Aniline is to be cooled from 200 to 150°F in a double-pipe heat exchanger. For cooling, a stream of toluene amounting to 8600 lb/hr at a temperature of 100°Fis available. The exchanger consists of 1 1/4-in Schedule 40 pipe inside a 2-in Schedule 40 pipe. The aniline flow rate is 10,000 lb/hr. The overall heat-transfer coefficient based on the outside area is given as 100 BTUhr ft °F. (a) If flow is countercurrent, what are the toluene outlet temperature, the LMTD (i.e. ATLM), and the heat transfer area needed to do this job? (b) What are they if flow is parallel? You need to look up any physical properties that are required.

Answers

Answer 1

In a double-pipe heat exchanger, aniline can be cooled by toluene, with different outlet temperatures for countercurrent and parallel flow.

In this scenario, aniline needs to be cooled from 200°F to 150°F using toluene as the cooling agent.

The flow rate of aniline is 10,000 lb/hr, and a stream of toluene at 8600 lb/hr and 100°F is available.

The heat exchanger is made up of 1 1/4-in Schedule 40 pipe inside a 2-in Schedule 40 pipe, and the overall heat-transfer coefficient based on the outside area is 100 BTUhr ft °F. For countercurrent flow, the toluene outlet temperature is 165°F, the LMTD is 52.67°F, and the heat transfer area needed is 17.06 ft².

For parallel flow, the toluene outlet temperature is 162.5°F, the LMTD is 53.14°F, and the heat transfer area needed is 18.22 ft².

Physical properties like heat capacities and viscosities need to be looked up to calculate these values.

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Answer 2

For countercurrent flow, the toluene outlet temperature is 162.5°F, the LMTD is 41.3°F, and the required heat transfer area is [tex]184.5 ft^2[/tex].

For parallel flow, the toluene outlet temperature is 173.4°F, the LMTD is 34.3°F, and the required heat transfer area is [tex]237.2 ft^2.[/tex].

In a double-pipe heat exchanger, the two fluids flow in separate pipes with one inside the other. The heat transfer occurs through the wall of the inner pipe.

The LMTD is used to calculate the heat transfer rate and is dependent on the temperature difference between the two fluids. Countercurrent and parallel flow are two configurations used in heat exchangers.

In countercurrent flow, the two fluids flow in opposite directions, while in parallel flow, they flow in the same direction. The required heat transfer area depends on the overall heat-transfer coefficient, the LMTD, and the mass flow rates of the fluids.

In this problem, the required heat transfer area is calculated for both countercurrent and parallel flow, along with the toluene outlet temperature and LMTD. Physical properties such as the specific heat and density of the fluids are required for these calculations.

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Related Questions

If the formula in cell d49 is copied to cells e49 what sequence of values would be generated.

Answers

If the formula in cell d49 is copied to cells e49. The sequence of values would be generated are C, C, C.

We can observe from the attached excel file that the formula in cell d49 indicates;

= $D$44

This means that the value in cell d49 will be the same as the value in cell e49 because Excel copies the result when it moves or copies a cell that contains a formula.

Since C is the value in d44, it follows that C will also be the value in e49.

The values in cells E49 and F49 will likewise be C using the same reasoning Excel employs when copying formulas.

Your question is incomplete but most probably the proper image of the excel sheet attached below

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Appearance Of Filter Paper

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A semi-permeable paper barrier called filter paper is positioned perpendicular to an air or liquid flow. It is employed to separate tiny solid particles from gases or liquids.

What is the name of the paper filter?

Paper and cellulose filters are made from cellulose fibers and are intended for general filtration. That particle retention level might be as low as 2.5 m. This kind of membrane filter must be folded in order to be used in simple gravity filtering using a plastique or glass filtration funnel.

What's the clearest filter paper?

For critical gravimetric analysis, this grade serves as a global benchmark. Of all the Whatman cellulose filter papers, it is renowned for having the best particle retention.

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Cual es la frecuencia de un laser rojo que tiene una longitud de onda de 676 nm?

What is the frequency of a red laser that has a wavelength of 676 nm?

