Write the two possible conversion factors using Avogadro's number:

Answers

Answer 1

One mole of a substance is equal to 6.022 × 10²³ units of that substance The number 6.022 × 10²³ is known as Avogadro's number or Avogadro's constant.

What is the conversion for Avogadro's number?

Hence, the first conversion is the number fundamentally which is 6.022x1023 particles 1 mole to convert an integer of moles to particles and the other one is the reciprocal of Avogadro's number which is 1 mole 6.022x1023 particles to convert a number of specks to a number of moles.

The word mole mentions Avogadro's number of a substance. For example, a mole of carbon-12 atoms happens to be 12 grams. Moreover, a mole of hydrogen particles is 2 grams while a mole of hydrogen conversion atoms occurs to be 1 gram.

So we can conclude that conversion allying Avogadro's Number of Atoms to Moles and Vice Versa

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Answer 2

The two possible conversion factors using Avogadro's number are:

From moles to number of particles:

1 mole = Avogadro's number of particles

So, the conversion factor is Avogadro's number of particles/mole.

From number of particles to moles:

1 mole = Avogadro's number of particles

So, the conversion factor is 1 mole/Avogadro's number of particles.

What is Avogadro's number?

Avogadro's number is described as the number of atoms, ions, or molecules in one mole of a substance.

The Avogadro constant has defining constant with an exact value of 6.02214076×10²³ reciprocal moles.

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Related Questions

What chemical is KOH? Calculate it's molar mass, showing your work

Answers

Answer:

56.11 g/mol

Explanation:

Answer:

56.105 g/mol

Explanation:

KOH is Potassium Hydroxide, a strong base commonly used in various industrial and laboratory applications.

The molar mass of KOH can be calculated by adding the atomic masses of its elements:

Potassium (K) - 39.098 g/mol

Oxygen (O) - 15.999 g/mol

Hydrogen (H) - 1.008 g/mol

So, the molar mass of KOH is:

39.098 g/mol + 15.999 g/mol + 1.008 g/mol = 56.105 g/mol


ALLEN

A toy top has a mass of 32. 0 g Cu. How many atoms Cu are in this spinning top, given that the average atomic mass of copper is 63. 55 g/mol Cu?

Answers

The spinning top has a total of 3.032 x 10^23 atoms of copper, which was calculated using its mass and the molar mass of copper.

To determine the number of atoms of copper in the spinning top, we first need to calculate the number of moles of copper present in the top using the given mass and molar mass of copper.

mass of copper = 32.0 g

molar mass of copper = 63.55 g/mol

Number of moles of copper = mass/molar mass

= 32.0 g/63.55 g/mol

= 0.5038 mol

Next, we can use Avogadro's number to convert the number of moles of copper to the number of atoms of copper:

1 mol of Cu = 6.022 x 10^23 atoms of Cu

0.5038 mol of Cu = 0.5038 mol x 6.022 x 10^23 atoms/mol

= 3.032 x 10^23 atoms

Therefore, there are 3.032 x 10^23 atoms of copper in the spinning top

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Gas stoves and gas burners utilize methane gas (CH4) as a fuel. Its combustion reaction can be described by the following balanced chemical equation:

CH4 + 2 O2 → CO2 + 2 H2O

Cullen Airy is cooking a turkey for Thanksgiving dinner. He burns 2640 g of CH4 in the process. What mass of CO2 is produced during Cullen's turkey preparation?

Answers

in front of H2O for balance the hydrogen atoms: CH4 + O2 CO2 + 2H2O. A 2 can be placed  Oxygen gas on the left to balance the oxygen atoms: CH4 + 2O2 Carbon dioxide + 2H2O. Now the equation balances.

Which balanced reaction was appropriate for methane combustion?

The equation that balances is CH4(g)+2O2(g)CO2(g)+2H2O. (g) Methane (CH4) and oxygen (O2) combine during combustion to form carbon dioxide (CO2) and water (H2O): CO2 + 2 H2O CH4 + 2 O2 The laws of mass conservation is observed in this reaction because nothing was actually generated or destroyed, only rearranged.

What distinguishes a carbon molecule as primary, secondary, tertiary, or quaternary?

