Convert 112°C to Kelvin.

Answers

Answer 1
112°C is 385.15 Kelvin
Answer 2

Answer:

112 °C = 385 K

Explanation:

The relation between Kelvin and Celsius degrees is

0°C = 273.15 K

To convert the temperature from Celsius to Kelvin we must add 273.15:

112 °C + 273.15 = 385.15 K

With the correct significant figures the answer would be 385 K


Related Questions

True or false? In a two-column proof, the right column states your reasons.

Answers

your answer will be TRUE 
True, left side is for theorems 

Which substances are acids? Check all that apply

LiOH      *HBr     *CH3COOH      NaCl       *H3PO4          Mg(OH)2

* are the correct answers, just took test

Answers

Final answer:

The substances listed as HBr, CH3COOH and H3PO4 are acids. Acids are substances that donate protons or H+ ions in solution while bases accept these ions. NaCl is a salt.

Explanation:

The substances listed as HBr (hydrobromic acid), CH3COOH (acetic acid), and H3PO4 (phosphoric acid) are all types of acid. These are known as acids because they donate protons, or hydrogen ions (H+) in solution, which is the defining property of an acid based on the Bronsted-Lowry definition of acids and bases. In contrast, substances like LiOH and Mg(OH)2 are bases because they accept H+ ions, and NaCl is a salt, which is typically the product of an acid-base neutralisation reaction.

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You have prepared a saturated solution of x at 20∘c using 37.0 g of water. how much more solute can be dissolved if the temperature is increased to 30∘c?

Answers

The solubility of the solute should be given here which should be as follows:

temperature at 20 degrees C : solubility 11.0 g X / 100 g H2O 
temperature at 30 degrees C : solubility 23.0 g X / 100 g H2O

To determine how much more of the solute can be added to the solution when the temperature is increased, we calculate the total mass of the solute that can be dissolved in the solution at 30 degrees Celsius.

Mass of X = 23.0 g X / 100 g H2O (37.0 g H2O) = 8.51 g X at T=30 degrees Celsius

Then, we calculate also the mass of X at 20 degrees Celsius

Mass of X = 11.0 g X / 100 g H2O ( 37.0 g H2O) = 4.07 g X

Mass of X that can be added after increasing the temperature = 8.51 - 4.07 = 4.44 g of X

To the prepared solution at  [tex]\rm 20^\circ C[/tex] the extra mass of x to be added to the solution at  [tex]\rm 30^\circ C[/tex] will be 4.44 g.

The complete question has given:

Solubility of x/100 g water at [tex]\rm 20^\circ C[/tex] = 11

Solubility of x/100 g water at [tex]\rm 30^\circ C[/tex] = 23

Now, since the saturated solution at [tex]\rm 20^\circ C[/tex]  will use 37 g of water. The mass of x in the saturated solution will be :

Mass of x =  [tex]\rm \dfrac{solubility\;of\;x\;\times\;mass\;of\;water}{100}[/tex]

Mass of x at [tex]\rm 20^\circ C[/tex] = [tex]\rm \dfrac{11\;\times\;37}{100}[/tex] g

Mass of x at [tex]\rm 20^\circ C[/tex]  = 4.07 g.

The mass of solute at [tex]\rm 30^\circ C[/tex] will be = [tex]\rm \dfrac{23\;\times\;37}{100}[/tex] g.

The mass of solute at[tex]\rm 30^\circ C[/tex]  = 8.51 g.

The extra mass of x to be added to the solution will be = 8.51 - 4.07 g.

The extra mass of x to be added to the solution will be 4.44 g.

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How long would it take for 1.50 mol of water at 100.0 ∘c to be converted completely into steam if heat were added at a constant rate of 19.0 j/s ?

Answers

To determine the time it takes to completely vaporize the given amount of water, we first determine the total heat that is being absorbed from the process. To do this, we need information on the latent heat of vaporization of water. This heat is being absorbed by the process of phase change without any change in the temperature of the system. For water, it is equal to 40.8 kJ / mol.

Total heat = 40.8 kJ / mol ( 1.50 mol ) = 61.2 kJ of heat is to be absorbed

Given the constant rate of 19.0 J/s supply of energy to the system, we determine the time as follows:

Time = 61.2 kJ ( 1000 J / 1 kJ ) / 19.0 J/s = 3221.05 s

[tex]\boxed{{\text{3213}}{\text{.15 s}}}[/tex] will be required to convert 1.50 mol of water completely into steam.

