In the reaction C+0₂ → CO₂ which element is reduced in the reaction?
O C
O 0₂
O CO₂

Answers

Answer 1

Answer:

O2(oxygen)

Explanation:

Reduced means the valence electrons are gained. From this equation we see in CO2, C is 4+ and for each O there's a 2-, however, originally, C and O2 are all 0, it's obvious that O is reduced from 0 to 2-

Answer 2
O2 would be the correct answer

Related Questions

Based on the electron configuration of the two atoms, predict the ratio of metal cationic (+) atom to nonmetal anionic (-) atom in the compound. 1522s22p63523p64sl Potassium 1$22s22p63s23p5 Chlorine

Answers

The metal cationic (+) atom to nonmetal anionic (-) atom ratio in the compound formed between Potassium and Chlorine is 1:1.

What is a compound?

A compound is made up of two or more atoms that are chemically combined together. In this case, we have the atoms; Potassium and Chlorine.

The electronic configuration of the atoms is not shown here but the metal cationic (+) atom to nonmetal anionic (-) atom ratio in the compound formed between Potassium and Chlorine is 1:1.

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In an endothermic reaction, the ______ have more energy than the _______.

A. reactants, products
B. surroundings, products
C. products, reactants
D. reactants, surroundings

Answers

Answer:

C

Explanation:

If the products have a higher energy level than the reactants then the reaction is endothermic.

In an endothermic reaction, the reaction mixture absorbs heat from the surroundings. Therefore, the products will have a higher energy than the reactants and ΔH will be positive.

In an exothermic reaction, the reaction mixture releases heat to the surroundings. Therefore, the products will have a lower energy than the reactants and ΔH will be negative.

a. the reactants to the surroundings.

That is because in an exothermic reaction, energy is being released.

A 80.0 g sample of copper (specific heat = 0.20 J/g °C ) is heated and then added to 100 g water at 22.3 °C. The final temperature of the water and copper is 26.9°C. What is the original temperature of the copper sample, assuming that all the heat lost by the copper is gained by the water?

Answers

The original temperature of the copper sample, assuming that all the heat lost by the copper is gained by the water is 147.08°C.

How to calculate temperature?

The temperature in a calorimetry experiment can be calculated using the following formula:

Q = mc∆T

Where;

Q = quantity of heat absorbed or releasedm = mass of substancec = specific heat capacity∆T = change in temperature

For a calorimetry;

Q(water) = -Q(metal)

mc∆T (water) = -(mc∆T) (metal)

100 × 4.18 × 4.6 = - (80 × 0.20 × {26.9 - x}

1922.8 = -430.4 + 16x

16x = 2353.2

x = 147.08°C

Therefore, the original temperature of the copper sample, assuming that all the heat lost by the copper is gained by the water is 147.08°C.

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How many moles of silver can be produced from silver nitrate from 1 mole of zinc?

Answers

Answer:

Answer: 6.5 moles of silver metal is formed in the given chemical reaction. The moles of excess reagent left are 0.55 moles.

Explanation:

To calculate the moles of silver formed and the moles of excess reagent left after the reaction, we need to balance the equation first and need to find the limiting and excess reagent.

The balanced chemical equation is:

Zn + 2AgNO3 ---> Zn (NO3)2 +2Ag

By Stoichiometry:

2 moles of Silver nitrate reacts with 1 mole of Zinc metal

So, 6.5 moles of silver nitrate will react with = 1/2 x 6.5 = 3.25 moles of zinc metal

The required amount of zinc metal is less than the given amount of zinc metal,  hence, it is considered as an excess reagent.

Therefore, silver nitrate is the limiting reagent because it limits the formation of product.

By Stoichiometry of the reaction:

2 moles of silver nitrate produces 2 moles of silver metal

So, 6.5 moles of silver nitrate will produce = 2/2 x 6.5 = 6.5moles of silver metal.

