rotate due to the low barrier.

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What is the correct name for HF (aq)?
a. monohydrogen fluoride
b. hydrofluoric acid
c. fluoric acid
d. hydrogen fluorate
e. hydrofluorate acid

Answers

The correct name for HF (aq) is Hydrofluoric acid which means option b is the correct choice.

Hydrofluoric acid is a solution of hydrogen fluoride in water. Solutions of HF are colorless, acidic and distinctly corrosive. It is used to make maximum fluorine-containing compounds; examples consist of the usually used pharmaceutical antidepressant medicine fluoxetine and the fabric PTFE. The nature of this acid is highly corrosive due the hydrogen ions of the acid and it is toxic in nature due to the presence of flouride ions. Hydrofluoric acid or Hydrogen Fluoride (HF) is deadly if inhaled, if swallowed, or in touch with pores and skin. It reasons intense pores and skin burns and eye damage.

Therefore, option b is the correct choice.

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Draw the electron distribution diagram for water: Begin with 1 central water molecule. Show the chemistry of each element within the central water molecule (all electron orbits, lone pair electrons, type of chemical bond, polarity/charge, and correct shape). What type of bond creates a water molecule? What type of bond holds water molecule to another water molecule? Next; draw the correct number of other water molecules bonding to thc central water molecule How many other water molecules bond to a central molecule of water?'

Answers

Although the water molecule incorporates no internet electric powered fee, its 8 electrons aren't disbursed uniformly; there may be barely greater terrible fee (purple) on the oxygen cease of the molecule, and a compensating tremendous fee (green) on the hydrogen end.

Each hydrogen atom is covalently bonded to the oxygen through a shared pair of electrons. Oxygen additionally has unshared pairs of electrons. Thus there are four pairs of electrons surrounding the oxygen atom, pairs concerned in covalent bonds with hydrogen, and unshared pairs on the alternative aspect of the oxygen atom. The one and most effective electron ring across the nucleus of every hydrogen atom has most effective one electron.

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What is the oxidation number sulfur in H2S?

Answers

The oxidation number sulfur in H₂S is -2.

A compound's total number of oxidations must be zero.

The two hydrogen atoms in the chemical hydrogen sulfide, H₂S, each have an oxidation number of +1, making a total of +2. As a result, the compound's sulfur has an oxidation number of -2, and the total number of oxidations is 0.

Assume that the sulfur atom in H₂S has an oxidation number of x.

S be x.

Now,

2+x=0

⇒x=−2

What is oxidation number?

The total number of electrons that an atom either receives or loses in order to create a chemical connection with another atom is known as the oxidation number, also known as the oxidation state.

Depending on whether we are taking into account the electronegativity of the atoms or not, these phrases can occasionally have a distinct meaning. Coordination chemistry commonly makes use of the phrase "oxidation number."

What distinguishes an oxidation number from an oxidation state?

In contrast to the oxidation state, which indicates how oxidised an atom is in a molecule, the oxidation number describes the charge that the core metal atom will retain once all ligands have been removed.

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light of wavelength 121.6 nm is emitted by a hydrogen atom. what are the (a) higher quantum number and (b) lower quantum number of the transition producing this emission? (c) what is the name of the series that includes the transition?

Answers

(a) higher quantum number , n2 = 2

(b) lower quantum number of the transition producing this emission, n1 = 1

(c)  the name of the series that includes the transition, n = 2 to n = 1

Given that :

wavelength of light = 121.6 nm

wave number = 1 / λ

                       = 1 / 121.6 × 10⁻⁹ m

                      = 8.22 × 10⁶ m⁻¹

the Rydberg equation is given as :

1 / λ = R ( 1 / n1² - 1 / n2² )

n1 =

n2 = 2, 3, 4...

1 / λ = R ( 1 / n1² - 1 / n2² )

1 / λ  = 1.097 × 10⁷ ( 1 / 1 - 1 / 2² )

1 / λ = 8.22 × 10⁶ m⁻¹

it is clear from the above equation , n1 = 1 and n2 = 2

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increasing permeability of the membrane to potassium will have what effect on the membrane potential?

Answers

The membrane would become more adverse as a result.The membrane would become more negative if the membrane's potassium permeability increased.

What occurs when a potassium-permeable membrane is more permeable?

Similar to this, the gradient in sodium ion concentration tends to encourage their entry into the cell.However, potassium ions are significantly more able to pass through the cell membrane than sodium ions are.As a result, sodium ions diffuse into the cytoplasm more slowly than potassium ions.

What changes to the membrane permeability when the sodium or potassium permeability is increased?

When sodium permeability rises to a point that sodium entrance outweighs potassium departure, depolarization turns into a self-sustaining process, or an action potential forms, the barrier cell membrane voltage is attained.

