The preexponential and activation energy for the diffusion of iron in cobalt are 1.1 × 10−5 m2/s and 253,300 J/mol, respectively. At what temperature will the diffusion coefficient have a value of 2.1 × 10−14 m2/s?

Answers

Answer 1

The temperature is obtained as  1517 K.

What is the temperature?

We know that we asked here to find the temperature at which we are going to have a diffusion coefficient of 2.1 × 10−14 m2/s. Let us look at the following from the question;

D = diffusion coefficient = 2.1 × 10−14 m2/s

[tex]D_{o}[/tex] = pre-exponential constant = 1.1 × 10−5 m2/s

[tex]E_{a}[/tex] = Activation energy = 253,300 J/mol

R = Gas constant = 8.314 J/mol.K

T = temperature = ??

Then;

log D= log  [tex]D_{o}[/tex] - Ea/2.303RT

log(2.1 × 10−14) = log( 1.1 × 10−5) - 253,300/2.303 * 8.314 * T

log(2.1 × 10−14) / log( 1.1 × 10−5) = - 253,300/2.303 * 8.314 * T

T = - 253,300/-8.719 * 2.303 * 8.314

T= 1517 K

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Related Questions

An atom is found to have 44 Protons.
What would be necessary to balance out the charge, making it a neutral atom?

Answers

For any component: Proton count equals atomic number

Number of protons plus number of electrons equals the atomic number.

The number of neutrons is equal to the atomic number-mass number.

What does atomic number mean?

The quantity of protons in an element's atom is known as the atomic number. The atomic number of krypton in our illustration is 36. This indicates that the nucleus of a ruthenium atom contains 36 protons.

Every atom of ruthenium has 44 protons, which is intriguing. A Ruthenium atom cannot exist if it does not have 44 protons. A distinct element is produced by changing the number of protons in an atom's nucleus. An atom of rhodium is produced, for instance, by taking one proton away from a krypton atom.

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This graph shows the displacements and times for the winner of
a horse race.
What was the average speed of the horse that won the race?
O 0.05 m/s
O 20 m/s
O 45 m/s

Answers

20 m/s
You can see in 5 seconds the horse goes 100 meters so you divide 100 by 5 to get 20.

A 135.0-g sample of a metal at 153.0 °C is added to 255.0 g of ethylene glycol (specific heat = 2.43 J/g・ °C) in a calorimeter at 25.7 °C. The temperature of the ethylene glycol rises to 38.2 °C. Calculate the specific heat capacity of the metal, assuming that all the heat lost by the metal is gained by the ethylene glycol.A 135.0-g sample of a metal at 153.0 °C is added to 255.0 g of ethylene glycol (specific heat = 2.43 J/g・ °C) in a calorimeter at 25.7 °C. The temperature of the ethylene glycol rises to 38.2 °C. Calculate the specific heat capacity of the metal, assuming that all the heat lost by the metal is gained by the ethylene glycol.

Answers

Answer:

q

=

176000

J

×

1

k

J

1000

J

=

176

k

J

The specific heat capacity of the metal can be calculated using calorimetric equation. The specific heat capacity of the metal is 0.499 J/g °C.

What is specific heat capacity?

Specific heat capacity of a substance is the heat energy required to rise its temperature by one degree Celsius per one gram. It is an intensive property and thus constant for a substance.

The calorimetric equation connecting the mass m, specific heat capacity c, temperature difference ΔT  with the heat energy q is written as :

q = m c ΔT .

Given the heat energy of the metal is lost to ethylene glycol. Hence the heat energy change for both of the substance are equal and can be written as follows:

135 g × (153 -38.2 °C ) × c = 255 g × 2.43 J/g °C × (38.2 -25.7 °C)

c = [ 255 g × 2.43 J/g °C × (38.2 -25.7 °C) ] / [ 135 g × (153 -38.2 °C ) ]

  = 0.499 J/g °C.

Hence, the specific heat capacity of the metal is 0.499 J/g °C..

