Which of the substances have a standard enthalpy of formation (NHf) equal to zero?a. C (diamond).b. F2(g).c. NH3(g)d. Hg (l).

Answers

Answer 1

From the given list of compounds, [tex]F_2[/tex](g)  and Hg(l) are at their standard state and therefore have a standard enthalpy of formation equal to zero.

The enthalpy change required to produce one mole of a compound from an element in its standard state is known as the standard enthalpy of formation. The standard states represent the shape an element would take at 1 bar of pressure and 25 °C. Since the energy would be different for the ridiculous reaction carried out with the diamond form of carbon, carbon is designated as graphite. Under normal circumstances, hydrogen exists as a molecular gas, thus this form is necessary for the typical reaction.

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Related Questions

the lattice energy of naf is -926 kj/mol. when 2.462 g of naf is dissolved in water, 0.0534 kj of heat is absorbed. calculate the enthalpy of hydration of naf.

Answers

The enthalpy of hydration of NaF is 926.95 kJ/mol. This value represents the amount of heat absorbed when 1 mole of NaF is dissolved in water.

The enthalpy of hydration, or the heat of solution, is the change in enthalpy that occurs when a substance is dissolved in a solvent. In this case, the enthalpy of hydration of sodium fluoride (NaF) can be calculated as follows:

Convert the mass of NaF to moles:

2.462 g NaF / 42.99 g/mol = 0.057 moles NaF

Calculate the heat absorbed per mole of NaF:

0.0534 kJ / 0.057 moles = 0.95 kJ/mol

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

Enthalpy of hydration = heat absorbed per mole - lattice energy

= 0.95 kJ/mol - (-926 kJ/mol)

= 926.95 kJ/mol

So, the enthalpy of hydration of NaF is 926.95 kJ/mol. This value represents the amount of heat absorbed when 1 mole of NaF is dissolved in water.

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N2+3H2–>2NH3 How many miles of ammonia are produced when 3 miles of nitrogen react with hydrogen

Answers

6moles of ammonia are produced when 3 miles of nitrogen react with hydrogen in the reaction N[tex]_2[/tex]+3H[tex]_2[/tex]→2NH[tex]_3[/tex].

What is moles?

A mole is just a measuring scale. In reality, it's one of the International System of Units' seven foundation units (SI). When already-existing units are insufficient, new ones are created.

The levels at which chemical reactions frequently occur exclude the use of grams, yet utilizing actual numbers of atoms, molecules, or ions would also be unclear. To fill this gap between extremely small and extremely huge numbers, scientists created the mole.

N[tex]_2[/tex]+3H[tex]_2[/tex]→2NH[tex]_3[/tex]

moles of nitrogen =  3 moles

moles of ammonia= 3×2moles =6moles

Therefore, 6moles of ammonia are produced when 3 miles of nitrogen react with hydrogen.

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what the majority of the energy captured in the krebs cycle is in the form of nadh.

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The chemical energy being produced and conserved in the form of three NADH molecules, one FADH2 molecule, and first ATP molecule during the Krebs cycle's oxidation of acetyl-CoA to carbon dioxide.

The Krebs Cycle: What is it?

The Krebs cycle, sometimes called the TCA cycle or the tricarboxylic acid cycle, is a series of chemical processes that take place in the mitochondria and are essential for the aerobic respiration that provides energy to nearly all living things. It consumes oxygen and produces co2 and water as waste.

The Krebs cycle takes place where?

The mitochondrial polymer, a viscous solution surrounding the respiratory pinnacles in eukaryotes, is where the Oxidative phosphorylation reaction that occurs. In apart from water, the element includes all the enzymes required for the metabolic activities.

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What happened to the sediment?

