which transition state is more stable and why? select an answer and submit. for keyboard navigation, use the up/down arrow keys to select an answer. a the transition state that produces the markovnikov product is more stable because a partial positive charge is forming on tertiary carbon your answer b the transition state that produces the markovnikov product is more stable because a partial positive charge is forming on primary carbon c the transition state that produces the anti-markovnikov product is more stable because a partial positive charge is forming on tertiary carbon d the transition state that produces the anti-markovnikov product is more stable because a partial positive charge is forming on primary carbon

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Answer 1

Answer:

The closer the transition state to the product, the more stable it is. It is because this transition state is closest to the final form of the product, which is usually stable


Related Questions

Malonyl-CoA is an intermediate in fatty acid synthesis. It also regulates fatty acid metabolism. Which of the following molecules regulate the enzyme that catalyzes malonyl-CoA synthesis? a. fatty acids or fatty acyl-CoA b. carnitine c. oxaloacetate d. acetyl-CoA e. citrate Which of the following enzymes does malonyl-CoA regulate? a. ATP-citrate lyase b. carnitine acyltransferase c. acetyl-CoA carboxylase
d. fatty acid synthase e. acyl-CoA dehydrogenase

Answers

Malonyl-CoA is an important intermediate in fatty acid synthesis and is essential for regulating fatty acid metabolism. It is synthesized from acetyl-CoA, which is the end-product of the citric acid cycle and a major energy source for cells.

Which of the following molecules regulate the enzyme that catalyzes malonyl-CoA synthesis?

Option D. Acetyl-CoA

Acetyl-CoA is the molecule that regulates the enzyme that catalyzes malonyl-CoA synthesis. Acetyl-CoA is the end-product of the citric acid cycle and is a major source of energy for cells. It is also the starting point for fatty acid biosynthesis. Acetyl-CoA is used to synthesize malonyl-CoA, which is then used in the elongation of fatty acids. Acetyl-CoA is the molecule that activates the enzyme involved in fatty acid synthesis, acetyl-CoA carboxylase, which is responsible for the conversion of acetyl-CoA to malonyl-CoA. Therefore, acetyl-CoA is the molecule that regulates the enzyme that catalyzes malonyl-CoA synthesis.

Which of the following enzymes does malonyl-CoA regulate?

Option C. Acetyl-CoA carboxylase

Malonyl-CoA regulates the enzyme acetyl-CoA carboxylase, which is responsible for the conversion of acetyl-CoA to malonyl-CoA. Acetyl-CoA carboxylase is an enzyme that catalyzes the formation of malonyl-CoA from acetyl-CoA, which is the starting point for fatty acid synthesis. Malonyl-CoA is then used in the elongation of fatty acids. Therefore, acetyl-CoA carboxylase is the enzyme that malonyl-CoA regulates.

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in a nuclear fusion reaction, which has more mass: the initial hydrogen isotopes or the fusion products?

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the initial hydrogen isotopes in a nuclear fusion reaction have more mass than the fusion products.

Powering the Sun and other stars are nuclear fusion process. Two light nuclei combine to form one heavy nucleus during a fusion process. Because the mass of the single nucleus formed is less than the combined mass of the two initial nuclei, energy is released throughout the process. Energy is created from the remaining mass. The reason this happens is explained by Einstein's equation (E=mc2), which says that mass and energy can be transformed into one another. Fusion energy could play a significant role in the creation of energy if scientists can figure out how to use it in Earth-based machinery. Numerous elements from the periodic table can undergo fusion. However, the deuterium-tritium (DT) fusion reaction is of particular interest to scientists studying fusion energy applications. DT fusion generates a neutron and a helium nucleus.

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Entropy never decreases in a spontaneous process. give an example to support this statement.

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The entropy of the system of bodies increases during the spontaneous process of heat being transferred from colder to hotter bodies.

Entropy-Entropy is a measure for energy quality, with a lower value indicating higher quality. Lower entropy energy is energy that has been precisely organized. Chaotic energy storage results in high entropy.