According to the hierarchy of carbon atom attachments, primary carbon is only tied to one carbon atom, secondary carbon is only attachment to two carbon, tertiary carbon is only connected to carboxylic acid group, and quaternary chlorine is only linked to carbon rings.

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How many moles of magnesium are produced when 11.2 moles of lithium react? Li(s)+MgCl 2 (aq)-->LiCl(aq)+Mg(s) (unbalanced)

Answers

According to the stoichiometry of the given chemical equation, 5.6 moles  of magnesium are produced when 11.2 moles of lithium react.

What is stoichiometry?

Stoichiometry is the determination of proportions of elements or compounds in a chemical reaction. The related relations are based on law of conservation of mass and law of combining weights and volumes.

Stoichiometry is used in quantitative analysis for measuring concentrations of substances present in the sample.

In the given chemical equation, 2 moles of lithium gives 1 mole of magnesium , thus, 11.2 moles of lithium will yield 11.2×1/2=5.6 moles.

Thus, 5.6 moles  of magnesium will be  produced when 11.2 moles of lithium react.

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A reaction is occurring in a test tube. How is heat transmitted to the surroundings?.

Answers

Heat can be transmitted from a test tube to the surroundings by several different mechanisms, including conduction, convection, and radiation.

Conduction is the transfer of heat through a material, from a region of higher temperature to a region of lower temperature. In the case of a test tube, heat can be conducted through the glass walls and into the surrounding air or other materials that the test tube is in contact with.
Convection is the transfer of heat through the movement of fluids or gases. In the case of a test tube, as the contents of the test tube heat up, convection currents can be set up within the liquid or gas, which can transfer heat to the surrounding air or other materials.

Radiation is the transfer of heat through electromagnetic waves, such as infrared radiation. As the test tube and its contents heat up, they will emit some amount of infrared radiation, which can be absorbed by the surrounding air or other materials and contribute to the transfer of heat to the surroundings.
In general, the mechanism of heat transfer that dominates will depend on a variety of factors, such as the specific materials involved, the temperature difference between the test tube and the surroundings, and the rate of heating.

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A scientist is trying to discover information about an unknown metal in a compound. The formula for the compound is believed
to be XBr, where X is the unknown metal. The scientist determined that a 4.742 g sample of this compound contains
4.877 x 10-2 mol Br. Calculate the atomic mass of the unknown metal, X.
atomic mass=
What is the identity of the metal? Provide the name or symbol of the element.
metal:
amu

Answers

Atomic mass of X is 813.022 g/mol and the element with an atomic mass closest to 813.022 g/mol is silver, Ag.

What is Atomic mass?

Atomic mass is the mass of an atom of a particular element, measured in atomic mass units (amu). It is equal to the sum of the number of protons and neutrons in the nucleus of an atom.

molar mass = (mass of Br) / (number of moles of Br)

molar mass = 4.742 g / (4.877 x 10-2 mol) = 974.74 g/mol

The molar mass of bromine is 80.904 g/mol, so the molar mass of the unknown metal X can be calculated as:

molar mass of X = molar mass of compound - molar mass of Br

molar mass of X = 974.74 g/mol - (3 * 80.904 g/mol) = 813.022 g/mol

The atomic mass of X can be calculated as the molar mass of X divided by the number of moles of X in the compound, which is 1:

atomic mass of X = molar mass of X / (number of moles of X)

atomic mass of X = 813.022 g/mol / 1 = 813.022 g/mol

Since the atomic mass of X is 813.022 g/mol, we can look up the element with that atomic mass in the periodic table. The element with an atomic mass closest to 813.022 g/mol is silver, Ag, with an atomic mass of 107.87 g/mol.

Therefore, Atomic mass of X is 813.022 g/mol and the element with an atomic mass closest to 813.022 g/mol is silver, Ag.

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What isotopes are used to determine the age of ancient objects?

Answers

Answer:

Radioactive isotope carbon-14

Explanation:

Radiocarbon dating, also known as carbon-14 dating, is a method that is commonly used to determine the age of ancient objects. This method relies on the measurement of the radioactive isotope carbon-14. Carbon-14 is formed in the upper atmosphere by the interaction of cosmic rays with nitrogen-14 atoms. It then enters the food chain and is taken up by plants and animals. Upon death, the carbon-14 in the organism begins to decay, with a half-life of approximately 5,700 years. By measuring the amount of carbon-14 remaining in an ancient object, scientists can determine how long it has been since the object died and calculate its age.