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Select the best answer for the question.
10. What's the structure of PF,? Is it polar or non-polar?
O A. Trigonal bipyramidal, non-polar
OB. Square pyramid, polar
O C. Square pyramid, non-polar
O D. Trigonal bipyramidal, polar

Answers

It’s option A trigonal bipyramidal non polar

how much will the temperature of 5.00g of silver decrease if it loses 982 j of heat ?

Answers

The temperature of the silver will decrease by -828.7 °C

if it loses 982 J of heat energy

How do I determine the temperature change?

From calorimetry, we understood that heat released or lost is given by:

Q = MCΔT

Where

Q is heatM is the mass C is the specific heat capacityΔT is the temperature change

With the above formula, we can determine the temperature change of the silver. This is illustrated below

Mass of silver (M) = 5.00 gHeat lost (Q) = -982 JSpecific heat capacity of silver (C) = 0.237 J/gºC Temperature change (ΔT) = 124

Q = MCΔT

-982 = 5 × 0.237 × ΔT

-982 = 1.185 × ΔT

Divide both side by 1.185

ΔT = -982 / 1.185

ΔT = -828.7 °C

Thus, the temperature will decrease by -828.7 °C

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If you had 1.0 L of 0.25 M LiOH - how many moles of OH- ions were produced when LiOH was dissolved in water?
a) How many moles of LiOH do you have in 1.0 L of 0.25 M LiOH?

b) What is the mole to mole ratio of LiOH to OH- in the balanced chemical equation?

c) How many moles of OH- are in 1.0 L of 0.25 M LiOH?

d) Bonus: What is the pH?






Answers

a) The number of moles of LiOH in 1.0L of 0.25M LiOH is 0.25.

b)  The mole-to-mole ratio of LiOH to OH⁻ is  1:1.

c) The number of moles of  OH⁻ ions in 1.0L of 0.25M LiOH is 0.25.

d) The pH is equal to 13.39.

What is a mole?

A mole can be defined as a unit for the measurement of a huge number of entities of atoms, molecules, ions, or other particular particles.  The number of entities constitute in one mole is equal to 6.023 × 10 ²³ which is known as Avogadro’s constant.

The dissociation of LiOH in water is as:

LiOH (aq) →  Li⁺(aq)  + OH⁻(aq)

The mole-to-mole ratio of LiOH to OH- in the balanced chemical equation is 1 : 1 as one mole of LiOH produces one mole of OH⁻ ions.

Given, the number of concentrations of LiOH solution = 0.25 M

The volume of the solution  = 1.0 L

The number of moles of LiOH = Molarity ×Volume

n = 0.25 × 1

n = 0.25 mol of LiOH

The number of moles of ions of OH⁻ from LiOH = 0.25 mol

We know that pH + pOH = 14

pH = 14 -pOH

pH = 14 - (-log [OH⁻])

pH = 14 + log (0.25)

pH = 13.39

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A piece of an unknown metal with mass 23.8g is heated to 100.0 degrees Celsius and dropped into 50.0
cm³ of water at 24.0 degrees Celsius. The final temperature of the system is 32.5 degrees Celsius. What is the specific heat of the metal?

Answers

The specific heat of the metal is 1.1106 J/g°C

Specific heat is the quantity of heat required to raise the temperature of one gram of a substance by one celsius degree

Here given data is

Mass of unknown metal = 23.8g

Temprature = 100°C

Mass of water = 50.0cm³ = 50 g

Temprature of water =  24.0°C

Final temprature of the system = 32.5°C

We have to find specific heat = ?

