7. A number of reactions that take place on the surfaces of catalysts are zero order in the reactant. One example is the decomposition of ammonia on hot tungsten. In one experiment, the partial pressure of ammonia decreased from 21 kPa to 10 kPa in 770 s. (a) What is the rate constant for the zero-order reaction

Answers

Answer 1

Answer:

14.29 Pa/s

Explanation:

Given that, for a zero order reaction;

[A] = [A]o - kt

[A] = pressure at time =t

[A]o = initial pressure

k = rate constant

t = time taken

10 * 10^3 Pa  = 21 * 10^3 Pa - 770k

10 * 10^3 Pa - 21 * 10^3 Pa = -770k

-11* 10^3 = -770k

k = -11* 10^3/-770

k = 14.29 Pa/s


Related Questions

I NEED THE ANSWER IMMEDIATELY TONIGHT, PLEASE!!!

Arrange the following elements in order of decreasing metallic character.
Ra, Sb, In, Cl, Ba, As

Answers

Answer:

Ra,Ba,In,Sb,As,P hope this helps you out good luck

the Earth's surface is colder than the air above it, what will happen to the air?

Answers

Answer:

If the earth's surface is cold, warm air above it will lose heat energy to the cold surface below and the now cool air will remain close to the surface. If a damp surface is warmer than the air above it, some water will evaporate, and the air above the surface will be heated.

Explanation:

:)

How many moles of CO2 are there in 2.55 x 10

18

molecules of CO2?

Answers

Answer: There are [tex]4.23\times 10^{-6}moles[/tex]  of [tex]CO_2[/tex]

Explanation:

According to avogadro's law, 1 mole of every substance occupies 22.4 L at STP and contains avogadro's number [tex]6.023\times 10^{23}[/tex] of particles.

To calculate the moles, we use the equation:

[tex]\text{Number of moles}=\frac{\text{Given molecules}}{\text {Avogadros number}}[/tex]

[tex]\text{Number of moles}=\frac{2.55\times 10^{18}}{6.023\times 10^{23}}=0.423\times 10^{-5}moles[/tex]

Thus there are [tex]4.23\times 10^{-6}moles[/tex]  of [tex]CO_2[/tex]

the pressure of 1 mol of gas is decreased to 0.05 atm 273.k. what happens to the molar volume of the gas under these conditions?

Answers

The molar volume of the gas : V = 447.993 L

Further explanation

Given

n = 1 mol

P = 0.05 atm

T = 273 K

Required

The molar volume

Solution

Ideal gas law :

PV=nRT

V = nRT/P

Input the value :

V = 1 x 0.08205 x 273 / 0.05

V = 447.993 L

One mole of a metallic oxide reacts with one mole of hydrogen to produce two moles of the pure metal
and one mole of water. 5.00 g of the metallic oxide produces 2.32 g of the metal. What is the metallic
oxide? (Use molar masses)

Answers

Answer:

The metallic oxide is Li₂O

Explanation:

Let the metallic oxide be M₂O

Thus;

M₂O + H₂ = 2M + H₂O

Molar mass of M₂O = (2x + 16)

We assumed Molar mass of M to be x.

We are told that 5.00 g of the metallic oxide produces 2.32 g of the metal.

By proportion, we can write the following;

5g of M₂O × (1 mole of M₂O/(2x + 16)) × (2 moles of M/1 mole of M₂O) = 2.32 g of M × 1 mole of M/x g of M

This cancels out to give us;

10/(2x + 16) = 2.32/x

Cross multiply to get;

10x = 2.32(2x + 16)

10x = 4.64x + 37.12

10x - 4.64x = 37.12

5.36x = 37.12

x = 37.12/5.36

x = 6.925 g/mol

The metal with a molar mass closest to this value of x is Lithium which has a molar mass of 6.94 g/mol

Thus the metal is Lithium and as such the metallic oxide is Li₂O

how is the temporary hardness of water removed by boiling method explain in brief​

Answers

Answer:

Explanation:

This happens when water is boiled. Boiling the water causes the precipitation of solid calcium carbonate or solid magnesium carbonate. This removes the calcium ions or magnesium ions from the water, and so removes the hardness.

ANSWER ASAP
If the hydrogen atom emits red, blue-green, blue, and violet light, how many energy levels does it have in the visible region of the spectrum?
A. 3
B. 4
C. 5
D. 6

Answers

Answers:

Option B. 4.

