what happens when an acidic solution is mixed with a basic solution? Give an example​

Answers

Answer 1

Answer: Neutralization reaction

Explanation:

When an acidic solution is mixed with a basic solution, the result is a neutralization reaction. Neutralization reactions are reactions between acids and bases that result in the formation of a salt and water.

Acid + Base → Salt + Water

Here are some examples of acid-base reactions:

H.ydrochloric acid (HCl) and sodium hydroxide (NaOH):

HCl + NaOH → NaCl + H2O

Sulfuric acid (H2SO4) and calcium hydroxide (Ca(OH)2):

H2SO4 + Ca(OH)2 → CaSO4 + 2H2O


Related Questions

Which of the following best describe what the major extinctions noted on the timeline indicate?

Read Passage
A
All organisms before those extinctions were wiped out, and life on Earth began again after each extinction.
B
No fossil evidence prior to these extinctions survives.
C
The Earth did not form until 540 million years ago.
D
Many, but not all, species of life on Earth were wiped out by these extinctions.

Answers

Answer:

D - Many, but not all, species of life on Earth were wiped out by these extinctions.

Explanation:

The major extinctions noted on the timeline indicate that many species of life on Earth were wiped out during these events, but not all. The extinctions had a significant impact on the biodiversity of life on Earth and shaped the evolution of life as we know it today. The fossil evidence shows that some species survived the extinctions, while others disappeared completely. These events provide a window into the complex history of life on Earth and the impact of environmental and geological factors on the evolution of life.

Answer:

D...................................

Explanation:

The strength of an ionic bond comes principally from:a) The converting of atoms into compounds.b) The movement of electrons from cations to anions.c) The mutual attraction of opposite electrical charges.d) The sharing of electrons.

Answers

The strength of ionic bond is principally from the mutual attraction of opposite charges. So the correct option here is C.

Ionic compounds are formed by the interaction of electropositive metals and electronegative non metals. The difference in electronegativities are so high that the electrons are completely transferred between atoms to form the bond.

The metals, having 1 or 2 electrons in the outer shell gives up the electrons to complete octet electron configuration and becomes positively charged ions. The non metals need one or two electrons to complete octet, so they take the electrons given by the metals, and thus become negatively charged ions.

So the attraction between the positive and negative charged ions is the reason the compound exists. So the mutual attraction of opposite charge is the strength of ionic bond.

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which of the following related to phase changes of water is incorrectly matched? which of the following related to phase changes of water is incorrectly matched? deposition - energy released melting - energy absorbed condensation - energy released sublimation - energy absorbed evaporation - energy released

Answers

Determine the water phase transition that is not appropriately matched: Melting - energy absorbed (should be energy released).

Melting - energy absorbed is the wrong answer in the options that are connected to the phases of water. In order to overcome the intermolecular interactions and transform the solid state of the material into a liquid, energy must be absorbed by the substance during melting. In contrast, energy is released when water vapour transforms into liquid in condensation as opposed to deposition, when it transforms into ice first. When solid ice transforms into water vapour in the process of sublimation, energy is absorbed, and as liquid water transforms into water vapour in the process of evaporation, energy is released.

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The colligative molality of seawater is approximately 1.10 m. Calculate the vapor pressure of sea water at 20°C. The vapor pressure of pure water at 20°C is 17.54 Torr?

Answers

From the given information using the colligative property, the vapor pressure of seawater at 20°C is approximately 17.07 Torr.

To calculate the vapor pressure of seawater at 20°C, we can use the following equation:

ΔP = P°(solvent) - P(solvent)

where ΔP is the change in vapor pressure, P°(solvent) is the vapor pressure of the pure solvent (water), and P(solvent) is the vapor pressure of the solvent in the solution (seawater). We can solve for P(solvent) to get the vapor pressure of seawater.

The vapor pressure of pure water at 20°C is given as 17.54 Torr. We can assume that the seawater solution is dilute and therefore can use the following approximation:

ΔP ≈ -Km

where K is the cryoscopic constant (for water, K = 1.86 °C/m) and m is the molality of the solution.

