Of the following, only _____ is impossible for an ideal gas. a. V1/T1 = V2/T2 b. V1/V2 = T1/T2 = 0 c. V1/T1 = V2/T2 d.V1/v2 = T1/T2 e.V2=T2/T1 X V1

Answers

Answer 1

Only Option A, V1/T1 = V2/T2 is impossible for an ideal gas.

Ideal gas, sometimes known as a perfect gas, is a gas that physically complies with the ideal, or general, gas law, a particular idealized relationship between pressure, volume, and temperature. This certain group of gases has a unique set of properties. Ideal gases are considered to occupy negligible volume, and their molecules have no intermolecular forces of attraction.

Charles' Law can be expressed as:

V1/T1 = V2/T2, where volume = V and temperature = T of an ideal gas at constant pressure.

Only option A is not equivalent to Charles' Law expression. The remaining choices all rearrange to the original equation.

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Related Questions

H
Methane
Н
Н
н
How many lone pair of electrons does methane

Answers

Answer:

Methane has no lone pairs of electrons.

Explanation:

Methane does not have any lone pairs because it is a symmetrical molecule with four single bonds. Each of the four hydrogen atoms is bonded to the central carbon atom, and there are no unshared electron pairs.

A cylinder of helium gas takes up 22.4 liters of space at stp. How many atoms of helium are in the cylinder?

Answers

If a cylinder of helium gas takes up 22.4 liters of space at STP, then there are 6.022 x 10²³ atoms of helium in the cylinder at STP.

At STP (standard temperature and pressure), the volume of one mole of any gas is 22.4 liters. Helium is a monatomic gas, which means that each helium atom exists as a separate entity, rather than being bound up in a molecule with other atoms.

Therefore, one mole of helium gas contains 6.022 x 10²³ helium atoms. Since the cylinder contains 22.4 liters of helium gas at STP, it must contain one mole of helium atoms, which means that there are 6.022 x 10²³ atoms of helium in the cylinder.

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which law implies that the volume of a gas is directly proportional to the number of moles of the gas?

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The law implies that the volume of a gas is directly proportional to the number of moles of the gas is the Avogadro's law.

According to the Avogadro’s law, at the constant temperature and the pressure, the volume of all gases constitutes the equal number of the molecules. This means that in the unchanged conditions of the temperature and the pressure the volume of the gas is directly proportional to the number of the molecules of that gas.

Thus, the Avogadro's law states that the volume of the gas is directly proportional to the number of the moles of the gas.

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How do you write copper II hydroxide?

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The formula for copper II hydroxide is Cu(OH)2, which indicates one copper atom, two oxygen atoms, and two hydrogen atoms.

Copper II hydroxide is a synthetic compound made out of copper, oxygen, and hydrogen. It is in many cases utilized as a forerunner in the blend of other copper compounds. The right method for composing copper II hydroxide is Cu(OH)2. This equation shows that every particle of copper II hydroxide contains one copper molecule, two oxygen iotas, and two hydrogen iotas. The Roman numeral II shows that the copper molecule in the compound has a charge of +2. The enclosures and the addendum 2 demonstrate that there are two hydroxide particles in the compound, each comprising of one oxygen molecule and one hydrogen atom.

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Describe how you think rock outcrops and exposures in southwestern U.S.A would look in comparison with rocks in northeastern U.S.A.​

Answers

Answer:

Generally speaking, rocks in the southwestern U.S.A tend to be much older and more eroded than those found in the northeast. The rock outcrops and exposures in this region will likely consist of sedimentary layers that have been exposed due to erosion over time, as well as some ancient igneous intrusions such as granite or basalt. In comparison, the northeastern U.S.A tends to contain younger rocks with fewer signs of weathering and erosion; these outcrops and exposures may include a variety of metamorphic rocks such as slate or gneiss along with granites from nearby mountain ranges like the Appalachians or Adirondacks.

What is the Colour change in acid base titration?

Answers

In acid-base titration,colour change indicates that neutral point where amount of acid and base becomes equal is going to achieve.