Explanation:

The visible spectrum of light emitted by a sample of active or excited hydrogen atoms splits into four wavelengths that are basically four distinct levels of energy in the visible region of the spectrum. There four different wavelengths are 410 nm, 434 nm, 486 nm, and 656 nm. These show for colors according to the spectrum and wavelength violet, blue, green, and red, where 656 nm wavelength is most intense on the spectrum.

The hydrogen atom has four energy levels in the visible region of the spectrum. Therefore, option (B) is correct.

What is the electromagnetic spectrum?

The electromagnetic spectrum can be defined as the range of frequencies of electromagnetic radiation and their respective photon energies and wavelengths.

The electromagnetic spectrum has electromagnetic waves with frequencies ranging from one Hz to above 1025 Hz, corresponding to wavelengths. This frequency range is divided into separate bands: radio waves, microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays.

Each band has different characteristics, such as interacting with matter, and its practical applications.  When a hydrogen atom emits a different color represents the energy of a different energy level in the visible region of the spectrum.

Therefore, the four colors red, blue-green, blue, and violet light emitted by a hydrogen atom, are of four energy levels in the visible region of the electromagnetic spectrum.

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How many moles are present in 57.4 grams of sulfur dioxide (SO2)?

Answers

Answer:

Dióxido de azufre

Densidad 26 288 kg/m³; 0,0026 g/cm³

Masa molar 64,0638 g/mol

Punto de fusión 198 K (−75 °C)

Punto de ebullición 263 K (−10 °C)

33) Which is the correct name for the molecule depicted below?

A. 2-isopropyl-2,3,4-trimethylbutane

B. 2-isopropyl-2,3-dimethylpentane

C. 2,3,3,4-tetramethylhexane

D. 1,1,2,2,3-pentamethylpentane

E. None of these choices is correct.

Answers

Answer:

C. 2,3,3,4-tetramethylhexane

Explanation:

A
regulation
NBA
basketball
has
a
surface
area
of 283 square inches
.
What
is
the
surface
area
of
this
basketball
in Square Centimeters
?

Answers

Answer:

1.83 × 10³ cm²

Explanation:

Step 1: Given data

Surface area of a NBA basketball (A): 283 in²

Step 2: Convert "A" from square inches to square centimeters

In order to convert "A" from in² to cm², we need a conversion factor. In this case, we will use the conversion factor 1 in = 2.54 cm. Since "in" is raised to the power of 2, we will have to raise the conversion factor to the power of 2 as well.

283 in² × (2.54cm/1 in)² = 1.83 × 10³ cm²

The periodic table shows that a carbon atom has six protons. This means
that a carbon atom also has
*
O Six electrons
An atomic mass that equals six
O Six neutrons
O
More protons than electrons

Answers

Answer:

A carbon atom has six protons. This means that a carbon atom also has

a) Six electrons

b) Six neutrons

Explanation:

You are planning an experiment that requires 0.0900 mol of nitrogen monoxide gas (NO). What volume would you need at STP? Answer in units of L.​

Answers

Answer:  The volume needed at STP is 2.016 L

Explanation:

According to avogadro's law, 1 mole of every substance occupies 22.4 L at STP and contains avogadro's number [tex]6.023\times 10^{23}[/tex] of particles.

To calculate the moles, we use the equation:

[tex]\text{Number of moles}=\frac{\text{Given volume}}{\text {Molar volume}}[/tex]

[tex]0.0900mol=\frac{x}{22.4L/mol}[/tex]

[tex]x=0.0900mol\times 22.4L/mol=2.016L[/tex]

Thus the volume needed at STP is 2.016 L

You are given a sample of several compounds to separate by paper chromatography. You draw a pencil line exactly 1.00 cm from the bottom of the paper, and place a spot of sample on it. You dry the sample, then develop it in a solvent. When the chromatogram is taken out of the solvent, the paper is wet up to 9.17 cm from the bottom of the sheet. The compound you are interested in shows up as a spot 7.57 cm from the bottom of the paper. Calculate the following:

a. How far did the compound move?
b. In the same time, how far did the solvent move?
c. What is the Rf factor for the compound?

Answers

Answer:

a. 6.57 cm

b. 8.17 cm

c. 0.80

Explanation:

a. The compound moved from where it was first placed, to a spot 7.57 cm from the bottom of the paper, in other words:

7.57 cm - 1.00 cm = 6.57 cm

b. A similar method is made for the solvent:

9.17 cm - 1.00 cm = 8.17 cm

c. The Rf of the factor is equal to the distance that the compound moved divided by the distance the solvent moved:

6.57 cm / 8.17 cm = 0.80

explain the 3 ways the elements were formed and which elements were formed in each method. (Big Bang, Stellar, And Supernova Nucleosynthesis)

Answers

Answer:

See explanation

Explanation:

Big Bang: During the big bang, elements were formed by the squeezing together of light nuclei. Hydrogen atoms were fused together to make helium,  lithium  and other light weight elements.

