Student a says the δ h value of an exothermic energy change is always positive. Student b says δ h value of an exothermic energy change is always negative. Who is correct?.

Answers

Answer 1

Specific heat capacity of a substance is the amount of heat required to raise the temperature by one degree Celsius of one gram of a substance  . Therefore, student a and student b are correct.

How does chemistry define temperature?

The free energy from all of the particles or atoms in a substance is what chemists refer to as the substance's temperature. The kinetic energy of a substance's constituent particles varies.

Briefing :

q = n ×ΔH

where

q = amount of heat

n = no of moles

ΔH = enthalpy

n = w / M.M

Both students are correct as energy can be positive as well as negative. Any reaction in which energy is added, energy value comes out to be positive and reaction is called endothermic reaction. Any reaction in which energy is released, energy value comes out to be negative and reaction is called exothermic reaction.

Therefore, student a and student b are correct.

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Related Questions

If exactly one molecule of solute is present in 1. 00 l of solution, what is the concentration of the solution?.

Answers

If 1.0 l of solution contains exactly 1 molecule of the solute. The concentration in the solution is 1.66x10-24 M.

What does concentration mean in science?

The quantity of a substance, like salt, that is present in a specific volume of tissues or liquid, like blood, according to science. When there is less water present, the material becomes more concentrated. For instance, when a person will not really drink enough water, the concentration of salt in their urine may increase.

Why is it vital to concentrate?

Why is it so crucial to focus? You can use your resources more effectively and address difficulties more effectively when you are focused. It is less probable that you would overlook crucial facts when you are focused. Maintaining focus makes it easier for you to recall information.

Briefing:

1 mole = 6.02x10^23 particles,

((1 mole)/(6.02x10^23 molecules))

(1 molecule)/((1 mole)/(6.02x10^23 molecules))

= 1.66x10^-24 moles

=1.66x10^-24 moles/ volume,

= 1.0L here:

=(1.66x10^-24 moles solute)/(1.0 Liter)

= 1.66x10^-24 molar,

= 1.66x10^-24 M

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10 g of methane (ch4) is combusted in a calorimeter that has an empty heat capacity of 18 j/°c. the calorimeter contained 150 g of water. if the temperature changed from 25.2 °c to 30.3 °c, calculate the molar heat of combustion of methane in j/mol.

Answers

The molar heat of the combustion of methane in j/mol is 5267.52 J/mol.

Given,

m = 10 g of CH₄

mol = mass/MW = 10/16 = 0.625 mol

C = 18 J/C

m = 150 g o water

dT = 30.3 - 25.5 = 4.8°C

Calculate molar combustion of methane,

calculate heat,

Q(empty) = C × dT = 18* (30.3-25.2) = 91.8 J

Q(water) = m × Cp(dT) = 150*4.184*(30.3-25.2) = 3200.76 J

Total q= 91.8 +3200.76 = 3292.2 J

This is done for 10 g of methane

Therefore,

If n = 0.625  present

Then,

H(rxn) = Q/n = 3292.2 / 0.625 = 5267.52 J/mol

Hence, the molar heat of the combustion of methane in j/mol is 5267.52 J/mol.

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predict the bond order for the molecule cs2, which exists in the gas phase at high temperature. would cs2 be paramagnetic or diamagnetic?

Answers

The CS₂ molecules has bond order has two and has diamagnetic behaviours.

A volatile liquid with the chemical name carbon disulfide, CS₂ is an organosulfur compound. It is also known as methanedithione, disulfidocarbon, and carbon bisulfide.Sulfur, bromine, lipids, rubber, phosphorus, asphalt, selenium, iodine, and resins can all be dissolved in carbon disulfide. It is frequently employed in the production of flotation agents as well as the purification of single-walled carbon nanotubes. Carbon disulfide is a toxic, combustible, colourless to light yellow, volatile liquid with a pungent odour. It is insoluble in water and has a flash point of -22°F. It sinks because it is denser than water.

Hence, carbon covalently bond with Sulphur to carbon disulphide.

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a compound contains 39.37% chromium, 38.10% oxygen, and potassium. what percentage of the compound is potassium

Answers

The percentage of the compound is potassium is 22.53 %.

given that :

compound contains percentage of chromium = 39.37 %

compound contains percentage of oxygen = 38.10 &

compound contains percentage of potassium = ?

compound contains percentage of potassium = - 100%

                                         (percentage of chromium +  percent of  oxygen )

                                                  = 100 % - (39.37 % + 38.10 %)

                                                  = 100 % - 77.47 %

                                                  = 22.53 %

The percent of potassium in total percent of compound is 22.5 %.

