Dicarbon heptoxide formula is…
A. C70₂
B. C₂07
C. CO
D. 2C70

Answers

Answer 1

Answer: B

Explanation:

dicarbon means 2 carbons

Heptoxide = hept means 7

thus C2O7


Related Questions

Pls I need help urgently. Find the Lewis dot structure for water and ethanol and examine the structures and identify which part is partial negative and partial positive.

Answers

The Lewis dot structure of water and ethanol are attached in the images below with hydrogen being positive and oxygen negative in water and ethyl part positive and hydroxyl part negative in ethanol.

What are Lewis dot structures?

Lewis dot structures are also called as electron dot structures and can be drawn if the molecular formula of a compound is known. It provides information regarding the nature of bond and the position of atoms .

They are also capable of exhibiting the lone pair if any present in a molecule or compound.Lewis defined a base to be an electron pair donor and an acid to be an electron pair acceptor.

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Burning wood in a fireplace heats the room around it. Is this an example of convection, conduction, or radiation

Answers

Yes it is an example of convection conduction and radiation

What is the molarity of ZnCl2 that forms when 20.0 g of zinc completely reacts with CuCl2 according to the following reaction? Assume a final volume of 285 mL . Zn(s)+CuCl2(aq)→ZnCl2(aq)+Cu(s)

Answers

Its molarity of [tex]ZnCl_{2}[/tex]  produced by the full reaction of 20.0 g of zinc with [tex]CuCl_{2}[/tex] is 1.364 M.

What in chemistry is molarity?

The proportion of solute moles to solution length is known as molarity. By dividing the number of moles of HCl but by amount (L) of the fluid where it had been dissolved, we may get the acid solution's molarity.

Molarity of product Zinc Chloride which is formed when 25.0 g of Zinc completely reacts with copper(II) chloride:

[tex]ZN(s) + CuCl_{2} (aq)[/tex] → [tex]ZnCl _{2} (aq) + Cu(s)[/tex]

Firstly no of moles of Zn can be obtained from :  

[tex]Moles of Zn = \frac{Mass of Zn }{ Molar mass of Zn}[/tex], molar mass of Zn = 65.38 g/mol  

hence moles of Zn = 25.0 g / 65.38 g/mol = 0.382 mol.

Now some conversion are needed to be done like:

1 m L = 0.001 L

Volume of solution = 285 mL

Hence 285 mL = 285 × 0.001 L = 0.28 L

Finally Molarity of [tex]ZnCl_{2}[/tex] can be calculated by:  

Molarity of [tex]ZnCl_{2}[/tex] = [tex]\frac{number of moles of solute }{volume of solution in litres}[/tex]

Molarity = [tex]\frac{0.382mol}{0.28L}[/tex]

             = 1.364 M.

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Express the rate of reaction in terms of the change in concentration of each of the reactants and products: 2D(g) + 3E(g) + F(g) → 2G(g) + H(g) Rate = − 2 Δ[D] Δt = − 3 Δ[E] Δt = − Δ[F] Δt = 2 Δ[G] Δt = Δ[H] Δt Rate = 1 2 Δ[D] Δt = 1 3 Δ[E] Δt = 2 3 Δ[F] Δt = − 1 2 Δ[G] Δt = − Δ[H] Δt Rate = − 1 2 Δ[D] Δt = − 1 3 Δ[E] Δt = − Δ[F] Δt = 1 2 Δ[G] Δt = Δ[H] Δt When [D] is decreasing at 0. 74 mol/L·s, how fast is [H] increasing?

Answers

The rate of the reaction is correlated with the variation in concentration of each reactant and product, as can be seen from the rate expressions provided.

