thsof
is which acid H2S04

Answers

Answer 1

Explanation:

H2So4=sulphuric acid , strong acid


Related Questions

Determine the molecular formula for a molecule with 3.61 x 10^24 atoms of Carbon per mole of the compound, if it has the following compositions: 39.6% Carbon, 7.75% Hydrogen, and the remaining from Oxygen.

I have already figured out the empirical formula: C3H7O3

Answers

The empirical formula of compound is C₃H₇O₃. The molecular formula is 1, 2, 3, tri hydroxyl propane.

What is molecular formula ?

The molecular formula is an equation that specifies how many atoms of each element there are in a single compound's molecule. It displays the precise amount of atoms present in a molecule.

Propane, for instance, has the chemical formula C4H10. The given compound has a formula of 4 carbon atoms and 10 hydrogen atoms.

The empirical  formula of compound is C₃H₇O₃.

Then, ( 12 × 3 ) + ( 1 × 7 ) + ( 16 × 3 )

= 36 + 7 + 48

= 91

( 39.6 ) + ( 7.75 ) = 47.35

91 - 47.35

= 43.65

Thus, molecular formula of given compound is 1, 2, 3, tri hydroxyl propane.

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How is the water cycle affected when the sun comes out?
A. Rain Freezes
B. Rain becomes sweet
C. Nothing Happens
D. Rain evaporates

Answers

Answer:

option d rain evoporates

Answer:

D. Rain Evaporates

Explanation:

Heat causes liquid and frozen water to evaporate into water vapor gas, which rises high in the sky to form clouds. Clouds move over the globe and drop rain and snow.

Write the balanced NET ionic equation for the
reaction when AICIs and NaOH are mixed in
aqueous solution. If no reaction occurs, simply write
only NR. Be sure to include the proper phases for all
species within the reaction.

Answers

The balanced NET ionic equation is

Al(OH)3 ----> Al3+(aq) + 3OH(aq) (s)

When AICI and NaOH are combined in an aqueous solution, the following balanced NET ionic equation describes the reaction:

Al(OH)3 -----> Al3+(aq) + 3OH(aq) (s)

An exchange reaction occurs when AICI and NaOH are combined.

Al(OH)3(s) + 3NaCl(aq) -----> AlCl3(aq) + 3NaOH(aq) (1)

In this reaction, the ions Al+3 and Na+ exchange Cl- and OH- ions.

The total ionic equation must first be written in order to create the NET ionic equation:

AI(OH)3(s) + 3Na+(aq) + 3Cl(aq) + Al3+(aq) + 3Cl(aq) + 3Na+(aq) + 3OH (aq) (2)

Since the Al(OH), precipitates, we are unable to describe it as an ion because the aqueous solution does not allow for its dissociation.

The following is the net ionic equation for reaction

Al3+(aq) plus 3OH-(aq) leads to Al(OH)3(s)

The net ionic equation excludes all repeating ions from reactants and products. We eliminated the Na+ and Cl- ions from the net ionic equation because of this

The balanced net ionic equation is as follows:

Al(OH)3 ----> Al3+(aq) + 3OH(aq) (s)

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A chemist prepares a solution of mercury(I) chloride ( Hg2Cl2) by measuring out 0.000406 umol of mercury(I) chloride into a 200. mL volumetric flask and filling the flask to mark with water.

calculate the concentration in mmol/L of the chemist's mercury(I) chloride solution. Round your answer to 3 significant digits.​

Answers

The concentration in mmol/L of the chemist's mercury(I) chloride solution. is 2.03 × 10^-8 M

We are given;

Number of moles of mercury (i) chloride as 0.000406 μmol

Volume is 200 mL

We are required to calculate the concentration of the solution.

We need to know that;

Concentration is also known as molarity is given by;

Molarity = Number of moles ÷ Volume

Number of moles = 4.06 × 10^-10 Moles

Volume = 0.02 L

Therefore;

Concentration = 4.06 × 10^-10 Moles ÷ 0.02L

                      = 2.03 × 10^-8 M

Thus, the molarity of the solution is 2.03× 10^-8 M.