Thus, a compound contains 39.37% chromium, 38.10% oxygen, and potassium. percentage of the compound is potassium is 22.53 %.

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How many grans of oxygen can be produced when 15.6g of sulfur trioxide are decomposed?

Answers

9.35 grams of oxygen can be produced when 15.6g of sulfur trioxide are decomposed.

How to find ?

2SO₃ → 2S + 3O₂

15.6gSO₃ ˣ 1molSO₃ / 80.07gSO₃ ˣ 3molO₂/2molSO₃ˣ32.00gO₂/1molO₂

= 9.35181716g O₂

=9.35g O₂

What is Stoichiometry?

For a method that chemists employ to quantify quantities in reactions, stoichiometry is a huge word. To connect the reactants and products in reactions, it makes use of the coefficient ratio established by balanced reaction equations.

Calculating the amounts of reactants and products in a chemical process is called stoichiometry. A balanced solution is required!

• Examples of reaction stoichiometry questions concern quantities in reactions. The resources needed to answer this question are currently at our disposal.

We simply need to learn a new approach to put skills like writing chemical formulas, figuring out formula masses, and putting mass, particles, and gas volume into moles into use.

• Mole to Mole Conversions: The Mole Ratio is required.

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How to find ?

If 60 g of a radioactive substance naturally decays to 15 g after 16 hours, what is the half-life of the radioisotope?.

Answers

A radioactive source's half-life is 8 hours if 60 g of it drops voluntarily to 15 g in 16 hours.

What are radioisotopes, and how are their radioactivity levels determined?

The number of protons in the atomic nuclei of the constituent atoms of a given chemical is constant, whereas the number of neutrons changes. Radioisotopes are the name for an element's radioactive constituents. They can also be referred to as unstable neutron-proton pairings or atoms with too much electrical energy in their nucleus. The Contributes to the continuing (Bq), the international unit, or the Cobalt (Ci), the official machine in the United States, are used to report actual radiation levels.

Complete life divided by half.

Half-life equals 16/2

8 hours is the half-life.

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Fill in the missing curved arrows to show the preparation of this product from the hydrochlorination of a conjugated diene.
Then in part two select the common elementary steps.

Answers

missing curved arrows to show the preparation of this product from the hydrochlorination of a conjugated diene. Then in part two select the common elementary steps.

Two double bonds and a single bond are what distinguish conjugated diene. Conjugated diene, notably butadiene, play a crucial role in the creation of rubber and, consequently, in the creation of the tires on our automobiles. hydrochlorination In order to chlorinate an unsaturated hydrocarbon, hydrogen chloride must be added across its numerous bonds. Alkyne (triple-bonded) reactants are the focus of Johnson Matthey's DAVYTM hydrochlorination technology. A chlorinated alkene results from this exothermic reaction.

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N2 (g) effuses at a rate that is _________ times that of xe(g) under the same conditions.

Answers

There will be variances between isotopes, however by ignoring these and using the avg mol wt of N2 = 28 and Xe = 132; Rate(N2)/Rate(Xe) = sqrt (132/28) = 2.17

What  an isotope is instead ?

Isotopes are atoms with the same quantity of protons but differing numbers of neutrons. They differ in mass, which affects their physical characteristics even if they have nearly identical chemical makeup.

What makes anything an isotope?

There are three known one-proton nuclei that have 0 neutrons, 1 neutrons, and 2 neutrons, respectfully. They are known as hydrogen isotopes (first from Greek isos, which means "same," and topos, which means "place") since they all occupy the same location in the periodic chart that is designated for atomic number 1.

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Write a nuclear equation to describe the spontaneous fission of 243 95am to form i-134 and mo-107. Determine how many neutrons are produced in the reaction.

Answers

Following is the nuclear equation for the spontaneous fission of ₉₅Am²⁴3 , which results in the formation of ₅₃I¹³⁴ + ₄₂Mo¹⁰⁷ and three neutrons:

₉₅ Am²⁴3 -----> ₅₃I¹³⁴ + ₄₂Mo¹⁰⁷ + 3 ₀n¹

What is neutrons?

