Which would make the best primary material for a new coin: a metal, nonmetal, metalloid? Explain please! I’ll give Brianliest answer!

Answers

Answer 1
Hey there!

Metals
Nonmetals- lack appropriate physical properties
Metalloids- have at least one poor property (brittle, not conductive)
Answer 2

Answer:

best primary material for a new coin: a metal,

Explanation:

As metal has the capacity to be molded and melted to a solid object to take the shape of a new coin and from the rounded shape as compared to the non- metal the material must be of a high-grade quality or otherwise it cannot withstand the pressure and durability for making the new coin. While a metalloid is a type of chemical element which is a mix of metal and a non-metal as boron, silicon, germanium, arsenic and does not show the best properties for the formation into a new coin. These have various elements and mineral properties involved in their formation.

Related Questions

Heat is so closely related to _____, the same units are used to measure both.

Answers

Heat is closely related to temperature, the same units are used to measure both. I hope this answers your inquiry, feel free to ask more.

Answer:

I am pretty sure temperature is wrong. It is actually work.

Explanation:

Scientists use the term joule(s) for heat. Temperature is measured in celcius, kelvin, fahrenheit. Work also uses the same term for measuring; joules. I am pretty sure the right answer is actually work, even though temperature sounds more correct. I learned this in science so I think I am right.

When a sample of atoms is heated and releases light of certain wavelengths, it is called what?

Answers

The answer is emission spectrum. It is the range of frequencies of electromagnetic radiation produced because of an atom or molecule generating a transition from a high energy state to a lower energy state. The photon energy of the produced photon is equivalent to the energy change between the two states. There are many conceivable electron changes for each atom, and each change has a precise energy difference. 

write out the electron configurations for (a) potassium and (b) cobalt. how many unpaired electrons does each possess?

Answers

Cobalt has seven electrons in the d sublevel (count how many spaces over it is.) There are 5 orbitals in the d sublevel so the first 5 electrons each take a different orbital (Aufbau Principle.) Each orbital now has one unpaired electron. The last two pair with two of the 5 leaving 3 unpaired electrons.

When opposite poles of two magnets are brought together, the poles

Answers

They will attract each other. Similar to the saying opposites attract. 

Identify what a bomb calorimeter measures. identify what a bomb calorimeter measures. measures δh for reduction solutions measures δe for combustion reactions measures δh for aqueous solutions measures δt for aqueous solutions measures δe for oxidation reactions

Answers

A bomb calorimeter is a device which is used to determine the change in enthalpy by measuring the change in temperature given the mass and heat capacity of the overall system by using the formula:

δh = m C (T2 – T1)

This is done by combusting the material in oxygen.

 

Hence the answer is:

measures δe for combustion reactions

A bomb calorimeter measures ΔE for combustion reactions. So correct option is B.

B) measures ΔE for combustion reactions.

A bomb calorimeter is a device used to measure the heat released or absorbed during a combustion reaction. It is a sealed container that is filled with oxygen and the reactants. The reaction is ignited, and the heat released is measured by the rise in temperature of the water surrounding the bomb.

The heat released in a combustion reaction is equal to the change in energy (ΔE) of the reaction. This is because the energy released is used to break the bonds in the reactants and form the bonds in the products. The heat released can be used to calculate the enthalpy change (ΔH) of the reaction, but only if the reaction is carried out at constant pressure.

Bomb calorimeters are used to measure the energy content of fuels, such as gasoline and coal. They are also used to measure the energy content of food.

The other options you have listed are incorrect. A bomb calorimeter does not measure ΔH for oxidation solutions, ΔH for hydrolysis solutions, ΔT for hydrolysis solutions, or ΔE for aqueous reactions.

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The complete question is:

Identify what a bomb calorimeter measures.

A) measures ΔH for reduction solutions

B) measures ΔE for combustion reactions

C) measures ΔH for aqueous solutions

D) measures ΔT for aqueous solutions

E) measures ΔE for oxidation reactions

Use common factors to write 2 fractions equivalent to 6/42.
A) 4/16,2/21
B) 2/14,3/21
C) 2/14,4/16
D) 7/25,3/21

Answers

I believe the answer is B) :)

Answer:

The correct answer is option B.

