Calculate the molarity of a solution containing 61.3 grams of c2h6o in 3.4 l solution.

Answers

Answer 1

The molarity of a solution containing 61.3 grams of C₂H₆O in 3.4 l solution is 0.39M.

The molarity of a solution is the quantity of solute in moles per liter of solution. Molarity is represented by a capital M. A solution is a combination of two or more compounds in chemistry in which neither substance undergoes chemical change.

Molarity = given mass / molecular weight × volume of solution (in L)

Molarity = 61.3 / 46.07 × 3.4

Molarity = 61.3 / 156.63 = 0.39M

Therefore, the molarity of a solution containing 61.3 grams of C₂H₆O in 3.4 l solution is 0.39M.

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Related Questions

Answer question 7. Circle the largest atom or ion in each grouping (I will give brainliest)

S, S^2-, Cl
Al, Al^3+, Mg
Sb, Se, Se^2+
Ca, K^1-, Ca^2+
Be^2+, Be, Na

Answers

According to the atomic radius, the largest atom or ion in each grouping are – [tex]S^2^-[/tex], [tex]Mg[/tex] , [tex]Sb[/tex] , [tex]Ca[/tex] , [tex]Na[/tex] .

A measure of the size of an atom is the atomic radius of a chemical element, which is normally the average distance between the core of the nucleus and the outermost isolated electron. There are several non-equivalent descriptions of atomic radius since the border is not a clearly defined physical object.

Since the net nuclear charge steadily rises as a result of higher electron attraction to the nucleus, the radius of atoms decreases across a period. However, as the number of shells in each atom grows along the group, the atomic radius increases.

Neutral atoms typically become larger down a group and smaller across a period. The radius of a neutral atom increases or decreases as it acquires or releases an electron, becoming an anion or cation, respectively.

In the given groupings, the size of the atoms and ions according to the atomic radius is as follows:

[tex]S^2^- > S > Cl[/tex]

[tex]Mg > Al > Al^3^+[/tex]

[tex]Sb > Se^2^- > Se[/tex]

[tex]Ca > K^+ > Ca^2^+[/tex]

[tex]Na > Be > Be^2^+[/tex]

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Producing sodium chloride (table salt) is impractical and expensive. Sodium
chloride can be extracted from seawater. How could this be
done using a common renewable energy source?

Answers

For the harvesting of salt from seawater, solar energy is used. To evaporate seawater, solar energy is used. As the concentration of the salt increases, it crystallizes.

What is renewable source of energy?

Renewable energy is defined as energy derived from natural sources that is replenished at a faster rate than it is consumed.

Sunlight and wind are two examples of such constantly replenishing sources. Renewable energy sources are plenty and are all around us.

Solar energy is utilized to get salt from seawater. Solar energy is used to evaporate seawater. The salt crystallizes as its concentration increases.

Thus, this way, salt extraction can be done using a common renewable energy source.

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If the initial concentration of so2cl2 is 0.150 m what is the concentration of so2cl2 after 220 s?

Answers

After 210 seconds, 0 e(- kt) = [SO2Cl2]0 (1 - e(- kt)) starting with 0.150M of [SO2Cl2]

[SO2]= 0.150M (1 - e) (1.48 104s 1 000 240 s)

What is concentration of a solution?

The quantity of a solute in a solvent is what we refer to in chemistry as the concentration of a solution. We refer to a solution as being concentrated when there is more solute present. Conversely, we refer to a solution as being diluted when it contains more solvent.

Utilize the integrated first order rate law, which provides the reactant sulfuryl chloride concentration as a function of time t:

([SO2Cl2]0 is the initial concentration, and k is the rate constant.) ln[SO2Cl2] = ln[SO2Cl2]0 - kt. [SO2Cl2] = e[ln[SO2Cl2]0 - kt] = e[ln[SO2Cl2]0] e(- kt) = [SO2Cl2]0 e(- kt)

The chemical equation SO2Cl2 SO2 + Cl2 describes how SO2Cl2 breaks down.

As a result, one mole of sulphur dioxide is produced for every mole of sulfuryl chloride that was lost. The relationship between these chemicals' concentration variations is as follows:

-[SO2Cl2] = [SO2] -

[SO₂Cl₂]

[SO2Cl2] - [SO2] = [SO2] - [SO2]0.

