A chemical plant produces ammonia using the following reaction at high
temperature and high pressure. Which issue are plant engineers and
investors most likely to see as a drawback of this method?
3H2 + N2 = 2NH3 + energy
A. This reaction system will solidify at a higher temperature and
obstruct the equipment.
B. The high temperature will increase the rate of the reactant-favored
reaction at equilibrium.
C. The high pressure will increase the rate of the reactant-favored
reaction at equilibrium.
D. Maintaining a high temperature will require burning fossil fuels or
using a great deal of electricity.

Answers

Answer 1

Answer:

D. Maintaining a high temperature will require burning fossil fuels or

using a great deal of electricity.

Explanation:

Answer 2

The chemical plant produces ammonia using the following reaction at high temperature and high pressure the issue is  "Maintaining a high temperature will require burning fossil fuels or using a great deal of electricity.

What is the chemical plant?

An industrial processing facility known as a "chemical plant" produces chemicals, typically on a large scale.

What are fossil fuels?

The components of fossil fuels are decaying plants or animals. These fuels may be consumed to provide energy and could be discovered in the crust of the Earth. Fossil fuels include, for example, coal, oil, as well as natural gas.

Therefore, the chemical plant produces ammonia using the following reaction at high temperature and high pressure the issue is  "Maintaining a high temperature will require burning fossil fuels or using a great deal of electricity.

Hence, the correct answer will be option (D)

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Related Questions

The volume of 350. mL of gas at 25°C is decreased to 250. mL at
constant pressure. What is the final temperature of the gas?

Answers

V1/T1 = V2/T2

V1 = 350. mL

T1 = 25 + 273 = 298 K

V2 = 250. mL

T2 = ?

Solve the equation for T2: T2 = V2T1/V1 = (250. mL)(298 K)/(350. mL) = 213 K = -60°C

What is the meaning of ground state energy?​

Answers

The ground state of a quantum-mechanical system is its lowest-energy state; the energy of the ground state is known as the zero-point energy of the system. An excited state is any state with energy greater than the ground state. In quantum field theory, the ground state is usually called the vacuum state or the vacuum..

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what is the total pressure in a 10.0L flask which contains 0.200mol of H2 and 0.215mol of N2​

Answers

Answer:

0.998 atm.

Explanation:

NOTE: The temperature is missing in the above question and the value is 20 °C

From the question given above, the following data were obtained:

Volume (V) = 10.0 L

Number of mole of H₂ = 0.2 mole

Number of mole N₂ = 0.215 mole

Temperature (T) = 20 °C

Total pressure (P) =?

Next, we shall determine the total number of mole in flask. This can be obtained as follow:

Number of mole of H₂ = 0.2 mole

Number of mole of N₂ = 0.215 mole

Total number of mole (n) =?

n = mole of H₂ + mole of N₂

n = 0.2 + 0.215

n = 0.415 mole

Thus, the total number of mole in the flask is 0.415 mole

Next, we shall convert 20 °C to Kelvin temperature. This can be obtained as follow:

T(K) = T(°C) + 273

Temperature (T) = 20 °C + 273

Temperature (T) = 293 K

Finally, we shall determine the total pressure in the flask. This can be obtained as follow:

Volume (V) = 10.0 L

Total number of mole (n) = 0.415 mole

Temperature (T) = 293 K

Gas constant (R) = 0.0821 atm.L/Kmol

Total pressure (P) =?

PV = nRT

P × 10 = 0.415 × 0.0821 × 293

Divide both side by 10

P = (0.415 × 0.0821 × 293) / 10

P = 0.998 atm.

Therefore, the total pressure in the flask is 0.998 atm.