Further explanation:

Enthalpy of vaporization

It is the amount of energy that is required to convert a substance from its liquid state to a vapor or gaseous state. It is also known as the latent heat of vaporization or heat of evaporation. It is represented by [tex]\Delta {H_{{\text{vap}}}}[/tex].

The expression for the heat of vaporization is as follows:

[tex]{\text{q}} = {\text{n}}\Delta {H_{{\text{vap}}}}[/tex]                                                                …… (1)

Here,

q is the energy of the substance.

n is the number of moles of the substance.

[tex]\Delta {H_{{\text{vap}}}}[/tex] is the heat of vaporization.

Substitute 1.50 mol for n and 40.7 kJ/mol for [tex]\Delta {H_{{\text{vap}}}}[/tex] in equation (1).

 [tex]\begin{aligned}{\text{q}}&= \left( {1.50{\text{ mol}}} \right)\left( {\frac{{40.7{\text{ kJ}}}}{{1{\text{ mol}}}}} \right)\\&= 61.05{\text{ kJ}}\\\end{aligned}[/tex]

The amount of energy is to be converted into J. The conversion factor for this is,

 [tex]1{\text{ kJ}} = {\text{1}}{{\text{0}}^3}{\text{ J}}[/tex]

Therefore the amount of energy can be calculated as follows:

[tex]\begin{aligned}{\text{q}} &= \left( {61.05{\text{ kJ}}} \right)\left( {\frac{{{{10}^3}{\text{ J}}}}{{1{\text{ kJ}}}}} \right)\\&= {\text{61050 J}}\\\end{aligned}[/tex]

The time required for conversion of water into steam is calculated as follows:

[tex]\begin{aligned}{\text{Time required}}&= \left( {61050{\text{ J}}} \right)\left( {\frac{{1{\text{ s}}}}{{19{\text{ J}}}}} \right)\\&= 3213.15{\text{ s}}\\\end{aligned}[/tex]  

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Calculate the enthalpy change using Hess’s Law: https://brainly.com/question/11293201 Find the enthalpy of decomposition of 1 mole of MgO: https://brainly.com/question/2416245

Answer details:

Grade: Senior School

Subject: Chemistry

Chapter: Thermodynamics

Keywords: enthalpy of vaporization, q, n, 1.50 mol, water, steam, 3213.15 s, 61050 J, 61.05 kJ, 40.7 kJ/mol, liquid state, vapour state, substance, time, amount of energy.

Which is the correct formula for phosphorus pentachloride? PCl4 because a subscript of 4 indicates four Cl atoms PCl5 because a subscript of 5 indicates five Cl atoms P5Cl because a subscript of 5 indicates five P atoms P5Cl3 because a subscript of 5 indicates five P atoms

Answers

Answer: The correct formula for phosphorous pentachloride is [tex]PCl_5[/tex] because a subscript 5 indicates five chlorine (Cl) atoms.

Explanation: For the given molecule, phosphorous pentachloride, there are 2 atoms present which are phosphorous and chlorine atoms.

Number of phosphorous atoms = 1

Number of chlorine atoms = 5

So, the correct formula for phosphorous pentachloride will be [tex]PCl_5[/tex] because the subscript 5 represents the 5 chlorine atoms.

The correct formula for phosphorus pentachloride is PCl₅. Therefore, option B is correct.

In the compound, phosphorus has a valence of +5, meaning it can form up to five bonds. Each chlorine atom has a valence of -1, allowing it to form a single bond.

By combining one phosphorus atom with five chlorine atoms, each chlorine atom can share one electron with the phosphorus atom, resulting in the formation of five P-Cl bonds.

In the compound, "penta" indicates that there are five chloride (Cl) atoms bonded to the central phosphorus (P) atom. The subscript of 5 in PCl5 represents the number of Cl atoms bonded to each P atom.

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Which of the following aqueous solutions has the lowest freezing point?

Answers

Aqueous solutions exhibits properties that cannot be found in pure liquids called the colligative properties. These properties are being affected by the presence of solute particles in the solution. The properties are the boiling point elevation, freezing point depression, osmotic pressure elevation and vapor pressure lowering. These properties are directly related to the concentration of the solute. Thus, as the concentration increases, the value of the properties would as well increase. For the case of freezing point, the solution which would contain more solute particles or highest concentration would be the solution that will have the lowest freezing point.

