Calculate the standard enthalpy of formation for diamonds, given that C(graphite) + O2(g) → CO2(g) A#° --393.5 kJ/mol C(diamond) + O2(g) → CO2(g) AH° =-395.4 kJ/mol | kJ/mol

Answers

Answer 1

Standard enthalpy of formation for diamonds is 1.9kJ/mol .

Enthalpy of formation of any compound is defined as the amount of energy required to form 1 mole of compound.Enthalpy of formation is usually represented as ΔHf. If the enthalpy of combustion of two reactions is given, then enthalpy of combustion of the overall reaction can be calculated with the help of Hess's Law.

Given Reactions are:-

C(graphite) + O2(g) → CO2(g)  AH°₁= --393.5 kJ/mol C

C(diamond) + O2(g) → CO2(g)

On reversing the second equation:

CO2(g) →  C(diamond) + O2(g) => AH° =-395.4 kJ/mol

C(graphite) →  C(diamond)

AH°(overall) = AH°₁ + AH° =  --393.5 kJ/mol C +-395.4 kJ/mol =               1.9kJ/mol

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Related Questions

An electric field of strength 2*10^3v/m was applied to restore cathode rays to their original path after they were deflected through a curved path of radius 1.0*10^-2m by a magnetic field of strength 1.07*10^-3T.Calculate the charge to mass ratio for the electron.

Answers

Cccvgahehdbdndndnfnfnfn

What is the role of chlorophyll in the process of photosynthesis?

To absorb water

To release oxygen

To absorb sunlight

To take in nutrients

Answers

Answer:

Chlorophyll plays a key role in the process of photosynthesis, which is the process by which plants, algae, and some bacteria convert sunlight into energy. In photosynthesis, chlorophyll absorbs sunlight and uses the energy to convert carbon dioxide and water into glucose (a type of sugar) and oxygen. The glucose is used by the plant as a source of energy, while the oxygen is released into the atmosphere as a byproduct.

To summarize, chlorophyll absorbs sunlight and uses the energy to convert carbon dioxide and water into glucose and oxygen through the process of photosynthesis.

Explanation:

1) Which option describes a situation in which reduction occurs?(1 point)
S2– becoming S
Cl2 becoming Cl–
Al becoming Al3+
Xe2+ becoming Xe6+

Answers

The option that describes a situation in which reduction occurs is Cl₂ becoming Cl⁻

In chemistry, reduction means a class of chemical reactions in which the number of electrons associated with an atom or group is increased.

A compound that accepts electrons is said to be reduced.

Situations in which reduction occurs include:

Cl₂ ⇒Cl⁻

When reduction occurs, the oxidation number (superindex) appears to decrease that number. In this case 2+ becomes 1-.

Note:

As with other problems, a decreasing oxidation number means that the compound or element is being reduced (gaining electrons), while an increasing oxidation number means it is being oxidized (losing electrons). increase.

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a sample of chlorine gas starting at 687 mm hg is placed under a pressure of 994 mm hg and reduced to a volume of 511.1 ml.. what was the initial volume in mL, of the chlorine gass container if the proccess was perform at constant temperature?

Answers

The initial volume of the chlorine gas container if the process was performed at constant temperature is calculated to be 739.49 ml.

What is Boyle's law?

Boyle's law is also referred to as the Boyle–Mariotte law or Mariotte's law. It is an experimental gas law that explains the relationship between pressure and volume of a confined gas.

Lungs make use of Boyle's law during respiration. While inhaling, lungs are filled with air and therefore, they expand. The volume increases and hence pressure level goes down.

Given, P1= 687mm Hg P2=994 mm Hg  V2= 511.1 ml

P1V1= P2V2

V1= P2V2/P1

V1= 739.49 ml

The initial volume of the chlorine gas container if the process was performed at constant temperature is 739.49 ml.

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the electron transport chain is, in essence, a series of redox reactions that comprise the last stage of aerobic cellular respiration. during these redox reactions, oxygen is oxidized as it picks up electrons at the very end of the electron transport chain

Answers

The electron transport chain is, defined as essence and series of redox reactions that conclude cellular respiration. During the process of redox reactions, NAD+ is reduced, which then oxidizes an electron acceptor in the electron transport chain.