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How many protons, electrons and neutrons are in 34S2-? Number of protons ______________ Number of electrons _____________ Number of neutrons _____________

Answers

In a 34S2-, the number of protons is 16, number of electrons is 18, and number of neutrons is 18.

Sulphur 34 is the stable isotope of sulfur. Sulfur has an atomic number of 16 and relative atomic mass of 34. Atomic number refers to the number of protons found in the nucleus of every atom of that element. Hence, the number of protons would be 16 for Sulphur 34. Atomic mass refers to number of protons and neutrons in the nucleus of the atom. Hence, the number of neutrons would be 18 for Sulfur 34.  The number of electrons in a neutral atom is equal to the number of protons. However, in the give ion, 34S2- which is negatively charged to negative two implying that it has two extra electrons, hence the number of electrons is 18.

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Predict the shape, state the hybridization of the central atom, and give the ideal bond angle(s) and any expected deviations for: (a) BrO3-, (b) AsCl4-, (c) SeO42-, (d) BiF52-, (e) SbF4+, (f) A1f63-, (g) IF4-.

Answers

a) SbF4+ Shape: tetrahedral shape, Hybridization: sp3 hybridization, Ideal bond angle(s): 109.5,  b) AsC14, Shape: seesaw shape, Hybridization:sp3d hybridization Ideal bond angle(s): 120, 90,180 , C) Se042, Shape: tetrahedral shape, Hybridization:sp3 hybridization, Ideal bond angle(s): 109.5, Deviation from ideal angle(s): < 109.5, d) BiF52-, Shape:square pyramidal shape, Hybridization:sp3d2 hybridization, Ideal bond angle(s): 90 Deviation from ideal angle(s): < 90, (e) BrO3-, Shape:trigonal pyramidal shape, Hybridization:sp3 hybridization, Ideal bond angle(s): bond angle 109.5 Deviation from ideal angle(s): bond angle <109.5

The process of hybridization known as sp3 hybridization involves the mixing and recasting of the 1s and 3p orbitals of the same element to create new hybrid orbitals with the same energy, symmetry, and fixed orientation in space. The molecule of methane is one example.  One 2s orbital and three 2p orbitals are mixed to produce four hybrid orbitals with similar properties, which is referred to as "sp3 hybridization." The sp3 hybridization of an atom requires the presence of three p orbitals in addition to one s orbital.

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What factors qualify a compound as a salt? Specify which of the following compounds are salts:CH 4,NaF,NaOH,CaO,BaSO4,HNO3,NH3,KBr.

Answers

An ionic compound consisting of a cation of a base and an anion of an acid can be called a salt. Base is a proton (H+) acceptor.

acid ionizes in water, releasing one negative ion other than hydrogen ions and hydroxide (OH-). NaF, BaSO4, and KBr are salts.

Salts are ionic compounds composed of a cation from a base and an anion from an acid.

What is salt?

In chemistry, a salt is a compound composed of an ionic arrangement of positively charged cations and negatively charged anions, resulting in a compound with no net charge. A common example is table salt, which contains positively charged sodium ions and negatively charged chloride ions.

The ions in salt compounds can be either inorganic, such as chloride (Cl-), or organic, such as acetate (CH3COO-). Each ion is either a monoatomic like fluoride (F-) or a polyatomic like sulfate (SO2-4).

Therefore, An ionic compound consisting of a cation of a base and an anion of an acid can be called a salt. Base is a proton (H+) acceptor.

acid ionizes in water, releasing one negative ion other than hydrogen ions and hydroxide (OH-). NaF, BaSO4, and KBr are salts.

Salts are ionic compounds composed of a cation from a base and an anion from an acid.

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Why is FeCl3 a Lewis acid?

Answers

FeCl3 is a Lewis acid because it has an empty d orbital that can accept electrons from a Lewis base. The empty d orbital allows FeCl3 to form a coordinate covalent bond with a Lewis base, forming a Lewis acid-base complex. This empty d orbital is not filled by the three chloride ions, making it an excellent Lewis acid.

In the Lewis theory of acid-base reactions, bases donate electron pairs and acids gain electron pairs. Therefore, a Lewis acid is any substance that: B. H+ ions that can accept unbonded electron pairs. In other words, Lewis acids are electron pair acceptors. A Lewis base is a substance that: OH ions that can donate unbonded electron pairs. Therefore, Lewis bases are electron pair donors.

An advantage of Lewis theory is how it complements models of redox reactions. Redox reactions involve the transfer of electrons from one atom to another with a net change in the oxidation number of one or more atoms.

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butanoic acid has a partition coefficient of 3.0 (favoring benzene) when distributed between water and benzene. find the formal concentration of butanoic acid in each phase when 100.0 ml of 0.10 m aqueous butanoic acid is extracted with 25.0 ml of benzene at a ph of 4.00.