Explanation:

[tex]\frac{6}{42}=\frac{1}{7}[/tex]

A) [tex]\frac{4}{16}=\frac{1}{4}\neq \frac{1}{7}[/tex]

[tex]\frac{2}{21}=\frac{2}{21}\neq \frac{1}{7}[/tex]

Both fraction are not equivalent to [tex]\frac{1}{7}[/tex].

B)[tex]\frac{2}{14}=\frac{1}{7}= \frac{1}{7}[/tex]

[tex]\frac{3}{21}=\frac{1}{7}= \frac{1}{7}[/tex]

Both fraction are equivalent to [tex]\frac{1}{7}[/tex].

C) [tex]\frac{2}{14}=\frac{1}{7}= \frac{1}{7}[/tex]

[tex]\frac{4}{16}=\frac{1}{4}\neq \frac{1}{7}[/tex]

Both fraction are not equivalent to [tex]\frac{1}{7}[/tex].

D)[tex]\frac{7}{25}=\frac{7}{25}\neq \frac{1}{7}[/tex]

[tex]\frac{3}{21}=\frac{1}{7}= \frac{1}{7}[/tex]

Both fraction are not equivalent to [tex]\frac{1}{7}[/tex].

The molar mass of HgO is 216.59 g/mol. The molar mass of O2 is 32.00 g/mol. How many moles of HgO are needed to produce 250.0 g of O2?

Answers

Answer:

15.63

Explanation:

C on edg :) just did the test

The molar mass of HgO is 216.59 g/mol. The molar mass of O2 is 32.00 g/mol. 15.63 moles HgO are needed to produce 250.0 g of Oxygen.

What is molar mass ?

The term molar mass is defined as a compound is the mass in grams of one mole of the compound. In a substance, the amount of entities present e.g., atoms, molecules, ions, is called as a mole. A mole of any substance is 6.022 × 10²³ molecules.

Given that;

Molar mass HgO = 216.59 g/mol

The molar mass of O2 = 32.00 g/mol

250.0 g of Oxygen

Required moles of HgO

The balanced chemical equation is as follows:

2HgO → 2Hg + O2

250g Oxygen (1 mole O2/32.00 g/mol O2)(2 moles HgO/1 mol O2)

= 15.63 moles HgO

Thus, The molar mass of HgO is 216.59 g/mol. The molar mass of O2 is 32.00 g/mol. 15.63 moles HgO are needed to produce 250.0 g of Oxygen.

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What natural method of separating mixtures happens in reservoirs over a long period of time?

Answers

It will cause an expolsion

After 252 days, a 12.0-g sample of the radioisotope scandium-46 contains only 1.5 g of the isotope. what is the half-life of scandium-46

Answers

The half life of a scandium-46 is 84 days. The scandium-46 is used in oil refining as a tracer to monitor the oil movement and it emits extremely high energetic gamma/beta radiation. So the half-life of the radioisotope scandium-46 is 84 days. The Scandium 46 created by neutron activation, is a synthetic isotope of Scandium.

The half-life of scandium-46 is determined by noting that after 252 days, the mass of the isotope reduces from 12.0 g to 1.5 g, which is 1/8 of the original mass, indicating that three half-lives have passed. Dividing the total time by 3 gives us a half-life of 84 days for scandium-46.

To determine the half-life of scandium-46, we use the fact that after a certain number of half-lives, the remaining mass of a radioactive substance is half of its initial mass after each half-life period. In the given problem, a 12.0-g sample of scandium-46 decays to 1.5 g after 252 days. This decay represents a reduction to 1/8 of the original mass, indicating that three half-lives have passed (since 12.0 / 2 / 2 / 2 = 1.5).

Initial mass of scandium-46: 12.0 gFinal mass of scandium-46 after 252 days: 1.5 gMass reduction to 1/8 indicates 3 half-lives.

Since 3 half-lives are equivalent to 252 days, we can find the length of a single half-life by dividing the total time by 3:

252 days ÷ 3 = 84 days

Therefore, the half-life of scandium-46 is 84 days.

Why was nutmeg also called the spice of madness

Answers

It was called the “spice of madness” because it had an hallucinogenic property.

Nutmeg was called the 'spice of madness' because of the historical frenzy and extreme control over its trade by European colonists. The Dutch, in particular, went to great lengths to maintain their monopoly, going as far as employing the death penalty for unauthorized trade. Moreover, the term 'madness' could also metaphorically refer to historical instances of intoxication from nutmeg in large doses.