The electron transport chain is defined as a series of four protein complexes that couple redox reactions, creating an electrochemical gradient that leads to the creation of ATP in a complete system named oxidative phosphorylation. Electron transport system occurs in mitochondria in both cellular respiration and photosynthesis.

Hence, it is seen that NAD+ is reduced during the process of electron transport chain system.

The given question is incomplete," So I have answered according to my knowledge."

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Which one of the two phase transitions (freezing or vaporizing) has the larger magnitude in the change of entropy? Explain in terms of statistical model of entropy.

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Entropy changes more significantly during phase transitions during freezing.

Change in entropy during a phase change is defined as:-

∆S = change in enthalpy/ temperature (absolute)

Enthalpy values in both processes are comparable.

But, since the temperature in freezing will be much lower than the temperature in vaporizing, enthalpy change in freezing will contribute to a larger magnitude of change in the randomness of the molecules. Hence, it's the magnitude of entropy change will be larger.

A state of disorder, randomness, or uncertainty is most frequently connected with the scientific notion of entropy, which is also a quantifiable physical attribute. The notion and the phrase are employed in a variety of disciplines, including classical thermodynamics, where they were initially identified, statistical physics, which describes nature at the molecular level, and information theory. It has wide-ranging uses in physics and chemistry, biological systems, and how they relate to life, cosmology, economics, sociology, weather science, and information systems, particularly the transfer of information through telecommunication.

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How to remove dye from effluent from azo dye factory

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The removal of the azo dye can be achieved by the use of the adsorbents.

How do you remove the azo dye?

We know that a dye could be one of the contaminants that could be seen to be present in an effluent stream. It is always very important that we should be able to remove the wastes that are part of a stream as this is going to make sure that we do not have the effluent filled with a contaminant.

The contaminant that is found in the stream can be able to be passed into the aquatic ecosystem and then it could be passed along food chain and this is going to cause a much larger damage to people that are living in a locality.

We can be able to remove the azo dye by the use of the adsorbents that would be able to take up the dye and such save the environment.

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Use the reaction i2(s) i2(g), h = 62.4 kj/mol, s = 0.145 kj/(molk), for question 10. which direction of the reaction is favored at 298 k (room temperature)?

A. Toward I2(g) production
B. Both are equally favored
C. It is impossible to tell
D. Toward I2(s) production

Answers

Answer:

D. Toward I2(s)

Explanation:

∆G = ∆H - T∆S

∆G = 62.4-.145*298

∆G = 19.2 kJ/mol

Since ∆G is positive (greater than 0) for this reaction, the reverse reaction (going from right to left) is favored: conversion of gaseous I2 to solid I2.

Answer:

the answer is Toward I2(s) production

Explanation:

I took the test rn and that’s what I got.

Is a charge indicated on the neutral atoms? If yes, where is it located?

Answers

    Neutral atoms do not have a charge indicated on them because they have an equal number of protons and electrons, which cancel each other out. This means that the net electrical charge of a neutral atom is zero.

    Protons and neutrons, which make up the nucleus of an atom, are positively charged. Electrons, which orbit the nucleus, are negatively charged. In a neutral atom, the number of protons and electrons is equal, so the positive charge of the protons is canceled out by the negative charge of the electrons, resulting in a net charge of zero.

    However, atoms can gain or lose electrons to form ions, which do have a net electrical charge. If an atom gains one or more electrons, it becomes negatively charged and is called an anion. If an atom loses one or more electrons, it becomes positively charged and is called a cation. The charge of an ion is indicated by a superscript after the chemical symbol for the element, for example, Cl- for chloride ions (anions) and Na+ for sodium ions (cations).

