write net ionic equations (there are seven) for all reactions (precipitate formation and gas evolution) you have listed in table i.'

Answers

Answer 1

To write the net ionic equations for the reactions listed in Table I, we need to identify the ions present in the reactants and products. The net ionic equation shows only the species that are directly involved in the chemical reaction, excluding spectator ions.

For the precipitation reactions, we need to identify the cation and anion in the reactants to determine the products. We also need to check the solubility rules to determine if a precipitate will form. For the gas evolution reactions, we need to identify the gas formed and balance the equation.
Here are the net ionic equations for each reaction in Table I:
1.[tex]Na_{2}CO_{3}(aq) + CaCl_{2}(aq) = 2NaCl(aq) + CaCO_{3}(s)[/tex]
Net ionic equation: [tex]CO_{3}^{2-}(aq) + Ca_{2}+(aq) = CaCO_{3}(s)[/tex]
2. [tex]AgNO_{3}(aq) + NaCl(aq) = AgCl(s) + NaNO_{3}(aq)[/tex]
Net ionic equation: [tex]Ag^{+}(aq) + Cl^{-}(aq) = AgCl(s)[/tex]
3. [tex]NaOH(aq) + FeCl_{3}(aq) = Fe(OH)_{3}(s) + NaCl(aq)[/tex]
Net ionic equation: [tex]Fe^{3+}(aq) + 3OH^{-}(aq) = Fe(OH)_{3}(s)[/tex]
4. [tex]HCl(aq) + NaHCO_{3}(aq) = NaCl(aq) + H_{2}O(l) + CO_{2}(g)[/tex]
Net ionic equation: [tex]H^{+}(aq) + HCO_{3-}(aq) = H_{2}O(l) + CO_{2}(g)[/tex]
5. [tex]HNO_{3}(aq) + Ca(OH)_{2}(aq) = Ca(NO_{3})_{2}(aq) + 2H_{2}O(l)[/tex]
Net ionic equation: [tex]2H^{+}(aq) + 2OH^{-}(aq) = 2H_{2}O(l)[/tex])
6. [tex][tex]Na_{2}S(aq) + ZnSO_{4}(aq) = ZnS(s) + Na_{2}SO_{4}(aq)[/tex][/tex]
Net ionic equation: [tex]S^{2-}(aq) + Zn^{2+}(aq) = ZnS(s)[/tex]
7. [tex]HCl(aq) + Mg(s) = MgCl_{2}(aq) + H{2}(g)[/tex]
Net ionic equation: [tex]H^{+}(aq) + Mg(s) = Mg^{2+}(aq) + H_{2}(g)[/tex]
Net ionic equations are used to show the species directly involved in a chemical reaction, excluding spectator ions. To write the net ionic equation, we need to identify the ions present in the reactants and products and use the solubility rules to determine if a precipitate will form. We also need to balance the equation and identify the gas formed for gas evolution reactions.

For more information on ionic equation kindly visit to

https://brainly.com/question/29441451

#SPJ11


Related Questions

g when 25.0 ml of solvent are added to an unknown volume of a 1.75 m stock solution, the concentration of the resulting solution is 0.550 m. calculate the unknown volume (in ml) of stock solution

Answers

When 25.0 ml of solvent were added to unknown volume of 1.75 m stock solution, the concentration of resulting solution is 0.550 m. Then,  the unknown volume of the stock solution is 11.46 mL.

To solve this problem, we use the formula for dilution;

M₁V₁ = M₂V₂

where M₁ is the initial concentration, V₁ is the initial volume, M₂ is the final concentration, and V₂ is the final volume.

Plugging in the given values, we get:

1.75 M × V₁ = 0.550 M × (25.0 mL + V₁)

Simplifying and solving for V₁, we get;

1.75 M × V₁ = 0.550 M × 25.0 mL + 0.550 M × V₁

1.75 M × V₁ - 0.550 M × V₁ = 0.550 M × 25.0 mL

1.20 M × V₁ = 13.75 mL

V₁ = 11.46 mL

Therefore, the unknown volume of the stock solution is 11.46 mL.

To know more about stock solution here

https://brainly.com/question/17018950

#SPJ4

Citric acid (CHO), a component of fruit drinks, jams, and jellies, is produced using the
following reaction:
C12H22O11 + H₂O + 30₂ → 2C6H₂O₂ + 4H₂O
If a fruit drink manufacturer decides she needs 2.8 x 105 moles of citric acid, what is the
minimum amount of reactants she will need?

Answers

To determine the minimum amount of reactants required to produce 2.8 x 10^5 moles of citric acid (C6H8O7), we need to balance the given reaction and use stoichiometry.

The balanced equation is:
C12H22O11 + 12H2O + 11O2 → 24C6H8O7 + 36H2O

From the balanced equation, we can see that 1 mole of C12H22O11 produces 24 moles of C6H8O7. Therefore, we can set up a stoichiometric ratio:

1 mole C12H22O11 : 24 moles C6H8O7

To find the amount of C12H22O11 needed, we can set up the following proportion:

(2.8 x 10^5 moles C6H8O7) / (24 moles C6H8O7) = (x moles C12H22O11) / (1 mole C12H22O11)

Cross-multiplying the equation:

(2.8 x 10^5 moles C6H8O7) × (1 mole C12H22O11) = (24 moles C6H8O7) × (x moles C12H22O11)

x = (2.8 x 10^5 moles C6H8O7) × (1 mole C12H22O11) / (24 moles C6H8O7)

x ≈ 1.167 x 10^4 moles C12H22O11

Therefore, the fruit drink manufacturer will need a minimum of approximately 1.167 x 10^4 moles of C12H22O11 to produce 2.8 x 10^5 moles of citric acid.

which one of the following conditions is always true for a titration of a weak acid with a strong base? the equivalence point occurs at a ph equal to 7. if a colored indicator is used, it must change color rapidly in the weak acid's buffer region. a colored indicator with a pka less than 7 should be used. equal volumes of weak acid and strong base are required to reach the equivalence point. the equivalence point occurs at a ph greater than 7.

Answers

The correct option is D, The equivalence point occurs at a pH greater than 7 for a titration of a weak acid with a strong base. This is because the strong base will react with the weak acid to form a salt and water.

