vapor pressure will increase with:

Answers

Answer 1

Vapor pressure will increase with Temperature.

What does vapor pressure mean exactly?

The vapor pressure of a liquid is the pressure at which a vapor and its liquid (or solid) are at equilibrium, or the pressure at which a sample of a liquid (or solid) evaporates in a closed container to produce a vapor.

Vapor pressure for liquids is influenced by the following variables: Intermolecular Force and Temperature

The molecules of a liquid begin to move more quickly as the temperature rises. More vapor pressure is produced as a result of the production of gas. As a result, vapor pressure and temperature are directly related. The related graph will be a straight line graph since temperature and vapor pressure are directly proportional to one another.

Hence, Vapor pressure will increase with Temperature.

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Related Questions

the vsepr theory is used to group of answer choices predict the number of multiple bonds in a molecule. predict the bonding pattern in molecules. predict the three dimensional structure of molecules. predict the electronegativity of atoms.

Answers

The VSEPR theory is used to predict the three dimensional structure of molecules.

What is VSEPR theory?

Chemistry uses the valence shell electron pair repulsion (VSEPR) theory as a model to forecast how each individual molecule would look based on how many electron pairs will be surrounding its center atom. The two principal creators of the theory, Ronald Gillespie and Ronald Nyholm, gave it the additional moniker Gillespie-Nyholm theory.

The valence electron pairs that surround an atom have a tendency to oppose one another, thus they will arrange themselves in a way that minimizes this repulsion, according to the premise of VSEPR. The molecular shape is thus determined by a decrease in the energy of the molecule and an increase in its stability.     The Pauli exclusion principle's electron-electron repulsion, rather than electrostatic repulsion, has been stressed by Gillespie as being more significant in dictating molecular geometry.    

Therefore, the VSEPR theory is used to predict the three dimensional structure of molecules.

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Use the periodic table and your knowledge of isotopes to complete these statements.

When polonium-210 emits an alpha particle, the child isotope has an atomic mass of
.
I-131 undergoes beta-minus decay. The chemical symbol for the new element is
.
Fluorine-18 undergoes beta-plus decay. The child isotope has an atomic mass of

Answers

When polonium-210 emits an alpha particle, the child isotope has an atomic mass of 206.

I-131 undergoes beta-minus decay. The chemical symbol for the new element is ¹³¹₅₄Xe

Fluorine-18 undergoes beta-plus decay. The child isotope has an atomic mass of 18.

What are isotopes?

Isotopes are atoms of the same element that have the same atomic mass number but different masses as a result of the difference in the number of neutrons in the element.

When polonium-210 emits an alpha particle, the equation is given below:

²¹⁰₈₄Po ---> ²⁰⁶₈₂Pb + ⁴₂He

When I-131 undergoes beta-minus decay, the equation is given below:

¹³¹₅₃I ---> ¹³¹₅₄Xe + ⁰₋₁β

When fluorine-18 undergoes beta-plus decay, the equation is given below:

¹⁸₉F ---> ¹⁸₈O + ⁰₁β

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What is the formula for water? Gsyrr9gr7d7f8

Answers

Answer: H2O

Explanation: Water is made from 2 hydrogen atoms and 1 oxygen atom bonded together.

Answer: H₂O

each molecule of water is made up of two hydrogen atoms, H, and a single oxygen atom,  O.

How many liters do 1.55 g of O2 occupy at STP?

Answers

The volume that is occupied by the given mass of the oxygen gas is 1.1L

What is the volume?

We know that the volume has to do with the space that is occupied by a gas. Now we know that from the Avogadro's law, the volume that is occupied by a gas is called the molar volume of the gas and it has a value of 22.4 L.

We now have;

Number of moles of the gas = 1.55 g/32 g/mol

= 0.048 moles

If 1 mole of the gas occupies 22.4 L

0.048 moles of the gas is going to occupy 0.048 moles * 22.4 L/1 mole

= 1.1 L

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What is the partial pressure (in atm) of co₂ at 468. 2 k in a 25. 0 l fuel combustion vessel if it contains 60. 0 grams co₂, 82. 1 g h₂o, and 7. 30 mol vaporized, yet uncombusted fuel?.

Answers

Answer:

2.09 atm

Explanation:

Given: Temperature of system. volume of system, and masses of component gasses.