1 = 2 Amps, R = 3 Ohms, V = ? Volts​

Answers

Answer:

6 volts

Explanation:

Use Ohm's Law:

V = IR

V = (2 amps)(3 ohms) = 6 volts

1. When 0.629 grams of Na3PO4.12H2O and 0.527 g BaCl2.2H2O are mixed with water , how many grams of Ba3(PO4)2 are produced?​

Answers

The number of grams of  Ba₃(PO₄)₂ that is produced is : 0.4328 gram

Given data

mass of Na₃PO₄.12H₂O = 0.629 grams

mass of BaCl₂.2H₂O = 0.527 grams

molar mass of Na₃PO₄.12H₂O = 380.12 g/mol

molar mass of BaCl₂.2H₂O = 244.26 g/mol

Determine the number of grams of  Ba₃(PO₄)₂ produced

mole of Na₃PO₄.12H₂O = mass / molar mass

                                        = 0.629 / 380.12 = 0.001654 mol

molar mass of BaCl₂.2H₂O = 0.527 / 244.26 = 0.002157 mol

After mixture : Determine the limiting reactant by lower mole ratio

mole ratio of BaCl₂.2H₂O = 0.002157 / 3

                                          = 0.0007191

mole ratio of Na₃PO₄.12H₂O = 0.001654 / 2

                                               = 0.000827

therefore the limiting reactant is : BaCl₂.2H₂O

Final step : Determine the mass of BaCl₂.2H₂O

molar mass of BaCl₂.2H₂O = 601.93 g/mol

Therefore :

mass of BaCl₂.2H₂O = moles * molar mass

                                   = 0.0007191 * 601.93

                                   = 0.4328 gram

Hence we can conclude that The number of grams of  Ba₃(PO₄)₂ that is produced is : 0.4328 gram

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At point a the object has 30 joules of energy. how much energy does the object have at point b?

Answers

Answer:

It’s 10

Explanation:

I looked it up

To solve this we must be knowing each and every concept related to  energy and its calculations. Therefore,  at point b, 10joule of energy is present.

What is energy?

Energy is defined in physics as the ability to accomplish work or heat items. It's a scalar measurement with magnitude but no direction. Energy is maintained, which implies it can change forms but is not generated or destroyed. potential energy transforms into kinetic energy.

One type of energy can be transferred into another without breaking a thermodynamic rule. Not all of these energy sources are equally beneficial in practical applications. At point a the object has 30 joules of energy. At point b, 10joule of energy is present.

Therefore,  at point b, 10joule of energy is present.

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A balloon is filled with 30.0 L of helium in the morning when the temperature is 25.00 ℃. By noon the temperature has risen to 55.00 ℃. Determine the new volume of the balloon. *

Answers

Answer:

33.0 L

Explanation:

Step 1: Given data

Initial volume of the balloon (V₁): 30.0 LInitial temperature (T₁): 25.00 °CFinal volume of the balloon (V₂): ?Final temperature (T₂): 55.00 °C

Step 2: Convert the temperatures to the Kelvin scale

We will use the following expression.

K = °C + 273.15

T₁: K = 25.00°C + 273.15 = 298.15 K

T₂: K = 55.00°C + 273.15 = 328.15 K

Step 3: Calculate the final volume of the balloon

If we assume ideal behavior, we can calculate the final volume of the balloon using Charles' law.

V₁/T₁ = V₂/T₂

V₂ = V₁ × T₂/T₁

V₂ = 30.0 L × 328.15 K/298.15 K = 33.0 L

two compounds of iron a and b contains 1.278 and 1.904 g of chlorine respectively for each gram of iron show that these amount are in the ratio of 2:3​

Answers

Answer:

Ratio = 2 : 3 (Approx.)

Explanation:

Given:

Compound A = 1.278 g

Compound B = 1.904

Find:

Ratio

Computation:

Ratio = Compound A / Compound B

Ratio = 1.278 / 1.904

Ratio = 2 : 3 (Approx.)

Usually, when the temperature is increased, what will happen to the rate of dissolving?
05))
A)
It will stop.
B)
It will increase.
e
It will decrease
D)
It will remain the same.