The order of prosthetic groups as they act in the three proteins of the PDH(pyruvate dehydrogenase) complex is:A) FAD → thiamine pyrophosphate → NAD+B) FAD → thiamine pyrophosphate → dihydrolipoamideC) thiamine pyrophosphate → dihydrolipoamide → FADD) NAD+ → FAD → dihydrolipoamide

Answers

The order of prosthetic groups as they act in the three proteins of the PDH (pyruvate dehydrogenase) complex is: C) thiamine pyrophosphate → dihydrolipoamide → FAD

A prosthetic group is a non-amino acid component that is closely attached to the apoprotein and makes up the structure of heteroproteins or conjugated proteins. Not to be confused with the cofactor that non-covalently binds a non-protein to the enzyme apoenzyme (either a holoprotein or heteroprotein) (non-amino acid) A conjugated protein must contain this part in order for the protein to function biologically. [1] The prosthetic group may be inorganic (such as a phosphate, lipid, sugar, vitamin, or RNA) or organic (such as a metal ion). Proteins are firmly connected by prosthetic groups, and they may even be joined by a covalent bond.

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g ge has several stable isotopes, the most common being ge-74. ge-77 is a radioactive isotope. ge-77 would be question blank 1 of 2 the band of stability. ge-77 is likely to undergo....?

Answers

From the seven isotopes of ge, Ge-77 is a radioactive isotope and has a half life of  11.3 hours.

Germanium (32Ge) has five naturally occurring isotopes, 70Ge, 72Ge, 73Ge, 74Ge, and 76Ge. Of these, 76Ge is very slightly radioactive, decaying by double beta decay with a half-life of 1.78 × 1021 years[3] (130 billion times the age of the universe)g ge has several stable isotopes, the most common being ge-74. ge-77 is a radioactive isotope. ge-77 would be question blank 1 of 2 the band of stability. ge-77 is likely to undergo.

Germanium compounds are also used for polymerization catalysts and have most recently found use in the production of nanowires. This element forms a large number of organogermanium compounds, such as tetraethylgermanium, useful in organometallic chemistry. Germanium is considered a technology-critical element.Germanium is considered a technology-critical element

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g when 63ni (atomic number 28) undergoes beta decay, what is the resulting daughter particle? (in the blanks below, type in element symbol, atomic number, and mass number. do not type in the full name of the element.) the daughter particle is element symbol question blank 1 of 3 with atomic number question blank 2 of 3 and mass number question blank 3 of 3

Answers

The resulting daughter particle is the remaining nuclide left over from radioactive decay.

In a nuclear decay reaction, also called radioactive decay, an unstable nucleus emits radiation and transforms into the nucleus of one or more other elements. The resulting daughter nucleus has lower mass and energy than the decaying parent nucleus.

The first isotope is called the parent and the new isotope is called the daughter. The half-life of an isotope is the time it takes for half of the atoms of the parent isotope to change to atoms of the daughter isotope. The spontaneous transformation of one unstable nuclide into another is radioactive decay. Unstable nuclides are called parent nuclides.

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1) Complete and balance the molecular equation for the reaction between aqueous solutions of silver nitrate and hydrochloric acid, and use the states of matter to show if a precipitate forms.
2) Write the complete ionic equation for the reaction that takes place when aqueous solutions of silver nitrate and hydrochloric acid are mixed.
3) Write the net ionic equation for the precipitation reaction, if any, that may occur when aqueous solutions of silver nitrate and hydrochloric acid are mixed. If there is no net ionic equation, simply write "none."

Answers

Equations will be

AgNO3(aq)+HCl(aq)⟶AgCl(s)+HNO3(aq)

AgNO3+HCl⟶AgCl+HNO3

Ag:+1⟶+1

NO3:−1⟶−1

H:+1⟶+1

Cl:−1⟶−1

According to the solubility table, nitrates are always soluble, so the strong ionic bond between silver ions and nitrate ions are broken by water molecules because of ion-dipole attraction. Acids ionize in water to give mobile ions, so hydrogen chloride in aqueous solution gives out hydrogen ions (and form hydronium ions) and chloride ions.

There are five types of particles in the solution :

H2O molecules, Ag+ ions, NO3− ions, H+ ions, and Cl− ions. (Slight ionization of water is neglected in this case.) They freely bump into each other as they are mobile. However, this freely moving condition is inhibited by the interaction between Ag+ ions and Cl− ions.

According to the solubility table, AgCl is insoluble in water. When Ag+ ions and Cl− ions bump into each other, they strongly attract each other, in which the strong ionic force cannot be separated by the ion-dipole force between them and H2O molecules. As a result, AgCl evolves as a white solid.