Titration is a commonly used analytical technique in chemistry for determining the concentration of an unknown solution by adding a known amount of a standardized solution of known concentration. The process involves slowly adding the standardized solution to the unknown solution until the chemical reaction between the two is complete. The point at which the reaction is complete is known as the equivalence point and can be detected using various indicators that change color or other properties at this point.

The main aim of titration is to accurately measure the concentration of a particular substance in a solution. For example, an acid-base titration can be used to determine the concentration of an acid in a solution by adding a known amount of a strong base until the equivalence point is reached. Similarly, a redox titration can be used to determine the concentration of a reducing or oxidizing agent in a solution.

To know more about Titration refer to-

brainly.com/question/31483031

#SPJ4

A marshmallow peep contains 0.16-L at STP. The marshmallow peep is then placed in a vacuum and the pressure is reduced to 0.43 atm. What is the new volume of the marshmallow peep?

Answers

To find the new volume of the marshmallow peep after being placed in a vacuum, we can use Boyle's Law, which states that the product of pressure and volume is constant at constant temperature.

According to Boyle's Law:

P₁V₁ = P₂V₂

Where:
P₁ = Initial pressure (STP) = 1 atm
V₁ = Initial volume (STP) = 0.16 L
P₂ = Final pressure (in the vacuum) = 0.43 atm
V₂ = Final volume (to be calculated)

Substituting the given values into the equation:

(1 atm)(0.16 L) = (0.43 atm)(V₂)

Simplifying the equation:

0.16 L = (0.43 atm)(V₂)

Now, solve for V₂:

V₂ = (0.16 L) / (0.43 atm)

V₂ ≈ 0.372 L

Therefore, the new volume of the marshmallow peep in the vacuum is approximately 0.372 L.

which has the smallest dipole-dipole forces? hf ch3 f ph3 h 2 o

Answers

When considering dipole-dipole forces, it's important to understand that they are a type of intermolecular force that occurs between polar molecules. These forces arise from the attraction between the partial positive charge on one molecule and the partial negative charge on another.

In order to determine which of the given molecules has the smallest dipole-dipole forces, we need to first consider the polarity of each molecule. The more polar a molecule is, the stronger its dipole-dipole forces will be. HF is a polar molecule with a dipole moment of 1.91 D, making it highly polar. CH3F is also polar, with a dipole moment of 1.85 D. PH3 is polar as well, with a dipole moment of 0.58 D. H2O is highly polar, with a dipole moment of 1.85 D.
Comparing the dipole moments of these molecules, we can see that HF and H2O have the highest dipole moments, indicating that they will have the strongest dipole-dipole forces. CH3F has a slightly lower dipole moment than HF and H2O, but it is still polar and will have moderate dipole-dipole forces. Finally, PH3 has the smallest dipole moment, indicating that it will have the weakest dipole-dipole forces of the given molecules.

Learn more about forces here:

https://brainly.com/question/13191643

#SPJ11



The molecule with the smallest dipole-dipole forces among the given options is CH3F (methyl fluoride).

PH3 has the smallest dipole-dipole forces among the given molecules due to its low polarity resulting from the less electronegative phosphorus atom.

PH3 is called phosphine and it is quite toxic and flammable. PH3 must be polar since it is not symmetrical. PH3 has a lone pair and does not have a trigonal planar geometry--for this reason it is not symmetrical. The dipole moment of phosphine is 0.58D which is less than 1.42D for NH3.

Dipole-dipole forces arise due to the presence of a permanent dipole moment in a molecule. The magnitude of the dipole-dipole forces depends on the polarity of the molecule, which is determined by the electronegativity difference between the atoms in the molecule.

Out of the given molecules, PH3 has the smallest dipole moment because phosphorus is less electronegative than the other atoms. Thus, the polarity of PH3 is the smallest, and it has the weakest dipole-dipole forces.

In summary, PH3 has the smallest dipole-dipole forces among the given molecules due to its low polarity resulting from the less electronegative phosphorus atom.

To know more about dipole-dipole forces visit:

https://brainly.com/question/9279925

#SPJ11

what concentration of calcium chloride in water is needed to produce an aqueous solution having an osmotic pressure of 34.8 atm at 22.9°c? enter a number in molarity to 4 decimal places.

Answers

A concentration of 0.0672 mol/L of calcium chloride in water is needed to produce an aqueous solution having an osmotic pressure of 34.8 atm at 22.9°C.

To calculate the concentration of calcium chloride (CaCl₂) in water, we can use the osmotic pressure formula:

π = iMRT

where π is the osmotic pressure, i is Van't Hoff factor (number of ions in the solution), M is the molarity, R is the gas constant (0.0821 L atm/mol K), and T is the temperature in Kelvin.

Given osmotic pressure (π) = 34.8 atm and,

Temperature (T) = 22.9°C = 296.05 K.

For CaCl₂, i = 3 (one Ca²⁺ ion and two Cl⁻ ions).

Now we need to solve for M (molarity):

34.8 atm = 3 * M * (0.0821 L atm/mol K) * 296.05 K

To find the molarity (M), rearrange the formula and solve:

M = (34.8 atm) / (3 * 0.0821 L atm/mol K * 296.05 K)

M ≈ 0.0672 mol/L

Therefore, a concentration of 0.0672 mol/L of calcium chloride in water is required here.

To know something about the osmotic pressure formula, click below.

https://brainly.com/question/30748685

#SPJ11

How many grams of phosphoric acid are produced when 10.0 mol of water react with an excess of P4O10? P4O10 + 6H2O -----------> 4H3PO4

Answers

When 10.0 mol of water reacts with an excess of P4O10, approximately 3,919.6 grams of phosphoric acid (H3PO4) will be produced.

To determine the grams of phosphoric acid produced when 10.0 mol of water reacts with an excess of P4O10, we need to use stoichiometry and the balanced equation for the reaction:

P4O10 + 6H2O → 4H3PO4

From the balanced equation, we can see that the stoichiometric ratio between P4O10 and H3PO4 is 1:4. This means that for every mole of P4O10, we obtain four moles of H3PO4.