Express the rate of reaction in terms of the change in concentration of each of the reactants and products:

Rate = 1/2 [D] / [H] / [T]

This demonstrates that the reaction's rate and [H] concentration change are directly inversely related. Given that [D] is vanishing at a rate of 0.74 mol/L/s, the following conclusions can be drawn:

[D]/[t] = -0.74 mol/Ls We can solve for [H] / t by substituting this value into the rate expression above: Rate = 1/2 [D] / [H] / [T], ([H] / t) = -1/2 (-0.74 mol/Ls), [H]/[t] = 2(0.74 mol/L s) = 1.48 mol/L s With [D] decreasing at a rate of 0.74 mol/L, [H] is therefore increasing at a rate of 1.48 mol/L/s.

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Amixture of0.5 mole of ethanoic acid and 1 mole of ethanol in Idm' was allowed to reach equilibrium at room temperature.
The equilibrium mixture was quickly titrated and 40 cm° of 2 mol dm sodium hydroxide was used in the titration.
(a) Why was the reaction titrated quickly?
(b) Using the titration results, calculate the number of
moles of
(t) ethanoic acid left in the equilibrium mixture. (ii) ethanoic acid reacted. (ili) ethanol reacted.
(iv) ethanol left in the equilibrium mixture.
(e) Caleulate the equilibrium constant for the reaction between ethanoic acid and ethanol at room temperature.

Answers

(a) The reaction was titrated quickly to prevent further reaction between the reactants and products.

(bi) Number of moles of ethanoic acid left in the equilibrium mixture = 0.42 mol

ii) Number of moles of ethanoic acid reacted is 0.08 mol

iii) the number of moles of ethanol reacted is also 0.08 mol.

iv) Number of moles of ethanol left in the equilibrium mixture = 0.92 mol

(e) The equilibrium constant for the reaction between ethanoic acid and ethanol at room temperature is 0.209 dm^3/mol.

Titration of Ethanoic Acid

(a) The reaction was titrated quickly to prevent further reaction between the reactants and products. The equilibrium between ethanoic acid and ethanol is reversible, and the addition of sodium hydroxide (a strong base) can shift the equilibrium towards the formation of the products. By titrating quickly, the equilibrium is essentially "frozen" at the moment of titration, and the moles of each reactant and product present in the equilibrium mixture can be determined.

(b) The balanced equation for the reaction between ethanoic acid and ethanol is:

CH3COOH + C2H5OH ⇌ CH3COOC2H5 + H2O

(i) Number of moles of ethanoic acid left in the equilibrium mixture:

Number of moles of sodium hydroxide used = 40 cm^3 × 2 mol/dm^3 = 0.08 mol

Since the stoichiometric ratio between sodium hydroxide and ethanoic acid is 1:1, the number of moles of ethanoic acid reacted is also 0.08 mol.

Number of moles of ethanoic acid left in the equilibrium mixture = 0.5 mol - 0.08 mol = 0.42 mol

(ii) Number of moles of ethanoic acid reacted:

0.08 mol

(iii) Number of moles of ethanol reacted:

Since the stoichiometric ratio between ethanol and ethanoic acid is 1:1, the number of moles of ethanol reacted is also 0.08 mol.

(iv) Number of moles of ethanol left in the equilibrium mixture:

Number of moles of ethanol initially present = 1 mol

Number of moles of ethanol reacted = 0.08 mol

Number of moles of ethanol left in the equilibrium mixture = 1 mol - 0.08 mol = 0.92 mol

(e) The equilibrium constant (Kc) for the reaction can be calculated using the concentrations of the reactants and products at equilibrium. At equilibrium, the concentration of each component can be calculated as follows:

[ethanoic acid] = 0.42 mol / 1 dm^3 = 0.42 mol/dm^3

[ethanol] = 0.92 mol / 1 dm^3 = 0.92 mol/dm^3

[ethyl ethanoate] = 0.08 mol / 1 dm^3 = 0.08 mol/dm^3

Kc = ([ethyl ethanoate] x [H2O]) / ([ethanoic acid] x [ethanol])

= (0.08 mol/dm^3) / (0.42 mol/dm^3 x 0.92 mol/dm^3)

= 0.209 dm^3/mol

Therefore, the equilibrium constant for the reaction between ethanoic acid and ethanol at room temperature is 0.209 dm^3/mol.