If there wasn't any sulphur dioxide at first, the concentration is as follows:

"SO2" = "SO2Cl2"

[SO2Cl2] = 0 - [SO2Cl2]

₀ - [SO₂Cl₂]

After 210 seconds, 0 e(- kt) = [SO2Cl2]0 (1 - e(- kt)) starting with 0.150M of [SO2Cl2]

[SO2]= 0.150M (1 - e) (1.48 104s 1 000 240 s)

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Which one of the following substances would be the most soluble in cyclohexane, c6h12? nano3 ch3ch2oh c5h12 hi nh3

Answers

The solvent that is most soluble in it will be nonpolar C4H10.

What is nonpolar?

In chemistry, polarity is the separation of electric charge, which causes a molecule or its chemical groups to have an electric dipole moment, with a negatively charged end and a positively charged end.

Due to a difference in electronegativity between the bound atoms, polar molecules must have one or more polar bonds. If the bond dipoles cancel each other out through symmetry, molecules with polar bonds have no molecular polarity.

Dipole-dipole intermolecular forces and hydrogen bonding are two ways that polar molecules communicate with one another. Surface tension, solubility, melting and boiling points, as well as other physical characteristics, are all governed by polarity.

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What mass of oxygen reacts with 9.2g Sodium? 4 Na + O₂ → 2 Na₂O​

Answers

Answer:

About 3.201g O2

Explanation:

Calculate the molality of each of the following aqueous solutions. (a) 4.10 m kcl solution (density of solution = 1.09 g/ml) m (b) 41.7 percent by mass nabr solution.

Answers

(a) The molality of KCl solution is 5.23 m.

(b) The molality of NaBr solution is 6.95 m.

(a) c = 4.10 M; concentration of the solution

d = 1.09 g/ml; density of KCl solution

M(KCl) = 74.55 g/mol; molar mass of the solute

b = 1000×c /1000×d - c×M(KCl)

b = 1000 × 4.1 M / 1000 × 1.9 - 4.1 × 74.55

b = 5.23 mol/kg; molality of KCl solution

(b) ω(NaBr) = 0.417; percent by mass

m = 1.0 kg; mass of the solution

m(NaBr) = 417 g; mass of the solute

n(NaBr) = 417 g ÷ 102.9 g/mol

n(NaBr) = 4.05 mol; amount of the solute

m(H₂O) = 0.583 kg; mass of water

b = n(NaBr) ÷ m(H₂O)

b = 4.05 mol ÷ 0.583 kg

b = 6.95 mol/kg; molality of NaBr solution

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What of the following of density is true. a density is measured in grams. density is mass per unit volume. density is measured is millimeters density is a chemical property

Answers

mass per unit volume

What is the mass of an object that requires a force of 25 N to accelerate at 5 m/s/s?

Answers

An object with a mass of 5 kg requires a force of 25 N to accelerate at 5 m/s/s.

Force is described as the amount of energy need to move an object, either push or pull. For an object of constant mass, force is equal to the product when you multiply mass and its acceleration.

F = ma

where F = force (N or kg m/s^2)

m = mass (kg)

a = acceleration (m/s^2)

If an object requires a force of 25 N (= 25 kg m/s^2) to accelerate at 5 m/s/s, the using the formula F = ma, solve for its mass.

F = ma

25 N = 5 m/s/s (m)

25 kg m/s^2 = 5 m/s/s (m)

25 = 5m

m = 5 kg

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Is flour homogeneous or heterogeneous mixture?

Answers

Answer:

Flour is heterogeneous mixture.

Explanation:

Because you can see the different parts of the mixture,And they're normally not uniformly mixed.

Calculate the number of atps that will be made in the complete oxidation of arachidonic acid.

Answers

The number of ATPs that will be made in the complete oxidation of arachidonic acid is 155.

There are 9 β-oxidation cycles for complete oxidation of arachidonic acid (it has 20 carbon atoms).

Arachidonic acid has 20 carbon atoms and four double bonds (see picture below).

One β-oxidation (beta-oxidation) cycle produces 1 NADH, 1 FADH2, and 1 acetyl CoA (sea the picture below).

For 9 cycles: 9 NADH, 9 FADH2, and 10 acetyl CoA.

NADH and FADH2 enter Electron Transport System (ETS) cycle to generate 3ATP and 2ATP respectively.

Acetyl CoA enter into tricarboxylic acid cycle (TCA) and each CoA gives 12 ATP.

