Determine the pH of the following two component solutions.
8.6×10−2 M HClO4 and 2.6×10−2 M KOH.

Answers

Answer 1

To find the pH of the given solution, we first need to determine if the solution is acidic, basic or neutral. We can do this by comparing the concentration of H+ and OH- ions in the solution.

The balanced chemical equation for the reaction between HClO4 and KOH is:

HClO4 + KOH → KClO4 + H2O

From the equation, we can see that 1 mole of HClO4 reacts with 1 mole of KOH to produce 1 mole of water and 1 mole of KClO4.

The concentration of H+ ions in the solution can be found by calculating the concentration of HClO4 that dissociates:

[H+] = [HClO4] = 8.6×10^−2 M

The concentration of OH- ions in the solution can be found by calculating the concentration of KOH that dissociates:

[OH-] = [KOH] = 2.6×10^−2 M

Since the concentration of H+ ions is greater than the concentration of OH- ions, the solution is acidic. To find the pH of the solution, we can use the pH equation:

pH = -log[H+]

Substituting the value of [H+] in the equation, we get:

pH = -log(8.6×10^−2)

pH = 1.07

Therefore, the pH of the given solution is 1.07.

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Related Questions

Which types of posted signs convey information about chemical storage? (Select all that apply)
Hazard signs such as "Flammable," "Oxidizer," and "Corrosive"
Exit sign
Gas Cylinder sign
National Fire Protection Association (NFPA) diamond
Safety equipment signs such as "Safety Shower" and "Eyewash Station"

Answers

Hazard signs such as "Flammable," "Oxidizer," and "Corrosive" National Fire Protection Association (NFPA) diamond Gas Cylinder sign posted signs convey information about chemical storage.

Pictograms are pictorial symbols that are used to express particular information about a chemical's risks. OSHA mandates pictograms on principal labels to indicate chemical dangers. The exact OSHA danger categorization determines each pictogram(s). There are several forms of risks in the workplace, including chemical, ergonomic, physical, and psychological hazards, to mention a few. Dangerous situations. Employees who operate with machinery or on construction sites are more likely to be exposed to safety concerns.  Biological dangers. Biological dangers are exceedingly hazardous  Physical dangers Ergonomic risks Chemical risks Workload risks.

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In which direction will the electrons be pulled in the bond between hydrogen and chlorine?
toward the chlorine atom
toward both atoms equally
sometimes toward chlorine and sometimes toward hydrogen
toward the hydrogen atom

Answers

Answer:

toward the hydrogen atom

Explanation:

Answer:

toward the chlorine atom.

Explanation:

took the quiz and got it correct :)

different liquids have widely differing vapor pressures at the same temperature. discuss this range of vapor pressures in terms of entropy and enthalpy with regard to the attractive intermolecular (im) forces between molecules and the degree of dispersal between the liquid and gaseous states.

Answers

The range of vapor pressures in different liquids at the same temperature can be explained in terms of entropy and enthalpy. Liquids with weaker intermolecular forces tend to have higher vapor pressures due to higher entropy, while liquids with stronger intermolecular forces tend to have lower vapor pressures due to lower enthalpy.

Different liquids have widely differing vapor pressures at the same temperature due to variations in their intermolecular forces and the degree of dispersal between the liquid and gaseous states.

The vapor pressure of a liquid is the pressure exerted by its vapor when it is in equilibrium with its liquid phase at a given temperature. It depends on the attractive intermolecular forces between the molecules and the extent to which the liquid molecules can escape into the gas phase.

1. Entropy: Entropy is a measure of the disorder or randomness in a system. Liquids with weaker intermolecular forces have higher entropy because the molecules are more free to move and disperse. These liquids tend to have higher vapor pressures at a given temperature because the molecules can more easily overcome the attractive forces and enter the gas phase.

2. Enthalpy: Enthalpy is a measure of the total energy of a system. Liquids with stronger intermolecular forces have lower enthalpy because more energy is required to break the attractive forces and convert the liquid into a gas. These liquids tend to have lower vapor pressures at a given temperature because fewer molecules can overcome the attractive forces and enter the gas phase.

