Cold packs, whose temperatures are lowered when ammonium nitrate dissolves in water, are carried by athletic trainers when transporting ice is not possible. Which of the following is true of this reaction?
Group of answer choices
ΔH = 0, since cold packs are sealed
ΔH > 0, process is endothermic
ΔH > 0, process is exothermic
ΔH < 0, process is exothermic
ΔH < 0, process is endothermic

Answers

Answer 1

When sports trainers transfer cold packs, which have temperatures dropped when ammonium nitrate dissolves in water when ice cannot be transported, the process is endothermic (Î"H > 0).

For what is nitrate renowned?

For the growth of plants in particular, and therefore for other species that get their nourishment from plants, they serve as a significant supply of nitrogen. Nitrates are used for a number of things, such as fertilizers, food preservatives, drugs, and explosives.

Why do nitrates cause toxicity?

Nitrate poisoning may be dangerous, especially for infants. Methemoglobinemia may result from excessive nitrate consumption, which can alter how blood delivers oxygen (also known as blue baby syndrome). The risk of developing methemoglobinemia is higher in infants who are bottle-fed and under six months old.

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Related Questions

The strategy of using an alkene intermediate in a two-step process to convert one functional group into another called a functional group interconversion) can apply to a wide variety of transformations. Identify the reagents you would use to accomplish the following functional group interconversion

Answers

We can see conversion of an alcohol to an alkane.

Reagents needed:

1. Sodium or Potassium Hydride.

2. Hydrogen Gas.

What is  a functional group?

A functional group is a group of atoms or molecules within a larger molecule that is responsible for the molecule's chemical and physical properties. Functional groups have specific chemical characteristics, such as polarity, reactivity, and solubility, that give the molecule its unique properties.

What is functional group interconversion?

Functional group interconversion is a type of chemical reaction in which one functional group is converted into another functional group. This type of reaction is used to modify the properties of a molecule, such as its reactivity, solubility, and stability. Examples of functional group interconversion include the conversion of an alcohol to an aldehyde, an aldehyde to a ketone, and an ester to an amide.

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which indicator of those you used would you expect to be useful in determining the ph of a 4.0 x 10^-4

Answers

The best indicator for the pH of 4 x 10⁻⁴ M HCl would be bromocresol purple which is yellow at the pH of HCl = 3.4.

Ka for acetic acid = [H₃O⁺][A⁻]/[HA]

knowing pH,

pH = -log[H₃O⁺]

[H₃O⁺] = [A⁻]

and, [HA] concentration we can determine Ka for each solution

for basic salts as

Na₂CO₃, the net ionic equation would be,

(CO₃)₂⁻ + H₂O <==> HCO₃⁻ + OH⁻

NaHCO3, the net ionic equation would be,

HCO₃⁻ + H₂O <==> H₂CO₃ + OH⁻

similarly, other salts which give OH- ion in solution is basic and the ones that give H₃O⁺ in solution are acidic in nature,

acidic salts like NH₄⁺

NH₄⁺ + H₂O <=> NH₃ + H₃O⁺

Hence, the best indicator for the pH of 4 x 10⁻⁴ M HCl would be bromocresol purple which is yellow at the pH of HCl = 3.4.

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if 5 mol no2 react with 1 mol h2o, how many moles of the excess reactant remains when the reaction is complete?

Answers

If 5 mole no2 react with 1 mole h2o, then 4  moles of the excess reactant (N2O) remains when the reaction is complete

N2O + H2O → 2 HNO

1 mole of N2O reacts with 1 mole of H2O.

if 5 mole N2O reacts with 1  mole of H2O, then 4 mole of mole N2O remains, thus concludes  N2O is excess reactant.

A balanced chemical equation's molar amounts of the reactants and products are displayed. In the real world, reactants are rarely combined in precisely the right ratio. One reactant will completely exhaust before the others. A reaction's limiting reactant is the one that is used up first. Once the other reactants have been consumed to some extent, the remaining amount is considered "in excess."