Given that we have an excess of P4O10, the moles of H3PO4 produced will be determined by the number of moles of water used.

Moles of H3PO4 = 4 × moles of water

Moles of water = 10.0 mol

Moles of H3PO4 = 4 × 10.0 mol = 40.0 mol

To convert moles of H3PO4 to grams, we need to multiply by the molar mass of H3PO4, which is 97.99 g/mol.

Grams of H3PO4 = 40.0 mol × 97.99 g/mol = 3,919.6 g

For more such questions on phosphoric acid

https://brainly.com/question/13030272

#SPJ11

which is the best colored indicator to use in the titration of 0.1 m ch3co2h(aq) with naoh(aq)? why? (ka of ch3co2h

Answers

The best colored indicator to use in the titration of 0.1 M CH3CO2H(aq) with NaOH(aq) would be phenolphthalein. This is because the pH range for the equivalence point of this titration falls within the range where phenolphthalein changes color, which is approximately pH 8.2 to 10.0.

Phenolphthalein is a commonly used indicator for acid-base titrations as it changes color in a very distinct manner. It is colorless in acidic solutions and pink in basic solutions. This makes it easy to identify when the equivalence point has been reached in the titration.
The Ka value for CH3CO2H is 1.8 x 10^-5. This indicates that CH3CO2H is a weak acid and will not completely dissociate in water. During the titration, NaOH(aq) will be added to the CH3CO2H(aq) until the equivalence point is reached. At this point, the amount of NaOH added will be equal to the amount of CH3CO2H in the solution, resulting in the formation of CH3CO2Na(aq) and water. The pH at the equivalence point will be approximately 8.2-10.0, which is the range where phenolphthalein changes color.
In conclusion, phenolphthalein would be the best colored indicator to use in the titration of 0.1 M CH3CO2H(aq) with NaOH(aq) due to its pH range for the equivalence point falling within the range where phenolphthalein changes color.

learn more about indicator

https://brainly.com/question/13785316

#SPJ11

what is the concentration of a solution of phosphoric acid if 10.00ml of it is titrated with 32.58ml of 0.08897m potassium hydroxide?

Answers

The concentration of the phosphoric acid solution is 0.09663 mol/L.

We can use the balanced chemical equation for the reaction between phosphoric acid and potassium hydroxide to determine the number of moles of phosphoric acid in the solution;

H₃PO₄ + 3KOH → K₃PO₄ + 3H₂O

From the balanced equation, we see that 1 mole of phosphoric acid reacts with 3 moles of potassium hydroxide.

First, we can calculate the number of moles of potassium hydroxide used in the titration;

moles KOH = concentration × volume = 0.08897 mol/L × 0.03258 L = 0.002899 mol

Since 1 mole of phosphoric acid reacts with 3 moles of potassium hydroxide, the number of moles of phosphoric acid in the solution is;

moles H₃PO₄ = (1/3) × moles KOH = (1/3) × 0.002899 mol

= 0.0009663 mol

Finally, we can calculate the concentration of the phosphoric acid solution;

concentration = moles/volume = 0.0009663 mol/0.01000 L

= 0.09663 mol/L

Therefore, the concentration is 0.09663 mol/L.

To know more about phosphoric acid here

https://brainly.com/question/3700851

#SPJ4

Given that E o = 0.52 V for the reduction Cu+(aq) + e− → Cu(s), calculate E o , ΔG o , and K for the following reaction at 25°C: 2Cu+(aq) ⇌ Cu2+(aq) + Cu(s)

Answers

25°C, the standard cell potential for the reaction 2Cu+(aq) ⇌ Cu2+(aq) + Cu(s) is 0.18 V, the standard Gibbs free energy change is -35,023 J/mol, and the equilibrium constant is 5.4 × 10^17.

The overall reaction is the sum of two half-reactions:

Cu+(aq) + e− → Cu(s) E° = 0.52 V

Cu2+(aq) + 2e− → Cu(s) E° = 0.34 V

To find the standard cell potential for the reaction, we can subtract the second half-reaction from the first one:

Cu+(aq) + e− → Cu(s) E° = 0.52 V

Cu2+(aq) + 2e− → Cu(s) E° = 0.34 V

2Cu+(aq) → Cu2+(aq) + Cu(s) E° = 0.52 V - 0.34 V = 0.18 V

The standard Gibbs free energy change for the reaction can be calculated using the equation:

ΔG° = -nFE°

where n is the number of moles of electrons transferred in the reaction and F is the Faraday constant (96,485 C/mol).

In this case, n = 2 (because two electrons are transferred) and:

ΔG° = -2 × 96,485 C/mol × 0.18 V = -35,023 J/mol

Finally, we can use the equation:

ΔG° = -RT ln K

where R is the gas constant (8.314 J/(mol·K)), T is the temperature in kelvins (25°C = 298 K), and K is the equilibrium constant.

Solving for K, we get:

K = e^(-ΔG°/RT) = e^(-(-35,023 J/mol)/(8.314 J/(mol·K) × 298 K)) = 5.4 × 10^17

Therefore, at 25°C, the standard cell potential for the reaction 2Cu+(aq) ⇌ Cu2+(aq) + Cu(s) is 0.18 V, the standard Gibbs free energy change is -35,023 J/mol, and the equilibrium constant is 5.4 × 10^17.

Learn more about reaction here:

https://brainly.com/question/17434463

#SPJ11

Which of the following can act as an acid only according to both Arrhenius Acid-Base Theory and Bronsted-Lowry Acid-Base Theory?
(A) H3PO4 (B) Na2CO3 (C) KHCO3 (D) Na2HPO4

Answers

Only H3PO4 can act as an acid according to both Arrhenius Acid-Base Theory and Bronsted-Lowry Acid-Base Theory. Arrhenius theory defines an acid as a substance that produces H+ ions in water, while a base produces OH- ions. Bronsted-Lowry theory defines an acid as a substance that donates a proton (H+) to another substance, while a base accepts a proton.