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Jill formed ionic compounds using the index cards. She combined sodium and zinc to form the compound Na,Zn. Is this a possible ionic compound? Why or why not?

Answers

No, as they both have positive charges and ionic compounds form due to the attraction of opposite charges.

In the case given, Na and Zn both have +1 charges. They cannot be compatible for forming an ionic compound. The metal ion and its charge should be written first, then the nonmetal ion and its charge. Decide how many of each ion are required for the positive and negative charges to balance each other out, as the complex as a whole need to be electrically neutral.

The crisscross approach is an alternative to writing a valid formula for an ionic chemical. With this technique, each ion charge's numerical value is crossed across to form the subscript of the other ion. Charges' indicators are removed.

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What term describes the application of water to farmland from

a source such as a lake or river?

Answers

The term that describes the application of water to farmland from a source such as a lake or river is "irrigation."

What is Irrigation?

Irrigation is the process of artificially supplying water to crops or plants to promote their growth and development. It involves the application of water to agricultural land using various techniques, such as sprinklers, drip systems, or flood irrigation. The primary purpose of irrigation is to supplement the natural rainfall that is insufficient or irregular in certain regions, allowing farmers to grow crops in areas that would otherwise be unsuitable for farming. Irrigation systems can be designed to deliver the required amount of water directly to the roots of plants, which can increase crop yields and improve the quality of the produce. However, overuse or mismanagement of irrigation can lead to waterlogging, soil salinization, and other environmental problems.

Irrigation is the artificial application of water to land for the purpose of agricultural production. It is a critical practice in areas where rainfall is insufficient or unreliable, as it provides a reliable source of water for crops to grow. Irrigation systems can vary widely depending on the type of crops being grown, the availability of water, and the topography of the land.

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as for what your writing it will be one of the biggest enviromental problems in 2023. pls help ASAP

Answers

I'm writing to you about an important land use conservation issue that has been gaining attention recently: preserving and protecting public lands.

What is issue?

Issue is a term used to describe an unresolved problem or conflict. It can apply to any area of life, from personal relationships to global politics. An issue can be caused by many different factors, and can be addressed through a variety of methods. In some cases, an issue may be resolved through compromise or negotiation. In other cases, a resolution may require more formal methods, such as a court ruling or a change in a law.

As population growth and development continue to put a strain on our limited public land resources, it is essential that we work to conserve and protect these areas for future generations.
Public lands are used for a variety of important reasons, including recreation, wildlife habitat, timber production, and extractive resource extraction. Unfortunately, these areas are often threatened by development, recreational use, and resource extraction. To alleviate this issue, we need to take steps to protect these lands from further destruction by creating and enforcing regulations that prevent development and resource extraction. Additionally, we need to ensure that these areas are properly managed and maintained so that they can continue to provide a variety of benefits to the public.
There are a variety of ways that individuals can get involved in helping to protect public lands. One way is to join or support local organizations that are actively working to protect these areas. Additionally, individuals can write letters to their representatives to let them know their opinions on land use issues. Finally, individuals can volunteer their time to help with conservation or management efforts at public lands.
I hope you will join me in taking action to protect our public lands. Together, we can ensure that these areas remain available for future generations to enjoy.

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How much carbon dioxide is produced with 1000 grams of gasoline

Answers

Burning 1000 grams of gasoline results in about 2.3 kilograms (5.1 pounds) of carbon dioxide.

What is carbon dioxide?

One carbon atom and two oxygen atoms make up the odorless, naturally occurring gas known as carbon dioxide (CO2). The atmosphere of Earth contains most of it, which makes up roughly 0.04 percent of the air there.

Moreover, the respiration of animals, the burning of fossil fuels, and the fermentation of carbohydrates in beer and wine all produce carbon dioxide as byproducts.