Since every particle and atomic structure accelerates through time and space, entropy is constantly increasing. The second law of thermodynamics results in expressions with inequalities. Entropy cannot be destroyed by any means, at any scale, and thus cannot decrease overall.Entropy is created everywhere and always, increasing overall entropy at any scale, including life processes, open systems, micro-fluctuations, gravity, and entanglement.

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b) if the initial rate of appearance of xef4 is 2.50 x10-2 atm/min, what is the rate of disappearance of xe?

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The rate of disappearance of xe is 2.50×10-² atm/min.

What is rate of disappearance?

The rate of disappearance can be defined as the speed at which a reactant dissipates after being consumed in the process of the reaction.

2.50×10-² atm/min is the rate of disappearance of xenon(xe), if the initial rate of appearance of xef4 is 2.50 x 10^-2 atm/min

xe+ 2F2⇒ xef4

rate of disappearance of xe= 1( rate of disapperance of xe)

= 1( initial rate of appearance of xef4)

⇒1x= 2.50×10-² atm/min

⇒rate of disappearance of xe= 2.50×10-² atm/min

Therefore, the rate of disappearance of xe is 2.50×10-² atm/min.

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the mass of a nitrogen molecule is 14 times greater than that of a hydrogen molecule. what is the temperature of a sample of hydrogen whose average molecular energy is equal to that in a sample of nitrogen at 300 k?

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The kinetic strength of one mol of nitrogen molecules at three hundred K is 3741.3 Joules.The KE is 41 kj.

We recognize that,Kinetic strength ∝ TIn the question, temperature is equal in each conditions. So, the kinetic strength withinside the 2d situation is E.Room imply rectangular velocity is given by

vrms=√3RTM

Here,M= Molar mass of fueloline moleculeT= temperature of the fueloline moleculeWe have given VN2=VH2

∴√3RTN2MN2=√3RTH2MH2

⇒TH22=57328⇒TH2≈41 K

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elect True or False for each statement: The solubility of gases in water decreases with increasing temperature Most solids are more soluble at higher temperature. Pressure has little effect on the solubility of liquids and solids because they are almost incompressible.

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True, The solubility of gasses in water decreases with an increase in temperature.

What is solubility?

A substance's solubility is the greatest amount that will dissolve in a given amount of solvent at a given temperature. A specific solute-solvent combination's solubility is a defining trait, and the solubility of various compounds can vary significantly.

When temperature rises, molecules' vibrational kinetic energy increases, breaking intermolecular bonds and allowing gases to escape from the solution, the solubility of gases in water is inversely proportional to temperature.

Hence, the solubility of gasses in water decreases with increase in temperature.

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PLEASE HELP ME!
What is the highest occupied molecular orbital fo nitrogen gas (Ny)? In other words, when you draw out the molecular orbital diagram for gaseous nitrogen, what is the highest molecular orbital that has electrons in it?

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The highest occupied molecular orbital for nitrogen is 2pπ. In the ground state, there are two electrons present.

What does "highest occupied molecular orbital" refer to?

The highest-occupied molecular orbital for carbon monoxide (CO) is an electron-dense molecular orbital that surrounds the carbon atom. Pi orbitals are the lowest available molecular orbital for CO. The CO molecule's non-bonding molecular orbitals exhibit some minor bonding.

What is the highest electron shell that is occupied?

The valence shell is the highest populated electron shell, and the electrons that inhabit this shell are referred to as valence electrons. The electron configurations of the elements are reflected in their chemical characteristics.

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The highest occupied molecular orbital for nitrogen is 2pπ. In the ground state, there are two electrons present.

What does "highest occupied molecular orbital" refer to?

The highest-occupied molecular orbital for carbon monoxide (CO) is an electron-dense molecular orbital that surrounds the carbon atom. Pi orbitals are the lowest available molecular orbital for CO. The CO molecule's non-bonding molecular orbitals exhibit some minor bonding.

What is the highest electron shell that is occupied?