The neutron is a subatomic particle that has a neutral charge, the sign n or n0, and only a little bit more mass than a proton. The atom's nucleus is made up of protons and neutrons. All other nuclei require neutrons to remain stable, with the exception of the hydrogen atom, which has a single proton. Large numbers of neutrons are produced by both nuclear fusion and fission. They are crucial to the fission, fusion, and neutron capture processes that result in the nucleosynthesis of chemical elements in stars.

What are neutrons found in an atom?

Two subatomic particles known as neutrons and protons are found in the nucleus of every atom. The only exception is hydrogen, which has one proton in its nucleus. Neutrons are somewhat heavier than positively charged protons and have an electric charge that is neither positive nor negative.

Briefing:

• ₉₅ Am²⁴3 -----> ₅₃I¹³⁴ + ₄₂Mo¹⁰⁷ + 3 ₀n¹

• From the above reaction, three neutrons are produced.

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calculate position of fermi level in n-type silicon with donor concentration of 3x1017 cm-3 at room temperature.

Answers

Above 0.115eV from fermi level conduction level is there.

[tex]\begin{aligned}& \eta=3 \times 10^{17} \\& N_c=4.82 \times 10^{15}\left(\frac{m_n}{m}\right)^{3 / 2} T^{3 / 2} \\& N_c=4.82 \times 10^{15} \times(300)^{3 / 2} \quad\left[\because \frac{m n}{m}=1\right] \\& N_c=4.82 \times 10^{15} \times(300)^{3 / n} \quad \\& N_c=250.45 \times 10^{17}\end{aligned}[/tex]

[tex]\begin{aligned}& E_C-E_F=0.026 \ln \left(\frac{250.45}{3}\right) \\& E_C-E_F=0.026 \times 4.42 \\& E_C-E_F=0.115 \mathrm{ev} . \\& E_C=E_F+0.115 \mathrm{VN}\end{aligned}[/tex]

Above 0.115eV from fermi level conduction level is there.

The Fermi Level is the maximum energy level an electron may occupy when it is at absolute zero degrees Fahrenheit. Since the electrons are all in the lowest energy state at absolute zero, the Fermi level is located between the valence band and conduction band.

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a is an instrument used to measure atmospheric pressure specifically in the area of meteorology.

Answers

The instrument used to measure atmospheric pressure specifically in the area of meteorology is Barometer.

A barometer is a scientific instrument used to measure atmospheric pressure, also called barometric pressure. The atmosphere is the layers of air wrapped around Earth. That air has a weight and presses against everything it touches as gravity pulls it to Earth. Barometers measure this pressure. Atmospheric pressure is an indicator of weather. Changes in the atmosphere, including changes in air pressure, affect the weather. Meteorologists use barometers to predict short-term changes in the weather. A barometer measures atmospheric pressure in units of measurement called atmospheres or bars. An atmosphere (atm) is a unit of measurement equal to the average air pressure at sea level at a temperature of 15 degrees Celsius (59 degrees Fahrenheit).

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list the addition reactions of alkenes and alkynes. what similarities do you see in the addition reactions? do you notice any differences?

Answers

The list the addition reactions of alkenes and alkynes are as follows:

Addition Reactions of Alkenes:

1. Halogenation: Alkenes react with halogens to form halohydrins.

2. Hydration: Alkenes react with water to form alcohols in the presence of an acid catalyst.

3. Hydrohalogenation: Alkenes react with hydrogen halides to form alkyl halides.

4. Hydrogenation: Alkenes react with hydrogen in the presence of a metal catalyst to form alkanes.

5. Hydroboration-Oxidation: Alkenes react with borane to form alcohols.

Addition Reactions of Alkynes:

1. Halogenation: Alkynes react with halogens to form dihalides.

2. Hydration: Alkynes react with water to form ketones in the presence of an acid catalyst.

3. Hydrohalogenation: Alkynes react with hydrogen halides to form alkyl halides.

4. Hydrogenation: Alkynes react with hydrogen in the presence of a metal catalyst to form alkanes.

5. Hydroboration-Oxidation: Alkynes react with borane to form aldehydes.

Similarities: Both alkenes and alkynes undergo the same types of addition reactions.

Differences: The products of the addition reactions are different depending on the type of compound being reacted. For example, alkenes form alcohols when reacted with water, while alkynes form ketones.