9 NADH = 9 x 3 = 27 ATP

9 FADH2 = 9 x 2 = 18 ATP

10 acetyl-CoA = 10 x 12 = 120 ATP

Net yield of ATP = 27 ATP + 18 ATP + 120 ATP -2 ATP - 8 ATP (it has four double bonds)

Net yield of ATP = 155 ATP

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Which one of the following substances will give an aqueous solution of ph < 7?
(a) na2co3
(b) ch3coona
(c) ki
(d) ch3oh
(e) nh4br

Answers

The substance that will give an aqueous solution of pH < 7 is (e) NH₄Br.

a) Balanced chemical equation for the reaction of sodium carbonate with water: Na₂CO₃ + 2H₂O → 2NaOH + H₂CO₃

Hydrolysis of this salt gives strong base (NaOH) and weak acid (H₂CO₃), so pH is greater than 7

b) Hydrolysis of sodium acetate gives strong base (NaOH) and weak acid (CH₃COOH), so pH is greater than 7

c) Hydrolysis of potassium gives strong base (KOH) and strong acid (HI), so pH is equal to 7

d) Methanol is neutral, pH is equal to 7

e) Hydrolysis of ammonium bromide gives weak base (NH₄OH) and strong acid (HBr), so pH < 7.

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Solve the given differential equation by using an appropriate substitution. the de is of the form dy dx = f(ax by c), which is given in (5) of section 2.5. dy dx = (x y 3)2

Answers

Solution for the differential equation xdx + (y - 2x)dy = 0 is x/(y(x) - 1) + log((y(x) - x)/x) c1 - log(x)

What is differential equation?

A differential equation in mathematics is an equation that connects the derivatives of one or more unknown functions. Applications often involve functions that reflect physical quantities, derivatives that depict the rates at which those values change, and a differential equation that establishes a connection between the three.

One or more terms as well as the derivatives of the dependent variable in respect to the independent variable make up a differential equation (i.e., independent variable) dydx. = f (x) The independent variable in this case is "x," while the dependent variable is "y." For instance, dydx.

A function y=f(x) that satisfies the differential equation when f and its derivatives are replaced into the equation is a solution to a differential equation.

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A 1.20 g sample of an unknown has a volume of 1.73 cm^3. what is the density of the unknown?

Answers

The sample density is 690 kg/m³.

We need to know about the density to solve this problem. Density is a unit that measures how dense an object is. Density can be measured by dividing mass by volume. It can be written as

ρ = m / V

where ρ is density, m is mass and V is volume

From the question above, we know that

m = 1.20 gram

V = 1.73 cm³

By substituting the following parameters, we get

ρ = m / V

ρ = 1.2 / 1.73

ρ = 0.69 g/cm³

Convert to SI unit (kg/m³)

ρ = 0.69 g/cm³

ρ = 0.69 x 10¯³ kg/ 10¯⁶ m³

ρ = 690 kg/m³

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Refer to the graph you prepared and determine the following: Interpolation: The amount of hydrogen that would be produced by dropping 2.5 grams of zinc in 100 mL of sulfuric acid solution with th same concentration? mL​

Answers

By interpolation, the volume of hydrogen gas produced is 800 mL.

What is the amount of hydrogen that would be produced by dropping 2.5 grams of zinc in 100 mL of sulfuric acid solution with the same concentration?

The reaction between zinc granules and sulfuric acid solution to produce hydrogen gas is given by the equation below:

Zn (s) + H₂SO₄ → ZnSO₄ + H₂ (g)

In the given reaction, zinc displaces hydrogen from solution to form zinc ions and hydrogen gas is evolved.

The volume of hydrogen gas evolved per unit time, and hence the reaction rate depends on the concentration of the sulfuric  acid. The higher the concentration of the sulfuric acid, the greater the volume of hydrogen gas produced per unit time.

Considering the graph of the given volume of hydrogen produced against time for the reaction carried out by by dropping 2.5 grams of zinc in 100 mL of sulfuric acid solution with the same concentration;

By interpolation, the volume of hydrogen gas produced is 0.8 L or 800 mL.

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3.
sublimation, condensation, evaporation,
boiling, melting, freezing
Classify the above processes into two
groups: heat taken in and heat given out
by the particles.

