air at 30,000 feet is at a temperature of -35.0 c. a sample of air was collected and the mixture is 75.56% nitrogen, 23.15% oxygen and 1.29% argon (percentages are by mass). if .594 moles of air are captured in a 45.0 l container from a plane flying at 30000 feet:

Answers

Answer 1

The 0.594 moles of the air were collected from plane flying at the altitude of the height 30,000 feet and is at the temperature of - 35 °C.

The total moles of the air in the container = 45.0 L × (1.00 mol/22.4 L)

                                                                      = 2.01 mol.

The sample contains the  75.56% nitrogen, 23.15% oxygen, and 1.29% argon, the moles of each are:

Moles of Nitrogen = 0.7556 × 2.01 mol

                               = 1.52 mol

Moles of Oxygen = 0.2315 × 2.01 mol

                             = 0.46 mol

Moles of Argon = 0.0129 × 2.01 mol

                         = 0.03 mol

The difference between the total number moles and the number moles of the nitrogen, the oxygen, and the argon:

Air = 2.01 mol - 1.52 mol - 0.46 mol - 0.03 mol

     = 0.594 mol

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Related Questions

the relationship between moles of a solute dissolved and the moles of solute particles in solution is expressed as the van't hoff factor, i i, where: i =___

Answers

i = moles of solute in solution/moles of solute dissolved.

where i is called the van't hoff factor.

In a solution, solute ion association results in values less than 1.

In a solution, solute particles that interact together produce values greater than 1.

What is van't hoff factor?

The ratio of the final moles after dissociation or association to the initial moles before to dissociation or association of an electrolyte in a solution is known as the Van't Hoff factor. The number of particles in the solute is a characteristic that is independent to the concentration of the solution.

The Van't Hoff factor illustrates how solutes affect the colligative properties of the solution. The Van't Hoff factor, which is produced when a substance is combined with its mass concentration, is the concentration ratio of the resulting particles.

The Van't Hoff factor's application in indicating the colligative properties is a significant attribute.

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The relationship between moles of a solute dissolved and the moles of solute is expressed as the van't hoff factor, i where i = 1 + α(n – 1)

Van’t Hoff factor is defined as the the number of moles of particles formed in solution per mole of solute. It is the property of the solute and expressed as "i". It does not depend on concentration for an ideal solution. The van’t Hoff factor of a real solution may be lower than the calculated value for a real solution. At high concentration values or when the solute ions associate with one another. The van’t Hoff factor is a positive number. It is not always an integer value. It is equal to 1 for a solute that does not dissociate into ions. It is greater than 1 for most salts and acids and less than 1 for solutes that form associations when dissolved.

Where, i = 1 + α(n – 1)

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select all statements that correctly describe the mechanism of the reduction of acid chlorides and esters with a metal-hydride reducing agent.

Answers

The statements that correctly describe the mechanism of the reduction of acid chlorides and esters with a metal-hydride reducing agent.

An aldehyde is produced in Step 2 of the mechanism. In Step 2 the π bond is re-formed. In Step 2 of ester reduction, an alkoxide leaving group is expelled from the tetrahedral intermediate.

Definition of Reduction

Reduction is a reaction in which the oxidation number decreases and electrons gain. It can be said that reduction is a reaction in which a substance loses oxygen.

Definition of Oxidation

Oxidation is a reaction that has an increase in oxidation number and a decrease in electrons. It can be said that oxidation is a reaction in which a substance binds oxygen.

