6. Based on Reference Table F, which
salt is the most soluble?
(1) Agl
(2) AgBr
(3) ZnCO3
(4) K₂SO4
6

Answers

Answer 1

Answer:

Explanation:

Of the options listed, K2SO4 (Potassium sulfate) is the most soluble.


Related Questions

placing an already-developed positive print in a chemical solution that saturates the dark areas of the frame while the lighter areas remain nearly white is known as .

Answers

Toning is the process of immersing a positive print that has previously undergone development in a chemical solution that saturates the frame's dark regions while leaving the brighter regions practically white.

What was the reputation of the 1908-founded film d art company?

When Paul Lafitte established the production business Le Film d'Art in France at the same time (1908), it gained international recognition for its plays-to-film adaptations that starred renowned theater actors.

What was the main issue that early Nickelodeon era directors had to deal with?

Early Nickelodeon era directors faced the fundamental issue that consumers did not comprehend the casual, geographical, and temporal relationships in films, leading to some debate about visual storytelling.

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a 2.4 x 10^-2 solution of benzoic acid is 5.0% dissociated. in a 2.4 x 10^-3 solution the percent of dissociation would be

Answers

The dissociation of a weak acid like benzoic acid in solution is described by the equilibrium expression: [tex]HA < - > H^+ + A^-[/tex]

where HA represents the undissociated acid, H^+ represents the hydrogen ions, and [tex]A^-[/tex] represents the conjugate base. The concentration of dissociated acid, [[tex]H^+[/tex]], can be related to the percent dissociation, %d, as follows:

[tex]\%d = ( [H^+] / [HA] ) \times 100%[/tex]

If we assume that the dissociation is a small fraction of the initial concentration, then we can assume that [tex][HA] = [HA]0[/tex], the initial concentration of the acid. This allows us to simplify the expression for %d as follows:

[tex]\%d = [H^+] / [HA]0 \times 100%[/tex]

We know that the concentration of the [tex]2.4 \times 10^{-2}[/tex] M solution of benzoic acid is 5.0% dissociated.

To find the concentration of the [tex]2.4 x 10^{-3}[/tex] M solution,

we can use the relationship between the concentration and the percent dissociation:

[tex]5.0\% = [H^+] / (2.4 x 10^{-2} \:M) \times 100\%[/tex]

[tex][H^+] = 5.0\% \times (2.4 x 10^{-2} \:M) / 100\%[/tex]

[tex][H^+] = 1.2 x 10^{-3} \:M[/tex]

Finally, to find the percent dissociation of the [tex]2.4 \times 10^{-3}[/tex] M

solution, we use the expression for %d with [HA]0 [tex]= 2.4 \times 10^{-3}[/tex] M:

[tex]\%d = [H^+] / [HA]0 \times 100%\\[/tex]

[tex]\%d = (1.2 \times 10^-3 M) / (2.4 x 10^{-3} \M) \times 100%\\[/tex]

[tex]\%d = 50.0%[/tex]

Therefore, in a [tex]2.4 \times 10^{-3}[/tex] M solution of benzoic acid, the percent of dissociation would be 50.0%.

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Note: the correct question would be as bellow,

A 2.4 x 10^-2 solution of benzoic acid is 5.0% dissociated. in a 2.4 x 10^-3 solution the percent of dissociation would be?

How many fluorine atoms would bond covalently with a single phosphorus atom? Explain

Answers

As per the electronic configuration of phosphorous and fluorine 3 fluorine atoms would bond covalently with a single phosphorus atom.

What is electronic configuration?

Electronic configuration is defined as the distribution of electrons which are present in an atom or molecule in atomic or molecular orbitals.It describes how each electron moves independently in an orbital.

Knowledge of electronic configuration is necessary for understanding the structure of periodic table.It helps in understanding the chemical properties of elements.Elements undergo chemical reactions in order to achieve stability.

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explain why the lowest principle quantum number for a d-orbital is 3 using radial wavefunctions and/or radial distribution function

Answers

The lowest principle quantum number (n) for a d-orbital is 3 because the d-orbital wavefunctions are higher order radial wavefunctions and have a minimum value of n = 3.