Answers

A red laser with a wavelength of 676 nm would have a frequency of 4.43 x hertz.

The definition of frequency?

The frequency in physics is the quantity of waves passing a fixed location in a unit of time. It also indicates how many cycles or vibrations a body in periodic motion experiences in a given unit of time.

How much hertz is frequency?

Frequency is defined as the rate of changes in current direction per second. It is given in hertz (Hz), an internationally recognized unit of measurement. One hertz is equal to one cycle per second. A cycle is the technical term for a whole alternating current or voltage pulse.

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How many hydrogen bonds are between adenine and thymine?

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Adenine and Thymine are held together by 2 hydrogen bonds

Laser pointed at a black paper is what type of energy dispersion, transmitted or opaque?

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Dispersion types include chromatic, material, waveguide, and polarisation mode dispersion.

What is dispersion in the transmitted optical signal?The spreading out of a light pulse in time as it travels down the fibre is known as dispersion. Waveguide, material, and model dispersion are all types of dispersion in optical fibre. Below, each category is covered in more detail.White light dispersion occurs when white light passes through a glass prism and separates into its seven individual hues. The colours that are discernible include violet, indigo, blue, green, yellow, orange, and red.There are three types of dispersion in an optical medium, such fibre: chromatic, modal, and material. The emitter's spectral breadth causes chromatic dispersion. The number of various wavelengths that the LED or laser emits depends on its spectral width.

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What is the mass of 3.20 x 1023 formula finite iron(III) oxide

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hope this helps (not my work, just helping u out)

What is the limiting reactant in the balloon with 7.5g baking soda and vinegar?

Answers

In the last flask, which contained 7.5g of baking soda initially, add vinegar. The fact that a reaction takes place proves that vinegar was the limiting reactant.

What limiting reagent is used in the balloon experiment?

Each flask should contain about 15 drops of bromothymol blue after the balloons have been removed. The first flask, which contained 2.0 baking soda initially, should now contain baking soda. The fact that a reaction takes place proves that baking soda was the limiting reactant. Calculating how much product each reactant can produce and identifying the limiting reagent by which one produces the least amount of product is one method of doing so.

Since oxygen is the limiting reactant, lowering the oxygen input is the best way to reduce soot.

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What cells are responsible for absorption in small intestine?

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The cells responsible for absorption in the small intestine are epithelial cells.

The small intestine is part of the digestive tract which consists of villi, circular muscles, longitudinal muscles, mucous lining, and epithelium. In the small intestine, a chemical digestion process occurs in which enzymes break down complex organic matter molecules into simpler molecules.

Epithelial cells are cells that line the surface of the small intestine in a cylindrical and cube-shaped intestine. On its surface there are villi that expand the surface of the intestine. Epithelial cells function to absorb simple molecules that have been digested chemically through enzymes secreted by the mucous glands, In addition, epithelial cells also play a role in protecting the intestine from microbial infections.

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Which one of the following compounds will have the lowest boiling point?

Answers

CH4 is the compound with the lowest boiling point.

What compound's lowest point is this?

Helium has the lowest melting temperature of all chemical elements, and carbon has the greatest melting point.

Which molecule does have the lowest boiling point, but how do you know?

With a reduction in molecule size, the strength of the London dispersion forces also reduces Therefore, in this situation, the molecule with the fewest branches and shortest length has the smallest boiling point.

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The complete question is -

Which one of the following compounds will have the lowest boiling point?  (a) NH3 (b) C2H6 (c) CH3 (d) H2O

Classify the following solvents as either protic or aprotic solvents.
Protic Aprotic

CH3OH
CH3CH2OH
acetic acid
DMF
DMSO
acetonitrile
acetone
H2O

Answers

for the given solvents Protic are  CH3OH, CH3CH2OH, acetic acid, H2O

Aprotic are  DMF, DMSO, acetonitrile, acetone.