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London dispersion forces or simply dispersion forces are the______ intermolecular force. It is an attractive force that arises from surrounding_____ dipole moments in_________ molecules or species These_________ dipole moments arise when there are instantaneous deviations in the electron clouds of the________ species. Surrounding molecules are influenced by these______ dipole moments and a chain reaction results in which subsequent weak; dipole-induced dipole interactions are created: These cumulative dipole- induced dipole interactions create the attractive dispersion forces. Dispersion forces are the forces that make_______ substances condense to liquids and freeze into solids as temperatures decrease. Your answer choices are: weakest; temporary and nonpolar: Several of your choices are used more than once_

Answers

"London dispersion forces or simply dispersion forces are the weakest intermolecular force.  It is an attractive force that arises from surrounding temporary dipole moments in nonpolar molecules or species.  These temporary dipole moments arise when there are instantaneous deviations in the electron clouds of the nonpolar species. Surrounding molecules are influenced by these temporary dipole moments and a chain reaction results in which subsequent weak; dipole-induced dipole interactions are created: These cumulative dipole-induced dipole interactions create the attractive dispersion forces. Dispersion forces are the forces that make nonpolar substances condense to liquids and freeze into solids as temperatures decrease".

London dispersion forces, also known as dispersion forces, are the weakest of the intermolecular forces. They are an attractive force that arises between all types of molecules, including nonpolar molecules, as a result of temporary fluctuations in the electron distribution. These fluctuations lead to the creation of temporary dipoles in the molecule, which then interact with neighboring molecules and produce an attractive force. The strength of the London dispersion forces increases as the size of the molecule increases, and as a result, they play a significant role in determining the properties of many materials, such as the boiling and melting points of nonpolar substances.

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What types of bonds are present in an ionic compound that contains a polyatomic ion?

Answers

Answer:

In Explanation

Explanation:

An ionic compound that contains a polyatomic ion is a chemical compound made up of two or more ions that are held together by ionic bonds. Ionic bonds form when one or more electrons are transferred from one atom to another, creating ions with a positive or negative charge. In the case of an ionic compound that contains a polyatomic ion, the compound will contain at least one ion made up of more than one atom. These ions are called polyatomic ions and they have a net electrical charge. The ionic compound will be held together by the electrostatic attraction between the positive and negative ions.

Plasma is an electrically charged state of matter that is created from superheating a gas. In a bottle containing plasma, there are 100 negatively charged ions and 96 positively charged ions. What is the charge of the bottle of plasma?
a. +4 Charge
b. +196 Charge
c. -196 Charge
d. -4 Charge

Answers

Answer:

-4

Explanation:

The charge of the bottle of plasma would be -4, because 100 negatively charged ions (-) have a total charge of -100, and 96 positively charged ions (+) have a total charge of 96. When you subtract -100 from 96, you get -4.

If an electron emits 3 eV of energy, what is the corresponding wavelength of the emitted photon? (Note: 1 eV = 1.60 x 10-19 J, h = 6.626 x 10-34 J x s)

Answers

If an electron emits 3 eV of energy, what is the corresponding wavelength of the emitted photon will be 4.12 × 10 ^-7.

The distance between corresponding points (adjacent crests) in adjoining cycles of such a waveform signal carried in space or along a wire is defined as the wavelength. This length is typically defined in wireless communication systems as meters (m), centimeters (cm), or millimetres (mm) (mm).

E = hc/ wavelength...(i)

It is given that,

E = ev

h = 6.626 x 10-34 J x s

Putting the values of given data in above equation.

Wavelength = hc/E

Wavelength = 6.626 x 10-34 J x s ×3× 10^8  /3 ×1 .60 x 10-19 J,

Wavelength = 19.8 × 10^-26 /4.8 x 10-19 J

Wavelength = 4.12 × 10 ^-7.

Therefore, the wavelength will be 4.12 × 10 ^-7.

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According to the Costa Rica Rainforests Outward Bound School, the rain forests of the
world are disappearing at a rate of 80 acres per minute, day and night. In December 2000,
53,694,993 acres of rain forest were destroyed. Which of the following facts about rain
forests illustrates the negative effect of their destruction on the environment?
A. Trees from the rain forest are used to supply the growing population with lumber for
homes and furniture.
B. The release of carbon dioxide into the air during the burning of the rain forests adds
to the greenhouse effect.
C. The soil of the rain forest is low in nutrients, so farmers cannot reuse the same land
every year.
D. Ranchers clear and use the land for pastures for their cattle because land is
inexpensive.
E. Almost half of the tropical rain forest deforestation occurs in South America.