Nutmeg has been called the 'spice of madness' due to the history of its trade, which involved extreme measures by European colonists to control its supply and ensure monopoly profits. The search for a sea route to the Spice Islands, driven by the loss of Constantinople and the fall of the Byzantine Empire in 1453, was motivated by the high demand for spices like nutmeg. European powers, particularly the Dutch, took control of the nutmeg-producing islands and established a monopoly, punishing anyone who dared grow or sell the spice without permission with the death penalty. This ferocious control and the lengths that Europeans went to for these spices, including the destruction of nutmeg trees on outlying islands, reflect the 'madness' associated with the lucrative spice.

In addition to its economic implications, nutmeg has been involved in various historical anecdotes of madness and hallucinatory episodes, sometimes similarly to how ergot poisoning was suspected in other historical outbreaks of convulsions and hallucinations. However, it is crucial to distinguish between the metaphorical 'madness' driven by the obsessive and often ruthless European pursuit of the spice trade and any actual psychoactive effects of nutmeg, which, in very large doses, can indeed cause symptoms such as delirium or hallucinations.

0.403 L is equal to

a. 4.03 mL

b. 40.3mL

c. 403 mL

d. 4,030 mL

Answers

.403 liters is equivalent to 403 milliliters. 

What are the final or new substances (molecule) in a chemical equation called?

Answers

final or new substances in a chemical equation will be called PRODUCT!. hence the substances itself are reactants. hope it helps a bit.

What state must a substance be in order to analyze it using uv vis spectroscopy?

Answers

Liquid state must be the state of the substance in order to be analyzed by using uv-vis spectroscopy although gas phase measurements can be made using long path gas-tight cells. Absorption measures transitions from the ground state to the excited state.

plants that can live in water soaked soil are able to survive in the what ecosystem?

Answers

Plants that live in water soaked soil are able to thrive in an aquatic habitat or ecosystem. Some plants like the Amazon lily, Arrow head, and Marsh marigold adapt and thrive better in an aquatic environment. They often have one or two defining factors that makes terrestrial habitation almost impossible like they are "moisture-hungry" Some of these plants have their roots, sap, emersed in the water.

What chemical change occurred in the following reaction?Mg2+(aq)+2OH−(aq)⟶ Mg(OH)2(s)

Answers

A precipitate will form.

Answer: In this reaction, a precipitate is being formed.

Explanation:

A chemical change can be determined by the following indicators:

A characteristic odorColor changeFormation of bubblesFormation of precipitateEvolution of gas

When magnesium ions and hydroxide ions react in aqueous state, it leads to the formation of a white colored solid of magnesium hydroxide.

In the above reaction, a precipitate is being formed and hence the reaction is considered as a precipitation reaction.

[tex]Mg^{2+}(aq.)+2OH^-(aq.)\rightarrow Mg(OH)_2(s)[/tex]

Therefore, in this reaction, the chemical change is that the precipitate is getting formed.

how many moles of copper must react to form 0.854 mol ag

Answers

This problems involves the equation, please take a picture.

How many moles of copper must react to form 0.854 mol Ag? =0.427

Which one of the following chemical formulas represents an organic molecule

Answers

no options but CCI2F2 is the answer I believe 

Why can a liquid take the shape of the bottom of its container?
The particles of a liquid can flow around one another to new locations.
The particles of a liquid can break free from one another and spread out.
The particles of a liquid can vibrate within their fixed locations.

Answers

Answer: Option (a) is the correct answer.

Explanation:

In a liquid state, particles are held less tightly as compared to a solid state. So, they have some kinetic energy due to which they collide with each other.

As a result, particles of a liquid are able to slide past each other. Hence, they are able to acquire the shape and volume of a container in which they are poured.

Whereas when particles of a liquid can break free from one another and spread out then it means a substance is present in a gaseous state.

When the particles of a liquid can vibrate within their fixed locations then it means the substance is present in a solid state. And, they have definite shape and volume.

Thus, we can conclude that a liquid take the shape of the bottom of its container as the particles of a liquid can flow around one another to new locations.