Protic solvents are solvents that have a hydrogen atom bonded to an oxygen or nitrogen atom (such as water or ethanol), and are capable of forming hydrogen bonds with other molecules. These solvents can act as a hydrogen bond donor. Aprotic solvents, on the other hand, do not have a hydrogen atom bonded to an oxygen or nitrogen atom, and therefore do not have the ability to form hydrogen bonds.These solvents are not hydrogen bond donors. Examples of aprotic solvents include dimethyl sulfoxide (DMSO) and acetonitrile. Protic solvents are generally better solvents for protic compounds, while aprotic solvents are generally better solvents for aprotic compounds. They also have different effects on chemical reactions, as protic solvents.

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how do i balance this equation? Na + H₂O → NaOH + H₁₂​

Answers

The balanced equation is 2Na + 2H2O → NaOH + H2

What is the balanced sodium-water equation?

2Na+2H2O2NaOH+H2 is the balanced chemical equation.

A neutralization reaction is a chemical reaction in which an acid and a base combine quantitatively to generate a salt and water as products. A neutralization reaction involves the formation of water by the interaction of H+ ions and OH- ions.

To meet the rule of conservation of matter, which stipulates that matter cannot be generated or destroyed in a closed system, chemical equations must be balanced. A chemical equation’s balance is governed by the rule of conservation of mass. Water is formed when positive hydrogen ions from HCl and negative hydroxide ions from NaOH mix.

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Decribe the different term: lattice enthalpy and hydration enthalpy. Which proce in quetion 2 i exothermic? Which proce i endothermic? Explain your reaoning

Answers

Lattice enthalpy and hydration enthalpy both are always exothermic.

Lattice enthalpy is exothermic it involves the association of positively charged and negatively charged species. These species have an electrostatic forces of attraction to each other and can therefore released a lot of energy when bond is formed. [tex]Na^{+}[/tex] + [tex]Cl^{-}[/tex] → [tex]Na^{+}[/tex][tex]Cl^{-}[/tex]

Hydration enthalpy also exothermic in nature as water molecules surround the ions to form new forces of attraction. It depends upon ionic charge- greater the ionic charge stronger will be the ion-dipole interactions which is formed between the ions in the ionic lattice as well as water molecules.

[tex]M^{+}[/tex](g) + aq → [tex]M^{+}[/tex][tex]_{(aq)}[/tex]

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draw 4-ethylphenol (p-ethylphenol),including all hydrogen atoms

Answers

p-Ethylphenol (4-EP) is an organic compound with the formula C₂H₅C₆H₄OH.

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Part of the molecular structure corresponding to ethane minus one hydrogen atom:

Sometimes abbreviated as - CH₂CH₃.

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What evidence suggests that after glycolysis pyruvate is oxidized to acetyl coa?

Answers

Pyruvate is oxidized to Acetyl-CoA in the cytoplasm. The molecules produced are 2 carbon dioxide molecules, 2 NADH molecules, and 2 Acetyl CoA's. ;The process converts pyruvate to Acetyl CoA because otherwise, it cannot be introduced to the Citric Acid Cycle.

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what do biological systems do with matter

Answers

Answer:

In biological systems, matter is continuously changing states through chemical processes. For example, carbon in the form of the gas carbon dioxide is changed into glucose, a solid. This change, of course, occurs during photosynthesis.

Draw 4 water molecules interacting with
Li
+

ion. (6 pts)
Li
+

What interactions occur between two hexane molecules?

Answers

Interactions between two hexane molecules occur through London dispersion forces, which are weak intermolecular forces that arise due to the temporary dipoles produced by the motion of electrons in the molecules.

These forces become stronger as the molecules become larger, and so hexane molecules, which have long hydrocarbon chains, experience fairly strong London dispersion forces. These forces allow the hexane molecules to interact with one another in a way that they can form weak associations, which are important for the formation of liquid hexane.

Additionally, when two hexane molecules approach one another, they may also experience dipole-dipole interactions, which are slightly stronger than London dispersion forces. These interactions occur when the molecules have a slightly different distribution of electrons and attract one another.

Lastly, hexane molecules can also experience hydrogen bonding, which is the strongest intermolecular force and occurs when a hydrogen atom covalently bonded to an electronegative atom is attracted to an electronegative atom in a different molecule.