An acid- base titration is a technique for quantitative examination for deciding the grouping of a corrosive or base by precisely killing it with a standard arrangement of base or corrosive having known focus. A pH marker is utilized to screen the advancement of the corrosive base response. In the event that the acid separation consistent (pK[tex]_a[/tex]) of the corrosive or base separation steady (pK[tex]_b[/tex]) of base in the analyte arrangement is known, its molar concentration (molarity) still up in the air. On the other hand, the pK[tex]_a[/tex] still up in the air if the analyte arrangement has a known arrangement focus by building a titration bend.

A reasonable pH indicator should be picked to recognize the end point of the titration. The variety change or other impact ought to happen near the identicalness point of the response so the experimenter can precisely decide when that point is reached. The pH of the proportionality point can be assessed utilizing the accompanying principles.

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An infant ibuprofen suspension contains 100 mg/ 5. 0 ml suspension. The recommended dose is 10 mg/kg body weight. 1 kg = 2. 2046 lb.

Answers

The infant weighing 25 lb would be given 5.67 mL of Ibuprofen suspension.

What is meant by suspension?

Chemistry defines suspension as a heterogenous combination, which means that when two dissimilar substances are combined, particularly a solid, they do not mix equally.

The weight of the child is converted from pound to kilogram

1 pound = 0.453592 kg

25 pounds = 0.453592 × 25 = 11.34 kg

Amount in mg of Ibuprofen needed by the baby exists;

11.34 kg ×  10 mg/kg = 113.4 mg

In the Ibuprofen suspension, 100 mg exists present in 5.0 mL

113.4 mg will be present in 113.4 mg × 5 mL/100 mg = 5.67 mL

Therefore, the infant weighing 25 lb would be given 5.67 mL of Ibuprofen suspension.

The complete question is:

An infant ibuprofen suspension contains 100 mg/5.0mL suspension. The recommended dose is 10 mg/kg body weight. How many milliliters of this suspension should be given to an infant weighing 25 lb ?

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What period numbers are the radioactive metals found in?

Answers

Answer:

All elements of period 7 are radioactive. This period contains the actinides, which includes plutonium, the naturally occurring element with the heaviest nucleus; subsequent elements must be created artificially.

what is a phase change from liquid to gas? endothermic or exothermic

Answers

The phase change from the liquid to the gas is the endothermic reaction as the heat energy is absorbed.

The phase change is the endothermic,  that means the system will absorbs the energy on going from the liquid phase to the gas phase. The change is exothermic when the system will be releases the energy, when the direction is from the gas phase the to the liquid phase.

Evaporation is the process in which the liquid molecules will change into the the gaseous phase. This phase transition will requires the absorption of the energy. Therefore the evaporation is the endothermic process.

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What is the mass (in grams) of 2 moles of hydrogen

Answers

we know that n=m/M and the molar mass kf hydrogen is M(h)=1
n=m/M=2/1=2g

what about the electrons in metal elements contributes to metallic bonding?

Answers

In metallic bonding, the valence electrons of metal atoms are free to move throughout the entire crystal structure of the metal.

This mobility of electrons in the metal crystal structure is the key feature that contributes to metallic bonding. The delocalized electrons are attracted to the positively charged metal ions, which hold the electrons together in the crystal lattice through electrostatic forces.

The unique behavior of valence electrons in metal elements makes metallic bonding one of the strongest types of chemical bonds, with high melting and boiling points and high tensile strength.

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what is the ph of a solution that contains 11.7g of nacl for every 200 ml of solution?

Answers

The solution's pH is 7, and there are 11.7g of sodium chloride in every 200 mL of the mixture.

NaCl weighs 11.7 grams.

58.44 g/mol is the molar mass of sodium chloride.

The moles of sodium chloride are equal to mass/molar mass.

NaCl has a molecular weight of 11.7 / 58.44.

