How many nonbonding electron pairs are there in the lewis structure of the peroxide ion

Answers

Answer 1

Answer:

There are 6 non bonding pair of electrons present in Lewis structure of peroxide ion.

Explanation:

Ionic formula of peroxide ion is [tex]O_{2}^{2-}[/tex]

Total number of valence electron present in peroxide ion is 14 (12 electrons come from two oxygen atoms and another 2 electrons come from negative charges).

After fulfilling octet rule, Lewis structure of peroxide shows that each oxygen atom contains three non bonding electron pairs and a covalent bond.

Hence there are 6 non bonding pair of electrons present in Lewis structure of peroxide ion.

Lewis structure has been given below.

How Many Nonbonding Electron Pairs Are There In The Lewis Structure Of The Peroxide Ion

Related Questions

What type of reaction is:

Answers

Answer:

The answer to your question is Combustion

Explanation:

Chemical reaction

                 2C₄H₁₀  +  13 O₂  ⇒   8 CO₂  +  10 H₂O

A combustion reaction is a chemical reaction in which the reactants are always a molecule with carbon (organic molecule) and oxygen (O₂), and the products are always carbon dioxide (CO₂) and water (H₂O).

Conclusion

The chemical reaction of this problem is combustion

It is easier for a large corporation to offer benefits to its employees than for a smaller company.

True
False

Answers

Answer:

true

Explanation:

Answer: True

Explanation: Because the large company has more people and is making more money than the smaller company

hi um whats a single and double reaction

Answers

A single-replacement reaction is a chemical reaction in which one element is substituted for another element in a compound, generating a new element and a new compound as products.

A double-replacement reaction occurs when parts of two ionic compounds are exchanged, making two new compounds. A characteristic of a double-replacement equation is that there are two compounds as reactants and two different compounds as products.

The key difference between single displacement and double displacement reaction is that, in single displacement reactions, one chemical species replaces a part of another chemical species whereas, in double displacement reactions, exchange of two ionic species between two molecules occur.

Hope this helps you.

Answer:

A single-replacement reaction is a chemical reaction in which one element is substituted for another element in a compound, generating a new element and a new compound as products.

How many moles are present in 4.7 liters of Argon gas at STP?

Answers

The answer for the following problems is mentioned below.

Therefore the number of moles present in Argon is 0.20 moles.

Explanation:

Mole:

The mass of a substance containing the same number of fundamental units as there are atoms in exactly 12.000 g of [tex]C^{12}[/tex].

Given:

volume (v) = 4.7 litres

Volume of argon at STP conditions = 22.4 litres

To find:

volume of argon at STP conditions

We know;

n = [tex]\frac{v}{V}[/tex]

where;

n represents the no of moles

v represents the volume of the argon

V represents the volume of argon at STP

volume of the argon at STP conditions is 22.4 litres

So;

n = [tex]\frac{4.7}{22.4}[/tex]

n = 0.20 moles

Therefore the number of moles present in Argon is 0.20 moles.

There are 0.107 moles of Argon gas present in 4.7 liters at STP.

To determine the number of moles of Argon gas present in 4.7 liters at STP (Standard Temperature and Pressure), we can use the Ideal Gas Law, which is given by:

[tex]\[ PV = nRT \][/tex]

where:

- [tex]\( P \)[/tex] is the pressure,

- [tex]\( V \)[/tex] is the volume,

- [tex]\( n \)[/tex] is the number of moles,

- [tex]\( R \)[/tex] is the ideal gas constant, and

- [tex]\( T \)[/tex] is the temperature.

At STP, the conditions are defined as:

- [tex]\( P = 1 \)[/tex] atmosphere (atm),

- [tex]\( T = 273.15 \)[/tex] Kelvin (K).

The value of the ideal gas constant [tex]\( R \)[/tex] is approximately [tex]\( 0.0821 \frac{\text{L} \cdot \text{atm}}{\text{mol} \cdot \text{K}} \)[/tex].