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Sediment moves from one place to another through the process of erosion. Erosion is the removal and transportation of rock or soil. Erosion can move sediment through water, ice, or wind. Water can wash sediment, such as gravel or pebbles, down from a creek, into a river, and eventually to that river's delta.

so.. the answer is “ Sediment moves from one place to another through the process of erosion. “

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slightly acidic ground water can dissolve limestone as it flows along joints and bedding planes to form caves. this reaction may then be reversed as water drips from the ceiling and splashes on the floor of an air-filled cave and minerals are precipitated to form features known as:

Answers

Slightly acidic ground water can dissolve limestone as it flows along joints and bedding planes to form caves. This reaction may then be reversed as water drips from the ceiling and splashes on the floor of an air-filled cave and minerals are precipitated to form features known as stalactite and stalagmite.


How do stalactite and stalagmite form?

Cave are formed underground chambers naturally. Most caves develop when slightly acidic ground water dissolves limestone along joints and bedding planes. It can take hundreds of thousand years to form. 

Natural ground water is little acidic because of dissolved carbon dioxide (CO2) from the atmosphere or soil. Ground water with a high concentration of calcium (Ca2+) and bicarbonate (HCO3-) drip slowly from the ceiling of an air-filled cave. 

Below is the chemical reaction of formation stalactite and stalagmite :

[tex]H_{2}O + CO_{2} + CaCO_{3} < - > Ca^{2+} + 2HCO_{3} ^{-}[/tex]

A falling water drop, can precipitate calcite on both ceiling and the cave floor. As a water drop and hangs on the roof of the cave, some of the dissolved carbon dioxide lost into the cave's atmosphere. It causes the calcite to precipitate on the ceiling. Deposits of calcite on roof cave by dripping water are stalactite. In other word, stalactite is column of rock resembling an icicle which hang down from the ceilings of cave.

When the water drop falls to the cave floor, more CO2 loss and the calcite precipitate on the cave floor. Precipitation of calcite on floor cave named stalagmite. So, stalagmites are cone-shaped masses formed on cave floors, directly below stalactite.

Each subsequent drop add more calcite to the first deposits and make it continuously bigger. A stalactite grows downward while stalagmite grows upward.

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Atoms that share electrons have what type of bonds?

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Atoms share electron pair between them in covalent bonds. A nonpolar covalent bond is formed when electron pairs shared by atoms with equal or nearly equal electronegativity, whereas a polar covalent bond is formed when electron pairs are shared by atoms with uneven electronegativity.

Is the sharing of electrons ionic or covalent?

By sharing electrons, two or more atoms can form covalent bonds. When two or more ions come together, their opposing charges hold them together to form ionic bonds.

Ionic bonds are formed by which atoms?

Only between metals and nonmetals may ionic bonding develop. This is due to the fact that nonmetals "desire" to gain electrons while metals "want" to give up electrons. An atom's valence electrons must be removed in order to create a positive ion, which requires energy. When an atom acquires valence electrons and transforms into a negative ion, energy is released.

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Atoms of two or more substances that are physically blended but are not chemically bonded together form a ___?

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When a number of substances come together physically rather than chemically, a mixture is created. The two main categories of mixtures are homogeneous mixes & heterogeneous mixtures.

Short answer: What does heterogeneous mean.

The look and content of a homogenous mixture are constant throughout. Solutions are a general term for many homogenous mixes. A heterogeneous mixture is made up of clearly distinct components or stages.

What kinds of heterogeneous are there?

Colloids and suspensions are the two categories under which heterogeneous mixtures are classified. Mixtures with larger particles, or suspensions, will separate into layers if left undisturbed. Colloid substances, on the other hand, are made up of mixed-up particles that are separated physically but do not drop out.

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in addition to the (1) name of the chemical and (2) special warnings, what else must be on the label of all stock solutions you may prepare in the laboratory

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3. The concentration of the solution, 4. The date of preparation and 5. The name of the person who prepared the solution. must be on the label of all stock solutions you may prepare in the laboratory.

All laboratory-prepared stock solutions must have the following information on their labels:

- The name of the solution 

- The name of the solution 

- An expiration date

- Any unique storage demands

- The proper hazard labels, such as "toxic," "corrosive," "flammable,"

concentration of the solution etc.