Answers

Answer:

B. The release of carbon dioxide into the air during the burning of the rain forests adds to the greenhouse effect.

The destruction of rainforests has a negative impact on the environment, one of which is the release of carbon dioxide into the air during the burning of the rainforests, contributing to the greenhouse effect, which leads to global warming, and climate change. This is a significant negative effect of the destruction of the rainforests.

A tank holds 52.9 cm3 of water. What is the volume in in3?

Answers

The volume of the tank that holds 52.9cm³ of water in cubic inches is 3.23 in³.

How to calculate volume?

Volume refers to a three-dimensional measure of space that comprises a length, a width and a height.

Volume is measured in units of cubic centimeters in metric, cubic inches or cubic feet in English measurement.

According to this question, a tank holds 52.9cm³ of water. This volume can be converted to cubic inches as follows:

1 cubic centimetre (cm³) = 0.061 cubic inch (in³)

Hence, 3.23 in³ is the volume in cubic inches.

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Photochemical smog forms when ________ and ________ are trapped by a thermalinversion and ozone, nitrogen dioxide and PAN form.A) hydrocarbons; leadB) volatile organic compounds; oxides of nitrogenC) carbon monoxide; sulfur dioxideD) carbon dioxide; lead

Answers

Photochemical smog forms when (B) volatile organic compounds and oxides of nitrogen are trapped by a thermal inversion and ozone, nitrogen dioxide, and PAN.

When sunlight interacts with nitrogen oxides and volatile organic compounds (VOCs), a mixture of pollutants known as photochemical smog is produced. This results in the formation of a brown haze that hangs over urban areas. Since there is more sunshine in the summer, this phenomenon tends to happen more frequently during that time of year. Primary sources of pollution.

When sunlight interacts with nitrogen oxides and volatile organic compounds (VOCs), a mixture of pollutants known as photochemical smog is produced. This results in the formation of a brown haze that hangs over urban areas.

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for the problem listed in part b), what is the sodium carbonate concentration when the solution is prepared. g

Answers

500 mL of water contain 1.00 moles of sodium carbonate. As opposed to moles per 500 mL, moles per liter is a more practical way to represent concentration.

What is the sodium carbonate?Na2CO3 is the chemical formula for sodium carbonate, a diazonium salt of carbonic acid. Furthermore, it goes by the names soda crystals, soda ash, and washing soda. This inorganic substance may dissolve in water and produces sodium hydroxide and carbonic acid when it does. It has a white powdery appearance and no odor when it is pure.Titration with standard hydrochloric acid using methyl orange as the indicator yields the following equation: Na2CO3 + 2HCl = 2NaCl + H2O + CO2. This yields the Na2CO3 content of the given sample. Na2CO3 has a molecular weight that is half that of its corresponding weight (M). It follows that M/2 g of Na2CO3 is equivalent to 1000 ml of 1 N HCl.

Example:

After dissolving the sodium carbonate, the volumetric flask was filled to the 500 mL line.One mole of sodium carbonate per 500 mL is the concentration.Moles per liter are a more practical unit of measurement for concentration than moles per 500 mL.

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What is the density of the cake in grams/cm3 if it is in a 9.0 X 13 inch pan and in an inch tall and weighs 3.4 pounds?

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The density of the cake in grams/cm3 if it is in a 9.0 X 13 inch pan and in an inch tall and weighs 3.4 pounds is 5.189g/cm³.

What is Density?

This is a term which is referred to as the mass of a unit volume of a material substance. The formula for density is d = M/V, where d is density, M is mass, and V is volume.

The mass is 3.4 pounds which must be converted to grams. One pound is equal to 453.592 grams therefore  3.4pound = 3.4 pounds × 453.592 = 1542.2g.

