A conducting sphere has a net charge of 4.8  1017

c. what is the approximate number of excess electrons on the sphere?

Answers

Answer 1
A net charge of the sphere is the overall charge of the sphere. If it says that there are excess electrons, it means that the net charge is negative. Also, the quantity of charge of sub particles are very small so that must be 10 to the power of negative 17. So, I think the net charge is -4.8×10⁻¹⁷ Coulombs.

Then, we use the electrical charge of an electron which is equal to 1.60217662×10⁻¹⁹ C/electron. Therefore,

-4.8×10⁻¹⁷ Coulombs * 1 electron/-1.60217662×10⁻¹⁹ C = 299.592

Therefore, there are approximately 300 excess electrons.
Answer 2

Final answer:

To find the number of excess electrons on a conducting sphere with a net charge of -4.8 × 10⁻¹⁷ C, the total charge is divided by the charge of a single electron, resulting in approximately 300 excess electrons.

Explanation:

The question asks about the number of excess electrons on a conducting sphere with a net charge of –4.8 × 10⁻¹⁷ C. To find the number of excess electrons, we need to divide the total charge by the charge of a single electron, which is approximately 1.6 × 10⁻¹⁹ C. The calculation is as follows

Number of electrons = Total charge / Charge of one electron

= (-4.8 × 10⁻¹⁷ C) / (1.6 × 10⁻¹⁹ C)

= 3 × 10² electrons.

Therefore, the sphere has approximately 300 excess electrons.


Related Questions

Identify the compounds that are soluble in both water and hexane. identify the compounds that are soluble in both water and hexane. 1-propanol and 1-pentanol 1-butanol and 1-pentanol ethanol and 1-butanol ethanol and 1-propanol methanol and 1-butanol

Answers

The correct answer would be the fourth option. The compounds ethanol and 1-propanol are soluble to both water and hexane. Ethanol and 1-propanol are completely soluble in water as they both contain a polar end due to the hydrogen bonding present in the -OH functional group. Both are soluble in hexane since both contains a non polar end, the aliphatic hydrocarbon chain. Solubility of alcohols varies increasingly as the hydrocarbon chain increases since it makes them more non polar. However, for branched molecules, non polar properties would decrease. So, the best option from the list of choices would be ethanol and 1-propanol.
Final answer:

The compounds that are soluble in both water and hexane are usually polar compounds with a small size, such as ethanol and 1-butanol.

Explanation:

The compounds that are soluble in both water and hexane are usually polar compounds with a small size. This is because water is a polar solvent and hexane is a nonpolar solvent. Polar compounds, such as alcohols, have a hydroxyl group that can interact with the polar water molecules, while their nonpolar alkyl chain allows them to dissolve in hexane.

Out of the given options, ethanol and 1-butanol can dissolve in both water and hexane. Larger alcohols such as 1-pentanol and alcohols with longer alkyl chains are typically less soluble in water because their hydrophobic alkyl chains dominate over the specific hydrophilic hydroxyl group.

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Calculate the radius of an aluminum atom in cm, given that al has an fcc crystal structure, a density of 2.70 g/cm3, and an atomic weight of 26.982 g/mol

Answers

for FCC (face centered cubic) crystal structure, n = 4 atoms/unit cell and Vc = 16R³√2, Now
 density (ρ) = nA₍al₎/VcNA
ρ = nA₍al₎/(16R³√2)N₍A₎
calculate R from this equation, R = [(nA₍al₎)/(16ρN₍A₎√2)]¹/³
R = [(4 atoms/unit cell)(26.982 g/mo) / (16(2.70 g/cm3)(6.023 x 10²³ atoms/mol)√2)]¹/³
R = 1.43 x 10⁻⁸ cm

A 2.50-l volume of hydrogen measured at â196 °c is warmed to 100 °c. calculate the volume of the gas at the higher temperature, assuming no change in pressure

Answers

To solve this we assume that the hydrogen gas is an ideal gas. Then, we can use the ideal gas equation which is expressed as PV = nRT. At a constant pressure and number of moles of the gas the ratio T/V is equal to some constant. At another set of condition of temperature, the constant is still the same. Calculations are as follows:

T1 / V1 = T2 / V2

V2 = T2 x V1 / T1

V2 = (100 + 273.15) K x 2.50 L / (-196 + 273.15) K

V2 = 12.09 L

Therefore, the volume would increase to 12.09 L as the temperature is increased to 100 degrees Celsius.

Final answer:

The problem is about Charles's Law, which states the volume of a gas is directly proportional to its absolute temperature, while pressure is constant. With the data provided, using this concept in a formula, we calculate the volume of hydrogen to be roughly 12.16 Liters at 100°C.

Explanation:

The question pertains to Charles's Law in Physics, specifically about gases. Charles's Law states that the volume of a given gas mass is directly proportional to its absolute temperature, provided that the pressure is kept constant.