Solutions include: 1. Buffering techniques; Salt remedies; Sugar alternatives; Acid remedies; Basic answers; combinations of solvent ;Products with metal ions; Protein remedies;DNA remedies; enzymatic remedies

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the half-life of iodine-125 is about 62 days. if we were to start with 20 grams of it, about how much would remain after 12 years?

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The initial 20 grams would remain after 12 years.

The half-life of iodine-125 is 62 days, which means that after 62 days, half of the initial amount of iodine-125 will have decayed. To find out how much would remain after 12 years (12 x 365 = 4,380 days),

we need to calculate the amount of iodine-125 after each half-life period and then add them up.

After the first half-life (62 days), the amount of iodine-125 would be

20 g / 2

=> 10 g.

After the second half-life (62 x 2 = 124 days),

the amount of iodine-125 would be

=> 10 g / 2

=> 5 g.

After the third half-life (62 x 4 = 248 days),

the amount of iodine-125 would be

=> 5 g / 2

=> 2.5 g.

We can keep repeating this process to find the amount of iodine-125 after each half-life period. However, after 4,380 days (12 years),

the amount of iodine-125 would be approximately 0.067 g.

So, after 12 years, only 0.067 grams of iodine-125 out of the initial 20 grams would remain.

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what is the maximum number of bonds phosphorous can form?

Answers

In contrast to nitrogen, which is unable to create compounds with five real covalent bonds, phosphorus has outside d orbitals that allow the octet to expand and lead to the +5 state.

What distinguishes a covalent bond?

The molecule's Lewis dot structure may be used to identify the many kinds of covalent bonds. Depending on whether they are shared or not, pairs of electrons for each molecule have distinct names. A bond pair is a pair of atoms that are shared by two atoms.

What kinds of bonds have covalent chemistry?

Hydrogen (H2), oxygen (O2), nitrogen (N2), water (H2O), and methane (CH4) are five instances of covalent bonding. 2. A chemical bond is what a covalent link is.

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a 182 g ingot of gold was put into 22.1 g of water. the initial tempreture of the gold was unknown, but the water was initially 25.0 degrees celcius and the final tempreture was 27.5 degrees celcius. what was the initial tempreture of the gold?

Answers

By the equation for heat transfer, we can  find the initial temperature of the gold.

Q = mcΔT

where Q is the heat transferred, m is the mass of the substance, c is the specific heat capacity, and ΔT is the change in temperature.

We need to first calculate the heat transferred from the water to the gold:

Q = (22.1 g) * (4.184 J/g°C) * (27.5°C - 25.0°C)

Then, we can use the equation for heat transfer to find the heat absorbed by the gold:

Q = (182 g) * c * ΔT

We can equate the two expressions for heat transfer and solve for ΔT:

(22.1 g) * (4.184 J/g°C) * (27.5°C - 25.0°C) = (182 g) * c * ΔT

ΔT = [ (22.1 g) * (4.184 J/g°C) * (27.5°C - 25.0°C) ] / (182 g) * c

The specific heat capacity of metals= 0.129 J/g°C:

ΔT = [ (22.1 g) * (4.184 J/g°C) * (27.5°C - 25.0°C) ] / (182 g) * (0.129 J/g°C)

ΔT = 11.36°C

Then, the initial temperature of the gold can be found by subtracting ΔT from the final temperature:

Initial temperature = 27.5°C - 11.36°C = 16.14°C

The initial temperature of the gold was approximately 16.14°C.

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what functional groups participate in the formation of a phosphodiester bond?

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The condensation process between substrate molecules and hydroxide produces the phosphodiester bonds. The hydroxyl group is made up of a single oxygen atom and a single hydrogen atom.

What is a brief explanation of what an atom is?

The tiniest fragment of a material that cannot be destroyed chemically. Protons and neutrons make up the nucleus of every atom. The nucleus is surrounded by electrons.