9.0 X 13 inch pan and in an inch tall  therefore the volume is 117inch³ when converted to cm will be  117inch³ × 2.54 = 297.18cm³ .

Density = mass/volume

      = 1542.2g / 297.18cm³  = 5.189g/cm³.

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According to the law of conservation of mass, which statement about chemical reactions is always true?

Answers

Answer: The total mass of the products must be equal to the total mass of the reactants

Explanation:

Ionic bonds

Need help on 9-11

Answers

BaSO4 is an ionic compound as it contains SO4 polyatomic ions in it.

Basically BaSO4 molecule does not have its own original shape as it is only an ionic compound and there is no bonding between Ba and SO4 ions, there is just sharing of electrons within the molecule.

Thus BaSO4 lewis structure does not have any shape.

What is the Lewis structure?

Lewis structure is a very simplified representation of the valence electrons in a molecule. It is used to show how electrons are arranged around individual atoms in a molecule. Electrons are shown as "dots" or for connecting electrons as a line between two atoms.

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Systemic lupus erythematosus, or lupus, affects a few million people in the United States.
Most of these people are young women. Lupus is a chronic, autoimmune disease that
affects connective tissue in any part of the body. An attack can damage organs and the
nervous system. What conclusion can be drawn about lupus?
A. Most victims of lupus are middle-aged women.
B. Hormones most likely are unrelated to the lupus disease.
C. Lupus is easy for a physician to diagnose.
D. Lupus can affect almost every system of the body.
E. It is uncommon to have skin problems with lupus.

Answers

The conclusion that can be drawn about lupus is that: Lupus can affect almost every system of the body. Option D. is the correct answer.

What is Lupus (SLE)?

This refers to a disease that happens when your body's immune system attacks your own tissues and organs (autoimmune disease).

Lupus (SLE) can affect the following body parts: joints, skin, kidneys, blood cells, brain, heart and lungs.

Symptoms differ from person to person but can include fatigue, joint pain, rash and fever. These can get worse from time to time (flare up) and then improve.

Lupus has no cure. Current treatments are based on improving quality of life by controlling symptoms and minimizing flare-ups. This starts with lifestyle modifications, including sun protection and diet. Also, disease management includes medication such as anti-inflammatories and steroids.

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An electromagnet can be made by wrapping wire around which object?

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By encircling an iron core with wire, an electromagnet can be created. The required magnetic field is increased when the core is constructed of a ferromagnetic material like iron.

An electromagnet is what?

By running electricity through the wire that is twisted around an iron core, a transient magnet is created.

Ferromagnetic materials are those that, even in the absence of an external magnetic field, exhibit spontaneous net magnetization at the atomic level.

How do magnetic fields work?

The area where the force of magnetism acts around a magnetic material or a moving electric charge is known as the magnetic field, which is a vector.

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How many atoms in 56g of nitrogen gas

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56g of nitrogen gas has 4 moles of the nitrogen atom.

How can you figure out how many moles of nitrogen gas there are?

N2 has a molar mass of 28.014 g/mol.

n = m/M,

where m = molar mass in g/mol,

n = moles, and

m = mass in grams.

M is a fraction, thus you can divide it by multiplying by the reciprocal of that fraction.

To one significant figure, n = 1 g N2 (1 mol N2/28.014 g N2) = 0.04 mol N2.

How many atoms make up a gaseous nitrogen?

Two nitrogen atoms are securely linked together to form the chemical molecule known as molecular nitrogen (N2).

At normal temperatures and pressures, molecular nitrogen is a colorless, odorless, tasteless, and inert gas.

Given is the expression for the number of moles formula.

The formula for moles is.

Mass of material / Mass of one mole equals the number of moles.

95 / 86.94 equals the number of moles.

In response to the query:

56g is the mass of nitrogen gas.

Nitrogen has a molecular weight of 14.

Mass / molecular mass Equals number of moles.

= 56/14.