For the problem given, the initial volume (V₁) of the hydrogen gas is 2.50 L, and its initial temperature is -196°C, which must be converted to Kelvin (K) by adding 273 (equating to 77K). The gas is warmed to 100°C, or 373K (T₂).

To calculate the volume of the gas at the higher temperature (V₂), we use the formula for Charles's Law: V₁/T₁ = V₂/T₂. Substituting in the provided values, we get (2.50 L / 77 K) = V₂ / 373K. Solving for V₂, we find that the volume of the hydrogen gas at 100°C is approximately 12.16 L.

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While doing a distillation, Farha heats the mixture too fast, and the temperature rises too quickly. If the mixture is composed of two liquids, how will this likely affect the separation of the mixture?

A) The liquids will be separated in reverse order.
B) Both liquids will evaporate and escape into the air.
C) The liquid with the lower density will be collected before the liquid with the higher density.
D) Some liquid with the higher boiling point will be collected along with the liquid with the lower boiling point.

Answers

D as the two substances could have close boiling points, so if the temperature is not controlled well, both substances will evaporate.

Answer is: D) Some liquid with the higher boiling point will be collected along with the liquid with the lower boiling point.

For example if we have mixture of water and alcohol ethanol, we can separate water and ethanol with distillation (process of heating and cooling).

Ethanol and water have different boiling points (physical property), ethanol has boiling point (78.37°C) and water (100°C).

When the mixture is quickly heated, water contains a lot of ethanol.

The temperature should stay more or less constant.

What type(s) of intermolecular forces are expected between seh2 molecules?

Answers

Answer:

Induced and dipole forces.

Explanation:

Hello,

Due to its structure, [tex]SeH_2[/tex], one identifies the following two intermolecular forces:

- Induced: Ion-Induced Dipole Forces

At first, an ion-induced dipole attraction is present as a weak force which results when the approach of an ion induces a dipole in this nonpolar molecule by disturbing the arrangement of electrons.

- Dipole forces.

Now, dipole-dipole forces are present in such molecule as attractive forces between the positive end of one of the polar molecule and the negative end of another polar space in the molecule.

Best regards.

The types of intermolecular forces between SEH2 molecules are London dispersion forces and dipole-dipole forces.

The types of intermolecular forces that are expected between SEH2 molecules are London dispersion forces and dipole-dipole forces.

London dispersion forces occur between all molecules, and they result from the temporary fluctuations of electron distribution that create a temporary dipole.

Dipole-dipole forces occur when the positive end of one molecule attracts the negative end of another molecule due to the difference in electronegativity or polarity between the atoms of the molecule.

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What are [Ba2+] and [CrO42−] in a saturated BaCrO4 solution if the Ksp of BaCrO4 is 1×10−10?

[Ba2+] =

[CrO42−] =

Answers

1)  Chemical equation of the equilibrium

BaCrO4⇄ Ba (2+) + CrO4 (2-)

2) Ksp equation

Ksp = [Ba(2+)] [CrO4 (2-)]

where Ksp = 1.0 * 10^ - 10 and [Ba(2+)] = [CrO4(2-)] = x

3) Calculations

1.0 * 10^ -10 = x * x

=> x^2 = 1.10 * 10^-10

=> x = √[1.0 * 10^ -10] = 0.000010

Answer: [Ba(2+)] = [CrO4(2-)] = 0.00001 M

Final answer:

The concentrations of[tex]Ba^{2+} and CrO_4^{2-[/tex] in a saturated solution of BaCrO4 with a Ksp of 1×10^{−10} are both 1×10^{−5} M.

Explanation:

The student asked about the concentrations of [tex]Ba^{2+} and CrO_4^{2-[/tex] in a saturated solution of barium chromate (BaCrO4) given that the solubility product constant (Ksp) is 1×10−10. In a saturated solution, the ions Ba2+ and CrO42− would be present in equal molar amounts, as the dissolution of BaCrO4 produces one of each ion. Hence, the Ksp equation for this dissolution is [tex]K_{sp} = [Ba^{2+}][CrO_4^{2-}][/tex]. Since both ions are in a 1:1 ratio, we can set [tex][Ba^{2+}] = [CrO_4^{2-}] = x[/tex]. Therefore, Ksp = x·x = x2 = 1×10^−10, and solving for x gives x = √(1×10^−10) = 1×10^−5M. This is the concentration of both Ba2+ and [tex]CrO_4^{2-[/tex] in the saturated solution.

Select the reason why two molecules of benzaldehyde cannot react via the aldol condensation.