Stellar Nucleosynthesis: Stellar nucleosynthesis is the process by which elements are created within stars by combining the protons and neutrons together from the nuclei of lighter elements(Thoughtco). In the stars, hydrogen may be fused to give helium, lithium and other elements lighter than iron.

Supernova Nucleosynthesis: A supernova is a process in which a star releases a large amount of energy together with neutrons, hence elements that are heavier than iron, like uranium and gold, can be produced in the process.

Liquid A and liquid B form a solution that behaves ideally according to Raoult's law. The vapor pressures of the pure substances A and B are 218 torr and 135 torr, respectively. Determine the vapor pressure over the solution if 1.28 moles of liquid A is added to 5.30 moles of liquid B. 1. 42.4 torr 2. 151 torr 3. 188 torr 4. 202 torr 5. 760 torr

Answers

Answer:

Vapor pressure of solution → 151.1 Torr

Option 2.

Explanation:

Raoult's Law is relationed to colligative property about vapor pressure. A determined solute, can make, the vapor pressure of solution decreases.

ΔP = P° . Xm

where Xm is the mole fraction of solute, P° (vapor pressure of pure solvent)

and ΔP = Vapor pressure of pure solvent - Vapor pressure of solution.

In order to determine the vapor pressure of solution, we need to determine, the vapor pressure of B and A in the solution

B's pressure = P° B . Xm

When we add A to B, A works as the solute and B, as the solvent.

Vapor pressure of pure B is 135 torr. (P° B)

In order to determine, the Xm, we use the moles of A and B

Xm = 5.3 mol of B / (1.28 + 5.3) → 0.806

B's pressure = 135 Torr . 0.806 → 108.81 Torr

If mole fraction of B is 0.806, mole fraction for A (solute) will be (1 - 0.806)

A's pressure = 218 Torr . 0.194 → 42.3 Torr

Vapor pressure of solution is sum of vapor pressures of solute + solvent.

Vapor pressure of solution = 42.3 Torr + 108.81 Torr → 151.1 Torr

Do air particles exert a force when they collide with objects

yes or no

Answers

Answer:

yes

Explanation:

Gas pressure is caused by the force exerted by gas molecules colliding with the surfaces of objects (Figure 5.2. 1). ... In fact, normal air pressure is strong enough to crush a metal container when not balanced by equal pressure from inside the container.

Answer: Yes Gas pressure is caused by the force exerted by gas molecules colliding with the surfaces of objects (Figure 5.2. ... In fact, normal air pressure is strong enough to crush a metal container when not balanced by equal pressure from inside the container

Explanation:


When a substance easily dissolves in a liquid, it has high solubility in that liquid. When a substance does not easily
dissolve in a liquid, it has low solubility in that liquid. Solubility of a gas in water describes how well the liquid can "hang
on" to gas, instead of releasing it into the air. Based on the results of your experiment, do you think that CO2 has a higher
solubility in hot water or cold water? Why?

Answers

Answer:

cold water because as temperature increases the less soluble co2 is in it

Explanation:

Trucks, airplanes, and trains are used to ____________ people and supplies from one place to another. *

Answers

Answer:

Trucks, airplanes, and trains are used to transport people and supplies from one place to another.

Explanation:

Explain how Florida droughts lead to water restriction

Answers

Answer:

Due to drought in Florida, people were informed to minimize the use of water and certain rules were made regarding water usage.

Explanation:

A drought is a shortage in the water supply. The drought in Florida led to water restriction as it was a way to prevent the shortage of water in the long run. Florida experienced a drought and water restriction was used as a way to curtail further shortage of water.

New rules were made to prevent wastage of water such as limiting lawn watering to one day in a week, limiting of car washing, and homeowners were not allowed to do things that  can lead to an increase in water usage.

Atoms of which of the following elements are largest?
A:
Na
OOOO

Answers

Answer:

yes answer os Na because it's electronic configuration is 1s^2,2s^2,2p^6,3s^1

An unknown sample is analyzed using paper chromatography using solvent X as mobile phase. One spot is observed after the paper is developed. The same unknown substance is re-analyzed using solvent Y as the mobile phase. This time, three spots are observed after the paper is visualized. Is the unknown sample a pure substance or a mixture? Explain your answer.

Answers

Answer:

The substance is a mixture

Explanation:

The question lets us know that when solvent X was used as the mobile phase, we obtained only one spot. This may deceive us into thinking that the substance is pure since a pure substance has only one spot on a chromatogram.