To determine which reactant is the limiting one, determine the volume of the product that each reactant produced. The reactant with the lowest product yield is the limiting reactant.

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after calculating the amount of reactant b required to completely react with a, then comparing that amount with the amount of b available, one can determine the group of answer choices pathway of the reaction. energy released in the reaction. rate of the reaction. limiting reactant.

Answers

The limiting reactant is the answer. The limiting reactant is the reactant that is completely used up in the reaction and limits how much product can be formed.

What is reactant?
A reagent, also known as an analytical reagent, is a substance as well as compound that is added to a system in chemistry to either initiate a chemical reaction or determine whether one has already taken place. [1] Although the terms reactant as well as reagent are frequently used interchangeably, reactant refers to a substance that is consumed during a chemical reaction. Despite being part of the reaction mechanism, solvents are not typically referred to as reactants. Catalysts are not reactants because they are not used up in the reaction. The reactants in biochemistry are frequently referred to as substrates, particularly when enzymes are involved in the reaction.

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How does a balanced chemical equation demonstrate the Law of Conservation of Mass?


(1 point)

A. It shows that all compounds remain bonded after the reaction

B. It shows that no atoms have been gained or lost during the reaction

C. It shows that the properties of the elements stay the same after the reaction

D. It shows that only physical changes follow the Law of Conservation of Mass

Thank you If you help!​

Answers

Matter cannot be created nor destroyed, so my best answer for the choices that you have would be B. It shows that no atoms have been gained (created) nor lost (destroyed) during the reaction ♥️

the electrons in the ________ links remain located between two atoms. electrons in ________ bonds can be relocated between more than two atoms.

Answers

the electrons in the chemical bond links remain located between two atoms. electrons in covalent bonds can be relocated between more than two atoms.

What are covalent bond ?

The most significant type of bonding in organic chemistry is covalent bonding. Atoms sharing some electrons leads to the creation of a covalent bond. Two atomic orbitals touching one other form the bond [1]. Figures 3-4 depict this procedure. Each shared electron in this kind of relationship counts toward the valence shells of both atoms in order to meet the octet rule. Each atom contributes one electron to a pair of electrons that are shared in a single bond. Three pairs of electrons are shared by triple bonds, while two pairs are shared by double bonds. Several covalent bonds are bonds that share multiple electron pairs.

What is chemical bond ?

Chemical bonds are formed when the atoms in a compound's molecule are brought together and kept together by a powerful combining force. Ionic and covalent bonds are the two different types of chemical bonds.

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Using the following data, calculate the standard heat of formation of brcl(g) in kj/mol.

Answers

This reaction's enthalpy change will be twice that of bromine monochloride's, BrCl, typical enthalpy change of production.

What does enthalpy mean in plain English?

Enthalpy is a property or state function that resembles energy; it has the same dimensions as energy and is therefore measured in joules or ergs. The value of enthalpy is solely dependent on the temperature, pressure, or composition of the system, not on its history.

Entropy vs. enthalpy: what are they?

Entropy is indeed the amount the intrinsic disorder inside a substance, whereas enthalpy is the quantity of internal energy. Enthalpy becomes nonzero for water because it is zero in elemental compounds like hydrogen gas or oxygen gas (regardless of phase).

Briefing:

1/2Br2(g) + 1/2Cl2(g) → BrCl(g)

Here, ΔH°rxn = ΔH°f

This means that the enthalpy change for this reaction will be twice the value of ΔH°f = 2 moles BrCl

Using Hess' law,

ΔH°f = total energy of reactant - total energy of product

= (1/2 * (+112) + 1/2 * (+121)) - 14.7

= 101.8 kJ/mol

ΔH°rxn = 101.8 kJ/mol.

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however instead of a standard reflux apparatus you set up a distillation apparatus what was the purpose of the setup and why did it help the reaction proceed faster

Answers

Reflux is a laboratory method for heating a mixture without losing a lot of solution. Refluxing a mixture is used to hasten and/or induce a reaction.