Answers

Benzaldehyde or C6H5CHO would not undergo the aldol condensation because it does not contain an alpha-hydrogen in its structure. Aldol condensation is a type of reaction that happens between an enolate and an aldehyde or ketone leading to a alkene that has a planar structure. The lack of an alpha-hydrogen would not allow for it to undergo such process since it cannot enolize. Benzaldehyde undergoes a nucleophilic reaction known as Claisen-Schmidt condensation. It has somehow same mechanism of the aldol reaction however, the nucleophilic attack on the carbonyl happens even without the alpha-hydrogen but with an enolate that is from a ketone.

The reason why two molecules of benzaldehyde cannot react via the aldol condensation is that in benzaldehyde, alpha hydrogen is not present to form enolate ion.

What is aldol condensation reaction?

Aldol condensation is a reaction in which beta-hydroxyaldehyde or ketone is formed by the reaction between an enolate ion and carbonyl compound.

Enolate ion which is formed in the aldol condensation is formed by the replacement of alpha hydrogen and then this ion will attack on the carbonyl group of another compound.

So, in the benzaldehyde alpha hydrogen is not present which in turn will not form enolate ion to attack that's why two molecules of benzaldehyde cannot react.

Hence due to lack of alpha hydrogen benzaldehyde will not reacts.

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What effect does the use of an uncalibrated thermometer have on the boiling point?

Answers

The pressure of the atmosphere Boiling point is defined as when the vapor pressure of the liquid equals to the atmospheric pressure then it starts to boil that temperature is called boiling point.

A voltaic cell is constructed with two silver-silver chloride electrodes, where the half-reaction is

Answers

The silver chloride electrode usually functions as a redox electrode where the equilibrium is achieved between silver and its salt (silver chloride).
The half reaction for this electrode is as follow:
AgCl(s)+e−→Ag(s)+Cl−(aq) where:
(s) refers to solid state
(aq) refers to the aqueous state and 
e- is the electron

What would be the resulting molarity of a solution made by dissolving 25.4 grams of KOH in enough water to make a 985-milliliter solution? Show all of the work needed to solve this problem.

Answers

Hey there !

Molar mass KOH = 56.1056 g/mol

1) Number of moles :

n = m / mm

n = 25.4 / 56.1056 

n =0.452 moles

Volume in liters :
 
985 mL / 1000 => 0.985 L

Therefore:

M = n / V

M = 0.452 / 0.985

=> 0.458 M

What is the [h3o+] at equilibrium of a 0.50 m weak acid (ha) solution if the ka of the acid is 4.6 × 10−4?

Answers

Answer : The concentration of [tex]H_3O^+[/tex] at equilibrium is, 0.015 M

Solution :

The balanced equilibrium reaction will be,

[tex]HA+H_2O\rightleftharpoons H_3O^++A^-[/tex]

The expression for dissociation constant of weak aciod will be,

[tex]k_a=\frac{[H_3O^+]\times [A^-]}{[HA]}[/tex]

where,

[tex]k_a[/tex] = dissociation constant of weak acid

Let the concentration of [tex]H_3O^+[/tex] and [tex]A^-[/tex] be 'x'

Now put all the given values in this expression, we get

[tex]4.6\times 10^{-4}=\frac{(x)\times (x)}{0.50}[/tex]

[tex]x=0.015M[/tex]

The concentration of [tex]H_3O^+[/tex] = [tex]A^-[/tex] = x = 0.015 M

Therefore, the concentration of [tex]H_3O^+[/tex] at equilibrium is, 0.015 M

What is the molarity of a solution that contains 9.63 grams of HCl in 1.5 liters of solution? 1 H 1.01 Hydrogen 17 Cl 35.45 Chlorine

Answers

Hey there !

Molar mass HCl :

HCl =1.01 + 35.45 => 36.46 g/mol

Number of moles ( solute) :

n = m / mm

n = 9.63 / 36.46

n = 0.2641 moles

Therefore :

M = moles / volume ( L )

M = 0.2641 / 1.5

=> 0.176 M


He atomic mass of an element is equal to ________. its mass number its atomic number one-twelfth of the mass of a carbon-12 atom the mass of an "average atom" the mass of the heaviest isotope

Answers

Its atomic number! The mass number is the number that is much smaller than the atomic number and usually under the formula. 

What is the ph of a solution made by combining 157 ml of 0.35 m nac2h3o2 with 139 ml of 0.46 m hc2h3o2? the ka of acetic acid is 1.75 × 10-5?

Answers

The first step is to calculate the molarity of each compound:
final volume of solution = 157 + 139 = 296 mL
molarity of nac2h3o2 = (157 x 0.35) / 296 = 0.1856 molar
molarity of hc2h3o2 = (139 x 0.46) / 296 = 0.216 molar

Then, we calculate the pH as follows:
pKa of acetic acid = -log(1.75 × 10^-5) = 4.7569
pH = pKa +  log ([salt] / [acid]) 
     = 4.7569 + log(0.1856 / 0.216)
     = 4.691

A solution contains 0.10 m sodium cyanide and 0.10 m potassium hydroxide. solid zinc acetate is added slowly to this mixture. what is the formula of the substance that precipitates first?