So first we determine the heat gain by water

Specific heat of water is 4.18 J/g°C

Q = mcΔT

Q =  50 g×8.5°C×4.18 J/g°C

Q = 1776.5 Joules

Then we determine the total heat lost by the unknown metal

Taking the specific heat f the metal to be x

Heat = 23.8g×67.5°C×x

1776.5 Joules = 23.8g×67.5°C×x

1776.5 Joules = 1606.5 J

x =  1606.5 J/1776.5 Joule

x = 1.1106 J/g°C

Specific heat of the metal is  1.1106 J/g°C

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Meghan is baking cookies. When she turns the oven on, she notices that the heating coils in the back of the oven start to glow orange. As she opens the oven to place the cookie sheet on the oven rack, she can feel the warmth from the oven. She watches the cookies puff up and turn a golden brown. Read the paragraph that describes energy as Meghan bakes. Choose the word that correctly completes each sentence. Baking cookies in the oven is an example of how energy is . Electrical energy is neither or . Thermal energy either from one object to another as it is transferred or into a different form as it is transformed.

Answers

1. Baking cookies in the oven is an example of how energy is conserved.

2. Electrical energy is neither transformed nor transferred.

3. Thermal energy either moves from one object to another as it is transferred or changes into a different form as it is transformed.

Baking is the process of cooking with dry heat, particularly in an oven. It is most likely the oldest type of cooking. Bakery goods including bread, rolls, cookies, pies, pastries, and muffins are typically made with flour or meal that comes from grains of some kind.

The stages of the ingredients originally start out in distinct states (e.g., flour is solid, eggs are liquid, etc.), and they change several times as the cookies bake. When they are combined to create cookie dough, a state known as a colloid results (like a mix between solid and liquid). Eventually, the cookies reach a solid state when baking is.

Thus, Baking cookies in the oven is an example of how energy is conserved . Electrical energy is neither transferred or transformed . Thermal energy either moves from one object to another as it is transferred or changes into a different form as it is transformed.

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please help me with it

Answers

Explanation:

I can't see the questions!!

Why might a chemist add a buffer to a solution?

The buffer can keep the pH stable when small amounts of acid or base are added.

The buffer can magnify the changes to pH caused by adding small amounts of acid or base.

The buffer changes color to indicate the pH of the solution.

The buffer reacts with the acid or base in solution to form a useful product.

Answers

A chemist adds a buffer to a solution because the buffer can keep the pH stable when small amounts of acid or base are added. Thus, Option A is correct.

Buffer is a solution that resists the change in pH when acid or alkali is added in a small amount. Buffer is made up of weak acid and its conjugate base or a weak base and its conjugate acid. It absorbs H+ and OH- ions when strong acid or alkali is added so that the pH remains the same and neutralizes the added acid or alkali. While maintaining the pH of the solution, the pH of the buffer changes in a small amount.

Thus, a chemist adds a buffer to a solution to keep the pH constant when strong acid or base is added.

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Sodium combines with water to produce sodium hydroxide and hydrogen gas.
Which word equation represents this
violent reaction?
O sodium hydroxide + water _, sodium + hydrogen
O sodium + water + - sodium hydroxide + hydrogen
O sodium + hydrogen - sodium hydroxide + water
• sodium + sodium hydroxide - water + hydrogen

Answers

sodium + water + - sodium hydroxide + hydrogen is the word equation  to produce sodium hydroxide and hydrogen gas.

Option B is correct.

Is the chemical change that occurs when water and sodium combine to generate sodium hydroxide and hydrogen gas?

A colorless solution of sodium hydroxide (NaOH) and hydrogen gas is created when sodium metal interacts quickly with water (H2).It is an exothermic process.

What happens chemically when water and sodium hydroxide are combined?

Na+ and OH- ions result from the reaction NaOH and H2O. Heat will be released because the process is exothermic. Since sodium hydroxide is regarded as a strong base, it can completely and entirely dissociate in aqueous solution.

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Answer: calcium

Explanation:

Calculate the molarity of 25.7 g of MgS in 919 mL of solution.

Answers

What do you mean by molarity?

Molarity-Molarity is a term that is used to show concentration of the solution . It is different from molality as it is expressed in mol per L , whereas molality is expressed in mol per kg.

Given:

Mass of Mgs is 25.7 g.Volume of the solution is 919 ml.