H3PO4 is able to donate a proton in both theories, making it the only option that can act as an acid according to both.
The compound that can act as an acid only according to both Arrhenius Acid-Base Theory and Bronsted-Lowry Acid-Base Theory is (A) H3PO4. In the Arrhenius Theory, an acid is a substance that releases H+ ions in aqueous solutions, while in the Bronsted-Lowry Theory, an acid is a proton donor.

H3PO4, also known as phosphoric acid, can donate protons (H+ ions) in both theories, while the other compounds (B) Na2CO3, (C) KHCO3, and (D) Na2HPO4 cannot act as acids in both theories, as they do not donate protons but instead may act as bases or salts.

To know more about acid visit-

https://brainly.com/question/14072179

#SPJ11

H3PO4 can act as an acid only according to both Arrhenius Acid-Base Theory and Bronsted-Lowry Acid-Base Theory. It donates a hydrogen ion (H+) to a base, forming the conjugate base H2PO4-. Na2CO3, KHCO3, and Na2HPO4 can act as bases according to the Bronsted-Lowry Acid-Base Theory but not according to the Arrhenius Acid-Base Theory, as they do not produce H+ ions when dissolved in water.

The options are (A) H3PO4, (B) Na2CO3, (C) KHCO3, and (D) Na2HPO4. The correct answer is (A) H3PO4. According to Arrhenius theory, an acid donates H+ ions in aqueous solutions, and according to Bronsted-Lowry theory, an acid donates protons (H+). H3PO4, or phosphoric acid, donates H+ ions in both theories, making it an acid only. The other options are either bases or salts, which do not exclusively act as acids in both theories.

To know more about Acid visit-

https://brainly.com/question/29796621

#SPJ11

A mixture of 1.0 mol He and 1.0 mol Ne are at STP in a rigid container. Which of the following statements is TRUE?
Both gases have the same average kinetic energy.
All gas molecules in the container are moving at the same speed.
The mixture has a volume of 11.2 L.
Both gases have the same mass.

Answers

The statement that is true is "Both gases have the same average kinetic energy." This is because at STP (standard temperature and pressure), both gases have the same temperature (273 K) and pressure (1 atm), so their average kinetic energy, which is proportional to temperature, is the same.

The other statements are not necessarily true - the gas molecules can have different speeds and the volume of the mixture depends on the size of the container. The masses of the two gases are also different (He has a smaller atomic mass than Ne).
Based on the given terms and the question about the mixture of 1.0 mol He and 1.0 mol Ne at STP in a rigid container, the TRUE statement is: Both gases have the same average kinetic energy.
This is because at the same temperature, all gases have the same average kinetic energy, regardless of their mass or other properties.

To know more about kinetic energy visit:

https://brainly.com/question/26472013

#SPJ11

what is the [oh - ] in a sample of the great salt lake if the ph is 8.25?

Answers

The [OH-] concentration in the sample of the Great Salt Lake with a pH of 8.25 is approximately 1.78 × 10^(-6) M.

To calculate the [OH-] concentration in a sample of the Great Salt Lake, we can use the relationship between pH and pOH.

The pH of a solution is defined as the negative logarithm (base 10) of the hydrogen ion concentration ([H+]), and the pOH is defined as the negative logarithm (base 10) of the hydroxide ion concentration ([OH-]). The sum of the pH and pOH is always equal to 14.

Given that the pH is 8.25, we can find the pOH by subtracting the pH from 14:

pOH = 14 - 8.25 = 5.75

Since the pH and pOH together must add up to 14, we can use this relationship to calculate the [OH-] concentration:

[OH-] = 10^(-pOH) = 10^(-5.75)

Using a calculator, we find that [OH-] ≈ 1.78 × 10^(-6) M.

Therefore, the [OH-] concentration in the sample of the Great Salt Lake with a pH of 8.25 is approximately 1.78 × 10^(-6) M.

Know more about pH here:

https://brainly.com/question/2288405

#SPJ11

the ka for formic acid (hcooh) is 1.8 x 10-4 . what is the ph of a 0.15 m aqueous solution of sodium formate (nahcoo)? group of answer choices 5.54 11.64 8.46 3.39 4.26

Answers

The correct option is C, The pH of the 0.15 M aqueous solution of sodium formate is 8.46.

The chemical equation for the reaction between formic acid and sodium formate is:

HCOOH + NaHCOO ⟷ HCOO⁻ + Na⁺ + H₂O

Ka = [H⁺][HCOO⁻] / [HCOOH]

[H⁺] = Ka x [HCOOH] / [HCOO⁻]

[H⁺] = (1.8 x [tex]10^{-4[/tex]) x (0.15) / 1

[H⁺] = 2.7 x [tex]10^{-5[/tex] M

pH = 14 - pOH

pH = 14 - (-log[OH⁻])

pH = 14 - (-log Kw / [OH⁻])

pH = 14 - (-log Kw - log [OH⁻])

pH = 14 - (14 + pKw - pOH)

pH = pKw - pOH

pH = 14 - 1/2(pKa - log [NaHCOO])

where pKw = 14, and pKa = -log Ka = -log (1.8 x [tex]10^{-4[/tex]) = 3.74.

Substituting the values into the equation gives:

pH = 14 - 1/2(3.74 - log 0.15)

pH = 8.46

pH is a measure of the acidity or basicity of a solution. The pH scale ranges from 0 to 14, with 0 being the most acidic, 7 being neutral, and 14 being the most basic (also called alkaline). The pH of a solution is determined by the concentration of hydrogen ions (H+) in the solution. The more hydrogen ions there are, the lower the pH and the more acidic the solution is. Conversely, the fewer hydrogen ions there are, the higher the pH and the more basic the solution is.

The pH of a solution can be measured using a pH meter or by using pH paper, which changes color depending on the pH of the solution. It is important to control the pH of certain chemical reactions and processes, as it can affect the rate of reaction and the properties of the resulting product.

To know more about pH refer to-

brainly.com/question/2288405

#SPJ4

a buffer solution is 0.470 m in a weak acid (a=1.8×10−6) and 0.210 m in its conjugate base, what is the ph?

Answers

The pH of the buffer solution is approximately 0.395.

To solve the overall question, we need to calculate the pH of the buffer solution given that it is 0.470 M in a weak acid with a Ka of 1.8×10^−6 and 0.210 M in its conjugate base.