Answers

1) Zn(CH₃COO)₂(s) + 2KOH(aq) = Zn(OH)₂(s) + 2CH₃COOK(aq)

Ksp{Zn(OH)₂}=1.2*10⁻¹⁷

2) Zn(CH₃COO)₂(s) + 2NaCN(aq) = Zn(CN)₂(s) + 2CH₃COONa(aq)

Ksp{Zn(CN)₂}=2.6*10⁻¹³


Ksp{Zn(OH)₂}<Ksp{Zn(CN)₂}

Zn(OH)₂ precipitates first

From the solubility products of the solutes produced, the Ksp of {Zn(OH)₂ is less than the Ksp of Zn(C_N)₂, Zn(OH)₂ precipitates first.

What is solubility product? Ksp of a solute?

The solubility product, Ksp of a solute is the product of the ions produced when a solute dissociates into ions when dissolved in a solvent.

The higher the Ksp of a solute, the more soluble it is ain a solvent.

The equation of the reaction of zinc acetate with each of the solutions as well their solubility products is given below:

[tex] Zn(CH₃COO)₂(s) + 2KOH(aq) \rightarrow Zn(OH)₂(s) + 2CH₃COOK(aq) \\ [/tex]

[tex]Ksp \: {Zn(OH)₂}=1.2*10^{-17}[/tex]

[tex]Zn(CH₃COO)₂(s) + 2NaC \: N(aq) \rightarrow Zn(C \: N)₂(s) + 2CH₃COONa(aq) \\ [/tex]

[tex]Ksp \: {Zn(C \: N)₂}=2.6*10^{-13}[/tex]

Therefore, since the Ksp of Zn(OH)₂ is less than the Ksp of Zn(C_N)₂, Zn(OH)₂ precipitates first.

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The rates of which reactions are increased when the temperature is raised?
a. endothermic reactions only
b. both endothermic reactions and exothermic reactions
c. exothermic reactions only
d. depends on the value of delta h not the sign

Answers

A because endothermic reactions require a net gain of energy (in the form of heat)

We have that the he rates of which reactions are increased when the temperature is raised is  endothermic reactions only

Option A

Endothermic Reaction

Generally, the rates of which reactions are increased when the temperature is raised is an Endothermic reaction only

This assertion lies on the basis of the fact that  Endothermic reaction requires a net gain of energy for reaction

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Determine the number of protons and neutrons in plutonium-239 and write its symbol in the form azx.

Answers

94 protons and 145 neutrons

Explanation:

Atomic number of an atom means the sum of total number of protons present in an atom.

Mass number is the sum of total number of protons and neutrons present in an atom.

And, when we write the symbol of an atom then it is represented like this [tex]^{a}_{z}X[/tex], where "a" represents the mass number of the atom and "z" represents the number of protons.

Therefore, in plutonium-239 it is shown that mass number is 239 and atomic number of a plutonium atom is 94. Now, calculate its number of neutrons as follows.

         Mass number = no. of protons + no. of neutrons

                 239 = 94 + no. of neutrons

           no. of neutrons = 239 - 94

                                      = 145

Thus, we can conclude that in plutonium-239 number of protons is 94, number of neutrons is 145 and its symbol is [tex]^{239}_{94}Pu[/tex].

An analytical chemist has determined by measurements that there are 96.5 moles of carbon in a sample of acetic acid. how many moles of oxygen are in the sample

Answers

Final answer:

In a sample of acetic acid, the number of moles of oxygen can be calculated by understanding the molecular formula of acetic acid (CH3COOH) and using it to establish the ratio of carbon to oxygen. Given 96.5 moles of carbon in the sample, there would be 193 moles of oxygen.

Explanation:

To find the amount of moles of oxygen in a sample of acetic acid, we must first understand the molecular formula of acetic acid which is CH3COOH. This reveals that for each molecule of acetic acid, there are 2 atoms of carbon and 4 atoms of oxygen. Hence, in mole terms, for each mole of acetic acid, there are 2 moles of carbon and 4 moles of oxygen. If the analytical chemist has determined that there are 96.5 moles of carbon, this implies that there are 48.25 moles of acetic acid in the sample (since 2 moles of carbon correspond to each mole of acetic acid). Given the ratio of carbon to oxygen is 2:4 according to the molecular formula, we can multiply the number of moles of acetic acid by 4 to get the number of moles of oxygen, thus: 48.25 moles * 4 = 193 moles of Oxygen. Therefore, you can expect 193 moles of oxygen in the acetic acid sample.

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96.5 moles of carbon in the sample of acetic acid contains 96.5 moles of oxygen.

