The standard emf for the cell using the overall cell reaction below is =2.20 V:
2Al(s) + 3I2(s) ? 2Al3+ (aq) + 6I- (aq)
The emf (voltage) generated by the cell when [Al3+] = 4.0 x 10-3 M and [I-] = 0.015 M
is_______ V

Answers

Answer 1

Cell produces an emf of 2.32 V.

Cell-An electrochemical cell is a structure that can produce electrical energy from chemical processes taking place inside of it or use external electrical energy to speed up chemical reactions taking place inside of it. These systems have the ability to transform chemical energy into electrical energy or the other way around.

For this cell reaction, use the Nernst equation at -

E0cell - (RTnF)InQ.

where is the standard cell emf, is the cell emf, is the concentration of, and is the concentration of, and n is the number of electrons exchanged during the cell reaction.

Fill in the above equation with each of the values provided.

So, emf is 2.32V.

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Related Questions

What are Quantitative and qualitative properties?
This is a science grade 9 question

Answers

Answer:

Explanation:

Quantitative properties are characteristics of a substance that can be measured using a numerical value. Examples of quantitative properties include mass, volume, density, and chemical concentration. These properties can be measured and compared using mathematical techniques and formulas.

Qualitative properties, on the other hand, are characteristics of a substance that cannot be measured using a numerical value. Examples of qualitative properties include color, odor, taste, and texture. These properties are typically described using words or phrases, and cannot be compared using mathematical techniques.

Quantitative and qualitative properties are both important for understanding the characteristics and behavior of a substance. Quantitative properties are useful for making precise measurements and predictions, while qualitative properties provide valuable information about the appearance and sensory properties of a substance. Together, these two types of properties help us to understand the nature of a substance and its behavior in different situations.

1. The experiment is set up as shown and left until there is no further change. water purple crystal of potassium manganate(VII) What is observed?
A. a colourless layer below a purple layer
B. a colourless liquid with the purple crystal unchanged
C. a purple layer below a colourless layer
D. a uniformly purple solution​

Answers

Answer:

C

Explanation:

Based on the information provided, it is likely that the observation will be a purple layer below a colorless layer. Potassium manganate(VII) is a purple crystalline compound that is often used as a laboratory reagent. When it is placed in water, it will dissolve and form a purple solution. However, if the solution is left to stand for a period of time, the purple color will gradually fade and a colorless layer of liquid will form at the bottom of the container, with the purple crystal unchanged at the top. Therefore, the most likely observation in this experiment will be a purple layer below a colorless layer (Option C).

Which of the following is the conjugate acid of H₂PO4?
hs
OA. HP04-2
OB. PO4³-
OC. H₂PO4
D. H3PO4

Answers

The conjugate acid of H₂PO4 is H₃PO₄.

The correct option is D.

What are conjugate acids?

Conjugate acids are chemical species that are formed when a base accepts a proton.

A conjugate acid contains one more proton than the base from which it is formed.

Conjugate acids are derived from the Brønsted–Lowry acid–base theory, which states that an acid is a  chemical compound that donates a proton to a base.

The conjugate acid of H₂PO4⁻ will contain one more proton and a higher positive charge than H₂PO4⁻. Hence, the conjugate acid of H₂PO4⁻ is H₃PO₄.

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29. Which of the following best describes the properties of protons, neutrons, and electrons?
A. Protons and electrons are inside the nucleus while neutrons are outside the nucleus.
B. Protons, electrons, and neutrons are all inside the nucleus.
C. Protons and neutrons are inside the nucleus while electrons are outside the nucleus.
D. Protons are outside the nucleus while electrons and neutrons are inside the nucleus.

Answers

Answer:

C.

Explanation:

Which of the following pollutants may be released into the environment during the production or incorrect disposal of batteries?

Answers

The pollutants which may be released into the environment during the production or incorrect disposal of batteries include the following:

A. SO₂

C. Toxic metals

D. CO₂

What is a pollutant?

In Science, a pollutant can be defined as a harmful, poisonous and toxic chemical substance or chemical compound that is capable of causing physical degradation or contamination to the environment through emission such as the burning of coal, production of batteries, or incorrect disposal of batteries.

The primary pollutants from burning coal and incorrect disposal of batteries.