First, we need to find the pKa value by taking the negative logarithm of the acid dissociation constant (Ka):

pKa = -log10(1.8×10^−6)

Next, we can use the Henderson-Hasselbalch equation to calculate the pH:

pH = pKa + log10([conjugate base]/[weak acid])

pH = pKa + log10(0.210/0.470)

Substituting the value of pKa and evaluating the logarithm:

pH = -log10(1.8×10^−6) + log10(0.447)

We can simplify this expression by subtracting the logarithms:

pH = log10(0.447/1.8×10^−6)

Now, let's evaluate the division inside the logarithm:

pH = log10(248.33×10^6)

Finally, calculating the logarithm:

pH ≈ log10(2.4833) ≈ 0.395

Therefore, the pH of the buffer solution is approximately 0.395.

Know more about Buffer solution here:

https://brainly.com/question/31428923

#SPJ11

1) A sample of nitrogen occupies a volume of 150 mL at 15 °C. What volume will it occupy at 85 °C?

Answers

To solve this problem, we can use the ideal gas law, which states:

PV = nRT

Where:

P = pressure

V = volume

n = number of moles

R = ideal gas constant

T = temperature in Kelvin

Since we are only interested in the change in volume, we can assume that the pressure, number of moles, and the gas constant remain constant. Therefore, we can write:

V₁ / T₁ = V₂ / T₂

where V₁ and T₁ are the initial volume and temperature, and V₂ and T₂ are the final volume and temperature.

Given:

V₁ = 150 mL

T₁ = 15 °C = 15 + 273.15 = 288.15 K

T₂ = 85 °C = 85 + 273.15 = 358.15 K

Now we can calculate V₂:

V₂ = (V₁ * T₂) / T₁

= (150 * 358.15) / 288.15

≈ 186.55 mL

Therefore, the nitrogen sample will occupy approximately 186.55 mL at 85 °C.

Learn more about ideal gas law here:

https://brainly.com/question/30458409

#SPJ11

Potassium metal reacts with chlorine gas to form solid potassium chloride. Answer the following:
Write a balanced chemical equation (include states of matter)
Classify the type of reaction as combination, decomposition, single replacement, double replacement, or combustion
If you initially started with 78 g of potassium and 71 grams of chlorine then determine the mass of potassium chloride produced.

Answers

The 149.2 grams of potassium chloride would be produced if 78 grams of potassium and 71 grams of chlorine completely reacted.

The balanced chemical equation for the reaction between potassium metal (K) and chlorine gas (Cl₂) to form solid potassium chloride (KCl) is:

2K(s) + Cl₂(g) → 2KCl(s)

This equation indicates that two atoms of potassium react with one molecule of chlorine gas to yield two molecules of potassium chloride.

The type of reaction is a combination reaction, also known as a synthesis reaction. In this type of reaction, two or more substances combine to form a single product.

To determine the mass of potassium chloride produced, we need to calculate the limiting reactant. The molar mass of potassium is approximately 39.1 g/mol, and the molar mass of chlorine is approximately 35.5 g/mol.

First, we convert the given masses of potassium (78 g) and chlorine (71 g) into moles by dividing them by their respective molar masses:

Moles of potassium = 78 g / 39.1 g/mol = 2 mol

Moles of chlorine = 71 g / 35.5 g/mol ≈ 2 mol

Since the reactants have a 1:1 stoichiometric ratio, it can be seen that both potassium and chlorine are present in the same amount. Therefore, the limiting reactant is either potassium or chlorine.

Assuming potassium is the limiting reactant, we can calculate the mass of potassium chloride produced. Since 2 moles of potassium react to form 2 moles of potassium chloride, we can use the molar mass of potassium chloride (74.6 g/mol) to calculate the mass:

Mass of potassium chloride = 2 mol × 74.6 g/mol = 149.2 g

For more such questions on potassium chloride

https://brainly.com/question/24879357

#SPJ11

a sealed container contains a mixture of oxygen and nitroggen gas the ratio between average kinetic enegy of oxygen molcules is

Answers

The ratio between the average kinetic energies of oxygen and nitrogen molecules is 8:7.

The average kinetic energy of a gas is directly proportional to its temperature. The temperature of the gas mixture is assumed to be constant since the container is sealed. Therefore, the ratio of the average kinetic energies of oxygen and nitrogen molecules is equal to the ratio of their respective temperatures.

The ratio of the molecular masses of oxygen and nitrogen is 32:28 or 8:7. According to the equipartition theorem, each degree of freedom contributes (1/2)kT to the average kinetic energy of the molecule, where k is the Boltzmann constant and T is the absolute temperature.

Oxygen and nitrogen molecules have the same number of degrees of freedom, which is 3 for a monatomic gas. Therefore, the ratio of the average kinetic energies of oxygen and nitrogen molecules is:

(3/2)kT(O₂)/(3/2)kT(N₂) = T(O₂)/T(N₂)

Since the temperature is assumed to be constant, the ratio of the average kinetic energies of oxygen and nitrogen molecules is equal to the ratio of their molecular masses:

T(O₂)/T(N₂) = 8/7

To learn more about kinetic enegy click on,

https://brainly.com/question/9576283

#SPJ4

f a bar of silver is covered with of silver tarnish, what amount (in ) of silver atoms was either oxidized or reduced? the molar mass of is . report the answer to 3 significant figures.

Answers

Bar's silver atoms are oxidized to create silver tarnish. Silver moles tarnish. (Ag₂S) will oxidised = 0.0412 mol

Bar's silver atoms are oxidized to create silver tarnish. Silver moles tarnish. (Ag₂S)

5.11 g ÷247-8 g/mol = 0.0206 mol

1 mol Ag₂s is formed from 2 mol Ag.

Hence , the total silver (Ag) atoms gets oxidised.

2 × 0.0206 mol

Moles of Ag oxidised is  = 0.0412 mol

2.) Solving Oxidation half: Ag For 1 mol Ag,

1 mol e- Ag⁺ are transferred

Electrons transferred. 0412 mol

What is the significance of oxidation and reduction?