We can rearrange the Ideal Gas Law to solve for n  (the number of moles):

[tex]\[ n = \frac{PV}{RT} \][/tex]

Given that [tex]\( V = 4.7 \)[/tex] liters, we can plug in the values:

[tex]\[ n = \frac{(1 \text{ atm})(4.7 \text{ L})}{(0.0821 \frac{\text{L} \cdot \text{atm}}{\text{mol} \cdot \text{K}})(273.15 \text{ K})} \][/tex]

[tex]\[ n = \frac{4.7}{0.0821 \times 273.15} \][/tex]

[tex]\[ n = \frac{4.7}{22.41} \][/tex]

[tex]\[ n \approx 0.107 \text{ moles} \][/tex]

Therefore, there are approximately 0.107 moles of Argon gas in 4.7 liters at STP.

do all metal oxides produce alkaline solutions? explain why or why not?

Answers

Answer:

Forming acids and alkalis. Soluble metal oxides (or metal hydroxides) produce alkaline solutions. Soluble non-metal oxides produce acidic solutions. Insoluble oxides will not affect the pH of water.

Explanation:

Final answer:

While most metal oxides form basic solutions by reacting with water, this is not universal; some metal oxides, particularly those with higher oxidation states, can be amphoteric or acidic and do not produce alkaline solutions.

Explanation:

Not all metal oxides produce alkaline solutions when reacted with water, as the reaction depends on the properties of both the metal and its oxide. Most metal oxides are base anhydrides and will react with water to produce basic solutions, especially if the oxides are soluble and thus form metal hydroxides. However, this does not apply to metal oxides across the board. Some metal oxides have low oxidation states and are amphoteric or primarily acidic, meaning they can behave as either acids or bases depending on the conditions. For instance, metal oxides at lower oxidation states tend to react with aqueous acids forming solutions of salts and water rather than acting as bases. Oxides of metals with high oxidation states (4+ or more) such as vanadium(V) oxide and chromium(VI) oxide are acidic and will react with solutions of hydroxides to form salts and water, rather than producing alkaline solutions.

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Suppose the reaction Ca3(PO4)2 + 3H2SO4 --> 3CaSO4 + 2H3PO4 is carried out starting with
153 g of Ca3(PO4)2
and 76.8 g of H2SO4
How many grams of phosphoric acid will be produced.​

Answers

Answer:

The answer to your question is 51.2 g of H₃PO₄

Explanation:

Data

mass of Ca₃(PO₄)₂ = 153 g

mass of H₂SO₄ = 76.8 g

mass of H₃PO₄ = ?

Balanced chemical reaction

               Ca₃(PO₄)₂  +  3H₂SO₄  ⇒   3CaSO₄  +  2H₃PO₄

Process

1.- Calculate the molar mass of the reactants

Ca₃(PO₄)₂ = (3 x 40) + (2 x 31) + (8 x 16) = 120 + 62 + 128 = 310 g

H₂SO₄ = (1 x 2) + (32 x 1) + (16 x 4) = 2 + 32 + 64 = 98 g

2.- Calculate the limiting reactant

Theoretical yield Ca₃(PO₄)₂ / H₂SO₄ = 310 / 3(98) = 1.05

Experimental yield Ca₃(PO₄)₂ / H₂SO₄ = 153 / 76.8 = 1.99

The limiting reactant is H₂SO₄ because the experimental proportion was higher than the theoretical proportion.

3.- Calculate the molar mass of H₃PO₄

H₃PO₄ = (1 x 3) + (31 x 1) + (16 x 4) = 3 + 31 + 64 = 98 g

4.- Calculate the mass of H₃PO₄

                3(98) g of H₂SO₄ ------------------ 2(98) g of H₃PO₄

                 76.8 g of H₂SO₄ ------------------  x

                        x = (76.8 x 2 x 98) / (3 x 98)

                        x = 15052.8 / 294

                       x = 51.2 g of H₃PO₄

How many mL of 1.01 M LiNO3 solution has 6.63 g of solute?