How is data not actually obtained from the experiment represented in a line graph?
with a double line
with only dots
with a colored line
with a broken line

Answers

A colored line, as long as it is one single piece, not broken

Answer: Broken line

Explanation:

When you collect data in an experiment, you usually need a model where you can analyze the data.

One way of doing this is when in an experiment you expect a given behavior determined by a function (or data obtained by previous investigations), you can graph your obtained data over the graph of the function (or previous data), and in this way, you can see if your data fits in the model.

You usually will graph your obtained data with dots, so usually, we graph the other things with a broken line. This is because if you use a colored line and you do some kind of fitting with your data, the lines may "clash" into each other, making the graph hard to read.

When an oxygen atom is attached to a carbon atom the carbon atom becomes more?

Answers

When an oxygen atom is attached to a carbon atom, the carbon atom becomes reduced.

Answer: Reduced

Explanation: When an oxygen atom is attached to a carbon atom, the carbon atom becomes reduced.  

Which physical property is used to test the purity of a metal? A. hardness B. density C. viscosity D. malleability

Answers

your answer is B. Density

it's density, because if you have a low carbon steel, which is not so dense, it's very pure due to the lack carbon content which increases the density. high carbon steel, which is used for guns, knives, swords, tools... etc... has a-lot of carbon content, which increases its density, because carbon is just really compact particles of decomposed matter, such as coal.

Use the given figure to complete the statement below.



∠1 and ∠2 are angles. ANSWERS -Obtuse complementary adjacent vertical

Answers

adjacent is the correct answer

The angles ∠1 and ∠2 are adjacent to each other.

What is a Supplementary Angle ?

When the total of two angles equals 180 degrees, they are referred to as supplementary angles because they form a linear angle when combined. When the sum of two angles equals 90 degrees, they are considered to be complimentary angles, and they produce a right angle when they are combined.

In the given figure ∠1 and ∠2 are supplementary angle and adjacent to each other

Therefore in the options given  ∠1 and ∠2 are adjacent to each other.

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Why is the second ionization energy greater than the first ionization energy? (1 Point)

A. It is more difficult to remove a second electron from an atom
B. The size of atoms increases down a group
C. The size of anions decreases across the period
D. The nuclear attraction from protons in the nucleus decreases

Answers

the answer is A. It is more difficult to remove a second electron from an atom 
BUT i think this it 100% right 
those answer's are same 
it is more difficult to remove a second electron
Answer : Option A)It is more difficult to remove a second electron from an atom Explanation :

In case of the first ionization energy, the first electron is removed from a neutral atom; while in the second ionization energy the electron is removed from a positively charged ion which is found to be an electron deficient species.

Also when the second electron was removed the effective nuclear charge increases as compared to the first electron removal.

As a result there is a strong attraction between the nucleus and the outermost electron of the element. Therefore, the second ionization energy is observed to be higher than the first ionization energy of an element.

When comparing the activation energy between different exothermic reactions, as the activation energy decreases at a given temperature, the reaction rate increases because the _______?

Answers

The rate increases because there will be more molecules and atoms that contain the required amount of energy to surpass the activation threshold. As this ratio increases, the speed of the reaction will increase to match. As this ratio increases, the rate of collisions between molecules will increase as well, which will continue to speed the process.

Answer:

number of successful effective collisions is higher

How many grams of calcium must be combined with phosphorus to form one mole of the compound Ca3P2?

Answers

Final answer:

To form one mole of Ca3P2, 120.234 grams of calcium are required based on the atomic mass of calcium and the stoichiometry of the compound.

Explanation:

To determine how many grams of calcium must be combined with phosphorus to form one mole of the compound Ca3P2, we need to first understand that Ca3P2 consists of 3 calcium (Ca) atoms and 2 phosphorus (P) atoms. The atomic mass of calcium is 40.078 amu (atomic mass units), and that of phosphorus is 30.973761 amu.

The total mass of calcium in Ca3P2 can be calculated as follows:

(3 atoms) × (40.078 amu/atom) = 120.234 amu

To convert this atomic mass to grams, we use the molar mass concept where 1 mole of any substance equals its atomic or molecular mass in grams. Therefore, we need:

120.234 grams of calcium

To form one mole of Ca3P2, no information on the amount of phosphorus is needed since the question only asks for the amount of calcium required.