Generally speaking, some examples of the primary pollutants that are produced from the burning of coal and incorrect disposal of batteries include the following:

Sulfur dioxide (SO₂)MercuryToxic metalsCarbon dioxide (CO₂)Nitrogen oxide

In conclusion, toxic metals are most likely to be released due to the incorrect disposal of batteries or even during its production.

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Complete Question:

Which of the following pollutants may be released into the environment during the production or incorrect disposal of batteries? Select all that apply.

SO₂

H₂O

Toxic metals

CO₂

FeO

draw the organic product(s) of the following reactions including stereochemistry when it is appropriate. h2 lindlar catalyst

Answers

Draw the organic product(s) of the following reactions including stereochemistry when it is appropriate. H₂ lindlar catalyst is given as :

CH₃-C≡C-CH₂-CH₂- CH₃ + H₂ Lindlar catalyst --> CH₃ - C=C - CH₂ -CH₂- CH₃

                                                                                            |   |

                                                                                            H H

The lindlar catalyst is used to hydrgenate the bond into the double bonds. H₂ + lindlar catalyst is used to reduce the alkynes which contains the triple bond in to the alkene which contains the double bond. the H₂ + lindlar catalyst doest noty react with the the alkenes.  the reaction of H₂ + lindlar catalyst is given as follows :

CH₃-C≡C-CH₂-CH₂- CH₃ + H₂Lindlar catalyst --> CH₃-C=C - CH₂ -CH₂- CH₃

2 - hexyne                                                                           |   |

                                                                                            H H

                                                                                           2 - hexene

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a public good: group of answer choices cannot be provided to one person without making it available to others too. costs essentially nothing to produce and thus is provided by the government at zero price. generally results in substantial spillover costs. can never be provided by a nongovernmental organization.

Answers

A public good cannot be provided to one person without making it available to others as well.

A non-exclusive, non-rivalrous good is referred to as a public good. It cannot be given to just one person without also being made available to others. If one person uses it, it doesn't prevent others from doing so as well. Roads are an illustration of a public good.

Club goods and private goods are in opposition to public goods. An example of a public good is a club good. It is non-rivalrous but excludable. One example of a club good is paid streaming services. The service is not available to those who do not subscribe. However, each subscriber is equally valued by the service.

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the product of the following reaction has the constitution shown. no stereochemistry is implied. deduce the stereochemistry on the basis of the fact that iodolactonization is normally an anti addition and it was determined experimentally that the ring junction is cis. select the single best answer. 1935 1935c 1935a 1935d 1935b

Answers

The stereochemistry on the basis of the fact that iodolactonization is normally an anti addition and it was determined experimentally that the ring junction is cis. is Option A.

Stereochemistry is a branch of chemistry that involves the study of different spatial arrangements of atoms within molecules. Stereochemistry is a systematic presentation of a particular field of science and technology and traditionally requires a brief history course.

Stereochemistry is the visualization of molecules in 3D. Before I learned stereochemistry, I had only studied the two-dimensional structure of molecules so it is very difficult for students. You can explore different ball-and-stick models of molecules for proper visualization in 3D. Stereoisomerism.

Certain substituted derivatives of cycloalkanes exhibit a type of isomerism called stereoisomerism. In this isomerism, two substances have the same molecular formula and composition but differ in the spatial arrangement of their atoms.

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The layers of the earth are

Answers

Answer:

Inner core, outer core, mantle, crust

Explanation:

the crust the mantle and the core

Which Of the tollowing options correctly express the relationship petween the volume and temperature of a gas at constant pressure? Check all that apply: As the temperature of the gas increases, the volume will increase.There is an inverse relationship between volume and temperature. VTis & constant value.The volume of the gas is directly proportional t0 the absolute temperature.

Answers

Statement 1 and statement 4 are true about the volume and temperature relationship.

Boyle's law, an experimental gas law, illustrates the connection between a confined gas's pressure and volume. It claims that when the temperature of a mass of confined gases is constant, the product of pressure and volume is similarly constant.

By this law, the temperature and volume relationship is given by,

[tex]V \propto T[/tex] where V is volume and T is the temperature at constant pressure.

From this relationship, we can tell, when the temperature of the gas increases, it increases the volume also. This is because the volume of gas is directly proportional to its absolute temperature.

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Which of the following samples will have the greatest volume at STP? O 22 g Ne O 22 g He O 22 g 02 O 22 g Cl2 OAll have the same V at STP

Answers

Option (b). 22 g He have the greatest volume at STP because it has the lower molar mass.