Answers

Answer:

sublimation:heat taken in

condensation:heat given out

evaporation:heat taken in

boiling:heat taken in

melting:heat taken in

freezing:heat given out

Processes listed can be classified into two groups based on whether heat is taken in or given out by the particles.Heat is taken in melting,evaporation, sublimation while heat is given out in boiling,condensation and freezing.

Heat taken in by the particles:

1. Sublimation: This process occurs when a substance changes from a solid directly to a gas without passing through the liquid phase. Heat is absorbed to break the intermolecular forces holding the particles in the solid phase.

2. Evaporation: This process happens when a liquid changes into a gas at temperatures below its boiling point. Heat is absorbed from the surroundings to overcome the intermolecular forces between the liquid particles.

3. Melting: Melting occurs when a solid substance changes into a liquid. Heat is absorbed to break the intermolecular forces holding the particles in the solid phase.

Heat given out by the particles:

1. Condensation: Condensation occurs when a gas changes into a liquid. Heat is released to the surroundings as the gas particles lose energy and come together to form liquid droplets.

2. Boiling: Boiling is the process where a liquid changes into a gas throughout its entire volume. Heat is released to the surroundings as the liquid particles gain energy and escape the liquid phase.

3. Freezing: Freezing is the process where a liquid changes into a solid. Heat is released to the surroundings as the liquid particles lose energy and arrange themselves into a regular pattern.

Thus, heat is taken in melting,evaporation, sublimation while heat is given out in boiling,condensation and freezing.

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Calculate the mass fraction of sodium chloride in the solution if 20 g of it is dissolved in 300 ml of water.
Solve with explanation! Given: Solution:

Answers

The mass fraction of sodium chloride is 0.0625

What is the mass fraction of sodium chloride in the solution?

The mass fraction of sodium chloride is the ratio of the mass of sodium chloride to the total mass of the solution.

The mass fraction of sodium chloride is determined as follows;

mass of sodium chloride = 20 g

mass of water = volume * density

density of water = 1 g/mL

volume of water = 300 mL

mass of water = 300 mL * 1 g/mL

mass of water = 300 g

total mass of solution = 20 + 300 = 320 g

mass fraction of sodium chloride = 20/320

mass fraction of sodium chloride = 0.0625

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when the body is able to keep balance. some examples include getting more oxygen when needed and getting a fever to kill of viruses.
yin
triple beam
Homeostasis
yang

Answers

Answer: Homeostasis

Explanation: Homeostasis refers to stable equilibrium in the body. It is the condition of optimal functioning for a living organism, where no part of the body has excess stress put upon it. Some more examples of homeostasis include maintaining normal body temperature and blood sugar levels.

Answer:

Homeostasis

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A buffer is prepared by mixing 37.2 ml of 0.209 m naoh with 125.7 ml of 0.231 m acetic acid. what is the ph of this buffer? (the pka for acetic acid is 4.75.)

Answers

Calculate the moles in each reactant

Acetic Acid (.231 mol/L)(0.125L)=  2.887 x 10^-2 mol AA

NAOH (.209mol/L)(.037L)= 7.733 x 10^-3 mol NaOH

As you can see, we have more AA and less NaOH, so NaOH is the limiting reactant.

NaOH + CH3COOH -> NaCH3COOH + H2O​

start: 4.5 mmol, 8.75mmol, 0, n/a

change: -4.5 mmol, -4.5mmol, 4.5mmol, n/a

after rxn: 0, 4.25 mmol, 4.5mmol, n/a​

Now your HH equation

pKa + log(conjugate base/acid) = 4.75 + log(4.5x10^-3 / 4.25x10^-3) =

pH = 4.76

What is Henderson-Hasselbalch equation?

The Henderson-Hasselbalch equation in chemistry and biology connects the pH of a weak acid solution to its acid dissociation constant, Ka, and the ratio of the concentrations of the acid and its conjugate base in equilibrium.

When both the pH of the solution and the ratio of ionized to unionized forms are known, the Henderson Hasselbalch equation can be used to calculate the pKa.

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2. In a chemical reaction, what do we call the original substances?
3. In a chemical reaction, what do we call newly made substances?
4. What are the three common states of matter?
5. If the mass of all the reactants in a chemical reaction is 100g, what will the mass
of all the products be?

Answers

Answer:

2. Reactants

3. Products

4. Solid, Liquid, Gas

5. 100g

Please Answer asap!!!