What do you mean by Alkynes?

Alkynes are a group of hydrocarbons that contain at least one triple bond between two carbon atoms. They are also known as acetylenes and are unsaturated hydrocarbons with the general chemical formula of CnH2n-2.

What do you mean by Alkenes?

Alkenes are a class of hydrocarbons characterized by a carbon–carbon double bond. They are typically colorless, flammable, gases or liquids with a sweet odor. Alkenes are a major component of gasoline and are used in the manufacture of plastics and other industrial materials.

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which of the following statements are true? select all that apply. which of the following statements are true?select all that apply. the larger the atom, the more polarizable it is. in terms of the total attractive forces for a given substance, the contribution of dipole-dipole interactions, when present, are always larger than the contributions of dispersion forces. all other factors being the same, dispersion forces between linear molecules are greater than dispersion forces between molecules whose shapes are nearly spherical. when comparing ne and xe , the boiling point of ne is expected to be higher because dispersion forces decrease going down a column in the periodic table. for molecules with similar molecular weights, the dispersion forces become stronger as the molecules become more polarizable

Answers

The true statements are 1, 3, 4 and 5 for the properties of atom and molecules.

Define the term chemical bond?Atoms in molecules are held together by chemical bonds. Electrostatic forces between negatively charged electrons and positive charge atomic nuclei give rise to bonds.

1. The statement is true:

Generally speaking, polarizability increases as electron volume increases. This happens in atoms because larger atoms have less firmly bound electrons compared to smaller atoms, which have more loosely held electrons. More polarizable than smaller atoms are larger molecules, atoms, or ions.

2. The statement is false.

As we go down the group, the dispersion forces increases and they can be stronger than any other interactions.

3. The statement is true.

In comparison to molecules with a linear shape, spherical molecules have less surface area and a lower dispersion force.

4. The statement is true.

As the polarizable size of the molecules increases down the group, the boiling points also increase. As you move down the column of noble gases, their increasing diameters and resulting greater and greater London dispersion forces are apparent. The boiling point is set by these intermolecular interactions. The easier it is to separate the atoms, the smaller the force.

5. The statement is true.

The dispersion forces get stronger when polarizability increases. As a result, molecules are more attracted to one another, and the melting and boiling points of covalent compounds increase with increasing molecular mass. Through the affected molecules' impacted molecules' molecular shapes, polarizability also affects dispersion forces.

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Mg2+
Draw the Lewis dot structure for Mg2+. Show the charge. To change the symbol of an atom, double-click on the atom and enter the letter of the new atom.

Answers

In the two outermost orbitals of magnesium atoms, there are two electrons. In order to become Mg2+, an atom can shed two electrons.

Dots of electrons are represented as Lewis structures, sometimes known as Lewis symbols. In order to create the magnesium ion, or Mg2+, two electrons are supplied by the Mg atom.

As opposed to Mg2+, whose electronic configuration was discovered to be 1s2 2s2 2p6, which has the electron density of Mg as 1s2 2s2 2p6. Magnesium has a 12 atomic number.

Create a Lewis electronic band diagram by picturing the sign for mg inside a box that contains all of the core electrons. The valence electrons are then positioned so that the greatest energy level orbital on each of the box's sides corresponds to their placement.Eight electrons from the Mg2+ ion occupy the empty space in the second orbital.

Here, it should be noted that this ion possesses 8 electrons and a 2 valence shell. As a result, the Lewis structure includes eight points, and because it is a charged molecule, it is also necessary to mention the net charge. Consequently, Mg2Lewis +'s structure.

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Draw a structural formula of an alkene or alkenes (if more than one) that undergo acid-catalyzed hydration and without rearrangement give 1- methylcyclobutanol as the MAJOR product. • You do not have to consider stereochemistry. • You do not have to explicitly draw H atoms. • If more than one structure fits the description, draw them all. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate structures with + signs from the drop-down menu.

Answers

The structure of 1-methyl cyclohexanol is: shown in Fig 1

The reactions for the preparation of 1-methyl cyclohexanol are summarised as: Fig 2

Here In Fig 2, 1-methyl cyclohexene reacts to give 1-methyl cyclohexanol in the presence of water. It proceeds through acid catalysed hydration.

In the Fig 3 reaction, methylene cyclohexane reacts with water to give 1-methyl cyclohexanol. It proceeds through acid catalysed hydration.

