Identify the species oxidized, the species reduced, the oxidizing agent and the reducing agent in the following electron-transfer reaction.

Mn(s) + Pb2+(aq) Mn2+(aq) + Pb(s)

Answers

Answer 1

A change in the substrate's oxidation state occurs during redox reactions. Oxidation is the process of losing electrons or increasing an element's oxidation state.

Gaining electrons or lowering the oxidation state of an element or its constituent atoms are both examples of reduction.

An oxidation-reduction (redox) reaction is a chemical process in which two compounds exchange electrons. Any chemical process in which a molecule, atom, or ion suffers a change in its oxidation number as a result of acquiring or losing an electron is known as an oxidation-reduction reaction.

An oxidizing agent is a substance that "accepts" or "receives" an electron from a reducing agent in a redox chemical process. Therefore, an oxidant is any chemical that oxidizes another substance.

An electron is "donated" to an electron acceptor by a chemical species known as a reducing agent. Chemicals that are often used as reducing agents include the Earth metals, formic acid, oxalic acid, and sulfite compounds.

Pb gets oxidized.

Manganese (Mn) gets reduced.

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Related Questions

What is ph of .530 M solution of carbonic acid that has acid dissociation of 4.4 x 10^-7

Answers

Answer

pH = 3.32

Explanation

Given

Acid dissociation of carbonic acid (Ka) = 4.4x10^-7

Concentration = 0.530 M

Solution

The carbonic acid dissociates into:

[tex]\begin{gathered} H_2CO_3\rightarrow\text{ H}^{+\text{ }}+\text{ HCO3}^- \\ \end{gathered}[/tex][tex]\begin{gathered} Ka\text{ = }\frac{[H^+][A^-]}{[HA]} \\ [H^+]\text{ = \lbrack A}^-] \\ Ka\text{ x \lbrack HA\rbrack= \lbrack H}^+]^2 \\ 4.4\text{ x 10}^{-7}\text{ x 0.530 = \lbrack H}^+]^2 \\ 2.332\text{ x 10}^{-7}\text{ = \lbrack H}^+]^2 \\ 4.816\text{ x 10}^{-4}\text{ = \lbrack H}^+] \\ \\ \end{gathered}[/tex]

Now we can calculate the pH

pH = -log[H+]

pH = -log[4.816x10^-4]

pH = 3.32

Convert 62.00nm/s to pm/ms

Answers

62.00 nanometres per second is equivalent to 62 picometre per milliseconds

How to convert picometers to nanometres?

Picometers is a SI unit of length equal to 10−¹² meters with a symbol pm while nanometres is another SI subunit of length equal to 10-⁹ metres with symbol nm.

The conversion factor of picometers and nanometres is as follows:

1 picometre = 0.001 nanometre

This means that 62 nanometre will be equal to 62000 picometres.

1 second = 1000 milliseconds

62000/1000 = 62 pm/ms.

Therefore, it can be said that 62.00nm/s is the same as 62 pm/ms based on the conversion factor above.

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when 0.56 grams of CuCl2 react with 0.64 grams of Kl, what is the limiting reactant in the production of iodide?

Answers

Answer:

[tex]KI[/tex]

Explanation:

Here, we want to get the limiting reactant

The limiting reactant is the reactant that produces less amount of the product

We start by writing the balanced equation of the reaction:

We have this as:

[tex]2CuCl_2\text{ + 4KI }\rightarrow\text{ Cu}_2I_2\text{ + I}_2\text{ + 4KCl}[/tex]

The iodide here is the copper (i) iodide

From the question, we have 0.56 g of copper (ii) chloride

We need to get the number of moles of it that reacted

We can get that by dividing the mass by the molar mass of copper (ii) chloride

The molar mass of copper (ii) chloride is 134.45 g

Thus, we have the number of moles as:

[tex]\frac{0.56}{134.45}\text{ = 0.004165 mol}[/tex]

From the equation of reaction, 2 moles of copper ii chloride produced 1 mole of the iodide

Thus, the number of moles of the iodide produced by the actual reacting mass would be:

[tex]\frac{0.004165}{2}\text{ = 0.0020825 mol}[/tex]

Now, let us get the number of moles produced by Potassium iodide

We can get this by dividing the mass by the molar mass of potassium iodide

The molar mass of potassium iodide is 166 g/mol

Thus, we have the number of moles as:

[tex]\frac{0.64}{166}\text{ = 0.00386}[/tex]

From the equation of reaction, 4 moles of KI produced 1 mole of the iodide

Thus:

[tex]\begin{gathered} 0.00386\text{ mol will produce:} \\ \frac{0.00386}{4}\text{ = 0.000965} \end{gathered}[/tex]

From what we can see, potassium iodide would give less mass of the copper (i) iodide

This makes potassium iodide the limiting reactant

(4.3) Congratulations, you've been hired by the Chemistry Department to prepare the chemicals
for G-Chem Lab. This week, 4.2 L of a 0.74 M HCl solution is needed. When you go to the
stockroom, you can only find a 4 L bottle of concentrated HCI solution which is 37% by mass HCI
and has a density of 1.1786 g/mL.
a. Calculate the molarity of HCI in the concentrated HCI solution. (Hint: Assume 1 L of
solution.)
b.
Calculate the volume (in mL) of the concentrated solution you'll need to dilute to prepare
the required solution for this week's lab.

Answers

Morality is the body of rules that enables individuals to coexist peacefully in groups. In order to act morally, people may have to sacrifice their own immediate interests in order to further society. It is what societies deem to be "acceptable" and "proper.

Explain molarity of HCI  in the concentrated HCI solution?

The standard by which society determines whether behaviour is appropriate and inappropriate is morality. Morality is demonstrated by the conviction that it is immoral to take something that is not theirs, even if no one would notice.

Hydrochloric acid is a colourless solution of hydrogen chloride (HCl) in water. Concentrated HCl is a particularly corrosive acid with several industrial uses. The pH levels of swimming pools are changed using this material, which is usually referred to as "muriatic acid" in this context, to make them safe to use and to disinfect the water.

Molarity is defined in terms of the volume of the solution, NOT the volume of water. Inaccurate = 5.0 The solution is humour.

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Relate reactivity to electron distance from nucleus/strength of all attraction to nucleus

Answers

Question: Relate reactivity to electron distance from nucleus/strength of all attraction to nucleus

In this instance, it is safe to think of the size of an atom with the electron and nucleus position.

• The larger atom ( more electons ) the more reactive. the larger the atom will also be further from the nucleus and therefore further from the positively charged nucleus.

• Therefore, in terms of attraction, it will be easier for the valence electrons to leave the atom and form ionic bond /interact with another atom to form covalent bond .

In conclusion, reactivity of an element is related to changes in the electronic structure which is strongly dependent upon the attraction of valence electrons to the nucleus.

Which atom (magnesium or chlorine) has a higher electronegativity?___________________________(you should also be prepared to answer the question if asked for lower electronegativity)5a. Explain why the atom has a higher electronegativity energy. Include the definition of electronegativity, the trend from the periodic table and the reason the trend exists based subatomic particle

Answers

Answer:

Chlorine has higher electronegativity

Explanations:What is electronegativity of an element?

This is the tendency of an element to attract electron to itself. According to the periodic table, the electronegativity of an element increases from the left to the right across the period and decreases top to bottom down the group.

This trend exists due to the electronic configuration of the elements. Chlorine element has 7 valence electron in its outer shell and as such will easily accept an electron to itself to attain its octet configuration compared to magnesium that looses his two valence electrons to other elements in order to attain octet configuration.

The tendency of chlorine atom to attract electron makes it have a higher electronegativity compared to magnesium.

The energy stored in the chemical bonds of a carbohydrate molecule isA. specific heat. B. Kinetic energy. C. potential energy. D. worked.

Answers

Answer

C. Potential energy

Explanation

A carbohydrate molecule has chemical bonds, Potential energy is available between chemical bonds.

How many grams of KClO3 are needed to produce 6.75 Liters of O2 gas measured at 1.3 atm pressure and 298 K?

Answers

Answer

29.3171 g KClO₃

Procedure

To solve this question consider the following chemical reaction:

2KClO₃→2KCl+3O₂

Then we will use the ideal gas formula to determine the number of moles present in 6.75 L of oxygen gas.

Data:

V=6.75 L

T= 298 °K

P= 1.3 atm

R= 0.08206 L⋅atm⋅°K⁻¹⋅mol⁻¹

Equation

PV=nRT

Solve for n to get the moles

[tex]n=\frac{PV}{RT}=\frac{1.3\text{ atm }6.75\text{ L mol }\degree\text{K}}{0.08206\text{ L.atm 298}\degree\text{K}}=0.3588\text{ mol O}_2[/tex]

Use the stoichiometry of the reaction to convert from moles of oxygen to moles of KClO₃.