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A balloon at 30.0°C has a volume of 222 mL. If the temperature is increased to 64.1°C and the pressure remains constant, what will the new volume be, in mL?

Answers

Answer:

Explanation:

I forgot

how without making any quantitative measurements could you determine if a piece of plastic has a density greater or less than 1 g/cm

Answers

To determine if the piece of plastic has a density greater or less than 1 g/cm³, the piece of plastic is placed in water, if it sinks, it has a greater density, but if it floats, it has a lesser density.

What is an appropriate method to determine if a piece of plastic has a density greater or less than 1 g/cm³?

The density of a substance measure how compact the substance is.

For fluids such as water, objects that are denser than water will sink in water. However, if the density is less than that of water, it will float in water.

The density of water is 1 g/cm³.

Hence, objects that have densities greater than 1 g/cm³ will sink in water, whereas objects that have densities less than 1 g/cm³ will float in water.

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Evaluate the following summaries and choose the one that best describes metals, nonmetals, and metalloids.

A)
Metals are liquids, good conductors, and melt at low temperatures. Nonmetals are solid, poor conductors, and low in density. Metalloids are very heavy, shiny, good conductors, and have very high densities.

B)
Metals are generally very shiny, good conductors, high in density, and melt at high temperatures. Nonmetals are generally dull, poor conductors, low in density, and melt at low temperatures. Metalloids exhibit properties of both metals and nonmetals, make fair conductors, and can appear as shiny or dull.

C)
Metals are usually very shiny, high in density, and poor conductors. Nonmetals are great conductors, dull, and very dense. Metalloids are the heaviest of all elements, solid, and melt at low temperatures.

D)
Metals are usually dull, low in density, and melt at low temperatures. Nonmetals are usually very shiny, high in density, and good conductors of electricity. Metalloids are generally very shiny, solid, and melt at very high temperatures.

Answers

The correct summary of the properties is; Metals are generally very shiny, good conductors, high in density, and melt at high temperatures. Nonmetals are generally dull, poor conductors, low in density, and melt at low temperatures. Metalloids exhibit properties of both metals and nonmetals, make fair conductors, and can appear as shiny or dull.

What are the classifications of materials?

Materials are of course composed of matter and mater is composed of atoms of elements. There are three main classes of the elements that we have in the periodic table. The classes of the elements are known as;

1) Metals

2) Non metals

3) Metalloids

Metals do conduct electricity while the non metals just do not conduct electricity. The metalloids would acts as conductors of electricity under certain circumstances.

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True or false

Inertia and distance combine to keep Earth in orbit around the Sun and the Moon in orbit around Earth.

Answers

The statement " Inertia and distance combine to keep Earth in orbit around the Sun and the Moon in orbit around Earth " is false.

Why Inertia and distance does not combine to keep Earth in orbit around the Sun and the Moon in orbit around Earth?

According to Sir Isaac Newton, he proposed and concluded in his investigation that the earth is being kept in its orbit around the Sun and the Moon in orbit around Earth by means of gravity and inertia. This is not done through inertia and distance.

In conclusion, it can be deduced from the explanation given above that inertia and gravity combine to keep the earth in orbit around the Sun and the Moon in orbit around Earth.

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What volume of 0.180 M KOH is needed to react completely with 15.1 mL of 0.190 M H2SO4

Answers

The volume of 0.180 M KOH that would be needed to completely react with 15.1 mL of 0.190 M [tex]H_2SO_4[/tex] will be  31.88 mL

Stoichiometric problem

The equation of the reaction involving KOH and [tex]H_2SO_4[/tex] is as follows:

[tex]2KOH + H_2SO_4 --- > K_2SO_4 + 2H_2O[/tex]

The equation is already balanced and the mole ratio of KOH and  [tex]H_2SO_4[/tex] is 2:1.

But 15.1 mL of 0.190 M  [tex]H_2SO_4[/tex]  is available.