This is due to the fact that the wavefunction must have at least three nodes in order to have the correct angular distribution for a d-orbital. The radial wavefunction for an electron in an orbital is proportional to the square root of the radial distribution function, which describes the probability of finding the electron at a certain distance from the nucleus. The radial wavefunction and radial distribution function are related by the Schrödinger equation, which describes the behavior of electrons in an atom. For an electron in an orbital with n = 3, the radial wavefunction has at least three nodes, which means that it changes sign three times as the distance from the nucleus increases. This corresponds to the d-orbital angular distribution and allows the electron to occupy the d-orbital. If the principle quantum number were less than 3, the radial wavefunction would not have enough nodes to correspond to the correct angular distribution for a d-orbital, and the electron would not be able to occupy that orbital.

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All atoms of the same element contain the same number of protons. The atom that has 9 protons can be represented by the symbol
Responses
A BeBe
B OO
C FlFl
D F

Answers

All atoms of the same element contain the same number of protons. The atom that has 9 protons can be represented by the symbol F (fluorine). Therefore, option D is correct.

What is proton ?

The term proton is defined as a subatomic particle found in the nucleus of every atom. The particle has a positive electrical charge, equal and opposite to that of the electron.

Atoms of the same element have the same atomic number therefore, the number of protons are equal. But they have same or different mass numbers .

The atom that has 9 protons can be represented by the symbol F. The atomic number of Fluorine is 9.

Thus, option D is correct.

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What type of reaction is HI + Mg(OH)2 → MgI2 + 2 H2O ?

Answers

The type of reaction is neutralization reaction .

When an acid and base are added together we get the resultant product as salt and water .HI + Mg(OH)2 → MgI2 + 2 H2O  In this reaction when an acid  HI and base Mg(OH)2 are mixed together we get salt of MgI2 and two moles of water.

Sometimes the salt appear as a precipitate in the final product .This reaction is called as neutralization reaction because when acid and base are added they make a neutral products.

Hence when acid and base are add we will get salt and water  as thei resultant neutral products of the reaction  .

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To determine what conditions change the amount of radiation received
from a radioactive source. Materials: Geiger counter, radioactive source for
both beta particles and gamma waves, aluminum, cardboard, and lead
barriers. The Geiger counter probe was positioned 10 cm above the beta
source using a ring stand and clamp. A reading was taken without any
shielding and recorded in the data table. The probe was shielded with
cylinders composed of various materials: cardboard, aluminum, and lead.
The readings were recorded. The beta source was removed and replaced
with a gamma source. The entire procedure was repeated. The data is
shown above. Next the Geiger counter probe was placed behind a frame
that was capable of holding sheets of various materials: cardboard,
aluminum, and lead. The beta source was placed on one side of the
framework and the Geiger counter probe on the other. An initial reading
was made and recorded. One sheet of cardboard was placed between the
beta source and the probe, and a reading was taken. More sheets were
added, as noted in the data table, and radiation readings were taken. The
cardboard sheets were then replaced by aluminum, and finally lead, in the
same sequence as before. Compare the data from the data tables. In
order to minimize any exposure to gamma radiation, the best method
would be to

Answers

Answer:

Explanation:

shield with lead as it provides the highest level of shielding compared to cardboard and aluminum. The data from the experiment likely shows a decrease in the amount of radiation received as more shielding is added and as the type of shielding material is changed from cardboard to aluminum to lead. By analyzing the data and comparing the results, it is possible to determine the effectiveness of different materials in blocking or reducing the amount of radiation from a radioactive source.

what are the four pieces of safety equipment present in each lab? give a brief description of how and when to use them.

Answers

The four pieces of the safety equipment present in each lab is the lab coats, the safety glasses, the disposable gloves, and the eyewash stations.