The valence shell is the highest populated electron shell, and the electrons that inhabit this shell are referred to as valence electrons. The electron configurations of the elements are reflected in their chemical characteristics.

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Place the following events in order starting with the vibration of the oval window and ending with the depolarization of hair cells.a. Increased pressure in perilymph of scala vestibulib. Pressure wave depresses basilar membranec. Inner hair cells move closer to tectorial membraned. Stereocilia bende. Tip-link proteins open K+ channelsf. K+ ions enter hair cells causing depolarization

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The question mentions the Oval window in the human ear. The vibration of oval window and ending with the depolarization of hair cells have a particular order.

The oval window is a connective tissue membrane located at the end of the middle ear and the beginning of the inner ear.

The following events in order starting with the vibration of the oval window and ending with the depolarization of hair cells are given:

1) Oval window vibrates or tip-link proteins open K+ channels

2)  Increased pressure in the perilymph of scala vestibuli

3) Pressure wave depresses basilar membrane

4) Inner hair cells move closer to the tectorial membrane

5) Stereocilia bend

6) K+ ions enter hair cells causing depolarization

Therefore, the vibration of oval window and ending with the depolarization of hair cells have a particular order.

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What documents provide information about chemicals used in lab and where can these documents be found?

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SDS documents provide information about chemicals used in the lab and where can these documents be found

An SDS is a crucial document that details the risks, safety precautions, and emergency procedures for a specific chemical-containing product. Should overexposure occur, an SDS also describes the appropriate medical or first aid care. The product provider provides SDSs, which are created by the manufacturer.

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which compound(s) would be the major product(s) if you were to perform an eas nitration of phenyl acetate?

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Para product .In organic reactions, multiple substituents can bind with the aromatic ring and according to the number of substituents; we get the mono/di/tri-substituted products.

In phenyl acetate, there is an acetate group present on the benzene ring. Phenyl acetate will undergo nitration reaction to form ortho and para products, as acetate group is an electron donating group. The para product will be the major product as it involves lesser steric hinderance. Phenyl acetate is the ester of phenol and acetic acid. It can be produced by reacting phenol (Which can be produced by decarboxylation of aspirin with acetic anhydride or acetyl chloride.Phenyl acetate can be separated into phenol and an acetate salt, via saponification: heating the phenyl acetate with a strong base, such as sodium hydroxide, will produce phenol and an acetate salt (sodium acetate, if sodium hydroxide were used.

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How does changing the shape of an elastic object increase potential
energy?

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The further the object is stretched or compressed the greater it’s potential energy is.

the chelate effect describes the increased affinity for a polydentate ligand versus a ligand of lower denticity. consider the reaction considering the bonds formed and bonds broken in the reaction, what is the sign of enthalpy change in this reaction?

Answers

Entropy (+ S) increases noticeably when monodentate ligands are replaced by chelating ligands. This is what the Chelate Effect is mostly caused by.

To give one example, the total number of molecules rises from two to three when en takes the place of two ammonia ligands .Just one more molecule is all that is required to accelerate the reaction.

In the aforementioned example, there is only one bidentate ligand in play. The chelate action is further amplified when numerous bidentate ligands are involved or when denticity rises. Think about the two complexation equilibria between ammonia, NH3, and the cobalt (II) ion, Co2+(aq), ethylenediamine (en), on the one hand, and the cobalt (II) ion, Co2+(aq) and en.

the entropy caused by an increase or decrease in the number of freely moving molecules. The number of free molecules in the system rises when a chelating ligand takes the place of multiple monodentate ligands, leading to a sizable increase in entropy. The chelate effect is primarily driven by this energy component.

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the gas in a 250.0 ml piston experiences a change in pressure from 1.00 atm to 3.45 atm. what is the new volume (in ml) assuming the moles of gas and temperature are held constant?

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The new volume (in ml) assuming the moles of gas and temperature are held constant is 72.4 ml.

What is pressure?