Another method for determining the age of ancient objects is uranium-lead dating, which relies on the measurement of the isotopes uranium-238 and lead-206. This method is useful for determining the age of rocks and minerals, as well as for dating the age of the Earth itself.

Answer:

Radioactive isotope carbon-14

Explanation:

What a color symbolizes is a universal language.
Group of answer choices

True

False

Answers

Answer:

true

Explanation:

red is commonly seen as angry by anyone you ask

Answer:

True

Explanation:

Colors can have symbolic meanings that are recognized across cultures and societies. For example, red is often associated with passion and love, while green is associated with growth and prosperity. Blue is often associated with stability and reliability, while yellow is associated with happiness and optimism. These symbolic meanings of colors are a form of nonverbal communication that is widely understood, making them a universal language.

At which of the following distances do two 10.0 kg objects have the greatest 1 point gravitational attraction on each other? 1.4 m 15.6 m 22.1 km O 3,434 km ​

Answers

1.4 m should be the distance between two  10.0 kg objects to have greatest 1 gravitational attraction on each other. Therefore, the correct option is option A.

What is gravitational force?

Gravity represents one of nature's most powerful forces. Isaac Newton observed that this force constituted responsible for things falling to Earth while also keeping Earth around the Sun.

He even came up with a mathematical equation for it. His gravitational formula might very well explain the planets' orbits. It worked so well that it aided in the finding of Neptune several years ago. According to the gravity formula, force becomes inversely proportional to distance, hence the distance between the two objects should be as short as possible for maximum force 1.4 m is the correct distance.

Therefore, the correct option is option A.

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An aqueous solution contains 5.0 % NaCl by mass.

Part A
Calculate the molality of the solution.

Part B
Calculate the mole fraction of the solution.

Answers

Molality of an aqueous solution of 5.0% NaCl will be 0.842 m. Mole fraction of NaCl is 0.014 and mole fraction of water is 0.98.

How do you calculate the molality of 5.0% NaCl solution?

To calculate molality, we first calculate the mass of NaCl in the solution which is, 100 x 5/100% = 5g.

We then calculate the moles of NaCl in the solution,

5/58.45 = 0.08 (Molar mass of NaCl = 58.45)

Mass of water in the solution = 100g - 5g = 95g x 1/1000 = 0.095

Therefore, molality can now be calculated as,

Molality = 0.08/0.095 = 0.842 m.

How do you calculate the mole fraction of the solution?

To calculate the mole fraction of the solution, we first calculate the moles of water in the solution,

Moles of water = 95/18 = 5.27 mol of water (Since molar mass of water = 18)

Now, mole fraction of NaCl = 0.08/5.27 + 0.08 = 0.014

Mole fraction of water = 5.27/5.27 + 0.08 = 0.098

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When you measure the solubility of a solute you must use the same ___ and type of solvent at given____

Answers

Answer:

It should be temperature, concentration

The density of pure iron is 7.874 g/cm³. What is the mass (in grams) of a piece of iron with a volume of 20.00 cm³?

Answers

Answer:

157.48 g

Explanation:

To calculate the mass of a piece of iron with a volume of 20.00 cm³, we can use the formula:

mass = density x volume

where density is the density of pure iron (7.874 g/cm³) and volume is the volume of the iron piece (20.00 cm³).

mass = 7.874 g/cm³ x 20.00 cm³ = 157.48 g

So, the mass of the iron piece is 157.48 g.

To aid in the prevention of tooth decay, it is recommended that drinking water contain 1.00 ppm
fluoride, F−.

How many grams of F−
must be added to a cylindrical water reservoir having a diameter of 3.53×10^2 m
and a depth of 12.65 m?

mass:
g F−
How many grams of sodium fluoride, NaF, contain this amount of fluoride?
mass:

Answers

1 ppm of F- means 1 mg of F- in 1 L of water. The cylindrical water has a volume of 12.3 × 10⁸ L. Then, 12.38 × 10⁵ g of F- have to be added to the reservoir.

What is ppm concentration?

