calculate the percent by mass composition of c (carbon) in the compound ch4 (round your answer to 3 significant figures at the end.) g

Answers

Answer 1

The percent by mass composition of c (carbon) in the compound ch4 is 10%.

How much carbon is there in CH4 by mass?

As an example, let's look at methane, or CH4. Methane's formula weight is [12.01 + (4 x 1.008)] = 16.04 (grams per cubic meter). Methane has a mass that is made up of (12.01/16.04) x 100 = 74.87% carbon and (4.032/16.04) x 100 = 25.13% hydrogen.

Sulfuric acid's percentage makeup of each element: Hydrogen% is equal to (2.016/98.07) x 100, or 2.0556%. Sulfur% = 32.06 98.07 100 = 32.69% Oxygen% = (63.996/98.07) 100 = 65.25%.

(1) CO = 80% CH, equals 20%; (2) CO = 90% CH4 = 10%.

Confirm that about 82.6% of C4H10's mass is made up of carbon. The molar masses of hydrogen and carbon on the periodic table are, respectively, 12.0 and 1.01.          

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Related Questions

The solubility of BaSO4 in water is 2 mg/L at 25 oC. A 2 mg BaSO4 sample was added to 100 mL water. Some of the solid dissolved while 1.8 mg of it remained as precipitate. The solution is said to be .

Answers

In summary, the solubility of BaSO4 in water is 2 mg/L at 25 oC. When a 2 mg sample of BaSO4 is added.

What is solubility?

Solubility is the ability of a substance to dissolve in a solvent, such as water. It is a measure of how much of a substance will dissolve in a given amount of solvent. Solubility is a physical property that can vary depending on the temperature, pressure, and nature of the solvent. The higher the solubility of a substance, the more of it can be dissolved in a given amount of solvent. Different substances have different solubility levels, and some substances are more soluble in certain solvents than in others.

The solubility of a substance is the maximum amount of it that can dissolve in a certain volume of liquid at a given temperature. The solubility of BaSO4 in a specific volume of water at a given temperature is 2 mg/L. When a 2 mg sample of BaSO4 is added to 100 mL water, some of the solid dissolves and the remaining 1.8 mg is left as a precipitate. This means that the solution has reached its saturation point, which is 0.2 mg/L.

The solubility of a substance can be affected by various factors, such as temperature, pressure, and the presence of other substances in the solution. The solubility of BaSO4 is increased as the temperature is increased, and it is decreased as the temperature is decreased. The solubility of BaSO4 is also affected by the presence of other substances in the solution. For example, if the solution contains sodium chloride, it will decrease the solubility of BaSO4.

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Classify each of the following molecular art illustration as a chemical reaction or a physical change. Selection: Consider the reaction ofNOandCOto formN 2​andCO 2​. according to the balanced equation.2NO(g)+CO(g)→N 2​( g)+2CO 2​( g)Identify the excess reactant, the limiting reactant, and the product(s) using the molecular art. (Black spheres are carbon, blue spheres are nitrogen, and red spheres are oxygen)

Answers

This is a chemical reaction. The excess reactant is NO (there are two nitrogen molecules and one oxygen molecule), the limiting reactant is CO, and the products are N2 and CO2.

What is nitrogen?

Nitrogen is a colorless, odorless, tasteless, and mostly inert gas that makes up 78% of Earth's atmosphere. It is one of the most abundant elements on the planet and is found in both organic and inorganic forms. In organic form, nitrogen is an important part of all proteins, nucleic acids, and other molecules essential to life. In its inorganic form, nitrogen is an essential component of all fertilizers and is used in the production of plastics, explosives, and other industrial chemicals. Nitrogen is also used to create nitrous oxide, which is used as an anesthetic for medical procedures. Nitrogen is essential for the growth of plants, and it is also essential for the production of ammonia, which is a key component of many fertilizers.