A barometer or manometer can be used to measure pressure, which is the force applied per unit area. For an accurate physical description of a sample of a gas, four variables must be known: temperature, volume, quantity, and pressure. The SI unit for pressure is the pascal (Pa), which equals one newton per square meter (N/m²) of surface area. Pressure is defined as force per unit area of surface. An object's pressure is inversely proportional to the area on which the force is applied, and it is proportional to the force it exerts.

We have,

At constant temperature = P₁V₁ = P₂V₂

Where,

Initial pressure, P₁ = 1.00 atm

Final pressure, P₂ = 3.45 atm

Initial volume, V₁ = 250 ml

Final volume, V₂ = ?

Putting values in the formula

=(1.00 atm) × (250ml) = (3.45 atm) × V₂

V₂ = 72.4 ml

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What is the combining ratio of NaOH and H2SO4?

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Combining ratio of NaOH and H2SO4 is 2:1

The balanced chemical equation is ;                                              

2NaOH + H2SO4 → Na2SO4 + 2H2O.

Combining ratio is the ratio between moles of reactant required to form products it means how many moles of reactant is required to form product in chemical equation.

Here two moles of sodium hidroxide is required to react with one mole of sulphuric acid to form one moles of sodium sulphate and two moles of water.

So, combining ratio of reactant will be 2:1 and ratio fow product will be 1:2

Hence combining ratio of NaOH and H2SO4 is 2:1

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gaseous methane will react with gaseous oxygen to produce gaseous carbon dioxide and gaseous water . suppose 13. g of methane is mixed with 99.0 g of oxygen. calculate the maximum mass of carbon dioxide that could be produced by the chemical reaction. be sure your answer has the correct number of significant digits.

Answers

The mass of the carbon dioxide that could be produced by the chemical reaction is 11.68 gram.

In Any chemical reactions involving multiple reactant species one of the reactants present has an initial molar quantity that does not satisfy the necessary stoichiometry of the balanced reaction equation. If the reaction proceeds to completion, then this limiting reactant is fully consumed.

The balanced complete combustion reaction equation of methane is,

    CH4 + 2 O2 ---> CO2 + 2H20

Mass of methane reactant = 13g

Moles of methane reactant = 13g * 1 mole/ 16.0 gram = 0.81 mole

Mass of oxygen reactant = 99g

Moles of oxygen reactant = 99g * 1 mole/ 32.0gram = 3.093 mole

According to the balanced equation oxygen is the limiting reactant. Therefore methane is the excess reactant. Some of its quantity remains after complete reaction.

Moles of methane reactant remaining= 0.81 mole - 3.093/2 mole

                                                               = 0.73 mole

Mass of methane reactant remaining = 0.73 mole * 16.0gram /1 mole

                                                              = 11.68 gram

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why did the big bang not produce a significant proportion of elements heavier than helium?

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Helium could only persist until the temperature dropped too low for heavier elements to develop.

Why did the Big Bang not yield a lot of heavy elements?

Due to a bottleneck caused by the lack of a stable nucleus with 8 or 5 nucleons, Big Bang nucleosynthesis created extremely few nuclei of elements heavier than lithium. Additionally, the amount of lithium-7 created during BBN was constrained by this deficiency of bigger atoms.

Why did not heavier atoms than helium emerge during the first few seconds of creation?

Before few minutes into the expansion, the early cosmos was too hot for atoms to form. There were only a few minutes left before it was too cold to continue nucleosynthesis and no more elements could start to form.

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a. your instructor had transposed two numbers when reading the pressure and reported the barometric pressure was 745 torr when in fact the correct room pressure was 754 torr?

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In this case mass of the pressure used for the calculation (745 torr) is less than the correct room temperature (754 torr).

What is  barometric pressure ?

The measurement of atmospheric pressure, more particularly the weight of air molecules at a given location on Earth.

What is pressure ?

Divided by the surface area of the wall, the total force of all gas particle/wall collisions: One of the basic measurably present quantities of this phase of matter, pressure, is an effect that all gases have.

In this case, mass of the pressure used for the calculation (745 torr) is less than the correct room temperature (754 torr). This will lead to lower calculation of mass being present for Mg metal, since the pressure is 9 torr less than the actual pressure.