The four of important safety equipment should be present in the lab are as follows :

The lab coatThe safety glassesThe disposable glovesThe eyewash station

These are the safety equipment must be available in each of the lab. The Chemical spill kits contain the special absorbents , that is used to clean the chemicals and the other items for the cleaning up the chemical spills. We should properly clean our hand after the handling the chemicals.

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which has a higher percentage of the diequatorial-substituted conformer compared with the diaxial-substituted conformer: trans-1,4-dichlorocyclohexane or cis-1-tert-butyl-3-chlorocyclohexane?

Answers

The trans-1,4-dichlorocyclohexane is expected to have a higher percentage of the diequatorial-substituted conformer compared to the diaxial-substituted conformer.

In a trans-isomer, the two substituents are on opposite sides of the ring, resulting in a more stable conformation due to increased bond distances and reduced steric interactions between the substituents. In contrast, in a cis-isomer, the two substituents are on the same side of the ring, leading to increased steric interactions and decreased stability.

Therefore, trans-1,4-dichlorocyclohexane is expected to be more stable and to have a higher proportion of the diequatorial-substituted conformer, compared to the diaxial-substituted conformer. On the other hand, cis-1-tert-butyl-3-chlorocyclohexane is expected to have a lower proportion of the diequatorial-substituted conformer, due to increased steric interactions between the tert-butyl and chloro groups on the same side of the ring.

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in what direction will the equilibrium shift when hydrogen is added at a constant temperature?

Answers

If Q is less than Kc, the reaction will shift to the right , increasing the concentration of the products. If Q is greater than Kc, the reaction will shift to the left

The direction of the equilibrium shift when hydrogen is added to a chemical reaction at a constant temperature will depend on the effect of hydrogen on the reaction quotient, Q. If Q is less than Kc, the reaction will shift to the right (towards the side with more moles of gas), increasing the concentration of the products. If Q is greater than Kc, the reaction will shift to the left (towards the side with fewer moles of gas), increasing the concentration of the reactants. The reaction will come to a new equilibrium when Q = Kc.As the solvent moves up the plate by capillary action, the sample spots will dissolve and move with the solvent, separating into individual components based on their solubility and interaction with the solvent.

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what is the boiling point of an benzene solution that freezes at 1.826 degrees c? normal freezing point is 5.5 and the normal boiling point is 80.1 degrees c. kfp

Answers

the boiling point of the solution, which is 83.774 degrees Celsius. freezing point depression to the normal boiling

To calculate the boiling point of the benzene solution, subtract the normal freezing point of 5.5 degrees Celsius from the given freezing point of 1.826 degrees Celsius to get the freezing point depression of 3.674 degrees Celsius. Then, add this freezing point depression to the normal boiling point of 80.1 degrees Celsius to get the boiling point of the solution, which is 83.774 degrees Celsius. This calculation assumes that both temperatures are given at atmospheric pressure. If the solution is subjected to different pressures, the boiling point will differ accordingly.

=the normal freezing point- freezing point

= 5.5- 1.826

=3.674 degrees

=3.674+80.1

=83.774

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what is the molality of a solution formed by dissolving 1.22 mol of kcl in 16.0 mol of water? express the concentration in moles per kilogram to three significant figures.

Answers

The molality of a solution formed by dissolving 1.22 mol of kcl in 16.0 mol of water is 3.89g/mol.

The number of moles of solute KCI is nKCI  =1.12mol

The number of moles of solvent H2O is nH2O = 16.0mol

Let us calculate the molality of the given solution.

We have to determine the mass of the solvent.

Molar mass of water is

MH2O=2⋅MH+1⋅MO

​=2⋅1.008g/mol+1⋅16g/mol

=18.016g/mol

​The mass of the solvent is

nH2o=mH20/MH2O

mH2O=nH2O⋅MH2O

=16.0mol⋅18.016g/mol

=288.256g⋅ 1kg/1000g

​=0.288kg

​Now, we can calculate the molality of a given solution.

Molality = n KCl/mH2O

​= 1.12mol/ 0.288kg

​= 3.89g/mol

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In the notation, 1s2, the number 1 represents the ________ __________ where electrons are located.
Responses
A outer shellouter shell
B energy levelenergy level

Answers

In the notation, 1s₂, the number 1 represents the energy level where electrons are located. Therefore, option B is correct.