= 4 moles.

Therefore, 56g of nitrogen gas has 4 moles of the nitrogen atom.

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How many hydrogen atoms are in : (NH,)CO,?

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NH2CO is the chemical compound known as Formamide, it is a molecule that consists of one nitrogen atom, two hydrogen atoms, one carbon atom, and one oxygen atom. Therefore, the number of hydrogen atoms in NH2CO is 2.

In each compound below, two protons are color-coded (red and blue). Determine which of the two protons is more acidic, and explain your choice: O The red proton is more acidic because its conjugate base is more stable, with a negative charge on the less electronegative carbon atom. O The red proton is more acidic because its conjugate base is less stable, with a negative charge on the less electronegative carbon atomO The blue proton is more acidic because its conjugate base is more stable, with a negative charge on the more electronegative oxygen atom. O The blue proton is more acidic because its conjugate base is less stable, with a negative charge on the more electronegative oxygen atom

Answers

"The blue proton is more acidic because its conjugate base is less stable, with a negative charge on the more electronegative oxygen atom." is the correct choice

The acidity of a proton depends on the stability of its conjugate base. The more stable the conjugate base, the less acidic the proton.

In this case, the blue proton is bonded to an oxygen atom, which is more electronegative than the carbon atom to which the red proton is bonded.

When the blue proton is removed, the resulting negative charge is delocalized onto the oxygen atom, which is more electronegative, therefore the conjugate base is less stable, making the blue proton more acidic.

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when a system is at equilibrium, the reaction enter the correct word or phrase: is equal the equilibrium constant.

Answers

When a chemical system is in equilibrium, it signifies that the forward and reverse reactions are occurring at the same pace. This implies that the concentration of reactants and products.

remains constant over time. The equilibrium constant (Kc) is the ratio of the concentration of products to their stoichiometric coefficients at equilibrium to the concentration of reactants to their stoichiometric coefficients. It is a constant measure of the relative intensity of forward and reverse reactions at a particular temperature and pressure. At equilibrium, the forward reaction rate equals the reverse reaction rate, ensuring that the concentration of reactants and products stays constant. when a system is at equilibrium, the reaction enter the correct word or phrase: is equal the equilibrium constant. The system is said to be in this state.The forward and reverse reflexes are continuously balanced in a condition of dynamic equilibrium.

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Categorize each gas phase reaction with the expected volume change when the absolute temperature is doubled. 3A + B rightarrow A_ B A + B_ rightarrow AB_ 2A_ + 3B_ rightarrow 2AB_ 2AB + B_ rightarrow 2AB_ 2AB_ rightarrow A_ + 2B_ A_ + B_ rightarrow 2AB Volume stays the same Volume doubles Volume triples Some other volume change occurs

Answers

Each gas phase reaction is categorized according to the volume present before and after the reaction.

Gas-phase reactions can be defined as the intramolecular or intermolecular reactions that takes place between different phases of gas. Intramolecular reactions are defined as the reactions which involves decomposition of precursor molecules into activated species, and these species are further involved in the CVD process.

When the volume stays the same the gas phase reaction is given as,

A + B₂ → AB₂

When the volume is doubled the gas phase reaction is given as,

A₂ + B₂ → 2AB

When the volume is tripled the gas phase reaction is given as,

2AB₂ → A₂ + 2B₂

At some other volume changes different gas phase reactions are as follows,

2AB + B₂ → 2AB₂

2A₂ + 3B₂ → 2AB₃

3A + B → A₃B

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What is the symbolic expression for the equilibrium constant for the reaction: 2 C2H6(g) + 7 O2(g) ⇌ 4 CO2(g) + 6 H2O(g)?

Answers

Considering the definition of equilibrium constant, the equilibrium molar the symbolic expression for the equilibrium constant is  ([tex][CO_{2} ]^{4}[/tex]×[tex][H_{2} O]^{6}[/tex])÷ ([tex][C_{2}H_{6} ]^{2}[/tex]×[tex][O_{2} ]^{7}[/tex])

Equilibrium constant

Equilibrium is a state of a reactant system in which no changes are observed as time passes, despite the fact that the substances present continue to react with each other.

