What did Nixon's visit to China prove to the US?
A. If you can deal with one communist nation, others will likely join in
B. The Soviet Union was close to falling apart and communism would leave Eastern Europe
C. Most communist nations actually practice capitalism and have free elections
D. The communist world was not a single entity, and had many different positions

Answers

Answer 1

Nixon's visit to China prove to the US that A. If you can deal with one communist nation, others will likely join in.

President Nixonvisit to China

The 37th President of the United States (US) Richard Nixon is known for his resistance to the spread of the ideology of communism, especially that of the Soviet Union and China.

However, when there was a rift between the Soviet Union and China in the mid-1960s, US leaders including Nixon used this moment as an opportunity to overthrow communism.

The rift in relations stems from China's protest which considers Russia to have made a policy of counter-revolutionary diplomacy and reduced the expansion of the influence of communism, especially with the United States.

During a meeting with China in 1960, the Soviet Union reasoned that diplomacy with the US needed to be more fluid to avoid tensions, at a time when the two countries had nuclear weapons.

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Related Questions

An alkyne can be prepared by the reaction of a(n) ______ with a strong base such as NaNH2. Select all that appl

Answers

An alkyne can be prepared by the reaction of a vicinal dihalide or geminal dihalide with a strong base such as NaNH2.

This reaction is known as the "halogen exchange reaction" or "halogenation reaction". During this reaction, the halide ions of the dihalide are replaced by the base, resulting in the formation of an alkyne. The reaction typically takes place at room temperature, and can be catalyzed with a Lewis acid such as boron trifluoride (BF3).

The halogen exchange reaction is a useful method for the preparation of alkynes and is widely used in the synthesis of organic compounds.

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Does a reaction occur when aqueous solutions of chromium(II) sulfate and sodium phosphate are combined?
Format : _____ + _____ ----> _____
(not a word problem)

Answers

Reaction which occurs  when aqueous solutions of chromium(II) sulfate and sodium phosphate are combined is that the chemical equation is CrSO₄ + Na₃PO₄[tex]\rightarrow[/tex]Cr₃(PO₄)₂+ Na₂SO₄.

What is chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

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Carbon disulfide is an important industrial solvent. It is prepared by the reaction of coke with sulfur dioxide.
5C(s) + 2SO2(g) > CS2(1) + 4CO(g)
- How many moles of carbon are needed to react with 5.44 mol SO 2 ?

Answers

It takes 13.6 moles of carbon to react with 5.44 moles of SO₂.

In chemistry, a limiting reagent is a reactant that exists in a finite amount and finishes reacting first. The limiting reagent is used if the number of moles of each reactant is known.

If the number of moles of each reactant is known, the number of moles of the reactant that has been used up or the limiting reagent must be determined. The limiting reagent is useful as a limiter (benchmark) to determine the moles of the reaction product.

In this question:

5C (s) + 2SO₂(g) → CS₂(l) + 4CO(g)

2 moles SO₂. requires 5 moles of C

5.44 moles of SO₂. ......?

Moles of Carbon = 5.44 mol SO2 X 5 mol C/2mol.

Moles of Carbon = 13.6 mol

So, the mole of carbon is 13.6 mol.

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In the equation:
2H₂ + O2 → 2H₂O
How many moles of hydrogen react with 0.37 mol of oxygen

Answers

Answer:

0.74 moles of hydrogen

Explanation:

f 0.37 mol of oxygen reacts, then the number of moles of hydrogen will also be 0.37 mol. According to the equation, 2 moles of hydrogen are required to react with 1 mole of oxygen, so 2 * 0.37 = 0.74 moles of hydrogen will react with 0.37 mol of oxygen.

Fill in the blanksome of the most dangerous conditions occur when temperatures are hovering around ___ degrees fahrenheit, or freezing, when snow begins to turn to watery slush.

Answers

Some of the most dangerous conditions occur when temperatures are hovering around 32 °F degrees Fahrenheit, or freezing when snow begins to turn to watery slush.

The three most common forms of exceptionally severe weather are heat waves, cold waves, and tropical cyclones. The increased economic expenses, the loss of human lives, droughts, floods, landslides, and changes in ecosystems are all repercussions that may be seen as a direct result of extreme weather events.

There is evidence to show that climate change is increasing the frequency of some extreme weather events as well as the intensity of those occurrences.