Answers

Answer:

The answer to your question is 97 ml

Explanation:

Data

volume = ? ml

concentration = 1.01 M LiNO₃

mass = 6.63 g

Process

1.- Calculate the molecular weight of LiNO₃

LiNO₃ = (1 x 6.94) + (1 x 14) + (16 x 3)

          = 6.94 + 14 + 48

          = 69 g

2.- Calculate the moles of LiNO₃

                  69 g ------------------ 1 mol

                  6.63 g ---------------  x

                    x = (6.63 x 1) / 69

                    x = 0.096 moles

3.- Calculate the volume

Molarity = moles / volume

-Solve for volume

Volume = Molarity x moles

-Substitution

Volume = 1.01 x 0.096

-Result

Volume = 0.097 l or 97 ml

The number of mL of of 1.01 M LiNO3 solution when solution has 6.63 g of solute should be  97 ml.

Calculation of the number of mL:

Since

concentration = 1.01 M LiNO₃

mass = 6.63 g

First we have to determine the molecular weight of LiNO₃ i.e.

LiNO₃ = (1 x 6.94) + (1 x 14) + (16 x 3)

         = 6.94 + 14 + 48

         = 69 g

Now  the moles of LiNO₃

  69 g ------------------ 1 mol

6.63 g ---------------  x

x = (6.63 x 1) / 69

x = 0.096 moles

Now the volume is

Molarity = moles / volume

It can be like

Volume = Molarity x moles

= 1.01 x 0.096

= 0.097 l or 97 ml

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1. Which of the following is the ideal gas law?

Answers

Answer:

PV = nRT

Explanation:

P=pressure

V=volume

n=amount of substance

R=ideal gas constant

T=temperature

A fish is swimming at a constant rate towards the ocean floor. The equation
y=−7x−3
can be used to represent this situation, where
y
is the depth of the fish in meters below the sea level and
x
is the number of seconds the fish has been swimming. Which statement best describes the depth of the fish, given the situation?

Answers

A fish is swimming at a constant rate toward the ocean floor. The equation y = −7x − 3 can be used to represent this situation, where y is the depth of the fish in meters below sea level and x is the number of seconds the fish has been swimming. Which statement best describes the depth of the fish, given this equation?
From a starting position of 7 meters below sea level, the fish is descending 3 meters per second.
B From a starting position of 7 meters below sea level, the fish is ascending 3 meters per second.
C From a starting position of 3 meters below sea level, the fish is descending 7 meters per second

Answer: The answer is c

Explanation:

What is double substitution

Answers

Answer:

In Tcl the words in a command are always exposed to two layers of interpretation: First, Tcl interprets them and prepares them as arguments to a routine. Second, the routine interprets those arguments according to its own principles. double substitution occurs when Tcl performs substitutions on original command and a routine then performs substitutions on the resulting arguments. Care is required in these cases to avoid errors, including vulnerability to injection attacks.

Explanation:

this probably wont help but here

PLZ HELP
A chemist dissolves an ionic compound in water. The vapor pressure of the solution is _____. less than the vapor pressure of pure water equal to the vapor pressure of pure water greater than the vapor pressure of pure water

Answers

Answer is:

Less than the vapor pressure of pure water

The vapor pressure of a solution with a dissolved ionic compound is less than the vapor pressure of pure water. To determine the molecular formula of the compound Xy, calculate the moles of Xy using its total mass and molar mass, then find the subscript y for the number of Y atoms or groups present.

When a chemist dissolves an ionic compound in water, the vapor pressure of the solution is less than the vapor pressure of pure water. This phenomenon is explained by Raoult's law, which states that the vapor pressure of a solvent above a solution is lowered by the presence of a non-volatile solute. In the given question, after dissolving 110 g of substance Xy in 500 g of water, the vapor pressure drops from 17.5 mmHg to 15.0 mmHg. This decrease is due to the solute particles in the solution, which interfere with the evaporation process of the solvent (water) molecules.