A 25-ml sample of river water was titrated with 0.0010 m k2cr2o7 and required 8.3 ml to reach the end point. what is the chemical oxygen demand, in milligrams of o2 per liter, of the sample?

Answers

First let us calculate the moles of K2Cr2O7 that was supplied.

moles K2Cr2O7 = 0.0010 M * 0.0083 L = 8.3x10^-6 mol

 

From the chemical formula itself, we see that there are 7 O for every mole of K2Cr2O7 or 3.5 O2. Therefore:

moles O2 = 8.3x10^-6 mol K2Cr2O7 * (3.5 mol O2 / 1 mol K2Cr2O7)

moles O2 = 2.905x10^-5 mol O2

 

Calculating for the mass of O2 in mg:

mass O2 = 2.905x10^-5 mol O2 * (32 g / mol) * (1000 mg / g)

mass O2 = 0.9296 mg

 

Therefore the chemical oxygen demand (COD) is:

COD = 0.9296 mg / (0.025 L)

COD = 37.184 mg/L

Final answer:

The Chemical Oxygen Demand (COD) for the given sample is calculated based on the amount of K2Cr2O7 used in the analysis. Considering this calculation, the COD of the analyzed sample comes around 63,744 mg/L or approximately 63.744 g/L.

Explanation:

The Chemical Oxygen Demand (COD) can be determined using the titrated volume of potassium dichromate (K2Cr2O7) required to reach the endpoint of the titration. In this case, the dichromate ion (Cr2O7) is reduced by any present organic matter in the water sample, while being oxidized to Cr, and each Cr2O7 ion utilizes 6 moles of oxygen in the process.

In this scenario, the volume of K2Cr2O7 used is 8.3 ml with a molarity of 0.0010 M. Hence, the total moles of oxygen used can be calculated as 8.3 ml x 0.0010 moles/ml x 6 moles O2/ mole Cr2O7 = 0.0498 moles O2.

As the question requires the answer in milligrams per liter (mg/L), we have to convert moles of O2 to mg and the sample volume to L. This gives us 0.0498 moles x 32 g/mole x1000 mg/g = 1593.6 mg O2 in the original 0.025 L sample. Thus, the Chemical Oxygen Demand (COD) of the sample is 1593.6 mg /0.025 L = 63,744 mg/L or approximately 63.744 g/L.

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What is the mass of silver metal produced from 6.35 g of copper when copper reacts with excess silver nitrate in a single replacement reaction? ____ g?

Answers

21.6 grams The balanced equation for the reaction is Cu + 2AgNO3 ==> 2Ag + Cu(NO3)2 So you can easily determine that for each mole of copper used, 2 moles of silver are produced. So let's lookup the atomic weights of copper and silver. Atomic weight copper = 63.546 Atomic weight silver = 107.8682 Moles copper = 6.35 g / 63.546 g/mol = 0.099927611 mol Since we'll produce 2 moles of silver per mole of copper used, we get 0.099927611 mol * 2 = 0.199855223 mol And to get the mass, just multiply by the atomic weight of silver. So 0.199855223 * 107.8682 = 21.55802316 g Finally, round to 3 significant figures, giving 21.6 g.
Final answer:

The mass of silver metal produced when 6.35 g of copper reacts with excess silver nitrate is calculated to be 21.548 grams following a stoichiometric conversion process.

Explanation:

To calculate the mass of silver metal produced from the given mass of copper, we need to reference the balanced chemical equation for the reaction between copper and silver nitrate:



Cu (s) + 2AgNO3 (aq) → Cu(NO3)2 (aq) + 2Ag (s)



From the equation, we see that each mole of copper produces two moles of silver. We can conduct a series of conversions to find the mass of silver using the molar masses of copper (63.546 g/mol) and silver (107.868 g/mol).



Firstly, calculate the number of moles of copper:



moles of Cu = mass of Cu / molar mass of Cu


= 6.35 g / 63.546 g/mol


= 0.0999 mol



Then, using the stoichiometry of the reaction, calculate the moles of silver produced:


moles of Ag = 2 × moles of Cu


= 2 × 0.0999 mol


= 0.1998 mol



Finally, convert the moles of silver to mass:


mass of Ag = moles of Ag × molar mass of Ag


= 0.1998 mol × 107.868 g/mol


= 21.548 g



The mass of silver metal produced from the reaction is therefore 21.548 grams.