Thus, the possible structures of alkene are depicted as: Fig 4

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find the volume of 0.200 m sulfuric acid necessary to react completely with 79.7 g sodium hydroxide.;

Answers

Determine the number of moles of NaOH present, then the number of moles of H2SO4 required to react with 7.97 g of NaOH, and finally, write the correct balanced equation for the reaction. Lastly, determine how much H2SO4 is required to produce 0.25 moles of H2SO4.

How is a 2M H2SO4 solution made?

you add 100 ml of concentrated H2SO4 to 900 ml of ordinary water. Once you've combined everything, you'll have 2 moles of H2SO4 in 1L of the solution, or 2M H2SO4.

How do you figure out how many grams you need to make a solution?

1. To determine how many moles of NaCl you need, multiply the concentration (0.5 mols/Liters) by the desired volume of solution (0.5 Liters). 2. To determine how many grams of solute are required, multiply the moles of NaCl by their molar mass (58.44 g/mol).

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apollo spas services 297 hot tubs. if each hot tub needs 115 ml of muriatic acid, how many liters of acid are needed for all of the hot tubs?

Answers

The number of liters of acid needed for all of the hot tubs is the total volume of muriatic acid, which is 31, 155 ml.

Volume refers to the space occupied within the boundaries of an object in three-dimensional space. It is also called as the capacity of the object. In an object is filled with a liquid complete, there volume is the same.

In the given case that total volume of the acid would be the product of volume of each hot tub and number of hot tub containers. Hence, it is given by:

Total volume = Volume of each hot tub x number of hot tub containers

According to the given data:

Volume of each hot tub = 115 ml

Number of hot tub containers = 297

Hence,

Total volume = 115 x 297 = 31, 155 ml

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16.3 l n2 at 25 °c and 125 kpa and 43.1 l o2 at 25 °c and 125 kpa were transferred to a tank with a volume of 5.25 l. what is the total pressure at 43 °c?

Answers

Its pressure distribution (in kpa) for 65 °C is P=13.32atm after 18.7 l n2 with 41. 9 l o2 and 25 °C and 125 kpa was transported to a container with such a capacity of 7. 00 l.

What is pressure and its types?

A physical force applied to an object is known to as pressure. For unit area, a perpendicular force is delivered to a surface of the objects. T r is the fundamental formula for pressure. Phases of project are a unit of pressure (Pa). Absolute, ambient, differential, and gauge pressures are different types of pressure.

Briefing:

That number of molecules of N2 is now determined

P₁.V₁=n₁.R.T₁

1.233×16.3=n₁×0.0821×298

n₁=0.822 mol

In a similar manner, we determine the quantity of O2 moles.

P₂.V₂=n₂.R.T₂

1.233×32.3=n₁×0.0821×298

n₂=1.628mol

The total number of moles of gas that must be pumped into the vessel with the dimensions of V = 4.50 L and T = 298 K equals

n=n₁+n₂

=0.822+1.628mol

=2.45mol

Let P represent the gas's final pressure,

PV=nRT

P×4.50=2.45×0.0821×298

P=13.32atm

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4.0 mol Na2S can form 4.0 mol Na2SO4
and 5.0 mol CuSO4 can form
5.0 mol Na2SO4. How many moles of
Na2SO4 can form?
[?] mol Na₂SO4
Round your answer to the tenths place.

Answers

Answer:

9.0 mol Na2SO4

Explanation:

Answer: 4

Explanation:

what is the structure of benzene? what are the different ways in which this structure is represented

Answers

The aromatic compound benzene, with the chemical formula C6H6, is one of the most well-known ones.

Benzene has a mass average of roughly 78.112, and its chemical formula is C6H6, meaning it comprises six carbon atoms and six hydrogen atoms. Three double bonds and a six-carbon ring, symbolized by a hexagon, are present in the structure. A corner that is bonded to other atoms represents the carbon atoms.

Structure of Benzene

Benzene is typically depicted structurally as a six-carbon ring with three double bonds (shown by a hexagon). Every carbon atom that a corner represents is also connected to one other atom. These are hydrogen atoms that are present in benzene. We can identify the arrangement as including conjugated double bonds since the double bonds are separated by single bonds.

An alternative representation of the six pi electrons employs a circle inside a hexagon. These symbols all have positive and negative qualities. The three double bond symbol will be used simply because it is frequently used in the text.