NaCl's moles equal 0.200 mol.

pH equals -log(H+)

pH = 7

In the presence of water, sodium chloride will entirely dissociate into Na+ and Cl, neither of which will undergo hydrolysis. The H3O+ and OH ions in the aqueous solution of sodium chloride cause the water to autoionize entirely. Because of its neutrality, NaCl has no impact on pH. a way to gauge how basic or acidic a material or solution is. On a scale of 0 to 14, pH is measured.

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What is Boltzmann's constant in eV?

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Boltzmann's constant is a physical constant that relates the average kinetic energy of particles in a gas to the temperature of the gas. Boltzmann's constant in eV is 8.617333262 × 10⁻⁵ eV/K

The proportionality factor that connects the overall average kinetic energy of particles in a gas with their thermodynamic temperature is called the Boltzmann constant.

In SI units, Boltzmann's constant is equal to 1.380649 × 10⁻²³ J/K. However, it can also be expressed in other units, including electron volts (eV).

To convert from joules to electron volts, we can use the fact that 1 eV is equal to 1.602176634 × 10⁻¹⁹ J. So, to find Boltzmann's constant in eV, we can divide the value in joules by this conversion factor:

kB = (1.380649 × 10⁻²³ J/K) / (1.602176634 × 10⁻¹⁹ J/eV)

= 8.617333262 × 10⁻⁵ eV/K

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Chemistry help needed !!

Answers

The molecular geometry:

For N atom:
Trigonal pyramid.For first C atom:
Tetrahedral.For second C atom (with C = O):
Trigonal planar.For O atom (-C - O - H):
Bent.

Explanation

Molecular geometry can be determined by the number of electron domains around the central atom, which is found by counting the number of bonding pairs and lone pairs of electrons. To know about electron domains, we must know about valence electron through Periodic Table.

N atom.
Have 5 valence electrons.
Consisting of:
3 single bonds to hydrogen (H) atoms.
1 lone pair of electrons.
So, the molecular geometry of the nitrogen atom is trigonal pyramidal.C atom (first).
Have 4 valence electrons.
Consisting of:
1 bonded to the nitrogen atom.
2 single bonds to hydrogen (H) atoms.
1 single bond to the adjacent carbon atom.
So, the molecular geometry of first carbon is tetrahedral.C atom (second).
Have 4 valence electrons.
Consisting of :
1 single bond to the adjacent carbon atom.
1 single bond to oxygen atom.
1 double bond to another oxygen atom.
So, the molecular geometry of second carbon is trigonal planar.
Note
:
The double bond carbon with oxygen and one of the single bonds with hydrogen are in the same plane.Oxygen atom.
Have six valence electrons.
Consisting of:
2 single bonds with H and C.
2 lone pair of electrons.
So, the molecular geometry of oxygen is bent.

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What is the Pauli Exclusion Principle?
An atomic orbital can only hold a maximum of 2 electrons, each with opposite spins
An atomic orbital can hold a minimum of 6 electrons, each with opposite spins
An atomic orbital can hold a maximum of 6 electrons, each with the same spin
An atomic orbital can hold a minimum of 2 electrons, each with opposite spins

Answers

Pauli Exclusion Principle, states that an atomic orbital can only hold maximum of 2 electrons, each with opposite spins. So, the correct choice is option (a).

The Pauli Exclusion Principle is a quantum mechanical principle that states that no two electrons in the same atom can have the same value for all four quantum numbers. That is no more than two electrons in can occupy the same orbital, and two electrons in the same orbital in must have opposite spins.

Austrian, Wolfgang Pauli proposed this idea in 1925. After reading a paper on quantum states in 1924, Pauli decided to add a fourth value to the classical three values used to describe the state of electrons. Two other scientists, Samuel Goudsmit and George Uhlenbeck, defined the fourth quantum quantity as the electron's spin. So option (a) is the correct option.