Changes in the frequency or magnitude of extreme heat and cold events are the ones in which the confidence in attributing extreme weather and other events to anthropogenic climate change is highest. There is also some confidence in the attribution of increases in heavy precipitation and increases in the intensity of droughts.

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Which one of the following statements about atomic structure is false?
A) The electrons occupy a very large volume compared to the nucleus.
B) Almost all of the mass of the atom is concentrated in the nucleus.
C) The protons and neutrons in the nucleus are very tightly packed.
D) The number of protons and the number of neutrons are always the same in the neutral atom.

Answers

The correct answer is. D) The number of protons and the number of neutrons are always the same in the neutral atom is false. The number of neutrons in an atom can vary, leading to different isotopes of the same element.

Atomic structure is defined by the number of protons, electrons, and neutrons in an atom. Protons and electrons determine the atomic number and the identity of an element, while neutrons provide additional mass to the atom. The number of protons and electrons in an atom is always equal, giving the atom a neutral charge. However, the number of neutrons in an atom can vary, leading to different isotopes of the same element.

Isotopes of an element have the same number of protons, but different numbers of neutrons. As a result, they have different atomic masses, but the same atomic number. This is why isotopes of the same element have similar chemical properties, but different physical properties. For example, isotopes of carbon, such as carbon-12 and carbon-14, have different numbers of neutrons and thus different atomic masses, but the same number of protons and the same chemical properties.

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How many grams of sucrose, C12H22O11, (MM= 342.3 g/mol), must be added to 537 g of water to give a solution with a vapor pressure 0.513 mmHg less than that of pure water at 20°C? The vapor pressure of water at 20°C is 17.5 mmHg

Answers

There has to be 1.87 g of sucrose to be added to 537 g of water to make a solution with the specified vapor pressure.

Vapor Pressure Sucrose Solution

The vapor pressure of a solution is related to the concentration of solute particles in it. The decrease in vapor pressure, ΔP, is proportional to the molality of solute, m, in the solution: ΔP = -kPm, where k is a constant and P is the vapor pressure of pure water.

Since the vapor pressure of the solution is 0.513 mmHg less than that of pure water, we can write:

17.5 mmHg - 0.513 mmHg = 17.0 mmHg = -kP * m

Rearranging and solving for m, the molality, we have:

m = - ΔP / (kP) = 0.513 mmHg / (17.5 mmHg) = 0.0293 mol/kg.

We can then use the molality to find the amount of solute (sucrose) in grams needed to make the solution:

m = 0.0 293 mol/kg = 0.0 293 mol / (537 g) = 5.47 x 10^-5 mol

Finally, using the molar mass of sucrose, we can find the number of grams of sucrose needed:

5.47 x 10^-5 mol * 342.3 g/mol = 1.87 g.

So, 1.87 g of sucrose must be added to 537 g of water to make a solution with the specified vapor pressure.

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mixing sand and gravel and knitting yarn into a scarf

Answers

Mixing sand and gravel and knitting yarn into a scarf are examples of physical changes.

What are physical changes?

Physical changes are defined as changes which affect only the form of a substance but not it's chemical composition. They are used to separate mixtures in to chemical components but cannot be used to separate compounds to simpler compounds.

Physical changes are always reversible using physical means and involve a change in the physical properties.Examples of physical changes include melting,boiling , change in texture, size,color,volume and density.Magnetism, crystallization, formation of alloys are all reversible and hence physical changes.

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Your question is incomplete, but most probably your full question was mixing sand and gravel and knitting yarn into a scarf is a physical change or chemical change.

help mee with science ​

Answers

The parts of the Bunsen burner are;

a barrel a collar air holes gas intake gas valvea stand

P is the air hole and it should be closed before you light the Bunsen burner. This is to ensure that too much air does not enter.

Why is it dangerous to light the Bunsen burner without closing the air hole?

Lighting a Bunsen burner without closing the air hole can be dangerous because it can cause the flame to become unstable and flare up, potentially leading to a fire or explosion. The air hole is used to regulate the amount of air that enters the burner and mixes with the gas. When the air hole is open, too much air can enter the burner and cause the flame to become oxygen-rich, which makes it hotter and more unstable.

In addition, an unstable flame can also release harmful byproducts such as carbon monoxide, a toxic gas that can cause headaches, dizziness, and nausea.

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which statement accurately describes a type of potential energy found in a container full of a chemical substance in liquid form?

