What is the order of reaction with respect to a and b for a reaction that obeys the rate law: rate = k[a]4[b]5?

Answers

Answer 1

The order of reaction with respect to a is 4 and with respect to b is 5 for a reaction that obeys the rate law.

The order of reaction is equal sum of power of concentration of the each reactant present in the reaction  that obeys the rate law . The order of individual reactant or species present in the rate law is equal to the power of the of concentration of the respective species or reactant .

Example : If rate law is given as,

rate = k[tex][a]^{4} [b]^{5}[/tex]

The order of reaction with respect to a is 4 and with respect to b is 5 for a reaction that obeys the rate law.

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Related Questions

Liquid 1 reacts with liquid 2, producing a solid and a gas. using this scenario, which supports the law of conservation of mass? mass of liquid 1 mass of solid = mass of liquid 2 mass of gas mass of liquid 1 – mass of solid = mass of liquid 2 – mass of gas mass of liquid 1 – mass of liquid 2 = mass of solid mass of gas mass of liquid 1 mass of liquid 2 = mass of solid mass of gas

Answers

mass of Liquid 1 + mass of solid = mass of Liquid 2 + mass of gas mass of Liquid

The law of conservation of mass or principle of mass conservation states that for any system closed to all transfers of matter and energy, the mass of the system must remain constant over time, as system's mass cannot change, so quantity cannot be added nor removed. Hence, the quantity of mass is conserved over time.

What is Law of conservation of mass ?

According to the rule of conservation of mass, mass is neither generated nor destroyed during a chemical process. For instance, when coal is burned, the carbon atom in it transforms into carbon dioxide. The carbon atom transforms from a solid to a gas, yet its mass remains constant.

The understanding that substances do not actually vanish as a result of a reaction, despite what might appear to be the case, but rather change into another material of equal mass, was made possible by the law of conservation of mass, which was essential to the development of chemistry.

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Starting with lead (ii) carbonate describe how a solid sample of lead (ii) sulphate can be prepared

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The preparation of lead (ii) sulphate from lead (ii) carbonate occurs in two steps:

insoluble lead carbonate is converted to soluble lead (ii) nitratesoluble lead (ii) nitrate is reacted with sulphuric acid to produce lead (ii) sulphate.

How can a  solid sample of lead (ii) sulphate be prepared from lead (ii) carbonate?

Lead (ii) carbonate and  lead (ii) sulphate are both insoluble salts of lead.

In order to prepare lead (ii) sulphate, a two step process is performed.

In the first step, Lead (ii) carbonate is reacted with dilute trioxonitrate (v) acid to produce lead (ii) nitrate.

PbCO₃ + 2HNO₃ → Pb(NO₃)₂ + CO₂ + H₂O

In the second step, dilute sulfuric acid is reacted with the lead (ii) nitrate to produce insoluble lead (ii) sulphate which is filtered and dried.

Pb(NO₃)₂ + H₂SO₄  →  PbSO₄ + 2HNO₃

In conclusion, lead (ii) sulphate is prepared in two steps.

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A 4.0 mg/dl creatinine standard is needed. to prepare 100 ml of the working standard. How much stock standard of 1 mg/ml creatinine is needed?

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4 ml stock is needed for the standard of 1 mg/ml creatinine if a 4.0 mg/dl creatinine standard is needed to prepare 100 ml of the working standard.

Your muscles produce creatinine as a waste product during routine, everyday action. In a typical state, your kidneys remove creatinine from your blood and excrete it in urine. Creatinine can accumulate in the blood and less creatinine will be excreted in the urine if there is an issue with your kidneys.

A high amount of creatinine in the blood or urine may indicate that the kidneys are not doing a good job of filtering the blood. Although high creatinine levels do not pose a life-threatening hazard, they may be a sign of a major health problem, such as chronic renal disease.

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What is the daughter nucleus (nuclide) produced when 59 co undwegoes positron decay?

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The 59 co is 100 % stable nuclei that's why it will not show  any kind of decay, have not any daughter nucleus.