Answers

Answer:

B) It will increase.

Explanation:

Solubility tends to increase with an increase in temperature

What type of cloud produces severe weather like thunderstorms, thunder
and lighting, occasional hail, and possibly tornadoes?

Answers

Answer:

The cumulonimbus cloud

Explanation:

The cumulonimbus cloud, or thunderstorm, is a convective cloud or cloud system that produces rainfall and lightning. It often produces large hail, severe wind gusts, tornadoes, and heavy rainfall.

pls mark brainliest

Answer:

cumulonimbus clouds

Explanation:

that's the answer.

Small particles that settle out of wind and water are called.

Answers

d is the correct answer hope this helps
D is the answer for the question What happened at the end of the most recent ice age?

A. Land bridges became exposed.

B. Sea levels rose over 300 feet.

C. A mass extinction occurred.

D. The Cenozoic era began.

define saturated and unsaturated fats​

Answers

Answer:

i don't no the

answer

i am sorry

Answer:

Saturated fats:  Saturated fats are a type of fat-containing a high proportion of fatty acid molecules without double bonds, considered to be less healthy in the diet than unsaturated fat.

Unsaturated fats: Unsaturated fats are a type of fat-containing a high proportion of fatty acid molecules with at least one double bond, considered to be healthier in the diet than saturated fat.

Aside from direct harm, what secondary issue do invasive species present?

They may be able to eat all kinds of native organisms.

They might introduce other organisms like viruses and bacteria.

They might damage the habitat that other organisms rely on.

They may not have any predators.

Answers

Answer:

B

Explanation:

What is the pH of this solution?

Answers

Answer:

pH = 11.216.

Explanation:

Hello there!

In this case, according to the ionization of ammonia in aqueous solution:

[tex]NH_3+H_2O\rightleftharpoons NH_4^++OH^-[/tex]

We can set up its equilibrium expression in terms of x as the reaction extent equal to the concentration of each product at equilibrium:

[tex]Kb=\frac{[NH_4^+][OH^-]}{[NH_3]} \\\\1.80x10^{-5}=\frac{x*x}{0.150-x}[/tex]

However, since Kb<<<1 we can neglect the x on bottom and easily compute it via:

[tex]1.80x10^{-5}=\frac{x*x}{0.150}\\\\x=\sqrt{1.80x10^{-5}*0.150}=1.643x10^{-3}M[/tex]

Which is also:

[tex][OH^-]=1.643x10^{-3}M[/tex]

Thereafter we can compute the pOH first:

[tex]pOH=-log(1.643x10^{-3}M)\\\\pOH=2.784[/tex]

Finally, the pH turns out:

[tex]pH=14-2.784\\\\pH=11.216[/tex]

Regards!

how many grams of P3O9 contain 9.67x10^23 atoms of oxygen?​

Answers

Answer:

49.1 g

Explanation:

First we convert 9.67x10²³ atoms of oxygen into moles, using Avogadro's number:

9.67x10²³ atoms ÷ 6.023x10²³ atoms/mol = 1.60 mol O

Then we calculate how many P₃O₉ moles there would be with 1.60 O moles:

1.60 mol O * [tex]\frac{1molP_3O_9}{9molO}[/tex] = 0.18 mol P₃O₉

Finally we convert 0.18 P₃O₉ moles into grams, using its molar mass:

0.18 mol P₃O₉ * 237 g/mol = 49.1 g

HELPPP PLZz nowww!!!
A. C
B. B
C. A
D. D

Answers

Answer:

b

Explanation:

Answer:

answer b I think so I'm.not clear about it ,I think its CRT ans plz follow me

If 95.0 g Zn is added to an excess of H2SO4, how many
liters of hydrogen gas will be produced at STP?
Write and balance the equation. Then, calculate the
liters of hydrogen produced.