Recall that:

mole = molarity x volume

Mole of 15.1 mL of 0.190 M  [tex]H_2SO_4[/tex] = 0.190 x 15.1/1000

                                                          = 0.002869 mol

From the 2:1 mole ratio, the equivalent mol of KOH would then be:

0.002869 x 2 = 0.005738 mol

Since, mole = molarity x volume. Then, volume = mole/molarity

So, the volume of 0.005738 mol of 0.180 M KOH would be:

volume = 0.005738/0.180

             = 0.03188 liters

Converting 0.03188 liters to mL:

   0.03188 x 1000 = 31.88 mL

Thus, the volume of 0.180 M KOH needed to react completely with 15.1 mL of 0.190 M H2SO4 would be 31.88 mL.

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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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How many molecules are in 72.0 moles of CO₂?

Answers

Taking into account the definition of Avogadro's Number, 4.33656×10²⁵ molecules are in 72 moles of CO₂.

Avogadro's Number

Avogadro's Number is called the number of particles that make up a substance (usually atoms or molecules). This particles can be found in the amount of one mole of said substance.

Its value is 6.023×10²³ particles per mole. Avogadro's number applies to any substance.

Amount of molecules on 72 moles of CO₂

Then you can apply the following rule of three: if 1 mole of CO₂ contains 6.023×10²³ molecules, 72 moles of CO₂ contains how many molecules?

amount of molecules of CO₂= (6.023×10²³ molecules × 72 mole)÷ 1 mole

amount of molecules of CO₂= 4.33656×10²⁵ molecules

Finally, 4.33656×10²⁵ molecules are present in 72 moles of CO₂.

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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

how many signals will be expected in the 1H NMR spectrum of the following compound?

Answers

In this compound, there would be five proton NMR signals,

What is the proton NMR spectrum?

We know that the acronym NMR means nuclear magnetic resonance. It has to do with the kind of spectrum in which the kind of chemical environment where the proton is found would impact the spectrum that is observed in the compound.

The first thing that we need to look at and find out in the image is to be able to find out the number of chemical environments that we have in the compound as we can see it in the image.

By studying the compound closely, we can see that there are four different proton chemical environments that we can be able to see and map out from the compound and it is these chemical environments that tell us the number of signals to expect.

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A 1.20 L weather balloon on the ground has a temperature of 25.0°C and is at atmospheric pressure (1.00 atm). When it rises to an elevation where the pressure is 0.730 atm, then the new volume is 1.80 L. What is the temperature (in °C) of the air at this elevation?

Answers

The final temperature (°C) of the air at this elevation is 326.3K.

How to calculate temperature?

The temperature of a gas can be calculated using the combined gas law equation as follows:

P₁V₁/T₁ = P₂V₂/T₂

Where;

P₁ = initial pressureV₁ = initial volumeT₁ = initial temperature P₂ = final pressureV₂ = final volumeT₂ = final temperature

According to this question, 1.20L weather balloon on the ground has a temperature of 25.0°C and is at atmospheric pressure (1.00 atm). When it rises to an elevation where the pressure is 0.730 atm, then the new volume is 1.80L. The final temperature can be calculated thus:

1 × 1.2/298 = 0.730 × 1.8/T₂

0.004027T = 1.314

T = 326.3K

Therefore, 326.3K is the final temperature of the balloon.

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Does hydrogen satisfy the octet rule when it bonds with other elements having 2 valence electrons?
Why?

Answers

Each Hydrogen atom has 1 valence electron. Since Hydrogen can only fit a max of 2 valence electrons in its orbital, each Hydrogen atom only needs 1 electron. Each atom has 1 valence electron, so they can just share, giving each atom two electrons each.

How many joules are in 6,458 Cal? Express your answer in scientific notation with the correct number of significant figures.

Answers

The number of Joules in 6,458 Calories calculated to the correct number of significant figures would be 2.6790 x [tex]10^4[/tex] Joules.

Unit conversion

Both Joules (J) and Calories (Cal) are units of energy. According to the standard unit of conversion:

1 kiloCalorie = 4148 Joules

Since, 1 kiloCalorie = 1000 Calorie

Then:

1000 Calorie = 4148 Joules

Thus;

1 Calorie = 4148/1000

               = 4.148 Joules

Now, let's see the number of Joules that is equivalent to 6,458 Calories.