The process of radioactive decay describes how an unstable atomic nucleus releases energy through radiation. A substance that has unstable nuclei was regarded as radioactive. Alpha, beta, as well as gamma decay, are three of the most poses significant of decay, as well as they all entail the emission of one or maybe more particles.

Every atom strives to have the greatest degree of stability. When the proportion of protons as well as neutrons in the atomic nucleus is out of balance, instability results in radioactive decay. In essence, the nucleus contains too much energy to keep all the nucleons together.

Therefore, the 59 co is 100 % stable nuclei that's why it will not show  any kind of decay, have not any daughter nucleus.

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Nitrogen-13 has a half-life of 10 minutes. How much of a 128 mg sample would remain after 40 minutes?

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The amount of nitrogen-13 sample that remained after 40 minutes has been 8 mg.

Half-life can be defined as the time required by the substance to reduce half of its initial concentration.

The half-life of Nitrogen-13 has been 10 minutes. In 10 minutes, the sample will be reduced to

of its concentration,

The total time has been 40 minutes.

The number of half-life experienced by the sample has:

Number of half-life = {Total-time}/{Half-life}

Number of half life cycles = {40}/{10}

The number of half-life cycles = 4

The sample has been reduced to 50% in the first half-life cycle,reduced to 25% in the 2nd half-life cycle, then 12.5% in 3rd half cycle and finally 6.25% by the end of 4th half cycle.

The sample remained = 6.25% of the initial concentration.

The sample remained = (6.25/100)

×128mg

The sample remained = 8 mg

Thus from above we concluded that the amount of nitrogen-13 sample that remained after 40 minutes has been 8 mg.

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Assuming an experimental value of enthalpy of –655 kj/mol and a true value of –603, what is the percent error of the experiment? use a calculator and round to the nearest hundredth as well as the absolute value of the percentage. %

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8.62%

8.62% is the percent error of the experiment.

Rounding to the nearest hundredth value will be 8.620.

Determine the difference between the figures provided and divide by the actual value to find the percent error.

(-655 - -603)/(-603) = 0.0862

Multiply by 100%,

(0.0862) x 100% = 8.62%

What is percent error?

The percent error is the difference between the estimated value and the actual value in relation to the actual value.

What does percent error enable us to establish?Error margins are easily understood when expressed as a percentage. It reveals the size of the inaccuracy. A 3-percent error value, for example, indicates that your measured number is quite near to the true amount. A 50% margin, however, indicates that your measurement is far from the true number.The significance of percentage errorWhen you measure something in an experiment, the percentage of mistakes indicates the size of your errors. Greater proximity to the accepted or genuine value is indicated by smaller values.

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What is the equilibrium vapor pressure of diethyl ether and ethanol at room temperature (approximately 20 °c)?

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The equilibrium vapour pressure of diethyl ether and ethanol at room temperature or at 20°C is 442mm and 5.95kPa.

What is vapour Pressure

The pressure exerted by gas in equilibrium state with a solid or liquid in container at a given temperature is termed as vapour pressure.

.Factor affecting vapour pressure:-

Surface area:

The surface area of solid of liquid which is in contact with the gas do not much affect the vapour pressure.

Type of molecules:

Greater the intermolecular face small will be smaller will be vapour pressure, if lesser the force then greater will be the vapour pressure.

Temperature:

At high temp.,more molecules has enough energy to escape from the liquid or solide. At lower temp. feuer molecule escape enhance lesser tha vapour pressure.

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Hemoglobin has a much greater affinity for carbon monoxide than oxygen. which principle explains why a hyperbaric chamber (containing high levels of oxygen) can treat carbon monoxide poisoning?

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Hemoglobin has a much greater affinity for carbon monoxide than oxygen. In a hyperbaric chamber (containing high levels of oxygen) can treat carbon monoxide poisoning, by displacing carbon monoxide from Hemoglobin competitively.

Hemoglobin has a much greater affinity for carbon monoxide than oxygen. This is because, a coordinate bond is formed with Carbon monoxide and Haem structure of the hemoglobin.