Answers

Answer:

The second one

Explanation:

It the graph is correct, it has the most nuetrons

What is the concentration of [h ] in molars, millimolars, and micromolars for a solution of ph 5?

Answers

concentration of [h +] in molars millimolars, and micromolars for a solution of ph 5

molar concentration of  [H +] = 10^(-5)M

concentration of  [H +] in millimolar = 10^(-8)milliM

concentration of  [H +] in micromolar = 10^(-11)microM

What is molars, millimolar and micromolar?

The term "molar" describes the moles per litre of a solution, which is the unit of concentration molarity. The phrase is most frequently used in chemistry to refer to a solute's molar concentration in a solution. Molar concentration is measured in mol/L or M.

A millimolar is a unit used to quantify molar concentration. It is a multiple of unit molar generated from SI that is frequently stated as 10 -3 molar.

A measuring unit for molar concentration is called a micromolar. It is a multiple of unit molar generated from SI that is frequently stated as 10 -6 molar.

pH = -log 10 [H +]

Thus, molar concentration of  [H +] = 10^(-5)M

concentration of  [H +] in millimolar = 10^(-8)milliM

concentration of  [H +] in micromolar = 10^(-11)microM

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Recall that there is restricted rotation around carbon-carbon double bonds. Maleic acid and fumaric acid are two isomers with vastly different physical properties and pka values for loss of both protons. Explain why each of these differences occurs.

Answers

The molecular formulas of maleic and fumaric acids are identical, but fumaric acid is a trans isomer while maleic acid is a cis isomer. The two acids have different physical properties even though they have the same molecular structure.

The melting point of fumaric acid is higher than that of maleic acid. In this case, polarity is much less critical than intermolecular hydrogen bonding in determining the relative stability of the crystal lattice and, consequently, the melting temperature of both acids. The carboxyl groups in fumaric acid can hydrogen bond with their neighbors, whereas the carboxyl groups in maleic acid form an intramolecular hydrogen bond. It requires more effort to break the bonds in the trans isomer than in the cis isomer because of the efficient packing structure of fumaric acid. Since fumaric acid has strong intermolecular forces, its melting point is higher.

The cis configuration, dipole-dipole interaction, and hydrogen bonding of the molecule make maleic acid polar, which makes it soluble in water. Because water is also polar, it can dissolve quickly in it. Fumaric acid is a non-polar molecule, but is not very soluble in water, despite the instantaneous induced dipole that the London Dispersion forces have for the molecule.

After losing the H⁺ ion, malic acid's cis isomer can create intramolecular H bonds, which makes the conjugate base more stable than the trans form (Fumaric acid).

Maleic acid has a higher tendency to lose H⁺ than fumaric acid because intramolecular H-bonding stabilizes the conjugate base by H-bonding, as shown in the first and second figures of the image given below:

Because maleic acid contains intramolecular H-bonding, fumaric acid has a lower pKa₂ than maleic acid when the second H is taken out.

As the acidity rises, the value falls because pKa is the negative logarithm of Ka. Maleic acid has a higher initial dissociation constant than fumaric acid as a result of stable conjugate base synthesis, which increases the former's acidity. Due to the structures of the singly dissociated ions, fumaric acid undergoes the second dissociation more quickly. Fumaric acid is a simple two distinct carboxylate group that dissociates relatively separately.

Maleic acid, on the other hand, only undergoes one dissociation to form a more robust resonant ring structure. The remaining hydrogen can now alternately bond to the oxygen in positions 2 and 3 to form an alternating 3 Center bond because it is a 1,4 dicarbonyl with an alkene between those two positions. The alternating 3 Center bond creates a seven-part aromatic ring because an alkene is located next to it. The conjugate base of maleic acid is stabilized and has fewer acidity thanks to aromatic rings. Look at the image below, specifically the third number figure.

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The number of radioactive nuclei in a particular sample decreases to one-eighth of its original number in 9 days. what is the half-life of these nuclei?

Answers

The number of radioactive nuclei in a particular sample decreases to one-eighth of its original number in 9 days. The half-life of these nuclei is 3 days.

According to radioactive decay law,

n(t) = No [tex]e^{-kt}[/tex]

where n is number at t and No is starting number

when t = 9, n/No = 1/8 = 0.125

so

0.125 =  [tex]e^{-k9}[/tex]

ln 0.125 = -9 k

k = 0.231

So,

half life = [tex]t\frac{1}{2}[/tex] = 0.693/k

half life = [tex]t\frac{1}{2}[/tex] = 0.693/0.231

half life = [tex]t\frac{1}{2}[/tex] = 3days

Therefore, when the number of radioactive nuclei in a particular sample decreases to one-eighth of its original number in 9 days. The half-life of these nuclei is 3 days.