Number of moles of excess reagent left after the completion of reaction = (3.8 - 3.25)moles = 0.55 moles

Hence, 6.5 moles of silver metal is formed in the given chemical reaction. The moles of excess reagent left are 0.55 moles.

A chemical reaction in which one element replaces another element in a compound can be catergorized as a

Answers

Answer:

[tex]\huge\boxed{\sf Single \ displacement \ reaction}[/tex]

Explanation:

Displacement reaction:A reaction in which an element displaces or replaces another element of a compound is called a displacement reaction.Types:

There are 2 types:

1. Single displacement reaction:If one element displaces 1 other element of a compound, it is called single displacement reaction.Example:  [tex]CuSO_4 +Fe \longrightarrow \ FeSO_4 + Cu[/tex]Here, 1 element (Fe) displaces 1 other element (Cu) of a compound.2. Double displacement reaction:If two elements in two compounds displace one another, it is called double displacement reaction.Example: [tex]CuSO_4+NaOH \longrightarrow Cu(OH)_2 + Na_2SO_4[/tex]Here, Copper and sodium both displace each other.

[tex]\rule[225]{225}{2}[/tex]

All of the following molecules except _________ make up a homologous series. Question 21 options: CH3CH2CH2CH3 CH3CHCHCH3 CH3CH2CH3 CH3CH2CH2CH2CH3 CH3CH2CH2CH2CH2CH3

Answers

All of the following molecules except CH₃CH₂CH₃ make up a homologous series.

What is Homologous Series ?

A homologous series is a series of compound having same general formula and same functional group.

What is the general formula of alkene and alkane ?

The general formula of alkane is CₙH₂ₙ₊₂

The general formula of alkene is CₙH₂ₙ

CH₃CH₂CH₃ (Propane) is the third homologous series of alkane which satisfies the general formula of alkane.

Thus from the above conclusion we can say that All of the following molecules except CH₃CH₂CH₃ make up a homologous series.

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8.The mass percent of phosphoric acid in cola has been reported to be 0.075% by mass. How does your answer compare to this value (use percent difference to make this comparison)

Answers

A mass percent can be calculated by dividing the mass of the component by the total mass of the mixture, multiplied by 100%.

What is Mass Percent?

This refers to a way of representing a concentration of elements in a compound or mixture.

Hence, we can see that your question is incomplete so I gave you a general overview to help you get a better understanding of the concept,

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A chemist conducted a precipitation reaction in which they added 35.5 mL of 0.125 M copper(II) sulfate to 50.00 mL of 0.150 M sodium hydroxide. The anion that was left over was subsequently precipitated by adding calcium chloride to the reaction mixture. What mass of the calcium chloride was added

Answers

The mass of CaCl2 is 0.076gram.

The molar mass of a compound is just the molar hundreds of every detail inside the compound brought up. Since the molar mass of Calcium is 40.08 g and the molar mass of Chlorine is 35.45, it might be 40g.08g+35.45g+35.45g (with 2 Chlorines in step with the subscript.) That leaves you with 110.98 g

Calcium and chlorine are the 2 factors in our instance. The molar loads of Ca (forty.08g/mol) and Cl (35.45g/mol) need to then be determined. Now that we have the masses of calcium and each chlorine atom, we are able to truly place them together to get the whole compound's molar mass, which is a hundred and 10.98 g/mol.

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A 1M solution of barium nitrate is added to the solution. What is the solubility of barium hydroxide after this addition

Answers

The solubility of the barium hydroxide after the addition of a 1M solution of barium nitrate is 0.035M

Barium nitrate is a salt that dissolves entirely in solution and is soluble. This indicates that before the salt dissolves, there will be a one molar concentration of barium ions. We may anticipate that the equilibrium will be pushed to the left and the barium hydroxide will be less soluble because we have increased the product side of the reaction. The common ion effect is the name given to this shift in equilibrium.