In order to get the mole fraction which we will use later, convert the 60.0 g CO2 and 82.1 g H20 into moles and add the number of moles you got yo 7.30.

(60.0g CO2 / 44.01 g/mole) + (82.1g H20/18.02) + 7.30 moles unknown fuel

This should work out to about 13.22 moles total. Then, plug in your numbers to the ideal gas law (PV=nRT or P=nRT/V). This will result in the total pressure of the system. p=(13.22 moles)x(0.08206 l*ATM/moles *K)x(468.2)/25.0L. This equation results in a total of 20.3 atm. According to Daltons law of partial pressure, the mole fraction (moles of a gas over total moles) of a given gas times the total pressure of the container gives the partial pressure.

(1.36/13.22) * 20.3 atm=2.09 atm

Describe a method for making pure crystals of magnesium chloride from magnesium and dilute hydrochloric acid

Answers

The method for making pure crystals of magnesium chloride from magnesium and dilute hydrochloric acid is given below:

Making pure crystals of magnesium chloride from magnesium and dilute hydrochloric acid

According to the reaction, magnesium and weak hydrochloric acid react to create magnesium chloride and release hydrogen gas.

MgCl2 (aq) + H2 from Mg (s) + 2HCl (g)

Following is the process for extracting pure magnesium chloride from the reaction.

First: Reaction

Keep a beaker with the diluted hydrochloric acid inside.Add magnesium gradually until there is an excess or until no more gas appears to be escaping.

Second step: filtering

Filter using a funnel and filter paper. Remove the surplus magnesium by filtering it out because the filtrate will contain aqueous (liquid) magnesium chloride. The surplus magnesium is in the residual.

To create solid crystals from the filtrate, go to:

Step three, crystallization.

Transfer filtrate solution to a dish or basin for evaporation.Transfer filtrate solution to a dish or basin for evaporation. Use a Bunsen burner to provide heat Pour the solution into a basin that will evaporate it, then warm it over a water bath.Turn off the heat when crystals begin to form.Let the water drain until only pure crystals are left.Dry crystals in a heated oven or on absorbent paper.

Lastly, Precautions:

Wear eye protection, especially when heating, and use personal protective equipment such gloves and lab coats.Prevent breathing in extra gases while the process is underway.

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When two oxygen atoms bond together in o2 what type of covalent bond do they form.

Answers

When two oxygen atoms bond together in O2, they form a non-polar covalent bond.

What are covalent bonds?

A covalent bond is a chemical bond that involves the sharing of electrons to form electron pairs between atoms. These electron pairs are mentioned as shared pairs or bonding pairs. once they share electrons, the stable balance of attractive and repulsive forces between atoms is known as a covalent bond When two oxygen atoms are bonded as O2, they form a non-polar covalent bond. When two non-metal atoms sharing of electrons, a covalent bond is created. The involved electrons are located in the atoms' outer shells. An atom's outer shell will be completed if it shares one or both of its electrons. Covalent bonds require a lot of energy to break because they are so strong.

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air is composed of approximately 78% n2, 21% o2 and 1% percent other gases. calculate the density of he at stp and explain why a closed balloon filled with he rises in air

Answers

Air is composed of approximately 78% N₂, 21% O₂, and 1% percent other gases, the density of He at stp will be 0.1637 g/L

At standard, temperature, and pressure (STP) the values are:

Pressure (P) = 1 atm

Temperature (T) = 25 °C or 298.15 K

Density of helium (He) = ?

To calculate the density of He, we will use the modified form of ideal gas law as:

    PV = nRT

       n = number of moles

    n = m / M

Put the value of n in ideal gas law

    PV = mRT / M

    m / V = PM / RT

Where m = mass

    M = molarity

    V = volume

    P = pressure

    T = absolute temperature

    R = universal constant of gasses (value = 0.082 atm.L / mol.K)

As we know that:

    Density = m / V

Put density in place of m / V, the above equation will be:

   Density = PM / RT

Put the values:

    Density of Helium (He) = (1 atm) × (4.0026 g/mol) ÷ (0.082 atm.L/mol.K)(298.15 K)

    Density of Helium (He) = 0.1637 g/L

A ballon filled with He rises because the density of He is lower than air.