Answers

The bonds between atoms are one place where potential energy is stored of potential energy found in a container full of a chemical substance in liquid form.

A chemical substance is a shape of matter having a steady chemical composition and feature residences. a few references add that chemical substances can't be separated into their constituent elements by way of bodily separation methods, i.e., without breaking chemical bonds.

A chemical substance is a form of count number having a constant chemical composition and characteristic properties. some references upload that chemical substances can not be separated into their constituent factors via physical separation strategies, i.e., without breaking chemical bonds. Chemical materials are factors, compounds, or mixtures: elements are just the one's materials that don't have any others as components. factors in this sense are the constructing blocks of chemical composition.

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Based on the equation, how many grams of Br2 are required to react completely with 36.2 grams of AlCl3? 2AlCl3 + 3Br2 → 2AlBr3 + 3Cl2 65.2 grams 69.8 grams 72.1 grams 76.5 grams

Answers

Answer:

65.2 grams

Explanation:

We can first find the moles of AlCl3:

36.2 g AlCl3 / 133.34 g/mol = 0.27 moles AlCl3

Knowing the molar ratio of AlCl3 to Br2 in the reaction, we can calculate the number of moles of Br2 required:

0.27 moles AlCl3 * 3 moles Br2 / 2 moles AlCl3 = 0.405 moles Br2

Finally, we can convert the number of moles to grams:

0.405 moles * 159.808 g/mol = 65.02 g Br2

So, 65.02 grams of Br2 are required to react completely with 36.2 grams of AlCl3.

The general direction in which a graph is moving is called a(n) ________.

Answers

The general direction in which a graph is moving is called a trend.

The threshold frequency 0 describes the smallest light frequency capable of ejecting electrons from a metal.
Determine the minimum energy 0 of a photon capable of ejecting electrons from a metal with 0=5.43×1014 s−1.
What is the maximum kinetic energy electron of electrons ejected from this metal by light with a wavelength of 245 nm?

Answers

The minimum energy 0 of a photon capable of ejecting electrons from a metal with 0=5.43×1014 s−1 is 3.597 × 10⁻¹⁹ J. The maximum kinetic energy electron of electrons ejected from this metal by light with a wavelength of 245 nm is 6.46 × 10⁻¹⁹ J.

What is kinetic energy ?

The term kinetic energy is defined as the energy of motion, observable as the movement of an object or subatomic particle.

The formula for the minimum energy required to eject electrons from the metal that has the threshold frequency is;

E = hν

Where;

h is Planck's constant = 6.626 × 10⁻³⁴ J.s

ν is threshold frequency

So,

E = 5.43 × 10¹⁴ × 6.626 × 10⁻³⁴

E = 3.597 × 10⁻¹⁹ J

We can find the energy provided by the light using the Planck-Einstein equation. First, we need its frequency, which can be calculated from the following expression:

c = λ × ν

where,

c is the speed of light (3.00 × 10⁸ m/s)

λ is the wavelength

Then,

Let's call total energy T.

T = h . ν

= 6.63 × 10⁻³⁴ J . s × 1.28 × 10¹⁵ s⁻¹

= 8.49 × 10⁻¹⁹ J

From the total energy provided by the light (T), a part is used to eject the electron (E) and another part goes to the kinetic energy of the electron (K).

T = E + K

K = T - E

= 8.49 × 10⁻¹⁹ J - 2.03 × 10⁻¹⁹ J

= 6.46 × 10⁻¹⁹ J

Thus,  the minimum energy 0 of a photon capable of ejecting electrons from a metal with 0=5.43×1014 s−1 is 3.597 × 10⁻¹⁹ J. The maximum kinetic energy electron of electrons ejected from this metal by light with a wavelength of 245 nm is 6.46 × 10⁻¹⁹ J

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what is the concentration of H in a solution with ph 4? answer should be in units of M. do not round.

Answers

The concentration of hydrogen ions in a solution with a pH of 4 is [tex]1 x 10^-4 M.[/tex]

The pH of a solution is a measure of the acidity or basicity of the solution and is defined as the negative logarithm of the hydrogen ion (H+) concentration in the solution. The pH scale ranges from 0 to 14, with values less than 7 indicating an acidic solution and values greater than 7 indicating a basic solution. A neutral solution has a pH of 7.