The concentration of reactants and products at equilibrium is related by the equilibrium constant Kc. Its value in a chemical reaction depends on the temperature and the expression of a reaction aA + bB ⇄ cC + dD is

Kc= ([tex][C]^{c}[/tex]×[tex][D]^{d}[/tex])÷ ([tex][A]^{a}[/tex]×[tex][B]^{b}[/tex])

That is, the constant Kc is equal to the multiplication of the concentrations of the products raised to their stoichiometric coefficients by the multiplication of the concentrations of the reactants also raised to their stoichiometric coefficients.

Symbolic expression for the equilibrium constant in this case

The balanced reaction is:

2 C₂H₆(g) + 7 O₂(g) ⇆ 4 CO₂(g) + 6 H₂O(g)

The constant Kc can be expressed as:

Kc= ([tex][CO_{2} ]^{4}[/tex]×[tex][H_{2} O]^{6}[/tex])÷ ([tex][C_{2}H_{6} ]^{2}[/tex]×[tex][O_{2} ]^{7}[/tex])

Finally, the equilibrium molar concentration is  ([tex][CO_{2} ]^{4}[/tex]×[tex][H_{2} O]^{6}[/tex])÷ ([tex][C_{2}H_{6} ]^{2}[/tex]×[tex][O_{2} ]^{7}[/tex])

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when disposable gloves provide limited chemical protection, which of the fololowing are additional best practices

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Disposable gloves are ones that you use only once and then discard. They can safeguard both the individual you're caring for and your health.

They aid in preventing the transfer of disease and germs to both you and the other person.

When handling bodily fluids such as saliva, blood, urine, or stool from a loved one, use gloves. And when washing a loved one, some individuals wear gloves. Additionally, gloves can be worn when administering immunizations and applying medications to the skin.

Gloves won't stop you from sticking something sharp into your flesh. Body fluids can spread illness, therefore gloves can assist. However, if there are instances when you decide against using gloves or don't have any, keep your hands as sanitized as you can.

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Answer:

- Changing frequently, especially between tasks

- Hand washing each time you remove your gloves

- Using each pair just once

1 . 6.11 mol SF6 to L at STP
2. 16 mol bromine monochloride to L at STP
3. 30.3 g magnesium oxide to mol
4. 17.4 mol Mn2(Cr2O7)3 to g
5. 1.71 mol Cr2(SO4)3

pls help me

Answers

The number of molecules in 1.71  moles of magnesium oxide is 0.56.02310 23 =3.011510 23.

What amount of molecules are there?

Avogadro's number (6.022140857 1023) states that all substances have exactly the same number of molecules in a mole.

Determine the substance's molecular weight for one mole in order to calculate the necessary number of molecules. Next, divide the molar mass value by the molecular mass, and multiply the result by the Avogadro constant.

17.4 mol Mn2(Cr2O7)3 to g

6.11 mol SF6 to L at STP

=1L -7.466L⟶

Avogadro calculated that a mole of magnesium oxide comprises 6.023 x 6.11 molecules.

The number of molecules in 1.71  moles of magnesium oxide is 0.56.02310 23 =3.011510 23.

The complete question is Calculate the number of molecules6.11 mol SF6 to L at STP

2. 16 mol bromine monochloride to L at STP

3. 30.3 g magnesium oxide to mol

4. 17.4 mol Mn2(Cr2O7)3 to g

5. 1.71 mol Cr2(SO4)3

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How many electronically non-equivalent kinds of protons, and how many kinds of carbons are present in the following compound?
(Don't forget that cyclohexane rings can undergo ring flips).
a. Kinds of protons : ______
b. Kinds of carbons : ______

Answers

The following compound contains protons and carbons that are not electronically equivalent. Proton types 6 and carbon types 6.