[tex]0.3588\text{ mol O}_2\frac{2\text{ mol KClO}_3}{3\text{ mol O}_2}=0.2392\text{ mol KClO}_3[/tex]

Finally, convert from moles to grams

[tex]0.2392\text{ mol KClO}_3\frac{122.55\text{ g KClO}_3\text{ }}{1\text{ mol KClO}_3}=\text{ 29.3171 g KClO}_3[/tex]

What volume,expressed in liters,would 432.8 grams of fluorine occupy?

Answers

ANSWER

The volume of fluorine is 510.52L

STEP-BY-STEP EXPLANATION:

From the question provided, you were given the mass of fluorine to be 432.8 grams.

Given information

Mass of fluorine = 432.8 grams

To find the volume of Fluorine, we need to find the mole of fluorine from the mole formula

[tex]\text{Mole = }\frac{\text{ reacting mass}}{\text{ molar mass}}[/tex]

From the periodic table, the molar mass is 18.99 g/mol

The next thing is to substitute the data into the formula

[tex]\begin{gathered} \text{Mole = }\frac{\text{ 432.8}}{18.99} \\ \text{Mole = }22.79\text{ moles} \end{gathered}[/tex]

Since the mole of fluorine is 22.79 moles, then, we can now find the volume of fluorine.

At STP, 1 mole is equivalent to 22.4L

Let the volume of fluorine be x

[tex]\begin{gathered} 1\text{ mole }\rightarrow\text{ 22.4L} \\ 22.79\text{ moles }\rightarrow\text{ xL} \\ \text{Cross multiply} \\ 1\cdot\text{ x = 22.4 }\cdot\text{ 22.79} \\ x\text{ = 510.52L} \end{gathered}[/tex]

The volume of fluorine is 510.52L

PLEASE HELP ASAP.


What conditions are being experienced
by an observer in Florida when the moon
is at Position 2?

Answers

When the moon is at point 2, it will be covering Florida, which will cause some areas of the earth to be dark while others will be light.

Describe the earth:

Our home planet is Earth. According to scientists, the formation of Earth and its moon coincided with that of the entire solar system. The estimated age of that event is approximately 4.5 billion years ago. The solar system's fifth-largest planet is Earth. Its diameter is roughly 8,000 kilometers.

Why is the earth important?

We have life on our home planet, that also shields us from outer space. Our own planet, Earth, is a world unto itself. Earth, as third planet from the sun, is the only place in the entire cosmos where the existence of life has been established.

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Florida will be under the shadow of the moon at point 2, making some parts of the earth dark and others light.

What are the 4 position of earth?

A year is mainly divided into four seasons- winter, spring , summer and autumn. These seasons are experienced due to change in the position of earth around the sun

Earth is our home planet. According to scientists, the development of the Earth and its moon occurred simultaneously with that of the solar system as a whole. That incident occurred roughly 4.5 billion years ago, according to estimates. The fifth-largest planet in the solar system is Earth. It has a circumference of about 8,000 kilometers.

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- For one of the valence electrons in the Helium atom, do you think the pull on that electron would be greater than,
less than, or equal to the pull on the Hydrogen atom's valence electron? Use Coulomb's law to support your
answer.

Answers

The Hydrogen atom's valence electron Fluorine attracts electrons better than any other element.

The more electronegative atom pulls the bond electrons harder so the shared electrons spend more than half of the time on the more electronegative atom, giving it a partial negative charge. For example, in water O is more electronegative than H and thus has a partial negative charge.

The higher the ionization energy the stronger the attraction between the nucleus and the valence electrons requiring more energy to remove the valences. electronic. The further away the electron is from the nucleus the more likely it is to be ejected. In other words, ionization energy is a function of atomic radius. The larger the radius the smaller the amount of energy required to remove an electron from the outermost orbital.

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Water, table salt, and tin metal are all pure substances. Which of these pure substances are compounds

Answers

Answer:

water and salt are compounds, water is H2O and table salt is NaCl.

tin is just a metal, an element, not a compound.

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Cells can regulate different processes in two ways. They can turn on and off the genes that make enzymes, or they can Question 16 options: A) decrease the amount of energy needed to carry out the preferred process. B) increase the activation energy of a reaction. C) regulate the enzymes that are already made. D) increase the amount of energy needed to carry out the preferred process.

Answers

In the process of metabolic regulation, cells can turn on and off the genes that make enzymes, or they can regulate the enzymes that are already made; option C.

What is the mechanism of regulation of metabolic processes that cells employ?