Redox reactions, or oxidation-reduction reactions, are important because they are the main sources of natural or artificial energy on this planet. By removing hydrogen and replacing it with oxygen, oxidation of molecules typically results in the release of a significant amount of energy.

What is the oxidation-decrease process?

The substance that gives electrons is oxidized by it. Because iron has been oxidized (the iron has lost some electrons) and oxygen has been reduced (the oxygen has gained some electrons), it reacts with oxygen to form rust, a chemical. Oxidation is the cause of reduction.

Incomplete question :

Silver Tarnish II 0.0/2.0 points (graded) If a bar of silver is covered with 5.11 g of silver tarnish, what amount (in mol) of silver atoms was either oxidized or reduced? The molar mass of Ag2S is 247.8 mol What amount (in mol) of electrons were transferred?

Learn more about oxidation :

brainly.com/question/13182308

#SPJ4

what are the approximate bond angles in this substance? nicl2

Answers

The approximate bond angles in NiCl2 are around 109.5 degrees.The bond angles in NiCl2 are influenced by the sp hybridization of the nickel atom and the repulsion of the lone pair on the metal center.

NiCl2 adopts a linear geometry due to the sp hybridization of the nickel atom. Each Ni-Cl bond has an approximate bond angle of 180 degrees. The Cl-Ni-Cl bond angle is determined by the lone pair repulsion on the nickel atom, causing a slight deviation from linearity. The electron geometry of NiCl2 is linear, and the molecular geometry is also linear. According to VSEPR theory, the lone pair on the nickel atom creates an electronic repulsion, leading to a bond angle of approximately 109.5 degrees.

The bond angles in NiCl2 are influenced by the sp hybridization of the nickel atom and the repulsion of the lone pair on the metal center. This leads to a slightly bent molecular geometry with a bond angle of around 109.5 degrees.

Learn more about Bond Angles, here:

https://brainly.com/question/25425872

#SPJ11

10. A river in Texas starts at a natural spring of water. The spring water flows up into an area that is used as a swimming pool, and then flows into a river a few miles away. Eight million gallons of water flow out of the spring every hour. What would happen to the river if the natural spring no longer flowed? The river would -​

Answers

If the natural spring that feeds the river in Texas were to stop flowing, it would have a significant impact on the river's ecosystem. The river's water level would gradually decrease, and it could even dry up completely in severe cases. This could lead to a loss of habitat for many aquatic species that depend on the river for survival. The lack of water could also result in the death of fish and other organisms that rely on the river's ecosystem.


Furthermore, the river's water quality could also be negatively affected. The spring water that flows into the river is likely to be clean and free of pollutants, but without it, the river's water quality could be compromised. Other sources of water that may flow into the river could contain pollutants or contaminants, leading to degraded water quality.
In addition to the impact on the ecosystem, the river's recreational use could also be affected. The swimming pool that is fed by the spring would no longer have a source of water, making it unusable. The decrease in the river's water level could also make it difficult for recreational activities such as fishing and boating.
Overall, the loss of the natural spring that feeds the river would have a significant impact on the river's ecosystem, water quality, and recreational use. It is essential to protect and conserve natural resources such as springs and rivers to maintain a healthy and sustainable environment for all living organisms

For more such question on ecosystem

https://brainly.com/question/30187156

#SPJ11.

what is the molarity of a solution made by dissolving 18.5 g of calcium hydroxide in 750.0 ml of water?

Answers

The molarity of the solution is 0.333 M. First, let's define what molarity is. Molarity (M) is a unit of concentration that measures the number of moles of solute (in this case, calcium hydroxide) per liter of solution.

To find the molarity of a solution, we need to follow these steps:
1. Calculate the number of moles of calcium hydroxide in 18.5 g. To do this, we need to use the formula:

moles = mass / molar mass

The molar mass of calcium hydroxide is 74.093 g/mol. Therefore,

moles = 18.5 g / 74.093 g/mol = 0.2494 mol

2. Convert the volume of water from milliliters (ml) to liters (L).

750.0 ml = 0.75 L

3. Calculate the molarity of the solution using the formula:

Molarity = moles of solute / liters of solution

Molarity = 0.2494 mol / 0.75 L = 0.332 M

Therefore, the molarity of the solution made by dissolving 18.5 g of calcium hydroxide in 750.0 ml of water is 0.332 M.

I hope this helps! Let me know if you have any further questions.
To calculate the molarity of a solution, you need to know the moles of solute and the volume of the solvent in liters. Here's a concise explanation using the given information:

1. Calculate the moles of calcium hydroxide (Ca(OH)₂):
Ca(OH)₂ has a molar mass of 40.08 g/mol (Ca) + 2(16.00 g/mol (O) + 1.01 g/mol (H)) = 74.09 g/mol.
18.5 g of Ca(OH)₂ ÷ 74.09 g/mol = 0.25 moles.

2. Convert the volume of water to liters:
750.0 mL = 0.750 L.

3. Calculate the molarity:
Molarity = moles of solute ÷ liters of solvent = 0.25 moles ÷ 0.750 L = 0.333 M.

To know kore about molarity visit:-

https://brainly.com/question/8732513

#SPJ11

which of the following compounds can exhibit linkage isomerism? a. [ni(nh3)6]2 b. [cr(co)3(nh3)3]3 c. [cr(h2o)4br2] d. [fe(co)5ono]2 e. [cr(h2o)4br2]

Answers

Linkage isomerism is a type of isomerism exhibited by coordination compounds where the ligand can bind to the central metal ion through different atoms.

Out of the given options, compounds c and e can exhibit linkage isomerism as they contain the same ligands, i.e., four water molecules and two bromide ions, but the bromide ions can bind to the central chromium ion either through the two different bromine atoms.

In contrast, the other compounds do not contain such ligands that can show linkage isomerism.

[Ni(NH3)6]2 contains only one type of ligand, i.e., NH3.

Similarly, [Cr(CO)3(NH3)3]3, and [Fe(CO)5ONO]2 also have a single type of ligand attached to the metal ion. Therefore, compounds c and e are the only compounds that can exhibit linkage isomerism out of the given options.