Therefore, in this case mass of the pressure used for the calculation (745 torr) is less than the correct room temperature (754 torr).

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octahedral complexes has two more unpaired electrons in the high-spin configuration than in the low-spin configuration?

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The example of this octahedral complex which has two more unpaired electrons in the high spin configuration than in the low spin configuration is Cobalt (II) or Co2+.

What are Octahedral complexes?

Octahedral complexes are coordination complexes with an octahedral molecular geometry. This geometry is characterized by six ligands attached to a central metal atom at the corners of an octahedron. Octahedral complexes are often used as catalysts in industrial processes, and they are also found in biological systems. The ligands can be either anionic, neutral, or cationic, and the central metal atom can be any of the transition metals from groups 3-12 of the periodic table. Octahedral complexes are often described in terms of their electron configuration, which is determined by the number of electrons in the ligands and the central metal atom. These complexes are important in many areas of chemistry, including inorganic, physical, and organometallic chemistry.

Octahedral complexes contains 6 ligands. The hybridization can be d2sp3 or sp3d2.

There are two types of spin complexes

High spin complexes: When Δo>PLow spin complexes: When Δo< P

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this is a chemical process in autotrophs that uses light energy to create chemical energy.

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Photosynthesis is a process that occurs in autotrophs, or organisms that can produce their own food. This process uses light energy from the sun to convert carbon dioxide and water into glucose and oxygen. This process is vital for life on Earth, as it is the primary source of energy for many organisms.

Photosynthesis: a chemical process that uses light

Photosynthesis is a chemical process that occurs in autotrophs, or organisms that can produce their own food. This process uses light energy from the sun to convert carbon dioxide and water into glucose and oxygen. The light energy is absorbed by specialized molecules called chlorophyll, which then use the energy to catalyze the conversion of carbon dioxide and water into glucose and oxygen. Photosynthesis is vitally important, as it is the primary source of energy for many organisms and is essential for life on Earth. In addition, photosynthesis provides oxygen to the atmosphere, which is used by other organisms. Without photosynthesis, the Earth would be a very different, much less hospitable place.

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A compound is found to have an empirical formula of ch2o. what is the molecular formula when the molecular weight is 180.0 grams?

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The molecular formula is C₂H₄O₂ when molecular weight is 180 g having empirical formula of CH₂O.

The compound's empirical formula is CH₂O, which contains two hydrogen atoms and one oxygen atom for every carbon atom.

CH₂O has a mass of 30 (=12+2*1+16).The molecule has a molecular weight of about 180.As a result, the supplied molecule has the molecular formula C₆H₁₂O₆.

What is the chemical structure of the equation for water, CH₂O?

A substance that is organic and has a molar mass pf 60 grams / mole as well as an empirical formula of CH₂O also has a molecular formula or C₂H₄O₂.

How much CH₂O is in a mole?

A mol of CH₂O has a molar mass of 30.026 g.

The periodic chart must first be used to estimate its atomic mass of the each element in the compound.

Therefore, the molecular formula is C₂H₄O₂ with the empirical formula of CH₂O.

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50 cm3 of a gas were collected during a reaction. The reaction was carried out at room temperature and pressure. How many moles of the gas were collected? give your answer to 3 decimal places.

Answers

The moles of gas collected during the reaction carried out under normal conditions of pressure and temperature and occupying a volume of 50 cubic centimeters were 0.002 moles.

Calculation of moles of gas

To calculate the number of moles of gas that were collected, the ideal gas formula PV = nrt is used

Procedure to calculate the number of moles of gas

Assuming the normal conditions of temperature and pressure, we have the following data

n = ?

V = 50 cm3 = 0.05 L

R = 0.082 L atm / mol °K

t = 25°C = 298°K

P = 1 atm

n = PV / Rt

n = 1 x 0.05 / 0.082 x 298

n = 0.05 / 24,436

n = 0.002 mole

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which of the following correctly describes an ideal gas? multiple choice question. a gas that obeys the gas laws under all conditions a gas that suits a particular application perfectly a gas that is classified as a noble gas a gas that flows like a liquid

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Among the options that correctly describes an ideal gas is a gas that obeys the gas laws under all conditions.