1 Calorie = 4.148 Joules

6,458 Calories = 4.148 x 6,458

                         = 26787.784 Joules

According to one of the rules guiding significant figures when performing multiplication operations, the number with the lowest significant figure is considered for the significant figures of the final answer.

Thus, the final answer, in this case, would be to four significant figures.

In other words, 6,458 Calories = 2.6790 x [tex]10^4[/tex] Joules.

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Calculate the density of an object that has the mass of 16 grams and takes up 7 cm3 of space.

Answers

Explanation:

[tex]density \: = \: mass \: over \: volume \\density \: 16grams \: over \: 7cm {}^{3} \\ density = 2.3g \cm {}^{3} [/tex]

How many molecules are in 12.80 moles of strontium bydroxide?

Answers

77.094*[tex]10^{23}[/tex]  molecules are in 12.80 moles of strontium bydroxide.

What does Sr OH 2's formula go by?

The chemical strontium hydroxide has a molecular weight of 121.6324 g/mol and the molecular formula Sr(OH)2. It appears in the form of an anhydrate with prismatic, colorless crystals that are liquescent.

What fraction of atoms and molecules makes up NaOH?

The building By counting the number of components (and their corresponding quantities) listed in the chemical formula, one can easily determine that each molecule of the compound NaOH contains three atoms.

By mole concept-

1moleof strontium bydroxide =6.023*[tex]10^{23}[/tex] molecules of strontium bydroxide.

so,

12.80 moles of strontium bydroxide =12.80*6.023*[tex]10^{23}[/tex]

No of molecule =77.094*[tex]10^{23}[/tex] molecule

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15. A 100 g sample of each of the following metals is heated from 35°C to 45°C. Which metal absorbs
the greatest amount of heat energy?
Metal
4
magnesium
e. copper
copper
magnesium
mercury
silver
lead
b. lead
c. silver
Specific Heat Capacity
0.385 J/(g-°C)
1.02 J/(g-°C)
0.138 J/g °C)
0.237 J/(g-°C)
0.129 J/(g-°C)
d. mercury

Answers

Answer:

b

Explanation:

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PLEASE HELP
Can someone explain the step?

Calculate the mass (in grams) needed to prepare 0.505 liters of a 0.314 M CH,;O, solution.
You do not need to enter a unit with your answer.

Answers

The concentration terms are molality, normality and mole fraction. Molarity can be used to find out the ionic strength of any solution. Therefore, the mass of CH[tex]_2[/tex]O is 4.80g.

What is molarity?

Molarity can be calculated by dividing number of moles of solute by volume of solution in liter. Molarity is affected by temperature. Its unit is mole/liter. It measure the concentration of any solute in a solution.

Mathematically,

Molarity= number of moles of solute÷ Volume of solution in liter

number of moles of solute =given mass÷ Molar mass of solute

number of moles of solute =mass÷30.03 g/mol

Molarity=0.314 M

Volume of solution=0.505 liters

Substituting all the given values, we get

0.314 M= {mass÷30.03 g/mol}÷ 0.505 liters

mass÷30.03 g/mol=0.15

mass =4.80g

Therefore, the mass of CH[tex]_2[/tex]O is 4.80g.

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For the reaction N2(g) + 3H2(g) ↔ 2NH3(g), the equilibrium constant, K, = 9.83 x 10-2 at a certain temperature and pressure.

While the reaction was proceeding at this temperature and pressure the concentrations of the reactants and products were measured and found to be

[N2] = 0.910 mol/L

[H2] = 0.300 mol/L

[NH3] = 0.0081 mol/L

a. Was the reaction at equilibrium? Explain. (4 marks)

b. If the reaction was not at equilibrium, in which direction was it proceeding? Explain

Answers

The reaction is not at equilibrium and it is in the forward direction.

a.

Given,

[N₂] = 0.910 mol / L

[H₂] = 0.3 mol / L

[NH₃] = 0.0081 mol / L

K = 9.83 x 10⁻²

The balanced chemical equation for the given reaction is,

N₂(g) + 3H₂(g) ⇄ 2NH₃(g)

The formula of equilibrium constant is given by,

K = [NH₃]² / [N₂] [H₂]²

9.83 x 10⁻² = [(0.0081)² ]/ [0.910 × (0.3)²]

⇒9.83 x 10⁻² = (0.00006561) / (0.0819)

⇒9.83 x 10⁻² = 0.0008010989

⇒0.00983 = 0.0008010989

LHS ≠ RHS

Hence, the reaction is not at equilibrium.

b.