First, we need to understand the molecular formula of acetic acid, which is CH₃COOH. This means each molecule of acetic acid contains 2 carbon atoms, 4 hydrogen atoms, and 2 oxygen atoms.

Given that the chemist has determined there are 96.5 moles of carbon in the sample, we can determine the moles of acetic acid molecules by dividing the moles of carbon by 2 (since each molecule of acetic acid has 2 carbon atoms):

96.5 moles of C / 2 = 48.25 moles of acetic acid

Since each acetic acid molecule contains 2 oxygen atoms, we can find the total moles of oxygen by multiplying the moles of acetic acid by 2:

48.25 moles of acetic acid x 2 = 96.5 moles of oxygen

Thus, there are 96.5 moles of oxygen in the sample.

The two-slit diffraction experiment shows how light can be treated as particles and how light waves carry the statistical information for the experiment. if we were to use a beam of electrons instead of light in the experiment, how would the results differ?

Answers

The double-slit experiment is a famous tool to illustrate concepts within quantum mechanics. In particular it demonstrates the concept of wave-particle duality. Use of a light wave demonstrates diffraction and interference, which is a typical wave behaviour. Surprisingly, use of a beam of electrons also yields an interference pattern, showing electrons can behave like waves. 

The double-slit experiment is a famous tool to illustrate concepts within quantum mechanics. In particular it demonstrates the concept of wave-particle duality. Use of a light wave demonstrates diffraction and interference, which is a typical wave behaviour. Surprisingly, use of a beam of electrons also yields an interference pattern, showing electrons can behave like waves. 


Explanation:

There would be a optical phenomenon pattern almost like, however totally different from, that exploitation light-weight.Interference and optical phenomenon are the phenomena that distinguish waves from particles: waves interfere and split, particles don't.

Light bends around obstacles like waves do, and it's this bending that causes the one slit optical phenomenon pattern.

If a neutral atom becomes negatively charged, it has undergone _________.

Answers

If a neutral atom becomes negatively charged, it has undergone reduction.

Reduction is the process through which a neutral atom gain an electron (thus reducing its oxidation number) and turns into a negative ion (also known as : anion)

How many liters of hcl measured at stp 4.00?

Answers

Hey there !

1 mole HCl ---------- 22.4 at STP
4.00 moles HCl ------  Volume

Volume = 4.00 * 22.4 / 1

Volume = 89.6 L

Calculate the [OH–] if the hydrogen ion concentration is 3.64 x 10–8 M.

Answers

Final answer:

Using the ionic product of water, you can determine the hydroxide ion concentration [OH−] if you have the hydrogen ion concentration [H+]. In this case, [OH−] = 1.0 x 10^-14 / 3.64 x 10–8 M, results in [OH−] = 2.75 x 10^-7 M.

Explanation:

To calculate the [OH−] if the hydrogen ion concentration is 3.64 x 10–8 M, first you need to understand the Ionic Product of water. It is the mathematical product of the concentrations of Hydrogen ions [H+] and Hydroxide ions [OH−], and its value is 1.0 x 10^-14 at 25 degrees Celsius. So, if you know the concentration of the hydrogen ions, you can calculate the concentration of the hydroxide ions using the equation [H+] x [OH−] = 1.0 x 10^-14.

Substituting the given value into the equation, we get:

3.64 x 10–8 M x [OH−] = 1.0 x 10^-14.

To solve for [OH-], divide both sides by 3.64 x 10-8M resulting to [OH−] = 1.0 x 10^-14 / 3.64 x 10–8 M = 2.75 x 10^-7 M

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Balance the following equation with the smallest whole number coefficients. Choose the answer that is the sum of the coefficients in the balanced equation. Do not forget coefficients of "one."
Cr2(SO4)3 + RbOH Cr(OH)3 + Rb2SO4

(a) 10
(b) 12
(c) 13
(d) 14
(e) 15

Answers

Cr2(SO4)3 + 6RbOH --> 2Cr(OH)3 + 3Rb2SO4

1 + 6 + 2 + 3 = 12 (b)
Final answer:

The sum of the coefficients in the balanced chemical equation Cr2(SO4)3 + RbOH  →  Cr(OH)3 +  Rb2SO4 is 24. No listed options match the sum.

Explanation:

To balance the given equation, you must first count the number of each type of atom on both sides of the equation and then use coefficients to balance the numbers of each atom on both sides.
The correctly balanced chemical equation is 2Cr2(SO4)3 + 12RbOH  →  4Cr(OH)3 +  6Rb2SO4.
Now, add these coefficients: 2 (for Cr2(SO4)3), 12 (for RbOH), 4 (for Cr(OH)3), and 6 (for Rb2SO4). The sum of the coefficients in the balanced equation is 2 + 12 + 4 + 6 = 24.
None of the options given match the sum of the coefficients in the balanced equation.