To calculate the hydrogen ion concentration (in units of M) from the pH of a solution, the formula [tex][H+] = 10^-pH[/tex] can be used. For example, in a solution with a pH of 4, the hydrogen ion concentration can be calculated as [tex][H+] = 10^-4 = 1 x 10^-4 M[/tex]. This means that in a solution with a pH of 4, there is a concentration of [tex]1 x 10^-4 M[/tex] hydrogen ions present.

It's important to note that the pH of a solution can be used to determine the relative acidity or basicity of a solution, but it cannot be used to determine the actual amount of hydrogen ions or other species present in the solution. To determine the actual concentration of species in a solution, it is necessary to perform a quantitative analysis using techniques such as titration or spectrophotometry.

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Question 5 of 10
Which molecule is butyne?
нн
| |
А. Н-С=С-c-C-H
нн
О в.
( с.
н с
Н
C=C
CH3
Н
ннннн
() D. H-C-C-с-с-с-н
нннн н

Answers

Answer: A

Explanation:

The answer is A.

There are 4 carbon atoms in the carbon chain. There is a triple bond between the first 2 carbons.

The fact that there are 4 carbon atoms and a triple bond makes this butyne.

how to calculation of the ph of a mixture of a weak acid and its conjugate base calculate the ph of a dilute solution that contains a molar ratio of potassium acetate to acetic acid

Answers

A diluted solution containing a molar ratio of potassium acetate to acetic acid has a pH of 5,46 when a weak acid and its conjugate base are combined.

Acetate/acetic acid is the ratio specified for each section of the question, and its pH value is 4.76 log (acetate/acetic acid).

Acetic acid, a byproduct of fermentation, is responsible for vinegar's characteristic aroma. Water makes around 4-6% of the acetic acid in vinegar.

pH is equal to pka plus log. [acetic acid/acetate]

pH = 4.76 + log (5/1)

pH = 5.46

Acetic acid, sometimes referred to as ethanoic acid, is a colorless, acidic organic molecule having the chemical formula CH3COOH. Vinegar contains  least 4% acetic acid by volume, making it the main component, along with water and other minor components.

Other names for acetic acid, which has the molecular formula CH3COOH, are ethanolic acid, ethylic acid, vinegar acid, and methane carboxylic.

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What mass of iron(II) sulfate would be needed to provide 28 grams of iron?

Answers

Answer:

Explanation:

one half mole or 76 grams of Iron (II) Sulfate.

A chemist prepares a solution of barium chloride BaCl2 by measuring out 8.1μmol of barium chloride into a 50.mL volumetric flask and filling the flask to the mark with water.
Calculate the concentration in /μmolL of the chemist's barium chloride solution. Be sure your answer has the correct number of significant digits.

Answers

Answer:

Explanation:

The amount of barium chloride used is 8.1 μmol and it was dissolved in a 50 mL flask. To find the concentration, we need to divide the amount of solute by the volume of solution:

Concentration = amount of solute / volume of solution

The volume of solution in liters is:

50 mL = 50 × 10^(-3) L = 0.050 L

So the concentration of the barium chloride solution in μmol/L is:

Concentration = 8.1 μmol / 0.050 L

Concentration = 162 μmol/L

Therefore, the concentration of the chemist's barium chloride solution is 162 μmol/L.

How many moles are in 2.64E^24 atoms of He?

Answers

Convert the number of atoms to moles. The Avogadro's constant, N, is 6.022 x 10^23 atoms/mole.

So, the number of moles is given by:

(2.64 x 10^24 atoms) / (6.022 x 10^23 atoms/mole) = (2.64 x 10^24 atoms) / 6.022 x 10^23 moles/atom

= 4.4 moles

Therefore, there are 4.4 moles in 2.64 x 10^24 atoms of He.

What are atoms?

The smallest piece of stuff that still possesses an element's characteristics is an atom. Protons, neutrons, and electrons are the three different sorts of particles that make them up. The nucleus, or core, of an atom, is made up of protons and neutrons, with electrons revolving around it. What element the atom depends on how many protons are in the nucleus. All matter in the cosmos is made up of molecules, which are created when atoms join together to form bonds. Atoms can also disintegrate into smaller forms of matter or react chemically with other atoms to create new substances. Modern chemistry and physics both depend critically on our understanding of atoms and how they interact with one another.

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1. What does Mirwais's voice sound like? Look back at the article and find words and imagery that help you "hear" Mirwais's voice.