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Step 1: ?? (slow)Step 2: NO2(g)+F(g)→NO2F(g) (fast)Overall: 2 NO2(g)+F2(g)→2NO2F(g) The overall reaction represented above is proposed to take place through two elementary steps. Which of the following statements about the chemical equation for step 1 and the rate law for the overall reaction is correct?answer choicesThe chemical equation for step 1 is NO2(g)+F2(g)→NO2F(g)+F(g), and the rate law for the overall reaction is rate=k[NO2][F2].The chemical equation for step 1 is NO2(g)+F(g)→NO2F(g)+F2(g), and the rate law for the overall reaction is rate=k[NO2][F].The chemical equation for step 1 is 2NO2(g)+F2(g)→2NO2F(g), and the rate law for the overall reaction is rate=k[NO2][F].The chemical equation for step 1 is 3NO2(g)+F2(g)+F(g)→3NO2F(g), and the rate law for the overall reaction is rate=k[NO2]2[F2].

Answers

The correct rate law that is consistent with the elementary steps in the mechanism is rate = k[NO2][CO].

The rate law is a mathematical expression that describes how the reaction rate changes with respect to the concentrations of the reactants. In this proposed mechanism, the reaction occurs through two steps: NO2(g) → NO3(g) + NO(g) and NO3(g) + CO(g) → NO2(g) + CO2(g).

The rate of the reaction is determined by the rate of the slowest step, which is the first step. Thus, the rate law is consistent with the elementary steps in the mechanism if it includes the concentrations of NO2 and CO as reactants, as they are the only species involved in the rate-determining step. Therefore, the correct rate law is rate = k[NO2][CO].

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The question is -

Step 1:2NO2(g)→NO3(g)+NO(g)(slow)

Step 2:NO3(g)+CO(g)→NO2(g)+CO2(g)(fast)

A proposed two-step mechanism for the chemical reaction NO2(g)+CO(g)→NO(g)+CO2(g) is shown above. Which of the following equations is a correct rate law that is consistent with the elementary steps in the mechanism?

Give two examples of elements for each of the following categories.a. noble gasesb. halogensc. alkali metalsd. alkaline earth metals

Answers

The two examples of each is given as :

1) Noble gases =  He , Ne

2) Halogens = F, Cl

3) Alkali metals = Li, Na

4) Alkaline earth metals = Be, Mg

1) The noble gases are the elements in the periodic table belongs to the 18 group : He, Ne, Ar, Kr, Xe, Rn, Og.

2) The halogens are the elements in the periodic table belongs to the group 17 : F, Cl, Br, I, At.

3) The alkali metals are the elements in the periodic table belongs to the group 1st : H, LI, Na, K, Rb, Cs, Fr.

4) The alkaline earth metals  are the elements in the periodic table belongs to the group 2nd : Be, Mg, Ca, Sr, Ba, Ra.

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A process results in the formation of a gas as energy is absorbed. Which statement correctly classifies the change that is taking place?
A. The change is ambiguous, because the evidence can result from either a chemical or a physical change.
B. The change is a physical change whenever the formation of a new substance is not specified.
C. The absorption of energy can only occur during a chemical change.
D. The formation of a gas is evidence that a chemical change must have occurred.

Answers

B. The change is a physical change whenever the formation of a new substance is not specified. A process results in the formation of a gas as energy is absorbed.

A change in a substance may or may not result in the development of a new substance. Every alteration may be characterized as either physical or chemical based on this. You may evaluate whether a chemical reaction releases or absorbs energy overall by comparing the energy used when bonds in the reactants are broken with the energy released when bonds in the products are created. Exothermic reactions are those that produce energy. When two or more substances are combined, they might undergo either a physical or a chemical change. When iron and sulfur are together, no chemical change happens. When the combination is heated, it glows after a while and forms a black material that is not iron.

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what of the following best describes the expected product of the reaction below? an aldehyde a primary alcohol a ketone a secondary alcohol

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expected product of the reaction below  an aldehyde a primary alcohol a ketone a secondary alcohol -The expected product of the aldehyde  is a primary alcohol.