For example, consider two liquids: water and ethanol. Water has strong hydrogen bonding between its molecules, resulting in lower entropy and higher enthalpy. As a result, water has a lower vapor pressure at a given temperature compared to ethanol, which has weaker intermolecular forces. Ethanol has higher entropy and lower enthalpy, allowing more molecules to escape into the gas phase and resulting in a higher vapor pressure.


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A balloon has an internal pressure of 1.95 atm and a volume of 5.0 L. If the temperature where the balloon is
released is 20 °C, what will happen to the volume when the balloon rises to an altitude where the pressure is
0.65 atm and the temperature is -15 °C?

Answers

Answer:

13.1 L

Explanation:

Using the combined gas law:

P1V1/T1 = P2V2/T2

Where;

P1 = initial pressure (atm)

P2 = final pressure (atm)

V1 = initial volume (L)

V2 = final volume (L)

T1 = initial temperature (K)

T2 = final temperature (K)

Based on the information provided in this question;

P1 = 1.95 atm

P2 = 0.65 atm

V1 = 5.0 L

V2 = ?

T1 = 20 °C = 20 + 273 = 293K

T2 = -15 °C = -15 + 273 = 258K

Using P1V1/T1 = P2V2/T2

1.95 × 5/293 = 0.65 × V2/258

9.75/293 = 0.65V2/258

0.0333 = 0.00252V2

V2 = 0.0333 ÷ 0.00252

V2 = 13.1 L

Can somebody please give me an answer for this question that doesn't consist of building or construction?

Can somebody please give me an answer for this question that doesn't consist of building or construction?
Can somebody please give me an answer for this question that doesn't consist of building or construction?

Answers

Answer:

to build a house you need land and people

Explanation:

what is the formula for the compound made from beryllium and bromine?

Answers

Beryllium bromide is a compound formed by the combination of beryllium and bromine atoms. Its chemical formula is BeBr₂, indicating that each molecule of beryllium bromide contains one beryllium atom and two bromine atoms.

Beryllium has a 2+ charge, while bromine has a 1- charge. To achieve electrical neutrality, two bromine atoms are needed to balance the charge of one beryllium atom. Beryllium bromide is an ionic compound, characterized by the electrostatic attraction between the positively charged beryllium cation and the negatively charged bromide anions.

It is a white crystalline solid that is highly soluble in water. Beryllium bromide is primarily used in organic synthesis as a Lewis acid catalyst and in some industrial applications. Due to the toxicity of beryllium compounds, including beryllium bromide, proper safety precautions must be taken when handling or working with this substance.

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what is your question in climate change?​

Answers

Answer:

Why has my town experienced record-breaking cold and snowfall if the climate is warming? Is there scientific consensus that people are causing today's climate change? Do natural variations in climate contribute to today's climate change?

Explanation:

Yan po ang answer tama po yan

Does it have anything to do with global warming?

how are the foram fossils from the two time periods different?

Answers

Answer:

here are several resons that fossil foraminifera are especially valuable for determining the relative ages of marine rock layers. They have been around since the Cambrian, over 500 million years ago. They show fairly continuous evolutionary development, so different species are found at different times.

Which of the following is the least precise way to measure a liquid?
A. graduated cylinder
B. pipette
C. buret

Answers

Answer:

B. pipette

Explanation:

A pipette can barely measure anything, they mostly don't have numbers on them and only squeeze out a few drops. Other materials, graduated cylinder and (buret) burette, have measuring lines on them. They can hold much more amount of liquid. This makes a pipette the least precise way to measure a liquid.

There is no beaker option?

Does an endothermic absorb or release energy

Answers

Answer:

Chemical reactions that absorb (or use) energy overall are called endothermic. In endothermic reactions, more energy is absorbed when the bonds in the reactants are broken than is released when new bonds are formed in the products.

Explanation:

I hope it's useful for u...

Thank you

Calculate the density of an aluminum block with a volume of 100 cm3 and a mass of 270g.