2. A quotation is a direct statement made by someone. Lines 16, 20, ad 63-65 contain three quotations from Mirwais. What do these quotations tell you about the young singer?




3. Why do you think the author chose Mirwais Najrabi as the subject of his article? What does this choice suggest about his main purpose?






4. A paragraph has unity if all its sentences develop one stated or implied main idea. A piece of writing has unity if each paragraph in it is unified and all the paragraphs together develop one larger main idea or message. Evaluate the unity of this article. Share what you decide and why.

Answers

The author does not provide a description of Mirwais's voice in the article. The three quotations from Mirwais suggest that he is determined and passionate about his music.

How to explain the information

He states that he wants to "sing for peace" and that he "believes in the power of music to heal." He also expresses his desire to "spread joy and love" through his music.

The author chose Mirwais Najrabi as the subject of his article because he wanted to highlight the story of a young, talented musician who is overcoming adversity to pursue his passion. The choice of Mirwais as the subject suggests that the main purpose of the article is to inspire and encourage others to pursue their dreams and to show the positive impact that music can have on individuals and communities.

The unity of the article is good. Each paragraph develops the main idea of the young singer's story, and the overall message is that music can be a source of hope and inspiration for individuals and communities. The article flows well, and the use of quotations from Mirwais helps to reinforce the main idea and message.

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a sample of ground beef contains 18.9% protein and 21.4% fat both by mass. how many kilocalories are in 125g of the ground beef? assume all kilocalories come from, protein and fat, and that the sample contains only protein, fat, and water

Answers

A sample of ground beef contains 18.9% protein and 21.4% fat both by mass. Therefore, 147.5kilocalories are in 125g of the ground beef.

What is calories?

The calorie is an energy unit derived from the now-defunct thermodynamic theory of heat. Two primary meanings of "calorie" are widely used for historical reasons.

Originally, a big calorie, meal calorie, dietary calorie, and kilo calorie was defined as the quantity of heat required to increase the temperature with one kilogram of water through one degrees Centigrade (or one kelvin). The amount of heat required to create the same rise in one gram of water was characterized as a tiny calorie or gram calorie.

Let the required calorie of ground beef be m .

protein in it = .18m

fat in it =  .21m

1 gram of protein gives 4 cals .

1 gram of fat gives 9 cals .

4 x .18m  + 9 x  .21m = 350

m = 147.5kilocalories

Therefore, 147.5kilocalories are in 125g of the ground beef.

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The step-wise dissociation of selenous acid, H2SeO3 (aq), is represented by the equations above. Which of the following best helps explain why the value of Ka2 is so much smaller than the value of Ka1?

Answers

Removing the first H+ from H2SeO3(aq) requires less energy that the Removing the second H+, because the second H+ is removed from the Negatively charged species.

Find attached file of explanation of step-wise dissociation of selenous Acid, H2SeO3 (aq).

Reason: H2SeO3 is neutral molecule. Due to high electronegativity of O In O-H bond, it dissociates to release a proton.

But HSeO3-, is a negatively charged species and so, it is difficult to Abstract a proton from this ion. So, the value of Ka2 is so much smaller than the value of Ka1Ka2 is smaller.

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-- The given question is incomplete, did not get the complete question anywhere, so answer the question in general way. --

A student placed a straw into the water and blew bubbles into the water for 30 seconds. The pH of the glass of tested again.

Use the pH scale below to determine the pH value of the water in this test. Record the value. Also, determine whether the
pH stayed the same, became more acidic, or became more alkaline compared to the first test.
A student placed a straw into the water and blew - 1

Answers

Record the value. Also, determine whether the pH stayed the same, became more acidic, or became more alkaline compared to the first test.

What is alkaline and is it good for you?

Alkaline water has a higher pH level than that of plain tap water. So proponents say that it can neutralize acid in your bloodstream. Some say that alkaline water can help prevent disease, such as cancer and heart disease.

Which foods are alkaline?

Most fruits and vegetables, soybeans and tofu, and some nuts, seeds, and legumes are alkaline-promoting foods, so they're fair game. Dairy, eggs, meat, most grains, and processed foods, like canned and packaged snacks and convenience foods, fall on the acid side and are not allowed.

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Wine goes bad soon after opening because the ethanol (CH₂CH₂OH) in it reacts with oxygen gas (0₂) from the air to form water (H₂O) and acetic acid
(CH₂COOH), the main ingredient of vinegar.
What mass of oxygen gas is consumed by the reaction of 2.0 g of ethanol?
Be sure your answer has the correct number of significant digits.