The reaction shown is a reduction of a carbonyl group, specifically an aldehyde, using lithium aluminum hydride (LiAlH4) as a reducing agent. Reduction of a carbonyl group converts the carbonyl group (C=O) into a hydroxyl group (C-OH). Since the starting material is an aldehyde, and aldehydes typically have at least one hydrogen atom attached to the carbon atom adjacent to the carbonyl group, the product will be a primary alcohol. Secondary and tertiary alcohols are not formed in this reaction, because there is no alpha-hydrogen available in those cases.

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compare the processes that occur when methanol ( ), hydrogen chloride (hcl), and sodium hydroxide (naoh) dissolve in water. write equations and prepare sketches showing the form in which each of these compounds is present in its respective solution.

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The like dissolves like means polar dissolves in polar and non polar dissolves in non polar. CH₃OH, NaOH and HCl are polar compounds and H₂O is also a polar compound.


1) The methanol is a polar compound. The water is also a polar compound. The methanol and water makes hydrogen bonding and soluble in water.

2) The hydrochloric acid , HCl is an inorganic compound and water is also in organic compound. The ionic equation is :

HCl  + H₂O   --->  H₃O⁺  +   Cl⁻

3) The sodium hydroxide , NaOH is the polar compound and dissolves in the water. The ionic equation is given as :

NaOH  +  H₂O  --->  Na⁺    +  OH⁻    +  H⁺

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A student is examining two beakers. Beaker A has 100 grams of zinc (Zn) and Beaker
B has 100 grams of Aluminum (Al). Which beaker contains more atoms?
Beaker A contains more atoms, because Zinc has a higher molar mass.
Beaker B contains more atoms, because Aluminum has a higher molar mass.
Beaker A contains more atoms, because Zinc has a lower molar mass.
Beaker B contains more atoms, because Aluminum has a lower molar mass.

Answers

Zinc has a larger molar mass than Copper, hence Beaker A has more atoms.

How can you figure out how much of a material there are in a certain amount of an entity?

To determine the number of atoms, ions, or molecules present in any quantity (in moles) of atoms, ions, or molecules, apply the equation N = n NA: 10 helium atoms per mole equals 10 x (6.022 1023) or 6.022 1024 helium atoms.

What makes a mole 6.022 x 10 23?

An amount of a pure substance that contains the same number of chemical units (atoms, molecules, etc.) as there are atoms in precisely 12 grams of carbon-12 is said to be a MOLE (mol) (i.e., 6.022 X 1023).

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Which of the following provides the correct mathematical operation to convert the number of atoms of a sample to the number of moles?
Choose matching definition
O 2.0 mol × 6.022 × 1023 molecules/mol
O The formula of the compound The atomic masses of each of the elements that make up the compound
O number of atoms/Avogadro's number
O The molar mass of each element

Answers

Option c is the right response. The correct mathematical operation to convert a sample's atom count to its mole count is atoms/number Avogadro's.

Every atom is made up of a nucleus and maybe one or more electrons. The nucleus is made up of one or more protons and several neutrons. Only the most common type of hydrogen is devoid of neutrons. Hydrogen is a chemical element with atomic number 1 and the letter H. Hydrogen is the lightest atom. Under normal conditions, hydrogen is a gas composed of diatomic molecules, which have the formula H2. It is highly combustible, non-toxic, and devoid of flavour, smell, or colour.

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Consider the chemical reaction
aP4O10+bCaF2→cPF5+dCa3(PO4)2,
where a, b, c and d are unknown positive integers. The reaction must be balanced; that is, the number of atoms of each element must be the same before and after the reaction. For example, because the number of oxygen atoms must remain the same,
10a=8d.
While there are many possible choices for a,b, c, and d that balance the reaction, it is customary to use the smallest possible integers. Balance this reaction. Note that such reaction balance problems are always equivalent to a homogeneous system with a single free parameter.
find a b c and d ?