The mole of Mgs is calculated as follows :

    Mole= Mass / Molar Mass

              = 25.7g/56.38 g/mol

              = 0.455 mol.

The molarity of Mgs solution is calculated as follows :-

            Molarity =Mole/Volume ( L )

                            =0.455mol/919ml* 1000ml/1L

                            =0.495M

Thus, the molarity of the solution is 0.495 M.

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50 POINTS!!! PLS ANSWER FAST In each test, iron(II) sulfate and iron(III) nitrate were combined with the same substance or substances. However, the sulfate and nitrate parts of the compounds didn’t participate in any of the chemical reactions; only the iron ions reacted. Comparing the results for each pair of tests, what can you conclude about the iron(II) and iron(III) ions?

Answers

Answer:

In each test, iron(II) sulfate and iron(III) nitrate were combined with the same substance or substances. However, the sulfate and nitrate parts of the compounds didn’t participate in any of the chemical reactions; only the iron ions reacted. Comparing the results for each pair of tests, what can you conclude about the iron(II) and iron(III) ions? i need the answer to it please do this

There are various kind of reaction like combustion reaction, displacement reaction. So to solve this problem we must be knowing the displacement reaction. Displacement reaction is taking place over here

What is displacement reaction?

Displacement reaction is a reaction in which one atom replaces other atom from a molecule on the basis of reactivity strength. The element which on the top of reactivity series displace the element that is lying below to that reactive element

According to our question the balanced equation is

FeSO₄+Zn ZnSO₄+Fe(II)

Fe(NO₃)₂+Zn      Zn(NO₃)₂+Fe(II)

In both reaction Zn is more reactive than Fe(II) and Fe(III) that is why Zn replace or displace iron ion from its compound of sulfate and nitrate. Metal displace metals. anions are displaced by anions. So, here metal is displaced by zinc.

Thus we can conclude that zinc is more reactive than iron Fe(II) and Fe(III). Displacement reaction is taking place over here

Hope this helps!

Consider a heat engine that uses reservoirs at 800°C and 0°C.

(a) Calculate the maximum possible efficiency.

(b) If Qh is 1000 J, find the maximum value of -w and the minimum value of -Qc. R = 8,314 J/mol. K​

Answers

The maximum possible efficiency of the heat engine that uses reservoirs at 800°C and 0°C is 74%.

Maximum efficiency is mainly calculated for heat engines.

Let the starting temperature be T1 and the 2nd temperature is T2.

Since the given temperatures are in Celcius form, we have to first convert the temperatures into Kelvin form for proper calculation of maximum efficiency.

So, T1 = 0 + 273 = 273 K

T2 = 800 + 273 = 1073 K

We know,

Maximum efficiency = (T2- T1)/T2

= (1073 - 273) / 1073

= 800 / 1073

= 0.74

= 74 %

Therefore, the maximum efficiency of the heat engine will be 74%.

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While bowling, Sean stands 19 meters away from the pins and throws his bowling ball down the lane. The ball rolls at a constant velocity of 7.2meterspersecond toward the pins. How far will the ball roll in 2.5seconds?

Answers

Constant velocity means it wont change.
2.5s*7.2 m/s = 18 m

One of the main components of an airbag is the gas that fills it. As part of the design process, you need to
determine the exact amount of nitrogen that should be produced. Calculate the number of moles of
nitrogen required to fill the airbag. Show your work. Assume that the nitrogen produced by the chemical
reaction is at a temperature of 495°C and that nitrogen gas behaves like an ideal gas. Use this fact sheet
u to review the ideal gas law.

Answers

The number of moles of the gas is 0.016 moles

The airbag reaction is the nitrogen gas obtained by the decomposition of sodium azide and the reaction is

2NaN₃ → 2Na + 3N₂

Then it is under ideal condition

P = 1atm

V = 1L

T =  495°C or 768 K

n = ?

We have to calculate moles of nitrogen = ?