Reflux is used to achieve stage-by-stage equilibrium heat and mass transfer, which leads to the purification of the top product, by bringing down-flowing liquid in the rectification section into contact with the up-flowing vapor.

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as pco2 levels were increased, the concentration of a gas in the inhaled air was decreased in order to maintain the oxygen levels. name that gas.

Answers

As pco2 levels were increased, the concentration of a Nitrogen gas in the inhaled air was decreased in order to maintain the oxygen levels.

Atomic number 7 and the letter N designate nitrogen as the chemical element. Group 15 of the periodic table, also known as the pnictogens, contains Nitrogen gas as the lightest nonmetal element. It ranks seventh in overall abundance in the Milky Way and the Solar System, making it a common element in the cosmos. When conducting a chemical analysis, Nitrogen gas is frequently used to prepare samples.

With an atomic number of 8 and the chemical symbol O, oxygen is the eighth chemical element. It belongs to the chalcogen group in the periodic table, is a very reactive nonmetal, and is an oxidising agent that easily forms oxides with most elements as well as with other compounds. With an atomic number of 8 and the chemical symbol O, oxygen is the eighth chemical element.

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samples g-l all contain calcite. what property of calcite would assist you in identifying these samples?

Answers

would be to identify calcite by use of double refraction. Light splits into two rays and undergoes twofold refraction when it passes through calcite. We can recognize calcite by these.

Marble and limestone are primarily composed of calcite. The Earth's crust is largely composed of these extremely common rocks. They are one of the world's largest carbon storage areas. Calcite is one of the most often utilized minerals due to its unique features. Although calcite reacts with HCl impressively, the main application of this reaction in the field is to distinguish between limestone and dolostone. My recommendation is to identify calcite by use of double refraction. When light travels through calcite, it is refracted twice.

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one mole of an ideal gas does 2900 j of work on its surroundings as it expands isothermally to a final pressure of 1.00 atm and volume of 25.0 l. (a) determine the initial volume.

Answers

The one mole of an ideal gas does 2900J of work on surroundings as it expands isothermally. The initial volume of a gas is 8.0 L.

FIrst find out the temperature of a gas using ideal gas law which is

PV=nRT

For ideal gas, n=1 and R=0.08206 Latm/molK, V=25.0L, P=1atm

Rearrange the formula for T

T=PV/nR

Plug all values in the formula

T=(1.00atm×25.0L×molK/1mol×0.08206Latm)

T=25.00 K/0.08206

T=304.65K

The work done for isothermal condition is calculated as

W=2.303nRTlog(V₂/V₁)

Where V₂=25.0L, R=8.314 J/molK, n=1 mol, T=304.65K, V₁=?, W=2900J

Plug all values in the formula

2900J=2.303×1mol×(8.314J/molK)×304.65K×log(25/V₁)

2900J=5833.1768J×log(25/V₁)

log(25/V₁)=(2900 J/5833.1768 J)

log(25/V₁)=0.49716

Take antilog on both side

25/V₁=10^0.49716

25/V₁=3.14167

V₁=(25/3.14167)

V₁=7.95755 L

V₁=8.0 L

Therefore, the initial volume of a gas is 8.0 L.

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Order these compounds in order of increasing carbon-carbon bond strength and in order of decreasing carbon-carbon bond length : HCCH, H_2CCH_2, H_3CCH_3.HCCH,H 2

CCH 2

,H 3

CCH 3

.

Answers

The increasing order of carbon-carbon bond strength is H_3CCH_3<H_2CCH_2< HCCH and the decreasing order of carbon-carbon bond length is H_3CCH_3 > H_2CCH_2 >  HCCH.

What is Bond Order?

The number of chemical bond between pair of atoms is termed as its Bond order.

For Example,

HCCH i.e. H−C≡C−H has three pairs of bond hence its bond order is 3.

Bond Length:

The distance between the centers of two covalently bonded atoms is known as its Bond length.