Ideal gas, also known as perfect gas, is a gas that physically complies with the ideal, or general, gas law, a particular idealised relationship between pressure, volume, and temperature. This law states that for a given amount of gas, the sum of the volume V and pressure P is proportional to the absolute temperature T; in equation form, PV = kT, where k is a constant. It is a generalisation that includes both Boyle's law and Charles's law as special cases. Such a relationship is known as a substance's equation of state, and it is sufficient to explain its basic behaviour. The kinetic theory of gases, which makes the assumptions, can be used to derive the ideal gas law.

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If the density of your unknown liquid is 0.65 g/mL, calculate the volume in liters that 3 mL of your unknown liquid would occupy when vaporized at the barometric pressure and temperature of your boiling water bath in Run 1. Use the accepted molar mass of your suspected unknown.unknown molar mass is 60g/mol

Answers

The volume of 3 mL evaporated unknown liquid is calculated to be 1.95 / 30.688 × Molar Mass

The volume in liters that 3 ml of the unknown liquid would occupy when vaporized can be calculated as follows;

as the boiling pressure at 1 atm is 100°C or 373°K and the standard STP temperature = 273°K and STP volume = 22.4 L

first, we calculate the temperature of the unknown as follows;

T = 373 °K ÷ 273°K  

T = 1.37 °K

Density = D = 0.65 g/mL

So,

volume = volume of unknown liquid × D / molar mass × V × T

volume = 3 × 0.65 /  molar mass × 22.4 × 1.37

volume = 1.95 / 30.688 × molar mass

Therefore the volume of 3 mL of the unknown liquid by using the accepted molar mass is 1.95 / 30.688 × molar mass

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Using standard heats of formation, calculate the standard enthalpy change for the following reactions.
a. Fe3O4(s)+4H2(g)→3Fe(s)+4H2O(g)
b. C(s,graphite)+O2(g)→CO2(g)
c. NH2Cl(aq)→NH3(g)+HCl(aq)

Answers

The reaction between CH4(g) + 2O2(g) and CO2(g) + 2H2O(l) results in an enthalpy change of -891 kJ/mol.

When given the temperatures of formation, how can we determine the standard enthalpy change?The standard enthalpy change of formation, in this equation, is defined as the product of the standard enthalpies of formation of the reactants and the sum of the standard enthalpies of formation of the products. Along with the data for the normal formation enthalpy: H fo[A]=433 KJ/mol. H fo[B] = -256 KJ/mol. The reaction enthalpy can be calculated by subtracting the sum of the enthalpies of all the reactants from the sum of the enthalpies of the products. By subtracting the sum of the enthalpies of the reactants from the total enthalpies of the product, we may get the thermodynamic constant, or tH.

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what relative masses of dimethyl amine and dimethyl ammonium chloride do you need to prepare a buffer solution of ph

Answers

For dimethylamine:

Acidity (pKa) 10.64

Basicity (pKb) 3.36

What is Buffer Solution?

The buffer solution, a water-based solvent solution, is created by combining a weak acid and its conjugate base, or a weak base and its conjugate acid. They can be diluted or have small amounts of acid or alkali added to them without the pH of the solution altering.

The pH of buffer solutions scarcely changes when a modest quantity of a strong acid or strong base is introduced. They are therefore used to keep the pH level constant.

Consider this for a moment: If the molar ratio of dimethylamine to dimethylammonium chloride were 1:1, pH would be equal to pKa. At that point, you would be at the half-equivalence point. 10.64 would be the pH.

However, you need a buffer whose pH is 10.43. A molar excess of dimethylammonium chloride must thus exist.