To determine the molecular formula of the substance Xy, you first need to calculate the number of moles of Xy. Then, use the total mass of Xy and its molecular mass to find the number value of the subscript y in the molecular formula. Here's how the calculation is done:

What is energy?

-The ability to do work or cause change
-Anything that has mass and takes up space
-Substances bonded together
-Both a and b

Answers

Answer:

Both a and b

Hope this answer helps you

Final answer:

Energy is the ability to do work or cause change and comes in many forms like mechanical, electrical, kinetic, and potential. It is a fundamental concept in physics, involving the transfer and conservation of energy in various processes.

Explanation:

What is Energy?

Energy is a fundamental concept in physics, often defined as the capacity to do work or cause change. The scientific concept of work corresponds to applying a force over a distance, like pushing a heavy object across the floor or lifting a weight. Energy can also be transferred and recognized in other forms, such as heat or light. There are various forms of energy, such as mechanical, electrical, kinetic, and potential energy. For instance, when inflating a bicycle tire, we do work by moving air against the resistance of the air already in the tire, exemplifying mechanical work.

In a broader sense, energy enables the movement of matter and the execution of actions, and it is conserved in physical processes, converting from one form to another but never disappearing.

What is the definition of Amplitude?

Answers

Answer:

the maximum extent of a vibration or oscillation, measured from the position of equilibrium.

Explanation:physics

Final answer:

Amplitude, within a Physics context, describes the maximum displacement from an equilibrium or rest position. It is especially important in the study of waves and sound, affecting the height of waves and the perceived volume of sound respectively.

Explanation:

The term Amplitude in physics refers to the maximum displacement from the equilibrium or rest position. Precisely, it can be defined as the distance from the equilibrium position of the medium to a compression or a rarefaction. For example, in the context of waves, the amplitude is the measurement of the wave's height from the equilibrium position (mid-point or rest point of the wave) to its crest (highest point).

When applied to sound, amplitude refers to the magnitude of compression and expansion in sound waves. Sound with higher amplitudes are perceived as louder, measured in decibels (dB), due to their greater displacement from the point of equilibrium.

The units for measuring amplitude can vary according to the context and can be centimeters, meters, or any other convenient unit of distance. As the Amplitude increases, the intensity or loudness of the wave also increases correspondingly. Therefore, amplitude plays an essential role in determining the characteristics and impact of the wave.

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A chemistry student was asked to calculate the number of moles of iron required to react with 1.20 mol of oxygen to produce iron(III) oxide. His calculation is shown below: 1.20

Answers

Answer:

1.6 moles of iron

Explanation:

-Metals reacts with oxygen to form oxides.

-The chemical reaction between oxygen and iron is written as below:

[tex]4Fe_{(s)}+3O_2_{(g)}->2Fe_2O_3_{(s)}[/tex]

-pu notice from the balanced chemiocal equation above that the mole ration of iron to oxygen is 4:3

-We equate and cross multiply to find moles of iron in the reaction;

[tex]Fe:O_2=4:3\\\\\\\frac{Fe}{O_2}=\frac{4}{3}\\\\\frac{Fe}{1.2}=\frac{4}{3}\\\\Fe=\frac{4\times 1.2}{3}\\\\=1.6\ moles[/tex]

Hence, 1.6 moles of iron reacts with 1.2 moles of oxygen in the above reaction.

Final answer:

To calculate the number of moles of iron required to react with 1.20 mol of oxygen to produce iron(III) oxide, you need to determine the stoichiometric mole ratio from the balanced chemical equation. The ratio is 1 mole of iron to 1.5 moles of oxygen, which can be multiplied by 2 to get the balanced equation.

Explanation:

To calculate the number of moles of iron required to react with 1.20 mol of oxygen to produce iron(III) oxide, you need to determine the stoichiometric mole ratio from the balanced chemical equation. Based on the equation, the ratio is 1 mole of iron to 1.5 moles of oxygen. Since the ratio is not a whole number, you need to multiply it by 2 to get the smallest possible whole number subscripts while maintaining the correct iron-to-oxygen ratio. Therefore, the balanced equation is: 2 Fe + 1.5 O₂ → Fe₂O₃.