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if 17.4 kg of al2o3(s), 51.4 kg of naoh(l), and 51.4 kg of hf(g) react completely, how many kilograms of cryolite will be produced?

Answers

If 17.4 kg of al2o3(s), 51.4 kg of NaOH(l), and 51.4 kg of HF (g) react completely. 89.95 kg of cryolite will be produced.

What is cryolite?

It is synthesized by fusion of sodium fluoride and aluminum fluoride as a electrolyte in the reduction of alumina to aluminum metal

Given data:

mass of Al = 17.4 kg = 17.4 × 10³

mass of NaOH = 51.4kg = 51.4 × 10³

mass of HF = 51.4kg = 51.4 × 10³

Molar mass of Al₂O₃ = 102 g/mol,

Molar mass of NaOH = 40g/mol

Molar mass of HF = 20g/mol

Reaction:

Al₂O₃ + 6 NaOH + 12 HF → 2 Na₂AlF₆ + 9H₂P

Moles of:

Al₂O₃  : 17.4 × 10³ / 102NaOH : 51.4 × 10³ / 240HF : 51.4 × 10³ / 240

Mole/ stoichiometry of:

Al₂O₃ : 0.17 × 10³ / 1 = 0.17 × 10³

NaOH : 0.214 × 10³ / 6 = 0.035 × 10³

HF : 0.214× 10³ /12 = 0.017 × 10³

As the mole/ stoichiometric ratio is smallest for HF, it is the limiting reagent.

Molar mass of cryolite is 210gmol and HF is 20g/mol

12 mol of HF = 2 mol of Na₃AlF₆

240 g of HF = 420 g of Na₃AlF₆

51.4 × 10³g of HF    = (51.4 × 10³ × 420) / 240

                               = 89.95 × 10³ g or 89.95 kg of Na₃AlF₆

Hence, 89.95 kg of cryolite is produced.

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at a certain concentration of h2 and nh3, the initial rate of reaction is 22.0 m / s. what would the initial rate of the reaction be if the concentration of h2 were halved? be sure your answer has the correct number of significant digits.

Answers

To find the correct number significant digits, learn the concentration and initial rate.

What is concentration?

In chemistry and related fields, the idea of concentration is used frequently. It is a way to gauge how much of one substance is incorporated into another.

What is initial rate?

When a reaction first begins, or when t = 0, its initial rate is the rate that exists at that precise moment. At time zero (t), the slope of the reactant concentration versus the time curve is equal to the initial rate.

Rak=k(H₂) (NH₃) Rak law expression

1. reaction order w.r.t H₂ is ⇒2

2. reaction order w.r.t  NH₃ is⇒ 1.

3. overall order 2+1=3 ( bird order reaction)

4. k(H₂) (NH₃)= 0.740⇒ 1

H₂ is doubled ⇒ r₂=k(H₂) (NH₃)=4k(H₂) (NH₃)⇒2

(2)/(1) = r₂/r₁ = 4k(H₂) (NH₃)/k(H₂) (NH₃)=4

r₂= 4∝ r₁ = 4∝ 0.740=2.96m/s

5. r= 6.0∝ 10^⁴m/s, (H₂)= 0.98m, (NH₃)= 0.31m

r=k(H₂) (NH₃)

k=r/(H₂) (NH₃)= 6.0 ∝ 10^⁴/(0.98)^²(0.31)=201528.93m^⁻²s^⁻¹

K=2.0 ∝ 10^5m^⁻²s^⁻¹

Therefore, the significant digit is K=2.0 ∝ 10^5m^⁻²s^⁻¹

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the concentration of a solution expressed in moles of solute per 1 l of solution is called either the or the concentration, and is given the symbol m.

Answers

The concentration of a solution expressed in moles of solute per 1 l of the solution is called Molarity.

Concentration is the abundance of a constituent divided by way of the overall volume of an aggregate. several sorts of mathematical descriptions may be outstanding: mass concentration, molar concentration, variety concentration, and extent awareness.

The concentration of a substance is the quantity of solute found in a given amount of solution. Concentrations are normally expressed in terms of molarity, defined because of the variety of moles of solute in 1 L of answer.

The Concentration of a solution is a measure of the quantity of solute that has been dissolved in a given amount of solvent or answer. A concentrated answer is one that has a rather huge quantity of dissolved solute

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a mixture of he , ar , and xe has a total pressure of 2.50 atm . the partial pressure of he is 0.250 atm , and the partial pressure of ar is 0.400 atm . what is the partial pressure of xe ? express your answer to three significant figures and include the appropriate units.

