Which describes the volume of 1 mol of gas at standard temperature and pressure? The volume is greater for a larger mass of gas.
The volume is the same for any gas.
The volume depends on the size of the container.
The volume varies with the pressure.

Answers

Answer 1
I think the correct answer would be the second option. The volume of 1 mol of gas at standard temperature and pressure would be the same for any gas. If and only if the gas is an ideal gas. This is according to the ideal gas law ( PV = nRT ), at STP ( P = 1 atm T = 273.15 K ) you would calculate the volume of the gas to be 22.4 L. So, 1 mol of any ideal gas would occupy 22.4 L of volume. We calculate as follows:

PV = nRT
V = nRT / P
V = (1 mol ) (0.08205 L-atm / mol K) (273.15 K ) / 1 atm
V = 22.4 L 

Related Questions

How many grams of naoh are needed to make 750 ml of a 2.5 (w/v) solution?

Answers

Concentration: 2.5% w/v

Concentration w/v % = [mass of solute / volume of solution ] * 100

=> mass of solute = concentration w/v * volume of solution / 100

=> mass of solute = 2.5 * 750 ml / 100 = 18.75 grams

Also, using proportions you get to the same result:

2.5% w/v => 2.5 grams of NaOH / 100 ml of water

=> 2.5 grams of NaOH / 100 ml water = x grams of NaOH / 750 ml water

=> x grams of NaOH = 750 ml water * 2.5 grams of NaOH / 100 ml water

=> x = 18.75 grams of NaOH

Answer = 18.75 grams of NaOH
Final answer:

To make a 2.5 w/v solution of NaOH, you will need 2.5 grams of NaOH for every 100 mL of solution. Solving for 750 mL, you would need 18.75 grams of NaOH.

Explanation:

The question refers to a w/v (weight/volume) concentration. This concentration is defined as the amount of solute (in this case, NaOH) in grams that is present in 100 mL of solution.To make a 2.5 w/v solution of NaOH, you will need 2.5 grams of NaOH for every 100 mL of solution.

First, let's set up a ratio to find out how many grams of NaOH are needed for 750 mL of solution:

(2.5 g NaOH / 100 mL solution) = (x g NaOH / 750 mL solution)

Cross-multiply to solve for x:

x = (2.5 g NaOH * 750 mL solution) / 100 mL solution = 18.75 g NaOH

So, you would need 18.75 grams of NaOH to make 750 mL of a 2.5 w/v NaOH solution.

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An aerosol can of compressed air has the following warning label: “WARNING: Contents under pressure. Do not expose can to heat or flame. Do not crush can.” Using what you know about volume, pressure, and temperature, explain this warning.

Answers

Heating the can increases the kinetic energy of the gas molecules.

Increasing the kinetic energy of the gas molecules increases the pressure of the gas on the can.

Crushing the can reduces its volume.

As volume decreases, the pressure inside the can increases because the gas molecules collide with the can’s walls more often.

If the pressure gets too high, the can may explode.

are the answers for edg

Heating can cause an increase in the kinetic energy of molecules. As the air is compressed the volume decreases and the pressure will be high.

What is Boyle's law?

Boyle’s law can be described as the pressure acted by a given mass of gas at a constant temperature of the gas being inversely proportional to the volume of the gas.

The pressure and volume are inversely proportional as long as the temperature is kept constant.

P ∝ 1/V

P₁.V₁ = P₂.V₂                                                    ...........(1)

The heating of the aerosol can cause an increase in the kinetic energy of gas molecules. When the air is compressed, its volume decreases, and the pressure will be high. As the temperature increased, the volume of the gas is also directly proportional to the temperature.

Therefore, the heating will increase the temperature and the volume of the compressed air. Therefore, it can explode in the presence of heat.

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At what temperature would 0.500 moles of gas particles stored in a 100.0 mL container reach a pressure of 15.0 atm?
A) 36500 K
B) 7.96 K
C) 36.5 K
D) 3.60 K

Answers

Hey there!