The Increasing order of bond length is generally the :

3 bond < 2 bond < 1 bond.

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an aqueous ethanol solution (400 ml) was diluted to 4.00 l, giving a concentration of 0.0400 m. the concentration of the original solution was m. question 29 options: 4.00 2.00 1.60 0.400 0.200

Answers

An aqueous ethanol solution (400 mL) was diluted to 4.00 L, giving a concentration of 0.0400 M. The concentration of the original solution was  0.400 M.

Given:

ethanol solution V₁ = 400 ml

concentration M₂ = 0.0400 M

volume of diluted ethanol V₂ = 4.00 L = 4000 ml

concentration of original solution = M₁ = ?

Formula used:

Dilution is the process of decreasing the concentration of a solute in a solution, usually simply by mixing with more solvent like adding more water to the solution.

in this case, we need to use the dilution formula

M₁V1 = M₂V₂

M₁ = initial molarity

v1 = initial volume in liters

M₂ = final molarity

V₂ = final volume in liters

Solution:

using the dilution formula:

M1 × 400 = 0.04 × 4000

M1 =[tex]\frac{0.04 * 4000 }{400}[/tex]

    = 0.400 M

Hence 0.400 M is a correct answer.

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write the balanced reaction for the combustion of hexanol, ch3ch2ch2ch2ch2ch2oh? (be sure to use whole number coefficients.)

Answers

2C6H14(g)+19O2(g)→12CO2(g)+14H2O(g) is the balanced equation reaction for the combustion of hexanol.

The most fundamental and extensively used method for balancing chemical equations is known as "balancing by inspection," sometimes known as trial and error. The amount of tries and errors required to arrive at an equation that is ultimately correctly balanced can be reduced by using a few approaches. A chemical equation cannot be deemed balanced unless the law of conservation of matter is observed. In chemical equations, two distinct types of numbers are used. Subscripts are used in the chemical formulations of the reactants and products. Coefficients are also employed to display the number of molecules of a substance that are consumed or created prior to chemical formulations.

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Trace amounts of rare elements are found within groundwater and are of interest to geochemists. Europium and terbium are lanthanide-series elements that can be measured from the intensity of their fluorescence emitted when a solution is illuminated with ultraviolet radiation. Certain organic compounds that bind eu(iii) and tb(iii) enhance the emission, and substances found in natural waters can

Answers

Micronutrient is another name for a trace element. It is also described as any chemical component of a crucial enzyme that is needed by living things in minute or small levels.

What characteristics define a trace element?

In biology, a trace element is any chemical element that is needed by living things in very small levels (less than 0.1 percent by capacity [1,000 parts per million]), typically as a component of an essential activity (a cell-produced catalytic protein).

What do you mean by a trace element?

Minerals known as trace elements or trace metals are minor levels of which are found in living tissues. Some of them have been known to be physiologically necessary, some might be (but the evidence is merely speculative or sparse), and the rest are regarded as nonessential.

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Consider the following unbalanced equation. What is the standard free energy for the reaction of 7. 2 moles of al2o3(s) at 298k?.

Answers

for the following unbalanced equation.5800 kj is  the standard free energy for the reaction of 7. 2 moles of al2o3(s) at 298k

 First, let's balance the equation. Both sides must have the same amount of each element, so: Al₂O(s) + 3CO(g) 2Al(s) + 3CO2(g)

The free energy can be calculated by: AG = AH-TAS Where AH is the enthalpy of the reaction, and AS is the entropy of the reaction.

Al2O3(s): Hf=-1676.0 kJ/mol; S = 50.92 J/mol.K Al(s): Hf = 0.00; S° = 28.3 J/mol.K

CO(g): Hf=-110.5 kJ/mol; S = 197.6 J/mol.K

CO2(g): Hf=-393.5 kJ/mol; S = 213.6 J/mol.K

AH = Σn*Hf products - En*Hf reactants (n is the coefficient of the compound).