The reaction is in forward direction.

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If you want to distinguish between alkanes and alkenes using chemical reactions, which test: the combustion or the bromine is the better one? Explain your answer. Question 2: what you can use to wash the cloth contaminated by oil?

Answers

1) We could use the bromine water test to tell the difference between the alkane and the alkene

2) We can use a detergent to wash a cloth that is contaminated by oil.

What is an alkane?

The term alkane has to do with a hydrocarbon that is composed of only a straight chain compound there are no multiple bonds in the alkane molecule and this is the difference between the alkane and the alkene. The alkene is composed of double bonds. The alkene compounds are able to decolorize bromine water while the alkanes can not.

If you have a contaminated cloth, you can be able to wash it by the use of a detergent because it is able to lift off the grease or oil by the use of the hydrophobic tail of the detergent.

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What is the oxidation number of an element

Answers

Oxidation number or state of an atom/ion is the number of electrons an atom/ion that the molecule has either gained or lost compared to the neutral atom.

Which of the following is a true statement about cellular respiration? (4 points) a Cellular respiration occurs only in plant cells. b Cellular respiration occurs only in animal cells. c Cellular respiration occurs in both plant and animal cells. d Cellular respiration occurs in some plant cells and some animal cells.

Answers

Answer:

cellular respiration occurs both in plant and animal cells.

Explanation:

Cellular respiration definitely occurs in animals, it is how we break down glucose to get ATP. Plants first use photosynthesis to produce glucose and then need a way to produce ATP, being cellular respiration.

the nuclear equation of the neutron bombardment of cobalt-60

Answers

The nuclear equation for this reaction shows the gamma rays that are released when cobalt-60 is produced. 5927Co+10n6027Co+γ

What is nuclear reaction ?

In nuclear physics and chemistry, a nuclear reaction is the process by which two atomic nuclei or nuclei and external particles collide to produce one or more new nuclides. Therefore, a nuclear reaction must transform at least one nuclide into another nuclide. When a nucleus interacts with another nucleus or particle and they separate without changing the properties of the nuclide, this process is simply called a form of nuclear scattering and is not a nuclear reaction.

Although in principle two or more particles could react and collide, the probability of three or more nuclei colliding in the same place at the same time is much lower than for two nuclei, so such Incidents are very rare.

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To what volume should you dilute 35 mL of a 12 M stock HCl solution to obtain a 0.500 M
HCl solution?

Answers

Volume should you dilute 35 mL of a 12 M stock HCl solution to obtain a 0.500 M is 840 mL,

Given that :

Molarity of the solution M1 = 12 M

volume of the solution V1 = 35 mL

Molarity of the solution after the dilution M2 = 0.500 M

volume of the solution after the dilution V2 = ?

the dilution law states that :

M1 V1 = M2 V2

12 × 35 = 0.500 × V2

V2 = 840 mL

Thus, Volume should you dilute 35 mL of a 12 M stock HCl solution to obtain a 0.500 M is 840 mL.

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4. In the space below, write the electron configurations of the following elements: using main shell, Subshell and Noble gas a) oxygen b) sodium c) Chlorine d) Nitrogen​

Answers

The electronic configuration of oxygen is k =2, L=6 the subshell configuration is 1s², 2s²,2p⁴. Similarly the configuration of sodium is 1s², 2s²,2p⁶,3s¹ and that for chlorine is 1s², 2s²,2p⁶,3s²,3p⁵.

What is electronic configuration?

The electronic configuration of an element is the distribution of electrons in different orbitals from the lowest energy level to the highest energy level.

Oxygen is 8th element thus having 8 electrons. The main shell configuration is K= 2, L= 6 and the subshell electronic configuration is 1s², 2s²,2p⁴.