Answers

According to the problem, the chemical reaction is with coefficients a = 2, b = 5, c = 5, d = 4.

What is the chemical ?

A chemical is any substance composed of matter that has a distinct molecular composition and characteristic properties. The science of chemistry studies these substances and the transformations they undergo. Chemicals can be natural, such as water, or they can be man-made, such as plastics.

The equation can be written as:

2P4O10 + 5CaF2 → 5PF5 + 4Ca3(PO4)2

To balance the equation, we need to make sure the atoms on both sides of the equation are the same.

For phosphorus, the equation is balanced since there are 8 phosphorus atoms on both sides of the equation.

For oxygen, the equation is not balanced since there are 20 oxygen atoms on the left side of the equation and 32 oxygen atoms on the right side of the equation. To balance the equation, we need to make sure that there is the same number of oxygen atoms on both sides of the equation. We can do this by changing the coefficients of the compounds. We can set the coefficient of P4O10 to 2 and the coefficient of Ca3(PO4)2 to 4. This results in 20 oxygen atoms on both sides of the equation.

For calcium, the equation is not balanced since there are 10 calcium atoms on the left side of the equation and 12 calcium atoms on the right side of the equation. To balance the equation, we need to make sure that there is the same number of calcium atoms on both sides of the equation. We can do this by changing the coefficients of the compounds. We can set the coefficient of CaF2 to 5 and the coefficient of Ca3(PO4)2 to 4. This results in 10 calcium atoms on both sides of the equation.

For fluorine, the equation is not balanced since there are 10 fluorine atoms on the left side of the equation and 8 fluorine atoms on the right side of the equation. To balance the equation, we need to make sure that there is the same number of fluorine atoms on both sides of the equation. We can do this by changing the coefficients of the compounds. We can set the coefficient of CaF2 to 5. This results in 10 fluorine atoms on both sides of the equation.

Therefore, the balanced equation is:

2P4O10 + 5CaF2 → 5PF5 + 4Ca3(PO4)2

with coefficients a = 2, b = 5, c = 5, d = 4

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When a racemic mixture is reacted with a single enantiomer of another compound, then a pair of ____is formed. A) Identical compounds B) Enantiomers C) Diastereomers D) Nothing

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A set of diastereomers are created when a racemic mixture reacts with one of a compound enantiomers.

What is compound?

Compound is a substance composed of two or more elements combined in fixed proportions. Compounds are usually formed when atoms of two or more elements combine chemically. The atoms in a compound are held together by strong chemical bonds. Compounds can be either organic or inorganic, and exist in all forms of matter, including solids, liquids, and gases. Examples of compounds include water (H2O), table salt (NaCl), and sucrose (C12H22O11).

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Aluminum and iron are used in a cell to produce electricity. Using the standard reduction potentials shown, calculate the cell potential and identify the type of cell.
Al3+(aq) + 3e– Al(s) Eº = –1.66 V
Fe2+(aq) + 2e– Fe(s) Eº = –0.41 V
A. +2.08 V; electrolytic
B. –1.25 V; galvanic
C. –2.08 V; electrolytic
D. +1.25 V; galvanic

Answers

B. –1.25 V; galvanic type of cell.

What is standard reduction?

Standard reduction is an important concept in chemistry, which is used to describe the transfer of electrons between two chemical species. When a chemical species gains electrons it is said to have been reduced, and when a chemical species loses electrons it is said to have been oxidized. The standard reduction potential is a measure of how easily a chemical species can be reduced, and is expressed as a voltage. It is a measure of the potential difference between the oxidized and reduced forms of the species, and is an important factor in determining the direction of electron transfer in a reaction.

The cell potential is calculated by subtracting the standard reduction potential of the reducing agent from that of the oxidizing agent. In this case, the reduction potential of Fe2+ is subtracted from the reduction potential of Al3+ to get the cell potential: -1.66 V – (-0.41 V) = -1.25 V. Since the cell potential is negative, this is a galvanic cell, with Fe2+ as the oxidizing agent and Al3+ as the reducing agent.