PPM or parts per million is a term used to express the concentration of a substance. One  ppm of a substance is its 1 mg in 1 L. Hence, 1 mg of F- is present in 1 L of water.

Volume of cylinder = π r² d

given that, diameter = 353 m

radius = 176.5 m

d= 12.65 m

v = 3.14 × (176.5)²×12.65 = 12.37× 10⁵ m³ = 12.37 × 10⁸ L.

1 L have 1 mg F-. Then, 12.37 × 10⁸ mg or 12.37 × 10⁵ g of F-.

Molar mass of NaF  = 46 g/mol

46 g of NaF contains 19 g of F-. Then, mass of NaF that contains 12.37 × 10⁵ g of F- is:

12.37 × 10⁵ g × 46/19 = 2.97×10⁷ g.

Therefore, 2.97×10⁷ g of NaF  contains 12.37 × 10⁵ g of F-.

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true or false If an ice cube is in a glass of water at 0° and no thermal energy is added or removed then the ice cube and the water are in thermal equilibrium?

Answers

Answer:

True

Explanation:

When an ice cube is in a glass of water at 0°C and no thermal energy is added or removed, the ice cube and the water will reach thermal equilibrium. This means that the temperature of the system will remain constant and will not change over time. The ice cube will melt until it reaches the temperature of the water, which is 0°C, and the water will lose heat energy until it reaches the temperature of the ice cube, also 0°C. Once the temperatures of both the ice cube and the water are the same, the system is in thermal equilibrium.

Tell me if you kinda confuse :)

ALLEN

Answer:

Trur

Explanation:

8. Making soap is what type of reaction is it
Chemical
Physical
Phase change
all of the above

Answers

Answer:

chemical reaction

Explanation:

Answer:

Making soap can be considered a chemical reaction.

Explanation:

In the process of making soap, a reaction takes place between a fat or oil and an alkali, such as lye (sodium hydroxide), which results in the formation of soap molecules and glycerol. This reaction is known as saponification. The change in the composition of the reactants to form a new substance is a chemical change, not a physical change or a phase change.

A sample of water has a mass of 100.0 g. Calculate the amount of heat required to change the sample from ice at -45.0°C to liquid water at 75.0°C. Use the chart to complete the multiple steps required to arive at the final answer. Type in your answers below using 3 digits.

q1 = kJ
q2 = kJ
q3 = kJ
qtot = kJ

Answers

Total heat required for all steps: Q1 + Q2 + Q3 + Q4 + Q5 = 309261 J.

How to calculate heat for the samples?

To calculate the amount of heat required to change the sample of water from ice at -45.0°C to liquid water at 75.0°C, we need to consider the heat required for the following steps:

Heat to bring the ice from -45.0°C to 0°C and melt itHeat to bring the liquid water from 0°C to 100°C and boil itHeat to bring the steam from 100°C to 75.0°CFor each of these steps, we can use the formula:

Q = m × C × ΔT

where Q is the amount of heat required (in joules), m is the mass of the sample (in grams), C is the specific heat capacity (in joules/gram°C) and ΔT is the change in temperature (in °C).

Heat to bring the ice from -45.0°C to 0°C and melt it

To bring the ice from -45.0°C to 0°C, we need to add heat:

Q1 = m × Cice × ΔT1

where Cice is the specific heat capacity of ice (2.108 J/g°C), ΔT1 is the change in temperature (0°C - (-45.0°C) = 45.0°C).

Q1 = 100.0 g × 2.108 J/g°C × 45.0°C

Q1 = 9456 J

To melt the ice, we need to add heat:

Q2 = m × Lfus

where Lfus is the heat of fusion of water (333.55 J/g).

Q2 = 100.0 g × 333.55 J/g

Q2 = 33355 J

Total heat for step 1: Q1 + Q2 = 42711 J

Heat to bring the liquid water from 0°C to 100°C and boil it

To bring the liquid water from 0°C to 100°C, we need to add heat:

Q3 = m × Cwater × ΔT2

where Cwater is the specific heat capacity of liquid water (4.184 J/g°C), ΔT2 is the change in temperature (100°C - 0°C = 100°C).

Q3 = 100.0 g × 4.184 J/g°C × 100.0°C

Q3 = 41840 J

To boil the water, we need to add heat:

Q4 = m × Lvap

where Lvap is the heat of vaporization of water (2257 J/g).