A crucial component of the carbon cycle that occurs naturally on Earth and influences climate is carbon dioxide. Animals breathe out carbon dioxide whereas plants absorb it during photosynthesis.

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What mass, in kg, of lithium hydroxide can be produced from 9.41 moles of lithium nitride? 1kg = 1000g

1Li3N + 3H2O = 3LiOH + 1NH3

Answers

Answer:

0.67752kg

Explanation:

Mole ratio of LiOH to Li3N

=n(LiOH)/n(Li3N

=3/4

The tails of animals can serve many important functions. They are mainly used in balance and locomotion. Many lizards have a fragile, detachable tail that will come off when they are attacked by predators, allowing them to escape.

Why is the presence of a brightly colored, detachable tail an advantage for some lizards?

Answers

Answer:

The presence of a brightly colored, detachable tail can be advantageous for some lizards because it serves as a distraction or decoy for predators. When a predator attacks, the lizard can quickly detach its tail, which wriggles and continues to move for a short period of time. This sudden movement can divert the predator's attention away from the lizard's body, allowing the lizard to escape.

The bright coloration of the tail can also help to draw the predator's attention towards it, instead of the lizard's body. Bright colors are often used in the animal kingdom as warning signals, indicating that an animal is toxic or dangerous. While the lizard may not necessarily be toxic or dangerous, the bright colors of its tail can create a similar effect, deterring predators from attacking in the first place.

Additionally, the detachable tail can serve as a form of self-defense, allowing the lizard to escape from a predator's grasp. By detaching its tail, the lizard can leave the predator with a distraction while it makes its escape. Over time, the lizard can regrow its tail, allowing it to continue to use this defense mechanism in the future.

The NH3 synthesis in Haber's process is an exothermic reaction it should be favoured at low temperature but optimum temperature is 400 degree Why?

Answers

For the below mentioned reason, Haber's method operates at the ideal temperature of 450C:

ReasonBy adjusting the temperature or pressure, Haber's process is a reversible process that can alter the ammonia production.With rising temperatures, there is a reduction in ammonia production. Only at temperatures between 450 and 500 degrees Celsius can an ammonia production be substantial.A lengthy process would be required to produce ammonia if the temperature was too low. In order to keep the rate of reaction high, 450°C is maintained.Due to the temperature, pressure, and hot iron catalyst being kept in good condition, ammonia production is excellent. Because nitrogen and hydrogen are recycled, the reactants are only very minimally wasted.N2 (g) + 3H2 (g) 450°C–500°C2NH3 (g).

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HELP ME PLEASE

Which of the following best explains why ice help keep aquatic animal alive in the winters?



Responses


Because water temporarily freezes the fish and actually extends their life span.




Because frozen water is less dense than liquid water and therefore floats in liquid water.


Because water contains hydrogen and oxygen and those two elements are important elements for life.



Because the frozen water is more dense than liquid water and therefore floats in liquid water

Answers

Answer: Because frozen water is less dense than liquid water and therefore floats in liquid water.

If 625 g of Fe3O4 is produced in the reaction, how many moles of hydrogen re produced at the same time ?

Answers

Answer:

Explanation:

Really need the equation.  But I am assuming it is this

3 Fe    + 4 H20 --> Fe3O4    +4 H2

625 gFe3O4 / 232 g Fe3O4 X 4 moles H2 / 1 mole Fe3O4  = 10.78 moles H2

If this equation is different than the one in your question you just need to plug in the number in front of the H2 where I have written a 4.

If 625 g of Fe[tex]_3[/tex]O[tex]_4[/tex]  is produced in the reaction, 10.78 moles of hydrogen are produced at the same time.

What is mole?

In the Worldwide System of Units, the mole (sign mol) is indeed the unit of material quantity (SI). The quantity of a substance is a measurement that indicates how many elementary constituents of a certain substance are present in an object as well as sample.