Substituting the given values, we get:

ΔP = -Km = -1.86 °C/m × 1.10 m = -2.046 °C

To convert this temperature change to a vapor pressure change, we can use the Clausius-Clapeyron equation:

ln(P°(solvent)/P(solvent)) = ΔHvap/R × (1/T(solvent) - 1/T°)

where ΔHvap is the enthalpy of vaporization of the solvent, R is the gas constant, T(solvent) is the temperature of the solvent in kelvin (20 + 273 = 293 K), and T° is the normal boiling point of the solvent (100°C or 373 K for water).

We can solve for P(solvent) to get:

P(solvent) = P°(solvent) × exp(-ΔHvap/R × (1/T(solvent) - 1/T°))

The enthalpy of vaporization of water is approximately 40.7 kJ/mol, and R is 0.08206 L·atm/mol·K.

Substituting the values, we get:

P(solvent) = 17.54 Torr × exp(-40700 J/mol / (0.08206 L·atm/mol·K × 293 K) × (1/293 K - 1/373 K)) = 17.07 Torr

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what do we call electrons that are in the outermost energy level of an atom?

Answers

Electrons that are in the outermost energy level of an atom are referred to as "valence electrons."

Valence electrons are the electrons that are involved in chemical reactions and bonding, and they play a crucial role in determining the chemical properties of an element.

In general, the number of valence electrons in an atom is related to the position of the element in the periodic table. Elements in the same group (vertical column) have the same number of valence electrons, and this number increases as you move from left to right across a period (horizontal row). The arrangement of valence electrons is important for understanding chemical reactivity, because it determines the way in which atoms bond with each other to form molecules.

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What is the function of this monosaccharide molecule?
please help

Answers

Answer:  produce and store energy.

Explanation:

The Arrhenius equation is k = Ae^-E_a/RT. The slope of a plot of lnk vs. 1/T is equal to -k k E_a -Ea/R A When the concentrations of reactant molecules are increased, the rate of reaction increases. The best explanation for this phenomenon is that as the reactant concentration increases, the average kinetic energy of molecules increases. the frequency of molecular collisions increases. the rate constant increases. the activation energy increases. the order of reaction increases.

Answers

A plot of lnk vs. 1/T has a slope of -k k E a -Ea/R A. The pace of reaction increases as the concentrations of reactant molecules rise. The average kinetic energy of molecules increases as the reactant concentration rises, which is the best explanation for this occurrence.

what is concentration?

Concentration in chemistry is calculated by dividing a constituent's abundance by the mixture's total volume. Mass concentration, molar concentration, number concentration, and volume concentration are four different categories of mathematical description.

what is a molecule?

According to the context, the term may or may not include ions that meet this requirement. A molecule is a collection of two or more atoms held together by attractive forces known as chemical bonds.

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What is the area of science that studies tiny particles like atoms?

Answers

Answer: Chemistry (mainly)

Explanation:

if you mean studying atoms, then yes, chemistry.

The equilibrium SO₂Cl₂ (g) --> SO₂ (g) + Cl₂ (g) is attained at 25 °C in a closed container.
When the concentration of Cl₂ is increased keeping the temperature constant, which of the following statements are correct?
a) Concentration of SO₂ is increased
b) Concentration of SO₂Cl2 is decreased
c) Concentration of SO₂ is decreased
d) None of the above

Answers

Answer:The correct statement is b) Concentration of SO2Cl2 is decreased.

Explanation:The equilibrium expression for the reaction can be written as follows:

Kc = [SO2Cl2] / [SO2] [Cl2]

At equilibrium, the concentration of reactants and products remain constant. When the concentration of Cl2 is increased while keeping the temperature constant, the reaction will shift to the right in order to consume the excess Cl2. This will result in an increase in the concentration of SO2 and a decrease in the concentration of SO2Cl2.

So, the correct statement is b) Concentration of SO2Cl2 is decreased.

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What is the total pressure?

What is the partial pressure of Cl2?

Answers

The partial pressure of Cl2 is calculated by taking the chemical equation that is mentioned below. In an equilibrium mixture at 500 K, the partial pressure of PCl5 is 0.860 atm and that of PCl3 is 0.350 atm.

The partial pressure of Cl2 at equilibrium is. Q. 'a' mol of PCl5 undergoes thermal dissociation as-

PCl5⇌PCl3+Cl2;

the mole fraction PCl3 at equilibrium is 0.25 and the total pressure is 2 atm. The partial pressure can be calculated as follows: P(gas 1) = x(gas 1) * P(Total); where x(gas 1) = no of moles(gas 1)/ no of moles(total). As you can see the above formulae does not require the individual volumes of the gases or the total volume.