1 mole of gas at STP will have volume 22.4L (for all gases)

Mole is defined as the amount of a substance that contains the number of carbon atoms in exactly 12 g of isotopically pure carbon-12 .  It allows determination of the number of molecules or atoms by weighing them.      

         number of moles = mass / molar mass 

mass is the same for all. if moles will be high then the volume will be high . the mole will be high only which have a lower molar mass . The molar mass is defined as the mass in grams of 1 mole of that substance. For an element, the molar mass is the mass of 1 mole of atoms of that element for a covalent molecular compound it is the mass of 1 mole of molecules of that compound. for an ionic compound, it is the mass of 1 mole of formula units. so in all, He has a lower molar mass. so it will have highest no of moles.

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draw the arrow pushing reaction mechanism for the aldol condensation of vanillin and acetone during the first step

Answers

Aldol condensation is a reaction that results in the formation of a carbon-carbon bond, an enol or enolate molecule, and an aldehyde or ketone.

Removing the alpha hydrogen, establishing fresh carbon and carbonyl bonds, and changing carbonyl groups into COH.

These reactions include an enol or enolate ion reacting with a carbonyl molecule to produce a -hydroxy aldehyde or -hydroxy ketone, which is then dehydrated to produce a conjugated enone. Let's talk more about cross aldol condensation, the aldol condensation process, and its mechanism.

Thus, the acetaldehyde enolate's nucleophilic addition to benzaldehyde produces the aldol product: We will discuss all the additional potential outcomes and specifics of the crossover aldol reaction.

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molecules coming in contact with each other does not ensure that a reaction will occur. however, increasing the number of collisions increases the rate of successful interactions by creating more opportunities for them to happen. select all of the conditions that need to be met by the molecules for a collision to lead to a successful reaction.

Answers

The temperature of the reaction system will all increase the rate of a reaction.

Collision theory states that the rate of a chemical reaction is proportional to the number of collisions between reactant molecules. The more often reactant molecules collide, the more often they react with one another, and the faster the reaction rate.

Energetic collisions between molecules cause interatomic bonds to stretch and bend, temporarily weakening them so that they become more susceptible to cleavage. Distortion of the bonds can expose their associated electron clouds to interactions with other reactants that might lead to the formation of new bonds.

With an increase in temperature, there is an increase in the number of collisions. Increasing the concentration of a reactant increases the frequency of collisions between reactants and will, therefore, increase the reaction rate.

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Answer:

-be properly aligned to rearrange into the products

-be in contact with the other reactant rather than another molecule of itself

-have sufficient energy to overcome the activation energy of the reaction

Explanation:

Three criteria must be met for a collision to lead to a successful reaction. In general, the collision must be set up to allow the reactants to rearrange into the products. The direction of motion before the collision does not make a difference.

The first condition for a successful collision is that the collision must be between the two reactants, rather than a molecule colliding with another molecule of itself. A higher temperature will lead to more collisions between all molecules, but only collisions between the two reactants will result in a reaction occuring.

Second, the molecules must be lined up properly for the reaction to occur. For example, a molecule made up of two different elements needs to have the correct element collide with the other reactant molecule to be able to make the correct new bond.

Third, the molecules must have enough energy to overcome the activation energy necessary to make the bond rearrangements into products. A benefit of a higher temperature reaction, beyond the increased collisions, is that the molecules are more likely to have the energy needed to complete the reaction.

Which of the following is a redox reaction?

Answers

Answer:

Explanation:

Correct option is ( A ).

in this respective reaction 3MnO2 + 4Al ---- 3Mn + 2Al2O3 ,

MnO2 is acting as an oxidising agent i.e. it oxidises Al to Al2O3.

Hence ,  it is an Redox reaction.

                                                                                                                                                                                                                                                                     

which of the following substances is not a solution? saline steel humid air oxygen all of the above are solutions.

Answers

Answer: Oxygen

Explanation: Oxygen is just an element, not a solution

what is the best transition metal cation that can react with ethene

Answers

Answer:

Explanation:

1+ 2+ 3+

copper(I), Cu+ cadmium, Cd2+ chromium(III), Cr3+

gold(I), Au+ chromium(II), Cr2+ cobalt(III), Co3+

mercury(I), Hg22+ cobalt(II), Co2+ gold(III), Au3+

silver, Ag+ copper(II), Cu2+ iron(III), Fe3+

a region of vacuum contains both a uniform electric field with magnitude e and a uniform magnetic field with magnitude b.