To ascertain the salt's solubility, we shall use an ICE table.

I. There is a one molar concentration of barium ions (from the barium nitrate) in the solution before the salt starts to dissolve, but there are no hydroxide ions present.

C. The unknown increases in each ion can be referred to as 1+ and 2x, respectively, because every dissolved molecule of barium hydroxide will produce one barium ion and two hydroxide ions. Observe how the previously added one molar concentration in the solution will be combined with the increased barium ion concentration.

E. At this point, we set the solubility equation to the constant representing the solubility product.

[tex]Ba(OH)_{2}[/tex] ⇔ [tex]Ba^{2+} + 2OH^{-}[/tex]

Ksp is defined as:

Ksp = [tex][Ba^{2+}] + [OH^{-}]^{2}[/tex]

5 x [tex]10^{-3}[/tex] = [tex][Ba^{2+}] [OH^{-}]^{2}[/tex]

It added a solution of 1M of [tex]Ba^{2+}[/tex]

5 x [tex]10^{-3}[/tex] = [tex][1M][/tex] [tex][OH^{-}]^{2}[/tex]

The addition of barium hydroxide [tex]Ba(OH)_{2}[/tex] gives:

[tex][Ba^{2+}] = 1M + x[/tex]

[tex][OH^{-}]^{2}[/tex] [tex]= 2x[/tex]

Replacing:

5x[tex]10^{-3}[/tex] = [tex][1+x][/tex] [tex][2x]^{2}[/tex]

[tex]10^{-3} = 4x^{2} + 4x^{3}[/tex]

[tex]x = 0.035 M[/tex]

Your question is incomplete, but most probably your full question was to consider the following balanced equation for the dissociation of barium hydroxide in an aqueous solution.

[tex]Ba(OH)_{2} (s) = Ba^{2+} (aq) + 2OH (aq)\\Ksp = 5* 10^{-3}[/tex]

A 1M solution of barium nitrate is added to the solution. What is the solubility of barium hydroxide after this addition?

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2. A sample of a gas is occupying a 1500 mL container at a pressure of 3.4 atm and a temperature of 25
C. If the temperature is increased to 75 °C and the volume is increased to 2000 ml, what is the new
pressure?
3. A sample of a gas is occupying a 450 mL container at a pressure of 167 kPa and a temperature of 295 K.
If the pressure is increased to 230 kPa and the volume is decreased to 400 mL, what is the new
temperature in K?
I
4. A sample of gas is occupying a 3.6 L container at a pressure of 9.2 atm and a temperature of 298 K. If
the volume is increased to 5.3 L and the pressure is decreased to 7.3 atm, what is the new
temperature?



pleaseeee hurry thank you!!

Answers

2. The new pressure, given the data is 3.0 atm

3. The new temperature in K is 361 K

4. The new temperature in K is 348 K

2. How to determine the new pressureInitial volume (V₁) = 1500 mLInitial pressure (P₁) = 3.4 atmInitial temperature (T₁) = 25 °C = 25 + 273 = 298 K New temperature (T₂) = 75 °C = 75 + 273 = 348 K New Volume (V₂) = 2000 mLNew pressure (P₂) = ?

The new pressure of the gas can be obtained by using the combined gas equation as illustrated below:

P₁V₁ / T₁ = P₂V₂ / T₂

(3.4 × 1500) / 298 = (P₂ × 2000) / 348

Cross multiply

P₂ × 2000 × 298 = 3.4 × 1500 × 348

Divide both sides by 2000 × 298

P₂ = (3.4 × 1500 × 348) / (2000 × 298)

P₂ = 3.0 atm

3. How to determine the new temperatureInitial volume (V₁) = 450 mLInitial pressure (P₁) = 167 KPaInitial temperature (T₁) = 295 KNew pressure (P₂) = 230 KPaNew Volume (V₂) = 400 mLNew temperature (T₂) =?