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When a lab instructor checked the stockroom, he found 60.0 grams of sodium hydroxide left in the container. What volume (in mL) can he make of a 0.25 M solution?

to find percent by volume: [tex]\frac{volume of solute (mL)}{volume of solution (mL)}[/tex] X 100

to find Molarity: [tex]\frac{moles}{liters}[/tex]

Answers

Therefore, the lab instructor can make 6000 mL (or 6.00 L) of a 0.25 M solution from 60.0 grams of sodium hydroxide.

what is sodium hydroxide ?

Sodium hydroxide (NaOH) is a highly caustic and reactive compound that is also known as lye or caustic soda. It is an inorganic base that is typically produced through the electrolysis of a sodium chloride (salt) solution.

Sodium hydroxide is commonly used in many industrial processes

To find the volume (in mL) of a 0.25 M solution that can be made from 60.0 grams of sodium hydroxide, we can use the following formula:

moles of solute = Molarity x volume (in liters)

First, we need to calculate the number of moles of sodium hydroxide present in 60.0 grams:

moles of NaOH = mass / molar mass

moles of NaOH = 60.0 g / 40.00 g/mol (molar mass of NaOH)

moles of NaOH = 1.50 mol

Next, we can rearrange the formula to solve for the volume (in liters) of the solution:

volume = moles of solute / Molarity

volume = 1.50 mol / 0.25 M

volume = 6.00 L

Finally, we can convert the volume to milliliters:

volume (in mL) = 6.00 L x 1000 mL/L

volume (in mL) = 6000 mL

Therefore, the lab instructor can make 6000 mL (or 6.00 L) of a 0.25 M solution from 60.0 grams of sodium hydroxide.

To find percent by volume, we need to know the volume of solute and the volume of solution. Percent by volume is calculated as:

percent by volume = (volume of solute / volume of solution) x 100

To find Molarity, we can use the formula:

Molarity = moles of solute / volume of solution (in liters)

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Why is it advised to add concentrated acid to water and not water to the acid?

Answers

Acid first forms a highly concentrated solution when water is added to it, and this solution may vigorously boil, spitting concentrated acid. Acid and water combine to form an incredibly dilute solution that cannot be vaporized and spattered because of the insufficient heat output.

An exothermic reaction occurs when water is introduced to a concentrated acid; the heat that is produced may cause the liquid to splash out and cause burns. In contrast, the mixture won't splash out when acid is gradually added to water while stirring continuously since less heat is produced. Concentrated acid is splashed out of the container when water is added to the solution, which causes the solution to violently boil. Here, hydration results in an exothermic process that releases a significant quantity of energy. As a result, concentrated acid is introduced to water instead of the other way around.

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a compound, naclox, where x is unknown, was found experimentally to contain 29.0 % of chlorine by mass. what is the value of x?

Answers

x is 1. Sodium chloride (NaCl) is a binary ionic compound composed of sodium (Na) cations and chloride (Cl) anions.

The empirical formula for sodium chloride is NaCl, which means that each formula unit of sodium chloride contains one sodium cation (Na+) and one chloride anion (Cl-).

Since the compound was found to contain 29.0% of chlorine by mass, the molar mass of the compound can be determined as follows:

Mass of Cl = 29.0 g Cl / 100 g compound

Mass of Na = 71.0 g compound - 29.0 g Cl

Moles of Cl = Mass of Cl / Atomic mass of Cl

Moles of Na = Mass of Na / Atomic mass of Na

Since the ratio of sodium cations to chloride anions is 1:1, the number of moles of sodium cations is equal to the number of moles of chloride anions. The empirical formula for the compound is therefore NaCl, and the value of x is 1.

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a student was asked to determine the concentration of ammonia, a volatile substance, in a commercially available cloudy ammonia solution used for cleaning. first, the student pipetted 25.00ml of the cloudy ammonia solution into a 250.0 ml conical flask. 50.00 ml of 0.100 m hcl(aq) was immediately added to the conical flask which reacted with the ammonia in solution. the excess (unreacted) hcl was then titrated with 0.050 m na2co3(aq). 21.50ml of na2co3(aq) was required. calculate the concentration of the ammonia in the cloudy ammonia solution.