In this case, the equation of Clapeyron is used :

R = 0.082 

Volume in liters :

100.0 mL / 1000 => 0.1 L 

P * V = n * R * T

15.0 * 0.1 = 0.500 * 0.082 * T

1.5 = 0.041 * T

T = 1.5 / 0.041

T = 36.5 K

Answer C

Answer: Option (C) is the correct answer.

Explanation:

According to ideal gas law, product of pressure and volume equals n times R times T.

Mathematically,       PV = nRT

where         P = pressure

                  V = volume

                  n = number of moles

                  R = gas constant

                  T = temperature

Since it is known that value R = 0.082 L [tex]atm mol^{-1} K^{-1}[/tex] and the other values are given as P = 15.0 atm, V = 100 mL = 0.1 L, and n = 0.5 moles.

Therefore, calculate value of temperature as follows.

                           PV = nRT

                [tex]15 atm \times 0.1 L[/tex] = [tex]0.5 moles \times 0.082 L atm mol^{-1} K^{-1} \times T[/tex]

               T = 36.58 K

Thus, we can conclude that temperature is 36.5 K.

Gaseous ethane ch3ch3 will react with gaseous oxygen o2 to produce gaseous carbon dioxide co2 and gaseous water h2o . suppose 18. g of ethane is mixed with 85.4 g of oxygen. calculate the maximum mass of carbon dioxide that could be produced by the chemical reaction. round your answer to 2 significant digits.

Answers

The maximum mass of carbon dioxide that could be produced by the reaction will be 53 g

Stoichiometric calculation

From the equation of the reaction:

2C2H6 +7O2 ---> 4CO2 + 6H2O

Mole of 18 g ethane = 18/30

                                 = 0.6 moles

Mole of 85.4 g O2 = 85.4/32

                              = 2.67 moles

mole ratio of ethane and oxygen gas = 2:7

Thus, O2 gas seems to be in excess and C2H6 is the limiting reagent.

Mole ratio of C2H6 and CO2 = 1:2

Equivalent mole of CO2 = 0.6 x 2

                                          = 1.2 moles

Mass of 1.2 moles CO2 = 1.2 x 44.01

                                      = 52.81

                                        = 53 g to 2 significant digits

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Final answer:

The maximum mass of carbon dioxide that could be produced by the chemical reaction is 52.8 g.

Explanation:

To find the maximum mass of carbon dioxide produced in the reaction, we need to determine the limiting reagent, which is the reactant that is completely consumed first. We can do this by comparing the moles of ethane and oxygen and calculating how many moles of carbon dioxide can be produced from each.

First, calculate the number of moles of ethane:

Mass of ethane = 18 g

Molar mass of ethane = 2(12.01 g/mol) + 6(1.01 g/mol) = 30.07 g/mol

Moles of ethane = mass of ethane / molar mass = 18 g / 30.07 g/mol = 0.599 mol

Next, calculate the number of moles of oxygen:

Mass of oxygen = 85.4 g

Molar mass of oxygen = 2(16.00 g/mol) = 32.00 g/mol

Moles of oxygen = mass of oxygen / molar mass = 85.4 g / 32.00 g/mol = 2.67 mol

Now we can compare the mole ratios of ethane and oxygen in the balanced chemical equation:

2 moles of ethane react with 7 moles of oxygen to produce 4 moles of carbon dioxide.

Using the mole ratios, we can calculate the number of moles of carbon dioxide produced:

Moles of carbon dioxide = (0.599 mol ethane) x (4 mol CO2 / 2 mol ethane) = 1.20 mol CO2

Finally, we can calculate the maximum mass of carbon dioxide:

Mass of carbon dioxide = moles of carbon dioxide x molar mass of carbon dioxide = 1.20 mol x 44.01 g/mol = 52.8 g

Therefore, the maximum mass of carbon dioxide that could be produced is 52.8 g, rounded to 2 significant digits.