What is energy level ?

The term energy level is defined as  the fixed distances from the nucleus of an atom where electrons may be found. The energy levels are also called as electron shells.

The orbital occupied by the hydrogen electron is called a 1s orbital. The "1" represents the fact that the orbital is in the energy level closest to the nucleus. The "s" tells you about the shape of the orbital.

Thus, option B is correct.

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should the carbon dioxide emissions from our imported copper be attributed to the country where it comes from, or the us? why?

Answers

The carbon dioxide emissions from imported copper should be attributed to both the country where it comes from and the US.

The carbon dioxide emissions generated during the production of copper, such as those from mining, smelting, and refining, should be attributed to the country of origin. On the other hand, emissions generated during the transportation of copper from the country of origin to the US should be attributed to the US. In addition, emissions generated during the end use of copper in the US, such as those generated during the manufacture of products using copper, should also be attributed to the US. Ultimately, the responsibility for emissions generated during the entire lifecycle of the imported copper should be shared between the two countries. This is because both countries have a role to play in reducing emissions, and both will benefit from the reduced emissions.

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if you dissolve 0.3 moles of hbr in 1 l of water, what do you expect to be present in the beaker after the compounds have had time to react?
a.H2Br, OH-, H2O
b.H30+, Br-, H2¬O
c.BrOH, H3O+
d.HBr, H3O+, Br-, H2O

Answers

After the chemicals have had a chance to react, the components HBr, H307, Br", & H2O anticipate being present in the beaker. The right answer is D.

What is HBr in water known as?

Water and the diatomic molecule hydrogen bromide (HBr) combine to form the caustic acid hydrobromic acid. The pH of HBr is 0.21. That's one of the greatest mineral acids. A very acidic environment with corrosive liquid (HBr) are produced when extremely poisonous and miscible in water compressed gases bromine is dissolved into the water.

Why does HBr dissolve in water?

HBr is soluble in water due to its ability to form interparticle hydrogen bonds with water. In HBr, a dipole forms due to the disparity in electron density between H and Br.

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Write the following word equation as skeleton
equation.

1. Solid potassium combines with liquid bromine
to yields solid potassium bromide.

2. Hydrogen gas combines with chlorine gas to
yields Hydrogen chloride gas.

3. Solid magnesium combines with Solid fluoride
to form solid magnesium fluoride.

Answers

A word equation in chemistry is the expression of a chemical reaction in words as opposed to technical formulae. Therefore, the skeleton equation are NaBr+ Br[tex]_2[/tex]→NaKBr, H[tex]_2[/tex] + Cl[tex]_2[/tex] → HCl and Mg + NaF→MgF[tex]_2[/tex].

What is word equation?

A word equation in chemistry is the expression of a chemical reaction in words as opposed to technical formulae. The reactants (initial materials), products (outcomes), and direction of the reaction should be stated in a word equation in a way that might be converted into a chemical equation.

1. Solid potassium combines with liquid bromine to yields solid potassium bromide.

NaBr+ Br[tex]_2[/tex]→NaKBr

2. Hydrogen gas combines with chlorine gas to yields Hydrogen chloride gas.

H[tex]_2[/tex] + Cl[tex]_2[/tex] → HCl

3. Solid magnesium combines with Solid fluoride to form solid magnesium fluoride.

Mg + NaF→MgF[tex]_2[/tex]

Therefore, the skeleton equation are NaBr+ Br[tex]_2[/tex]→NaKBr, H[tex]_2[/tex] + Cl[tex]_2[/tex] → HCl and Mg + NaF→MgF[tex]_2[/tex].

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Although ages are not listed in the dataset, how far are the youngest data points from the ridge?

Answers

It is impossible to determine how far the youngest data points are from the ridge without knowing the ages of the data points.

What is data?