Answers

Based on the provided data, the concentration of ammonia in the cloudy ammonia solution is 0.200 M.

Calculation of Concentration of Ammonia in a Cloudy Ammonia Solution

The balanced chemical equation for the reaction between ammonia and hydrochloric acid is:

NH3(aq) + HCl(aq) → NH4Cl(aq)

From the equation, we see that one mole of ammonia reacts with one mole of hydrochloric acid to produce one mole of ammonium chloride.

To determine the concentration of ammonia in the cloudy ammonia solution, we need to find out how many moles of hydrochloric acid were used to react with the ammonia.

The number of moles of HCl used is:

moles of HCl = concentration of HCl × volume of HCl used

moles of HCl = 0.100 mol/L × 0.0500 L

moles of HCl = 0.00500 mol

Since the reaction is 1:1 between HCl and NH3, the number of moles of NH3 in the cloudy ammonia solution is also 0.00500 mol.

The volume of the cloudy ammonia solution used is 25.00 mL, which is equivalent to 0.02500 L.

The concentration of ammonia in the cloudy ammonia solution is:

concentration of NH3 = moles of NH3 / volume of cloudy ammonia solution

concentration of NH3 = 0.00500 mol / 0.02500 L

concentration of NH3 = 0.200 mol/L or 0.200 M

Therefore, the concentration of ammonia in the cloudy ammonia solution is 0.200 M.

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If 20cm^3 of potassium chloride was titrated with 60cm^3of 0.105M silver nitrate solution,calculate the molarity of potassium chloride solution

Answers

According to molar concentration, the  molarity of potassium chloride solution is 0.315 M.

What is molar concentration?

Molar concentration is defined as a measure by which concentration of chemical substances present in a solution are determined. It is defined in particular reference to solute concentration in a solution . Most commonly used unit for molar concentration is moles/liter.

The molar concentration depends on change in volume of the solution which is mainly due to thermal expansion. Molar concentration is calculated by the formula, molar concentration=mass/ molar mass ×1/volume of solution in liters.

In case of 2 solutions, it is calculated as, M₁V₁=M₂V₂ which on substitution gives M₁=0.105×60/20=0.315 M.

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the concentration of carbon dioxide in surface water is low, whereas the concentration of oxygen is high because of the .

Answers

Because of the process of photosynthesis, surface water normally has a low percentage of carbon dioxide (CO2) and a high concentration of oxygen (O2).

In order to create organic matter and release oxygen as a byproduct, plants, algae, and some bacteria engage in a process known as photosynthesis. In aquatic conditions, phytoplankton—a microscopic algae that floats close to the water's surface—performs the majority of the photosynthesis.

During photosynthesis, phytoplankton take in carbon dioxide from the water and utilise it to fuel a sequence of chemical reactions that result in the production of organic matter. The amount of carbon dioxide in the water therefore drops. At the same time, oxygen is released by phytoplankton as a byproduct, raising the oxygen content in the liquid. This explains why surface water often has a high oxygen content.

Other elements, such as gas exchange with the atmosphere, the breakdown of organic materials, and aquatic species' respiration, can also have an impact on the amount of carbon dioxide in surface water. The main mechanism, however, for the high concentration of oxygen and low concentration of carbon dioxide in surface water is photosynthesis.

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Transcribed image text: Select the keyword or phrase that will best complete each sentence. Select the keyword or phrase that will best complete each sentence. A tetrahedral carbon is____hybridized while a linear carbon is_____hybridized. Two different compounds that have the same molecular formula are known as_______. Pi (pi) bonds are generally____than sigma (sigma) bonds. Hybridization is the combination of two or more______orbitals to form the same number of____orbitals, each having the same shape and energy. A_____bond is formed by side-by-side overlap of two p orbitals. The____is a measure of an atom's attraction for electrons in a bond and indicates how much a particular atom ''wants" electrons. Two Lewis structures that have the same atomic placement and a structure but a different arrangement of pi electrons are called_____. All single bonds are_____bonds.