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when two oxygen atoms form a chemical bond in a system, what happens to the energy and the stability of the system?

Answers

When two oxygen atoms form a chemical bond in a system its energy decreases and stability increases.

When two atoms join together to form a chemical bond, they either transfer or share electrons to create a new molecule. The negatively charged particles known as electrons are found in various energy levels around the atomic nucleus.

The outer electrons of two oxygen atoms are drawn in by the nuclei of both atoms when they are in close proximity to one another. Two electrons from each atom are shared in this situation. An example of this is a double bond. Each oxygen atom contains a total of eight valence electrons because they share two pairs of them. Its outer energy level is filled, providing it the most stable configuration of electrons. In its simplest form, oxygen is a diatomic molecule. Since each oxygen only contains six electrons, it must share them with another oxygen to form two bonds. An example of this is a double bond.

Thus, When two oxygen atoms form a chemical bond in a system its energy decreases and stability increases.

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ammonium nitrate decomposes explosively upon heating according to the following balanced equation: 2nh4no3(s)→2n2(g) o2(g) 4h2o(g) part a calculate the total volume of gas (at 135 ∘c and 769 mmhg ) produced by the complete decomposition of 1.59 kg of ammonium nitrate.

Answers

The answer is 1687.74 L.

Solution:

PV = nRT

Divide both sides by P

V = nRT / P

V = (68.25 × 62.363 × 297) / 749

V = 1687.74 L.

Heating ammonium nitrate NH4NO3 produces nitrous oxide N2O and water H2O. The above equation is the balanced chemical reaction for the decomposition of ammonium nitrate when heated. 1 mol of ammonium nitrate breaks down into 1 mol of nitrous oxide and 2 mol of water molecules.

As mentioned earlier, potassium nitrate decomposes into metallic nitrites and oxygen gas. Potassium nitrate can be said to not produce nitrogen dioxide when heated. However, at sufficiently high temperatures, ammonium nitrate itself can violently decompose. This process produces gases such as nitrogen oxides and water vapor. It is this rapid release of gas that causes the explosion.

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A diatomic element has six bonding electrons, six non-bonding electrons, and 2 anti-bonding electrons. What is the bond order?.

Answers

Answer:

10 pts

Explanation:

draw both enolates formed when the ketone is treated with base. include charges. draw the oxyanion species; do not draw carbanion resonance forms. the starting material is a carbonyl bonded to a methyl and an ethyl group. this forms enolate 1 and enolate 2.

Answers

This is an illustration of asymmetric ketone deprotonation. Here, there are two potential outcomes.

What is Thermodynamic Product?
Thermodynamic product
is a term used in thermodynamics to refer to the end product of a thermodynamic process. It is the state of the system at the end of the process, which has been changed from its initial state by the application of energy. The thermodynamic product is usually a combination of heat and work, which is released by the system in the form of energy. The thermodynamic product is also known as the final state of the system, which is determined by the total of the energy and mass that enter or leave the system during the process. It is also important to understand that thermodynamic products are not necessarily the desired end result of a process, and that the thermodynamic process can produce a variety of different outcomes depending on the nature of the process.

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how many grams of sodium chloride are there in 550.0 ml of a 1.90 m aqueous solution of sodium chloride? question 28 options: 6.11 × 104 61.1 30.5 1.05 122

Answers

61.1 grams of sodium chloride.

Molar concentration is a unit of measurement for the concentration of a chemical species, specifically a solute, in a solution, expressed as the amount of substance per unit volume of solution. The most commonly used unit for molarity in chemistry is the number of moles per liter, denoted by the unit symbol mol/L or mol/dm³ in SI units.

Molarity (M) is the most commonly used unit of solution concentration and is defined as the amount of solute in moles divided by the volume of solution in liters:

M = moles of solute/liters of solution.

A mole is a unit of measurement for a chemical substance, from which the term "molarity" derives.

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If the density of carbon tetrachloride is 0. 793 g/ml, and a sample has a volume of 9. 29 ml, what is the mass?.