Data is the raw information that is collected, organized and used to analyze a situation or draw conclusions. It can be qualitative, such as opinions from a survey, or quantitative, such as numerical data from a scientific experiment. Data can also be stored in any format such as text, images, audio, video or a combination of all these. Data is used in a wide variety of applications, from predicting weather patterns to tracking consumer trends. It helps businesses, governments, organizations and individuals make better decisions and gain insights into complex problems. Data can also be used to identify patterns, trends and correlations that can lead to actionable insights.

The age of the data points is a crucial factor in determining the distance between them and the ridge.

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describe the sequence of transitions that occur if each sample begins under the conditions at point a and is subjected to increasing pressure but constant temperature.

Answers

If each sample begins at point "a" under constant temperature, increasing pressure causes a sequence of phase transitions to occur. At first, the sample is in a gaseous state and as pressure increases, the gas molecules are compressed and the volume decreases. If pressure continues to increase, the gas molecules eventually reach a critical point where they can no longer exist in a gaseous state and will condense into a liquid state.

As pressure continues to rise, the liquid will become denser, its volume will decrease and its temperature will rise until the liquid reaches its boiling point. At this point, the liquid will rapidly convert into a gas through a process called boiling or evaporation. Further increase in pressure will compress the gas, and at a certain point, the gas will become a supercritical fluid with properties of both a gas and a liquid. This process continues until the maximum pressure is reached.

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Use stoichiometry calculations and show all work:
calculate how many grams of water one could produce if 3.35 grams of H3PO4 react completely.
Reaction: H3PO4(aq) + 3LiOH(aq) = 3H2O(l) + Li3PO4(aq)

Answers

Answer:

Explanation:

To calculate the amount of water produced from the reaction of H3PO4 and LiOH, we can use stoichiometry. We will use the balanced chemical equation:

H3PO4(aq) + 3LiOH(aq) = 3H2O(l) + Li3PO4(aq)

The equation tells us that 1 mole of H3PO4 reacts with 3 moles of LiOH to produce 3 moles of H2O and 1 mole of Li3PO4.

First, we need to convert the amount of H3PO4 (3.35 g) to moles:

3.35 g H3PO4 / 98 g/mol = 0.0342 mol H3PO4

Next, we'll use the mole ratio from the balanced equation to determine the amount of LiOH required:

0.0342 mol H3PO4 * (3 mol LiOH / 1 mol H3PO4) = 0.1026 mol LiOH

Finally, we'll use the mole ratio from the balanced equation to determine the amount of water produced:

0.0342 mol H3PO4 * (3 mol H2O / 1 mol H3PO4) = 0.1026 mol H2O

Converting the amount of water produced (0.1026 mol) to grams:

0.1026 mol H2O * 18 g/mol = 1.84 g H2O

So, if 3.35 grams of H3PO4 react completely with LiOH, 1.84 grams of water would be produced.

the formation of a gas resulting from the escape of high-energy particles from the surface of a liquid is known as group of answer choices deposition. evaporation. melting. sublimation. boiling.

Answers

Evaporation. ( Evaporation is a type of evaporation that occurs at the surface of a liquid as it transitions to the gas phase. )

What are two types of evaporation?

There are two types of evaporation:

evaporation and boiling. Evaporation is a surface phenomenon and occurs only at the phase boundary between the liquid and gas phases. Atoms or molecules on the surface gain energy from the environment, overcome the attraction of other molecules, and evaporate.

How does the temperature affect evaporation?

Water evaporates at low temperatures, but it evaporates faster as the temperature rises. This makes sense. This is because more molecules move faster at higher temperatures. Therefore, the molecule is more likely to have enough energy to leave the liquid and become a gas.

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calculate the freezing point of a solution of 40.0 g benzoic acid, c7h6o2, dissolved in 800. g of benzene, c6h6. k f for benzene is 5.10°c/m and the freezing point is 5.50°c for benzene.

Answers

Our query states that the solution's freezing point is 5.4789°C.

How do melting and freezing points differ?

The melting or freeze point of a substance is the value at which it turns liquid or solid. Depending on the degree of interaction here between particles and their mass, various substances have varying melting points.