Answers

The answer for the blanks are: sp3, sp, isomers, weaker, atomic, hybrid, pi, electronegativity, resonance structures, sigma (in the sequence of the blanks)

A tetrahedral carbon is sp3 hybridized while a linear carbon is sp hybridized. Two different compounds that have the same molecular formula are known as isomers. Pi (pi) bonds are generally weaker than sigma (sigma) bonds. Hybridization is the combination of two or more atomic orbitals to form the same number of hybrid orbitals, each having the same shape and energy. A pi bond is formed by side-by-side overlap of two p orbitals. The electronegativity is a measure of an atom's attraction for electrons in a bond and indicates how much a particular atom ''wants" electrons. Two Lewis structures that have the same atomic placement and a structure but a different arrangement of pi electrons are called resonance structures. All single bonds are sigma bonds.

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in any organic redox reaction, you can recognize the reduced and oxidized organic molecules by tracking the charges between products and reactants. reduction corresponds to an increased charge . oxidation corresponds to

Answers

Reduction corresponds to an increased charge, while oxidation corresponds to a decreased charge.

Reduction involves a decrease in oxidation number and an increase in charge. On the contrary, oxidation of a compound or an element in a reaction involves increase in oxidation number and a decrease in overall charge.

Reduction is a process in which hydrogen ions are added to the reactant, while oxidation experiences a loss of hydrogen ions. Another aspect of redox reactions involves addition of electrons in reduction, while loss of electrons in oxidation. Redox reactions are the chemical reactions in which there is a chemical change in the substrate or the reactants. Where reduction stores energy, oxidation releases it.

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what is the percent abundance (in units of percent) of zinc in a sample whose density is 7.796 g/ml and the only other component is copper? the density for pure copper is 8.96 g/cm3 and the density of pure zinc is 7.13 g/cm3. report your answer to one decimal place.

Answers

The percent abundance of zinc is approximately 73.8%, a sample whose density is 7.796 g/ml and the density for pure copper is 8.96 g/cm3 and the density of pure zinc is 7.13 g/cm3.

What do you mean by the density ?

The term density is defined as the measurement of how tightly a material is packed together.

It is also defined as the mass per unit volume.

Formula: ρ = m/V,

where ρ is the density, m is the mass of the object and V is the volume of the object.

Density of mixture = (density of copper)(percent abundance of copper) + (density of zinc)(percent abundance of zinc)

Now, Converting the densities to consistent units, we have:

density of mixture

= (8.96 g/cm³)(0.01)(100 - x) + (7.13 g/cm³)(0.01)(x)

By simplifying and converting to g/mL, we get:

density of mixture = 0.0896 g/mL (100 - x) + 0.0713 g/mL (x)

density of mixture = 0.0896 g/mL (100) - 0.0896 g/mL (x) + 0.0713 g/mL (x)

density of mixture = 8.96 g/mL - 0.0183 g/mL (x)

Then, we can use the given density of the mixture (7.13 g/mL) to solve for x:

7.13 g/mL = 8.96 g/mL - 0.0183 g/mL (x)

0.0183 g/mL (x) = 1.35 g/mL

x = 73.8

Thus, the percent abundance of zinc is approximately 73.8%.

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Which mass of Carbon id produced?

Answers

Answer:

(c) 4.4g

Explanation:

Given:

mass of calcium carbonate (mCaCO3) = 10g

MrCaCO3 = 100

To find: mCO2

Solution:

CaCO3 + 2HCl → CaCl 2 + H2O + CO2

Now,

MrCaCO3 = 40 + 12 + 16.3 = 100

Therefore,

Number of moles (n) = m/Mr

nCaCO3 = 10/100 = 0.1

The amount of moles is proportional to the coefficient of the reaction. Since both calcium carbonate (CaCO3) and carbon dioxide (CO2) have the same coefficient.

nCO2 = 0.1

MrCO2 = 12 + 16.2 = 44

mCO2 = 0.1 × 44 = 4.4g

can you assume that any coloration you see in an animal is cryptic? why or why not

Answers

No, it is not safe to assume that any coloration seen in an animal is cryptic. While many animals have evolved to have coloration that helps them blend into their environment and avoid predators or attract mates, there are also many animals that have bright and conspicuous coloration for other reasons, such as warning predators of their toxicity or advertising their fitness to potential mates. Therefore, it is important to consider the specific context and behavior of the animal before making assumptions about the purpose of its coloration.

What is cryptic colouration?

Cryptic coloration refers to an animal's ability to blend in with its environment, making it difficult for predators or prey to spot them. This can help the animal avoid being detected, making it easier to hunt or avoid being hunted. Cryptic coloration can take many forms, including camouflage, mimicry, or disruptive coloration, and is a common adaptation seen in many species of animals, including insects, birds, reptiles, and mammals.