The mole has been defined as having  6.022×10²³  elementary entities.

3 Fe    + 4 H[tex]_2[/tex]O → Fe[tex]_3[/tex]O[tex]_4[/tex]   +4 H[tex]_2[/tex]

625g Fe[tex]_3[/tex]O[tex]_4[/tex] / 232g Fe[tex]_3[/tex]O[tex]_4[/tex] X 4 moles H2 / 1 mole Fe[tex]_3[/tex]O[tex]_4[/tex]  = 10.78 moles H[tex]_2[/tex]

Therefore, 10.78 moles of hydrogen are produced at the same time.

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How many moles are 5.42x10^26 atoms of calcium

Answers

900moles are 5.42x10²⁶ atoms of calcium.

What does the Avogadro number mean?

Avogadro's number, or the quantity of units contained in one mole of any material, is 6.02214076* 10²³. Depending on the material and the reaction's characteristics, the units could be electrons, atoms, ions, or molecules (if any).

It indicates the quantity of atoms or molecules in a substance or an element per gram of the respective unit. The number is 6.022*10
²³, which is obtained by dividing the atomic mass of an element by the actual mass of its atom.

There are 6.02*10²³ atoms in one mole

So, 5.42x10²⁶ atoms of calcium will be [tex]5.42x10^{26}/6.02*10 ^{23[/tex] moles i.e.

900moles.

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i need help answering these questions

Answers

The properties of gas are that  they are easy to compress and they will expend to fill their container as well as they occupy more space then the liquids and solids they originated from.

What is gas?

An imaginary gas which perfectly obeys gas laws is called as an ideal gas. It is a hypothetical gas whose molecules do not occupy any space and have no interactions among themselves.

This is the formula:

P . V = n . R. T

where P respresents the pressure of the gas, the V the volume where the gas is contained and T refers to the absolute T (T° in K)

R is the Universal Gases constant → 8.31 J/K.mol or 0.082 L.atm/mol.

Therefore, The properties of gas are that  they are easy to compress and they will expend to fill their container as well as they occupy more space then the liquids and solids they originated from.

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If 2.852 mol O2 is reacted with 5.088 mol CO2

2CO + O2 = 2CO2

a. how many moles of CO2 will be formed?
b. How many moles of the excess reactant remains?

Answers

According to the stoichiometry of the chemical equation, 5.704 moles of carbon dioxide are formed and 3.704 moles of the excess reactant remains.

What is stoichiometry?

It 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.

1 mole of oxygen gives 2 moles carbon dioxide thus 2.852 moles of oxygen will give 2×2.852=5.704 moles and moles of excess reactant remaining=5.704-2=3.704 moles.

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Element X has an electronegativity of 2. 5 and Y has an electronegativity of 9. X is a ____ and Y is a _____. A) Metal, nonmetal

B) Nonpolar Metal, Metal C) nonmetal, Metal

D) Metal, nonpolar metal

Answers

Element X has an electronegativity of 2. 5 and Y has an electronegativity of 9. X is a metal and Y is a non-metal.

The correct answer is option a.

Element X has a lower electronegativity than Element Y, which means that Element X is a metal and Element Y is a nonmetal.

The capacity of an atom to draw electrons towards itself when it establishes a chemical connection with another atom is measured as electronegativity. It is a fundamental feature of atoms and is commonly measured on the Pauling scale, which provides numerical values ranging from 0.7 (for the least electronegative element, cesium) to 4.0 (for the most electronegative element, uranium) (for the most electronegative element, fluorine).

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Find the mass of liquid water required to absorb 3.12×10^4 kJ of heat energy on boiling.
Answer in units of g.

Answers

Approximately 13836 grams (or 13.8 kg) of liquid water is required to absorb 3.12×10^4 kJ of heat energy on boiling.

How to find the mass of liquid water required to absorb ?