Answers

Answer:

2.7 g/cm³

Explanation:

The density of a substance can be found by using the formula

\(density = \frac{mass}{volume} \\ \)

From the question we have

\(density = \frac{270}{100} = \frac{27}{10} \\ \)

We have the final answer as

2.7 g/cm³

Hope this helps you

Determine whether each of the reactions given below would be spontaneous or not. Please justify your answer in each case.
A. Fe2+ (aq) + Al (s) → Al3+(aq) + Fe (s)
B. Pb2+ (aq) + Sn (s) → Sn2+ (aq) + Pb (s)
C. Mg2+ (aq) + Ag (s) → Ag+ (aq) + Mg (s)

Answers

A spontaneous reaction is one in which the change in free energy is negative and the standard cell potential is positive.

For a redox reaction to be spontaneous, the electrode potential of the cell must be positive and this depends on the relative electrode potentials of the species involved in the reaction. A metal can not displace a metal above it in the electrochemical series from solution.

Based on this;

Fe2+ (aq) + Al (s) → Al3+(aq) + Fe (s) is spontaneous because iron is lower than aluminium in the electrochemical seriesPb2+ (aq) + Sn (s) → Sn2+ (aq) + Pb (s) is spontaneous because lead is lower than tin in the seriesMg2+ (aq) + Ag (s) → Ag+ (aq) + Mg (s) is not spontaneous because magnesium is above silver in the series.

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What are carbohydrates?

A. a type of base
B. a type of glyceride
C. a type of macromolecule
D. a type of amino acid

Answers

Answer:

a

Explanation:

me say so

Answer:

C

Explanation:

the diels-alder mechanism between a diene and a dienophile is choose... , which means that bond breaking happens choose... bond forming. to help the mechanism succeed, the diene should have an choose... group and the dienophile should have an choose... group.

Answers

The Diels-Alder mechanism among a diene and a dienophile is a concerted reaction, because of this that bond breaking occurs simultaneously with bond forming.

To help the mechanism be triumphant, the diene have to have an electron liberating organization and the dienophile have to have an electron taking flight organization.

A concerted reaction is a form of chemical response where all of the bond-forming and bond-breaking steps arise concurrently, in a single step. In other phrases, all of the reactants come collectively and react to shape the products with none intermediate steps.

Concerted reactions also are referred to as pericyclic reactions due to the fact they contain the formation and breaking of bonds in cyclic transition states. these reactions comply with a specific set of rules referred to as the Woodward-Hoffmann guidelines, which describe the allowed and forbidden modes of overlap among the orbitals of the reactants and products. These reactions are often utilized in organic synthesis to create complicated molecules with excessive stereoselectivity and regioselectivity.

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Complete Question:

The Diels-Alder mechanism between a diene and a dienophile is _____, which means that bond breaking happens _____ as bond forming.

To help the mechanism succeed, the diene should have an _____ group and the dienophile should have an ______ group.

What is a solvent?
A.always water
B.the liquid in the solution
C.the substance in which the solute dissolves

Answers

Answer:

C. the substance in which the solute dissolves

Explanation:

There are two terms in this... the solute and the solvent. The way I learned how to remember this is with a little pirate analogy: The loot (stolen treasure) always goes in the vent. So, the soLUTE goes in the solVENT.


Is CH3COOCH3 an acid or base?

Answers

Answer:

acid

Explanation:

Methyl acetate, also known as MeOAc, acetic acid methyl ester or methyl ethanoate, is a carboxylate ester with the formula CH3COOCH3. It is a flammable liquid with a characteristically pleasant smell reminiscent of some glues and nail polish removers.

Organic compounds are a source of _______.​

Answers

Answer:

Petroleum and coaltar are the main sources of organic compounds. (edit: Protein is most likely correct because I did some further research and I am mistaken I believe the other answer is right because it is also found to be a source of energy aka protein)

Explanation:

Organic compounds are a source of _______.