Carbon monoxide with Hemoglobin is called as Carboxy haemoglobin.

Presence of oxygen displaces the Carbon monoxide with Hemoglobin that is formed due to poisoning.

Hyperbaric chamber is a chamber which contains pure oxygen in a chamber. The atmospheric pressure is kept about three to four times than the normal, such that the replacement of Carbon monoxide from Haem can occur as fast as possible since this reduces the half life of the Carboxy haemoglobin.

It is advisable not to treat Carbon monoxide poisoning yourself.

Hyperbaric oxygen is used to treat the following conditions as well:

InfectionsWoundsAir bubble is blood

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Calculate the standard free-energy change for the reaction at 25 ∘c. refer to the list of standard reduction potentials. 2au3 (aq) 3cr(s)↽−−⇀2au(s) 3cr2 (aq)

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The standard free-energy change for the reaction at 25°C is 92640 KJ.

The change in free energy that happens when a compound is created from its constituent parts in their most thermodynamically stable states under standard-state circumstances is known as the standard-state free energy of creation.

There are 6 electrons transferred. The anode half-reaction produces 6 electrons while the cathode half-reaction uses 6 electrons.

For these types of reactions always write out the half-reactions and the appropriate oxidation numbers.

6 electrons are transferred as Au³+ has an oxidation number of 3+ and Au has an oxidation number of 0. 3 electrons are gained for each Au³+ and there are 2 Au³+ in the equation

                         [tex]2Au^3 (aq) +3cr(s)[/tex] ↽−−⇀ [tex]2Au(s) +3Cr^2[/tex]

Same for Cr to Cr2+ because there are 3 moles of it.

So, n = 6.

     F = 96500 J/(V*mol)

     where  F is faraday's constant.

                 n = moles of electrons are transferred in this reaction.

Standard emf of the cell, E = cathode - anode.

                                             = 1.49 - 1.33

                                             = 0.16

Using the equation,

                                   ΔG = -nFE

                                         = 6 × 96500 × 0.16

                                         = 92640 KJ

Therefore, the standard free-energy change for the reaction at 25°C is 92640 KJ.

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A bug walking on the surface of a puddle is depending on what property of water? high surface tension because of the attraction between water molecules capillary action of water molecules to narrow objects such as bug legs low density of liquid water because of the bent molecular shape adhesion of water molecules to nonpolar structures such as hair and skin

Answers

High surface tension because of the attraction between water molecules helps bugs walk on the surface of the water.

How does surface tension help insects walk on water surface?

Surface tension is important for insects that walk on water. They would sink without it. When compared to air molecules, water molecules are more strongly attracted to one another. Due to cohesion, this makes them attract and cling to one another strongly in a body of water. The water molecules between the molecules at the water's surface are more strongly attracted to one another because they do not have water molecules surrounding them on all sides.

As a result, there is an inward force that forms a "film" at the surface and causes the water to act as though a thin membrane were covering it. Surface tension is the term for this phenomena.

Surface tension can be used to the advantage of some insect and spider species. They don't break the water's surface when they stand on it because their negligible weight is insufficient to dissipate the force of surface tension. Instead, they make dimples or indentations in the surface with their feet, which rebound to move the insect ahead. This enables them to move swiftly over ponds, lakes, and rivers in search of prey.

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What is the study of living things called?
OA. Earth science
O B. Physics
O C. Chemistry
O D. Biology

Answers

The correct answer in this question would be BIOLOGY. Hope that helps!

Answer:

D

Explain:

Biology because normally everyone just studies under it so that is my answer for you i hope its right.

When a known quantity of compound, at a known concentration, is added to a known volume of another compound to determine the concentration of the latter, the process is referred to as?

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A titration is a method for figuring out the concentration of an unknown solution by using a solution with known concentration.

What is Titration?

Titration, commonly referred to as titrimetry, is a quantitative analysis technique that enables chemists to estimate the quantities of specific chemicals in a sample that are unknown.