Answers

The formal concentration of butanoic acid in water phase = 0.060 M.

The formal concentration of butanoic acid in benzene phase = 0.0157 M.

given that :

volume of aqueous phase = 100 mL

volume of benzene = 25 mL

pH = 4

partition coefficient = 3

pH = - log [H⁺]

[H⁺]  =  10⁻⁴ M

distribution coefficient is given as :

D = K [H⁺] /  [H⁺] + Ka

Ka for the butanoic acid is 1.52 × 10⁻⁵

D = 93 × 10⁻⁴ / 10⁻⁴ +) 1.52 × 10⁻⁵

D = 2.60

fraction of the butanoic acid in water phase :

q = v1 / v1 + Dv2

q = 100 / 165

q = 0.60

concentration of the water phase = 0.60 × 0.10 M

                                                        = 0.060 M

moles of benzoic acid = (0.10 × 100) / 100

                                     = 0.010 mol

mole fraction fraction of benzene phase :

1 - 0.060 = 0.394 mol

moles in benzene phase = 0.394 × 0.01 = 0.0039 mol

concentration = 0.0039 / 0.025

                       = 0.157 M

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what type of intermolecular force is found between a) f2 and cl2 ? London dispersion force b) water molecules ? hydrogen bonds ?

Answers

London dispersion forces are the only intermolecular forces that exist between fluorine and chlorine because they are both non-polar covalent compounds.

What produces the dispersion forces in London?

The coulombic interaction between instantaneous dipoles lead to London dispersion forces.All molecules (and atoms) exhibit dispersion forces, which are typically higher for heavier, more polarizable, and molecules with wider area areas.

By London forces, what do you mean?

The intermolecular forces or attraction that hold molecules together are known as London forces.Although they are a vander waal's force, they are the only one found in substances without polar dipole molecules.

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hich of the following excited state electron configurations of C would require the longest wavelength of light to produce? O 15²2s²2p²45? 1s22s22p13p1 O1s22s22p13s1 1s22s22p2

Answers

For such excited state 1s22s22p13s1, the greatest wavelength is necessary. The Bohr model proposes that energy is absorbed by an atom, which causes it to jump from one energy level to another.

What does a Bohr model simply mean?

A structural representation of an atom is the Bohr Model. Niels Bohr, a physicist, put forth the hypothesis in 1913. According to this idea, electrons orbit the atomic nucleus within an atom in discrete circular shells. The atomic planetary model is another name for the model.

What constitutes Bohr's model's fundamental ideas?

Answer: 1) Elections move in circular, constant-energy orbits around the nucleus. 2) The only stable electron orbits are those in which h/2Pi is a multiple of the electron's angular momentum. 3) An electron moving of one orbital to another causes a photon to be either emitted or absorbed.

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You are going to carry out a chemical reaction in which you need 16 g of oxygen for every 7.0 g of
nitrogen that will be used. If you have 0.554 kg of oxygen, how many milligrams of nitrogen do you
need?

Answers

Answer: To solve this problem, we can use the given information to set up a proportion. The ratio of oxygen to nitrogen in the reaction is 16 g : 7.0 g, or 8 : 3.5. We can set up a proportion using these ratios as follows:

(3.5) x = (8) 0.554 kg

We can solve this proportion by cross multiplying to find the value of x, which is the amount of nitrogen needed:

3.5 * 0.554 kg = 8 * x

1.947 kg = 8 * x

x = 0.24125 kg

We can convert this value to milligrams by multiplying it by 1,000,000:

x = 0.24125 kg * 1,000,000 mg/kg

= 241,250 mg

Therefore, the amount of nitrogen needed for the chemical reaction is approximately 241,250 milligrams.

Draw tne electrcn configuration for a neutral atom of cobalt:

Answers

The electronic configuration of cobalt 27 is 1s2 2s2 2p6 3s2 3p6 4s2 3d7  

That is here. 1s 2s. 2p. 3s. 3P. 4S, 3d. So, let's plot this against energy, so here it is lowest is 1, so it is 1 as 2 or later we can denote the electrons here. It is 2s the. It is 2p, 3s, there will be 3p, and here is 3 d, and here it is for p like this, it will go and let's write the electrons here. It is 1s2. So it is 1s2 2s2. Then 2p6, so here will be 3s2, then 3p6, then 4s2, then 3d7,

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hat are the properties of solids? check all that apply. what are the properties of solids?check all that apply. high densities in comparison to gases indefinite volume definite volume low densities in comparison to gases indefinite shape definite shape may be crystalline or amorphous equal densities in comparison to gases

Answers

A solid's volume can be determined. Solids are difficult to compress. Solids don't take on the shape of their container; instead, they have a distinct shape.

What characteristics do solids have?