Rank the following solutions from the highest [H3O+] (1) to the lowest [H3O+] (5).

[H3O+] = 3.16 × 10–4 M
[OH–] = 4.35 × 10–2 M
pH = 1.05
pOH = 7.0
pOH = 4.0

Answers

Answer:

1.) 2

2.) 5

3.)1

4.)3

5.)4

Explanation:

this in edge 2020

The solution ranked with the presence of hydronium ion concentration from higher to lower is  pH = 1.05 > [OH⁻] = 4.35 * 10 ⁻² >  [H₃O⁺] = 3.16 * 10⁻⁴ M > pOH = 7 > pOH = 4.

What is pH and pOH?

The pH and pOH can be given as the logarithmic value of the presence of hydrogen or hydronium and hydroxide ion concentration in a solution respectively.

The hydronium ion concentration can be given as:

[H₃O⁺] = antilog (-pH)

The hydronium ion concentration of pH = 1.05 is:

[H₃O⁺] = 10⁻¹.⁰⁵

[H₃O⁺] = 0.089 M

The pH from pOH can be calculated as:

pH = 14 - pOH

pH of solution with pOH 7 is:

pH = 14 - 7

pH = 7

The hydronium ion concentration can be given as:

[H₃O⁺] = 10⁻⁷

[H₃O⁺] = 1 * 10⁻⁷ M

The pH of solution with pOH 4 isL:

pH = 14 - 4

pH = 10

The hydronium ion concentration can be given as:

[H₃O⁺] = 10⁻¹⁰

[H₃O⁺] = 1 * 10⁻¹⁰ M

Thus, the solutions from highest to lowest hydronium ion concentration can be ranked as:

pH = 1.05 > [OH⁻] = 4.35 * 10 ⁻² >  [H₃O⁺] = 3.16 * 10⁻⁴ M > pOH = 7 > pOH = 4.

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how does coal convert to electrical energy?

Answers

Answer:

Coal-fired plants produce electricity by burning coal in a boiler to produce steam. The steam produced, under tremendous pressure, flows into a turbine, which spins a generator to create electricity. The steam is then cooled, condensed back into water and returned to the boiler to start the process over.

Explanation:

Dioxin is a by-product of various industrial chemical processes. It is suspected of causing cancer and birth defects in both humans and other animals. Apparently, it acts by entering cells and binding to proteins, altering the pattern of gene expression. Therefore, it is reasonable to propose that dioxin acts by mimicking _____.

Answers

Answer:

The answer to the given question is: dioxin acts by mimicking the role of transcription factors.

Explanation:

Dioxin acts by mimicking the action of regulatory proteins that influence the binding of RNA polymerase to a promoter.

Transcription occurs in the three steps—initiation, elongation, and termination. Transcription factors are proteins that controls the rate of transcription of genetic information from DNA to messenger RNA, by binding to a specific DNA sequence. Transcription factors are directly involved in regulating gene expression.

Transcription factors are a very diverse family of proteins and generally function in multi-subunit protein complexes.

Dioxins are unwanted by-products of a wide range of manufacturing processes that are harmful to health. They can cause problems with reproduction, development, and the immune system. They can also disrupt hormones and lead to cancer.

Dioxins have no common uses. They are manufactured on a small scale for chemical and toxicological research.

Dioxins are absorbed into the human body through the digestive and respiratory tracts or through skin contact. They are then distributed throughout the body. Once dioxins enter the body, they last a long time because of their chemical stability and their ability to be absorbed by fat tissue.

The highest levels of dioxins are found in some soils, consumer products such as; cigarettes, pesticides, and herbicides,  sediments and food, especially fatty foods such as meat, poultry, seafood, milk, egg and their products.

Dioxin is a by-product of various industrial chemical processes. It is suspected of causing cancer and birth defects in both humans and other animals. Apparently, it acts by entering cells and binding to proteins, altering the pattern of gene expression. Therefore, it is reasonable to propose that dioxin acts by mimicking the role of transcription factors.