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suppose 89.7 ml of a 0.150 m solution of na2so4 reacts with 121 ml of a 0.379 m solution of mgcl2 to produce mgso4 and nacl as shown.

Answers

In the given reaction, MgSO4 with a mass of 1.56 grams can be produced and the output of MgSO4 is 33.07%.

1. The whole, balanced chemical equation is as follows:

Na₂SO₄(aq)+MgCl₂(aq)⟶MgSO₄(s)+2NaCl(aq)

We are aware that the number of moles (n) in a liter of solution is known as the molarity (M).

The number of moles of Na2SO4 is calculated by Volume x Molarity.

Moles of Na2SO4 are = 0.150 ×0.089 moles

= 0.013 moles.

Moles of MgCl2 are =0.379×0.121

=0.046 moles.

It is evident that there are less Na2SO4 moles present.

Therefore, Na2SO4 will act as a limiting agent and control the reaction.

Mole ratio of Na2SO4 to MgSO4

MgSO4 has a mole mass of 0.013 moles.

As far as we know,

mass produced/molecular weight = mole

By substituting the values, molar mass of MgSO4 is 120 grams per mole, and 0.013 is the mass of Mg produced/120

1.56 grams of MgSO4 were produced in total.

2. Formula for percentage yield: (experimental mass divided by theoretical mass, multiplied by 100)

Theoretical mass = 1.56  grams

Experimental mass = 0.212 grams.

Percentage yield = 0.212/1.56×100

Percentage yield of MgSO₄ = 33.07%.

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Complete question: Suppose 87.1 mL of a 0.190 M solution of Na2SO4 reacts with 143 mL of a 0.311 M solution of MgCl2 to produce MgSO4 and NaCl as shown in the balanced reaction

Na2SO4(aq)+MgCl2(aq)⟶MgSO4(s)+2NaCl(aq)

1. Calculate the mass of MgSO4 that can be produced in the given reaction.

2. Only 0.212 g of MgSO4 are isolated after carrying out the reaction. Calculate the percent yield of MgSO4

the halogens, X2 Draw the molecule by placing atoms on the grid and connecting them with bonds. Include nonbonding electrons. Use X to indicate a halogen atom.

Answers

In a lewis structure of a molecule, we place the valance electrons of the bonded atoms around them.  Then the shared pair or bond pair electrons between the bonded atoms are joined and represented as a line.

whereas the nonbonding electrons called lone pairs are kept as a pair of dots around them. Now we know the valance electrons of any halogen is 7. So each halogen needs only 1 more electron to complete its octet. Hence on X2, each X-atom will share one of the electrons to form a single bond as in the image.

Halogens exist as simple molecules. Each molecule contains two halogen atoms joined by a single covalent bond. The table shows the color and physical state of chlorine, bromine, and iodine at room temperature. The word halogen means a salt-forming compound. All halogens have 7 electrons in their valence shell.

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what does the ph scale measure; what is ph in water

Answers

Answer:

The ph scale measures how acidic a substance is.

The ph level in water is about 7

Explanation:

Mutations can occur in sex cells or in body cells. in which cell type might a mutation be passed from generation to generation

Answers

Either cell type is susceptible to mutations. A mutation is called a germinal mutation if it occurs in a germ cell and affects a gene.

Is it possible to pass on sex cell mutations?

Germline genetic mutations are inheritable. The DNA is altered in reproductive cells in this kind of mutation (egg or sperm). The mutation is inherited because sperm and eggs are passed down from parents to their offspring.

Which mutations can be found in sex cells?

The transmission of germ-line mutations to an organism's progeny occurs during sexual reproduction and occurs in reproductive cells (sperm or eggs). Non-reproductive cells can develop somatic mutations; during mitosis, they are transferred to daughter cells but are not passed on to the offspring during sexual reproduction.

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A 8.00 L tank at 22.8 °C is filled with 6.88 g of sulfur hexafluoride gas and 2.33 g of dinitrogen monoxide gas. You can assume both gases behave as ideal gases under these conditions. Calculate the mole fraction and partial pressure of each gas, and the total pressure in the tank.

Answers

Mole fraction of SF6 is  0.081 and N₂O is  1.107 . Partial pressure of  SF6 is 0.126 atm and N₂O is  0.273 atm .