We must first determine how many moles or benzoic acid there are. There's many 40.0 grams / 122 g/mol, or 0.328 moles, as benzoic acid has a molar mass of 122 g/mol .

Finally, we can calculate the change in melting point using the formula freezing point= molal freezing point depression constant* molality: freezing point = 5.10°C/m * 0.00041 1 mole = 0.0211°C.

The mass of the solvent, which would be 800 g, must next be determined. This results in a molality of 0.00041 moles/kg or 0.328 mole / (800 g / 1000 g/kg).

[tex]5.50°C - 0.0211°C, which is 5.4789°C.[/tex]

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when nh3(aq) is added to an aqueous solution, a deep-blue color appears. what ion is present in the solution?

Answers

A deep blue colour develops when NH3(aq) is introduced to an aqueous solution. This proves that the NH4+ ion is present in the solution. The ammonium ion (NH4+) is created when ammonia (NH3), which functions as a base, receives a proton (H+) from water.

An odourless gas with a strong scent is called ammonia (NH3). It is one of the most significant and often used chemicals in industry, and it is utilised in the creation of cleaning goods, fertilisers, and refrigerants. Nitric acid, which is used to make explosives, colours, and synthetic fibres, is produced using ammonia as a crucial step. Ammonia is a gas at normal temperature, but under pressure it can be easily liquefied. Ammonium hydroxide, a potent base, is formed when ammonium hydroxide, which has a high affinity for water, quickly dissolves in it. Although ammonia is harmful if inhaled in large amounts, it is an essential part of the nitrogen cycle in the Earth's atmosphere, playing a critical role in the growth .

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What is the molality of lithium ions in a 0.302 m solution of Li3PO4 assuming the compound dissociates completely?

Answers

The molality of Li+ ions in a 0.302 M solution of Li3PO4 is 0.906m.

How is the molarity determined?

The formula for determining molarity from moles and volume is extremely straightforward. Simply divide the volume of the solution by the moles of solute.

How is molality determined? What is molality?

The quantity of solute molecules present in one kilogram of the solvent is known as molality. For instance, a 1 molal NaOH solution contains one that contains 1 mole of NaOH in 1 kg of water. Molality(m) is defined mathematically as the number of moles of the solute(n) weight of the solvent in kilograms.

The number of moles of Li3PO4,

Li₃PO₄ -----> 3Li^+ + PO₄^3-

There are three mole of lithium ions in the compound, it the follows that the molality of the lithium ions is;

3 * 0.302 m = 0.906 m

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which of the following is not true of an atom that has an atomic number of 19 and a mass number of 41? group of answer choices the atom contains 22 neutrons. the atom is potassium. the atom contains 19 neutrons. the atom contains 19 electrons. the atom contains 19 protons.

Answers

The atom contains 19 neutrons is not true of an atom that has an atomic number of 19 and a mass number of 41.

Atomic Composition of Potassium-41

An atom with an atomic number of 19 and a mass number of 41 refers to the element potassium. The atomic number of an element refers to the number of protons in the nucleus of an atom, and in the case of potassium, it has 19 protons. The mass number of an atom refers to the sum of the number of protons and neutrons in its nucleus, and in the case of potassium-41, it has 41 - 19 = 22 neutrons.

It is not true that the atom contains 19 neutrons, but 22 neutrons instead. The number of electrons in an atom is equal to its atomic number, meaning that potassium-41 contains 19 electrons. This information allows us to conclude that potassium-41 has a stable atomic structure with 19 protons, 19 electrons, and 22 neutrons.

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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?
• 12.7
• 1.6
• 12.4
• 1.3

Answers

When you mix 250 ml of 2.1 m HBr with 200 ml of 2.5 m KOH, the resulting solution will have a pH of 13 which is slightly basic in nature. The correct answer is D.

When 250 mL of 2.1 m HBR and 200 mL of 2.5 mKOH are mixed, water and salt are created.

The quantity of hydroxide ions (OH-) produced during the procedure can be used to calculate the pH of the final solution.