R = 0.082 atm LK⁻¹mol⁻¹

So the formula is

PV =nRT

n = PV/RT

n = 1 atm×1L/0.082 atm LK⁻¹mol⁻¹×768 K

n = 0.016 moles

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Max Points, 4 Parts,
1. explain to John Dalton what his Solid Sphere Model got correct, and what it got incorrect
2. explain to Dmitri Mendeleev what his periodic table got correct, and what it got incorrect
3. explain to Ernest Rutherford what Niels Bohr's model of the atom would eventually improve compared to his own Nuclear Model
4. Isaac Newton was actually an avid alchemist (popular with the learned thinkers in the 17th century). He began studying chemistry but eventually grew bored of it for the perceived excitement of alchemy. In 1-2 paragraphs, convince Isaac Newton to toss aside his alchemy fixation for true chemistry

Answers

The assumption that an atom is indestructible is refuted by the fact that it can be further split into protons, neutrons, and electrons.

However, an atom is the smallest particle involved in chemical reactions. According to Dalton, every aspect of an element's atoms is the same.

The atom is the smallest unit of matter that may be divided without generating particles with an electrical charge. It is also the smallest material with properties resembling chemical elements. As a result, the atom acts as the basic building block of chemistry. Examine various electron configurations in the electron shells that enclose the atomic nucleus of an atom.

Examine various electron configurations in the electron shells that enclose the atomic nucleus of an atom. An atom is primarily made of space. The rest is made up of a positively charged nucleus made up of protons and neutrons that is surrounded by a cloud of negatively charged electrons. The nucleus is small and dense in comparison to electrons, which are the lightest charged particles in nature.

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Given the equation 4Al+3O2=2Al2O3 How many moles of oxygen are needed to react with 100 grams of aluminum

Answers

Taking into account the reaction stoichiometry, 2.778 moles of oxygen are needed to react with 100 grams of aluminum.

Reaction stoichiometry

In first place, the balanced reaction is:

4 Al + 3 O₂  → 2 Al₂O₃

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

Al: 4 molesO₂: 3 molesAl₂O₃: 2 moles

The molar mass of the compounds is:

Al: 27 g/moleO₂: 32 g/moleAl₂O₃: 102 g/mole

Then, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

Al: 4 moles ×27 g/mole= 108 gramsO₂: 3 moles ×32 g/mole= 96 gramsAl₂O₃: 2 moles ×102 g/mole= 204 grams

Moles of O₂ required

The following rule of three can be applied: If by reaction stoichiometry 108 grams of Al react with 3 moles of O₂, 100 grams of Al react with how many moles of O₂?

moles of O₂= (100 grams of Al× 3 moles of O₂)÷ 108 grams of Al

moles of O₂= 2.778 moles

Finally, 2.778 moles of oxygen are needed.

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Compare the properties of solids, liquids, and gases in terms of the kinetic molecular theory.

Answers

Solids have a fixed shape and a fixed volume. Liquids have a fixed volume, but no fixed shape. Gases have neither a fixed volume nor a fixed shape. Solids cannot be compressed. The molecules have an ordered arrangement. Liquid - Molecules will flow or glide over one another, but stay toward the bottom of the container. Motion is a bit more random than that of a solid. They have enough kinetic energy to slip out of the ordered arrangement of a solid.

You have a sample containing 4.5 g of an unknown gas. Based on the volume, temperature, and pressure of the sample, there are 0.14 moles of gas present. What is the molar mass of this unknown gas?

Answers

A sample containing 4.5 g of an unknown gas. Based on the volume, temperature, and pressure of the sample, there are 0.14 moles of gas present.  the molar mass of this unknown gas is

given that :

the mass of unknown gas = 4.5 g

number of moles of unknown gas = 0.14 mol

the number of moles is given as :

number of moles = mass / molar mass

molar mass of unknown gas =  mass / moles

                                               = 4.5 / 0.14

                                               = 32.14 g/mol

Thus, A sample containing 4.5 g of an unknown gas. Based on the volume, temperature, and pressure of the sample, there are 0.14 moles of gas present.  the molar mass of this unknown gas is

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Which element is used in "yellow" muted lights?
sodium
carbon
nitrogen
aluminum

Answers

Sodium is used in "yellow" muted lights because it produces a yellow-orange light when it is heated.