The new temperature of the gas can be obtained by using the combined gas equation as illustrated below:

P₁V₁ / T₁ = P₂V₂ / T₂

(167 × 450) / 295 = (230 × 400) / T₂

Cross multiply

T₂ × 167 × 450 = 295 × 230 × 400

Divide both sides by 167 × 450

T₂ = (295 × 230 × 400) / (167 × 450)

T₂ = 361 K

4. How to determine the new temperatureInitial volume (V₁) = 3.6 LInitial pressure (P₁) = 9.2 atmInitial temperature (T₁) = 298 KNew Volume (V₂) = 5.3 LNew pressure (P₂) = 7.3 atmNew temperature (T₂) =?

The new temperature of the gas can be obtained by using the combined gas equation as illustrated below:

P₁V₁ / T₁ = P₂V₂ / T₂

(9.2 × 3.6) / 298 = (7.3 × 5.3) / T₂

Cross multiply

T₂ × 9.2 × 3.6 = 298 × 7.3 × 5.3

Divide both sides by 9.2 × 3.6

T₂ = (298 × 7.3 × 5.3) / (9.2 × 3.6)

T₂ = 348 K

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PLEASE ANSWER AS QUICKLY AS POSSIBLE THANK YOU SO MUCH

Eli uses this thermometer to measure the temperature of a liquid. He reports his
results as 36 degrees. Is this a good description?

A. This is a perfect description because it gives both a number and a unit

B. This description is clear and can be understood by other measures

C. This description needs a unit describing the system of measurement.

D. This description needs a decimal point to be a good description

Answers

Answer:

This description needs a unit describing the system of measurement.

Which is NOT a physical property of a matter sample?
A.texture
B.toxicity
C.hardness
D.magnetism

Answers

Answer:

B.toxicity

Explanation:

Toxicity is talking about how harmful something is to you in terms of molecular and chemical level. Thus, it is chemical property.

Answer:

texture is not a physical property of a matter sample

Which structure diagram completes the table of physical structures of the main functional groups?

A 6 column table with 1 row. Column 1 is labeled Alchol with entry a molecule R single bonded to O H. Column 2 is labeled Ether with entry a molecule R single bonded to O single bonded to R prime. Column 3 is labeled Ketone with entry blank. Column 4 is labeled Aldehyde with entry Molecule H single bonded to C, which is double bonded to O and single bonded to R. Column 5 is labeled Carboxylic Acid with entry molecule O H single bonded to C, which is double bonded to O and single bonded to R. Column 5 is labeled Ester with entry molecule R prime single bonded to O single bonded to C, which is double bonded to O and single bonded to R.

A molecule H single bonded to C, which is double bonded to O and single bonded to R.
A molecule R prime single bonded to C, which is double bonded to O and single bonded to R.
A molecule O single bonded to C, which is double bonded to R prime and single bonded to R.
A molecule R prime single bonded to C, which is single bonded to O and single bonded to R.

Answers

A structure diagram which completes the table of physical structures of the main functional groups is:

R'

|

C = O

|

R

What is a ketone?

A ketone can be defined as a class of organic compound that typically comprises a carbonyl group in which an atom of carbon (C) is covalently bonded to an atom of oxygen (O).

In this context, we can infer and logically deduce that a structure diagram which completes the table of physical structures of the main functional groups is as follows:

R'

|

C = O

|

R

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The molecular structure of NCl3 is Select one: a. pyramidal b. none of these c. octahedral d. trigonal planar e. bent

Answers

Correct option:

The molecular structure of NCl3 is a. pyramidal

Molecular structure of NCl3:

The molecular geometry of NCl3 can also be ascertained using the AXN approach.

The center atom is shown as A.The bound pairs of electrons to the main atom are shown by the letter X.The core atom's lone pair of electrons is represented by the letter N.

The center atom in the NCl3 lewis dot structure is nitrogen, which possesses three pairs of bound electrons as well as one single electron.