What are some instances of atoms?

Many atoms have a positive electrode nucleus made up of neutrons and protons. that is surrounding by a cloud of negatively charged electrons. Any elementary particle of matter with at least one proton is referred to as an atom. Hydrogen and neon are a few of examples of atoms.

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calculate the ph of an acetate buffer composed of 0.15 m sodium acetate and 0.06m acetic acid. the pka for acetic acid is 4.76.

Answers

The pH of the acetate buffer is approximately 5.50.

pH of Acetate Buffer:

The pH of an acetate buffer can be calculated using the Henderson-Hasselbalch equation:

pH = pKa + log([A^-]/[HA])

where pKa is the negative log of the acid dissociation constant, [A^-] is the concentration of acetate ion (sodium acetate), and [HA] is the concentration of acetic acid.

Given the concentration of sodium acetate and acetic acid, you can plug in the values and solve for pH using the equation.

Calculation:

The pH of an acetate buffer can be calculated using the Henderson-Hasselbalch equation:

pH = pKa + log([A^-]/[HA])

where pKa is the negative log of the acid dissociation constant, [A^-] is the concentration of acetate ion (sodium acetate), and [HA] is the concentration of acetic acid.

First, we'll calculate the concentration of acetate ion and acetic acid from the sodium acetate solution:

[A^-] = 0.15 M (concentration of sodium acetate)

[HA] = 0.06 M (concentration of acetic acid)

Next, we can plug these values into the Henderson-Hasselbalch equation and solve for pH:

pH = 4.76 + log([A^-]/[HA])

pH = 4.76 + log(0.15/0.06)

pH = 4.76 + 0.74

pH = 5.50

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how does one classify a nonsilicate mineral group?group of answer choicesnegatively charged ion or complex ionsilicon tetrahedrapositively charged ion or complex ion

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It is a negatively charged ion or complex ion to classify a non-silicate mineral group.

Non-silicate minerals are those that don't contain oxygen as well as silicon. They could contain oxygen, but they cannot in the presence of silicon. Many of these minerals have been composed of elements such as carbon, oxygen, fluorine, sulphur, and others. Gold (Au), silver (Ag), platinum (Pt), Sulphur (S), copper (Cu), as well as iron are some examples (Fe).

The second option would be incorrect because silicon could not indeed be found in non-silicate minerals. Non-silicate minerals are classified into six types: oxides, sulphides, carbonates, sulphates, halides, as well as phosphates.

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If an object has a density of 5 g/ml and a volume of 4ml, what is its mass?

Answers

Answer:

20g

Explanation:

Let's review the formula to find the mass of an object: M = V * D

M = 5 g/ml * 4ml

(We can think of g/ml * ml as [tex]\frac{g}{ml}[/tex]*ml, so the ml cancels out, just leaving g)

M = 20g

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iodine-123 is a radioactive isotope used to study thyroid gland functions. it decays in a first-order process with a half life of 13.1 h. you receive a 10.00 g sample for some of your experiments, but you have to work fast before it is all gone. calculate the number of hours it will take for 9.30 g of your sample to decay.

Answers

The time it will take for 9.30 g of the sample to decay can be calculated as approximately 11.8 hours.

Calculating the Decay Time of Iodine-123

Iodine-123 is a radioactive isotope with a half-life of 13.1 hours that is commonly used to study thyroid gland functions. The decay of a radioactive substance is a first-order process, meaning that the amount of radioactive material decreases exponentially with time. The number of radioactive atoms present after a certain time, t, can be calculated using the equation: N(t) = N0 * (1/2)^(t/t1/2), where N0 is the initial number of radioactive atoms, t1/2 is the half-life, and t is the time elapsed.

By rearranging the equation, it is possible to solve for time if the final number of radioactive atoms is known. The equation becomes t = t1/2 * log(2) * N0 / (N0 - N), where N is the final number of radioactive atoms. Using this equation and plugging in the values for N0 = 10.00 g and N = 9.30 g, the time it will take for 9.30 g of the sample to decay can be calculated as approximately 11.8 hours.