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Their respective charges are what for electrons neutrons and protons

Answers

Electrons are negatively charged

Neutrons are neutrally charged

Protons are positively charged

Neutrons have no charge. Protons are positive, and Electrons are negative.
Hope this helps! :)

A mixture of gasoline and air explodes when it encounters a spark. this is known as

Answers

a combustion reaction

Answer:

a Cumbustion reaction, i just did it

Explanation:

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A chef places sugar crystals in a cooking pan. He turns on the burner under the pan. In a few minutes, the sugar begins to melt. Which process is most directly responsible for transferring heat from the burner into the sugar?

radiation
convection
conduction
resonance

Answers

convection is correct
Conduction because radiation is a release of energy while conduction is a transfer.
convection results in conduction and resonance is something different

The ground-state configuration of fluorine is ________.

Answers

Your answer is:
[He]2s22p5

How can you tell when the hydrolysis of starch is complete why does the test work this way?

Answers

Hydrolysis of starch refers to the chemical process in which the bonds in starch are cleaved through nucleophilic substitution reactions to yield D glucose. In the hydrolysis of starch, when the reaction is complete, a brown colouration will be observed. The colouration indicates that the starch has been completely broken down.

The time it takes for 50% of an unstable isotope to decay to a stable form is called the

Answers

The time it takes for 50% of an unstable isotope to decay to a stable form is called the half-life. 
A substance with longer half-life will be considered as more stable than those with shorter half life. Half-life mostly used for radioactive decay. Knowing the half-life you can count how much time needed for a radioactive waste to be cleared.

Determine the number of three egg omelets that can be prepared from 4 dozen eggs

Answers

4 dozen eggs= 48 eggs

48 eggs/ 3 eggs

16 three egg omelets can be made

4*12= 48 eggs. 48/3=16

16 three egg omelets can be prepared.

What precipitate will form when aqueous solutions of sodium carbonate (na2co3) and calcium chloride (cacl2) are mixed?

Answers

The precipitate that would form when mixing aqueous solutions of sodium carbonate (na2co3) and calcium chloride (cacl2) would most likely be calcium carbonate (CaCO3). Mixing sodium carbonate and calcium chloride would result to a double replacement reaction or metathesis reaction forming two salts namely sodium chloride and calcium carbonate. Sodium chloride is very soluble in water while calcium chloride is only slightly soluble which means that it only dissolves into water up to a certain amount or degree. So, most probably it is the calcium carbonate that would precipitate out. The balanced chemical reaction would be:

Na2CO3 + CaCl2 = 2NaCl + CaCO3

CaCO₃ will precipitate when aqueous solutions of sodium carbonate  and calcium chloride are mixed

Further explanation

There are two types of chemical reactions that may occur.

namely single-replacement reactions and double-replacement reactions.

1. A single replacement reaction is a chemical reaction in which one element replaces the other elements of a compound to produce new elements and compounds

Not all of these reactions can occur. We can use the activity series, which is a list of elements that can replace other elements below / to the right of them in a single replacement reaction.

This series is better known as the Volta series, where the metal element with a more negative electrode potential is on the left, while the element with a more positive electrode potential on the right.

The more left the position of a metal in the series, the more reactive metal (easy to release electrons, the stronger the reductor)

Generally, the Volta series used is

Li K Ba Sr Ca Na Mg Al Mn Zn Cr Fe Cd Co Ni Sn Pb H Sb Bi Cu Hg Ag Pt Au

Example:

2Al (s) + 3Zn (NO₃) ₂ (aq) → 2Al (NO₃) ₃ (aq) + 3Zn (s)

The existing aluminum element can replace the zinc element, which is on the right side so the reaction will occur.