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if a reaction starts with 0.480 mol mg how many moles of silver are produced?

Answers

From the balanced chemical equation:

1 mol  Mg reacts with 2 mol  Ag Therefore, the number of moles of Ag produced can be calculated as:

[tex]0. 80 mol Mg × (2 mol Ag / 1 mol Mg) = 0.960 mol Ag[/tex]

Therefore , if the reaction starts with 0.80 mol with Mg and continues to the end, 0.960 mol  Ag is formed.

In chemistry, moles are a unit of measurement that are used to describe how much a material is present. Avogadro's number, or roughly 6.022 x 1023 particles, is referred to as the quantity of entities in a substance that is equivalent to that amount. For expressing vast amounts of compounds and doing computations in chemical reactions, moles are a useful unit. Molecules can be employed in a chemical reaction to calculate the quantity of reactants and products and to balance the equation. Additionally, moles are employed in stoichiometry, the area of chemistry concerned with the numerical features of chemical reactions. The mole is a crucial notion in chemical calculations because it gives a mechanism to translate between a substance's mass and the number of particles it contains.

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If a reaction starts with 0.480 mol Mg how many moles of silver are produced

Mg + 2AgNO3 --> Mg(NO3) + 2Ag

nuclei differ in their stability, and some are so unstable that they undergo radioactive decay. the ratio of the number of neutrons to the number of protons in a nucleus (n/z) correlates with its stability. calculate the n/z ratio for 147sm.

Answers

Nuclei differ in their stability, and some are so unstable that they undergo radioactive decay. the ratio of the number of neutrons to the number of protons in a nucleus (n/z) correlates with its stability. 1.41 is the n/z ratio for 147Sm.

What is radioactive decay?

The process by which an unstable atomic nucleus loses energy through radiation is known as radioactive decay (also referred as nuclear decay, radioactivity, radioactive disintegration, and nuclear disintegration). A radioactive substance is one that contains unstable nuclei.

Nuclei differ in their stability, and some are so unstable that they undergo radioactive decay. the ratio of the number of neutrons to the number of protons in a nucleus (n/z) correlates with its stability.

n/z ratio = 88/62= 1.41

Therefore, 1.41 is the n/z ratio for 147Sm.

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calculate the molality of a solution that contains 2.33 g carvone in 17.6 ml of ethanol (density 0.7893 g/ml). assume that carvone is nonvolatile at the normal boiling point of ethanol and that it is a nonelectrolyte.

Answers

The molality of a solution that contains 2.33 g carvone in 17.6 ml of ethanol , the density is 0.7893 g/ml is 1.12 molal.

Mass of  carvone = 2.33 grams

Volume of ethanol = 17.6 mL

Density of ethanol = 0.789 g/mL

Molar mass carvone = 150.22 g/mol

Moles carvone = mass carvone  / molar mass carvone

Moles carvone = 2.33 grams / 150.22 g/mol

Moles carvone  = 0.0155 mol

Mass ethanol = density × volume

Mass ethanol = 0.7893 g/mL  × 17.6 mL

Mass ethanol = 13.89 grams = 0.0138 kg

Molality = moles carvone / mass ethanol

Molality = 0.0155 / 0.0138

             = 1.12 molal

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The ratio is very close to 1 C to 2 H.
What is the empirical formula?
A. C₂H
B. CH₂
C. C₂H₂

Answers

The ratio is very close to 1 C to 2 H. Then the empirical formula is CH₂. Therefore, option B is correct.

What is an empirical formula ?

An Empirical formula is the chemical formula of a compound that gives the proportions (ratios) of the elements present in the compound but not the actual numbers or arrangement of atoms. This would be the lowest whole number ratio of the elements in the compound.

To find the ratio or the moles of each element by dividing the number of moles of each by the smallest number of moles.

In CH₂ there are one carbon and two hydrogen atoms are present. Hence, CH₂ is an empirical formula.

Thus, option B is correct.

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Calculate the pH of a solution prepared by mixing 15.0 mL of 0.50 M NaOH and 30.0 mL of 0.50 M benzoic acid solution. (Benzoic acid is monoprotic; its dissociation constant is 6.5 x 10-5.)