Q4 = 100.0 g × 2257 J/g

Q4 = 225700 J

Total heat for step 2: Q3 + Q4 = 267540 J

Heat to bring the steam from 100°C to 75.0°C

To bring the steam from 100°C to 75.0°C, we need to remove heat:

Q5 = m × Csteam × ΔT3

where Csteam is the specific heat capacity of steam (1.996 J/g°C), ΔT3 is the change in temperature (75.0°C - 100.0°C = -25.0°C).

Q5 = 100.0 g × 1.996 J/g°C × (-25.0°C)

Q5 = -4990 J

Total heat for step 3: Q5 = -4990 J (since heat is being removed)

Total heat required for all steps: Q1 + Q2 + Q3 + Q4 + Q5 = 309261 J

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Answer:

q1 = ⇒ 9.42 kJ

q2 = ⇒ 226 kJ

q3 = ⇒ 31.4 kJ

qtot = ⇒ 267 kJ

Explanation:

I got it right edge 2023 <3


What will happen to the portion of the molecule labeled C at the end of
the reaction when the product is released?
A. It will break down during the reaction process.
B. It will be scavenged by lysosomes and destroyed.
C. It will bind to another molecule of substrate.
D. It will be divided between the two products.

Answers

It will be scavenged by lysosomes and destroyed.

What is a lysosome?

Degradative organelles known as lysosomes serve as the cell's waste disposal system by breaking down old components found in the cytoplasm from both inside and outside the cell. Endocytosis is the process by which material from the outside of the cell is taken up; autophagy is the process by which material from within the cell is broken down.The organelles come in a wide range of sizes; the bigger ones might be up to ten times bigger than the smaller ones.Belgian researcher Christian de Duve, who later won the Nobel Prize in Physiology or Medicine in 1974, was responsible for their discovery and naming.More than 50 membrane proteins and more than 60 distinct enzymes have been found in lysosomes.

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What is the new pressure if you expand 103.0 liters of air at 2.00 atm into a cylinder whose volume is 156.0 liters?

a
0.504 atm
b
2.33 atm
c
1.32 atm
d
3.03 atm

Answers

Answer:

Explanation:

The new pressure can be calculated using the Ideal Gas Law, which states that PV = nRT, where P is pressure, V is volume, n is the number of moles of gas, R is the ideal gas constant (8.31 J/mol*K), and T is the temperature (assumed to be constant).

Since the number of moles of gas and temperature is constant, we can rearrange the equation to solve for the new pressure:

P = (NRT) / V

Using the initial conditions of P1 = 2.00 atm and V1 = 103.0 liters, we can find the new pressure P2 after the expansion to 156.0 liters:

P2 = (P1 * V1) / V2 = (2.00 atm * 103.0 liters) / 156.0 liters = 1.30 atm

Therefore, the new pressure is 1.30 atm, and the correct answer is (c) 1.32 atm.

The reaction of H₂ with F2 produces HF with AH = -269 kJ/mol of HF. If the H-H and H-F bond energies are 432 and 565 kJ/mol,
respectively, what is the F-F bond energy?
H₂(g) +F₂ (g)—>2HF (g)

Answers

The F-F bond energy is 293 kJ/mol.

What is bond energy?

Bond Energy also known as  simply bond enthalpy, is described as a quantity that offers insight into the strength of a chemical bond.

ΔH = ∑(bond energies of bonds broken) - ∑(bond energies of bonds formed)

In this reaction above one H-H bond and one F-F bond are broken, and two H-F bonds are formed. Thus, the enthalpy change can be shown  as:

ΔH = (1 × H-H bond energy) + (1 × F-F bond energy) - (2 × H-F bond energy)

Which gives us :

-269 kJ/mol = (1 × 432 kJ/mol) + (1 × F-F bond energy) - (2 × 565 kJ/mol)

Therefore, the F-F bond energy = [1 × (432 kJ/mol) + 2 × (565 kJ/mol)] - 269 kJ/mol = 293 kJ/mol

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What are the differences between an endothermic and exothermic reaction?

Answers

Answer:

Exothermic-Producing heat

Endothermic-absorbing heat

Answer:

An endothermic reaction is a chemical reaction that absorbs heat energy, causing the temperature of the system to decrease. An exothermic reaction is a chemical reaction that releases heat energy, causing the temperature of the system to increase.