A proton is a stable subatomic particle with a positive charge equal to one electron charge and a rest mass of 1.67262 1027 kg, or 1,836 times the mass of an electron.

Except for the hydrogen nucleus, all atomic nuclei are composed of protons and neutrons, which are electrically neutral particles. Every chemical element's nucleus contains the same number of protons. This number specifies an element's atomic number and determines its position in the periodic table. An atom is electrically neutral when the number of protons in its nucleus equals the number of electrons orbiting it.

The proton was discovered during the early stages of atomic structure research.

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calculate the concentration of pb2 (in m) when the cell reaches equilibrium, assuming that the volume of solution in both half cells are the same

Answers

You need to know the following details to determine the concentration of Pb2+ when the cell achieves equilibrium:the two half-cells' original Pb2+ concentrationsthe half-electrode cell's potential for Pb2+ and lead

A chemical system is said to be in equilibrium when the forward and reverse reaction rates are equal. The concentrations of the reactants and products are constant at equilibrium. When there is no net change in the concentration of reactants or products over time, a chemical system is said to be in equilibrium.When the rates of the forward and reverse processes are equal and the concentrations of reactants and products are constant, a closed system has reached equilibrium. Equilibrium is attained in an open system when the rate of reactant input equals the rate of product outflow.Dynamic equilibrium and thermodynamic equilibrium are the two different kinds of equilibrium. Dynamic balance

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describe an example of temperature causing a change in the size of matter.

Answers

Change in temperature when quicklime reacts with water.

What's an example of a temperature change?

When ice cubes are separated from the freezer and conducted to room temperature, they turn into a liquid. This temperature is the boiling point of water. Heat makes water molecules move fast. Cooling air causes water vapor to change to a liquid. Water changes rapidly into a gas when water is heated to a temperature of 100 degrees Celsius or 212 degrees Fahrenheit.

When energy is free in an exothermic reaction, the temperature of the reaction mixture increases. When energy is soal up in an endothermic reaction, the temperature decreases.

So we can conclude that Some chemical reactions are distinguished by changes in temperature.

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According to the passage, which of the following compounds can the worker use to catalyze the cleavage of a triglyceride (base-catalysis)?
A) HCl (aq)
B) NaCl (aq)
C) NaOH (aq)
D) Na2SO4 (aq)

Answers

Option C: According to the passage, base-catalyzed triglyceride (ester) cleavage occurs. NaCl and Na2SO4 are salted, while HCl is an acid. Only NaOH is a base that can catalyze ester saponification.

In chemistry, an ester is a compound derived from an acid (organic or inorganic) in which at least one acidic hydrogen atom of that acid (H) is replaced by an organyl group (R). A carboxylic acid and alcohol substitution reaction is an example of ester formation. Glycerides are fatty acid esters of glycerol; they are important in biology because they are one of the main classes of lipids and make up the majority of animal fats and vegetable oils. Esters can be formed from oxoacids (for example, acetic acid, orthocarbonic acid, sulfuric acid, perchloric acid, nitric acid, and xanthic acid esters), but also from acids that do not contain oxygen (e.g. esters of thiocyanic acid, hydrogen chloride, trithiocarbonic acid, tricyanomethane).

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A solution contains both iron(II) and iron(III) ions. A 50.00-mL sample of the solution is titrated with 35.0 mL of 0.0280 M KMnO4, which oxidizes Fe2+ to Fe3+. The permanganate ion is reduced to manganese(II) ion. The equation for this reaction is

Answers

The equation for this reaction is

MnO4-(aq)+5Fe2+ (aq) +8H+ → Mn2+(aq)+5Fe3+(aq)+4H20

Concentration of Fe2+ in sample is 98 * 10 - 3 mole/L.