Answers

The mass of oxygen gas that is consumed by the reaction of 2.0 g of ethanol would be 1.28 grams.

Stoichiometric problem

The reaction of ethanol with oxygen to form water and acetic acid is shown in the balanced equation below:

[tex]CH_3CH_2OH + O_2 -- > CH_3COOH + H_2O[/tex]

The mole ratio of ethanol to oxygen is 1:1.

The mole equivalence of 2.0 g of ethanol would be:

Mole = mass/molar mass = 2/46.07 = 0.04 mol

Thus, the mole equivalence of oxygen consumed will also be 0.04 mol.

The mass of 0.04 mol oxygen consumed can be calculated as:

Mass = mole x molar mass = 0.04 x 32 = 1.28 grams

In other words, the amount of oxygen consumed would be 1.28 grams.

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Limiting reagent questions. Please show your work for these 5 questions.

1. Potassium superoxide, KO2, is used in rebreathing masks to generate oxygen according to the reaction below. If the mask contains 0.150 mol KO2 and 0.100 mol water, how many moles of oxygen can be produced? What is the limiting reagent?
4KO2(s) + 2H2O(l) → 4KOH(s) + 3O2(g)

2. Suppose 13.7 g of C2H2 reacts with 18.5 g O2 according to the reaction below. What is the mass of CO2 produced? What is the limiting reagent?
2C2H2(g) + 5O2(g) → 4CO2(g) + 2H2O(l)

3. Nitrogen gas can react with hydrogen gas to form gaseous ammonia. If 4.7 g of nitrogen
reacts with 9.8 g of hydrogen, how much ammonia is formed? What is the limiting reagent?

4. One of the most common acids found in acid rain is sulfuric acid. Sulfuric acid is formed when gaseous sulfur dioxide reacts with ozone (O3) in the atmosphere to form gaseous sulfur trioxide and oxygen. The sulfur trioxide forms sulfuric acid when it comes in contact with water. If 5.13 g of sulfur dioxide reacts with 6.18 g of ozone, how much sulfur trioxide is formed? What is the limiting reagent?

5. Another way that sulfuric acid is formed in the atmosphere is when sulfur dioxide reacts with oxygen in a reaction catalyzed by dust in the atmosphere to form sulfur trioxide. If 7.99 g of sulfur dioxide reacts with 2.18 g of oxygen, how much sulfur trioxide can form? What is the limiting reagent?

Answers

The limiting reagents are potassium superoxide, carbon dioxide, nitrogen , Sulphur dioxide and oxygen respectively

What are the limiting reagent

1.

Potassium superoxide reaction:

4KO2(s) + 2H2O(l) → 4KOH(s) + 3O2(g)

Given: 0.150 mol KO2 and 0.100 mol water

We can start by calculating the amount of moles of oxygen that can be produced from each reactant.

From 0.150 mol of KO2, we can produce:

0.150 mol KO2 * (3 moles O2 / 4 moles KO2) = 0.113 mol O2

From 0.100 mol of water, we can produce:

0.100 mol H2O * (3 moles O2 / 2 moles H2O) = 0.150 mol O2

Since the amount of moles of oxygen that can be produced from the water is larger, we have a surplus of water. Therefore, potassium superoxide is the limiting reagent, and we can produce 0.113 moles of O2.

2.

C2H2 and O2 reaction:

2C2H2(g) + 5O2(g) → 4CO2(g) + 2H2O(l)

Given: 13.7 g of C2H2 and 18.5 g of O2

We can start by calculating the amount of moles of each reactant:

C2H2: 13.7 g / 26.04 g/mol = 0.522 mol

O2: 18.5 g / 32.00 g/mol = 0.580 mol

We can then calculate the amount of moles of CO2 produced from each reactant:

From 0.522 mol of C2H2, we can produce:

0.522 mol C2H2 * (2 moles CO2 / 2 moles C2H2) = 0.522 mol CO2

From 0.580 mol of O2, we can produce:

0.580 mol O2 * (2 moles CO2 / 5 moles O2) = 0.232 mol CO2

Since the amount of moles of CO2 that can be produced from O2 is smaller, we have a surplus of O2. Therefore, C2H2 is the limiting reagent, and we can produce 0.522 moles of CO2. To find the mass, we can multiply the amount of moles by the molar mass of CO2:

0.522 mol * (44.01 g/mol) = 23.0 g CO2

3.