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Charcoal reacts with oxygen according to the equation C (s) + O2 (g) → CO2 (g). Which of the following changes would cause the greatest increase in the rate of reaction?
a. decreasing the concentration of O2(g)
b. decreasing the pressure of O2 (g)
c. using charcoal in powdered form
d. using charcoal in lump form

Answers

Answer:

c. using charcoal in powdered form.

Explanation:
The rate of a chemical reaction is affected by many factors, one of which is the surface area of the reactants. When the surface area of a solid reactant is increased, the rate of the reaction increases because it increases the number of reactive sites available for collision. Therefore, using charcoal in powdered form would increase the rate of reaction as the surface area of charcoal would be greater than in lump form.

On the other hand, decreasing the concentration of O2(g) would decrease the rate of reaction as there will be fewer O2 molecules for collision, decreasing the pressure of O2 (g) would affect the rate of reaction in a lesser extend, as pressure is not a major factor in this reaction. Using charcoal in lump form wouldn't affect the rate of the reaction as much as changing its form from lump to powdered.

Provide the mass to charge ratio for the molecular ion peak of prop-2-enal. Show two significant figures and no decimals.

Answers

56 is the mass to charge ratio for the molecular ion peak of prop-2-enal.

CH2 = CH-CHO

molar mass C3H4O  :  3 x 12 + 4 x 1 + 16 = 56

M+ ion means it does not loss any group, so

M+ charge = +1

M / Z ratio  = 56 /1 = 56

m/z  = 56

The molecular ion peak is the peak in a mass spectrum that indicates the molecular ion. The molecular ion peak is the location with the largest mass-to-charge ratio after deleting any peaks induced by the presence of heavier isotopes. In general, the M+ peak is the peak with the maximum intensity in the cluster of peaks with the maximum m/z.

A molecular ion is formed when one electron is released from an electrically neutral molecule. Because the mass of an electron is so little in contrast to the mass of a molecule, the mass of a molecular ion is the same as the mass of the molecule.

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the diagrams above use arrows to represent the speed of a gas particle. which of the diagrams best represents the speed of the particles of a gas at a fixed temperature, and why?

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The diagram 2 best represents the speed of gas particles at a constant temperature because the particles have a wide range of speeds.

What is the speed of gas particles?Gas particles move quickly in all directions, frequently colliding with one another and the container's side. The particles gain kinetic energy and move faster as the temperature rises.Gases are made up of a large number of tiny spherical particles that are far apart in comparison to their size. Gas particles are constantly moving in random directions at high speeds. Elastic collisions occur between gas particles and between particles and container walls.Lighter-molecule gases have more high-speed particles and a higher urms, with a speed distribution that peaks at higher velocities. Gases made up of heavier molecules have more low-speed particles, lower urms, and a speed distribution that peaks at lower velocities.

The diagram is attached below.

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which of the following products would be obtained in the highest yield from the reaction below? b d e a

Answers

The highest yield obtained from the reaction is 2-methylcyclopentan-1-ol.

In the reaction provided, 2-Methyl-1-bromocyclopentane is reacted with KOH, which acts as a base. KOH will abstract a proton from the most acidic proton of the 2-Methyl-1-bromocyclopentane. This reaction is called an "E2" elimination reaction.

E2 reactions are typically characterized by forming a carbocation intermediate, which then undergoes deprotonation to form the final product.

In this case, the most acidic proton of 2-Methyl-1-bromocyclopentane is the alpha proton (the proton on the carbon atom adjacent to the bromine atom). The deprotonation of this proton forms the carbocation intermediate which will then lose a bromide ion to form 2-methylcyclopentan-1-ol, the product that will be obtained in the highest yield.

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Correct question: Which of the following products would be obtained the highest yield from the reaction below?