To find the mass of liquid water required to absorb 3.12×10^4 kJ of heat energy on boiling, we need to use the following formula:

q = m * ΔH

Where

q is the heat energy absorbedm is the mass of the waterΔH is the enthalpy of vaporization of water

The enthalpy of vaporization of water is 40.7 kJ/mol.

To convert kJ to J, we multiply by 1000:

q = 3.12×10^4 kJ = 3.12×10^7 J

Substituting the values, we get:

3.12×10^7 J = m * (40.7 kJ/mol)

To solve for the mass of water, we need to first convert the enthalpy of vaporization to J/g:

40.7 kJ/mol = 40.7×10^3 J/mol

The molar mass of water is 18.015 g/mol, so we can calculate the enthalpy of vaporization per gram:

40.7×10^3 J/mol / 18.015 g/mol = 2257 J/g

Substituting this value, we get:

3.12×10^7 J = m * (2257 J/g)

Solving for m, we get:

m = 3.12×10^7 J / (2257 J/g)

m ≈ 13836 g

Therefore, approximately 13836 grams (or 13.8 kg) of liquid water is required to absorb 3.12×10^4 kJ of heat energy on boiling.

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How many milligrams of ca2+ are present in 10. 0 ml of blood if 20. 72 ml of 0. 000903 m kmno4 solution is needed for the titration

Answers

Answer: 87690.67

Explanation: I don't even know if that's correct but i tried and i got close to that answer the i looked it up to see if i did it correctly and it rounded it up to that sooooooooo.........yeah.

The density of oxygen at 1 atm and various temperatures is given in the table. Plot the data and circle the temperature(s) at which oxygen changes from liquid to gas.

Answers

Note that the point at which oxygen changes from liquid to gas is 90k. See the attached graph.

What is the rationale for the above response?

To plot the data, we can use a line graph with temperature (T) on the x-axis and density (d) on the y-axis. Here is a plot of the data:

From the plot, we can see that the density of oxygen decreases as the temperature increases. At around 90 K, there is a significant drop in density, indicating a change in state from liquid to gas. We can circle this temperature as the point at which oxygen changes from liquid to gas.

Therefore, we can circle the temperature 90 K as the point at which oxygen changes from liquid to gas.

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if 45.8 L of hydrogen gas is produced in this reaction at STP, how many moles of sulfuric acid were reacted

Answers

One H2SO4 molecule has a 98 Atomic Weight Unit atomic mass. H2SO4 has an atomic mass of 98 grams per mole. One mole of H2SO4 is therefore present in 98 grams of H2SO4.

In chemistry, how is H2SO4 referred to?

A powerful mineral acid with chemical formula H2SO4, sulfuric acid is extremely corrosive. It is a viscous liquid with a pungent-ethereal aroma that is soluble in water throughout all concentrations and ranges in color from colorless to slightly yellow.

Is H2SO4 an effective basic or acid?

An extremely potent acid is sulfuric acid (H2SO4). An indication of a powerful acid is that sulfuric acid totally dissociates in water. Also, when a strong base reacts with a strong acid, the result is neutral salt and water. A neutral salt called Na2SO4 is created when the strong base NaOH and sulfuric acid are combined.

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What volume of oxygen can be produced from the decomposition of 25 g of aluminum chloride at 28°C in 750 mmHg

Answers

Answer:

Therefore, approximately 8.5 mL of chlorine gas can be produced from the decomposition of 25 g of aluminum chloride at 28°C and 750 mmHg.

Explanation:

The decomposition of aluminum chloride will not produce oxygen. Instead, it produces aluminum oxide and chlorine gas. The balanced chemical equation for this reaction is:

2AlCl3(s) → Al2O3(s) + 3Cl2(g)

To determine the volume of chlorine gas produced from the decomposition of 25 g of aluminum chloride, we need to use the ideal gas law, which is PV = nRT, where P is the pressure of the gas in atmospheres, V is the volume of the gas in liters, n is the number of moles of gas, R is the ideal gas constant (0.0821 L·atm/mol·K), and T is the temperature of the gas in Kelvin.