Answers

If the density of carbon tetrachloride is 0. 793 g/ml, and a sampl.e has a volume of 9. 29 ml the mass is 7.367 g

For CCl4

Density of carbon tetrachloride = 0.793 g/ml

Volume of sample = 9.29ml

mass = density * volume = 0.793 × 9.29 = 7.367 g

The chemical name for carbon tetrachloride, sometimes referred to as tetrachloromethane and recognized by the IUPAC, carbon tet in the cleaning business, Halon-104 in firefighting, and Refrigerant-10 in HVACR, is CCl4. It is an organic compound. It has an indistinct color and a just perceptible "sweet" odor. At lower temperatures, it is almost incombustible. Prior to being phased out because to environmental and safety concerns, it was frequently used in fire extinguishers, as a predecessor to refrigerants, and as a cleaning agent. The central nervous system can be impacted as well as the liver and kidneys when exposed to high amounts of carbon tetrachloride, particularly its vapor. An extended exposure risk can be lethal.

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discuss the equilibrium that eventually results if a solid is placed in an initially evacuated closed container and is maintained at a given temperature

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The equilibrium that eventually results if a solid is placed in an initially evacuated closed container and is maintained at a given temperature: Thermal equilibrium exists because the solid attains the temperature.

Equilibrium does no longer necessarily imply that reactants and merchandise are present in the same amounts. It approaches that the response has reached a factor in which the concentrations of the reactant and product are unchanging with time due to the fact the ahead and backward reactions have identical charges.

The equilibrium rule says that if a system is in equilibrium then the sum of all of the forces or the net pressure appearing at the machine is 0 due to which the system does now not reveal any linear acceleration and stays at relaxation or moves with a steady velocity. we can write it down as ∑F=zero.

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brainly a mixture of two gases with a total pressure of 5.60 atm contains 0.40 atm of gas a. what is the partial pressure of gas b?

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The partial pressure of gas B is 5.2 atm.

What do you understand by partial pressure?

When more than one gas is present in a container, each gas exerts pressure, which is known as partial pressure. Its partial pressure refers to the pressure of any gas inside the container.

Let there be n different gases in the mixture, each at a different pressure (P1, P2, etc.)

Then the total pressure will be:

[tex]P_{total}[/tex] = ∑[tex]P_{1}[/tex] + [tex]P_{2}[/tex] + [tex]P_{3}[/tex]

Now, partial pressure of mixture of gas containing gas A = [tex]P_{A}[/tex]

         partial pressure of mixture of gas containing gas B = [tex]P_{B}[/tex]

Total pressure of gas = 5.60 atm

Pressure of gas [tex]P_{A}[/tex] = 0.40 atm

[tex]P_{total}[/tex] = [tex]P_{A}[/tex] + [tex]P_{B}[/tex]

5.60 atm = 0.40 atm + [tex]P_{B}[/tex]

[tex]P_{B}[/tex] = 5.60 - 0.40 = 5.2 atm

So, the partial pressure of gas B is 5.2 atm.

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what is the percent yield of hcl if 42.0 g of hcl are produced from the reaction of 62.0 g of pcl3? use percent yield equals startfraction actual yield over theoretical yield endfraction times 100.. 28.4% 72.8% 85.0% 93.5%

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The percent yield of HCl is 85.0%.

In chemistry, yield, also referred to as reaction yield, is a measure of the quantity of moles of a product formed in relation to the reactant consumed, obtained in a chemical reaction, usually expressed as a percentage.

%yield = (actual yield/theoretical yield) x 100

The presence of impurities lowers the actual yield, which lowers the percentage yield. The purity of the reactants influences the percentage yield. Highly pure reactants tend to increase actual yield and, as a result, percentage yield.

A percentage yield greater than 100 percent is only possible if the product is contaminated with impurities or if all of the solvent from the reaction mixture has not been dried off.

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true or false: if you followed a single carbon atom in a glucose molecule that goes through cellular respiration, you could eventually find that carbon atom in a molecule of carbon dioxide.

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True, if you followed a single carbon atom in a glucose molecule that goes through cellular respiration, you could eventually find that carbon atom in a molecule of carbon dioxide.

This is where the citric acid metabolic pathways of cellular respiration occur. After the glycolysis process happens in cell cytoplasm to form pyruvate from glucose molecules, the pyruvate is converted to acetyl-CoA that enters the mitochondria for the TCA cycle. The TCA produces more ATPs from the energy molecule. The carbon atoms will ultimately be expelled from the cell as carbon dioxide.

Reaction involved: (glucose) C₆H₁₂O₆ (s) + 6 O₂ (g) → 6 CO₂ (g) + 6 H₂O (l) + heat energy

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