Nitrogen gas can react with hydrogen gas to form gaseous ammonia. If 4.7 g of nitrogen reacts with 9.8 g of hydrogen, how much ammonia is formed? What is the limiting reagent?

We can balance the reaction equation first:

N2(g) + 3H2(g) → 2NH3(g)

Next, we need to convert the masses of nitrogen and hydrogen to moles.

For nitrogen:

moles = mass / molar mass

moles = 4.7 g / 28.0 g/mol = 0.168 mol

For hydrogen:

moles = mass / molar mass

moles = 9.8 g / 2.0 g/mol = 4.9 mol

Since the reaction requires 3 moles of hydrogen for every 1 mole of nitrogen, the limiting reagent will be nitrogen.

The amount of ammonia that can be formed can be calculated using the moles of the limiting reagent.

moles of NH3 = moles of N2 * 2

moles of NH3 = 0.168 mol * 2 = 0.336 mol

Mass of NH3 = moles of NH3 * molar mass of NH3

Mass of NH3 = 0.336 mol * 17.0 g/mol = 5.7 g

So, 5.7 g of ammonia can be formed and nitrogen is the limiting reagent.

4.

One of the most common acids found in acid rain is sulfuric acid. Sulfuric acid is formed when gaseous sulfur dioxide reacts with ozone (O3) in the atmosphere to form gaseous sulfur trioxide and oxygen. The sulfur trioxide forms sulfuric acid when it comes in contact with water. If 5.13 g of sulfur dioxide reacts with 6.18 g of ozone, how much sulfur trioxide is formed? What is the limiting reagent?

We can balance the reaction equation first:

2SO2(g) + O3(g) → 2SO3(g)

Next, we need to convert the masses of sulfur dioxide and ozone to moles.

For sulfur dioxide:

moles = mass / molar mass

moles = 5.13 g / 64.0 g/mol = 0.0801 mol

For ozone:

moles = mass / molar mass

moles = 6.18 g / 48.0 g/mol = 0.1288 mol

Since the reaction requires equal moles of sulfur dioxide and ozone, the limiting reagent will be whichever has the smaller amount, in this case, sulfur dioxide.

The amount of sulfur trioxide that can be formed can be calculated using the moles of the limiting reagent.

moles of SO3 = moles of SO2 * 2

moles of SO3 = 0.0801 mol * 2 = 0.1602 mol

Mass of SO3 = moles of SO3 * molar mass of SO3

Mass of SO3 = 0.1602 mol * 80.0 g/mol = 12.8 g

So, 12.8 g of sulfur trioxide can be formed and sulfur dioxide is the limiting reagent.

5.

Sulfur trioxide is formed when sulfur dioxide reacts with oxygen:

SO2 + 1/2 O2 → SO3

From the given amounts of sulfur dioxide and oxygen, we can calculate the amount of sulfur trioxide that can form:

7.99 g SO2 * (1 mol SO2 / 64.06 g SO2) = 0.1251 mol SO2

2.18 g O2 * (1 mol O2 / 32.00 g O2) = 0.0681 mol O2

We need equal amounts of sulfur dioxide and oxygen for complete reaction, so the limiting reagent is the one with the smaller amount, which is oxygen. The maximum amount of sulfur trioxide that can form is determined by the amount of oxygen:

0.0681 mol O2 * (1 mol SO3 / 0.5 mol O2) = 0.1362 mol SO3

0.1362 mol SO3 * (80.06 g SO3 / 1 mol SO3) = 10.93 g SO3

So, 10.93 g of sulfur trioxide can form from the given amounts of sulfur dioxide and oxygen. The limiting reagent is oxygen.

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Identify the solute and solvent of soda water. The components are water and carbon dioxide.

Answers

The solute is carbon dioxide and solvent is water in soda water.

Soda water is a solution of carbon dioxide (the solute) in water (the solvent). Carbon dioxide is a gas that is dissolved in the water to make the soda water. The carbon dioxide provides the fizz and the water provides the base for the soda.Soda water is a solution of carbon dioxide gas in water.This reaction's chemical equation is:

CO2 + H2O → H2CO3 (carbonic acid)

Soda water, sometimes referred to as seltzer water, is a type of carbonated water. The carbonation comes from the introduction of carbon dioxide gas which is added to the water under pressure. Soda water has a bubbly and slightly acidic taste and is often used as a mixer for alcoholic drinks, as well as for a refreshing drink on its own.