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pure substance definition in chemistry?

Answers

 A pure substance is a sample of matter with both definite and constant composition with distinct chemical properties. To avoid confusion, in chemistry a pure substance is often referred to as a "chemical substance".
Final answer:

A pure substance in chemistry is a material with a constant composition and unique set of properties, classified as either an element or a compound. Elements contain only one type of atom, while compounds consist of chemically bonded atoms of different types. Pure substances can be identified by their distinct physical properties and purity tests like chromatography.

Explanation:

In chemistry, a pure substance refers to materials that have a constant composition and a unique set of properties across the entire sample. Pure substances are classified into two categories: elements and compounds. An element is a pure substance that consists of a single type of atom and cannot be chemically broken down into simpler substances. Gold, oxygen, and copper are well-known examples of elements. On the other hand, compounds are pure substances that consist of two or more atoms chemically bonded together, such as water (H2O) which is made from hydrogen and oxygen. Unlike mixtures, compounds have fixed proportions of atoms and can only be separated into their constituent elements by chemical reactions.

Pure substances have distinct and consistent physical properties like melting and boiling points. In contrast, mixtures have variable compositions and may exhibit a range of melting and boiling points. Testing for purity can involve methods like chromatography, where a pure substance yields a single component, while impure substances produce multiple components.

Would a calcium ion (ca2+) and a chloride ion attract or repel each other?

Answers

Ca2+ and Cl- are examples of ions. There are two types of ions: (1) the positively charged which are called cations and (2) negatively charged which are more commonly referred to as anions. 

The charges of the ions identify their reactions with other ions. Like charges do not react and repel each other while unlike charges will attract. Hence, in this item, the ions will attract each other. Further, the reaction between this two ions will form a formula unit, CaCl2. 

Final answer:

A calcium ion (Ca²+) and a chloride ion (Cl-) attract each other due to their opposite charges, forming an ionic bond in the compound calcium chloride (CaCl²).

Explanation:

A calcium ion (Ca²+) and a chloride ion (Cl−) will attract each other due to the opposite charges they carry. Calcium donates two electrons to achieve a stable electron configuration, becoming a Ca²+ ion. Each electron is then accepted by a chlorine atom, which becomes a Cl− ion. This transfer leads to the formation of the ionic compound calcium chloride (CaCl²), where the attraction between the positively charged calcium ions and the negatively charged chloride ions results in a strong electrostatic force that holds the compound together in a lattice structure. The ionic bonding between Ca²+ and Cl− is a result of the coulombic attraction described by Coulomb's law, which states that opposite charges attract each other.

Determine the molar mass of an unknown monoprotic acid to two decimal places if 20.01 ml of a 0.098 m naoh solution were used to titrate 0.215 g of the unknown acid

Answers

By using the following formula we can calculate the volume;
C₁V₁ = C₂V₂
C₁ = concentration of starting solution = 0.098m
V₁ = volume of starting solution that is needed for titration = 20.01ml
C₂ = Desired concentration of final solution = ?
V₂ = desired volume of final solution = 0.215g  = 0.215ml
Now putting the values in the formula;
0.098 x 20.01 = C₂ x 0.215
C₂ = 0.215 / 1.96098 = 0.109m = 0.11m
Thus, the answer is 0.11m.

The molar mass of the unknown monoprotic acid is calculated to be 109.63 g/mol by first determining the moles of NaOH used and then using the 1:1 mole ratio between the acid and base to find the moles and finally the molar mass of the acid.

In order to determine the molar mass of an unknown monoprotic acid using titration data, we need to first calculate the number of moles of base (NaOH) used in the titration. Given that 20.01 mL (or 0.02001 L) of a 0.098 M NaOH solution were used, we calculate the moles of NaOH:

moles of NaOH = volume (L)  imes molarity (M) = 0.02001 L  imes 0.098 M = 0.00196098 mol NaOH

Since the acid is monoprotic, it will donate one proton to the base, meaning the mole ratio of acid to base is 1:1. Thus, the moles of the unknown acid are also 0.00196098 mol.

To find the molar mass of the acid, we divide the mass of the acid by the moles:

Molar Mass = mass (g) / moles = 0.215 g / 0.00196098 mol = 109.63 g/mol (to two decimal places)

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