In chemistry, what does a mole fraction mean?

the proportion of the moles with one component to the total moles of all the components in a solutions or other mixture.

Briefing:

Mole fraction of each gas,

Sulfur hexafluoride molar mass = 146.1 g / mol) = SF6

moles  SF6 = 6.88 g x 1 / 146.1 = 0.047 moles

dinitrogen monoxide =  N₂O = 44.013 g/mol

moles  N₂O = 2.33 g  x 1 /44.013 = 0.53 moles

Total moles =  0.047 moles +  0.53 moles = 0.577 moles

Mole fraction  SF6 =  0.047  /  0.577 = 0.081

Mole fraction N₂O =  0.53 / 0.577 = 1.107

by using formula, we can determine the partial pressure for each gas

PV = nRT

P = pressure = ?

V = volume = 8.00 L

n = moles = 0.577 moles

R = gas constant = 0.0821 Latm/Kmol

T = temperature in K = 22.8 °C + 273.15 = 295.95 K

P = nRT/V = (0.577)(0.0821)(295.95) / 8.00

P = 1.75 atm = Total pressure

Partial pressure SF6 = 1.75 atm x 0.081 = 0.126 atm

Partial pressure N₂O = 1.75 atm x 1.107 = 0.273 atm

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A model of an atom shows eight electrons in rings that represent different energy levels. How many electrons are in each energy level?(1 point) Responses four in the first energy level, four in the second energy level four in the first energy level, four in the second energy level zero in the first energy level, eight in the second energy level zero in the first energy level, eight in the second energy level two in the first energy level, six in the second energy level two in the first energy level, six in the second energy level eight in the first energy level, zero in the second energy level eight in the first energy level, zero in the second energy level

Answers

The correct option is, two in the first energy level, six in the second energy level.

Define model of atom.

An atom is a fundamental unit of matter that cannot be disassembled chemically.

Depending on the energy of the electron, the orbital shells that an atom's electrons are arranged in are located at various levels within the structure of the atom. The initial energy level, or electron shell nearest to the atom's nucleus, is where electrons with the lowest energy can be found.

The following formula determines the maximum number of electrons that can be discovered at a specific energy level;

The number of electron = 2 × n²

Where;

n = The number of the different energy level

Therefore;

In the first energy when n = 1, the maximum number of electrons is provided as follows;

The number of electron = 2 × 1² = 2 electrons

In the second energy when n = 2, the maximum number of electrons is provided as follows;

The number of electron = 2 × 2² = 8 electrons

We have 2 electrons in the first energy level and the remaining 6 electrons in the second energy level because there are only 8 electrons in the atom.

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The rate constant, k, for a first-order reaction is equal to 0.00042s-¹. What is the half-life for the reaction?​

Answers

The half-life of a first-order reaction is the time it takes for the concentration of the reactant to decrease by half. The half-life of a first-order reaction is inversely proportional to the rate constant, k, for the reaction.

To calculate the half-life of a first-order reaction, you can use the equation:

half-life = ln(2) / k

In this equation, ln(2) is the natural logarithm of 2, and k is the rate constant for the reaction.

Plugging in the value for the rate constant, k gives:

half-life = ln(2) / 0.00042 s-1 = 1.609 s

Therefore, the half-life for the reaction is 1.609 s.

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B) State right (V) or wrong (x): 1. The internal energy in the cyclic process has constant value. 2. An adiabatic system is one which cannot transfer energy but transfer matter to and from its surrounding. 3. Heat of combustion could be used in calculation of the heat of formation. 4. An isochoric process takes place at constant concentration.​

Answers

Answer:

1. False. The internal energy of a system can vary during a cyclic process.

2. False. An adiabatic system is a system that does not exchange heat with its surroundings. It may still be able to transfer matter or energy in other ways.

3. True. The heat of combustion is the amount of heat produced when a substance is burned. It can be used to calculate the heat of formation, which is the heat absorbed or released when a substance is formed from its elements.

4. False. An isochoric process is a process that takes place at constant volume. It does not necessarily involve a change in concentration.