In air, nitric oxide gas reacts with oxygen to produce nitrogen dioxide,


which appears brown in color:


2 no(g) + o2(g) = 2no,(9)


what mass in grams of nitrogen dioxide would be produced by the


complete reaction of 0.551 grams of nitric oxide gas?

Answers

The complete reaction of 0.551 grams of nitric oxide gas would produce 0.846 grams of nitrogen dioxide.

The given chemical equation shows that 2 moles of nitric oxide (NO) gas reacts with 1 mole of oxygen (O2) gas to produce 2 moles of nitrogen dioxide (NO2). Therefore, the stoichiometric ratio of NO to NO2 is 2:2 or 1:1. This means that for every 1 mole of NO gas, 1 mole of NO2 gas is produced.

To determine the mass of NO2 produced from 0.551 grams of NO gas, we need to first convert the mass of NO into moles using its molar mass. The molar mass of NO is 30.01 g/mol (14.01 g/mol for N and 16.00 g/mol for O).

0.551 g of NO is equivalent to 0.551 g / 30.01 g/mol = 0.0184 moles of NO.

Since the stoichiometric ratio of NO to NO2 is 1:1, the number of moles of NO2 produced will also be 0.0184 moles.

The molar mass of NO2 is 46.01 g/mol (14.01 g/mol for N and 2 x 16.00 g/mol for 2 O atoms).

Therefore, the mass of NO2 produced will be:

0.0184 moles x 46.01 g/mol = 0.846 grams.

Hence, the complete reaction of 0.551 grams of nitric oxide gas would produce 0.846 grams of nitrogen dioxide.

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why the cat sits on a stove above the stove

Answers

Answer:

Explanation:

if you are wondering how you say that, you say "why the cat sits on the stove" but if it's a random question that has no sense to it my answer to you would be the cat needs some love and heat, the stove is the hottest thing it has right now. Give it some love!

When the season changes and a bird migrates, the bird is responding to which of these?
an internal cue
an external cue please help

Answers

Answer:

Internal Cue

Explanation:

Answer:

an internal cue

Explanation:

just think

Why is it impossible for scientists to use macroscopic tools such as scissors to create nanoparticles?.

Answers

Nano particles are very small and can not be seen with eyes measuring between 1 to 100 n m. Because of their small size, they can't be made from macroscopic tools.

What are particles?

These refers to those particles whose size lie between 1 to 100 n m. They are extremely small and often can not be seen with the eyes.

Owing to the fact that these particles are very small , they can not be created with very large  substances.

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If 2. 55 L of propane (C3H8) at 30 degree Celsius and 67. 2 kPa is completely burned in excess oxygen, what mass of carbon dioxide will be produced? R=0. 0821 L^ * atm/mol^ * K Write a balanced chemical equation: R=8. 314 L^ * kPa/mol^ * K

Answers

295 g of carbon dioxide will be produced.

The balanced chemical equation for the complete combustion of propane is:

\(C3H8 + 5O2 → 3CO2 + 4H2O\)

From the equation, we can see that 1 mole of propane produces 3 moles of carbon dioxide. We can use the ideal gas law to determine the number of moles of propane present in 2.55 L at 30°C and 67.2 kPa:

PV = nRT

n = PV/RT

n = (67.2 kPa)(2.55 L)/(0.0821 L·atm/mol·K)(303 K)

n = 2.24 mol

Therefore, the amount of carbon dioxide produced will be:

3 mol \(CO2\)/mol \(C3H8\) × 2.24 mol \(C3H8\) = 6.72 mol \(CO2\)

Finally, we can use the molar mass of carbon dioxide to convert moles to mass:

6.72 mol \(CO2\) × 44.01 g/mol \(CO2\) = 295 g \(CO2\)

Therefore, 295 g of carbon dioxide will be produced.