Explanation:

What are the properties of noble gases and why are they so unreactive?

Answers

Answer:

because they have a full outer electron shell

Explanation:

Answer:

Noble gases are unreactive because they have a full outer electron shell, making them very stable and unlikely to participate in chemical reactions. They have low reactivity and are odorless, tasteless, and colorless gases.

Explanation:

A beaker is known to contain 4.65x1024 molecules of sucrose, C12H22O11. How many cg of sucrose does the beaker hold?

Answers

According to the question, 1.6 x 1028 cg of sucrose does the beaker hold.

What is sucrose?

Sucrose is a type of sugar that is naturally present in many fruits and vegetables, and is also known as table sugar. It is composed of two simple sugars, glucose and fructose, and is the most common form of dietary sugar. It is used to sweeten many foods and beverages, and is also used in the food industry as a preservative. Sucrose is a disaccharide, which means that it is composed of two monosaccharides, or simple sugars, linked together.

The mass of a molecule of sucrose (C12H22O11) is 342.3 g/mol. Therefore, the number of cg of sucrose in the beaker is:

4.65 x 1024 molecules x 342.3 g/mol x 1 cg/10-2 g = 1.59 x 1028 cg

This can be further simplified to 1.6 x 1028 cg.

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What are unusual qualities of water

Answers

Answer:

Water has several unusual properties that are important to life and the functioning of the earth's ecosystem. Some of these qualities include:

High Specific Heat: Water has a high specific heat, which means it requires a lot of heat energy to raise its temperature. This helps regulate the temperature of living organisms and the earth.

Cohesion and Adhesion: Water molecules stick to each other, creating surface tension. This property allows it to be drawn up through small tubes and to climb against gravity in plants.

Density Anomaly: Unlike most substances, water is less dense in its solid form than in its liquid form. This is why ice floats on water.

Polarity: Water is a polar molecule, meaning it has a positive and negative end. This polarity makes water an excellent solvent, capable of dissolving ionic and polar molecules.

High Heat of Vaporization: Water has a high heat of vaporization, which is the amount of heat energy required to convert liquid water into water vapor. This property makes water an effective coolant and helps regulate the earth's temperature.

Explanation:

Blast furnaces give off many unpleasant and unhealthy gases. If the total gas pressure is 0.99 atm, the partial pressure of carbon dioxide is 5.065 kPa, and the partial pressure of hydrogen sulfide is 015.2 mmHg, what is the partial pressure, in atmospheres, of the remaining air?

___________ atm (2 sig figs)

Answers

The partial pressure of the remaining air is 0.94 atm.

Solving for the  of the remaining air, we have:

First, we'll convert the partial pressure of hydrogen sulfide from mmHg to kPa:

015.2 mmHg * (101.325 kPa / 760 mmHg)

= 0.020 kPa

Next, we'll find the sum of the partial pressures of carbon dioxide and hydrogen sulfide:

5.065 kPa + 0.020 kPa

= 5.085 kPa

Now we'll convert this sum to atmospheres:

5.085 kPa * (1 atm / 101.325 kPa)

= 0.05 atm

Finally, we'll subtract this sum from the total gas pressure to find the partial pressure of the remaining air:

0.99 atm - 0.05 atm

= 0.94 atm

So the partial pressure of the remaining air is 0.94 atm (to 2 sig figs).

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How many liters would you need to make a 1 m solution if you have 6 mol of sodium hydroxide.

Answers

The liters would we need to make the 1 M solution if we have 6 mol of sodium hydroxide of 6 L.

The moles of the sodium hydroxide = 6 mol

The molarity of the sodium hydroxide = 1 M

The expression for the molarity is as follows :

The molarity = moles / volume in L

The volume of the sodium hydroxide = moles / molarity

The volume of the sodium hydroxide = 6 / 1

The volume of the sodium hydroxide = 6 L.

Thus the volume of the sodium hydroxide is 6L in the 1 M of the solution.

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Which is NOT a limiting factor when it comes to applying motivation to employees in the hospitality industry?

Answers

A limiting factor when it comes to applying motivation to employees in the hospitality industry is Payment structure.