Concentration of Fe3+ in sample is 36.4×10-3 mole/L

Volume of sample = 50.0 mL

Volume of KMnO4 = 35.0 mL

Molarity of KMnO4 = 0.0280M

2MnO4-(aq) +8H+(aq) + 5Fe * 2 + (aq) Mn2+ (aq) + 5Fe * 3 + (aq) +4H20

2Fe3+(aq)+Zn(s) → 2Fe2+(aq)+Zn2+(aq)

The resulting solution titrated witH:

Volume of KMnO4 = 48.0 mL

Molarity of KMnO4 = 0.0280 M

The given reaction is:

2Mn) 4 - (aq) + 8H +(aq) + 5Fe * 2 + (aq) Mn2+ (aq) + 5Fe * 3 + (aq) +4H20

Divide the above redox reaction into two half reactions that is oxidation half reaction and reduction

Oxidation Half reaction:

Fe2+(aq) → Fe3+(aq)

Reduction half reaction:

MnO4-(aq) → Mn2+(aq) -

Assign oxidation states to each element in the above reactions.

Oxidation Half reaction:

Fe2+(aq) → Fe3+(aq)

Reduction half reaction: Mn+704--2(aq) → Mn2++2(aq) Balance the elements except oxygen.

Oxidation Half reaction:

Fe2+(aq) → Fe3+(aq)

Reduction half reaction:

Mn+704--2(aq) → Mn2++2(aq)

Now, add number of electrons (required) to that side of reaction where

reduction occurs.

Oxidation Half reaction:

Fe2+(aq) → Fe3+(aq)+e-

Reduction half reaction:

Mn+704--2(aq)+5e- +8H+ → Mn2++2(aq)

Balance the hydrogen and oxygen atoms by adding water molecules.

Oxidation Half reaction:

Fe2+(aq) → Fe3+(aq)+e-

Reduction half reaction:

Mn+704--2(aq)+5e- +8H+ → Mn2++2(aq)+4H20

Multiply the oxidation half reaction with 5 to balance the number of electrons in both reactions.

Oxidation Half reaction:

5Fe2+(aq) → 5Fe3+(aq)+5e- -

Reduction half reaction: Mn+704--2(aq)+5e- Now, add both reactions.

+8H+ → Mn2++2(aq)+4H20

Mn+704--2(aq)+5e- +8H+ → Mn2++2(aq)+4H20 5Fe2+(aq) → 5Fe3+(aq)+5e-

MnO4-(aq)+5Fe2+ (aq) +8H+ → Mn2+(aq)+5Fe3+(aq)+4H20

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I need it asappp...

a. sky. diver. that jumps from a plane falls down. towards the ground. when he. opens his parachute he will slow down explain the. forces that. are acting. on it

Answers

The forces that act on the parachute are;

UpthrustWeight and Drag forceWhat are the forces that act on the parachute?

We know that force is a vector, as such, the direction of the force ie very important. We ought to know that the force that acts on the parachute is such that would be able to lower its speed.

There are three forces that are acting on the parachute and they are;

1) Weight of the parachute

2) Upthrust on the parachute

3) Drag force on the parachute

The first and last forces reduces the speed of the parachute.

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A student removes a chemical sample from a reagent bottle to be used in an experiment. What should he do with any excess chemical remaining from this sample after the experiment is complete?
Select one:
Check and see if anyone else can use the chemical. If not, discard in the proper waste container.
Conduct a second trial of the experiment with the excess chemical.
Discard the chemical down the sink under running water.
Clean a spatula thoroughly, then use it to add the chemical back into the reagent bottle.

Answers

The correct statement from the given option is as follows : Check and see if anyone else can use the chemical. If not, discard in the proper waste container.

A student removes the chemical sample from the reagent bottle to used in an experiment. He should do with any excess chemical that is remaining from that sample after the experiment is complete is he should Check and see if anyone else can use the chemical. If not, discard in the proper waste container.

The remaining chemical can not return to the bottle because , if the student return the this leftover sample, than it can contaminate the entire sample store in the container.

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