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What is the mass of 3.25 moles S8?​

Answers

Answer:

3.25 Moles of Sulfur 8= 833.69 Grams

Explanation: I assumed you meant sulfur

what is the soeed of a rock dropped off a cliff after 10 seconds of free fall?

Answers

The speed of the rock after 10 seconds of free fall would be approximately 122 meters per second (274 mph).

What is rock?

Rock is a solid material composed of a combination of minerals, such as quartz, feldspar, mica, and other minerals. Rocks are formed by the process of weathering, erosion, and deposition of material from the Earth's crust, which is composed of rock materials. Rocks are classified based on their composition and origin. The three main types of rocks are sedimentary, igneous, and metamorphic. Sedimentary rocks form from sediments that are transported and deposited by water, wind, or ice. Igneous rocks form when molten rock material cools and crystallizes. Metamorphic rocks form when existing rocks are changed by intense heat and pressure. Rocks are an important part of the Earth's surface and are used in many applications, such as construction, landscaping and the production of certain materials. Rocks can also provide information about the geologic history of an area.

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when 1 mole of nitrogen gas (n2) reacts with 3 moles of hydrogen gas (h2), how many moles of ammonia (nh3) are produced?

Answers

One mole of nitrogen (N₂) gas reacts with 3 moles of hydrogen (H₂) gas to produce 2 moles of ammonia (NH₃).

When nitrogen gas (N₂) reacts with hydrogen gas (H₂) in the presence of a catalyst, the reaction produces ammonia (NH₃). The balanced equation for this reaction is: N₂ + 3H₂ --> 2NH₃.

This means that for every mole of nitrogen gas that reacts, 3 moles of hydrogen gas are needed and 2 moles of ammonia are produced. This reaction is the basis for the Haber-Bosch process, which is used industrially to produce ammonia on a large scale. The reaction is exothermic and occurs at high temperature and high pressure, with a catalyst such as iron or ruthenium used to increase the rate of reaction.

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decentralizing power in the hands of a local subsidiary ____.

Answers

Power being decentralized to a local subsidiary could make it challenging to transfer knowledge from one company to another. Global corporations, in contrast to multidomestic firms: Atomic mass

What are atomic number and atomic mass?

The quantity of protons and neutrons in a specific element's nucleus, known as its atomic mass, determines the element's chemical composition. The number of protons in the nucleus of an element is typically expressed as its atomic number. It is a measure of an element's average weight. The number of protons in the atom's nucleus as a whole.

What does it mean to be the atomic number?

The quantity of protons in an atom is known as its atomic number. It is known as the proton number for this reason. It is represented in calculations by the capital letter Z. The word "Z" is derived from the German word "zahl," which meaning "number of numerals" or "atom zahl," a more contemporary term that denotes an atomic number.

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What is the number of ammonia molecules made when 6 grams ofhydrogen gas reacts with excess nitrogen? 3 H2+ N2→2 NHO 24 x 10 23O 6 x 10 23 O 12 x 10 23 O 18 x 10 23

Answers

The number of ammonia molecules made when 6 grams of hydrogen gas reacts with excess nitrogen is 4 mol.

Given equation,

3H2(g) + N2(g) → 2NH3(g)

If N2 is present in excess, increase the provided moles H2 even by mole ratio of H2 to NH3 within balanced equation such that moles H2 cancel, producing moles NH3.

⇒               6 mol H2 × (2 mol NH3/3 mol H2)

     ⇒                        = 4 mol NH3.

A chemical equation is a representation of the a chemical reaction in the shape of a chemical formula with an arrow going from reactant to product, and a balanced chemical equation has the same amount of atoms on both sides of the equation. The rule of the conservation of mass guides the balancing of such a chemical equation in this case.

A chemical reaction is the process in which one or even more compounds, defined as reactants, are converted into one or more unique entities, known as products. Chemical elements as well as compounds are examples of substances. A chemical reaction rearranges the component atoms of the reactants to produce various products. In this situation, hydrogen and nitrogen combine to generate ammonia. The reaction described above is an example of the a combination reaction.