Explanation:

Select all of the statements that correctly describe an amphoteric molecule or ion.
It can act as either a base or an acid.
It contains at least one hydrogen atom.
It can undergo either an acid-base reaction or an oxidation-reduction reaction.
It contains at least one chlorine atom.
It contains at least one lone pair of electrons.
It can act as either a base or an acid.
It contains at least one hydrogen atom.
It contains at least one lone pair of electrons.

Answers

The correct statements about amphoteric molecule or ion are: It can act as either a base or an acid.

It contains at least one hydrogen atom.

It contains at least one lone pair of electrons.

What is an amphoteric molecule or ion?

An amphoteric (or amphiprotic) molecule is one that can function as both an acid and a base. Glycine is an example of an amphoteric amino acid. Base is the amino group (it can accept a proton).

Hydrogen ions can be repeatedly removed from an acid or repeatedly added to a base to reveal amphoteric compounds. Since NO2 is not an acid and does not contain any extra hydrogen ions, much alone extra hydrogen ions that cannot be eliminated, it is not amphoteric.

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Draw the structure of the straight chain hydrocarbon that produces the IR and mass spectrum given. For common IR absorptions see Tables 16.3.Hint: Take note of the characteristic IR peak at 2120 cm-1 and relate this to the size of the M-1 peak in the mass spectrum.100E 5021203311 2962040003000200015001000500Wavenumber (cm)

Answers

2-Methylbutane's mass spectrum. Pentane's isomer, 2-methylbutane, has the same molecular make-up as isomers do. In comparison to IR spectroscopy, the MS offers the distinct advantage that more structural data may be ascertained.

What is mass spectrum ?

Mass spectrometry can be used to determine the skeletal formula of a structural isomer of heptane butan-1-ol generated in The composition of another ester, an isomer of ethyl propanoate, which has a strong peak in its mass spectrum at m/z = 71. In mass spectrometry, ions are produced from a sample that will be examined. The process of ionizing these ions can either result in the production of the molecular ion M+. The majority of infrared spectra can be produced as a linear frequency absorbance spectrum.

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multi choice, choose one answer for each question4. Water is a polar solvent and hexane (C6H14) is a nonpolar solvent. Which of the following correctly describes the solubility of the solute?a. mineral oil, soluble in waterb. CCl4, soluble in waterc. CaCl2, soluble in hexaned. NaHCO3, soluble in watere. octane (C8H18), soluble in water5. Oil does not dissolve in water becausea. water is saturated.b. oil is polar.c. oil is nonpolar.d. water is nonpolar.e. oil is hydrated.6. In a saturated solution, the rate at which the solute dissolvesa. cannot be changed by changing the temperature of the solution.b. depends on the number of ions the solute dissociates into.c. equals the rate of crystallization of the solute.d. can be increased by cooling the solution.e. depends on the amount of material undissolved.

Answers

Hexane (C6H14) is a polar solvent, whereas the nonpolar solvent NaHCO3 is soluble in water.

Is it safe to ingest hexane?

Hexane is poisonous, and prolonged exposure can harm the nervous system. But it is not derived from food. People who work in oil refineries and other locations where hexane may leak into the air are more likely to become exposed to it.

Is hexane a cancer-causing substance?

There is no proof that n-hexane causes cancer in humans or animals. N-hexane has not been designated as carcinogenic by the EPA, the International Agency for Research on Cancer (IARC), or the Department of Health and Human Services (DHHS).

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which of the following agents blocks the body's ability to use oxygen and possesses an odor similar to almonds?

Answers

Agent that blocks the body's ability to use oxygen and possesses an odor similar to almonds is : hydrogen cyanide.

What is hydrogen cyanide?

Hydrogen cyanide is sometimes also called prussic acid. It is a chemical compound with the formula HCN ( structure H−C≡N ) and it is a colorless, extremely poisonous and flammable liquid.

Hydrogen cyanide is a colorless or pale-blue liquid or gas with a bitter, almond-like odor and it interferes with the body's use of oxygen and may also cause harm to the brain, heart, blood vessels, and lungs. Exposure can sometimes prove to be fatal and workers may be harmed from the exposure to hydrogen cyanide.

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a flexible container at an initial volume of 3.10 l3.10 l contains 7.51 mol7.51 mol of gas. more gas is then added to the container until it reaches a final volume of 13.7 l.13.7 l. assuming the pressure and temperature of the gas remain constant, calculate the number of moles of gas added to the container.