The solution contains 2.5 M of OH-, the amount of KOH that was added.

The pH of the solution can be calculated by taking the negative logarithm of the concentration of hydroxide ions, and the pOH of the solution can be calculated using the formula -log[OH-].

Since the pOH is 0.602 in this instance, the pH is 14 - 0.602 = 13.398. The closest answer is 13 so the correct answer is D.

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true / false: elements with standard reduction potentials lower (more negative) than water are susceptible to corrosion in aqueous environments, even when not in contact with another metal.

Answers

Elements with standard reduction potentials lower (more negative) than water are susceptible to corrosion in aqueous environments, even when not in contact with another metal. The statement is true.

Elements with standard reduction potentials lower than that of water are susceptible to corrosion in aqueous environments because they are oxidized in the presence of water. This oxidation reaction results in the release of electrons, which then participate in a series of chemical reactions that can lead to the formation of corroded metal.

Additionally, these elements are also prone to oxidation by dissolved oxygen in the water, which can lead to the formation of metal oxides and the eventual corrosion of the metal surface. Even in the absence of another metal, these elements can still corrode in aqueous environments as a result of their lower reduction potentials and their tendency to react with water and dissolved oxygen.

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ethylene glycol (the main component in antifreeze) has a density of 1.11 g/ml. (a) what is the mass (in g) of 872 ml of ethylene glycol? (b) what is the volume of 2.45 mg of ethylene glycol?

Answers

The mass of 872 ml of ethylene glycol is 972.92g and the volume of 2.45 mg of ethylene glycol is 0.0022ml

To calculate the mass of 872 ml of ethylene glycol, we multiply the volume by its density:

mass = density x volume

mass = 1.11 g/ml x 872 ml

=> 972.92 g

So, the mass of 872 ml of ethylene glycol is 972.92 g.

To calculate the volume of 2.45 mg of ethylene glycol, we need to know its density. Since we have the density (1.11 g/ml), we can use the following formula:

mass = density x volume

volume = mass / density

First, we need to convert 2.45 mg to g, so we divide by 1000:

mass (g) = 2.45 mg / 1000 = 0.00245 g

Now we can calculate the volume:

volume = 0.00245 g / 1.11 g/ml = 0.0022 ml

So, the volume of 2.45 mg of ethylene glycol is 0.0022 ml.

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provide an acidic or basic environment to optimize digestion called?

Answers

Chemical environments that promote digestion should be provided.

Why do you use the word "acidic"?

(a-SIH-dih-tee) explains how much acid is present in a material. A chemical that transfers hydrogen into water and interacts with specific metals to produce salts is known as an acid. Alkalinity is defined as a measurement termed this same pH scale.

What are acidic and basic terms?

Any hydrogen-containing material that has the ability to donate an electron (hydronium ion) to another chemical is considered an acid. A base is still a compound or ion that can take up an acid's hydrogen ion. Acidic chemicals may usually be identified by their sour tastes.

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The ability of molecules to stick to each other is termed
A. cohesion.
B. solvent.
C. hydrophilic
D. adhesion
E. hydrophobic

Answers

This is known as cohesion

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the normal boiling point for hbr is higher than the normal boiling point for hcl. this can be explained by question 16 options: a) larger dipole-dipole forces for hbr. b) larger dispersion forces for hbr. c) larger hydrogen-bond forces for hbr. d) larger dipole-dipole forces, larger dispersion forces, and larger hydrogen-bond forces for hbr.

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A higher dispersion force than HBR leads to a higher boiling point of HBR and a larger force between dipoles.

Both HBr and HCl are polar molecules. Therefore, both molecules have dipole-dipole interactions. The attraction is greater with Hcl and HBR than with Hcl alone. Dipole-dipole forces occur between molecules with permanent dipoles (polar molecules). For molecules of similar size and mass, these forces increase with increasing polarity. Polar molecules also induce dipoles in nonpolar molecules, resulting in dipole-induced dipole forces. A higher dispersion force than HBR leads to a higher boiling point of HBR and a larger force between dipoles.

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