2. Double-Replacement reactions. Happens if there is an ion exchange between two ion compounds in the reactant to form two new ion compounds in the product

To predict whether this reaction can occur or not is one of them, the precipitation reaction. A precipitation reaction occurs if two ionic compounds which are dissolved reacted to produce one of the products of the ion compound does not dissolve. Formation of these precipitating compounds that cause reactions can occur

Solubility Rules:

1. soluble compound

All compounds of Li +, Na +, K +, Rb +, Cs +, and NH4 +

All compounds of NO₃⁻ and C₂H₃O₂⁻

Compounds of Cl−, Br−, I− except Ag⁺, Hg₂²⁺, Pb²⁺

Compounds of SO₄²⁻ except Hg₂²⁺, Pb²⁺, Sr²⁺, Ba²⁺

2. insoluble compounds

Compounds of CO₃²⁻ and PO₄³⁻ except for Compounds of Li +, Na +, K +, Rb +, Cs +, and NH₄ +

Compounds of OH− except Compounds of Li +, Na +, K +, Rb +, Cs +, NH₄⁺, Sr²⁺, and Ba²⁺

In reaction:

sodium carbonate (Na₂CO₃) and calcium chloride (CaCl₂)

Na₂CO₃ (aq) + CaCl₂ (aq) ⇒ 2NaCl (aq) + CaCO₃ (s)

The precipitated compound is CaCO₃ so that Double-Replacement reactions between Na₂CO₃ and CaCl₂ can occur

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A double-replacement equation

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the reducing agent

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substance loses electrons in a chemical reaction

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when 32.4 g of water vapor condenses, how much heat is given off? The heat of vaporization for water is 40.67 kj/mol

Answers

When a water vapor condenses, heat is being released from the process. This heat is called latent heat of vaporization since the phase change happens without any change in the temperature. This value is constant per mole of a substance as a function of pressure and temperature. For this problem, we are given the heat of vaporization at a certain T and P. We use this value to calculate the total heat released from the process. We calculate as follows:

Total heat released: 32.4 g ( 1 mol / 18.02 g ) (40.67 kJ / mol) = 73.12 kJ

Therefore, 73.12 kJ of heat is released from the condensation of 32.4 g of water vapor.

Which indicator most likely suggests that a chemical change is taking place?
change in size
change of color
change of state
change in shape

Answers

i say change in color and state 

Change in color is an indicator which most likely suggests that a chemical change is taking place. Most of the chemical indicators show a change in color with a proceed in the process. Thus, the correct option is B.

What are chemical indicators?

A chemical change occurs when a new substance (product) is formed or the original substance changes its identity and composition in presence of certain conditions due to a chemical reaction.

Chemical change is the opposite of a physical change which results due to modifications only in the physical properties such as the state or shape of matter. Moreover, a chemical reaction can be identified as it often leads to a change in color, odor, the emission of gases or temperature change. This implies that a chemical change is a change of color as this occurs if the composition of a substance change.

Therefore, the correct option is B.

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The human body obtains 955 kJ of energy from a candy bar.? If this energy were used to vaporize water at 100.0 ∘C, how much water (in liters) could be vaporized? (Assume the density of water is 1.00 g/mL.)

Answers

Final answer:

Using the enthalpy of vaporization for water, the energy from a candy bar could vaporize approximately 0.421 liters of water at 100°C.

Explanation:

To determine how much water could be vaporized from the energy obtained from a candy bar, we need to use the enthalpy of vaporization of water at 100°C, which is given as 40.7 kJ/mol. This value tells us the amount of energy needed to convert one mole of water from liquid to gas at these conditions.

First, we convert the energy in kJ from the candy bar to moles of water using the enthalpy of vaporization:

955 kJ × (1 mol / 40.7 kJ) = 23.46 moles of water

Next, we'll convert the moles of water to grams since we know the molar mass of water is approximately 18 g/mol:

23.46 moles × 18 g/mol = 421.28 grams of water

Finally, given that the density of water is 1.00 g/mL and that 1 liter equals 1000 mL, we convert grams to liters:

421.28 g × (1 mL / 1 g) × (1 L / 1000 mL) = 0.421 L of water

Therefore, the energy from the candy bar could vaporize approximately 0.421 liters of water.

The graph above shows the progress of a chemical reaction. Based on the graph, which of the following is true?
Select one: a. Reaction A is enzyme-catalyzed, while reaction B is not enzyme-catalyzed. b. Reaction A is not enzyme-catalyzed, while reaction B is enzyme-catalyzed. c. Reaction A uses cofactors, while reaction B does not use cofactors. d. Reaction A does not use cofactors, while reaction B uses cofactors.