Metabolic processes are the processes by which the cell carries out its activities.

There are types of metabolic activities that occur in the cells:

catabolism, and anabolism

Catabolism is the metabolic process in cells by which large molecules are broken down to release energy required by the body to carry out other cellular actities. An example of catabolism is glycolysis.

Anabolism - this is a metabolic process in cells where energy is used to produce large molecules from the small molecules present in the cells. An example of catabolism is protein synthesis from amino acids.

The cells need to regulate these two processes and this is known as metabolic regulation.

The cells regulate these processes at the gene level that produces the enzyme that catalyzes these processes or by regulating the activity of the enzymes.

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A radio station emits radiation at à wavelength of 3.10m. What is the station’s frequency in megahertz?

Answers

Answer: 96.7072445

Explanation: F = 1/T

When do an ice cube and warm soda reach thermal equilibrium?

Answers

When two objects are in thermal equilibrium they are said to have the same temperature. During the process of reaching thermal equilibrium, heat, which is a form of energy, is transferred between the objects

4. 10.0 trillion DNA molecules is equal to how many moles of DNA?
1.66 × 10–11 moles
6.02 × 1010 moles
6.02 × 1036 moles
1.66 × 1010 moles

Answers

10.0 trillion DNA molecules is equal to 1.66 × 10–11 moles of DNA.

The correct option is A.

What is DNA and its function?

The directions needed for a creature to grow, endure, and reproduce are encoded in its DNA. DNA sequences must be converted into messages that can be utilized to create proteins, that are the complex molecules that carry out the majority of the work in our bodies, in order to perform these activities.

Where is DNA in the body?

The DNA of a person can be found in almost all of their cells. The majority of DNA is found in the cell nucleus (where it is known as nuclear DNA), but there is also a tiny quantity of DNA in the mitochondrial .

Briefing:

1 trillion = 10¹² DNA molecules

6.022 × 10²³ molecule = 1 mole

10¹² DNA molecules = 1 / 6.022 × 10²³ × 10¹²

                                 = 1.66 × 10–11 moles.

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The complete question is -

10.0 trillion DNA molecules is equal to how many moles of DNA?

A-1.66 × 10–11 moles

B-6.02 × 1010 moles

C-6.02 × 1036 moles

D-1.66 × 1010 moles

Emilio is describing an ancient law that stated the sun and stars moved around Earth. He states that before Copernicus, everyone believed this law and experimental evidence appeared to support it. Copernicus, however, provided data that showed that Earth orbits the sun.



Which statement describes why Emilio’s description is incorrect?

Emilio reversed the facts.
A law cannot be ancient.
A law cannot be disproved.
Emilio named the incorrect scientist.

Answers

The statement that describes why Emilio's description is incorrect is that a law cannot be disproved. Therefore, option C is the correct answer.

Scientific laws are guidelines for how nature will act in specific circumstances, typically expressed as an equation. It can be disproved when a new law emerges. In fact, a law cannot be considered scientific if it cannot be disproved by other's experiments.

For instance, the volume of the gas increases as the gas's temperature rises. We refer to this as a natural law. It was first said that sun and stars revolved around the Earth. But later on, this law was disproved by Copernicus. He stated that Eath revolves around the Sun in its particular orbit.

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The 14.7 g sample of graphite takes up a volume of 6.6 cm^3. What is the density of graphite?

Answers

The density of graphite that has a volume of 6.6cm³ and a mass of 14.7g is 2.23g/cm³.

How to calculate density?

Density is the measure of the mass of matter contained by a unit volume.

The density of a substance can be calculated by dividing the mass of the substance by its volume as follows:

Density = mass ÷ volume

According to this question, graphite has a volume of 6.6cm³ and a mass of 14.7g. The density of this substance can be calculated as follows:

Density = 14.7g ÷ 6.6cm³

Density = 2.23g/cm³

Therefore, 2.23g/cm³ is the density of the graphite.

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describe the relationship between volume and temperature of an ideal gas

Answers

Answer:

Explanation:

Here, we want to describe the relationship between the volume and temperature of an ideal gas

This relationship is defined by Charles' law

From this law, we know that the volume of a given mass of gas is directly proportional to its temperature at a fixed pressure

What this means is that as long as the pressure remains unchanged, when the volume increases, the temperature increases, and when the volume decreases, the temperature decreases

These can be represented by the mathematical formula below:

[tex]\frac{V_1}{T_1}\text{ = }\frac{V_2}{T_2}[/tex]

Neon has three stable nautrally occurring isotopes. The isotopic mass and percent abundance of these isotopes are given inthe table.Isotope20 Ne21 Ne22 NeIsotopic mass (u)19.9920.9921.99Abundance (%)90.480.2279.25Calculate the average atomic mass of neon.