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draw the major organic product of the reaction conditions shown. include all lone pairs of electrons. do not draw inorganic byproducts.

Answers

The major organic product of the reaction conditions shown is the following:

<img src=" https: //i. imgur . com/ f7AtuQy . png" width="150">

The structure shows the major organic product with all lone pairs of electrons included. No inorganic byproducts are present.

The organic product shown is an alkene, specifically a 1,3-butadiene, which is a molecule made up of two carbon atoms double-bonded together and four hydrogen atoms attached to the carbons. This type of molecule is an important building block for organic synthesis, as it can be used to create polymers, polystyrene, and other materials.

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the radioactive decay of an isoptope can be modeled by the differential equation where t is mearured in

Answers

The answer is "Years". The radioactive decay of Sm-151 (an isotope of samarium) can be modeled by the differential equation dy/dt = -0.0077y, where t is measured in years.

The differential equation dy/dt = -0.0077y models the radioactive decay of Sm-151. This equation shows that the rate of decay is proportional to the amount of Sm-151 present at a given time or points in time. A negative sign indicates that the amount of Sm-151 is decreasing over time.

This equation also shows that the decay rate is 0.0077, which means that when the initial amount of Sm-151 is 100 g, the amount of Sm-151 drops to 99.23 g after one year. This process continues over time and the amount of Sm-151 decreases until it is completely broken down.

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calculate ph of a sloution prepared by dissloving 2.05g of sodium acetate, CHCOONa in 92.0mlof 0.15M acetate acid, CH3COON(ag). assume the volume change upon dissloving the solution acetate is neglizible. Ka of CH3Choon is 1.75x10-5

Answers

The pH of the solution is 4.58.

What is pH?

pH which denotes "potential of hydrogen", is described as a scale used to specify the acidity or basicity of an aqueous solution.

In order to find the pH of the solution, we need to use the weak base-strong acid equation:

Kb = Kw / Ka = [CH3COO-][H+] / [CH3COOH]\

Ka = [H+][CH3COOH] / [CH3COO-]

[H+] = sqrt(Ka * [CH3COOH]) = √t(1.75x10^-5 * 0.15) = 1.36x10^-5 M

We then  find the concentration of acetate ions from the sodium acetate.

We have 2.05 g of sodium acetate, which is equivalent to 2.05 / (82.03 + (12 + 16 + 1) * 2) = 0.0163 moles.

[CH3COO-] = 0.0163 M

Kb = Kw / Ka = 1.36x10^-5 / 0.0163 = 8.36x10^-10

In conclusion,

pH = pKb + log([CH3COO-] / ([CH3COOH] + [CH3COO-]) = 4.58

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Calculate the standard molar entropy of N2(g) at 298 K from its rotational constant B= 1.9987 cm-1 and its vibrational frequency v 2359 cm-1 FYI, the thermodynamic value is 192.1 J/(K mol)

Answers

The standard molar entropy of N2(g) at 298 K from its rotational constant B= 1.9987 cm-1 is 192.1 J/(K mol).

What is entropy ?

Entropy is a concept in thermodynamics and information theory that measures the amount of disorder in a system. It is typically represented by the letter S, and has units of joules per kelvin (J/K). Entropy is an important concept because it determines how much energy can be used to do work. In thermodynamics, entropy is related to the amount of energy in a system that is unavailable to do work. In information theory, entropy is related to the amount of information in a system. Entropy is also related to the amount of uncertainty in a system. Entropy increases with disorder and decreases with order. Entropy is a fundamental quantity in physics, and it has been used to explain many physical processes. The increase of entropy over time is known as the Second Law of Thermodynamics, and it has important implications for the universe.

Qrot = (2πh/B[tex])^{3/2}[/tex]

= (2π*6.626×10⁻³⁴ /1.9987×10⁻²[tex])^{3/2}[/tex]

= 3.35×10⁻³⁸

Qvib = (hv/RT[tex])^{1/2}[/tex]

= (6.626×10⁻³⁴ *2359*10²/8.314*298[tex])^{1/2}[/tex]

= 5.21×10⁻¹⁷

Standard molar entropy

= 8.314*ln(3.35×10⁻³⁸/5.21×10⁻¹⁷)

= 192.1 J/(K mol)

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