Dioxin acts by mimicking the action of regulatory proteins that influence the binding of RNA polymerase to a promoter.

Transcription occurs in the three steps—initiation, elongation, and termination. Transcription factors are proteins that controls the rate of transcription of genetic information from DNA to messenger RNA, by binding to a specific DNA sequence. Transcription factors are directly involved in regulating gene expression.

Transcription factors are a very diverse family of proteins and generally function in multi-subunit protein complexes.

Dioxins are unwanted by-products of a wide range of manufacturing processes that are harmful to health. They can cause problems with reproduction, development, and the immune system. They can also disrupt hormones and lead to cancer.

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What amount of water is formed when 20 ml of 0.80 m hcl and 30 ml of 0.40 m naoh are mixed?

Answers

Answer: The amount of water formed is 12 moles

Explanation: Please see the attachments below

0.216 g of water is formed.

According to the question,

The concentration of HCl and NaOH are:

→ [tex]CHCl = \frac{20\times 0.80}{50}[/tex]

             [tex]= 0.32 \ M[/tex]

→ [tex]CNaOH = \frac{30\times 0.40}{50}[/tex]

                  [tex]= 0.24 \ M[/tex]

Upon the reaction,

It will form 0.24 M of NaCl as well as 0.24 M of H₂O in 50 mL solution.

In 1000 mL,

→ [tex]1 M \ H_2O = 18 \g \ H_2O[/tex]

Now,

50 mL of 0.24 M H₂O will contain:

= [tex](18\times 0.24)\times \frac{50}{1000}[/tex]

= [tex]0.216 \ g[/tex] (water)

Thus the response above is right.

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The eastfork forest contains pine trees, birch trees, and dogwood trees. All the trees in this forest are considered a(n) _____

Answers

Answer:

The answer is community

I got it correct

Explanation:

Answer:

community is the answer

Explanation:

why does a perfume bottle burst when placed inside the flame​

Answers

Answer:

It's because the perfume bottle contains ethyl alcohol.

It is because perfume has ethyl alcohol

Zinc granules on treating with an acid X, form the zinc sulphate (ZnSO4) salt along with the evolution of a gas Y which burns with a pop sound when brought near to a burning candle.

Answers

Answer:

Question is incomplete, the complete question is;

Zinc granules on treating with an acid X, form the zinc sulphate (ZnSO4) salt along with the evolution of a gas Y which burns with a pop sound when brought near to a burning candle. Identify the acid X and gas evolved Y.

Answer is;

Acid X is sulfuric acid (H₂SO₄) and the gas evolved Y is hydrogen (H₂).

Explanation:

Acids react with metals to produce a salt and hydrogen. The metal ions replace the hydrogen ions in the acids.  

When Zinc (Zn) granules are treated with sulfuric acid (H₂SO₄), the products are zinc sulfate (ZnSO₄) and hydrogen (H₂).

H₂SO₄ + Zn → ZnSO₄ + H₂

This reaction is a redox reaction, where reduction and oxidation happen at the same time. Zinc atoms are oxidized since they lose electrons (Zn → Zn²⁺ + 2e⁻), and hydrogen ions are reduced since they gain electrons (2H⁺ + 2e⁻ → H₂).  

Hydrogen is a highly flammable gas, which reacts with oxygen molecules to produce water, combined with an explosive release of energy. But a source of energy like a small spark is needed for this reaction to take place since hydrogen does not react with oxygen at room temperature.

The activation energy (energy required for a reaction to proceed) of hydrogen is low, so only a small amount of energy is needed to trigger a reaction with oxygen. When hydrogen is brought near to a burning candle, it reacts with oxygen in the air in a small explosion by producing a squeaky pop sound.

In the question, Zinc granules are treated with an acid X to form zinc sulfate (ZnSO₄) salt along with the evolution of a gas Y which burns with a pop sound when brought near to a burning candle. So, now it is clear that the acid X is sulfuric acid (H₂SO₄) and the gas evolved Y is hydrogen (H₂).