Answers

To calculate the average mass of Ne (neon), we have to use this formula:

[tex]\text{Average atomic mass = }\frac{\sum ^{}_{}(\text{mass of isotopes)x(abundance \%)}}{100}[/tex][tex]\begin{gathered} \text{Average atomic mass = }\frac{(19.99ux90.48+20.99ux0.27\text{ +}21.99ux9.25)}{100} \\ \text{Average atomic mass = }20.18\text{ u} \end{gathered}[/tex]

The average atomic mass of Ne = 20.18 u


What is the concentration of a 56.20 mL solution of HBr that is completely titrated by 27.50 mL of a 0.200 M NaOH solution?

Answers

The concentration of HBr used in the titration is found to be 0.0978M.

Volume of NaOH used is 27.50ml and it’s molarity used is 0.200M.

Volume of HBr used is 56.20ml.

On comparing molarity of both the solutions, we get the relation

HBr × VHbr  = MNaOH × VNaOH

MHBr = 0.200M × 27.50ml /56.20ml

MHBr = 0.0978M.

A colorless, stifling gas called hydrogen bromide is highly dissociated in water and exceedingly soluble in water. In the presence of damp air, it rapidly fumes. Hydrogen bromide gas is a very caustic chemical that, when contacted, can result in serious burns.

To determine the concentration of an identified analyte, titration is a typical laboratory technique for quantitative chemical analysis. A standard solution with a defined concentration and volume is prepared as a reagent, also known as the titrant.

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a student is given two unknown material samples that appear to have similar properties and asked to find out if they are the same material what are some characteristics of each sample should she check to see if they are the same material

Density
Color of flame as they burn if they are flammable
Melting point
Amount of each sample
Color of the material

Answers

Answer:

Density, flammable,melting point

Explanation:

Im not 100% sure but the other 2 choices just dont make sense

How much heat is needed to change the temperature 7.5° C on water with amass of 125 g? c= 4.18

Answers

The equation that gives the heat for a change in temperature is:

[tex]Q=m\cdot c\cdot\Delta T[/tex]

Where Q is the heat, m is the mass, c is the specific heat capacity and ΔT is the change in temperature.

So, we can calculate Q by substituting the given values:

[tex]\begin{gathered} \Delta T=7.5\degree C \\ m=125g \\ c=4.18J/(g\degree C) \end{gathered}[/tex]

So, we have:

[tex]\begin{gathered} Q=125\cancel{g}\cdot4.18J/(\cancel{g}\cancel{\degree C})\cdot7.5\cancel{°C} \\ Q=125\cdot4.18\cdot7.5J \\ Q=3918.75J\approx3900J \end{gathered}[/tex]

So, the heat needed is 3918.75 J or approximately 3900 J.

. If you do 4 J of work by pulling on a rubber band, the rubber band releases 12 J of heat (stretching of rubber band causes friction of molecules which releases heat). What is the change in internal energy of the system (the rubber band)?

Answers

The change in internal energy of the system is found to be -8joules.

We know that, work done W by the system is taken as negative. Work done on the system is taken as positive.

Heat absorbed Q by the system is taken as positive and heat released by the system is taken as negative.

It is given,

W = +4J (Work done on the system)

Q = -12j (Head released by the system)

Now, we calculate change in Internal energy ΔE of the system by using first Law of thermodynamics,

It says, total change in internal energy is equal to the sum of work done and heat absorbed,

So, we can write,

ΔΕ = Q + w

Putting the values,

ΔΕ = −12+ 4

ΔΕ = -8J

Hence, change in internal energy of the system is -8joules.

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Write the ions present in solution of Pb(C2H3O2)2 .

Answers

From the chemical structure of the compound that is clearly shown in the question, the ions that should be in the solution are;  lead II ion and the acetate ion.

What are ions?

The term ions has to do with the species that have a positive charge or a negative charge. Thus we could define an ion as as a charged specie. The charge could owe to an excess of electrons in which case the charge is negative or due to a deficiency of electrons which gives us a positive charge.

Looking at the compound that is in solution, we can see that the ions that are present are lead II ion and the acetate ion.