A known volume of one solution of known concentration (referred to as a titrant) is slowly added to a known volume of another solution of unknown concentration (referred to as analyte) throughout the basic titration procedure until the reaction reaches neutralization.

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If we combine the reaction of an acid protonating water and the reaction of its conjugate base deprotonating water, the net reaction after canceling common terms is:_________

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After eliminating common terms, the net reaction occurs when we combine the reactions of an acid protonating water and its conjugate base deprotonating water is the autoionization of water.

What is the autoionization of water?

The autoionization of water demonstrates that water can react with itself because acids and bases should interact with one another.

Here, the sound should be strange. Additionally, the water molecules should experience a small degree of proton exchange.

Thus, the correct option is c. The autoionization of water.

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The question is complete. Your complete question is given below:

a. The acid-base reaction between the acid and its conjugate base.

b. The synthesis of a complex between the acid and its conjugate base.

c. The autoionization of water.

d. None of the above.

The conversion of the fatty acid palmitate (c16) to carbon dioxide via β-oxidation, the citric acid cycle and oxidative phosphorylation yield approximately ____ atp equivalents

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The conversion of the fatty acid palmitate (C-16) to carbon dioxide via β-oxidation, the citric acid cycle and oxidative phosphorylation yield approximately 106 atp equivalents.

The most prevalent kind of fatty acid with sixteen carbon atoms without carbon-carbon double bonds would be palmitic acid. There must be a maximum of seven cycles of beta-oxidation in order to totally degrade the fatty acid. 8 acetyl-CoA molecules, 7 NADH molecules, with 7 FADH2 molecules are produced as a result of this.

The primary enzyme, CAT-1, catalyzes the production of acylcarnitine carnitine, which provides the rate-limiting step in beta-oxidation.

Therefore, the conversion of the fatty acid palmitate (C-16) to carbon dioxide via β-oxidation, the citric acid cycle and oxidative phosphorylation yield approximately 106 atp equivalents.

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GIVE BRAINLIEST!!!
(if answer is correct and with explanation)

How could you tell a Ca(NO3)2 solution from a Zn(NO3)2 solution?

Answers

Answer:

you better give me brainliest

Explanation:

Zinc nitrate and calcium nitrate solution can be distinguished by reaction with ammonium hydroxide. Zinc forms a white gelatinous ppt. whereas there is no precipitation of calcium hydroxide even with excess of ammonium hydroxide

The theoretical yield of a reaction is 75.0 grams of product and the actual yield is 42.0 grams. What is the percent yield?

Answers

The theoretical yield of a reaction is 75.0 grams of product and the actual yield is 42.0 grams. The percent yield of the reaction is 56 %.

What is Theoretical yield and Actual Yield ?

The amount can be produced from the correct computation is called Theoretical Yield.

The actual amount which is produced in the experiment is called Actual Yield.

How to calculate the percentage yield ?

To calculate the percentage yield use the formula

[tex]\text{Percentage Yield} = \frac{\text{Actual Yield}}{\text{Theoretical Yield}} \times 100 \%[/tex]

Here,

Actual yield = 42 grams

Theoretical yield = 75 grams

Put the value in above expression we get

[tex]\text{Percentage Yield} = \frac{\text{Actual Yield}}{\text{Theoretical Yield}} \times 100 \%[/tex]

                          [tex]= \frac{42\ g}{75\ g} \times 100 \%[/tex]

                          = 56 %

Thus from the above conclusion we can say that The theoretical yield of a reaction is 75.0 grams of product and the actual yield is 42.0 grams. The percent yield of the reaction is 56 %.

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Succinic acid is often found in high levels in tumors or biofluids surrounding tumors. it is a weak acid with a pka of 4. 21. what is the ph of a 0. 250 m solution of succinic acid?

Answers

The pH of a 0.250m solution of succinic acid is 2.42.

What is succinic acid?

Succinic acid is one of the naturally occurring dicarboxylic acid having four carbon, which is produced by LPG.

It can be used in many chemical, food, and pharmaceutical industries.