Answers

This seems to be very complicated hope you get the answer

Look at the diagram shown below. Could this equipment be used to find out how much energy a fuel
gives out when it burns?
no
yes
Thermometer
Container
B
Lid
Mixed chemicals

Answers

Answer: Yes

Explanation:

Answer:

YESS

Explanation:

This equipment could be used to find out how much energy a fuel gives out when it burns. By measuring the temperature change in the container, the energy released by the combustion reaction can be calculated. The thermometer measures the temperature change and the container is used to hold the mixed chemicals (fuel and oxidizer). The lid is used to prevent the loss of heat and to create a closed system for the reaction to take place.


ALLEN

what is the total enthalpy change (in kj/mol) for the dissociation of a mole of hydrogen gas at stp?

Answers

the total enthalpy change for the dissociation of a mole of hydrogen gas at STP is 872 kJ/mol.

The dissociation of hydrogen gas (H2) into individual hydrogen atoms (2H) can be represented by the following chemical equation:

H2(g) → 2H(g)

The standard enthalpy change of this reaction is given by the bond dissociation energy of the H-H bond in H2, which is 436 kJ/mol. Since two H-H bonds are broken in the dissociation of one mole of H2, the total enthalpy change for the reaction is:

2 × 436 kJ/mol = 872 kJ/mol

Therefore, the total enthalpy change for the dissociation of a mole of hydrogen gas at STP is 872 kJ/mol.

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What is the mole ratio for hydrochloric acid and chlorine?
2MnO2 + 4HCl → 2MnCl2 + 2H2O + 2Cl2

Answers

Answer:

4:2 (2:1 simplified)

Explanation:

Check the coefficients!

which of the following aqueous solutions will have the highest boiling point? which of the following aqueous solutions will have the highest boiling point? 0.10 m na2so4 0.20 m glucose 0.10 m nacl 0.10 m srso4 0.25 m sucrose

Answers

Among the given aqueous solutions, 0.25 M sucrose will have the highest boiling point. Boiling point of a substance is the point in which the vapor pressure of a liquid is equal to the surrounding pressure.

Here we have given the molality of different aqueous solutions including 0.10 M [tex]Na_{2} SO_{4}[/tex] , 0.20 M glucose, 0.10 M [tex]NaCl[/tex], 0.10 M [tex]Sr SO_{4}[/tex] and 0.25 M sucrose.

The boiling point will be depending on the molality of each solution given. Molality is the number of moles of solute per kilogram of solvent. When molality is higher boiling point also will be higher.

We are considering the solutions with same temperature and pressure. Now the solution with the highest molality will be the one with the highest boiling point.

0.10 M [tex]Na_{2} SO_{4}[/tex]: [tex]Na_{2} SO_{4}[/tex] has a molar mass of 142 g/mol, so 0.10 M means there are 14.2 g of [tex]Na_{2} SO_{4}[/tex] per liter of solution. If we assume the density of the solution is 1 g/mL, then the molality is 0.10 mol / 0.1 kg = 1.0 m.

0.20 M glucose: Glucose has a molar mass of 180 g/mol. That is 0.20 M means there are 36 g of glucose per liter of solution. If we assume the density of the solution is 1 g/mL, then the molality is 0.20 mol / 0.1 kg = 2.0 m.

0.10 M [tex]NaCl[/tex]: [tex]NaCl[/tex] has a molar mass of 58.5 g/mol. That is 0.10 M means there are 5.85 g of [tex]NaCl[/tex] per liter of solution. If we assume the density of the solution is 1 g/mL, then the molality is 0.10 mol / 0.1 kg = 1.0 m.

0.10 M [tex]SrSO_{4}[/tex]: [tex]SrSO_{4}[/tex] has a molar mass of 183.7 g/mol. That is 0.10 M means there are 18.37 g of [tex]SrSO_{4}[/tex] per liter of solution. If we assume the density of the solution is 1 g/mL, then the molality is 0.10 mol / 0.1 kg = 1.0 m.

0.25 M sucrose: Sucrose has a molar mass of 342 g/mol. That is 0.25 M means there are 85.5 g of sucrose per liter of solution. If we assume the density of the solution is 1 g/mL, then the molality is 0.25 mol / 0.1 kg = 2.5 m.

Therefore, the solution with the highest molality and hence the highest boiling point will be 0.25 M sucrose.

Learn more about boiling point:

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