Answers

The partial pressure of Xe will be 1.85 atm.

How to find the partial pressure?

The total pressure is equal to the sum of the partial pressures. The total pressure is equal to the sum of the partial pressures.

Subtract the sum of the known partial pressures of the other components from the overall pressure to determine the partial pressure of one component in a mixture.

Given values: P_{He} = 0.250 atm, P_{Ar} = 0.400 atm, P_{total} = 2.50 atm

To Find: P_{Xe} = ?

Solution: Calculate the total pressure, then deduct the sum from the partial pressures of helium and argon.

P_{He} + P_{Ar} = 0.250 atm + 0.400 atm = 0.650 atm

P_{Xe} = P_{total} - (P_{He} + P_{Ar}) = 2.50 atm - 0.650 atm

P_{Xe} = 1.85 atm

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What does ocean water contain that helps produce carbonate minerals from carbon dioxide

Answers

Answer:

Carbon dioxide (CO2) dissolves in the ocean and reacts with water to form carbonic acid—which in turn generates bicarbonate, carbonate, and hydrogen ions. Calcium and carbonate ions combine to form the solid calcium carbonate crystals in their shells and skeletons.

based on the balanced chemical equation for reaction 5 what compounds were being removed when the recovered copper product was washed repeatedly with water? 4. (2 pts) why was ethanol used during the final washes of the recovered copper product? 5. (2 pts) why was a steam bath used to dry the recovered copper product? (hint: reference the reaction 5 steps in lab manual)

Answers

Compounds were being removed when the recovered copper product was washed repeatedly with water is aluminum III and copper II sulphate being removed

Compound is a substance made from two or more different elements that have been chemically joined and when the recovered copper product was washed repeatedly with water and the compound removed during those washes were aluminum III and copper II sulphate and the ethanol is to remove the water clinging to the solid and the ethanol evaporated faster and end up with dry solid faster and dispense with the ethanol wash but wait longer to dry the product and used other solvent such as acetone or heat the product

A steam bath is used instead of a hot plate to dry recovered copper to prevent overheating and overheating can lead to atmosphere oxygen oxidizing the copper and causing impurities

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Suppose that on a hot and sticky afternoon in the spring, a tornado passes over the high school. If the air pressure in the lab (volume of 180 m 3 ) was 1. 1 atm before the storm and 0. 85 atm during the storm, to what volume would the laboratory try to expand in order to make up for the large pressure difference outside? 1,800 m 3 230 m 3 7,100 m 3 190 m 3.

Answers

Option (b)  233m3 volume of gas would the laboratory try to expand in order to make up for the large pressure difference outside.

Boyle's Law states that the volume of a given mass  of a gas is inversely proportional to pressure at constant temperature. V  is inversely proportional to P. both V and P are constant.

                    V1 P1  = V2 P2

         Where, p1=initial pressure

                      V1= initial volume

                       P2 =final pressure

                       V2= final volume

Here, p1 is 1.1atm  p2 is 0.85 atm  v1 is  180m3 .

Putting these values in the expression  

                        1.1atm * 180m3  =  0.85atm *V2

                       V2=  (1.1atm . 180m3) /0.85atm

                           = 233m3

Hence, 233m3 of gas is needed to expand in order to make up for the large pressure difference outside.

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a 4.0 m solution of kno3 has a volume of 1.8 l. if the solution is diluted to 9.0 l, what is the new concentration?

Answers

A 4.0 m solution of kno3 has a volume of 1.8 l. if the solution is diluted to 9.0 l, then the new concentration is  0.8 m

The concentration of solution of the amount of solute that has been dissolved in a given amount of solvent or solution

Here given data is

C₁ = 4.0 m

V₁ = 1.8 l

C₂ = ?

V₂ = 9.0 l

So the formula is

C₁V₁ = C₂V₂

4.0 m×1.8 l = C₂× 9.0 l

C₂ = 7.2/9.0 l

C₂ = 0.8 m

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If a reaction begins with a mixture of no2 and o2 at partial pressures of 1. 00 atm each, the reaction will be spontaneous until some n2o5 forms in the mixture. What is the maximum partial pressure of n2o5 that can build up before the reaction ceases to be spontaneous?.