Applying the H-H equation

pH equals pKa plus log ([[base]/[salt]])

10.43 = 10.64 + log ([base[/salt]) log ([base[/salt]) = 10-43 - 10.64 log ([base]/[salt]) = -0.21 log ([base]/[salt]) = 10-0.21 log ([base]/[salt]) = 0.62

The buffer has to be made by combining 1.0mol of dimethylammonium chloride and 0.62mol of dimethylamine.

Mass to volume as necessary:

Dimethylammonium chloride, molar mass 81.55g/mol

Molar mass of dimethylamine is equal to 45.08g/mol minus 0.62mol, or 27.95g.

Dimethylamine to dimethylammonium chloride mass ratio is 81.55 to 27.95.

OR Ratio is 2.92:1.0 (81.55/27.95).

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Is argon a gas at room temperature and pressure?

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The noble gases of Group 8A argon a gas at room temperature and pressure  at room temperature (as the name of the group implies); since they are all unreactive, monatomic elements, their boiling points are extremely low.

The noble gases are, in decreasing order of mass, helium, argon, krypton, xenon, and radon. Since they are so magnificent and don't generally react with anything, they are known as noble gases. Because of this, they are also referred to as inert gases. Noble gases are distinct because, at normal temperature, they are gaseous. The least reactive element, they. Most of the time, they do not mix with other atoms. The noble gases are a group of chemical elements that share many characteristics. They are all monatomic, odourless, colourless gases with very little chemical reactivity under normal conditions. Historically, the term "noble gases" also applied to inert gases.

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term a client with a serum sodium level of 125 meq/ml should benefit most from the administration of which intravenous solution? a. 0.9% sodium chloride solution (normal saline) b. 0.45% sodium chloride solution (half normal saline) c. 10% dextrose in 0.45% sodium chloride d. 5% dextrose in 0.2% sodium chloride

Answers

The administration of 0.9% sodium chloride solution will be most beneficial for a patient with a blood sodium level of 125 meq/ml (normal saline).

The patient has hyponatremic hyponatraemia (normal range for serum sodium is 135–145 mEq/mL or mmol/L). In comparison to 0.45% sodium chloride solution (half normal saline), 10% dextrose in 0.45% sodium chloride, and 5% dextrose in 0.2% sodium chloride, 0.9% sodium chloride solution or normal saline offers the most sodium. All hypotonic fluids contain sodium chloride, sometimes known as saline. The sodium chlorine content of hypotonic fluids is lower than that of isotonic and hypertonic IVs. In light of this, these solutions are applied to patients who exhibit hypernatremia or excessive sodium chloride levels. Patients with fluid volume deficiency are treated with isotonic solutions (also known as hypovolemia) to raise their blood pressure.

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How many single bonds are in CH2O?

Answers

The Lewis structure CH2O contains two lone pairs and four bonded pairs ( two single bonds and one double bond).

What happens at the transition stage?

Answers

At the transition stage, one form of matter starts getting converted into another form of matter.

Solid, liquid and gas are the three phases in which matter occur in nature. Matter is interconvertible in nature i.e it can be converted from one form to another.

Melting, freezing and evaporation are the three phases of transition.

Liquid water at low temperature freezes to form solid ice. This process is known as freezing. Whereas, liquid water when provided high temperature or heat releases vapours. This process is known as evaporation. Solid ice when brought at room temperature gets converted back into liquid water. This process is known as melting.

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22. consider two organic molecules, ethanol and benzene. one dissolves in water and the other does not. why?

Answers

Ethanol contains a polar O-H Bond, and benzene does not. Ethanol C2H6O and Benzene C6H6

What is Benzene?

The simplest organic, aromatic hydrocarbon is benzene. One of the basic petrochemicals and a naturally occurring component of crude oil is benzoene. It is a colourless liquid with a smell that is similar to gasoline. The chemical benzene is very poisonous and carcinogenic. It is mostly employed in the manufacture of polystyrene.

Although benzene is a material that is formed naturally by volcanoes and forest fires and found in many plants and animals, it is also a significant industrial chemical that is manufactured from coal and oil. In its purest form, benzene is a transparent liquid without any color.

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