Answers

I believe the answers b

Answer: b. Reaction A is not enzyme-catalyzed, while reaction B is enzyme-catalyzed

Explanation:

Activation energy is the extra energy that must be supplied to reactants in order to cross the energy barrier and thus convert to products.  It is the difference between the energy of activated complex and energy of reactants.

A catalyst is a substance which increases the rate of a reaction by taking the reaction through a different path which involves lower activation energy and thus more molecules can cross the energy barrier and convert to products.

The catalyst itself does not take part in the chemical reaction and is regenerated as such at the end.

How many more electrons can fit within the valence shell of a oxygen atom?

Answers

it can fit two more electrons within its valence shell to follow the octet rule. It will have a -2 charge to gain those two electrons to fill its octet.

An oxygen atom can accommodate 2 more electrons in its valence shell by forming two single bonds or one double bond to satisfy the octet rule.

The question concerning the number of additional electrons that can fit within the valence shell of an oxygen atom relates to its electron configuration and bonding capabilities. An oxygen atom typically has 6 electrons in its valence shell. To satisfy the octet rule, an oxygen atom requires 2 more electrons to complete its outermost shell. Oxygen achieves this by forming two single bonds with other atoms or one double bond, sharing electrons to fill the valence shell and reach a stable configuration with 8 electrons.

Oxygen, being in group 6 of the periodic table, has a valence electron count of 6 (electronic configuration: 2s²2p⁴). This means that the atom has two electrons that can pair up with electrons from other atoms, giving oxygen a valency of 2. By forming bonds, oxygen can have a filled valence shell with a total of 8 electrons, achieving the stable octet configuration.

Which of the following is a product formed when so2 and h2o react together?

Answers

H2SO3 is the reactant. 

Answer: The product formed from the reaction of these two is sulfurous acid.

Explanation:

When sulfur dioxide reacts with water molecule, it leads to the formation of an acid known as sulfurous acid.

The chemical reaction for the combination of sulfur dioxide and water follows the equation:

[tex]SO_2(g)+H_2O(l)\rightarrow H_2SO_3(aq.)[/tex]

By Stoichiometry of the reaction:

1 mole of sulfur dioxide reacts with 1 mole of water molecule to produce 1 mole of sulfurous acid.

Hence, the product formed from the reaction of these two is sulfurous acid.

What is the only subatomic particle that is directly involved in chemical reactions between atoms?

Answers

an electron i hope this helps

For resonance forms of a molecule or ion, ________.

Answers

For resonance forms of a molecule or ion, the observed structure is an average of the resonance forms. Sometimes it also depends on how the ion or molecule interact with neighboring molecule or ion. In physics, resonance is described as when a vibrating system or external force drives another system to oscillate with greater amplitude at a specific preferential frequency. It is not that one structure always corresponds to the observed structure because they will not exist if it is drawn. It is not the same atoms that do not need to be bonded to each other of the resonance structure because it is describing the migration of the atoms not the species itself. 

An aqueous solution that is 20.0 percent sulfuric acid (h2so4) by mass has a density of 1.105 g/ml. determine the molarity of the solution.

Answers

The definition of molarity is:

Molarity = moles of solute / total volume of solution in Liters

In this case, our solute is Sulfuric Acid. To solve this problem, let us assume a basis for calculation.

Let us say that,

Total mass of solution = 100 g

Therefore mass of H2SO4 = 20 g

The molar mass of H2SO4 = 98.079 g / mol

 

Calculating for number of moles of H2SO4:

number of moles = 20 g / (98.079 g / mol)

number of moles = 0.204 mol

 

Calculating for the volume of solution using the density:

total volume of solution = 100 g / (1.105 g / mL)

total volume of solution = 90.50 mL = 0.0905 L

 

Therefore the molarity is:

Molarity = 0.204 mol / 0.0905 L

Molarity = 2.2542 mol / L

Molarity = 2.25 M

Perform an on-line search to discover what conditions are favourable to the growth of moss. be sure to include a comment on ph conditions.