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Which of the following set of conditions would NOT allow HDFN to occur as a result of Rh incompatibility?
The correct answer is highlighted below
Mother Rh-negative, father Rh-positive
Mother Rh-negative, baby Rh-positive
Mother Rh-negative, father Rh-negative
Mother Rh-negative, father Rh-unknown

Answers

Mother Rh-negative, father Rh-unknown and Mother Rh-negative, father Rh-negative would not allow HDFN to occur as a result of Rh incompatibility.

The most well-known kind of alloimmune anemia, HDFN, is sometimes referred to as Rh illness. The mother becomes sensitized to and develops antibodies against the "foreign" (paternal) antigen as a result of the parents' incompatibility in red cell antigens. An important contributing factor to HDN is the mother's and fetus's Rh blood group incompatibility. If the father is homozygous dominant (DD), there is a 100% risk that the fetus will be Rh positive and experience an incompatibility issue. 50% of the time if the father is heterozygous (Dd). The fetus's Rh negative status won't cause any issues.

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Part B Consider the following four molecules. Which of these satisfy the octet rule and which do not? Drag the appropriate items to their respective bins.

Answers

[tex]CS_{2}[/tex] and [tex]CO_{3} ^{2-}[/tex] adhere to the octet rule. The octet rule is a chemical rule of thumb based on the fact that atoms from the major group prefer to pair in this manner.

Each atom possesses eight electrons in its valence shell, giving it the same electrical configuration as a noble gas, according to the octet rule.  [tex]PCl_{5}[/tex] is not acceptable octet rule. [tex]CO_{3} ^{2-}[/tex] will meet the requirement as it has two extra electrons, giving it a -2 charge.  just follows the rules. Phosphorus pentachloride ([tex]PCl_{5}[/tex]) and sulfur hexafluoride are two examples of chemicals that defy the octet rule ([tex]SF_{6}[/tex]). Part B Consider the four molecules below. Which of these follows the octet rule and which does not? Drag the relevant objects to

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The complete question is:

Consider the following four molecules. Which of these satisfy the octet rule and which do not?

1) [tex]PCl_{5}[/tex]

2) [tex]CS_{2}[/tex]

3) [tex]SF_{6}[/tex]

4) [tex]CO_{3} ^{2-}[/tex]

Classify each substance as an atomic element, molecular element, molecular compound, or ionic compound.
a) krypton
b) CoCl₂
c) nitrogen
d) SO₂
e) KNO₃

Answers

Atomic element of the type krypton (monatomic element in alkali metals family). This classification designates CoCl2 as an ionic compound (metal + nonmetal).

And classification of the liquid nitrogen (diatomic element). So2 is a chemical molecule with two nonmetals, according to the categorization. Furthermore, Kno3 is categorised as an ionic compound (metal plus two nonmetals). Molecular elements are chemical compounds that contain at least two atoms of the same chemical element that are chemically bonded to one another. Because they have two or more atoms of different chemical elements, chemical compounds are different from these. A chemical species is considered to be an atomic element if it has the capacity to exist as a separate atom. This is explained by their remarkable stability.

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Record your answers in the space provided. Complete solutions are required in order to obtain full marks. Show your work!
Determine whether or not a precipitate of lead (II) chloride (PbCI2) will form when 30.0 mL of a 0.20 mol/L solution of Pb (NO3)2 is added to 20 mL of 0.06 mol/L solution of MgCI2. Justify your answer in a quantitative matter and include balanced chemical equations with your calculation.

Answers

A precipitate of lead (II) chloride (PbCI2) will form when 30.0 mL of a 0.20 mol/L solution of Pb (NO3)2 is added to 20 mL of 0.06 mol/L solution of MgCI2

What does it mean by a precipitate?

Precipitate: In chemistry, a solid created when a solution changes, frequently as a result of a chemical reaction or a shift in temperature that makes a solid less soluble. A precipitate is defined as a body of liquid or solid water (rain, snow, etc.) that falls from the sky. Because of the dissolved Cu2+, Fehling's solution is blue.