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Write balanced chemical equations as indicated for any observed reactions. Write NR if no reaction was observed. Saved Normal BIITU X, X 15 fx lo x A. Overall equation for Ba(NO3)2 and Na2CO3. Ba(NO3)2 + Na2CO3- BaCO3 + NaNO3 B. Ionic equation for Ba(NO3)2 and Na2CO3: C. Net-ionic equation for Ba(NO3)2 and Na2CO3: Ba(NO3)2 + Na2CO3- BaCO3 + NaNO3 D. Overall equation for Ba(NO3)2 and Na3P04: Ba(NO3)2 + Na3PO4-Ba3(PO4)2 + NaNO3 E. Ionic equation for Ba(NO3)2 and NaCl: NR F. Net-ionic equation for Ba(NO3)2 and NaOH!

Answers

All the chemical equations of this question has been balanced for the  given observed reactions.

Equal numbers and types of each atom appear on both sides of balanced chemical equations. A balanced equation must have coefficients that are the simplest whole number ratio. Chemical reactions always conserve mass.

A. Ba(NO₃)₂+ Na₂CO₃ → BaCO₃ + 2NaNO₃

B. Ba₂⁺ + 2NO₃⁻ + 2Na⁺ +CO₃²⁻→ BaCO₃(s) +2Na⁺ +2NO³⁻

C. Net ionic equation-

   Ba²⁺(aq) + CO₃²⁻(aq)→ BaCO₃(s)

D. overall reaction-

   3Ba(NO₃)₂(aq) + 2Na₃PO₄→ Ba₃(PO₄)₂(s) + 6NaNO₃(aq)

E. Ionic equation-

   Ba(NO₃)₂(aq) + 2NaCl(aq)→ BaCl₂(aq) + 2NaNO₃(aq)

  ∴ No reaction

F- Ba(NO₃)₂(aq) + 2NaOH(aq) → Ba(OH)₂(aq) +2NaNO₃(aq)

 ∴No net ionic equation.

Thus, all equations are balanced above.

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Suggest a method for measuring the size of the colony.

Answers

Answer:

Counting the number of colonies that arise on a pour plate can calculate the concentration by multiplying the count by the volume spread on the pour plate. Direct counting methods are easy to perform and do not require highly specialized equipment, but are often slower than other methods

Explanation:

I hope it will help you

A certain liquid has a normal freezing point of and a freezing point depression constant . A solution is prepared by dissolving some benzamide () in of . This solution freezes at . Calculate the mass of that was dissolved. Round your answer to significant digits.

Answers

Answer:

The question is incomplete, the complete question is:

A certain substance X has a normal freezing point of  and a molal freezing point depression constant . A solution is prepared by dissolving some glycine in 950. g of X. This solution freezes at  . Calculate the mass of urea that was dissolved. Round your answer to 2 significant digits.

Answer: The mass of glycine that can be dissolved is

Explanation:

Depression in the freezing point is defined as the difference between the freezing point of the pure solvent and the freezing point of the solution.

The expression for the calculation of depression in freezing point is:

OR

          ......(1)

where,

Freezing point of pure solvent =

Freezing point of solution =

i = Vant Hoff factor = 1 (for non-electrolytes)

= freezing point depression constant =

= Given mass of solute (glycine) = ?

= Molar mass of solute (glycine) = 75.07 g/mol

= Mass of solvent = 950. g

Putting values in equation 1, we get:

Hence, the mass of glycine that can be dissolved is

Which explains why mixtures can be separated?
A The components have different properties.
B The components have the same properties.
C The components are always made of small particles.
D The components are always made of large particles.

Answers

Answer:

A

Explanation:

In chemistry, a mixture is a material made up of two or more different substances which are not chemically combined. A mixture is the physical combination of two or more substances in which the identities are retained and are mixed in the form of solutions, suspensions, and colloids.

Answer:

A

Explanation:

Mixtures can be separated because the different substances have different properties

What amount of hydrogen(H), in moles, is present in the water (H2O) produced

What amount of hydrogen(H), in moles, is present in the water (H2O) produced

Answers

Explanation:

According to the problem 0.2916 g of water were produced, so we have to find the number of moles of H in that sample of water. First we will convert those grams into moles using the molar mass of water.

molar mass of H = 1.01 g/mol

molar mass of O = 16.00 g/mol

molar mass of H₂O = 2 * 1.01 g/mol + 1 * 16.00 g/mol

molar mass of H₂O = 18.02 g/mol

moles of H₂O = 0.2916 g * 1 mol/(18.02 g)

moles of H₂O = 0.01618 moles

One molecule of H₂O contains two atoms of H. So 1 mol of H₂O molecules will contain 2 moles of H atoms. We can use that relationship to find the answer to our problem.