Please help

Answers

Answer:

32.7 L of H₂

Explanation:

We'll begin by calculating the number of mole in 95 g of Zn. This can be obtained as follow:

Mass of Zn = 95 g

Molar mass of Zn = 65 g/mol

Mole of Zn =?

Mole = mass /Molar mass

Mole of Zn = 95/65

Mole of Zn = 1.46 mole

Next, we shall determine the number of mole of H₂ produced by the reaction of 95 g (i.e 1.46 mole) of Zn. This can be obtained as illustrated below:

Zn + H₂SO₄ —> ZnSO₄ + H₂

From the balanced equation above,

1 mole of Zn reacted to produce 1 mole of H₂.

Therefore, 1.46 mole of Zn will also react to produce 1.46 mole of H₂.

Finally, we shall determine the volume of H₂ obtained at STP. This can be obtained as follow:

1 mole of H₂ = 22.4 L at STP.

Therefore,

1.46 mole of H₂ = 1.46 × 22.4

1.46 mole of H₂ = 32.7 L at STP

Thus, 32.7 L of H₂ were obtained from the reaction.

John pushes a 10 pound box 5 feet. How much work is done?

500 ft-lb
1,000 ft-lb
5 ft-lbs
50 ft-lbs

Answers

Answer:

50 I think not 100% sure

Explanation:

Because you just do 10*5 which equals 50.

For each molecule, specify the polarity of the bonds and the overall polarity of the molecule.
A. A central beryllium atom is connected to two chlorine atoms through single bonds.
B. Each chlorine atom has three lone pairs of electrons.
C. A central oxygen atom is connected to two hydrogen atoms through single bonds.
D. There are two lone pairs of electrons around the oxygen atom.
Are the bonds for each one polar or non polar? Are the molecules for each one polar or non polar?
A. BeCl2
B. H2O
C. O3

Answers

Answer:

See explanation

Explanation:

We know that the possession of polar bonds does not make a molecule polar. The BeCl2 molecule has Be-Cl bonds which are polar. However, the molecule is symmetrical and has a zero net dipole moment hence the molecule is nonpolar.

H2O is a polar molecule. It has polar O-H bonds. The molecule is bent and has a resultant dipole moment hence it is polar.

Ozone is a triatomic molecule which is bent in shape. This bent geometry creates an overall dipole moment in the molecule, hence the molecule is polar.

How many grams of MgCl2 would be needed to make 5.3 liters of a 0.25 molar solution? Round your answer to the nearest 0.01,

Answers

Answer: 126.1 grams of are needed to make 5.3 L of 0.25 M solution

Explanation:

Molarity of a solution is defined as the number of moles of solute dissolved per liter of the solution.

To calculate the mass of solute for given molarity, we use the equation:

[tex]\text{Molarity of the solution}=\frac{\text{given mass of solute}}{\text {Molar mass of solute}\times \text{Volume of solution in L}}[/tex]

[tex]0.25M=\frac{x}{95.2g/mol\times 5.3L}[/tex]

[tex]x=126.1g[/tex]

Thus 126.1 grams of are needed to make 5.3 L of 0.25 M solution

Which of the following pairs of elements would most likely form a molecular covalent bond?

Answers

Answer:

Oxygen and chlorine

Explanation:

oxygen and chlorine are most likely to form covalent compounds

HELP I DON'T HAVE TIME LEFT

Answers

Answer:

mass

Explanation:

Answer:

C Mass

Explanation:

mass wont change when a force is put upon it.

Why does concentration increase when the solvent evaporates?

Answers

Answer:

The concentration increases because the solution becomes more pure because the solvent leaves the solution.