To know more about isomerism. please visit.....

brainly.com/question/17569347

#SPJ11

a 40.0 ml sample of 0.150 m ba(oh)2(aq) is titrated with 0.420 m hno3(aq). calculate the volume of hno3(aq) equired to reach the equivalence point in this titration.

Answers

Approximately 29 mL of 0.420 M HNO3(aq) is required to reach the equivalence point in this titration.

To determine the volume of 0.420 M HNO3(aq) required to reach the equivalence point in the titration of a 40.0 ml sample of 0.150 M Ba(OH)2(aq), we need to consider the stoichiometry of the reaction between Ba(OH)2 and HNO3.

The balanced equation for the reaction is:

Ba(OH)2 + 2HNO3 → Ba(NO3)2 + 2H2O

From the balanced equation, we can see that one mole of Ba(OH)2 reacts with two moles of HNO3. Therefore, the moles of HNO3 required can be calculated using the equation:

moles of HNO3 = (moles of Ba(OH)2) x 2

The moles of Ba(OH)2 can be calculated using the formula:

moles of Ba(OH)2 = (concentration of Ba(OH)2) x (volume of Ba(OH)2)

Plugging in the values given:

moles of Ba(OH)2 = (0.150 mol/L) x (0.040 L) = 0.006 mol

Now we can calculate the moles of HNO3 required:

moles of HNO3 = (0.006 mol) x 2 = 0.012 mol

To calculate the volume of HNO3(aq) required, we can use the formula:

volume of HNO3 = (moles of HNO3) / (concentration of HNO3)

Plugging in the values given:

volume of HNO3 = (0.012 mol) / (0.420 mol/L) ≈ 0.029 L

Converting the volume to milliliters:

volume of HNO3 ≈ 0.029 L x 1000 mL/L ≈ 29 mL

Therefore, approximately 29 mL of 0.420 M HNO3(aq) is required to reach the equivalence point in this titration.

Know more about Titration here:

https://brainly.com/question/31870069

#SPJ11

write down the expression for the arrhenius equation and indicate how this can be used to determine the activation energy of a reactions

Answers

The Arrhenius equation relates the rate constant (k) of a chemical reaction to temperature (T), activation energy (Ea), and a pre-exponential factor (A).

The equation is given by:

k = A * exp(-Ea/RT)

where:

k is the rate constant

A is the pre-exponential factor or frequency factor

Ea is the activation energy of the reaction

R is the gas constant (8.314 J/(mol*K))

T is the temperature in Kelvin

To determine the activation energy of a reaction using the Arrhenius equation, one can measure the rate constant at different temperatures, and plot the natural logarithm of the rate constant (ln k) against the inverse of the temperature (1/T). This results in a straight line with a slope of -Ea/R. By measuring the slope of the line, the activation energy can be determined.

The Arrhenius equation can also be used to predict the effect of temperature on the rate of a reaction. As the temperature increases, the exponential term in the equation becomes larger, resulting in a larger rate constant and faster reaction rate. This is because higher temperatures increase the fraction of reactant molecules with sufficient energy to overcome the activation energy barrier and participate in the reaction.

Learn more about Arrhenius equation here:

https://brainly.com/question/30505650

#SPJ11

Suppose the reaction of chlorine water with a halide solution produces a halogen, X2, and a salt, NaCl.In the presence of mineral oil, the-------will dissolve in the oil and the -------will remain in the aqueous layer.

Answers

This is an interesting question about the solubility of halogens and salts in different phases. The long answer is that the halogen, X2, will dissolve in the mineral oil phase, while the salt, NaCl, will remain in the aqueous layer. This is because halogens like chlorine and bromine are non-polar molecules that are soluble in non-polar solvents like mineral oil, whereas salts like NaCl are polar molecules that are soluble in polar solvents like water.

In the presence of mineral oil, the halogen X2 will dissolve in the oil phase due to its non-polar nature. This means that the mineral oil layer will turn yellow or brown depending on the halogen being produced. On the other hand, the salt NaCl will remain in the aqueous layer since it is a polar molecule and is not soluble in mineral oil. This means that the aqueous layer will remain clear or colorless, depending on the concentration of NaCl present.
Overall, the solubility of different compounds in different phases is an important concept in chemistry, and understanding it can help us predict the behavior of chemical reactions in different environments.
In the given reaction, chlorine water reacts with a halide solution to produce a halogen (X2) and a salt (NaCl). When mineral oil is introduced, the halogen (X2) will dissolve in the oil, while the salt (NaCl) will remain in the aqueous layer.

To know more about halogens visit :-

https://brainly.com/question/24505488

#SPJ11

If the solubility product of Mn(OH)2be 1.9×10−13at 25∘C, then what is the pOH of a saturated aqueous solution of Mn(OH)2at that temperature?

Answers

The pOH of a saturated aqueous solution of Mn(OH)₂ at 25°C is 6.5 + 0.5log(S), where S is the solubility of Mn(OH)₂ in mol/L.

The solubility product expression for Mn(OH)₂ is given by;

Mn(OH)₂(s) ⇌ Mn²⁺(aq) + 2OH⁻(aq)

The solubility product constant (Ksp) expression for this reaction will be;

Ksp = [Mn²⁺][OH⁻]₂

Since the solution is saturated with Mn(OH)₂, the concentration of Mn²⁺ and OH⁻ will be equal to the solubility (S) of Mn(OH)₂. Thus, we can write;

Ksp = S(Mn²⁺) x S(OH⁻)₂

Substituting the given value of Ksp, we get;

1.9×10⁻¹³ = S(Mn²⁺) x S(OH⁻)₂

Since Mn(OH)₂ is a sparingly soluble salt, we can assume that the concentration of Mn²⁺ ions produced by the dissociation of Mn(OH)₂ is negligible compared to the initial concentration of OH⁻ ions. Therefore, we can approximate [OH⁻] as the square root of Ksp divided by S.

[OH⁻] = √(Ksp/S)

[OH⁻] = √(1.9×10⁻¹³/S)

Now, we know that pH + pOH = 14 at 25°C.

pOH = -log[OH⁻]

pOH = -log(√(1.9×10⁻¹³/S))

pOH = -0.5log(1.9×10⁻¹³/S)

pOH = -0.5(log(1.9×10⁻¹³) - log(S))

pOH = 6.5 + 0.5log(S)

Therefore, the pOH is 6.5 + 0.5log(S).