Consequently, the NCl3 formula becomes AX3N1.

Therefore, if a molecule has the formula AX3N1, its shape is trigonal pyramidal, and its electron geometry is tetrahedral, according to the VSEPR chart and it undergoes [tex]sp^{3}[/tex] hybridization.

Reasons for incorrect options:

b. None of these: As pyramidal is one of the options given in the question. So, none of these is incorrect.

c. Octahedral: Electron geometry takes into account both bond pairs and lone pairs of electrons, whereas molecular geometry solely takes into account electrons' bonds when determining the structure of any molecule. As NCl3 has three bound pairs and one unpaired pair. Therefore, NCl3's electron geometry is tetrahedral while its molecular geometry is trigonal pyramidal, as seen by the VSEPR chart. Hence, octahedral is an incorrect option.

d. trigonal planar: If a molecule has three atoms or groups bound to a central atom and no lone electron pairs, it is said to be trigonal planar. But here in NCl3, it has three atoms and one lone electron pair. So, trigonal planar is not the correct option for NCl3.

e. bent: The lone pair on nitrogen generates repulsion between bond pairs and the lone pair, which causes the bond angle of NCl3 to slightly decreasing, making it 107.1°. Because of the lone pair on the nitrogen, which causes electrons to repel one another and bent the structure overall, NCl3 has a slight polarity. This permanent dipole moment is caused by the unequal charge distribution within the structure. But trigonal pyramidal is best to describe the molecular structure of NCl3. Hence is an incorrect option.

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PLS HELP!
1. Explain why your solutions have a purple color after the iron reagent is added. Yes, the answer is because it is absorbing the other colors. What is absorbing the other colors?
2. Explain why the spectrophotometer is ‘blanked’ with the iron reagent. Why couldn’t deionized water be used?

Answers

Question 1

Fe(III) forms a chelate complex with salicylic acid which has purple color. therefore, when a solution is made either with salicylic acid or with aspirin having trae amount of salicylic acid in it, we see color formation in solution due to the resulting complex formed.

Question 2

The Fe(III) itself absorbs some light and gives an absorbance value for the solution. Therefore, it is necessary to blank the spectrophotometer with a Fe(III) solution prior to measurement of test solutions.

Greenhouse gases act to __________ temperatures by __________ thermal infrared radiation. Group of answer choices increase; reflecting decrease; absorbing and releasing increase; absorbing and releasing decrease; blocking

Answers

Greenhouse gases act to increase temperatures by absorbing thermal infrared radiation.

We have already learned that Earth's atmosphere is composed often of nitrogen and oxygen. Those gases are transparent to incoming solar radiation. they may be also transparent to outgoing infrared radiation, which means that they do not take in or emit sun or infrared radiation.

The multiplied quantities of greenhouse gases human sports are adding to the environment have dissatisfied the balance that has been in location for the reason that ceases of the closing ice age, including greater greenhouse gases decreases the amount of infrared radiation energy leaving the atmosphere.

Greenhouse gases inside the ecosystem time and again absorb and re-radiate infrared radiation (warmth). strength radiated from Earth's surface as warmth, or infrared radiation is absorbed and re-radiated by using greenhouse gases, impeding the loss of warmth from our surroundings to area.

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What does the octet rule state about each atom in a chemical compounds outer most energy level?
A. The molecule contains at least eight electrons.
B. The outer most occupied energy level has an octet of electrons.
C. All atoms have eight electrons.
D. None of the above.

Which of the following are true about molecular compounds?
A. A chemical compound whose simplest units are neutrons.
B. A chemical compound whose simplest units are protons.
C. A chemical compound whose simplest units are molecules.
D. None of the above.

Hydrogen bonding is a result of a weak attraction between which of the following?
A. A hydrogen atom and the unshared pair of electrons of a nearby molecule.
B. A hydrogen atom and another hydrogen atom.
C. A hydrogen molecule and hydrogen molecule.
D. None of the above.