Given,

pKa = 4.21

As we know that,

pKa = - logKa

4.21 = -logKa

Ka = antilog(-4.21)

Ka = 6.1 × 10^(-5)

Now, let the concentration of [H+] = [A-] = x

Ka = [H+] [A-] /[HA]

6.1 × 10^(-5) = x^2/ (0.25-x)

x^2 = 1.52 × 10^(-5)

x = 3.89 × 10^(-3)

Thus, the concentration of [H+] = [A-] = 3.89 × 10^(-3).

Now, we will calculate the value of pH

pH = - log[H+]

pH = -log(3.89 × 10^(-3))

pH = 2.42

Thus, we found that the pH of the given solution is 2.42.

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The complex ion [cobr6]3− is a high-spin complex and absorbs light at a wavelength greater than 7. 70×102 nm. how many unpaired electrons will be present in the complex?

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There are four unpaired electrons present in the complex ion  [tex][CoBr_6]^3^-[/tex]  

What is Crystal Field Theory (CFT)?CFT explains the breaking of orbital degeneracy in the transition metal complexes because of the presence of the ligands. It describes the strength of the metal-ligand bondsThere are two types of ligands - weak field ligands and strong field ligandsWeak field ligands form high spin complexes and strong field ligands form low spin complexesHigh spin complexes have more number of unpaired electrons Low spin complexes have less or zero unpaired electrons

A complex ion  [tex][CoBr_6]^3^-[/tex]  is an octahedral complex. Co is the central atom to which 6 Br atoms are attached. Br is a weak field ligand and forms a high spin complex.

Electronic configuration of Co -  [tex][Ar] 3d^7 4s^2[/tex]

Electronic configuration of [tex]Co^3^+ \rightarrow [Ar] 3d^6[/tex]

Electronic configuration of [tex][CoBr_6]^3^-\\[/tex] - [tex]t_2_g^4 e_g^2[/tex]

Hence, there are 4 unpaired electrons present in the complex ion  [tex][CoBr_6]^3^-[/tex] .

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How many moles of h2o are produced in neutralization when 1. 5 mole of mg(oh)2 reacts with h2so4?

Answers

There are 3 moles of [tex]H_{2} O[/tex]  are produced in neutralization when 1. 5 mole of [tex]Mg(OH)_{2}[/tex]  reacts with [tex]H_{2} SO_{4[/tex]

The neutralization reaction between magnesium hydroxide and sulfuric acid is given as,

[tex]Mg(OH)_{2} + H_{2} SO_{4[/tex] → [tex]MgSO_{4} + 2H_{2} O[/tex]

from above chemical equation , we can conclude the molar ratio = 1:2

It means two moles of water molecule is produce from one mole of magnesium hydroxide.

So, number of moles of water molecules produced from  1. 5 mole of magnesium hydroxide = 1. 5 mole× 2 = 3 moles

Therefore,  number of moles of water molecules produced from  1. 5 mole of magnesium hydroxide is 3 moles.

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Each individual candy/isotope is the same and will take the same amount of time to decay.
a. true
b. false

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It is false that ' Each individual candy/isotope is the same and will take the same amount of time to decay ' .

It is impossible to predict when an individual radioactive atom will decay .

The formula of half life day does not describe the exact amount of time that is every single atom experience before became right. The nuclear  reaction follows first order kinetics and have rate constant which is independent of temperature.

The atoms of the same elements , having the same atomic number but different mass numbers is called isotopes .

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If a hydrogen atom has its electron in the n = 3 state, how much energy in ev is needed to ionize it?

Answers

The energy of the hydrogen atom will be -0.85 ev.

Ionization, also known as ionization, would be the phenomenon by which an atom or molecule gains or loses electrons to acquire a negative and positive charge, frequently in conjunction with those other chemical changes. Ions are the name for the electrically charged molecular or atom that results.

These chemicals are known as ionic compounds, with table salt serving as an example. Ionization would be the process of removing electrons from such an element as well as a molecule as well as the dissociation of an ionic material, such as salt, itself into the individual ions in a solution like water.