AH = (3*(-393.5) + 2*0) - (3*(-110.5) + (-1676)) = 827KJ

AS = {n*S* products - Σn*S° reactants

AS = (3*213.6 +2*28.3) - (3*197.6 + 50.92) = 53.68J/K = 0.05368 kJ/K

AG 827-298*0.05368 AG = 811 KJ

Which is the free energy for 1 mol of Al2O3

1 mol of Al2O3=811 KJ X 7.2 moles of Al2O3

By a simple direct three rule:  standard free energy is x = 5839.2 kJ = 5800 kJ

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1. write a balanced chemical equation, including physical state symbols, for the combustion of liquid dodecane into gaseous carbon dioxide and gaseous water.

Answers

The Molecular formula of Decane is C10H22

Combustion of Decane as follows ;                                                            C10H22 (l) + O2 (g) ==>  CO2(g)+ H2O(g) ,When we burn Liquid Decane(C10H22) into oxygen(O2) gas then it produce  Water vapour and Carbon dioxide gas.

The balance equation of Combustion as follows ;

2C10H22 (l) + 31O2 (g) ==>  20CO2(g)+ 22H2O(g)

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draw the product for the following reaction between an alkyne and one equivalent of hcl . 3 methyl pent 1 yne or 3 methyl 1 pentyne is treated with h c l to give the product. the structure shows a 5 carbon chain where there is a triple bond between carbons 1 and 2 and a methyl substituent on carbon 3.

Answers

reaction between an alkyne and one equivalent of hcl . 3 methyl pent 1 yne or 3 methyl 1 pentyne is treated with h c l to give the product. the structure shows a 5 carbon chain where there is a triple bond between carbons 1 and 2 and a methyl substituent on carbon 3.

An inorganic chemical is HCL. The chemical name for it is HCl, and it is a potent corrosive acid. It is also referred to as muriatic acid or hydrogen chloride. Chemically, carbon is an element with the symbol C and atomic number 6. Carbon, which is categorized as a nonmetal, is a solid at ambient temperature.

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the metabolite 11 nor tetrahydrocannabinol 9 cooh can be detected by immunoassay 3-5 days after a single use of ____

Answers

The metabolite 11 nor tetrahydrocannabinol 9 COOH can be detected by immunoassay 3-5 days after a single use of marijuana.

The use of an antibody or an antigen as a biorecognition agent allows for the highly selective bioanalytical technique known as an immunoassay to detect the presence or concentration of analytes ranging in size from small molecules to macromolecules in a solution.

Immunoassay assays are biochemical procedures that use the antigen-antibody response theory to diagnose illness. It seeks to determine both an analyte's concentration and presence. Immunoassay testing is used by scientists and medical practitioners to find various antibodies Metabolite 11 nor tetrahydrocannabinol 9 COOH is also identified by this.

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cpmpute the composition of the iron carbon alloy for which the mass fraction of total ferrite and total cementite are 0.88 and 0.12 what is the protectoid phase

Answers

In this problem we are given values of Wα and WFe3C for an iron-carbon alloy (0.88 and 0.12,respectively), and then are asked to specify whether the alloy is hypoeutectoid or hypereutectoid.

Employment of the lever rule for total α leads to

W[tex]\alpha[/tex] = 0.88 =  [tex]\frac{CFe3C- C0}{CFe3C - \alpha }[/tex] = [tex]\frac{6.70 -C0}{6.70- 0.022}[/tex]

Now, solving for C0, the alloy composition, leads to C0 = 0.82 wt% C. Therefore, the alloy is hypereutectoid since C0 is greater than 0.76 wt% C.

What is the protectoid phase?

The term proeutectoid refers to a phase that develops (on cooling) before eutectoid austenite decomposes. It is similar to primary solids in that it is the first phase to solidify after the austenite phase has solidified.

How do you find the Proeutectoid phase?

On a phase diagram, the proeutectic point is the temperature at which the mixture transforms into a mixture of two solids. There are two proeutectic temperatures. One happens at 1587°C, where everything over this temperature is liquid.