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The observation that ethanol (C2H5OH) has a higher vapor pressure than water (H2O) at the same temperature is due to more

A. Hydrogen bonding in the water
B. Kinetic energy in the ethanol
C. London forces in the ethanol
D. Hydrogen bonding in the ethanol
E. London forces in the water

What is the correct order for the surface tension of the following substances?

A. Hg, C8H18, H2O
B. Hg, H2O, C8H18
C. C8H18, H2O, Hg
D. C8H18, Hg, H20
E. H2O, Hg, C8H18

Answers

I believe that alcohols' higher vapor pressures than water is due to there being less H-bonding in alcohols, thus making the correct answer:
Is due to more [A. Hydrogen bonding in the water]

Final answer:

1. OPTION A.

2. OPTION B.

Ethanol has a higher vapor pressure than water due to less extensive hydrogen bonding, and the surface tension order for the substances is mercury (Hg), water (H₂O), octane (C₈H₁₈), reflecting the strength of the intermolecular forces.

Explanation:

The observation that ethanol (C₂H₅OH) has a higher vapor pressure than water (H₂O) at the same temperature is primarily due to more hydrogen bonding in water. Water's ability to form stronger hydrogen bonds compared to ethanol results in fewer water molecules escaping the liquid and hence, a lower vapor pressure. Ethanol, though capable of hydrogen bonding, exhibits weaker intermolecular forces (IMFs) compared to water, allowing more ethanol molecules to escape into the vapor phase.

Regarding the surface tension question, the correct order for the surface tension of the substances listed would be Hg, H₂O, C₈H₁₈ based on the intermolecular forces present in each substance. Mercury (Hg) has a very high surface tension due to strong metallic bonding, water (H₂O) has high surface tension from hydrogen bonding, and octane (C₈H₁₈) has comparatively lower surface tension as it is primarily affected by weaker London dispersion forces.

Calculate the ph of a 0.20 m solution of kcn at 25.0 ∘c. express the ph numerically using two decimal places

Answers

The pH of the solution is basically the negative logarithm of the concentration of hydrogen ions or H+. In equation form, pH = -log[H+]. It could also be in terms of the concentration of hydroxide ions or OH- as pOH, where pOH = -log[OH-]. The sum of pH and pOH is 14. These are the important equations to know when it comes to equilibrium pH problems.

KCN is a basic salt coming from the reaction of a weak acid, HCN, and a strong base, KOH. In the hydrolysis of KCN, only the strong conjugate base (SCB) is involved. Since HCN is the weak acid, the SCB is CN-. The reaction would be

CN- + H2O ⇔ HCN + OH-

The important data is the equilibrium constant of acidity of the weak acid. Ka for HCN is 6.2×10^-10. Then, let's do the ICE(Initial-Change-Equilibrium) analysis.

          CN-    +    H2O    ⇔    HCN +    OH-

I      0.2 m             ∞                   0             0
C      -x                 ∞                   +x        +x
-----------------------------------------------------------
E      0.2-x                               +x         +x

The value x denotes the number of moles CN- reacted. There is no value for H2O because the solution is dilute such that H2O>>>CN-. Then, we apply the ratio:

[tex] K_{H} = \frac{ K_{W} }{ K_{A} } = \frac{[HCN][OH-]}{[CN-]} [/tex]

where K,H is the equilibrium constant of hydrolysis and Kw is equilibrium constant for water solvation which is equal to 1×10^-14. Therefore,

[tex]K_{H} = \frac{ 1x10^-14}{ 6.2x10^-10 } = \frac{[X][X]}{[0.2-X]}[/tex]

x = 0.001788 m
Since the value of OH- is also x, then OH-=0.001788 m. Consequently,

pOH = -log(0.001788) = 2.75
pH = 14 - pOH = 14 - 2.75
pH = 11.25

The pH of a 0.20 M solution of KCN is [tex]\boxed{11.31}[/tex].

Further Explanation:

pH is used to describe acidity or basicity of substances. Its range varies from 0 to 14. It is defined as negative logarithmof hydrogen ion concentration.

The expression for pH is mentioned below.

[tex]{\text{pH}} = - \log \left[ {{{\text{H}}^ + }} \right][/tex]                                                                     …… (1)

Where [tex]\left[ {{{\text{H}}^ + }}\right][/tex] is the concentration of hydrogen ion.