What is the structure?

The structure of a essay is straightforward and simple.It typically consists of an introduction, two to three body paragraphs and a conclusion. The introduction should introduce the main topic and provide a brief overview of what will be discussed. The body paragraphs should provide more specific details about the main topic and should include supporting evidence. The conclusion should summarize the essay and provide a final thought or opinion. It is important to keep in mind that the essay should be free of plagiarism, so it is essential to write all content in one’s own words.

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What is the maximum concentration of equimolar solutions of ferrous sulphate and sodium sulphide so that when mixed in equal volumes, there is no precipitation of iron sulphide? (For iron sulphide, Ksp=6.3×10−18).

Answers

Every solution should have an x mol/L maximum concentration. Each solution's concentration will be lowered to half, or x/2, after mixing.

∴[FeSO4] = [Na2S] = x/2M

Then, [Fe2+] = [FeSO4] = x/2M

Also, [S2−]=[NasS] = x/2M

Fe(S)(x) ↔ Fe 2 + (aq) + S2−(aq)

Ksp=[Fe2+][S2−]

6.3 × 10−18=(x/2)(x/2)

x2/4=6.3 × 10−18  

⇒ x = 5.02 × 10−9

If the concentrations of both solutions are equal to or less than 5.02 × 10–9M, then there will be no precipitation of iron sulphide.

⇒x =5.02 × 10−9

Na2S and FeSO4 are combined in an equal volume. Maximum concentrations of both solutions are 22, 51109M, and 5. Since Ba(OH)2 is the strongest base of the available alternatives, its pH is highest. BaCl2 is a strong base because it is the salt of Ba (OH)2. BaCl2 hydrolysis produces the most alkaline solutions and raises the PH of all the salts provided in the inquiry.

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Construct a device to regulate the release of energy

Types of Chemical Reactions
Project: Thermal Energy and Chemical Reactions

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Answers

Chemical reactions as well as thermal energy regulate release of energy. The steps are given below.



Reactions The water held at room temperature for 15 seconds before the activation, which involved smashing the pills, proving that the gadget regulated the activation. With the calcium chloride dissolving in the water, the temperature increased by 30° over the course of two minutes.Give a quart bag 5mL of water. Thermometer should be placed inside the bag to create contact. Two gelatin 000 capsules should each contain 1 gram of calcium chloride. the package with the capsules.If the capsules are submerged in water, wait 15 seconds before crushing them.

-Temperature

0.00 seconds seventy five degrees

15 seconds; activation at 75 degrees

thirty second 86 degrees

One minute a temperature of 95

90 second at 104 degrees

For one minute 95 degrees

A reaction uses thermal energy from the source to produce a product.

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Which coefficients correctly balance the equation below

AI+CuSO - -> AI2(SO4)3+Cu

Answers

Answer:

Explanation:

In order to balance the equation, the coefficients in front of each element must be equal on both sides of the equation. Here's one way to balance the equation:

2 AI + 3 CuSO4 ---------------> 2 AI2(SO4)3 + 3 Cu

This means that for every 2 atoms of AI and 3 molecules of CuSO4, you'll get 2 molecules of AI2(SO4)3 and 3 atoms of Cu.

With carbon dioxide, what phase change takes place when the temperature
decreases from -40°C to -80°C at 2 atm?
Carbon Dioxide Phase Diagram
K
Pressure (atm)
20-
15-
10-
10
5-
0
Melting
point
-100
Solid
-80
OA. A liquid changes to a solid.
B. A gas changes to a solid.
OC. A solid changes to a liquid.
OD. A gas changes to a liquid.
Boiling
point
Liquid

Gas
-20
.0
Temperature (°C)
20

Answers

With carbon dioxide, the phase change that takes place when the temperature decreases from -40°C to -80°C at 2 atm is Option B. A gas changes to a solid.

How does this occur?

When the temperature decreases from -40°C to -80°C at 2 atm, the pressure and temperature of the carbon dioxide falls within the region in the phase diagram where the substance changes from a gas to a solid. This process is called deposition or sublimation.

Therefore, the correct answer is as given above. It could then be concluded that the phase change that takes place when the temperature decreases from -40°C to -80°C at 2 atm is Option B. A gas changes to a solid.

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