Answers

Moss can grow abundantly in an environment with favorable conditions. They usually grow abundantly in cool, moist and dark places. If not dark, they prefer shady areas. Also, they tend to grow in acidic soil with pH range between 5.0-5.5. 

Solve if an element has a charge of 2+, how many more protons does it have than electrons? protons

Answers

To determine how many protons are present, simply know or use the following equation

X = number of protons
Y = number of electrons
Z = formal charge of the element

X - Y = Z = 0 for a neutral atom

X - Y = 2

Then to solve for x

X = Y + 2.

This means that we would need an additional 2 more protons than electrons.

Final answer:

An element with a 2+ charge has two more protons than electrons, as protons have a positive charge of +1 each.

Explanation:

If an element has a charge of 2+, it means that the element has two more protons than electrons. Since protons carry a positive charge of +1, a 2+ charge indicates that the number of protons exceeds the number of electrons by two. For example, calcium has an atomic number of 20, meaning it has 20 protons. As a Ca2+ ion, it would have 18 electrons, as it would have lost two electrons to acquire the 2+ charge.

Which element(s) is being reduced in the redox reaction below? 6 nh4clo4 (s) + 10 al(s) 5 al2o3 (g) + 6 hcl (g) + 3 n2 (g) + 9 h2o (g) n and al h cl o?

Answers

the answer is Cl because its oxidation number goes from a +7 down to a -1.

What are the constituent element of potassium sorbate??

Answers

Potassium sorbate is the potassium salt of sorbic acid. It is comprised of carbon, hydrogen, oxygen and potassium. Put differently, its chemical formula is: CH3CH=CH−CH=CH−CO2K. Potassium sorbate is significantly more stable than plain potassium, and it is often used to preserve food.

Calculate the mass percent (m/m) of a solution prepared by dissolving 55.84 g of nacl in 152.7 g of h2o.

Answers

m(NaCl)=55.84 g
m(H₂O)=157.2 g

m(solution)=m(NaCl)+m(H₂O)

w(NaCl)=100m(NaCl)/m(solution)=100m(NaCl)/(m(NaCl)+m(H₂O))

w(NaCl)=100*55.84/(55.84+152.7)=26.78%

The mass percent ( m ÷ m ) of a solution prepared by dissolving 55.84 g of NaCl in 152.7 g of H₂O is 26.78 %

What is mass ?

Mass is a physical body's total amount of matter. Inertia, or the body's resistance to acceleration when a net force is applied, is also measured by this term.

The intensity of an object's gravitational pull to other bodies is also influenced by its mass. The kilogram is the primary mass unit in the SI.

The amount of matter that makes up every item or body is the greatest way to understand mass. Everything that we can see has mass. Examples of objects with mass include a table, a chair, your bed, a football, a glass, and even air.

m ( NaCl)   = 55.84 g  and m ( H2O ) = 157.2 g.

m (  solution) = m ( NaCl ) +  m ( H₂O )

w ( NaCl ) = 100 m ( NaCl ) ÷ m (  solution ) = 100 m   ( NaCl )  / ( m ( NaCl ) + m ( H₂O )

w ( NaCl ) = 100 × 55.84/  ( 55.84+152.7 ) = 26.78%

Thus, the mass percent ( m ÷ m ) of a solution prepared by dissolving 55.84 g of NaCl in 152.7 g of H₂O is 26.78 %

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Determine how many grams of silver would be produced, if 12.83 x 10^23 atoms of copper react with an excess of silver nitrate. Given the equation: Cu + 2AgNO3 -> Cu(NO3)2 + 2Ag Avogadro's number: 6.02 x 1023