Structure stiffness and resistance to changes in volume or shape define solids. It is impossible for a solid object to flow into the shape of its container.

What are the solids' qualities, and which ones apply?

Has a solid shape that can not shift readily and can change shape to fit a container is composed of ions and electrons that are in motion. is more easily squeezed than other states has particles that can move but not jiggle has particles with some degree of mobility will increase until it fully fills a closed container.

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Now that we have a balanced chemical
equation, we can use it to answer questions.
2C₂H6 + 702 → 4CO₂ + 6H₂O
Let's say you asked how many moles of O2
are needed to react with 24 moles of C₂H6.
Let's begin by setting up this problem. What
would you put in the green box?
24 moles C₂H6 | [?] moles 0₂
2 moles C₂H6

Answers

To react with Ethane, we need 84 moles of oxygen are required.

What are moles?Moles are the smallest units of measurement for small entities such as molecules, atoms, or particles.A sample of 12 grams of carbon is equal to one mole, and we know that there are 12 numbers in a dozen. As a result, we compared mole to a dozen.

The reaction is depicted as follows:

2C₂H₆ + 7O₂ → 4CO₂ + 6H₂O

According to the reaction, the mole ratio of ethane (C₂H₆) to oxygen (O₂) is 2:7.

We have to find the moles of oxygen.

Given that 24 moles of ethane.

24 x 7/2

= 84

As a result, it takes 84 moles of oxygen to react with 24 moles of ethane.

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how would a calculated molar mass be affected if you take into account the volume of gas particles

Answers

When measured at the same temperature and pressure, the molar volumes of all gases are the same. Different gases will have different molar masses, though. This implies that the densities of various gases will vary (different masses per unit volume).

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

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n-chloromethylamine hydrogen bonding

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N-Chloromethylamine is the name given to the molecule. The provided molecule contains the highly electronegative components nitrogen and chlorine, as can be seen. Hydrogen bonding is not visible because of the enormous size of chlorine, whereas it is visible because of the lower size of nitrogen.

Because it is too big, the chlorine atom in chloromethane cannot form hydrogen bonds. In chloromethane, the hydrogen atoms are not sufficiently electropositive and are not linked to an electronegative atom. As a result, chloromethane and water molecules are unable to establish hydrogen bonds.

An abundant biopolymer called chitin stabilises the exoskeleton of insects and gives plants their shape. These intermolecular connections, which connect the polymer strands in a complicated network of hydrogen bonds, are the source of the material's macroscopic characteristics.

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hbro4 ionic or molecular

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Please note that all of these elements are non-metals: h, b, r, o, i.As a result, it will be a molecular molecule, and this first component just so happens being an acid.

How can you tell if something is molecular or ionic?

Ionic bonding will typically be present in compounds where a metal is bound to either a quasi or a semi-metal.

Why is HBr a molecule rather than an ion?

Because the electronegativity of the bromine atom is significantly higher than that of the hydrogen atom, electrons are (somewhat) more attracted to it.

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order each of the sets of compounds with respect to sn2 reactivity (1 = fastest).

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In set 1 Thus the order of reactivity is C > B > A. in set 2Thus the order of reactivity is C > A > B.order each of the sets of compounds with respect to sn2 reactivity.

In Set 1 all the compounds have same carbon skeleton. Thus the difference in reactivity of the substrates is due to difference in the leaving groups. A substrate with a better leaving group is a better substrate for SN2 reaction when the carbon skeleton is identical. The order of the leaving group character is OTs > Br > OH.  Thus the order of reactivity is C > B > A. In Set 2 all the compounds have same leaving group. Thus the difference in reactivity of the substrates is due to difference in the carbon skeletons. A substrate with an easily accesible carbon skeleton is a better substrate for SN2 reaction when the leaving group is identical. The order of the reactivity of alkyl halides towards SN2 reaction is Methyl > 1o > 2o > 3o.  Thus the order of reactivity is C > A > B.

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CK12 Extra practice. Mol conversions 1. You have 19.7 grams of a material and wonder how many moles were formed. Your friend tells you to multiply the mass by grams/mole. Is your friend correct? Explain the answer using dimensional analysis.

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Use the grams to moles formula to calculate the number of moles, n, of a substance with a given mass, m, (in grams) accurately. n = m / M, where M is the substance's molar mass

What does a mole of 1 gram mean?

The number of atoms, molecules, or ions (or any other entity) in a substance is measured in gram moles. 6.022 x 1023 is what it is in all entities. It is equivalent to 6.022 x 1023 molecules of H 2 S or, in the case of an atom, 6.022 x 1023 atoms (in case of a molecule )

What is a mole, simply put?

In chemistry, a mole, sometimes spelled mol, is a common scientific measurement unit for huge amounts of little things.

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