First, we need to determine the number of moles of aluminum chloride. The molar mass of AlCl3 is 133.34 g/mol, so:

25 g AlCl3 × (1 mol AlCl3/133.34 g AlCl3) = 0.187 moles AlCl3

According to the balanced chemical equation, 2 moles of AlCl3 will produce 3 moles of Cl2 gas. Therefore, 0.187 moles of AlCl3 will produce:

0.187 moles AlCl3 × (3 moles Cl2/2 moles AlCl3) = 0.2805 moles Cl2

Now we can use the ideal gas law to calculate the volume of Cl2 gas produced. We need to convert the temperature from Celsius to Kelvin by adding 273.15.

PV = nRT

V = nRT/P

V = (0.2805 mol) × (0.0821 L·atm/mol·K) × (301.15 K) / (750 mmHg × 1 atm/760 mmHg)

V = 0.0085 L or 8.5 mL (rounded to two significant figures)

Therefore, approximately 8.5 mL of chlorine gas can be produced from the decomposition of 25 g of aluminum chloride at 28°C and 750 mmHg.

3.7522 mol of F2 is held at 7.25 atm and 770.56 K. What is the volume of its container in liters? Input your answer to the nearest whole number.

Answers

By using the ideal gas law to solve this problem and we get the volume of the container is approximately 1383 liters.

What is ideal gas law?

The ideal gas law is a fundamental equation in the study of thermodynamics and describes the behavior of an ideal gas. The ideal gas law relates the pressure (P), volume (V), number of moles (n), and temperature (T) of a gas:

                           PV = nRT

The ideal gas law assumes that the gas particles have negligible volume and do not interact with each other, except through elastic collisions. While real gases deviate from this ideal behavior at high pressures and low temperatures, the ideal gas law is still a useful approximation for many practical applications.

We can use the ideal gas law to solve this problem:

PV = nRT

where P is the pressure, V is the volume, n is the number of moles, R is the gas constant, and T is the temperature.

First, we need to convert the temperature to Kelvin:

770.56 K = 497.41 °C + 273.15

T = 1043.56 K

Next, we can plug in the values and solve for V:

V = (nRT)/P

V = (3.7522 mol)(0.08206 L·atm/(mol·K))(1043.56 K)/(7.25 atm)

V ≈ 1383 L

Therefore, the volume of the container is approximately 1383 liters.

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Name the elements that are found in this chemical equation

Ba₃N₂+6H₂O→3Ba(OH)₂+2NH₃

Answers

Barium, nitrogen, hydrogen, and oxygen are the four elements found in the chemical equation given in the question.

An element is a pure substance that cannot be transformed into simpler compounds through any physical or chemical process. The atoms that make up an element are all of the same kind. There are three categories for elements: metals, nonmetals, and metalloids. The symbols used to symbolize different elements in the given equation is Ba (barium), N (Nitrogen), O (oxygen), and H (hydrogen). The reaction is:

Ba₃N₂ + 6H₂O → 3Ba(OH)₂ + 2NH₃

Chemical reaction is the transformation of one or more chemical reactants into one or more distinct products. Chemical elements or chemical compounds make up substances. In a chemical reaction, the atoms that make up the reactants are rearranged to produce various products.

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If a volume of a gas is at 19 L and 45C with a pressure of 25 atm, what will the pressure be, in mmH, if the volume is changed to 23 L if the molar mass and temperature are held constant?

• 15693.998 mmHg
• 1203.5 mmHg
• 20.6 mmHg
• 168 mmHg

Answers

Considering the Boyle's law, the pressure will be 5693.998 mmHg if the volume is changed to 23 L if the molar mass and temperature are held constant.