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How many grams of sodium nitrate will be produced from 15.1 moles of silver nitrate?

Answers

1284.689 grams of sodium nitrate will be produced from 15.1 moles of silver nitrate.

How to determine grams of sodium nitrate?

To determine how many grams of sodium nitrate will be produced from 15.1 moles of silver nitrate, we need to perform a balanced equation and stoichiometry calculation.

The balanced equation for the reaction between silver nitrate and sodium chloride to form silver chloride and sodium nitrate is:

AgNO3 (aq) + NaCl (s) → AgCl (s) + NaNO3 (aq)

We know that 15.1 moles of silver nitrate will react with the stoichiometric amount of sodium chloride, which is 1 mole of sodium chloride for every 1 mole of silver nitrate.

So, we can calculate the moles of sodium nitrate that will be produced by multiplying the moles of silver nitrate by the coefficient of sodium nitrate in the balanced equation:

15.1 moles AgNO3 * 1 mole NaNO3 / 1 mole AgNO3 = 15.1 moles NaNO3

To convert the moles of sodium nitrate to grams, we can use the molar mass of sodium nitrate, which is 84.99 g/mol.

15.1 moles NaNO3 * 84.99 g/mol = 1284.689 g

So, 1284.689 grams of sodium nitrate will be produced from 15.1 moles of silver nitrate.

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Click the "draw structure" box to launch the drawing utility. Draw the ketal derived from ethylene glycol and cyclohexanone.

Answers

The ketal derived from ethylene glycol and cyclohexanone can be drawn as follows. The two reactant molecules are shown in the center of the diagram.

The ethylene glycol molecule has two oxygen atoms, each of which is bound to two hydrogen atoms. The cyclohexanone molecule has a ring of six carbon atoms, each of which is bound to one hydrogen atom and one oxygen atom.

The two molecules are connected through a single bond between the oxygen atom of ethylene glycol and the carbon atom of cyclohexanone. The resulting product is a molecule with two oxygen atoms, each of which is bound to two hydrogen atoms, and a ring of six carbon atoms, each of which is bound to two hydrogen atoms and two oxygen atoms. This molecule is the ketal derived from ethylene glycol and cyclohexanone.

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Draw Lewis structures for the N-methylidenehydroxylamine molecule (CH2NOH), the methylamine molecule (CH3NH2), and the acetonitrile molecule (CH3CN) in the window below, and then answer the questions that follow, based on your drawings.

Draw one structure per sketcher box. Separate added sketchers with + signs from the dropdown menu.

b.) What is the bond order of the carbon- nitrogen bond in the N-methylidenehydroxylamine molecule? (enter a number)

c.)Which species has the longest carbon-nitrogen bond, CH2NOH, CH3NH2, or CH3CN?

methylamine

acetonitrile

N-methylidenehydroxylamine

d.) Which species has the weakest carbon - nitrogen bond, CH2NOH , CH3NH2, or CH3CN ?

methylamine

acetonitrile

N-methylidenehydroxylamine

Show Approach

Answers

The lewis structures for the molecule (CH₂NOH),  molecule (CH₃NH₂), and  molecule (CH₃CN) is attached below.

b. The bond order is 3.

c. CH₃NH₂

d. CH₃NH₂

The lewis structure are :

CH₂NOH

    H

     :     . .   . .        

H : C = N - O - H

                  °°

CH₃NH₂

    H

    |      ..

H - C - N - H

      |     |

      H    H

CH₃CN

   H

     |

H - C - C ≡ N :

      |

      H

B.  The bond order of the carbon- nitrogen bond in the N-methylidene hydroxylamine molecule is 2.

C. Species has the longest carbon-nitrogen bond is CH₃NH₂, methylamine.

D.  Species has the weakest carbon - nitrogen bond is CH₃NH₂, methylamine.

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The forested mountains of upstate New York are filled with sugar maples, oaks, and yellow birch trees. They are also home to predators like bobcats. These animals live alone and wander over large areas to search for food and to breed with other bobcats. Recently, a dairy farmer who lives in the area and who supplies large amounts of milk to stores decided to build a fence around his farm in order to prevent his grazing cows from wandering off. The farmer is happy with these changes because it allows him to increase his milk production.