Imagine it took 300 mL of 0.1 M LiOH to reach the first equivalence point and an additional 300 mL of 0.1 M LiOH (600 mL total) to reach the second equivalence point. How many moles of H2 were in the original acid solution

Answers

Answer:

0.03 mol H₂

Explanation:

In a diprotic acid titration, the first equivalence point relates to the equilibrium:

H₂A + OH⁻ ↔ HA⁻ + H₂O

And the second equivalence point to:

HA⁻ + OH⁻   ↔ A⁻² + H₂O

We can add those two equations and we're left with:

H₂A + 2OH ⁻ ↔ A⁻² + 2H₂O

So to calculate the moles of H₂ that were in the original acid solution we use the total volume used (in this case 600 mL).

600 mL ⇒ 600/1000 = 0.6 L

We calculate the moles of LiOH, using its molar concentration:

0.1 M * 0.6 L = 0.06 mol LiOH

And now we convert moles of LiOH (or OH⁻) to moles of H₂ using the  stoichiometric ratio:

0.06 mol LiOH * [tex]\frac{1molH_{2}A}{2molLiOH}[/tex] = 0.03 mol H₂

Which of the following organisms is a tertiary consumer

Answers

In the real world, a tertiary consumer can eat many different animals and even plants sometimes. This means that they can actually be carnivorous or omnivorous. Some examples of tertiary consumers include, birds of prey, big cats, and foxes.

What is the concentration of 60 mL of H3PO4 if it is neutralized by 225 mL of 2 M Ba(OH)2?

Answers

7.5 M is the concentration of 60 ml of H3PO4 if it is neutralized by 225 ml of 2 M Ba(OH)2.

Explanation:

Data given:

volume of phosphoric acid, Vacid =60 ml

volume of barium hydroxide, Vbase = 225 ml

molarity of barium hydroxide, Mbase = 2M

Molarity of phosphoric acid, Macid =?

the formula for titration is used as:

Macid x Vacid = Mbase x Vbase

rearranging the equation to get Macid

Macid = [tex]\frac{Mbase x Vbase}{Vacid}[/tex]

Macid =[tex]\frac{225 X 2}{60}[/tex]

Macid = 7.5 M

the concentration of the phosphoric acid is 7.5 M and the volume is 60 ml. Thus 7.5 M solution of phosphoric acid is used to neutralize the barium hydroxide solution of 2M.

Answer:

= 5 M

Explanation:

2H3PO4 + 3Ba(OH)2 ----> Ba3(PO4)2 + 3H2O

moles Ba(OH)2 = molarity x litres

= 2 M x 0.225 L

= 0.45 mol

3 moles Ba(OH)2 react with 2 moles H2SO4

So moles H2SO4 = 2/3 x moles Ba(OH)2

= 0.3 mol

molarity = moles / litres

= 0.3 mol / 0.06 L

=5M

Sort the phrases based on whether they describe or give an example of diffusion, facilitated diffusion, both, or neither. 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

Question:

a. Diffusion

b. Facilitated diffusion

c. Both

d. Neither

1. movement to area of lower concentration

2. movement across a membrane

3. steroid transport into cell

4. requires energy

5. movement assisted by proteins

6. glucose transport into cell

   

Answer:

The sorting is as follows

a. (1)

b. (5 and 6)

c. (1 and 2)

d. (4)

Explanation:

Diffusion is the movement of particles across a membrane from a high concentration region to one with a lower concentration of the diffusing substance

Here we have the correct sorting as follows

a. Diffusion

3. steroid transport into cell

b. Facilitated diffusion

5. movement assisted by proteins

6. glucose transport into cell

c. Both

1. movement to area of lower concentration

2. movement across a membrane

d. Neither

4. requires energy

how many moles of glucose are in 19.1 g of glucose

Answers

Answer:

There are 0,106 mol of glucose in 19,1g.