There are 2 moles of Cl- in a 1.0 M MgCl2 (aq)

There are 0.2 moles of Cl- ions in 30m L of solution, or (0.03/1.0 x 2 moles of Cl- ions) (aq)

There are (0.03/1.0. x 2 moles of Cl- ions) in 30mL of solution. 0.2 moles of Cl- (aq)

There are =0.12 moles of Cl- ions in total (aq)

Pb(NO3)2 has a molecular weight of 331.2 g.

One chloride ion's molecular weight is 35.45 grams.

35.45g equals 1 mole of Cl- ions.

0.12 moles of Cl- are equal to [0.12/1.0 x 35.45g] = 4.254 g of Cl- (aq)

0.12 moles of Pb(NO3)2 are equal to [0.12/1.0] x 331.2 g, or39.744 g Pb (NO3)2

Pb(NO3)2 moles equal 39.744g / 331.2 g.

Pb(NO3)2 equals 0.12 moles per unit.

It takes 0.12 moles of Pb(NO3)2 (aq) to precipitate all the ions of chloride in a solution.

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Give an example of reduction?

Answers

Answer:

Reduction can be explained in simple terms like gaining electrons in an atom or gaining hydrogen and eliminating oxygen. For example, oxygen is replaced by hydrogen in every reaction, this is referred to as reduction.

It is the movement of electrons between two different elements in a chemical substance; this transfer is facilitated by the acquisition of electrons or by reducing the oxidation state of the element. This reduction reaction always aims to increase the number of electrons bound to a single atom or group of atoms.

This is a classic form of the redox reaction. The burning of organic materials and hydrocarbons is a form of redox reaction. During combustion,  oxygen is reduced while the burned compounds oxidize.

Convert grams of fe2o3 to grams of fe. select the correct units and conversion factors for each step in the following unit roadmap.
Fe2O3 (s) + 3 CO(g) → 2Fe(s) + 3 CO2(g)

Answers

To convert grams of Fe₂O₃ to grams of Fe, we can use the balanced chemical equation for the reaction between Fe₂O₃ and CO.

The balanced equation for the reaction between Fe₂O₃ and CO is: Fe₂O₃(s) + 3 CO(g) → 2Fe(s) + 3 CO₂(g)

From this equation, we can see that 1 mole of Fe₂O₃ reacts with 3 moles of CO to produce 2 moles of Fe and 3 moles of CO₂. This means that the ratio of Fe to Fe₂O₃ is 2:1.

The conversion factor between grams of Fe₂O₃and grams of Fe is:

1 mole Fe₂O₃= 159.69 g Fe₂O₃

1 mole Fe = 55.845 g Fe

Steps:

Start with the given mass of Fe₂O₃in grams

Convert grams to moles of Fe₂O₃using the molar mass of Fe₂O₃ (159.69 g/mol)

Use the stoichiometry ratio of 2:1 to find the number of moles of Fe produced from the number of moles of Fe₂O₃

Convert the number of moles of Fe to grams using the molar mass of Fe (55.845 g/mol)

In conclusion, in order to convert grams of Fe₂O₃to grams of Fe, we used the balanced chemical equation to identify the molar ratio between the reactants and products.

Then, we used the molar mass of Fe₂O₃ and Fe to convert between moles and grams. It is important to be aware of the stoichiometry of the reaction in order to calculate the correct number of moles of Fe produced.

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The complete question is:

Convert grams of Fe₂O₃ to grams of Fe. Mention the correct units and conversion factors for each step.

Fe₂O₃(s) + 3 CO(g) → 2Fe(s) + 3 CO₂(g)

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Incorrect Question 8 0/1 pts Which piece(s) of glassware is the most precise based on significant figures? Graduated Cylinder What value of R2 indicates the highest level of precision? 0.972 Answer 1: Graduated Cylinder Answer 2: 0.972

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Graduated Cylinder What value of R2 indicates the highest level of precision,this answer is correct.