Explanation:

A student is given an antacid tablet that weighs 5.4630 g. The tablet is crushed and 4.3620 g of the antacid is added to 200. mL of simulated stomach acid. It is allowed to react and then filtered. It is found that 25.00 mL of this partially neutralized stomach acid required 13.6 mL of a NaOH solution to titrate it to a methyl red end point. It takes 27.7 mL of this NaOH solution to neutralize 25.00 mL of the original stomach acid. How much of the stomach acid (in mL) has been neutralized in the 25.00 mL sample that was titrated

Answers

Solution :

It is given that :

Weight of the antacid tablet = 5.4630 g

4.3620 gram of antacid is crushed and is added to the stomach acid of 200 mL and is reacted.

25 mL of the stomach acid that is partially neutralized required 13.6 mL of NaOH to be titrated for a red end point.

27.7 mL of [tex]$NaOH$[/tex] solution is equivalent to [tex]$25 \ mL$[/tex] of the original stomach acid. Therefore, 13.6 mL of NaOH will take x [tex]$\frac{25\text{ mL of original stomach acid}}{\text{27.7 mL of NaOH}}$[/tex]

                                                             = 12.27 ml of the original stomach acid.

Which is the name of the kind of solid substance
formed in this figure?

Answers

Is there a picture? If not then it’s probably precipitate

Type the CONVERSION factor (fraction) to calculate the moles in 15.0 g
of potassium sulfide, K2S. *
10 points

Answers

Explanation:

5g C7H8 / 92g/mole = 0.054moles

total moles = 0.232moles

mole fraction C6H12 = 0.178moles / 0.232moles = 0.767

mole fraction C7H8 = 0.233

People can hear ultrasound easily.

A. True
B. False

Answers

Ultrasound is sound waves with frequencies higher than the upper audible limit of human hearing. Ultrasound is not different from "normal" (audible) sound in its physical properties, except that humans cannot hear it. ... Ultrasound is used in many different fields.

How many grams does 5.29 x 10^25 molecules of AgNO3 weigh?

Answers

Answer:

14900 g AgNO₃

General Formulas and Concepts:

Math

Pre-Algebra

Order of Operations: BPEMDAS

Brackets Parenthesis Exponents Multiplication Division Addition Subtraction Left to Right

Chemistry

Atomic Structure

Reading a Periodic TableMolesAvogadro's Number - 6.022 × 10²³ atoms, molecules, formula units, etc.

Stoichiometry

Using Dimensional AnalysisExplanation:

Step 1: Define

[Given] 5.29 × 10²⁵ molecules AgNO₃

[Solve] grams AgNO₃

Step 2: Identify Conversions

Avogadro's Number

[PT] Molar Mass of Ag - 107.87 g/mol

[PT] Molar Mass of N - 14.01 g/mol

[PT] Molar Mass of O - 16.00 g/mol

Molar Mass of AgNO₃ - 107.87 + 14.01 + 3(16.00) = 169.88 g/mol

Step 3: Convert

[DA] Set up:                                                                                                        [tex]\displaystyle 5.29 \cdot 10^{25} \ molecules \ AgNO_3(\frac{1 \ mol \ AgNO_3}{6.022 \cdot 10^{23} \ molecules \ AgNO_3})(\frac{169.88 \ g \ AgNO_3}{1 \ mol \ AgNO_3})[/tex][DA] Multiply/Divide [Cancel out units]:                                                           [tex]\displaystyle 14923 \ g \ AgNO_3[/tex]

Step 4: Check

Follow sig fig rules and round. We are given 3 sig figs.

14923 g AgNO₃ ≈ 14900 g AgNO₃

sound travels 1,500 m/s through water at 25 degrees celciesunder these conditions how long would it take to travel 300m

Answers

Answer:

[tex]v = s \div t[/tex]

[tex]t = s \div v[/tex]

[tex]t = 300 \div 1500 = 0.2s[/tex]

Which of the following has the highest pH?

A. 1 M HCl
B. 0.01 M HCl
C. 0.1 M HCl
D. 0.001 M HCl

Answers

Answer: D

Explanation: pH = - log( c). If c= 1.0 M. PH = 0, if c=0.001 M. PH = 3

Answer:b

Explanation:

ik

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