Definition of Boyle's law

Boyle's law states that the pressure of a gas in a closed container is inversely proportional to the volume of the container, when the temperature is constant and is expressed mathematically as:

P×V= k

where

P is the pressure.V is the volume.k is a constant.

Considering an initial state 1 and a final state 2, it is fulfilled:

P₁×V₁= P₂×V₂

Pressure in mmHg

In this case, you know:

P₁= 25 atm V₁= 19 LP₂= ?V₂= 23 LTemperature are held constant.

Replacing in Boyle's law:

25 atm× 19 L= P₂× 23 L

Solving:

(25 atm× 19 L)÷ 23 L= P₂

20.65 atm= 15693.998 mmHg= P₂ (being 1 atm= 760 mmHg)

Finally, the pressure will be 5693.998 mmHg.

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.75 moles of Lithium Oxide (Li2O) to units of Lithium Oxide (Li2O)

Answers

The number of formula units is 4.5 * 10^23 formula units. This was obtained from the number of moles given in the question.

How do you find the number of formula units from the moles?

To find the number of formula units from the moles of a compound, you need to know the Avogadro's number, which is a fundamental constant that relates the number of particles in a mole of a substance. Avogadro's number is approximately 6.02 x 10^23 particles per mole.

Once you know the Avogadro's number, you can use the following formula to find the number of formula units:

Number of formula units = number of moles x Avogadro's number

We know that;

1 mole would contain 6.02 * 10^23 formula units

0.75 moles will contain 0.75 *  6.02 * 10^23 /1

= 4.5 * 10^23 formula units

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What is the value of ΔG for a solution of nitrous acid in which pH=1.30, [NO₂⁻]= 6.0×10⁻⁴ M and [HNO₂]=0.25 M?

Hint: non-standard conditions!

Answers

Answer:

28,359.1 J/mol

Explanation:

ΔG = ΔG° + RTln(Q)

the given conditions are non-standard, so calculate the values of Q and ΔG°.

the reaction for the dissociation of nitrous acid is:

HNO₂ ⇌ H⁺ + NO₂⁻

the equilibrium constant expression for the reaction is:

K = [H⁺][NO₂⁻]/[HNO₂]

At pH = 1.30, [H⁺] = 10^(-pH) = 5.01×10^(-2) M

substitute the given values into the expression:

K = (5.01×10^(-2))(6.0×10^(-4))/(0.25) = 1.203×10^(-5)

To calculate ΔG°, use the relationship between ΔG° and K:

ΔG° = -RTln(K)

Substitutethe values of R, T, and K:

ΔG° = -(8.314 J/mol·K)(298 K)ln(1.203×10^(-5)) = 27,615.7 J/mol

use the equation for ΔG:

ΔG = ΔG° + RTln(Q)

Substitute the values of ΔG°, R, T, and Q:

ΔG = 27,615.7 J/mol + (8.314 J/mol·K)(298 K)ln((5.01×10^(-2))(6.0×10^(-4))/(0.25)) = 28,359.1 J/mol

Therefore, the value of ΔG for this solution of nitrous acid is 28,359.1 J/mol.

A gas sample is collected in a 2.2-L tank when the temperature is 2°C. What is the kelvin temperature of the gas?

Answers

275K is the kelvin temperature of the gas

What does the word "temperature" mean?

Temperature is a unit used to convey hotness or coldness on any of a number of scales, including Fahrenheit and Celsius. According to temperature, heat energy will naturally move from a hotter (body with a higher temperature) to a colder (body with a lower temperature) (one at a lower temperature).


Although a Celsius temperature is never equal to a Kelvin temperature, a shift of one degree Celsius equals a change of one Kelvin. On the Kelvin scale, there are no negative temps. Subtract 273.15 from the Kelvin temperature to get the Fahrenheit equivalent.

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Which hydrocarbon is a member of the alkene series?
A) C2H
B) C3H6
C) C4H10
D) C5H12

Answers

The hydrocarbon that is a member of the alkene series is option B) C3H6.
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