Answers

A flexible container with an initial volume of 3.10l can hold 21.32 moles in total. 7.51 mol of gas are present. The container is then filled with more gas until it has a total volume of 13.7 l.

When we measure atoms, we use a large quantity called the number of moles.

It is determined how many moles of a gas should be added to the container.

preliminary concentration = 7.51 moles

beginning moles - subsequent moles

computation of the final moles

7.51 moles in 3.10 litres

X moles = 11.9L

through cross-multiplication

11.9 L times 7.51 moles/3.10 L equals 28.83 moles.

Consequently, the amount of moles gained is equal to: 28.83 moles – 7.51 moles = 21.32 moles.

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The outer shell electrons in metals are not tightly bound to the nuclei of their atoms. They are free to roam throughout the material, moving from atom to atom. These materials are good ____. conductors insulators for nothing

Answers

The outer shell electrons in metals are not tightly bound to the nuclei of their atoms. They are free to roam throughout the material, moving from atom to atom. These materials are good conductors.

A conductors can be defined as the substances and the materials that will allow flow of the electricity through it.  in the conductors the electrons or the ions can be easily move from the one atom to another atom. in the case of metals the outer shell valence electrons are loosely bounded to the nucleus. the electrons are free to move from in the material that is from the one atom to the other atom.

Thus, the metals are the good conductors of the electricity.

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What do noble gases electron configuration have in common?; What do the elements neon helium argon and xenon have in common?; What is the electronic configuration of helium, neon and argon?; What do the electron configurations of neon argon krypton xenon and radon have in common?

Answers

Noble gases have full outer shells valence electrons. Helium, argon and xenon have p orbitals. Neon, argon, krypton and xenon are all noble gases and thus have a full outer shell.

Noble gases are the elements that belong respectively to group 18 . since they are the very last group on the periodic table, they have full outer shells of valence electrons. Helium, neon, and argon are all noble gases located in the last group that is 18th group of the periodic table. All noble gases have p orbitals. Electronic configuration for Neon is [He] 2s2 2p6. The configuration for Helium [He] is 1s2. and of argon, there are 8 valence electrons in this element and hence, has fully filled electronic configuration and is a stable element. This means that their outermost s and p orbitals are completely filled.

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liquid benzene (c6h6) reacts with gaseous oxygen to form carbon dioxide and liquid water. chemical equations

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Liquid benzene (c6h6) reacts with gaseous oxygen to form carbon dioxide and liquid water, equation can be written as :

2C6H6 + 15O ---> 12 Co2 + 6H2O

What do you know about benzene?

Benzene is a colorless/ light-yellow chemical (liquid) at room temperature and is produced by both natural and man-made processes.​ It is used as a solvent in the chemical and pharmaceutical industries, as a starting material and as intermediate in the synthesis of other chemicals, and in gasoline.

The combustion of one mole of benzene, C6H6(1), in oxygen generates 3.268* 103 kJ of heat and the products of the reaction are carbon dioxide and water.

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the lattice energy for nacl crystals is equal to -787 kj/mol. the enthalpies of solvation for na and cl- ions are equal to -424 kj/mol and -359 kj/mol respectively. for the process of making the nacl aqueous solution, the q value (the heat exchanged between the system i.e. nacl and the surroundings i.e. water) will have a negative sign.

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the lattice energy for nacl crystals is equal to -787 kj/mol. the enthalpies of solvation for na and cl- ions are equal to -424 kj/mol and -359 kj/mol respectively. for the process of making the nacl aqueous solution, the q value will have a positive sign not negative sign.

The energy required to transform one mole of such an ionic solid into gases ionic constituents is described as lattice energy. It also can be described as the quantity of energy required to separate one mole of an anion crystal into individual atoms in a vacuum to use an endothermic process. The power of the bond among positive and negative ions in an anion is thus determined by the fees on the ions as well as the distance between both the facilities of the ions when they bundle together just to form a crystal. The liquid in an aqueous is liquid water. Solute (disintegrated) protons and compounds have been enclosed by water particles and integrated into the water's network of bonds.

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