At -70 ∘c and 5.2 atm, carbon dioxide is in which phase?

Answers

Converting, -70 degrees centigrade is equal to 9/5 x C+32= 158 degrees Fahrenheit and cO2 freezes at -108.5 degrees Fahrenheit so the CO2 will be in solid form at this temperature or what is commonly known as the form 'dry ice'.

A phase diagram is a temperature vs pressure plot from which the phase of a compound can be deduced under the given temperature and pressure conditions. The 3 equilibrium curves: Solid-Gas, Liquid-Gas and Solid-Liquid separate the compound into the three states of matter. The 3 states can however coexist at a unique point referred to as the triple point.

Based on the phase diagram for CO2 (which is readily available online), at -70 C and 5.5 atm, CO2 exist as a solid.


What did democritus and aristole think about the composition of matter

Answers

Both Aristotle and Democritus had conflicting opinion in regards to the consumption of matter. Aristotle opposed Democritus's theory instead he believed that since matter was made of very tiny particles A.K.A atoms. That they were ultimately water,fire, air and earth.

In a sample of solid ba(no3)2 the ratio of barium ions to nitrate ions is

Answers

In a sample of solid Ba(NO3)2 the ratio of barium ions to nitrate ions is would be one is to 2 or 1:2. Barium ion has a formal charge of positive two which means that it needs two ions which has a formal charge of negative one or 1 ion with the formal charge of negative two. However, for this case, it is bonded to a nitrate ion which has a formal charge of negative one. Therefore, it needs two nitrate ions so that for every 1 atom of barium ion, we need two ions of nitrate ions.
Final answer:

In Ba(NO3)2, the ratio of barium ions (Ba²⁺) to nitrate ions (NO₃⁻) is 1:2. This is because each formula unit of this compound contains one Ba²⁺ ion and two NO₃⁻ ions.

Explanation:

In a sample of solid Ba(NO3)2, the ratio of barium ions (Ba²⁺) to nitrate ions (NO₃⁻) is 1:2. This is because in each formula unit of Ba(NO3)2, there is one Ba²⁺ ion and two NO₃⁻ ions.

The subscript '2' after NO₃ in the formula indicates that two nitrate ions are associated with every one barium ion in this compound. Hence, for every single barium ion, there are two nitrate ions.

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Aerozine 50 is made of 50 percent Hydrazine and 50 percent UDMH, but since they both make up one liquid fuel, how do they combine them to make a homogenous mixture? They both have different densities and are not bonded together to form Aerozine 50, so how is the mixture made to be perfectly mixed?

Answers

Hydrazine and UDMH are both organic nonpolar liquids. Despite having different densities, their miscibility with each other allows the mixture of the two to homogenize. This means that the concentration of hydrazine and UDMH in all parts of the mixture are the same. This is also the reason why the mixture is called Aerozine 50 because the components are not distinguished but rather, stay well mixed in the system providing a stable set of properties unique to Aerozine 50.

What is the half-life of a 0.5 g sample of radioisotope that decayed to 0.125 g in 9.6 min?

Answers

25% remaining = 2 half-lives have passed,
9.6 / 2 = 4.8 minutes

The half-life of a radioisotope that decayed from 0.5 g to 0.125 g in 9.6 min is 4.8 minutes, calculated by recognizing that two half-lives have occurred within the given timeframe.

The question concerns the calculation of the half-life of a radioisotope based on the amount of material that remains after a certain period of time. The half-life is the time taken for half of the radioactive nuclei in a sample to decay. To determine the half-life, we can apply the formula for exponential decay:

N(t) = N(0) * (1/2)^(t/T)

Where:

N(t) is the remaining quantity of the substance after time t,

N(0) is the initial quantity of the substance,

t is the time that has passed,

T is the half-life of the substance.

In this case, we start with 0.5 g and end with 0.125 g after 9.6 minutes. Since two half-lives have passed to get from 0.5 g to 0.125 g (0.5 g -> 0.25 g -> 0.125 g), we can calculate the half-life as:

9.6 minutes / 2 = 4.8 minutes

Therefore, the half-life of the radioisotope is 4.8 minutes.

How many moles of co2 are produced when 5.60 mol of ethane are burned in an excess of oxygen?