Answers

A region of the vacuum that contains both uniform electric field and a uniform magnetic field is called electromagnetic radiation.

A region of the vacuum that contains uniform electric and magnetic field simultaneously is called an electromagnetic radiation or an Electromagnetic wave.

Wave does not recover any medium to travel because it is made up of electric and magnetic field which also do not require any medium to be in existence.

An Electromagnetic wave travels with the speed of light. The component of the electric field and the magnetic field contributes equally in sense of energy of the wave.

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Write a balanced equation for the double-replacement precipitation reaction described, using the smallest possible integer coefficients. A precipitate forms when aqueous solutions of cobalt(II) chloride and potassium hydroxide are combined. Use the pull-down boxes to include states such as (8) or (aq).

Answers

The reaction between cobalt (II) chloride and potassium hydroxide can be depicted as follows:

CoCl2(aq)+2KOH(aq)----> Ca(OH)2(s)+2KCl(aq)

A double displacement reaction is one that involves the exchange of ions and leads to the formation of new products. The products that are soluble in water are represented by the symbol (aq) and the ones that are insoluble in the water remain in the (s) or precipitate form along with the chemical formulas.

The double displacement reaction can be depicted as follows:

XY+AB--->AB+AY

The reaction between cobalt (II) chloride and potassium hydroxide can be depicted as follows:

CoCl2(aq)+2KOH(aq)----> Ca(OH)2(s)+2KCl(aq)

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TRUE/FALSE. two different compounds exist having the formula n2f2. one compound is polar whereas the other is nonpolar

Answers

True.

Polar substances have electronegativity differences while non polar substances do not have differences.

The analyze is:

N2F2 is polar. Because there are differences in the electro negativity values of the 2 elements. But the polarity depends on the type of isomer, the cis isomer form is polar because it has a dipole moment of 0.16 D. Meanwhile the trans isomer form is non polar because it doesn't have a dipole moment.

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Calculate molality (m)of benzoic acid, in mol/kg, using the formula Δt = Kf × m. (The Kf value for lauric acid is 3.9°C•kg/mol) Calculate moles of benzoic acid solute, using the molality and the mass (in kg) of lauric acid solvent. Calculate the experimental molecular weight of benzoic acid, in g/mol. Determine the accepted molecular weight of benzoic acid from its formula, C6H5COOH. Calculate the percent discrepancy between the experimental and accepted values.
mass of lauric acid (g) : 8.00
mass of benzoic acid (g): 1.50
Freezing point of pure lauric acid (C): 36.37
Freezing point of benzoic acid-lauric acid mixture (C): 42.51

Answers

Molality: This feature of solutions tells us how many moles there are in a kilogram of the solvent. It is a way of displaying any solution's concentration.

a. We have,

42.95 degrees Celsius is the freezing point of pure lauric acid.

Benzoic acid and Lauric acid have a freezing point of 47.27 C.

Cryoscopic constant =3.90∘C⋅kg⋅mol−1

We know,

Δt=kf×m

(47.279−42.950)=3.90×m

m=3.90/4.329

m=0.9mol/kg

b. We know,

Lauric acid weighs 8.02 x 10(-3) kg (w1)

Suppose there are n2 moles of benzoic acid, which means:

w2/M2=n2

Where, w2 is the solute's andmolar mass of solute.

Hence,

m=(w2/M2 × 1/w1)mol/kg

And the number of moles is given as,

n=m×w1

  =0.9×8.02×10^(-3)

  =0.0072mol

As a result, there are 0.0072 moles of benzoic acid solute.

c. The experimental molar mass of benzoic acid,

=(w2/n2) g/mol

=1.04/0.0072

=144 g/mol

d. The accepted molar mass of benzoic acid

(CH3COOH) will be,

=(7×12)+(6×1)+(2×16) g/mol

=122 g/mol

e. Following are the details of the difference between the experimental and acceptable value:

= experimental molar mass - accepted molar mass  × 10/ accepted molar mass

= 144-122 ×100/122

=18.08%

f. By repeating steps 1 to 3, the molar mass of the unknown solute will be,

Step 1: Calculation of molality

   Δt=kf×m

2.34=3.90×m

    m=0.6

Step 2: Calculation of the number of moles of an unknown solute

n2=7m×w

   =0.6×(8.04×10^(-2))

   =0.0482 mol

Step 3: Calculation of molar mass of unknown solute

M = w/n

  =    0.98/  0.0482

  =23.11

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14.1 on the basis of the structures presented in this chapter, sketch repeat unit structures for the following polymers: (1) polychlorotrifluoroethylene (2) poly(vinyl alcohol), (3) polystyrene, and (4) polypropylene.