Answers

1) Chemical equation

Cu + 2AgNO3 ---> Cu (NO3)2 + 2Ag

2) molar ratios

1 mol Cu: 2 moles AgNO3 : 1 mol Cu (NO3)2 : 2 mol Ag

3) Convert 12. 83 * 10^23 atoms of Cu in moles

12.83 * 10 ^ 23 atoms / (6.02 * 10^23 atoms / mol) = 2.131 mol Cu

4) Use the proportions

2.131 mol Cu * 2 mol Ag / 1 mol Cu = 4.262 mol Ag

5) Use the atomic mass of silver to convert 4.262 mol in grams

mass = number of moles * atomic mass = 4.262 mol * 107.9 g / mol = 459.9 grams

Answer: 459.9 g

Which of these redox reactions is spontaneous as written? (a)Ag + Cu2+ → Ag+ + Cu (b)Al + H+ → Al3+ + H2 (c)H2 + Al3+ → H+ + Al (d)Na + K+ → Na+ + K

Answers

The answer is Al + H+ → Al3+ + H2
Hope this helps!
#platofam

Answer: The correct answer is Option b.

Explanation:

The given reactions are the examples of single displacement reactions.

Single displacement reactions are defined as the reactions in which more reactive metal replaces the less reactive metal from its chemical reaction. The reactivity of metals is given by the series known as reactivity series.

The metals which lie above in the series can replace the metals which lie low in the reactivity series.

[tex]A+BX\rightarrow AX+B[/tex]

For the given options:

Option a: [tex]Ag+Cu^{2+}\rightarrow Ag^++Cu[/tex]

Silver lies low in the series than copper and hence is less reactive. Therefore, it will not replace copper. Thus, this is a non-spontaneous reaction.

Option b: [tex]Al+H^+\rightarrow Al^{3+}+H_2[/tex]

Aluminium lies above in the series than hydrogen and hence is more reactive. Therefore, it will easily replace hydrogen. Thus, this is a spontaneous reaction.

Option c: [tex]H_2+Al^{3+}\rightarrow H^++Al[/tex]

Hydrogen lies low in the series than aluminium and hence is less reactive. Therefore, it will not replace aluminium. Thus, this is a non-spontaneous reaction.

Option d: [tex]Na+K^+\rightarrow Na^++K[/tex]

Sodium lies low in the series than potassium and hence is less reactive. Therefore, it will not replace potassium. Thus, this is a non-spontaneous reaction.

Hence, the correct answer is Option b.

Write the complete balanced equation for the following reaction: (3 points) NaBr + Ca3(PO4)2 yields CaBr2 + Na3PO4

HELP PLEASE

Answers

Answer:
_________________________________________________
 
           6 NaBr + Ca₃(PO₄)₂  -------->   3 CaBr₂ + 2 Na₃PO₄

_________________________________________________

Answer: The balanced chemical equation is given below.

Explanation:

Every balanced chemical equation follows law of conservation of mass.

This law states that mass can neither be created nor be destroyed but it can only be transformed from one form to another form. This law also states that total number of individual atoms on the reactant side must be equal to the total number of individual atoms on the product side.

For the given reaction, the balance chemical equation follows:

[tex]6NaBr+Ca_3(PO_4)_2\rightarrow 3CaBr_2+2Na_3PO_4[/tex]

By stoichiometry of the reaction:

6 moles of sodium bromide reacts with 1 mole of calcium phosphate to produce 3 moles of calcium bromide and 2 moles of sodium phosphate.

How many liters of oxygen are required to burn 3.86 l of carbon monoxide?

Answers

Answer:

Explanation:

3.86 L CO  x  1 mol O2  x  1mole O2   x  22.4 L O2  =  1.93 L O2

                   22.4 L CO     2 mole CO      1 mole O2

The volume of oxygen, O₂ in litre (L) required to burn 3.86 L of carbon monoxide , CO is 1.93 L

Balanced equation

2CO + O₂ —> 2CO₂

From the balanced equation above,

2 L of CO requires 1 L of O₂

How to determine the volume of O₂ required

From the balanced equation above,

2 L of CO requires 1 L of O₂

Therefore,

3.86 L of CO will require = 3.86 / 2 = 1.93 L of O₂

Thus, 1.93 L of O₂ is needed for the reaction

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