Answers

Answer:

B. The outer most occupied energy level has an octet of electrons.

D. None of the above.

C. A hydrogen molecule and hydrogen molecule.

1) Sodium chloride undergoes an electrolysis reaction producing two new substances. One is a metal and the other is a gaseous element.


a) Create a word equation

b) Create a skeleton equation

c) Balance each equation

Answers

Metallic sodium and chlorine gas are produced by the electrolysis of molten sodium chloride.

What is a word equation?

A word equation represents a chemical reaction using the names of the substances involved.

a) Word equation:

Sodium chloride + electrolysis →  Sodium hydroxide + Hydrogen gas, Chlorine gas

b) The following reactions take place during the electrolysis of brine solution :

NaCl =[tex]Na^+ +Cl^-[/tex]

[tex]H_2O[/tex] =[tex]H^+ +OH^-[/tex]

Now there are two cations and two anions which get discharged in the following way :

At cathode : [tex]2H^+ +2e^-[/tex] = [tex]H_2[/tex]

At anode: [tex]2Cl^- - 2e-[/tex]=[tex]Cl_2[/tex]

The remaining ions

[tex]Na^+ +OH-[/tex] = NaOH

That's why we get [tex]H_2[/tex], [tex]Cl_2[/tex] and NaOH.

c) Balance each equation is:

2NaCl (l)  →   2Na(s) + [tex]Cl_2[/tex](g)

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The activation energy of a certain reaction is 45.5 kJ/mol . At 21 ∘C , the rate constant is 0.0110s−1 . At what temperature in degrees Celsius would this reaction go twice as fast?

Answers

The temperature in degrees Celsius that the reaction will go twice as fast is  32.4 ⁰C.

Temperature when the reaction rate is twice faster

ln(k₂/k₁) = E/R(1/T₁ - 1/T₂)

where;

T₁ is initial temperature = 21 ⁰C = 294 Kk₁ is initial ratek₂ is final rateT₂ is final temperatureE is activation energyR ideal gas constant

when rate is twice faster, k₂ = 2k₁ = 2(0.011) s⁻¹ = 0.022 s⁻¹

ln(0.022/0.011) = (45,500/8.31)(1/294 - 1/T₂)

0.693 = 5475.33(1/294 - 1/T₂)

1.2657 x 10⁻⁴ = 1/294 - 1/T₂

1/T₂ = 1/294 - 1.2657 x 10⁻⁴

1/T₂ = 3.275 x 10⁻³

T₂ = 305.4 K = 32.4 ⁰C

Thus, the temperature in degrees Celsius that the reaction will go twice as fast is  32.4 ⁰C.

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What is the pH of a solution with a [H3O+] concentration of 3.4 x 10-¹¹ M?

Answers

The pH of the solution will be 10.47.

what is pH?

The pH of a solution is mathematically given as:

 pH = - log [[tex]H^+[/tex]] of -log [[tex]H_3O^+[/tex]]

Thus, in this case, with  [[tex]H_3O^+[/tex]]  of 3.4 x 10-¹¹ M:

pH = -log 3.4 x [tex]10^-^1^1[/tex] = 10.47

Thus, the pH of the solution will be 10.47.

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The lowest concentration that can officially reported for any constituent in drinking water is known as the

Answers

What is the legal limit?

The lowest concentration that can officially be reported for any constituent in drinking water is known as the "Legal Limit".

Contamination of water:

The level that safeguards human health and that water systems can attain with the finest technology is reflected in the regulatory limit for a contaminant.

How does it occur:

Plumbing components are the main way that lead and copper enters the drinking water. The health effects of lead and copper exposure can range from brain damage to stomach discomfort.Nitrogen, bleach, salts, pesticides, metals, bacterial toxins, and human or animal medications are examples of chemical pollutants. Organisms in the water are biological pollutants. Other names for them include microorganisms and microbiological pollutants.