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Complete question:

What is the Pauli Exclusion Principle?

a) An atomic orbital can only hold a maximum of 2 electrons, each with opposite spins.

b) An atomic orbital can hold a minimum of 6 electrons, each with opposite spins

c) An atomic orbital can hold a maximum of 6 electrons, each with the same spin

d) An atomic orbital can hold a minimum of 2 electrons, each with opposite spins

Mid-oceanic ridges are undersea mountain ranges where two pieces of oceanic crust are

none are correct
moving past one anther
moving apart from one another
moving toward one another

Answers

Answer:

Explanation:

the data is plotted so students can find and report the boiling point elevation by getting the average temperature at the two plateaus and finding the difference. what does the first plateau represent?

Answers

The first plateau represents the boiling point of the pure solvent. This is explained in the below section.

Boiling point elevation refers back to the growth withinside the boiling factor of a solvent upon the addition of a solute. When a non-unstable solute is introduced to a solvent, the ensuing solution has a better boiling factor than that of the natural solvent. Boiling-factor elevation describes the phenomenon that the boiling factor of a liquid can be better whilst any other compound is introduced, which means that an answer has a better boiling factor than a natural solvent. This takes place every time a non-unstable solute, including a salt, is introduced to a natural solvent, including water.

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What experimental criterion is to be used to measure the rates of bromination of the hydrocarbons used in this experiment?
1. Precipitation
2. Gas evolution
3. Color change
4. Temperature change

Answers

Option c is the correct solution to this question. The experimental criterion that will be utilised to gauge how quickly the bromination of the hydrocarbons used in this experiment occurs is colour change.

Generally, the bromination of saturated hydrocarbons proceeds through radical abstraction of hydrogen atoms and trapping with bromide, whereas the bromination processes of aromatic and unsaturated hydrocarbons are triggered by electrophilic addition of bromine and/or a cationic bromide.

Examples of group 14 hydrides include hydrocarbons. The majority of hydrocarbons are colorless and hydrophobic; they occasionally have a mild odor that is similar to that of gasoline or lighter fluid.

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Is H2 and Br2 polar or nonpolar?

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Both H₂ (Hydrogen gas) and Br₂ (Bromine gas) are non-polar molecules.

Because both bromine atoms in this molecule have the same electronegativity, their charge distributions are identical, and there is no net dipole moment, making Br₂ (Bromine) nonpolar.

A non-polar molecule is H₂. Nonpolar molecules do not respond to electrostatic charges like water does because their charges are distributed equally. Since hydrogen atoms distribute their electrons evenly, covalent molecules comprised of only one kind of atom, like hydrogen gas (H₂), are nonpolar.

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What is the relationship between polarity and intermolecular forces?

Answers

Polarity has an impact on the strength of intermolecular forces as well. Non-polar molecules only exhibit the van der Waals force as an intermolecular force.

What is the difference between polarity and intermolecular forces?

The strength of intermolecular forces is also influenced by polarity. The van der Waals force is the only intermolecular force that non-polar molecules display. Dipole-dipole interactions, which are often stronger than van der Waals forces, can be used to connect polar molecules together.

As the polarity is raised, the forces between dipoles get stronger. In this situation, dipole-dipole forces are highly powerful. It is possible for it to exist between a molecule with an N, O, or F atom that has a hydrogen atom directly connected to it and another molecule with an N, O, or F atom that has a lone pair of electrons on it.

Their essential connection is that they have an inverse proportional relationship. The intermolecular space will be smaller and vice versa depending on the strength of the intermolecular force.

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when combining a strong acid with water to dilute it, you should add the acid to the water. (Ttrue or False)

Answers

You should add the acid to the water in order to dilute the water's potency with the strong acid. the statement is false.

What is a strong acid?An acid that entirely dissociates in an aqueous solution is referred to be a strong acid. It is a chemical species that may lose a proton, H+, very quickly. Strong acids lose one proton in water, which is then taken up by water and transformed into the hydronium ion: HA(aq) + H2O H3O+(aq) + A. (aq)Strong acids are those that totally separate into their ions or dissociate. Examples of strong acids are HCl, HBr, etc. Strong bases are also bases that totally dissolve into their ions when they are in solution. NaOH, KOH, and other examples.An acid that is totally ionized in an aqueous solution is referred to be a strong acid. An acid that ionizes very little in an aqueous solution is said to be weak.