Answers

The NO3 is zero atm (atmospheric pressure at sea level).

What is partial pressure?

The pressure that one gas in a gas mixture will exert if it fills the same volume by itself is referred to as partial pressure.

What is spontaneous?

A spontaneous process is one that takes place without the use of external energy. For instance, a ball will roll down an incline, water will flow downward, ice will melt into water, radioactive elements will decay, and iron will rust.

N2O(g)+NO2(g)⇌3NO(g)

dG = G products-  G reactants

dG = 3*86.56696 - (104.1816 + 51.29584) = 104.22344 kJ/mol

since dG > 0, this must not favor produces, i.e. it is nonspontaneous

dG = -RT*ln(Kp)

Kp = exp(-dG/(RT))

Kp = exp(-104223.44/(8.314*298)) = 5.37818739*10^-19

Kp = NO^3 / (N2O)(NO2)

initially

NO= 0

N2O = 1

NO2 = 1

in equilibrium

NO= 0 + 3x

N2O = 1  -  x

NO2 = 1 - x

substitute

5.378 *10^-19 = (3x)^3 / (1-x)(1-x)

(5.378 *10^-19)(1 -2x +x^2)  = 27x^3

x = partially 0 atm

therefore

Almost no NO3 will be zero

Not possible, since

dG = dG º + RT*ln(Q)

therefore, even though we can decrease T, it will never be negative, meaning than this will be never spontaneous

Therefore, Almost no NO3 will be zero.

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Explain the difference between aliphatic hydrocarbons and aromatic hydrocarbons.

Answers

Answer:

Explanation:

Aliphatic compounds are those hydrocarbons that are the open chain compounds and also closed chains. Aromatic compounds are those who have only a closed chain structure. They can be saturated as well as unsaturated where the system can be open as well as closed chain.

HELP
Balance the following skeleton equation and determine how many grams of water can be produced when 50.0 grams of Al(OH)3 react with 60.0 grams of H2SO4 .

Al(OH)3 + H2SO4 --> Al2(SO4)3 + H2O

Answers

Explanation:

2Al(OH)3 + 3H2SO4 --> Al2 (SO4)3 + 6H2O

The relative ability of a bonded atom to attract shared electron pairs is called its _____. This ability _____ as the size of the atom decreases because for a smaller atom the shared electrons will be closer to the nucleus.

Answers

The relative ability of a bonded atom to attract shared electron pairs is called its electronegativity. This ability increases as the size of the atom decreases because for a smaller atom the shared electrons will be closer to the nucleus.

A covalent bond consists of the mutual sharing of one or more pairs of electrons between two atoms. These electrons are simultaneously attracted to two nuclei.

Electronegativity is defined as the ability of an atom within a molecule to attract electrons to itself. The concept of an elemental electronegativity scale was proposed by Pauling.

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How many atoms of hydrogen in the product side of the balanced equation? fe + h2o ---> feo + h2.

Answers

Two atoms of Hydrogen should be on the product side of the balanced equation.

Balancing the chemical equation is the branch of chemistry which helps us in balancing the atoms that are present on both the reactants and on the product sides.

Once all the individual elements are balanced, the total number of atoms of each element on the reactant and product side are compared once again. To make sure that there are no inequalities, then the  chemical equation is said to be balanced.

In the above given reactions we can see that in the reactant side there are 2 atoms of hydrogen in water molecule and in the product .

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What will happen to the carbon dioxide produced by the link reaction in an animal?.

Answers

Answer:

The link reaction links Hint to the Krebs Cycle. It converts pyruvic acid to Acetyl-CoA. Carbon dioxide is released as a waste product, and one Hint is produced.

Explanation:

A carbon atom is taken out of pyruvate during the link reaction, creating carbon dioxide. Pyruvate is converted into acetate along with the removal of hydrogen, which is then taken up by the coenzyme NAD to create reduced NAD.

What is pyruvate ?

The conjugate base of pyruvic acid is pyruvate. It serves as a crucial intermediary in a number of biological processes. It is created at the conclusion of glycolysis and serves as a catalyst for a number of metabolic processes, including gluconeogenesis, fermentation, cellular respiration, fatty acid synthesis, etc.