Hence above given is a correct answer.

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how does knowing the states of matter help to explain any difference in mass from the reactants to the products?

Answers

The process is a change of state, dissolving, or a chemical reaction, the total mass of the substances does not change.

French chemist Antoine Lavoisier established the law of conservation of mass in 1789. According to the rule of conservation of mass, a chemical process cannot generate or destroy matter.

For instance, when wood burns, the mass of the gases, soot, and ashes is equal to the amount of the charcoal and oxygen before the reaction began. Thus, the mass of the reactant and the mass of the product are equal. A product is the material created as a result of a chemical reaction, whereas a reactant is the chemical reaction of two or more elements to create a new substance. Although matter and the associated mass cannot be generated or destroyed, they can change into other substances such as liquids, gases, and solids.

Hence, the process is a change of state, dissolving, or a chemical reaction, the total mass of the substances does not change.

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what is the copper ii ion concentration at 25% c in the cell zn(s) i zn2 (1.0 m) ii cu2 (aq) i cu(s) if the measured cell potential is 1.01v? g

Answers

Answer:cell potential

Explanation:

A colorimeter is an instrument used to measure the amount of choose. Absorbed by a solution. This absorbance is proportional to the choose. Of the solute in solution.

Answers

A colorimeter is an instrument used to measure the amount of heat absorbed by a solution. This absorbance is proportional to the concentration of the solute in the solution.

A calorimeter is a device used in calorimetry, a method for measuring the heat of chemical reactions or other physical changes and estimating heat capacity. Differential scanning calorimeters, isothermal micro calorimeters, titration calorimeters, and accelerated rate calorimeters are a few of the most common types.

Two compounds A and B are put one at a time into a calorimeter, and the starting and ending temperatures (before and after the reaction) are noted. This information is used to determine the enthalpy change per mole of substance A in the process. An estimate of the quantity of energy released or absorbed during the reaction can be obtained by multiplying the mass and specific heat capacity of the components by the temperature change. By dividing the energy change by the amount of A that was present, the reaction's enthalpy change is determined.

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at what temperature would 1% of the hydrogen atoms be in the first excited state? leave your answer in k

Answers

The hydrogen atoms are in the first excited state at room temperature.

The hydrogen atom is the best of all atoms: it consists of a single proton and a single electron. in addition to the most not unusual shape of the hydrogen atom, which is known as protium,  other isotopes of hydrogen exist in deuterium and tritium.

A hydrogen atom is an atom of the chemical detail hydrogen. The electrically impartial atom consists of an unmarried definitely charged proton and a negatively charged electron bound to the nucleus via the Coulomb force. Atomic hydrogen constitutes about seventy five% of the baryonic mass of the universe.

Hydrogen, H, is a pretty flammable gasoline and the maximum commonplace aspect of the universe. it is the lightest element ever and is colorless, odorless, and tasteless. it's also in maximum organic compounds.

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Classify each of the substances as an electrolyte or a nonelectrolyte. Electrolyte Nonelectrolyte Answer Bank sodium hydroxide, NaOH potassium iodide, KI most molecular solutes methanol, CH OH a substance that forms an aqueous solution which does nol conduct eloctricity table sugar a soluble ionic compound sodium chloride, NaC

Answers

From the substances given, we can classify them as an electrolyte or a non-electrolyte as stated below:

Electrolyte:

NaOH (sodium hydroxide)KI (potassium iodide)NaCl (sodium chloride)A soluble ionic compound

Non-electrolyte:

Most molecular solutesCH3OH (methanol)Table sugarA substance that forms an aqueous solution but does not conduct electricity.

What are electrolytes and non-electrolytes?

Electrolytes are some substances that can release electrical charges in the form of cations (positive charge) and anions (negative charge). These electrical charges move freely in the aqueous form as a soluble ionic solution. The freely-moving molecules can conduct electricity. On the other hand, non-electrolytes do not contain anions and cations. Hence, they cannot conduct electricity.