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When comparing 2 hydrocarbons, why would the larger, higher molecular weight molecule have a higher melting point?

Answers

When comparing two hydrocarbons, the larger, higher molecular weight molecule would have a higher melting point due to greater amounts of dispersion forces.

What are hydrocarbons?

Hydrocarbons are organic compounds made up of only carbon and hydrogen. They are non-polar molecules; therefore, they do not have partial charges or hydrogen bonds. The only form of intermolecular attraction between them are dispersion forces.

What are dispersion forces?

Dispersion forces are the weakest type of intermolecular forces. They exist in non-polar molecules and gases like neon, hydrogen gas and oxygen gas. It is formed by the attraction between electrons and the nucleus.

Hydrocarbons with higher molecular weights have more electrons surface area than hydrocarbons with lower molecular weights. This causes the dispersion forces between the molecules to increase, thereby causing an increase in boiling point.

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The density of a solid is 2.88 g/cm³. The dimensions are 3.2 cm by 1.8 cm by 3.0 cm. What is the mass of the solid?​

Answers

Answer:

49.7664g

Explanation:

First, we define the formula for the density of a matter.

Density = Mass ÷ Volume

Rearranging the formula, to find mass, we have:

Mass = Density × Volume = 2.88 × (3.2 × 1.8 × 3) = 49.7664g

Take note of all the units,ensure all matches, otherwise, you might have to do some conversions.

Are Alkaline Earth Metals more likely to GAIN the 6 needed electrons or LOSE the 2 electron that it has?

Answers

Lose 2 that it has bc it’s the lower number

A hypothesis is _____

A: a law


B: an educated guess


C: a fact


D: always proven

Answers

I think it's the D because you should prove it

How many positional isomers of nonene are there? (consider only linear compounds, not branched isomers.)
a. 2
b. 3
c. 4
d. 5
e. 6

Answers

Option c is correct. If we only look at linear compounds and overlook branched isomers, nonene has 4 positional isomers.

Nonene is an with the molecular formula C₉H₁₈. Many structural isomers are possible, depending on the location of the C=C double bond and the branching of the other parts of the molecule. In general, nonene has 35 positional isomers if we also consider branched isomers but the demand of the question is only regarding linear compounds, so that's why the answer is four.

The most essential nonenes are propene trimers such as tripropylene. Generally, the mixture of branched nonenes is used in the alkylation of phenol to produce nonylphenol, a precursor to detergents.

What exactly are positional isomers?

Positional isomers are constitutional isomers that share the same carbon skeleton and functional group. They differ in the location of the functional groups on the carbon chain.

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Checkout the attached image here :

A cup of coffee contains 87.2 mg of caffeine. how many grams is this?

Answers

Answer:

0.0872g

Explanation:

Since mg is smaller than g, you will have to multiply the mg by milli which is equal to 10⁻³.

87.2 × 10⁻³ = 0.0872 grams

A cup of coffee contains 87.2 mg of caffeine. The number of grams  present in the cup of coffee is 0.0872g.

What are grams and milligrams?

Grams and milligrams are the measurement units that measure the amount or quantity of matter. It measures the solid mass and the quantity of matter. It is the SI unit of mass. There are seven units of measurement.

These units are Length - meter (m), Temperature - kelvin (K), amount of substance - mole (mole), Luminous intensity - candela (cd), Electric current - ampere (A), Mass - kilogram (kg), Time - second (s).

Here the mass of caffeine is asked in grams, which are given in milligrams.  

As we know, 1 gram is = 1000 milligrams.

0.0872g = 87.2 mg

Thus, the number of grams present in the cup of coffee is 0.0872g.

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When water dissolves a substance, weak charges on water molecules attract oppositely charged portions of the substance, pulling them out into solution. Which property of water accounts for this occurrence?.

Answers

Answer:

When water dissolves a substance, the water molecules attract and “bond” to the particles (molecules or ions) of the substance causing the particles to separate from each other. The “bond” that a water molecule makes is not a covalent or ionic bond. It is a strong attraction caused by water’s polarity.

Explanation:

Other Questions
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