During cellular respiration, glucose and oxygen combine to produce carbon dioxide, water, and energy. Animals breathe out most of their carbon dioxide, which is then discharged into the atmosphere. Plants can then use this carbon dioxide for photosynthesis.

Acetyl-coenzyme A, the link reaction's final byproduct, then moves into the Krebs Cycle. Through the oxidation of acetyl-coenzyme A, the Krebs Cycle generates energy.

Thus, pyruvate is changed into the two-carbon molecule known as acetate.

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Question What does the law of conservation of mass state? Responses Mass can be created and destroyed during a chemical reaction. Mass can be created and destroyed during a chemical reaction. Mass can be created but not destroyed in a chemical reaction. Mass can be created but not destroyed in a chemical reaction. Mass cannot be created nor destroyed in a chemical reaction. Mass cannot be created nor destroyed in a chemical reaction. Mass can be destroyed but not created during a chemical reaction.\

Answers

According to the rule of conservation of mass, no atoms are created or destroyed during a chemical process. Instead, the atoms combine in a variety of ways to create goods.

What is law of conservation of mass ?

According to the law of conservation of mass or principle of mass conservation, any system that is closed to all transfers of matter and energy must maintain a constant mass over time since the system's mass cannot vary and neither more nor less amount can be added or subtracted.

The law of conservation of mass, no atoms are created or destroyed during a chemical process. Instead, the atoms combine in a variety of ways to create goods. This is why each element has the same amount of atoms on both sides of an equation with balanced symbols.

Thus, According to the law of conservation of mass, mass is neither generated nor destroyed during a chemical process.

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Large marble chips (calcium carbonate) were reacted with 1M hydrochloric acid at 24 C. The volume of carbon dioxide evolved was measured at regular intervals.

a) Describe one other way of measuring the course of this reaction which does not involve measuring the volume of carbon dioxide given off.

b) Describe how the following would affect the speed of this reaction, ( In each case, assume that all other factors are kept the same.)

i. using 0.05 M hydrochloric acid

ii. using smaller marble chips

iii. carrying out the reaction at 22 C.

Answers

a) The rate of reaction can be measured from the mass of the marble chips that disappear.

b)

i) The rate of reaction would decrease

ii) The rate of reaction would increase

iii) The rate of reaction would decrease

What is the rate of reaction?

The term rate of reaction has to do with the speed with which reactants are converted into products. We know also that we can be able to define the rate of reaction as the rate at which the products do appear in a reaction. From our two definitions of the rate of reaction, we can see that we could look at the idea of the rate of reaction from two perspectives which are;

1) Change in the amount of recaatnts

2) Change in the amount of products

The both approaches can be measured by the use of different methods that can be used in the study of chemical reactions.

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Which is an example of a chemical change?

O water evaporating from a puddle
O cloth tearing when pulled
O wood forming sawdust when cut
O bread baking in an oven

Answers

Answer: bread baking in a oven and water evaporating in a puddle

Explanation:

Answer: when cut bread baking in an oven



Explanation:

Chemical change is defined as a change in which rearrangement of atoms take place and leads to formation of new substance.

Physical change is defined as a change in which change in shape, size or state of the substance takes place. No new substance is formed.

1. (not correct) water evaporating from a puddle: involves only a phase change from liquid to gaseous state and no new substances are formed.

2. (not correct) cloth tearing when pulled: involves only in stretching of fabric and no new substances are formed.

3. (not correct) wood forming sawdust involves only change in size and shape of wood and no new substances are formed.

4. (the correct answer) when cut bread baking in an oven involves oxidation of bread and the sugar gets converted to ethanol and carbon dioxide and thus represents a chemical change.


Important note: changing state (from liquid to gas, etc) does not solicit a chemical change.

Sodium reacts vigorously with water; which other elements also do and why?

Answers

The high electropositive nature results in a low enthalpy of ionization and a low melting point. So when you add sodium to the water, it reacts violently to produce NaOH and H2.

Since alkali metals like sodium have only one valence electron they tend to donate that electron to nonmetals to achieve stability. They usually react fastest with halogens such as chlorine fluorine iodine and bromine. Because these halogens have seven valence electrons. Sodium is much more active than hydrogen, so it reacts violently with water.