Dissociation reaction of KCN is as follows:

[tex]{\text{KCN}} \to {{\text{K}}^ + } + {\text{C}}{{\text{N}}^ - }[/tex]  

Cyanide ions thus formed can react with water to form HCN and [tex]{\text{O}}{{\text{H}}^ - }[/tex] as follows:

[tex]{\text{C}}{{\text{N}}^ - } + {{\text{H}}_{\text{2}}}{\text{O}} \rightleftharpoons {\text{HCN}} + {\text{O}}{{\text{H}}^ - }[/tex]  

The relation between [tex]{{\text{K}}_{\text{w}}}[/tex], [tex]{{\text{K}}_{\text{b}}}[/tex] and [tex]{{\text{K}}_{\text{a}}}[/tex] is expressed by following relation:

[tex]{{\text{K}}_{\text{w}}} = {{\text{K}}_{\text{b}}} \cdot {{\text{K}}_{\text{a}}}[/tex]                                                                                 …… (2)

Where,

[tex]{{\text{K}}_{\text{w}}}[/tex] is the ionic product constant of water.

[tex]{{\text{K}}_{\text{b}}}[/tex] is the dissociation constant of base.

[tex]{{\text{K}}_{\text{a}}}[/tex] is the dissociation constant of acid.

The value of [tex]{{\text{K}}_{\text{w}}}[/tex] is [tex]{10^{ - 14}}[/tex].

The value of [tex]{{\text{K}}_{\text{a}}}[/tex] is [tex]4.9 \times {10^{ - 10}}[/tex].

Substitute these values in equation (2).

[tex]{10^{ - 14}} = {{\text{K}}_{\text{b}}}\left( {4.9 \times {{10}^{ - 10}}} \right)[/tex]  

Solve for [tex]{{\text{K}}_{\text{b}}}[/tex],

[tex]{{\text{K}}_{\text{b}}} = 2 \times {10^{ - 5}}[/tex]  

The expression for [tex]{{\text{K}}_{\text{b}}}[/tex] of HCN is as follows:

[tex]{{\text{K}}_{\text{b}}} = \dfrac{{\left[ {{\text{HCN}}} \right]\left[ {{\text{O}}{{\text{H}}^ - }} \right]}}{{\left[ {{\text{C}}{{\text{N}}^ - }} \right]}}[/tex]                                                                            …… (3)

Consider x to be change in equilibrium concentration. Therefore, equilibrium concentrationof [tex]{\text{C}}{{\text{N}}^ - }[/tex], HCN and   becomes (0.2 – x), x and x respectively.

[tex]{\text{2}} \times {\text{1}}{{\text{0}}^{ - 5}} = \dfrac{{{x^2}}}{{\left( {0.2 - x} \right)}}[/tex]  

Solving for x,

[tex]x = 0.002[/tex]  

Therefore concentration of hydroxide ion is 0.002 M.

The expression to calculate pOH is as follows:

[tex]{\text{pOH}} = - \log \left[ {{\text{O}}{{\text{H}}^ - }} \right][/tex]                                                                             …… (4)

Substitute 0.002 M for [tex]\left[ {{\text{O}}{{\text{H}}^ - }} \right][/tex] in equation (4).

[tex]\begin{aligned}{\text{pOH}} &= - \log \left( {0.002{\text{ M}}} \right) \\&= 2.69 \\\end{aligned}[/tex]  

The relation between pH and pOH is as follows:

pH + pOH = 14                                                                          …… (5)

Substitute 2.69 for pOH in equation (4).

[tex]{\text{pH}} + 2.69 = 14[/tex]  

Solving for pH,

pH = 11.31

Learn more:

Write the chemical equation responsible for pH of buffer containing  and  : https://brainly.com/question/8851686 Reason for the acidic and basic nature of amino acid. https://brainly.com/question/5050077

Answer details:

Grade: High School

Subject: Chemistry

Chapter: Acids, base and salts

Keywords: pH, pOH, 11.31, 2.69, 14, 0.002 M, Kb, Kw, Ka, 10^-14, 2*10^-5.

A crystallographer measures the horizontal spacing between molecules in a crystal. The spacing is 10.59 nm . What is the total width of a crystal in millimeters 105 molecules across?

Answers

Whenever objects are placed in a line with spaced in between them, the number of spaces is one less than the number of objects. For reference, you may hold up four fingers and count the spaced between your fingers.

Therefore, if there are 105 molecules, then there are 104 spaces present.

We also know that 1 mm = 1000 nm. So, we first convert the spacing to millimeters as the final answer is required in millimeters

spacing = 10.59/1000 = 0.01059 mm

Now, the width of the lattice will be (ignoring the size of the molecules):

104 * 0.01059

1.10 millimeters

Which of the following is not a catalyst? A. Nickel B. Platinum C. Enzymes D. Phosphorus

Answers

The answer would be D because from my research it's the only one that didn't have a catalyst 

Answer:

The correct answer is D. Phosphorus is not a catalyst.

Explanation:

A catalyst is a substance that accelerates a chemical reaction at a certain temperature, but does not itself wear off the reaction. It is involved in the chemical reaction but is not the starting or end product of the reaction.