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muriatic acid, an industrial grade of concentrated , is used to clean masonry and cement. its concentration is . for routine use, a diluted solution of is prepared. how many milliliters of muriatic acid solution contain of ? round your answer to significant figures.

Answers

1.6 ml of industrial grade concentrated muriatic acid is used for cleaning masonry and cement.

what is muriatic acid?

Muriatic acid is a solution of hydrochloric acid in water, usually at a concentration of around 30%. It is used for many purposes, including cleaning masonry and metal surfaces, adjusting  levels in swimming pools, and as an ingredient in some cleaning products. It is a highly corrosive acid and should be handled with care.

Calculation of  muriatic acid solution to millilitres

Divide the concentration (30%) by 100 to get 0.3. Calculate the amount of muriatic acid needed to make a solution of 0.1%.

1 millilitre of the muriatic acid solution contains 0.3 g of the acid. To make a solution of 0.1%, multiply the amount of acid by 10. Therefore, to make a solution of 0.1%,   1o ml of the muriatic acid solution is needed.

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according to the experimental procedure, which method will be used to mix the analyte solution while titrating? select one: glass stirring rod magnetic stir bar thermometer gentle swirling

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The method used to mix the analyte solution during the titration based on the experimental procedure is a glass stirring rod.

What is an analyte solution?

Analyte or titrate is a solution whose concentration is unknown. Titrant is a standard solution whose concentration is known. Acid-base indicators are substances that change color as they approach the equivalence point.

This titration method has the goal of quantitatively determining a substance in solution with other substances/solutions whose concentration is known through reactions until it reaches the stoichiometric point gradually using a glass stir bar to mix with the analyte solution.

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A student describes a substance as lacking a definite shape. The description also states that the particles of matter are close to each other but still able to flow past each other. Which type of substance is the student mostlikely describing?
answer choices
O solid
O liquid
O mixture
O compound

Answers

Liquid is the states that the particles of matter are close to each other but still able to flow past each other.

What five qualities does a liquid have?The amount of liquids is consistent, but their shape is not.You can compress liquids. Compressed them requires a significant amount of high pressure.Relative to solids, liquids have lower densities.Relative to solids, intermolecular forces of attraction are weaker.The particles have been separated by a significant margin.Explain what is the liquid state?

A form of matter known as a liquid has special properties that make it less stiff than a solid but more rigid than a gas. Unlike a solid, which has a defined shape, a liquid can flow. In comparison, a real fluids on the shape of the container it is kept in. There is a definite loudness to it. Although being free to move over one another, particles are nevertheless drawn toward each other.

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if n2o4 is introduced into an evacuated flask at a pressure of 17.0 mm hg, how many seconds are required for the pressure of no2 to reach 1.3 mm hg?

Answers

Answer:

so it’s A

Explanation:

it’s a

bam makes a second solution, adding 6.41 g of co(ch3coo)2 to 36.45 ml of h2o. calculate the concentration of this solution in mole fraction.

Answers

bam makes a second solution, adding 6.41 g of co(ch3coo)2 to 36.45 ml of h2o. 0.0137moles  concentration of this solution in mole fraction.

The following formula can be used to determine the concentration of the solution in moles:

1. Determine the moles of every dissolved solute in the solution:

Co(ch3coo)2 moles equal 6.41 g / (242.18 g/mol) = 0.0265 mol H2O moles equal 36.45 ml x (1 L/1000 ml) x (55.55 mol/L) = 2.0 mol

2. Total the amount of moles present in the mixture:

total moles = 0.00265 + 0.00265 = 2.0265

3. Dividing the total number of moles in the solution by the amount of each solute

Co(ch3coo) has a 0.0137 mole fraction.

Physical properties, on the other hand, are characteristics that do not alter the chemical makeup of a substance.