Sodium is more reactive than lithium because it is larger. The outermost electrons are less strongly retained in sodium than in lithium. As a result, sodium loses its outermost electrons more easily than lithium. Therefore, it is more reactive than lithium. Of the options given, the reaction between chlorine and potassium is the most violent. Because, according to the periodic characteristics, the reactivity of potassium and chlorine is very high.

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Draw a line to connect the following terms to their definition

1 fossil fuel
2 material resource
3 natural resource


DEFINITIONS

A resource used to make objects,food, or drink

B any natural material used by people

C a nonrenewable resource formed by buried remains of plants and animals

Answers

Answer:

Fossil fuel C

Material resource A

Natural resource B

Hope this helps

Explanation:

Answer:

Fossil fuel-----a nonrenewable resource formed by buried remains of plants and animals

Material resource-----any natural material used by people

Natural resource-----resource used to make objects, food, or drink

Explanation:

Fossil fuels are widely known as a nonrenewable source of energy that can be found by garnering the buried remains of plants and animals deep in the ground.

Material resources are natural resources we extract from the earth that have value and practical use for humans.

Natural resources are resources we extract from nature and use in order to survive. Natural resources are things such as water, food, and trees (aka material for shelter.)

What is the change in entropy when the divider is removed from the container and all three molecules are allowed to mix together? assume that all three molecules began on the left side of the container.

Answers

The change in entropy when the divider is removed from the container and all three molecules are allowed to mix together,as a result, the change in Entropy will be positive.

What is entropy?

Entropy is a critical concept that students must properly understand while studying Chemistry and Physics. More crucially, entropy can be defined in numerous ways and hence applied in numerous stages or instances, such as a thermodynamic stage, cosmology, and even economics. Entropy, in its most basic form, refers to the spontaneous changes that occur in everyday events or the universe's inclination toward chaos.

We do not consider the microscopic aspects of a system from the standpoint of entropy in thermodynamics. Entropy, on the other hand, is used to characterise a system's behaviour in terms of thermodynamic variables such as temperature, pressure, entropy, and heat capacity. This thermodynamic description took into account the systems' state of equilibrium.

Entropy is a physical property that is commonly associated with chaos, unpredictability, or uncertainty. Because all three molecules started on the left side of the container, they are mingled together. This suggests that molecules are organised at random.

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for the sn1 reaction, draw the major organic product, identify the nucleophile, substrate, and leaving group, and determine the rate limiting step. c5h11i

Answers

From the given SN1 reaction (picture attached), the major organic product will be 3-ethylpentan-3-ol, the nucleophile, substrate, leaving group, and the rate-limiting step is identified in the attachment.

In the given reaction an alkyl halide 3-bromo-3-ethylpentane is used as a substrate. In the first step of the reaction, alkyl halide dissociates and a carbocation with a Bromide ion generates. The first step of the reaction mechanism is the slow and rate-determining step. In the first step, 3-bromo-3-ethylpentane is the substrate and bromide is the leaving group. In the second step, the water molecule acts as a nucleophile and attacks carbocation. In the final step, bromide removes hydrogen from the water molecule, and the product results.

The complete question and reaction mechanism are attached as a picture.

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g of CO2 and g of H20 are produced when 64.0g C2H2 burn in oxygen

Answers

Gram of CO₂ and g of H₂O are produced when 64.0g C₂H₂ burn in oxygen is CO₂ is 216 g and H₂O is 44.28 g

Gram is the unit of mass or weight that is used especially in the centimeter gram-second system of measurement

Here reaction is

2C₂H₂ + 5O₂ → 4CO₂ + 2H₂O

So, 1 mole of C₂H₂ = 2(12) + 2(1) = 26 g

1 mole of CO₂ = 12 + 2(16) = 44 g

1 mole of H₂O = 2(1) + 16 = 18 g

So, 64.0 g C₂H₂ × 1 mol/26g = 2.46 mol C₂H₂

2.46 mol C₂H₂ × 4CO₂/2C₂H₂ = 4.92 mole of CO₂

4.92 mole CO₂ × 44 g/mol = 216 g CO₂

64.0g C₂H₂×1 mol/26 g = 2.46 mol C₂H₂

2.46 mol C₂H₂×2H₂O/2 C₂H₂ = 2.46 mol H₂O

2.46 mol H₂O×18 g/mol = 44.28 g H₂O

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