The energy of hydrogen atom will be calculated by using the formula:

[tex]E_{n} = -13.6 ev / n^{2}[/tex]

where, [tex]E_{n}[/tex] = energy of nth level, n is the state.

It is given that, n = 3 .

Now put the value of n in above equation.

[tex]E_{4} = -13.6 ev / 4^{2}\\E_{4} = -13.6 ev / 16\\E_{4} = -0.85 ev[/tex]

Therefore, the energy of the hydrogen atom will be -0.85 ev.

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Which atom absorbs more energy- one in which an electron moves from the the second shell to the third shell, or an atom which an electron moves from the first to the third shell?

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An atom which an electron moves from the first to the third shell atom absorbs more energy.

An atoms may occupy different energy states . The energy states are discrete , that means they occur at specific values only. Therefore an atom can only move to a new energy level if it absorbs or emits an amount of energy that exactly corresponds to the difference between two energy levels.

The lowest possible energy levels that the atom can occupy is called ground state.The energy levels which is higher to the ground state is called excited state.

The more energy absorb when electron move from first to third because in this second energy level have to pass to reach at third energy level.

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Compared with the energy it takes to separate oxygen and hydrogen from water, how much energy is released when they recombine?.

Answers

The same amount of energy is released when they recombine.

How much energy is released when water is formed and split?

The decomposition of water:

H₂O → H₂ + O₂                                          Δ = +285.8 kJ/mol

The formation of water:

H₂ + O₂ → H₂O                                          Δ = -285.8 kJ/mol

Endothermic water decomposition requires 285.8 kJ of energy input per mole of degraded water. One mole of water is created from hydrogen and oxygen in the opposite reaction, which is exothermic and produces 285.8 kJ of energy. The energy level is the same, but the energy change sign is different.

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Arrange the procedural steps, from start to finish, that are required to prepare indigo from nitrobenzaldehyde and acetone in base, and then test its ability as a dye.

Answers

Acetone has α-hydrogens (on both sides) and thus can be deprotonated to give a nucleophilic enolate anion. The aldehyde carbonyl is much more electrophilic than that of a ketone, and therefore reacts rapidly with the enolate.

What is nitrobenzaldehyde?Synthesis. The synthesis of 3-nitrobenzaldehyde is achieved via nitration of benzaldehyde, which yields especially the meta-isomer. Creation allocation is about 19% for the ortho-, 72% for the meta- and 9% for the para isomers.Acetone, propanone, or dimethyl ketone, is an organic combination with the formula (CH3)2CO. It is the easiest and smallest ketone. It is a colorless, highly volatile, and combustible liquid with a characteristic aromatic odor.Nitration of benzene with conc nitric acid and conc sulphuric acid gives nitrobenzene. Chlorination with chlorine in the existence of anhydrous aluminum chloride gives meta nitro chlorobenzene.

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Generating a rate law is complicated when the rate-determining step is preceded by a?

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By generating a rate law is complicated when the rate-determining step is preceded by 'a' is a Equilibrium reaction.

What is rate law?

The rate law shows about the rate of chemical reaction depends on reactant concentration.

According to rate law, the rate of reaction is directly proportional to the concentration of reaction which is raised to a stiochiometric coefficient which is determined experimentally.

Thus, from above we concluded that if the preceding reaction is an equilibrium, that compromises the simplicity of writing the rate law from the stiochiometry of the rate determining step will be used up in the reverse reaction of the equilibrium.

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A sample of 7.70 l of nh3 (ammonia) gas at 22 ∘c and 735 torr is bubbled into a 0.250 l solution of 0.400 mol l−1 hcl (hydrochloric acid). the kb value for nh3 is 1.8×10−5. part a assuming all the nh3 dissolves and that the volume of the solution remains at 0.250 l , calculate the ph of the resulting solution. express your answer numerically to two decimal places. view available hint(s)

Answers

The pH of the solution is 9.14

For ammonia:

To calculate the amount of hydrogen gas collected, we use the equation given by ideal gas which follows:

PV = nRT

P= Pressure of the gas = 735 torr

V= volume of the gas = 7.70 l

T= Temperature of the gas= 22°C (22+273K) = 295K

R= Gas constant= 62.364 L torr/mol/K

n = number of moles of ammonia = ?