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A true statement about sulfur dioxides is that they are:________

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A true statement about sulfur dioxide (SO₂) is that it is a colourless gas with a pungent odour. It is released during the combustion of fossil fuels, such as coal and oil, and during some industrial processes.

It is a major air pollutant that can have harmful effects on both the environment and human health. Sulfur dioxide can react with other chemicals in the atmosphere to form acid rain, which can damage plants, buildings, and bodies of water.

Exposure to high levels of sulfur dioxide can irritate the respiratory system and worsen existing respiratory conditions, such as asthma. Therefore, it is regulated by many countries and international organizations to reduce its emission levels and protect the environment and public health.

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Which one of the following can be classified as a weak electrolyte?
A) HBr
B) CaF₂
C) OBr₂
D) HF
E) F₂

Answers

HF is classified as a weak electrolyte.

What is electrolyte?

An electrolyte is a substance that conducts electricity when dissolved in water or another solvent. It is composed of ions, which are electrically charged atoms or molecules. Common electrolytes include sodium, potassium, chloride, calcium, and magnesium. Electrolytes are important for maintaining the balance of the body's fluids, as they help regulate the body's acid-base balance, hydration, and muscle and nerve function.

HF is a weak electrolyte because it only partially dissociates in water, forming H+ and F- ions. This is in contrast to strong electrolytes, which fully dissociate in water, forming many ions. HF is the chemical formula for hydrofluoric acid, which is a colorless and highly corrosive solution of hydrogen fluoride in water. It is widely used in industry, particularly in the semiconductor industry, and is also found in some household products.

Therefore, option (d) HF is the correct answer.

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What is the molar mass g mol of lead?

Answers

The molar mass of lead is 207.2 g/mol.


Molar mass is the mass of one mole of a substance, which is equal to the mass of 6.022 x 10^23 atoms or molecules of that substance. It is expressed in units of grams per mole (g/mol).

To find the molar mass of lead, we can look at the periodic table and find the atomic mass of lead, which is 207.2. This is the molar mass of lead, as one mole of lead atoms has a mass of 207.2 grams.

Chemical element lead has the atomic number 82 and the letter Pb for its symbol. It is a dense hefty metal that is heavier than the majority of everyday materials.

Lead is pliable and soft, and it also has a low melting point. Lead has a tinge of blue when it is first cut, and it is bright and grey. When exposed to air, it tarnishes to a drab grey tone.

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Determine the moles of aluminium ions in 1. 25mol of AI203

Answers

The moles of aluminum ions in 1.25 mol of Al2O3 are 2.49 moles .

Aluminum oxide (Al2O3) dissociates in water to form aluminum ions (Al3+) and oxide ions (O2-). The molar mass of Al2O3 is 101.96 g/mol.

To determine the moles of aluminum ions in 1.25 mol of Al2O3, we need to first calculate the number of moles of Al2O3 present in 1.25 mol. We can do this by dividing the given mass of Al2O3 by its molar mass:

mass of Al2O3 = number of moles x molar mass

number of moles = mass of Al2O3 / molar mass

number of moles = (1.25 mol) x (101.96 g/mol) = 127.45 g

Next, we need to use the stoichiometry of the dissociation reaction to determine the number of moles of aluminum ions produced from 127.45 g of Al2O3:

1 mol of Al2O3 produces 2 mol of Al3+ ions

mol of Al3+ ions = (127.45 g Al2O3) x (1 mol Al2O3/ 101.96 g Al2O3) x (2 mol Al3+/ 1 mol Al2O3) = 2.49 mol

Therefore, there are 2.49 moles of aluminum ions.

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In the term trace element, the adjective trace means thatthe element is required in very small amounts.

Answers

The given statement “In the term trace element, the adjective trace means that the element is required in very small amounts” is true because trace elements are required in minute amounts for the proper functioning of the human body and other living organisms.

Trace elements are a group of minerals that are required in very small amounts for the proper functioning of the human body and other living organisms.