Boiling point, melting point, density, etc. are only a few examples of physical qualities.

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a learner is given 6.02g magnesium sulfate
calculate the number of moles in magnesium sulfate

Answers

Answer:

0.05 moles

Explanation:

Formula: MgSO[tex]_{4}[/tex]

Molecular mass: 120.366 g/mol

Given mass: 6.022 g

Setting up ratio between moles and mass:

moles      :      mass

   1           :       120.366

   X          :       6.022

X = 6.022/120.366

X = 0.05 moles

calculate the molality of an aqueous solution that is 18.2% by mass calcium chloride. you might need to know that the density is 1.18 g/ml.

Answers

The molarity an aqueous solution that is 18.2% by mass calcium chloride = 1.94 M

The molarity of a substance refers to how much of it is present in a given volume of solution (M). Molarity is the measure of how many moles of a solute are present per liter of a solution. Molarity is also referred to as a solution's molar concentration.

The equation:

M = n/V

Where,

M = molarity (M)

n = number of moles

V = volume (L)

Volume of the solution:

V = m/d

= 100 / 1.18

= 0.08475 L

Mass of solute:

(18.2 x 100) / 100

= 18.2

Number of moles:

n = mass/ molar mass

= 18.2 / 110.98

= 0.164

Hence,

The molarity of the solution:

M = 0.164 / 0.08475

= 1.94 M

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Aldehydes have a central carbon bound to two other carbons true false

Answers

Commonly, aldehydes consist of a carbon atom bound to one carbon but one hydrogens. Aldehydes have a strong polarity, which makes them very reactive.

Are aldehydes harmful to people?

Aldehydes are heterocyclic compounds that are abundant in the environment and can be found in both natural and man-made sources. The aldehydes are often hazardous to the body since they are reactive species.

What impacts the body does aldehyde have?

Your blood absorbs some of the acetaldehyde, harming your membranes and perhaps leading to the formation of scar tissue. Additionally, it results in a hungover and that may bring on symptoms like a headache, an upset stomach, or an increased pulse. The most vulnerable organ to acetaldehyde toxicity is the brain. It disrupts brain function and may deteriorate memory.

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rank the following aqueous solutions from lowest predicted boiling point to highest. in the case of solutions containing aqueous ions, assume there is no ion clustering in the solution. 1. 0.900 m kBr. 2. 0.475 m K3PO4. 3. 0.530 m Na2SO4. 4. 0.724 m NH4NO3. 5. 1.68 m CH3OH

Answers

We have aqueous solutions with following boiling points, in order of lowest boiling point to highest boiling point: 0.475 m K3PO4, 0.724 m NH4NO3, 0.530 m Na2SO4, 0.900 m KBr, and 1.68 m CH3OH.

What kinds of things are aqueous solutions?

Samples of watery solutions include coke, seawater, rain, corrosive, base, and salt solutions. Any liquid that lacks water is an example of a solution that is not an aqueous solution.

Water alone makes up an aqueous solution:

Aqueous solutions are made up of water but one or more soluble materials. Solids, gases, and other liquids can all dissolve in an aqueous solution. A combination must be stable is order to be eligible a real solution.

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Answer: 0.907, 0.520, 0.475, 0.736

Explanation:

you mix 250 mL of 2.1 M HBr with 200 mL of 2.5 M KOH. what is the pH of the resulting solution?a. 12.7b. 1.6c. 12.4d. 1.3

Answers

The supplied statement predicts that the final solution's pH will be 12.4, which is accurate.

Did you know that pH is important?

Acidity is measured using the pH scale, which ranges to 14. It informs us about a substance's pH or alkalinity. Seven is the neutral pH. Acidity is indicated by figures below 7 and increase as when the number falls, with 0 being the most acidic.