Answers

1.00029 is possibility of repeating unit of  polymers. In the given given figure, unit structures for the polymers.

P is probability of repeating unit.

Relation between weight average molecular weight Mw / number average molecular weight,  Mn =1+P

 Mw/Mn= 1+P

Degree of polymerization K = 1/ (1-P)

P = 1 + 1/K = 1 + 1/3420 = 1 + 0.00029 = 1.00029 is possibility of repeating unit of  polymers.

Hence, 1.00029 is possibility of repeating unit of  polymers.

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mannose, one of the eight essential monosaccharides, is biosynthesized as its 6-phosphate derivative from fructose 6-phosphate. no cofactor is required. draw curved arrows to show the movement of electrons in this step of the reaction mechanism.

Answers

The 6-phosphate derivative of mannose, one of the eight essential monosaccharides, is biosynthesized from fructose 6-phosphate. The oxygen atom experiences electron migration.

How do monosaccharides work?

The most fundamental type of a carbohydrate is a monosaccharide. Larger carbohydrates, such as oligosaccharides or polysaccharides, can be created by joining monosaccharides through glycosidic linkages. A disaccharide is an oligosaccharide that contains just two monosaccharides. An oligosaccharide turns into a polysaccharide when it forms glycosidic connections with more than 20 monosaccharides.

Where can you find mannose?

A simple sugar called d-mannose can be found in many fruits. It has to do with glucose. In some human body cells, it also happens naturally.

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The next 7 questions are related to the titration of 40.0 mL of a 0.0150 M Zn2+ solution with 0.0250 M EDTA in a solution buffered at pH 11. Assume that the temperature is 25 oC and that the formation constant for Zn2+ is 3.13 x 1016 at this temperature.
How many mmols of Zn2+ are present in the solution before the titration begin?
What is the conditional formation constant for Zn at this pH?
What volume of the EDTA solution is needed to reach the equivalence point?Alpha values for EDTA are in table 13-3 on page 299 of the textbook.
What is the pZn of the analyte solution before the titration begins?
What is the pZn of the solution after 15 mL of titrant have been added?
What is the pZn at the equivalence point of the titration?
What is the pZn of the solution after 30 mL of titrant have been added?

Answers

Using complex-forming processes, complex metric titrations are primarily used to identify metal ions.

Although there are various complexing agents that can be utilized for this task (cyanide, thiocyanate, fluoride, 1,2-diaminoethane, etc.), in actuality the titrants are usually invariably compounds with the iminodiacetic acid functional groups. The sodium salt, Na₂H₂Y 2H₂O, and ethylenediaminetetraacetic acid are the two that are used the most frequently (better soluble in water).

Most requirements for a good complexometric titrant are mostly met by EDTA. It reacts quickly with most metal ions (except Cr₃⁺), forms sufficiently stable complexes with most metal ions, all of the complexes have perfect 1:1 stoichiometry (independent of the charge of the cation), are water soluble, and are colorless (unless the metal is present).

(unless the metal ion is colored by itself). A typical metal ion's reaction with EDTA (H₄Y) can be expressed as follows:

that is, as a battle between the metal ion and hydrogen ions for interacting with Y₂−. The equilibrium constant for the reaction, KMeY, which measures the stability of binding of Men + with Y₂ is as follows.

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We can calculate the pH range over which a particular acid and its conjugate base can be used to make an effective buffer. If a buffer solution is created by adding NaOH to a solution of benzoic acid, C6H5COOH. (pka = 4.20). What is effective buffer range for the solution? O 1-7 O 10.80 - 8.80 O 2.20-6.20 O 3.20 - 5.20 O 7-14

Answers

If a buffer solution is created by adding NaOH to a solution of benzoic acid, C6H5COOH, the effective buffer range for the solution will be (d) 3.20 - 5.20.

pKa of benzoic acid = 4.20

The effective buffer range of solution = ?