What is Sodium?
Sodium
is a chemical element with atomic number 11 and the symbol Na (derived from the Latin natrium). It is a delicate, silvery-white metal that is very reactive. Due to its placement in group 1 of the periodic table, sodium is an alkali metal. 23Na is the only stable isotope of it. The free metal must be prepared from compounds because it does not exist in nature. The sixth most common element in the crust of the Earth is sodium, which can be found in a variety of minerals like feldspar, sodalite, and halite (NaCl). Since the action of water has been leaching sodium ions from the minerals of the Earth for aeons, many salts of sodium are highly water-soluble. As a result, sodium and chlorine are the most prevalent dissolved elements by weight in the oceans.

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What is the atomic radius of Br?

84pm
140pm
60pm
117pm

Answers

Answer:

The answer is 117.

Explanation:

There’s not really a way to calculate atomic radius. It comes from empirical data and is in the periodic table. The only way I can think of is Bohr’s radius constant.

₀ = 4₀(ℎ bar)²/_e (_e)²

Calculating atomic radius can get complicated so it’s best to leave it at this.

At 5:00 A.M. the temperature was
7 degrees below zero. At 8:00 A.M. the temperature is 7 degrees above zero. Is the weather getting warmer or colder?

A) warmer
B) colder

Answers

Answer:

A) Warmer

Explanation:

it says above 0

The sun, moon, and planets of the solar system are shown with their orbits.
The loops in Ptolemy’s model, and those shown on the video, are called motion.
This phenomenon is caused by Earth’s orbit than those of other planets.

Answers

The loops in Ptolemy’s geocentric model, and those shown are called retrograde motion. This phenomenon is caused by Earth’s faster orbit than those of other planets.Ptolemy was a famed scientist in the past who believed that the solar system had a geocentric model which meant that the Earth was at the centre of the Solar system and other planets went around it.He came to this conclusion because of the retrograde motion which: Gives the illusion that when you pass something, it moves backward.Makes it seem as though the outer planets were moving forward and then backward and forward again Made it seem as though the outer planet are orbiting Earth as a result.The reason this was happening however, was because the Earth orbits the sun faster than these planets so it overtakes them and gives the illusion that they were moving backwards and then forward again when the Earth caught up.In conclusion, the retrograde motion made it seem as though the Earth was the centre of the solar system.

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Answer: 1 one is B 2 one is C 3 one is A

The sun, moon, and planets of the solar system are shown with their orbits.

The loops in Ptolemy’s

1 one

A retrograde

B geocentric

C retrograde

model, and those shown on the video, are called

2 one

A heliocentric

B geocentric

C retrograde

motion.

This phenomenon is caused by Earth’s

3 one

A faster

B slower

C larger

orbit than those of other planets.

Which identifies an oxidation-reduction reaction?

a double replacement reaction

a neutralization reaction

a reaction in which oxidation numbers change

a reaction in which no electrons are transferred

Answers

Answer:

c. a reaction in which oxidation numbers change

Explanation:

In an oxidation reaction there is loss of electrons whereas in a reduction reaction there is gain of electrons. Therefore, a reaction in which oxidation numbers change identifies an oxidation-reduction reaction.

Answer:

C: a reaction in which oxidation numbers change.

Explanation:

Of the following transitions in the Bohr hydrogen atom, the ________ transition results in the absorption of the highest-energy photon.
Of the following transitions in the Bohr hydrogen atom, the ________ transition results in the absorption of the highest-energy photon.
n = 7 → n = 4
n = 3 → n = 5
n = 3 → n = 2
n = 6 → n = 3

Answers

The highest energy transition in the hydrogen atom among the following is from n=6 to n=3. Hence option d is correct.

What is Bohr model?