However, the same substance yields three spots with solvent Y. This shows that the unknown sample is a mixture of substances and solvent X was unable to fully separate the mixture.

C3H8 (g)+ 502 (g)  3CO2 (g) + 4 H2O (g) + 531 kcal

Answers

Answer:

Exotérmica.

Explanation:

¡Hola!

En este caso, dado que la mayoría de reacciones de combustión son exotérmicas, al generar calor en los productos, es posible inferir que esta reacción, referida a la combustion de metano es exotérmica debido a lo anteriormente mencionado, ya que el término de energía de reacción, 531 kcal, está al lado de los productos, lo que quiere decir que es energía generada.

¡Saludos!  

How many sulfur atoms would be present in 41.8 moles of
sulfur?
a
4.18 x 1025 S atoms
b 2.52 x 1025 S atoms
с
1.44 x 1025 S atoms
d
6.94 X 1029 S atoms

Answers

Answer: 2.52*10^25

Explanation:

6.02214076*10^23 in 1 mole

According to Avogadro's number, there are  2.52 x 10²⁵ sulfur atoms present in 41.8 moles of sulfur.

What is Avogadro's number?

Avogadro's number is defined as a proportionality factor which relates number of constituent particles with the amount of substance which is present in the sample.

It has a SI unit of reciprocal mole whose numeric value is expressed in reciprocal mole which is a dimensionless number and is called as Avogadro's constant.It relates the volume of a substance with it's average volume occupied by one of it's particles .

According to the definitions, Avogadro's number depend on determined value of mass of one atom of those elements.It bridges the gap between macroscopic and microscopic world by relating amount of substance with number of particles.

Number of atoms can be calculated using Avogadro's number as follows: mass/molar mass×Avogadro's number.Mass/molar mass is nothing but number of moles .

Therefore, number of atoms=41.8×6.023×10²³=2.52×10²⁵ sulfur atoms.

Thus, there are 2.52 x 10²⁵ sulfur atoms present in 41.8 moles of sulfur.

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1. Which of the following is an inherited trait?

Answers

where is the following

Convert 0.00353 m to its equivalent in picometers.

Answers

Answer:

[tex] 3530000000 \: pm[/tex]

Explanation:

[tex]0.00353 \: m \\ \\ = 3.53 \times {10}^{ - 3} \: m \\ \\ = 3.53 \times {10}^{ - 3} \times {10}^{12} \\ \\ = 3.53 \times {10}^{ - 3 +12} \\ \\ = 3.53 \times {10}^{9} \: pm\\\\= 3530000000 \:pm[/tex]

Which of the following is not an example of potential energy? Group of answer choices electrical energy, chemical energy, gravitational energy, elastic energy.

PLS HELP FAST

Answers

Answer: The one listed below that's NOT an example of potential energy is mechanical energy. Mechanical energy is categorized as a kinetic energy with light, sound, and thermal/heat energy.

HOPE THIS HELPS

The energy that a body possesses as a result of its position with relation to other bodies, internal tensions, electric charge, and other considerations . Mechanical energy is not an example of potential energy.

What is potential energy ?

Potential energy is a form of stored energy that is dependent on the relationship between different system components. When a spring is compressed or stretched, its potential energy increases.

Although a force must be applied to an object in order for it to store potential energy, potential energy is technically stored inside matter.

The potential energy must be released, despite the fact that the energy is held in the object's mass due to gravity or elastic forces.

Thus, Mechanical energy is not an example of potential energy.

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please help me! This is due by tomorrow!

Answers

Answer:d

Explanation:Since the earth would be closer to the sun the ozone layer would not be able to handle the more powerful ultra violet rays making the earth to hot.

Ions form as a result of uneven charge distribution between the nucleus and the electron cloud. TRUE OR FALSE

Answers

Answer:

true

Explanation:

true

Which of the following methods would best model how the mountains formed?

potential energy
potential energy

kinetic energy
kinetic energy

electrical energy
electrical energy

chemical energy

Answers

Answer:

Potential energy. Kinetic energy can be stored. ... If we drop the object from the shelf or release the spring, that potential energy is converted back into kinetic energy. Kinetic energy can also be transferred from one body to another in a collision, which can be elastic or inelastic.

In which state of matter are the particles at rest (not moving at all)?
none of these
solid
liquid
gas

Answers

Answer:

Solids for sure

particles of solid cant flow.

Answer:

B)Solids

Solids have  tightly packed particles unlike liquids and gases whose particles can move freely but rate of movement is highest in gas while compared to water

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