They are essential for the growth, development, and maintenance of cells and tissues. These elements are required in trace amounts because they are involved in the regulation of enzyme activities and metabolic processes.

The term “trace element” originates from the fact that they are required in very small amounts. This is because they are not found in large enough concentrations to be measured with traditional laboratory techniques. As such, they are only detectable using advanced analytical methods.

Trace elements are also essential for the production of hormones, vitamins, and other important compounds. They are also involved in the absorption of other minerals, such as calcium and magnesium, and in the production of energy. Without trace elements, the body’s functioning would be severely impaired.

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In the term trace element, the adjective trace means that the element is required in very small amounts. True or False.

rigel IV is 10.8 light years away from earth. how far is that in miles

Answers

10.8 light years is approximately 63,489,155,845,482 miles.

How many years is a light-year?

A light-year measures distance rather than time (as the name might imply). A light-year is the distance a light beam travels in one year on Earth, which is around 6 trillion miles (9.7 trillion kilometers).

How long in Earth years is a light-year?

We measure the distance of most celestial objects in terms of light years. The length of one Earth year that light travels is measured in light-years. About 6 trillion miles separate one light-year (9 trillion km).

How many light-years can we travel?

In reality, anything beyond 4,300 Mpc (or 14 billion light-years) is now outside the range of what humans can travel at the speed of light.

Hence 63,489,155,845,482 is a correct answer.

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Electromagnetic radiation consists of particles called ______, each of which has a discrete amount, or quantum, of energy. However, since electromagnetic radiation also has wave properties, each particle is also characterized by a specific _____ (m) and frequency (s-1).

Answers

The particles that make up electromagnetic radiation are known as Photos, and each one of them possesses a unique quantity of energy known as a quantum.

The wavelength (m) and frequency of each particle are also characteristics of electromagnetic radiation because it too has wave qualities (s-1).

Electromagnetic radiation is a form of energy that is transmitted through space as a wave, with both electric and magnetic components. It includes various forms of light, such as radio waves, microwaves, infrared radiation, visible light, ultraviolet radiation, X-rays, and gamma rays. Electromagnetic radiation travels at the speed of light, and its properties are determined by its wavelength, frequency, and energy. Different types of electromagnetic radiation have different properties and can interact with matter in different ways, such as absorption, reflection, refraction, or ionization. Electromagnetic radiation is used in many technological applications, such as communication, imaging, energy production, and medical therapy. Understanding the properties of electromagnetic radiation is essential for many fields of science, such as physics, chemistry, and astronomy.

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percy julian was a synthetic organic chemist that successfully synthesized physostigmine.(true/False

Answers

The given statement "percy julian was a synthetic organic chemist that successfully synthesized physostigmin" is true because Percy Julian was a renowned African American chemist who made significant contributions to the field of synthetic organic chemistry.

One of his most notable achievements was the synthesis of the plant alkaloid physostigmine, also known as eserine. This compound had previously been obtained only from natural sources and was used to treat glaucoma and other conditions. Julian's work in synthesizing physostigmine was a major breakthrough in organic chemistry and led to the production of new drugs that helped to improve the lives of millions of people.

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Identify the reducing and oxidizing agents and determine the species that is oxidized and the species that is reduced. a. Mg + Fe2+ ----> Mg2+ + Fe b. Cu2+ + Sn ----> Sn2+ + Cu c. H2 + CH2=CH2 -----> CH3CH3 Reducing agent Oxidizing agent Species being reduced Species being oxidized

Answers

a. The reducing agent is Mg and the oxidizing agent is Fe2+. The species being oxidized is Fe2+ and the species being reduced is Mg.

b. The reducing agent is Sn and the oxidizing agent is Cu2+. The species being oxidized is Sn and the species being reduced is Cu2+.

c. The reducing agent is H2 and the oxidizing agent is CH2=CH2. The species being oxidized is CH2=CH2 and the species being reduced is H2.

In each reaction, the reducing agent loses electrons and is oxidized, while the oxidizing agent gains electrons and is reduced.

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