1 mol of H₂O = 2 moles of H

moles of H = 0.01618 moles of H₂O* 2 moles of H/(1 mol of H₂O)

moles of H = 0.03236 mol

Answer: 0.03236 mol of H atoms are present in the water produced.

In the table on the next page,check off the clues that relate to the organisms that were found in the area. Using the clues,see if you can determine the order in which the organisms visited the campsite.

Answers

The order in which the organisms visited the campsite is most likely:

DeerRabbitBearBeaver

How to explain the order

This is because the deer tracks are the most numerous, followed by the rabbit tracks. The bear tracks are less numerous than the rabbit tracks, but they are accompanied by fur. The beaver dam and lodge are the newest features of the campsite, and they are not associated with any other animal tracks.

It is possible that the bear and the beaver visited the campsite at the same time, but the beaver's activities are more recent. This is because the beaver dam and lodge are still in use, while the bear tracks are older and have been partially obscured by the deer tracks.

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In the table on the next page,check off the clues that relate to the organisms that were found in the area. Using the clues,see if you can determine the order in which the organisms visited the campsite.

here is the table with the clues checked off:

Organism Clues

Deer Tracks, droppings

Rabbit Tracks, droppings

Bear Tracks, droppings, fur

Beaver Dam, lodge

The process in the petroleum induatry involves bringing oil and gas to the surface. The process consists of converting crude oil into other products and ther seiling those products to customers. Splect one! A. upstream; midstream B. upstream; downstream C. downstrean; upstream D. midstream: downstream

Answers

The process in the petroleum industry involves bringing oil and gas to the surface, converting crude oil into other products, and selling those products to customers. The correct choice is B. upstream; downstream.

In the petroleum industry, the process can be divided into three main sectors: upstream, midstream, and downstream. Upstream activities involve the exploration and extraction of crude oil and natural gas from underground reserves. This includes locating oil and gas deposits, drilling wells, and bringing the oil and gas to the surface.

Once the oil and gas are extracted, the midstream sector comes into play. Midstream activities involve the transportation, storage, and processing of the crude oil and natural gas. This includes pipelines, storage tanks, and facilities that separate the oil and gas into different components.

Finally, the downstream sector involves refining the crude oil into various products and selling those products to end consumers. Downstream activities include refining, petrochemical production, distribution, and marketing of the final petroleum products, such as gasoline, diesel, jet fuel, lubricants, and various other chemicals.

Therefore, in the given scenario, the correct choice is B. upstream; downstream, as it represents the process of bringing oil and gas to the surface (upstream) and then converting crude oil into other products and selling them to customers (downstream).

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(0)

NMR are not included for these products (contained one haloalkane compound and alcohol compound). Why might NMR not be an ideal way to determine structures in a mixture? In other words, why is NMR not used to determine structure in a mixture?

Answers

NMR is not an ideal way to determine structures in a mixture because it cannot differentiate between different compounds in the mixture. In other words, it does not provide information on which peaks correspond to which individual compounds in the mixture, making it difficult to determine the structures of individual compounds.

Nuclear magnetic resonance (NMR) spectroscopy is an analytical chemistry technique that provides information on the number and type of atoms in a molecule, the connectivity between those atoms, and the three-dimensional arrangement of atoms in a molecule.However, NMR is not an ideal way to determine structures in a mixture because all of the peaks from all of the different compounds in the mixture will overlap, making it difficult to distinguish between the different compounds.

As a result, other analytical techniques such as gas chromatography (GC) or liquid chromatography (LC) are often used to separate the individual compounds in the mixture before NMR analysis to obtain information about each compound separately.

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