Answers

2C₂H₆ + 7O₂ → 4CO₂ + 6H₂O

2 mol C₂H₆ - 4 mol CO₂
5.60 mol C₂H₆ - x

x=5.60*4/2=11.2 mol

11.2 moles of co2 are produced when 5.60 mole of ethane are burned in an excess of oxygen.

What do you mean by moles?

In chemistry, a standard scientific unit for measuring large quantities of very small entities such as atoms, molecules, or other specified particles.

The chemical reaction is given by :

2C₂H₆ + 7O₂ → 4CO₂ + 6H₂O

2 mole C₂H₆ - 4 mole CO₂

5.60 mole C₂H₆ - x

x=5.60*4/2=11.2 mole

Thus, 11.2 moles of co2 are produced when 5.60 mole of ethane are burned in an excess of oxygen.

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Select all that apply. choose the two correct statements below. the elements of the halogen family are very reactive because: they readily lose one valence electron. they require only one electron to complete their outer shell. they have a high electronegativity. they form unstable gas molecules.

Answers

Halogens are a group of elements consisting of Fluorine, Chlorine, Bromine, Iodine and Astatine. In their ionic form, they have a superscript of -1, for example, chloride ion is Cl-1. These means that they readily accept one electron in order to achieve the Octet rule. The Octet rule states that each atom must contain 8 electrons in their valence shell for it to be stable. The most stable set of elements are the noble gases. Because they already fulfill the Octet rule, they no longer take part in reactions. Halogens are also very electronegative, meaning, they attract more electrons toward them. This is also a consequence of the Octet rule.

From the choices, the answers would be:
they require only one electron to complete their outer shell
they have a high electronegativity

Answer:

require only one electron to complete their outer shell

have a high electronegativity

Explanation:

What is a mixture?

A. Two compounds that chemically react
B. Compounds that cannot be separated from each other
C. Substances that are combined but do not chemically react
D. One substance that dissolves another substance

Answers

Mixture is obtained when several different substances are mixed together. The mixture can be separated back into its original substances and this is what differs them from compounds. From the given option, the following defines the mixtures: 
C. Substances that are combined but do not chemically react.

A Change in matter that can be seen through direct observation are called?

Answers

It is physical properties.

Aluminum metal reacts with iron(ii) sulfide to form aluminum sulfide and iron metal. what is the stoichiometric coefficient for aluminum when the chemical equation is balanced using the lowest, whole-number stoichiometric coefficients?

Answers

2Al + 3FeS → Al₂S₃ + 3Fe
k=2
(It is a part of some metallurgical process. Reaction is improbable.)

Answer: coefficient for aluminum is 2.

Explanation:

According to the law of conservation of mass, mass can neither be created nor be destroyed. Thus the mass of products has to be equal to the mass of reactants. The number of atoms of each element has to be same on reactant and product side. Thus chemical equations are balanced.

The skeletal equation is:

[tex]Al+FeS\rightarrow Al_2S_3+Fe[/tex]

The balanced equation for single displacement reaction is:

[tex]2Al+3FeS\rightarrow Al_2S_3+3Fe[/tex]

Thus the coefficient for aluminum when the chemical equation is balanced is 2.

What information does the activity series of metals give?

Answers

It compares how reactive the metals would be

There are various kind of elements that are present in periodic table. Some elements are metals, some are non metals, some are metalloids. Therefore, the activity series of metals compares the strength of reactivity of metals.

What is metal?

Metals are those elements which is hard, conduct electricity, ductile, lustrous and malleable.

Lets take property

1.Since metals have free electrons that's why they can conduct electricity

2. Since atoms in metals are very closely packed in a definite crystal solid. It is not brittle that is it can not be broken down easily.

3. It does not react with water.

4.It is denser than water hence it sink in water.

The activity series of metals compares the strength of reactivity of metals.

Therefore, the activity series of metals compares the strength of reactivity of metals.

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How do you use the periodic table to recall the ionic charge of an alkali metal, an alkaline earth metal,or aluminum

Answers

Final answer:

The periodic table can be used to recall the ionic charge of alkali metals, alkaline earth metals, and aluminum by understanding the trends in the table.

Explanation:

You can use the periodic table to recall the ionic charge of an alkali metal, alkaline earth metal, or aluminum by understanding the trends in the periodic table. The alkali metals (group 1) have a 1+ charge, alkaline earth metals (group 2) have a 2+ charge, and aluminum (group 13) has a 3+ charge. The ionic charges are determined by the number of electrons lost by the element.