In order to control corrosion, the system must take a variety of additional measures if lead concentrations reach an action threshold of 15 ppb or copper concentrations exceed an action level of 1.3 ppm in more than 10% of measured customer taps.

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I
4. A 1320 g block of lead initially at 35.0°C absorbs 3044 J of heat. What is the final temperature of the
lead? (The specific heat of lead is 0.16 J/g °C)

Answers

Answer:

49.41° C

Explanation:

DeltaQ = m c T

  3044  = 1320  *  .16   *  T         where T is the temperature change

     T = 14.41

35 + 14.41 =  49.41 C

0.916 g of iron is heated in air. The resulting procuct weighs 1.178 g. What is the formula of the compound

Answers

The formula of the metal oxide is FeO.

When a metal is burned in the air or oxygen the product formed is metal oxide. This is called the combustion reaction of metals.

Calculations:

It is given that the weight of iron (Fe) is 0.916 g. After the reaction, it forms iron oxide that has the weight 1.178 g. The weight of the metal before and after the reaction must have remained same, only the addition of oxygen has taken place.

The mass of oxygen is calculated as:

Mass of oxygen = 1.178 g - 0.916 g

= 0.262 g

The molar mass of oxygen is 16.00 g/mol. The number of moles of oxygen is calculated as:

Moles of O = 0.262 g/16.00 g/mol

= 0.0164 mol

The molar mass of Fe is 55.845 g/mol. The number of moles of Fe is calculated as:

Moles of Fe = 0.916 g/55.845 g/mol

= 0.0164 mol

The number of moles of Fe and O are equal. Hence, the molar ratio between Fe and O is 1:1. Therefore, the formula of the iron oxide is FeO.

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How do fission nuclear reactions differ from fusion nuclear reactions?


1*Fission reactions involve the conversion of matter into energy, but fusion reactions do not.

2*Fusion reactions involve the conversion of matter into energy, but fission reactions do not.

3*Fission reactions are used to generate electricity for consumers, but fusion reactions are not.

4*Fusion reactions are used to generate electricity for consumers, but fission reactions are not.

Answers

Fission nuclear reactions differ from fusion nuclear reactions because fission reactions involve the conversion of matter into energy (option 1).

What are nuclear fission and fusion?

Nuclear fission is a nuclear reaction in which a large nucleus splits into smaller ones with the simultaneous release of energy.

On the other hand, nuclear fusion is the combining of the nuclei of small atoms to form the nuclei of larger ones, with a resulting release of large quantities of energy.

Therefore, fission nuclear reactions differ from fusion nuclear reactions because fission reactions involve the conversion of matter into energy.

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To illustrate the arrangements of particles in a liquid , a teacher instructed 20 students

Answers

Answer:

instructed 20 students to do what

Explanation:

Indicate the total number of
(a) p electrons in n (z=7)
(b) s electrons in si (z=14)
(c) 3d electrons in s (z=16)

Answers

The total number of :

(a) p electrons in n (z=7) is 3

(b) s electrons in si (z=14) is 6

(c) 3d electrons in s (z=16) is 0

Electronic configuration:

The distribution of electrons in an element's atomic orbitals is described by the element's electron configuration. Atomic electron configurations adhere to a standard nomenclature in which all atomic subshells that contain electrons are arranged in a sequence with the number of electrons they each hold expressed in superscript.

The electronic configuration of z=7 (nitrogen) is 1s²2s²2p³

Total number of p electrons = 3

The electronic configuration of z=14 (silicon) is 1s²2s²2p⁶3s²3p²

Total number of s electrons = 2+2+2=6

The electronic configuration of z=16 (sulphur) is 1s²2s²2p⁶3s²3p⁴

Total number of 3d electrons = 0

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Answer:

3, 6, 0

Explanation:

What coefficients can be used to balance the following equation
k2co3 + Feci3 -> mic + fe2 (co3)3
2,2,4,1
3,2,6,1
1,1,2,1
3,3,6,1

Answers

The coefficient that can be used to balanced the given equation are 3, 2, 6, 1

What is a chemical equation?