Catalysts create an alternative reaction pathway for the reaction with a lower activation energy. Activation energy is the energy required for the reaction to take place. However, the catalyst cannot cause a reaction which does not take place without the catalyst.

Depending on the phases in which the catalyst and reactants are present, one speaks of homogeneous or heterogeneous catalysts. Biochemical processes are catalyzed by enzymes, while heterogeneous catalysts are metals, such as platinum and nickel.

Determine whether each of the examples or phrases describes an essential amino acid, a nonessential amino acid, or both essential and nonessential amino acids. a table of amino acids can be found here. note: if you answer any part of this question incorrectly, a single red x will appear indicating that one or more of the phrases are sorted incorrectly.

Answers

Methione phrases describes an essential amino acid, whereas a glycolytic intermediate phrases describes an non-essential amino acid

Further explanation

Amino acids are the basic building blocks of proteins. Nonessential amino acids can be made by the body, while essential amino acids cannot be made by the body so wemust get them from our diet.

Determine whether each of the examples or phrases describes an essential amino acid, a nonessential amino acid, or both essential and nonessential amino acids. a table of amino acids can be found here.

Note: if you answer any part of this question incorrectly, a single red x will appear indicating that one or more of the phrases are sorted incorrectly.

Categories: Essential Amino Acids, Nonessential amino acids, or Both

Essential Amino Acids

made from aspartate and pyruvate in an eleven-step pathway branched-chain amino acids obtained from food only the amino acid that is a thioether

Nonessential amino acids

synthesized by humans an amino acid synthesized from pyruvate in humans

Both

-

methionine : Methionine is an essential amino acid in humans. So methione phrases describes an essential amino acid

derived from 3-phosphoglycerate, a glycolytic intermediate: Serine amino acids is derived from the glycolysis intermediate 3-phosphoglycerate. Serine is non-essential amino acid supplied from food or synthesized by the body from a number of metabolites, including glycine. So a glycolytic intermediate phrases describes an non-essential amino acid

The correct answers are:

Essential amino acids:

Made from Aspartate and Pyruvate in an eleven-step pathwayBranched-chain amino acidsObtained from food onlyMethionine

Nonessential amino acids:

Synthesized by humansAn amino acid synthesized from pyruvate in humans

Both

The amino acid that is a thioether

Learn moreLearn more about an essential amino acid https://brainly.com/question/4176450Learn more about nonessential amino acid https://brainly.com/question/6176188Learn more about amino acid https://brainly.com/question/907647

Answer details

Grade:  9

Subject:  chemistry

Chapter:  amino acid

Keywords: an essential amino acid, nonessential amino acid, amino acid, both essential and nonessential amino acids, phrases

Which of the following are true about marijuana

Answers

All of the given options are true about marijuana (option D)

Why is this correct?

The primary psychoactive component in marijuana, THC, disrupts intercellular communication within the brain, notably affecting regions associated with memory and learning. Studies indicate that marijuana consumption can result in challenges with concentration, memory retention, and acquiring new knowledge.

THC has the capacity to engage with the brain's fear and anxiety hub, potentially inducing sensations of paranoia, anxiety, and, in severe cases, panic attacks. This tendency is amplified among individuals with pre-existing anxiety conditions or those consuming high doses of THC.

While not as inherently addictive as certain other substances, marijuana still holds the potential for habit formation. Regular usage can lead to dependence, marked by withdrawal symptoms such as irritability, anxiety, and sleep disturbances upon cessation of use.

Complete question:

Which of the following are true about marijuana: A. It can impair learning and memory B. It can bring upon panic attacks or anxiety C. It can become addictive D. All of the above

if a chemist has 2.3 moles of arsenic that has a molar mass of 74.92g/mol, which would be the best way to find out how many atoms of arsenic are in the sample?

Multiply 2.3 bu the molar mass of arsenic.

Divide 2.3 by the molar mass of arsenic.

Multiply 2.3 by Avogadro's number.

Divide 2.3 by Avogadro's number.

Answers

Mulitply 2.3 by avogadros #
Answer:

              Multiply 2.3 by Avogadro's Number

Explanation:

                     As we know that 1 mole of any substance contains exactly 6.022 × 10²³ particles which is also called as Avogadro's Number. So in order to calculate the number of particles (Atoms) contained by 2.3 moles of Arsenic (As), we will use following relation,

           Moles  =  Number of Atoms ÷ 6.022 × 10²³ Atoms.mol⁻¹

Solving for Number of Molecules,

           Number of Atoms  =  Moles × 6.022 × 10²³ Atoms.mol⁻¹ **

(**This is your answer)

Putting values,

           Number of Atoms  =  2.3 mol × 6.022 × 10²³ Atoms.mol⁻¹

           Number of Atoms  =  1.38 × 10²⁴ Atoms

Hence,

           There are 1.38 × 10²⁴ Atoms present in 2.3 moles of Arsenic.

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