Consider the reaction combining HBr and KOH to produce a sodium salt and water to evaluate the pH of the reaction solution:

HBr + KOH → KBr + H2O

The pH of a weakly basic solution can be estimated using the equation:

pH = 14 + log([OH^-]/[HBr])

This can be estimated by assuming that all the HBr is neutralized, so:

[HBr] = [HBr]0 - [KOH] = (2.1 M) - (2.5 M) = -0.4 M

Since [HBr] is negative, we can take its absolute value to find the pH:

pH = 14 + log([OH^-]/|[HBr]|) = 14 + log(2.5 M/0.4 M) = 14 + 0.97 = 14.97

Therefore, the answer is (c) 12.4.

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which steps are necessary for cleaning a spill involving broken glass? select one or more: stop the spread of the spill. soak up any spilled liquid with absorbent material. pick up large pieces of glass with gloved hands. wash off the broken glass for recycling.

Answers

Any spilled liquid should be absorbed with absorbent material. Pick up large pieces of glass with gloved hands. Wash off the broken glass for recycling. halt the spill's spread.

Different kinds of materials that can absorb liquid are known as absorbents. A substance that absorbs has tiny pores throughout it. An absorbent substance absorbs liquid when it comes in contact with it because of the minute holes that allow the liquid to travel throughout the material.

Recycling is the process of turning trash into new products and materials. This idea frequently takes the recovery of energy from waste materials into account. The capacity of a substance to regain the qualities it had in its initial state determines how recyclable it is.

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q6. the molecular formula for the amino acid lysine is c6h14n2o2. what would be the molecular formula for a polypeptide consisting of five lysine molecules?

Answers

The molecular formula for a polypeptide consisting of five lysine molecules will be C₃₀H₅₄N₁₀O₁₀

Amino acids are the organic compounds which contains both amino as well as carboxylic acid functional groups. Although hundreds of amino acids will exist in nature, by far the most important are the alpha-amino acids, which comprise proteins.

A polypeptide is a continuous, unbranched chain of the amino acids joined by peptide bonds. To generate an amide, the peptide bond will connects the carboxyl group of one amino acid to the amine group of the next amino acid.

The molecular formula of the amino acid lysine is C₆H₁₄N₂O₂. If a polypeptide consists of five lysine molecules, then the molecular formula of the polypeptide would be:

5(C₆H₁₄N₂O₂) = C₃₀H₅₄N₁₀O₁₀

So, the molecular formula for a polypeptide consisting of five lysine molecules would be C₃₀H₅₄N₁₀O₁₀.

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water can dissolve ionic compounds because a) water is a molecular compound. b) water is made up of hydrogen and oxygen. c) water is an acid. d) water is a polar molecule.

Answers

d. water is a polar molecule that's why it can dissolve ionic compounds.

The polarity of water refers to its molecular structure, where the oxygen atom has a partial negative charge and the hydrogen atoms have partial positive charges. This makes water a polar molecule, meaning that it has a positive and negative end. Due to its polarity, water is able to dissolve ionic and polar substances, making it an excellent solvent. This property of water is important in many biological and chemical processes.

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ethyl chloride, c2h5cl, is used as a local anesthetic. it works by cooling tissue as it vaporizes. the heat of vaporization is 26.4 kj/mol. how much heat could be removed by 60.0 g of ethyl chloride? question 1 options: a) 2.28 kj b) 1584 kj c) 1703 kj d) 24.6 kj

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The amount of heat that can be removed by 60.0 g of ethyl chloride is 1584 kJ.

This is calculated by multiplying the amount of ethyl chloride (60.0 g) by the heat of vaporization (26.4 kJ/mol) and then multiplying by the molar mass of ethyl chloride (64.51 g/mol). Therefore, the answer is 1584 kJ.

The heat of vaporization of ethyl chloride is the amount of energy that is required to transform 1 mole of liquid ethyl chloride into gaseous ethyl chloride at the boiling point.

It is measured in kilojoules per mole (kJ/mol). The heat of vaporization of ethyl chloride is 26.4 kJ/mol, which is lower than that of other common solvents such as water (40.7 kJ/mol).

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