Explanation:

First we calculate the weight of 1 mole of Glucose whose molecular formula is C6 H12 0 6, with the atomic weights of each element obtained from the periodic table. Then, by means of a simple rule of three we calculate the moles that are in 19.1 grams:

Weight 1 mol C6H1206 = (Weight C)x 6 + (Weight H)x12 + (Weight 0)x6=

                                       = 12 g x 6 + 1g x12 + 16 g x 6= 180 g/mol

180 g ----1 mol glucose

19,1 g-----x= (19,1 g x 1 mol glucose)/ 180 g= 0,106 mol

Final answer:

To find the number of moles of glucose in 19.1 grams, divide the mass by the molar mass of glucose (180 g/mol), resulting in approximately 0.106 moles.

Explanation:

The student's question is about determining the number of moles of glucose in a given mass of glucose. To calculate this, we need to use the molar mass of glucose, which is 180 g/mol. The mass of glucose given is 19.1 grams.

To find the number of moles, we use the formula:

Number of moles = mass (g) / molar mass (g/mol)

So for glucose, it would be:

Number of moles of glucose = 19.1 g / 180 g/mol

Calculating this gives us:

Number of moles of glucose = 0.106 moles (rounded to three decimal places)

a strong acid, HA, is added to water. Which statement about the solution is true

Answers

I assume you mean HAt, and I don’t see any statements?

Answer:

C) It contains little or no HA.

Explanation:

HELP!!!
Zn+CuCl2→ZnCl2+Cu

How many grams of ZnCl2 will be produced from 7.00 grams of Zn and 8.00 grams of CuCl2?

Answers

Answer:

The answer to your question is 8.1 g of ZnCl₂

Explanation:

Data

mass of ZnCl₂ = ?

mass of Zn = 7.0 g

mass of CuCl₂ = 8 g

Balanced chemical reaction

                Zn  +  CuCl₂   ⇒   ZnCl₂  +  Cu

Process

1.- Calculate the molar mass of the reactants

Zn = 65.4 g

CuCl₂ = 63.6 + (35.5 x 2) = 134.6 g

2.- Calculate the limiting reactant

theoretical yield  CuCl₂ / Zn = 134.6/65.4 = 2.06

experimental yield CuCl₂ / Zn = 8/7 = 1.1

The limiting reactant is CuCl₂ because the experimental yield was lower than the theoretical yield.

3.- Use proportions to calculate the mass of ZnCl₂

molar mass of ZnCl₂ = 65.4 + (35.5 x 2) = 136.4 g

                  134.6 g of CuCl₂ ---------------- 136.4 g of ZnCl₂

                      8   g                 ----------------  x

                      x = (8 x 136.4) / 134.6

                      x = 8.1 g of ZnCl₂


How many calories are needed to raise the temperature of 25 grams of water form 50°C to 70°C? The specific heat of water is 1cal/g°C

Answers

Answer:

500 calories

Explanation:

Heat gained or lost is mass times specific heat times change in temperature. Using this formula, the answer is 500 calories.

A 2.50 g sample of zinc is heated, and then placed in a calorimeter containing 65.0 g of water. Temperature of water increases from 20.00 oC to 22.50 oC. The specific heat of zinc is 0.390 J/g oC. Assuming no heat loss, what was the initial temperature of the zinc metal sample?

Answers

The initial temperature of the zinc metal is  720 ° C

Explanation:

Given data,

Zn

m=2.50 g            

C=0.390 J/g° C

ΔT= (22.50° C- Ti)

H2O

m= 65.0 g

C= 4.184 J/ g° C

ΔT = 2.50° C

We have the formula,

qH20= - qZn

(65.0 g) (4.184 J/ g° C) (ΔT 2.50° C)=(2.50 g) ( 0.390 J/g° C) (ΔT 22.50° C- Ti)

solving the equation we get,

697.3 ° C=- 22.50 ° C+Ti

Ti= 720 ° C

The initial temperature of the zinc metal is  720 ° C

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