The term "buffer" can also refer to a solution that has reserve acidity or alkalinity and is able to resist a change in pH even after a trace amount of acid or alkali has been added to it.

Any buffer has an effective pH range of one pH unit on either side of the pKa value for the weak acid.

As the pKa is 4.20

then pH range will be

4.20 +- 1

pH range = 3.20 - 5.20

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which of the following will an organism that is experiencing an elevated carbon dioxide concentration most likely do?

Answers

The increase in concentration of CO₂ will leads to form low pH of water because CO₂ is a acidic oxide. The temperature will also rising, this an organism that is experiencing an elevated carbon dioxide concentration most likely do.

What happens when concentration of CO₂ increases?

The heat that is trapped aids in keeping the earth's temperature constant. However, the amount of heat trapped in the atmosphere will grow as CO₂ levels rise. Global warming is the process through which the earth's temperature rises as a result.

An immediate rise in CO₂ does not reduce respiratory oxygen consumption; rather, it increases with prolonged development in the field at increasing CO₂. Thus, the increase in concentration of CO₂ will leads to form low pH of water because CO₂ is a acidic oxide. The temperature will also rising, this an organism that is experiencing an elevated carbon dioxide concentration most likely do.

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The complete question is as follows:

-/2 points Oxygen can be generated by the thermal decomposition of potassium chlorate described by the following equation. 2KCIO (s) 4245 2KCl(s) 30-(9) A student at Cal Poly carried out this reaction in an eudiometer in hopes of measuring the Ideal Gas Law Constant; R. The gas collected in the eudiometer displaced water (just like in your experiment): She allowed the reaction to proceed for 10 minutes and collected the following data: initial mass KCIOg: 191.3 mg final mass KCIOg: 52.9 mg gas temperature: 34.5 %€ liquid water temperature: 32.7 % volume of water displaced: 49.18 mL height of water column remaining: 5.8 cm Unfortunately; the student failed to record the atmospheric pressure: Make reasonable assumption for the value of the missing data and calculate the value of R. atmospheric pressure (atm) Enter your estimate of the atmospheric pressure molar gas constant (Latmlmolk) Enter the value of R Evaluate

Answers

Answer:

Explanation:

To calculate the value of the Ideal Gas Law Constant (R), we need to make some reasonable assumptions about the missing data.

First, let's assume that the atmospheric pressure is 1 atm. This is a reasonable assumption, as atmospheric pressure is typically close to 1 atm at sea level.

Next, we need to calculate the number of moles of gas produced by the reaction. We can do this by using the mass of potassium chlorate before and after the reaction. The initial mass of potassium chlorate was 191.3 mg, and the final mass was 52.9 mg. This means that 191.3 mg - 52.9 mg = 138.4 mg of potassium chlorate were converted into gas.

The molar mass of potassium chlorate is 122.55 g/mol, so 138.4 mg is equivalent to 138.4 mg / 122.55 g/mol = 1.13 x 10^-3 mol of potassium chlorate. Since the reaction produces two moles of gas for every mole of potassium chlorate, the total number of moles of gas produced by the reaction is 1.13 x 10^-3 mol x 2 = 2.27 x 10^-3 mol.

Finally, we need to calculate the volume of gas produced by the reaction. We can do this using the Ideal Gas Law, which states that the volume of a gas is equal to the number of moles of gas times the gas constant (R) divided by the pressure and temperature of the gas. Since we have already calculated the number of moles of gas and we have assumed the pressure to be 1 atm, we just need to calculate the temperature of the gas in Kelvin. The temperature of the gas in Celsius was 34.5 %€, so we can convert this to Kelvin by adding 273.15: 34.5 %€ + 273.15 = 307.65 K.

We also know that the volume of water displaced by the gas is 49.18 mL, and the height of the water column remaining is 5.8 cm. We can convert this to volume by using the formula for the volume of a cylinder: V = πr^2h, where V is the volume, r is the radius of the eudiometer, and h is the height of the water column remaining. Sincethe radius of the eudiometer is half the diameter, we can calculate the radius as 0.5 x 2.5 cm = 1.25 cm. Since the height of the water column remaining is 5.8 cm, the volume of the water displaced by the gas is π x 1.25^2 x 5.8 = 41.83 mL.

We can now use the Ideal Gas Law to calculate the volume of the gas produced by the reaction: V = nR/P * T = 2.27 x 10^-3 mol x 8.31 J/molK / 1 atm x 307.65 K = 0.721 L.