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consider the reactants and propose the right side of the equation.
Mg + H2SO4 ➡️

Answers

The reaction involving the reactants Magnesium and Sulphuric acid results in the formation of Magnesium sulphate and hydrogen

Mg (s) + dil. H2SO4 (aq) ➡️ MgSO4 (aq) + H2 (g)

Magnesium is a solid compound. When magnesium reacts with dilute sulphuric acid, it forms aqueous magnesium sulphate and hydrogen gas.

The type of reaction involved is single replacement reaction with both oxidation and reduction happening simultaneously. During the process, heat would be released becoming an exothermic reaction.

If concentrated sulphuric acid is used in place of dilute sulphuric acid, magnesium would react with concentrated sulphuric acid and forms 3 products namely magnesium sulphate, Sulphurdioxide and Water.

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Which of the following equations represents photosynthesis?
a. 6H2O + 6O2 → C6H12O6 + 6CO2
b. C6H12O6 + 6O2 → 6CO2 + 6H2O
c. 6CO2 + 6H2O → C6H12O6 + 6O2
d. 6CO2 + 6O2 → C6H12O6 + 6H2O
e. C6H12O6 + 6CO2 → 6O2 + 6H2O

Answers

The equation that represents photosynthesis is ,

[tex]6CO_2 + 6 H_2O —> C_6H_12O_6 + 6 O_2[/tex]

The correct option is (c).
——————————
What is photosynthesis?

•This is process performed by green plants to prepare its food using sunlight and carbon dioxide.

•Oxygen and Glucose are the products obtained after photosynthesis.

•This process takes place in chlorophyll of a cell(in chloroplasts)

•These are of two types , light dependent reactions and light independent reactions

•This is was first discovered by Jan Ingenhouse.

what is the concentration mass divided by volume percent of a solution prepared from 50 g in HCl and 2.5 L of water

Answers

The concentration mass by volume percent of a solution is 2 %

What is mass by volume percent of a solution ?

The ratio of the mass of the solute present in a solution to the volume of the solution as a whole is known as the mass/volume percent. The given proportion must be multiplied by 100 because this type of concentration is expressed as a percentage, as shown below.

Mass/Volume Percent is calculated as follows:

mass (solute(g)) / Volume(solution(mL) x 100

Given that:-

Mass of solute =50g

Volume of solution =2.5L = 2500mL

As we know that, mass by volume percentage of the solution is given by-

Mass by volume %=  mass of solute/Volume of solution *100

                                = 50/2500*100 = 2 %

The concentration mass by volume percent of a solution is 2 %

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Can you label the important processes in the water cycle?

Answers

The important processes of the water cycle are:

evaporation,condensation, andprecipitation

What is the water cycle?

The water cycle refers to the processes by which water is replenished or renewed in the environment.

There are three processes in the water cycle, and they are:

evaporation - this is the process by which water molecules in liquid form are converted to water vapor.condensation - this is the process by which water vapor molecules in the atmosphere come together to form clouds.precipitation- this is the process by which the water molecules in the cloud precipitate as either rain, snow, or ice.

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How many grams of hydrofluoric acid are formed when 173.63 grams of hydrogen (H2) react with 173.63 grams of fluorine (F2):


H2 + F2 rightwards arrow 2HF

Answers

The amount, in grams, of hydrofluoric acid that will be formed when 173.63 grams of hydrogen reacts with 173,63 grams of fluorine would be 182.8 grams.

Stoichiometric problem

The balanced equation of the reaction is written as:

[tex]H_2 + F_2 -- > 2HF[/tex]

According to the equation, the mole ratio of hydrogen and fluorine that react to produce hydrofluoric acid is 1:1.

Recall that: mole of substance = mass of the substance/molar mass

Molar mass of [tex]H_2[/tex] = 1x2 = 2 g/mol

Molar mass of [tex]F_2[/tex] = 19x2 = 38 g/mol

Mole of 173.63 grams  [tex]H_2[/tex] = 173.63/2

                                             = 86.82 moles

Mole of 173.63 grams  [tex]F_2[/tex]  = 173.63/38

                                        = 4.57 moles.

Considering the mole ratio of the two reactants, it appears that fluorine is limited in availability and will, therefore, determine the amount of hydrofluoric acid that will be produced.

Mole ratio of fluorine to hydrofluoric acid = 1:2.

Equivalent mole of hydrofluoric acid = 4.57 x 2 = 9.14 moles.

Mass of 9.14 moles HF = 9.14 x 20

                                     = 182.8 grams

Thus, the amount of hydrofluoric acid formed from the reaction is 182.8 grams.

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