By substituting the values in the above equation, we get:

735×7.70 = n × 62.364 × 295

5659.5 = n × 18397.38

n= 5659.5/18397.38

n= 0.3076

For hydrochloric acid:

To calculate the number of moles for given molarity, we use the equation:

Molarity of the solution = [tex]\frac{moles of solute}{volume of solution}[/tex]

Molarity of hydrochloric acid = 0.400 M

Volume of solution = 0.250 L

Putting values in above equation, we get:

0.400= moles of solute/0.250

moles of hydrochloric acid = 0.1 mol

The chemical reaction for ethylamine and HCl follows the equation:

NH3+HCl---> NH4Cl

Initial:         0.316             0.18

Final:          0.136     -            0.18

volume of the solution = 0.250 l

To calculate the pOH of basic buffer, we use the equation given by Henderson Hasselbalch:

pOH = pKb + log([tex]\frac{salt}{base}[/tex])

pOH = pKb + log([tex]\frac{NH4Cl}{NH3}[/tex])

it is given:

pKb =  negative logarithm of base dissociation constant of ammonia =

-log(1.8 × [tex]10^{-5}[/tex]) = 4.74

[NH4Cl] = 0.18/0.450

[NH3] = 0.136/0.450

On substituting the values we get,

pOH= 4.74 + log ([tex]\frac{0.18/0.250}{0.136/0.250}[/tex])

pOH = 4.74 + 0.12

pOH= 4.86

pH + pOH= 14

pH= 14-pOH

    = 14-4.86

pH = 9.14

pH of the solution = 9.14

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I NEED HELP FOR THIS QUESTION ASAP

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Explanation:

I've been having this problem, the pins you guys give on your question don't really load for me?

How many coulombs passed through the solution if 11. 5 a of current was applied for 4. 00 h?

Answers

There are 165600 coulombs passed through the solution if 11. 5 A of current was applied for 4. 00 h.

Calculation,

Formula used :

Q = It

Where Q = charge passing through the solution = ?

I = current passed through the solution =  11. 5 A

and ,  t = time = 4. 00 h

Putting the value of current , and  time

Q = 11. 5×4. 00 h =11. 5× 46×3600 A×s = 165600 coulombs

The SI unit of charge is coulombs.

The SI unit of current is ampere.

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How many moles are in 25.3 grams of SO 3?
A.
3.16
B.
0.316
C.
2 020
D.
105

Answers

Answer:

B.) 0.316

Explanation:

To find the moles, you need to multiply the given value by the molar mass. The molar mass is made up of each element's atomic mass times their quantities. It is important to arrange the conversion in a way that allows for the cancellation of units.

Atomic Mass (S): 32.065 g/mol

Atomic Mass (O): 15.998 g/mol

Molar Mass (SO₃): 32.065 g/mol + 3(15.998 g/mol)

Molar Mass (SO): 80.059 g/mol

25.3 grams SO₃                1 mole
-------------------------  x  -------------------------  =  0.316 moles SO
                                    80.059 grams

What type of response to chemical exposure is an immediate or rapid harmful reaction?.

Answers

An acute effect is an immediate or rapid harmful reaction to a exposure.

A chronic effect is a permanent/ long-lasting consequence from exposure to a single dose or to repeated lower doses of a harmful substance.

What is an acute effect?

Acute (short-term) effects show up immediately or soon after exposure to the chemical. They may be minor, like nose or throat irritation, or they could be serious, like eye damage or passing out from chemical vapors. It is an adverse effect on a human or animal body, with severe symptoms developing rapidly and coming quickly to a crisis.

What is a acute effect example?

Examples of acute health effects include dizziness, skin irritation, and throat irritation. Keep in mind that a chemical may cause both acute and chronic effects.

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