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The reaction between aqueous strontium chloride (SrCl2) and aqueous potassium sulfate (K2SO4) forms a precipitate of strontium sulfate (SISO4). Which of the following represents the net ionic equation for the reaction? Оа Oь sp?" (aq) + 2CH(aq) + S0 ?"(aq) + 2K+ (aq) - Sr5O4(s) + 2Cl(aq) + 2K(aq) Sr2(aq) +5022"(aq) - SrSO4(s) SrCl(aq) + KąSO4(aq) + Sr5O4(s)+ 2Kcaa) CF (aq) +K*(aq)- KCl(aq) d

Answers

The net ionic reaction for the precipitation reaction is

b)SrCl₂ + K₂SO₄ → SrSO₄ + 2KCl

The precipitation reaction between strontium chloride (SrCl₂) and potassium sulfate (K₂SO₄) is a double replacement reaction and produces an insoluble solid. The net ionic reaction for this precipitation reaction is as follows:

SrCl₂ + K₂SO₄ → SrSO₄ + 2KCl

In this reaction, a cation (positively-charged ion) from one reactant (strontium) is exchanged for a cation from the other reactant (potassium). At the same time, an anion (negatively-charged ion) from one reactant (chloride) is exchanged for an anion from the other reactant (sulfate). The products of this reaction are a soluble sodium chloride solution and an insoluble strontium sulfate solid. The insoluble solid separate out of the solution, forming a precipitate.

Hence the correct option is B.

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what kind of intermolecular forces act between a chloramine (nh2cl) molecule and a potassium cation?

Answers

The intermolecular forces act between a chloramine (nh2cl) molecule and a potassium cation is Dipole to Dipole bonding.

What is an example of a dipole-dipole interaction?

A dipole-dipole interaction can occur between polar molecules such as hydrogen chloride (HCl), carboxylic acids (i.e., acetic acid), and amino acids. The positive end of a polar molecule will attract the negative end of the other molecule and alter its location.

What is  Dipole to Dipole bonding?

Dipole to Dipole force arise when atoms with partial charges within a molecule attract another atom with an opposite partial charge that is located around the molecule.

Therefore,

Because chloroamine and water are both polar solvents, hydrogen bonds, dispersion forces, and dipole-dipole forces of attration exist between them. Water molecules form hydrogen bonds.

Hence Dipole to Dipole bonding is a correct answer.

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What is the answer i will give brainllest

Answers

Answer:

the answer is double replacement


How can an atom's number of electrons be determined?

Answers

Answer:

If the atom is neutral, then the number of protons(atomic number) equals the number of electrons. If the atom is an ion and has a charge, then that changes. If the charge is negative(ex. 1-), then you add that number to the number of protons to get the number of electrons. If the charge is positive, then you subtract(ex 1+) that number from the number of protons to get the number of electrons

Explanation:

A solution contains one or more of the following ions: ag+, ba2+, and cu2+. When you add sodium chloride to the solution, no precipitate forms. When you add sodium sulfate to the solution, a white precipitate forms. You filter off the precipitate and add sodium carbonate to the remaining solution, producing another precipitate.

Answers

Net ionic equations for the formation of each of the precipitates observed:

Cl⁻ + Ag⁺ → ClAg ↓

CO₃⁻² + Ca²⁺  →  CaCO₃ ↓

CO₃⁻² + Cu²⁺  →  CuCO₃ ↓

What is precipitation?

Precipitation is the process of changing a dissolved substance from a supersaturated solution to an insoluble solid in an aqueous solution. Precipitate refers to the produced solid.The chemical agent that initiates the precipitation in an inorganic chemical process is known as the precipitant.The term "supernatant" or "supernatant" also refers to the clear liquid that remains on top of the precipitated or centrifuged solid phase.When solid impurities separate from a solid phase, the concept of precipitation can also be applied to other areas of chemistry, such as organic chemistry and biochemistry, as well as the solid phases (such as metallurgy and alloys).

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