To know more about solubility product here

https://brainly.com/question/31781392

#SPJ4

Write and balance the following single
replacement reaction.
e) Cu + H₂SO4 →

Answers

Answer:

The balanced chemical equation for the single replacement reaction between copper (Cu) and sulfuric acid (H₂SO4) is:

Cu + H₂SO4 → CuSO4 + H2

Explanation:

In this reaction, copper reacts with sulfuric acid to form copper(II) sulfate and hydrogen gas. The copper replaces the hydrogen in the sulfuric acid compound, resulting in the formation of copper(II) sulfate and hydrogen gas. The equation is balanced because there are equal numbers of atoms of each element on both sides of the arrow.

write the acid ionization reaction for h2so4. don't forget to include states of matter in your chemical equation.

Answers

The acid ionization reaction for H₂SO is  HSO (aq) → 2H⁺ (aq) + SO²⁻(aq). H₂SO is a dibasic acid.

Any process in physics and chemistry whereby electrically neutral atoms or molecules are changed into electrically charged atoms or molecules (ions) by receiving or losing electrons is known as ionisation. Radiation, including charged particles and X-rays, transmits its energy to matter mostly by ionisation.

Ionisation frequently takes place in a liquid solution in chemistry. For instance, neutral hydrogen chloride gas (HCl) molecules combine with polar water molecules (H₂O) to form positive hydronium ions (H₃O⁺) and negative chloride ions (Cl⁻). Zinc atoms, Zn, lose their electrons to hydrogen ions at the surface of a piece of metallic zinc exposed to an acidic solution, turning them into colourless zinc ions, Zn₂⁺.

When an electric current is sent through gases at low pressures, ionisation by collision happens. If the electrons that make up the current have enough energy (the ionisation energy varies depending on the material), they can drive other electrons out of the neutral gas molecules, creating ion pairs that are made up of a detached negative electron and the consequent positive ion. As some of the electrons bond with neutral gas molecules, negative ions are also created. At very high temperatures, intermolecular collisions can also ionise gases.

Learn more about Ionization reaction:

https://brainly.com/question/29614811

#SPJ4

Predict what the new boiling point of water will be if you add 0.125 kg of |NaCl solute to 750 g of water (Kb of water = 0.51°C/m). ? a.101.45°C b. 98.55°C c. 102.91°C d.97.09°C

Answers

The new boiling point of the NaCl solution is 102.91°C when 0.125 kg of NaCl is added to 750 g of water, assuming the boiling point elevation constant (Kb) of water is 0.51°C/m.

To find the new boiling point of the solution, we can use the formula:

ΔTb = Kb × m

where ΔTb is the change in boiling point, Kb is the boiling point elevation constant (0.51°C/m for water), and m is the molality of the solute.

First, we need to calculate the molality of the NaCl solution:

m = (moles of solute) / (mass of solvent in kg)

The molar mass of NaCl is 58.44 g/mol, so 0.125 kg of NaCl is:

moles of NaCl = (0.125 kg) / (58.44 g/mol) = 2.14 mol

The mass of the solvent (water) is 750 g, which is 0.75 kg.

So, the molality of the NaCl solution is:

m = (2.14 mol) / (0.75 kg) = 2.85 mol/kg

Now we can use the formula to calculate the change in boiling point:

ΔTb = Kb × m = (0.51°C/m) × (2.85 mol/kg) = 1.454°C

Finally, we can find the new boiling point of the solution by adding the change in boiling point to the normal boiling point of water (100°C):

New boiling point = 100°C + 1.454°C = 101.454°C

Therefore, the correct answer is c. 102.91°C.

The new boiling point of the NaCl solution is 102.91°C when 0.125 kg of NaCl is added to 750 g of water, assuming the boiling point elevation constant (Kb) of water is 0.51°C/m.

To know more about boiling point, visit;

https://brainly.com/question/40140

#SPJ11

Other Questions
which body systems will attempt to keep the body in homeostasis if acid-base imbalance continues for an extended period of time? based on the excerpt, the cultural revolution in china the united states is one of the world's greatest carbon dioxide emitters, accounting for 14% of global carbon emissions in 2015. T/F Are these two triangles similar?A. Yes, using AA.B. Yes, using SAS.C. Yes, using SSS.D. No, they are not similar. or Find the value of the expression 20 9 m 2 n for m = 3 and n = For any positive number b not equal to 1 and any number or variable n,evaluate the following expression.blog = the maharaja mac is an example of mcdonald's using a global marketing strategy in india. question 38 options: true false Mongol rule in Russia facilitated the rise to power of which city? answer choices. A) Moscow. B) Kiev. which of the following is not considered an effect of globalization on the competitive environment? answer industry rivalry is more intense because of more product and vendor choice and more available information. customers have a broader array of vendors from which to choose. customers find it easier to learn about substitute goods. new market entrants find it much more difficult to survive and thrive. i don't know yet i need help with this List three (3) Civil Rights events that Hansberry (or her family) was involved with Inicio desarrollo y final de la leyenda de la llorona which is the preferred measure for demographers to use to estimate mortality? True or False. One of the most common membranophones around the world iss the bagpipe. the volume of the cylinder is 48[tex]\pi[/tex] cubic feet. the area of the base is 12[tex]\pi[/tex] square feet. whats the ***height** of the cylinder Planning and budgeting your time will NOT give you more flexibility and help reduce stress when driving on the roadway. true or false le corbusier and other modernists went against semiotics, because they wanted the general public to accept new icons of a new way of life. group of answer choices true false A = 112,4 and B = 48,6 sinA 2 The table shows the expenses for Deja's first year of college. Tuition & Fees Housing Books & Supplies Transportation $8,232 $6,540 $1,130 $1,900 If Deja's grandparents are paying for 80% of her first year's expenses, how much will Deja need to pay for? Which quote from an interview is correctly punctuated? A. According to Dr. Peterson, "All life is important." B. According to Dr. Peterson "All life is important". C. According to Dr. Peterson, "All life is important". D. According to Dr. Peterson "All life is important."