Chemical equations are representations of chemical reactions using symbols and formula of the reactants and products.

The reactants are located on the left side while the products are located on the right side.

Reactants —> Products

The balancing of chemical equations follows the law of conservation of matter which states that matter can neither be created nor destroyed during a chemical reaction but can be transferred from one form to another.

How to balance the equation

K₂CO₃ + FeCl₃ -> KCl + Fe₂(CO₃)₃

There are 3 atoms of C on the right side and 1 on the left side. It can be balanced by writing 3 before K₂CO₃ as shown below:

3K₂CO₃ + FeCl₃ -> KCl + Fe₂(CO₃)₃

There are 6 atoms of K on the left side and 1 on the right side. it can be balanced by writing 6 before KCl as shown below:

3K₂CO₃ + FeCl₃ -> 6KCl + Fe₂(CO₃)₃

There are 6 atoms of Cl on the right side and 3 on the left. It can be balanced by writing 2 before FeCl₃ as shown below:

3K₂CO₃ + 2FeCl₃ -> 6KCl + Fe₂(CO₃)₃

Now the equation is balanced.

Thus, the coefficients are; 3, 2, 6, 1

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The electron configurations of some elements are given. based on the electron configurations, which elements can likely form ions with multiple charges?

Answers

Correct option:

The elements form ions with multiple charges is given by option B and D, i.e., Iron and Cobalt

The electronic configurations of elements(assumed):

[tex]A. \,Zinc\,-[Ar]\,3d^{10}4s^{2}\\\\B.\,Iron\,-[Ar]3d^64s^2\\\\C.\, Sodium\, [Ne]3s^1\\\\D.\,Cobalt\,[Ar]3d^74s^2\\\\E.\,Silver\,[Kr]4d^{10}5s^1[/tex]

These electronic configurations are based many factors-

1. (n+l) energy rule which states higher the value of (n+l), higher will be the energy of the orbital.

2. Fully filled and half filled orbitals are more stable than partially filled orbitals.

Now,

Elements of d-block have multiple oxidation states. Zinc has fully filled d-orbitals. It is not considered as d-block metal as it has only 1 oxidation state, i.e, +2.

Sodium exists only in +1 oxidation state.

Also Silver exists in +1 oxidation state.

So, the correct answer is Iron and Cobalt which can form ions with multiple charges.

Correct options are B and D.

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What are the 3 components of an expressway that allows car to enter onto the road?.

Answers

The three components of an expressway entrance are the Entrance ramp, acceleration lane, and merging area.

what is an expressway?

An expressway is a road that is specifically designed for high-speed traffic. These roads often have few crossings, few places of access or departure, and a divider between lanes for opposing-direction traffic.

It was mainly designed to make it easier for traffic to move at high speeds and in huge volumes.

Freeways, parkways, and turnpikes are examples of expressways. A highway is a primary route, but an expressway is a multilane highway.

Its principal objective was to facilitate the movement of heavy, fast-moving vehicles.

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The flotation process used in metallurgy involves Multiple Choice the roasting of sulfides. separation of gangue from ore. electrolytic reduction. chemical reduction of a metal. zone refining.

Answers

The flotation process used in metallurgy involves the separation of gangue from ore.

How does the flotation process work?

The various wettability qualities of a material's surface are the foundation of flotation operations. The basic principles of flotation are quite similar to those of a sink and float process, where the materials' relative densities to the medium in which they are deposited determine the basis of the separation.

What is the process of separating minerals from gangue known as?

Mineral processing, mineral dressing, or ore dressing are all terms for the process of separating minerals from gangue. It is an important and frequently necessary part of mining. Depending on the type of minerals used, the process may be difficult.

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