Will these changes around the farm affect the bobcat population? (Yes or No) (EXPLAIN) your answer.

Answers

Answer: His decision to add a fence to prevent his cows from straying will result in a long-term decline in the bobcat population. Most likely, the cows are being preyed upon by the bobcats when they stray and are fed in return. Because the cows are unable to cross a particular limit when the farmer constructs a fence, bobcats have less opportunity to hunt the cows.

Explanation:

How many moles of carbon are needed to produce 562 grams of carbon dioxide?

Answers

The amount, in moles, of carbon that are needed to produce 562 grams of carbon dioxide would be 12.77 mols.

Stoichiometric problem

Carbon dioxide can be produced from the reaction of carbon and oxygen according to the following equation:

[tex]C + O_2 --- > CO_2[/tex]

From the reaction, the mole ratio of carbon to carbon dioxide is 1;1.

Recall that: mole = mass/molar mass

Thus, the mole equivalent of 562 grams of carbon dioxide would be:

562/44 = 12.77 mol

This amount of carbon dioxide will also be the amount of carbon that will be required to react since the mole ratio is 1 to 1.

In other words, from the established stoichiometric mole ratio, the number of moles of carbon needed to produce 562 grams of carbon dioxide would be 12.77 mol.

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The image above shows divergent plate boundaries.

A. True
B. False​

Answers

the answer should be true since they are splitting

Balance this equation for C4H12+O2------> CO2 + H2O​

Answers

C4H12 + 7 O2 → 4 CO2 + 6 H2O is the balanced chemical equation for the equation C4H12+O2 → CO2 + H2O.

How do chemical equations work?

Chemical reactions are representations of chemical processes using symbols, with the reactants & products identified by their unique chemical formulae. The five basic types of chemical reactions are combining, decomposing, single-replacement, double-replacement, and combustion.

What does the arrow (→) in the reaction mean?

An arrow representing a reaction merely shows that something has altered and transformed. The arrow points in the direction of the subsequent object from the preceding one (the one that added). The reaction arrow is used in the "equation of reaction". The thing that started the reaction is known as the reactant.

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Calculate the molar concentration of 8 g of odium ulfate, Na2SO4(), diolved in 210 mL of olution

Answers

The molar concentration of of 8 gram of sodium sulfate(Na₂SO₄) dissolved in 210 ml of solution is 0.267.

Molar concentration is defined as the number of moles of a substance in 1 liter of solution. If molar concentration is denoted by M, number of mole denoted by "n" and volume of solution is denoted by V, then

M = n/V

Atomic weight of sodium sulfate(Na₂SO₄) = (23×2+32+16×4) = 142

142 gram is the weight of 1 mole of sodium sulfate(Na₂SO₄).

1 gram is the weight of 1/142 moles of Na₂SO₄

8 grams is the weight of (1×8)/142 = 0.056 moles

Volume of solution = 210 ml = 0.210 liter

So, the molar concentration,  M = 0.056/0.210

M = 0.267

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Explain how lithium-ion batteries use a lattice structure with electrolytes to function.

Answers

Lithium is a particularly reactive metal with a substantially higher storage density than lead batteries. Carbon and lightweight lithium are used to create the electrodes in lithium batteries.

These ions reach the anode during battery recharge. lithium batteries are significantly lighter. Thus, three Li+ ions are equivalent to one Al+3 ion. As a result, the energy storage capacity is increased by three units of charge provided by ions. Rechargeable batteries made of aluminum are inexpensive and have low flammability. Because aluminum is inert, it is safe to use and simple to use in a natural setting. Since aluminum has a higher volumetric capacity than lithium, it can store more energy per unit of volume. An electrochemical cell is one in which a chemical reaction aids in the generation of an electric current. Electricity is used in an electrolytic cell to carry out the chemical reaction that is not spontaneous. While no initiation is required for a spontaneous reaction.

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