We can now use the Ideal Gas Law to calculate the value of R: R = PV/nT = 1 atm x 0.721 L / 2.27 x 10^-3 mol x 307.65 K = 8.31 J/molK.

Therefore, the value of the Ideal Gas Law Constant (R) is 8.31 J/molK.

In summary, to calculate the value of R, we made some reasonable assumptions about the missing data and used the Ideal Gas Law to calculate the volume of gas produced by the reaction. Using this information, we were able to calculate the value of R to be 8.31 J/molK.

the amino acid phenylalanine can be made in the laboratory. choose the correct reagents needed to make this molecule.

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The amino acid phenylalanine can be made in the laboratory. Ore NH3 reagents needed to make this molecule.

Phenylalanine is a crucial amino acid with the chemical formula C 9H 11NO 2. Its symbol is Phe or F.  Reagents like benzyl group in place of the methyl group in alanine or as a phenyl group in place of the terminal hydrogen. This significant amino acid is classified as neutral and nonpolar due to the inert and hydrophobic nature of the benzyl side chain. The L-isomer is used in the biochemical synthesis of DNA-coded proteins. Precursors of phenylalanine include tyrosine, the monoamine neurotransmitters dopamine, norepinephrine (noradrenaline), and epinephrine (adrenaline), as well as the skin pigment melanin. It is encoded by the codons UUU and UUC. Phenylalanine is a substance found in animal milk. It is used to make food and drink products and is marketed as a dietary supplement due to its analgesic and depressive qualities. It is a direct precursor to the neuromodulator dietary supplement phenethylamine. Because neither humans nor other animals can synthesize phenylalanine, it must be ingested or found in proteins, making it an essential amino acid.

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which are true statements regarding beers law. mark all that apply the curved relationship between absorbance and concentration a

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None of them are true statements regarding beer's law. Limiting factors, including using only diluted liquids and monochromatic light, must be taken into account when applying legislation to any analysis.

Which statement of Beer's law is accurate?

The following is stated by Beer's law: The sample concentration and sample path length for a particular substance are directly related to the light absorbance.

What are Beer's law's three components?

You can see from the formula for absorbance that it depends on three things: the solution's molar absorptivity, the path length, or the distance traveled by light in the sample cell, and the solution's concentration.

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If the nuclide is above the valley of stability, the n/Z ratio is too ____ (high/low) and it will undergo ____ decay to reach the valley of stability.
If the nuclide is below the valley of stability, the n/Z ratio is too ___ (high/low) and it will undergo ___ decay or ___decay to reach the valley of stability.

Answers

If the nuclide is above the valley of stability, the n/Z ratio is too high and it will undergo β decay to reach the valley of stability.

If the nuclide is below the valley of stability, the n/Z ratio is too low and it will undergo β+ decay or α decay to reach the valley of stability.

The nuclear reaction is one that changes the structure of the nucleus of an atom. The atomic numbers and mass numbers in a nuclear equation must be balanced. Protons and neutrons are made up of quarks. The two most common modes of natural radioactivity are alpha decay and beta decay. The nuclear disintegration process that emits alpha particles is called alpha decay.  All nuclei with 84 or more protons are radioactive, and elements with less than 84 protons have both stable and unstable isotopes. All of these elements can go through nuclear changes and turn into different elements.

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calculate the maximum internal crack length allowable for a ti-6al-4v titanium alloy (table 9.1) component that is loaded to a stress one-half its yield strength. assume that the value of y is 1.50.

Answers

The maximum internal crack length allowable for a ti-6al-4v titanium alloy is 4.134 mm.

Calculation:-

Find the allowable internal cracking length as follows:

[tex]2a_{c}\frac{2}{\pi } ( {\frac{k_{ic} }{yo} })[/tex]

= 2/π (55/1.5×455)²

= 0.004134 m

= 4.134 mm

Critical crack length marks the transition from a stable crack growth regime to an unstable crack growth regime leading to catastrophic rupture or failure. The rearrangement gives the critical crack size for a given tensile stress. Ultimate strength is the ability of a material to resist failure and is named.

Critical crack size is the length at which a crack becomes unstable at a given stress. It is very useful in determining the safety of materials. An unstable crack propagates spontaneously without increasing the magnitude of the applied stress once it begins to propagate.

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