Sodium is 11th element. The main shell electronic configuration is  K=2, L=8, M=1. Subshell electronic configuration is  1s², 2s²,2p⁶,3s¹ and the noble gas configuration is [Ne]3s¹. Where Ne have 10 electrons.

Chlorine is 17th element with main shell configuration K =2, L=8, M=7.Subshell configuration 1s², 2s²,2p⁶,3s²,3p⁵ and noble gas configuration is [Ne] 3s² 3p⁵.

Nitrogen is 7th element with K= 2, L=5 and subshells, 1s², 2s²,2p³.

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35.0 L of an ideal gas at 268 K and 5.16 atm are heated to 343 K with a new pressure of 7.65 atm. What is the new volume (in L)?

Answers

From the calculations, the new volume of the gas is 30.2 L.

What is the new volume?

We know that we can be able to obtain the parameters that ahs to do with the gas by use of any of the equations of the laws that relate to an ideal gas.

Given that the;

Initial volume [tex]V_{1}[/tex] = 35.0 L

Initial temperature [tex]T_{1}[/tex] =  268 K

Initial pressure [tex]P_{1}[/tex]  = 5.16 atm

Final temperature [tex]T_{2}[/tex] = 343 K

Final pressure [tex]P_{2}[/tex] =  7.65 atm

Final volume [tex]V_{2}[/tex] = ??

Then we have to use the general gas equation;

[tex]P_{1}[/tex] [tex]V_{1}[/tex]/ [tex]T_{1}[/tex]=  [tex]P_{2}[/tex] [tex]V_{2}[/tex]/ [tex]T_{2}[/tex]

[tex]V_{2}[/tex] =  5.16 * 35.0 *  343/7.65 * 268

[tex]V_{2}[/tex] = 61945.8/2050.2

[tex]V_{2}[/tex] = 30.2 L

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Magnetite, Fe3O4, is another ore of iron that contains both Fe²+ and Fe³+.
(a) Deduce the ratio of Fe²+: Fe³+ in Fe3O4.

Answers

The ratio of Fe²+: Fe³+ in Fe3O4 is 1:2

What is ore?

An ore is a naturally occurring deposit of geologic material (rock) that contains a sufficient quantity of one or more valuable elements or compounds to be economically mined. Metals such as copper, platinum, iron, lead, gold, silver, aluminium, nickel, and others are among these valuable elements. Nonmetals such as silicon and diamond may be found in ore. These valuable chemicals can be extracted and used in a variety of ways, from jewellery creation to electronic gadget manufacture. Ores vary greatly based on the parent rock's chemical composition as well as the natural mechanism by which they were created.

Mining corporations carefully analyse various issues before deciding to mine because extracting anything from the earth involves time, money, and effort. The ore grade, for example, indicates how much of the desired precious element or combination occurs inside the parent rock. The rock is regarded an ore if the required component is present in sufficient concentration for processing to be viable. Larger grade ores have higher concentrations of the desired ingredient, and vice versa.

Fe304 contains both Fe²+ and Fe³+

Then we have to deduce the ratio of Fe²+ and Fe³+.

We know that

Fe0  + Fe2O3 ---------> Fe3O4

Fe in Fe0 is Fe(II)

Fe in Fe2O3 is Fe(III)

Then we have see that

on combine Fe 2+ with Fe3  , Fe304 is form

Hence,

The ratio of Fe²+: Fe³+ in Fe3O4 is 1:2

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In a murder case, the prosecutor shows a photo to demonstrate the position of the body in relation to the rest of the crime scene. What type of photograph was MOST likely shown?

A.
an overview photograph

B.
an intermediate photograph

C.
a close-up photograph

D.
a personal photograph

Answers

A close-up photograph must be taken by the prosecutor to demonstrate the position of the body in relation to the rest of the crime scene.

For criminal investigation analysis, it becomes important to capture photographs from those areas in which acts of violence took place. To record the crime scene in more detail the photograph must be taken from close range and also with perfection. Close range photographs enables the viewer to understand where and how the crime was committed. The photographs of entry and exit of the crime scene is taken so carefully to observe the movement of the criminal before and after of the crime.

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Answer:  C

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