For example, sodium, an alkali metal, has an atomic number of 11. It loses one electron and forms a cation with a 1+ charge. Calcium, an alkaline earth metal, has an atomic number of 20. It loses two electrons and forms a cation with a 2+ charge. Aluminum, in group 13, has an atomic number of 13. It loses three electrons and forms a cation with a 3+ charge.

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The process by which a semipermeable membrane allows water molecules, small molecules, and ions to pass through while retaining large particles

Answers

The process is know as diffusion in which substances move from higher concentration to lower concentration

Two compound samples are composed of the same elements, but in different proportions. what can you conclude about the 2 samples?

Answers

Two compound samples are composed of the same elements but in different proportion, it means the two samples are two different compounds.

Because there are many compound which consist of same elements. for example water and hydrogen peroxide are two different compounds but these compounds consist if same elements, hydrogen and oxygen;

H₂O consist of hydrogen and oxygen and it is water
H₂O₂ also consist of hydrogen and oxygen but it is hydrogen peroxide
So, both are different compounds

Final answer:

Two different compound samples consisting of the same elements but in different proportions are different compounds. They exemplify the Law of Multiple Proportions, with the specific mass ratios indicating the identity of the compounds.

Explanation:

If two compound samples are composed of the same elements but in different proportions, we can conclude that these are different compounds. This observation is encompassed by the Law of Multiple Proportions which states that when two elements combine to form more than one compound, they do so in ratios of small whole numbers. For instance, carbon and oxygen can form carbon monoxide (CO) with a ratio of 1:1 and carbon dioxide (CO2) with a ratio of 1:2. Therefore, the different mass ratios indicate different compounds altogether, each with unique properties.

The example given in the question shows compound A with a carbon to oxygen mass ratio of approximately 1:1.33, and compound B with a ratio of approximately 1:2.66, suggesting that compound B contains twice as many oxygen atoms per carbon atom compared to compound A. This could indicate that compound A is carbon monoxide and compound B is carbon dioxide, illustrating the Law of Multiple Proportions.

if a car goes 30.0 miles per gallon of gasoline how many kilometers could it travel on 1 liter of gasoline

Answers

the answer is around 12 km

using your knowledge of colligative properties explain whether sodium chloride or calcium chloride would be a more effective substance to melt the ice on a slick sidewalk. I already know that it is Calcium chloride but I don't have the answer completely worked out. can someone help explain it please? thank you

Answers

Calcium chloride dissociates into more ions than sodium chloride.

Answer:

Calcium chloride

Explanation:

Colligative  property depends upon number of particles. The colligative property is independent of the nature of solute present in a solution.

More the number of particles larger the colligative property.

The following are colligative property

a) depression in freezing point

b) elevation in boiling point

c) relative lowering of vapor pressure

d) osmotic pressure

Thus if we wish to melt the we will take calcium chloride as it will give more number of ions per molecules as compared to sodium chloride.

Simple distillation is best used to separate two liquids that have boiling points that differ by

Answers

The boiling points need to differ by 50 degrees to enable their complete separation ie of two different liquids. The separation occurs by first evaporation of one of the liquids and then its condensation and collection. It is a physical process not a chemical one.
Final answer:

Simple distillation is most effective for separating two liquids when their boiling points differ by more than 100°C. For closer boiling points, fractional distillation is recommended.

Explanation:

Simple distillation is best used to separate two liquids that have boiling points that differ by more than 100°C. This method works well to purify mixtures by separating a liquid from non-volatile impurities or from components with significantly greater or lesser boiling points. When the difference in boiling points of the components is less than 100°C, simple distillation cannot achieve significant purification. In such cases, fractional distillation, which involves a fractionating column, is used to enhance purification.

For instance, the distillation of crude oil or the production of alcoholic spirits like brandy and whiskey are applications of distillation that exploit the differences in boiling points to separate mixtures into their components.

Describe the relationship between hydrogen ions (h+) and ph. how is ph related to a solution's acideic

Answers

the pH = -log of hydrogen ion concentration

The more acid a solution is the higher is its concentration of H+ ions and the lower is its pH. Acids have a pH lower that 7.

The pH range of acid is between 0-7 on pH scale while for base pH range is from 7-14. pH is a unitless quantity. The relationship between pH and hydrogen ions is pH=-log[H⁺].