Bohr model of atom proposed the modern atomic model based on the interpretations from quantum mechanics. According to this model, electrons are revolving around the atom through circular paths of fixed energy.

The energy of the se levels and the momentum of electrons can be determined using Bohr's equation. Electrons can transit between these energy levels. The Rydberg formula for the transition is written as follows:

[tex]\frac{1}{\lambda} = R [\frac{1}{n_{1}^2} -\frac{1}{n_{2}^2} ][/tex]

Here, R is the Rydberg constant and n1 and n2 be the first and second energy levels.

The transition n=6 to n=3 gives the higher value for this equation. Hence, this transition results highest energy absorption.

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What mass of carbon dioxide is produced from the complete combustion of 6.70x10-3 g of
methane?

Answers

The full burning of 6.70x10-3 g of methane results in the production of 2.95872 mass of carbon dioxide.

Combustion is what kind of reaction?

Burning is sometimes referred to as combustion. A fuel is heated and interacts with oxygen in a combustion reaction. The three elements of fuel, heat, and oxygen required for combustion are summarized by the fire triangle.

What is the purpose of combustion?

Chemical processes that occur during combustion are frequently quite exothermic. The energy of chemical molecules generated during this reactive process is used by combustion systems to power vehicles, produce electricity, or heat a variety of uses.

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Please look at attached image !!!

Answers

Ideal gas law is valid only for ideal gas not for vanderwaal gas. Therefore 26.55g of iron is needed to completely consume 18.5L chlorine gas at 25 degree Celsius and 1 atm pressure.

What is ideal gas equation?

Ideal gas equation is the mathematical expression that relates pressure volume and temperature.

Mathematically the relation between Pressure, volume and temperature can be given as

PV=nRT

where,

P = pressure of chlorine gas =1 atm

V= volume of chlorine gas =18.5L

n =number of moles of chlorine gas

T =temperature of chlorine gas =298K

R = Gas constant = 0.0821 L.atm/K.mol

1 atm×18.5L= 0.0821×n×298K

1 atm×18.5L=n×24.4

n=0.75mol

mass of chlorine=0.75mol×35.453 g/mol

                          =26.55g

Therefore 26.55g of iron is needed to completely consume 18.5L chlorine gas at 25 degree Celsius and 1 atm pressure.

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What is the strength of the final solution of a 20% solution is diluted twice 1:5, then 1:2?

Answers

The final solution has a strength of 2%.

Let the initial volume of solution = x unit^3

The solution is initially by 20%

Amount of solute = x*20/100

                             = x/5 unit^3

Now,  

We first diluted by 1:5

1 part of initial solution is diluted with 4 parts of diluent

For 'x' unit^3 solution,

Diluent added = 4x unit^3

Total volume of solution becomes = x+4x

                                                          = 5x unit^3

Now,

We diluted by 1:2

1 part of solution is diluted with 1 part of diluent

5x unit^3 of solution is diluted with 5x unit^3 of diluent

Final solution = 5x + 5x = 10x unit^3

Final strength = (Amount of Solute/Final solution)*100%

                       = (x/5/10x)*100%

                       = x/50x*100%

                       = 2%  

The final strength of final solution is 2%

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In the SI system of units [International System of Units], the mole is one of seven base units. It is frequently used in chemical calculations. However, a mole of something is just a particular quantity of it. It is not a unit of measure in the way that meters, seconds, and kilograms are. Calculations performed with the number of moles of a substance could also be performed with the number of particles of a substance. Based on this information, do you think that the mole should be considered a base unit in the SI system? Explain why or why not.

Answers

A Mole should not be considered a base unit in the SI system.

SI system is a metric system which is also known as the International system of units. Most of the measurements across the globe is measured by SI system. SI units are used in nearly every part of the globe, such as science, technology, mathematics and many more. The system includes coherent units known as derived units.

A Mole is not considered as any property of the units and also it is not a base unit.Moles can be considered for chemical and physical comparison.A Mole of a substance can indicate the number of particles of that substance.

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