What is pH?

pH is a measurement of amount of hydronium ion H₃O⁺ in a given sample. More the value of hydronium ion concentration, more will be the solution acidic. pH scale used to determine pH of a solution.

Mathematically the relation between hydrogen ion and pH is given as

pH=-log[concentration of hydrogen ion]

pH=-log[H⁺]

On subtracting pH from 14, we get pOH which measures the concentration of hydroxide ion in a given solution. pH depend on the temperature. At room temperature pH scale is between 0 to 14. pH of neutral solution is 7.

Therefore, the relationship  between pH and hydrogen ions is pH=-log[H⁺].

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A compound has a formula mass of 61.98 amu and is comprised of atoms of sodium and oxygen in a definite ratio. the name of the compound described here is

Answers

Amu is not an appropriate unit for this question you fools. "Formula" (molar) mass is in g/mol

Answer: The name of the compound sodium oxide.

Explanation: Sodium is Na and its atomic mass is 22.99 amu. Oxygen is O and its mass is 16.00 amu. Na is a first group metal with one valence electron where as oxygen is a non metal with six valence electrons. Na loses one electron to get its nearest noble gas configuration and oxygen accepts two electrons to get its nearest noble gas configuration. So, the charge for Na is +1 and the charge for O is -2.

For each oxygen atom, two atoms of sodium are required. Hence, formula of the compound is [tex]Na_2O[/tex] and its name is Sodium oxide.

Formula mass = [2(22.99)+16.00]amu

= (45.98 + 16.00)amu

= 61.98 amu

What is the difference between organic chemistry and inorganic chemistry ?


Thank you!

Answers

organic chemistry is the study of molecules that contain carbon, but in organic chemistry is the study of all compounds that do not contain carbon compounds

Why are numbers in chemistry expressed in scientific notation?

Answers

Numbers in chemistry are often expressed in scientific notation because the numbers involved are either too large or too small. Scientific notation is a system in writing or working with numbers that would make it much easier to deal with. For instance, you have 1200000000000000, by looking at the number it would be tedious to write this again an again. So, we would opt to writing it in its scientific notation which would be 1.2x10^15.

What action of the body would be disrupted if atmospheric pressure was innapropiate?

Answers

Balance. The fluid in your ears uses pressure to know what orientation your head is in.

In an open system, the vapor pressure is _____ the outside air pressure.
A. Higher
B. Lower
C. Equal
D. Below

Answers

The vapor pressure is EQUAL TO the outside air pressure.

Answer: Option (c) is the correct answer.

Explanation:

In an open system, the vapor pressure is equal the outside air pressure because there can be mass transfer or energy transfer from the atmosphere to the system as the system is open.

Whereas in a closed system there cannot be mass transfer or energy transfer from the system to the surrounding or vice versa.

Thus, we can conclude that option (c) is the correct answer.

The atomic number of nitrogen is 7. nitrogen-15 has a greater mass number than nitrogen-14 because the atomic nucleus of nitrogen-15 contains _____. 8 neutrons 15 protons 7 neutrons 8 protons

Answers

Answer: Option (a) is the correct answer.

Explanation:

Atomic number means the sum of total number of protons acquired by an atom.

So, when atomic number of nitrogen is 7 then it means there are 7 protons present.

Whereas atomic mass means the sum of total number of protons and neutrons present in an atom.

Therefore, nitrogen-15 is an isotope of nitrogen that will always have 7 protons when it is neutral in nature. Hence, in nitrogen-15 the number of protons and neutrons are calculated as follows.

                   Atomic mass = no. of protons + no. of neutrons

                             15 = 7 + no. of neutrons

                    no. of neutrons = 15 - 7

                                               = 8

Thus, we can conclude that the atomic nucleus of nitrogen-15 contains 8 neutrons.

Atomic number is the number of protons in an element. Mass number is the total number of protons and neutrons in an element. Thus, to get the number of neutrons in an element, one can subtract the atomic number of an element from the mass number.

Since Nitrogen has an atomic number of 7, the number of neutrons in nitrogen with a mass number of 14 is 14 - 7 = 7 neutrons

The number of neutrons in nitrogen with a mass number of 15 is 15 -7 = 8 neutrons

Thus, the answer to the question is 8 neutrons.

Note: Nitrogen-14 means nitrogen with a mass number of 14 while nitrogen-15 means nitrogen with a mass number of 15

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