What is the Cylinder ?

The cylinder is a three-dimensional geometric shape with two parallel bases that are connected by a curved surface. It has two circular faces at the top and bottom and a curved surface connecting the two faces. The curved surface of the cylinder is a surface of revolution. A cylinder has two properties, namely, its height and its radius. The volume of the cylinder is equal to the product of its radius and height and is equal to the area of its bases multiplied by the height of the cylinder. Cylinders are used in a variety of applications such as the storage of liquids and gases, the manufacture of pipes, and the construction of machines. The cylinders can also be used for various purposes such as for hydraulic cylinders, for printing presses, and for containers in the chemical industry.

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workers using volatile hazardous materials. Which of the following statements is true?A. A worker should feel a steady draft entering the face of the hood.B. A worker should not feel air moving around the chemical hood.C. A worker should feel a steady draft emerging from the face of the hood.

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A worker should feel a steady draft emerging from the face of the hood.

What is emerging?

Emerging technology is defined as the application of new and innovative technologies to existing products and services to create new ones. This form of technology is often used as a way to gain competitive advantage in the market and to stay ahead of the competition. Examples of emerging technology include artificial intelligence (AI), virtual reality (VR), robotics, blockchain, and the Internet of Things (IoT). These new technologies have the potential to revolutionize the way we do business and provide new opportunities for both individuals and businesses. As such, many companies are investing heavily in the development of these technologies in order to stay ahead of the competition and remain competitive.

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In the titration of a weak acid of unknown concentration with a standard solution of a strong base, a pH meter was used to follow the progress of the titration. Which of the following is true for this experiment? The (H+) at the equivalence point equals the ionization constant of the acid. The graph of pH versus volume of base added shows no sharp rise. The graph of pH versus volume of base added rises gradually at first and then much more rapidly. The pH at the equivalence point depends on the indicator used. The pH is 7 at the equivalence point.

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the graph of pH versus volume of base added rises gradually at first and then much more rapidly A p meter was used to track the progress of the titration of a weak acid of unknown concentration.

with a standard solution of a strong base.  of the following statements about this experiment is correct The indicator used determines the pH at the equivalence point. This is due to the anion of the weak acid becoming a common ion, which decreases the acid's ionization. Following the significant spike at the start of the titration, the curve barely alters gradually. This is due to the solution's function as a buffer. This will continue until the base's capacity is exceeded.In the titration of a weak acid of unknown concentration with a standard solution of a strong base, a pH meter was used to follow the progress of the titration.

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The volume of a gas is 450 mL when its pressure is 1.00 atm. If the temperature of the gas does not change, what is theO 0.225 atm
O 0.444 atm
O 2.25 atm
O 4.44 atm

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The volume of a gas is 450 mL when its pressure is 1.00 atm. If the temperature of the gas does not change, so the pressure is 0.444 atm.

The volume of a gas is inversely proportional to its pressure when the temperature is constant. This relationship is described by the Ideal Gas Law PV = nRT , where P is the pressure, V is the volume, n is the number of moles, R is the ideal gas constant, and T is the temperature.

If the volume of the gas is 450 mL and the temperature does not change, we can use the following formula to find the new pressure:

V1/P1 = V2/P2

Where V1 is the initial volume, P1 is the initial pressure, V2 is the final volume and P2 is the final pressure.

By substituting the given values:

450mL/1.00atm = V2/P2

To find P2: P2 = V2*P1/V1

P2 = (450mL*1atm)/450mL = 0.444 atm

So the answer is 0.444 atm.

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a chemical compound may be identified in several ways. which of the following identifiers is unique (that is, it does not apply to any other compound)?

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The Chemical Abstract Service registry number (CAS number) is unique.

What is meant by  Chemical?

Any material with a known composition is a chemical. To put it another way, a chemical always consists of the same "substance."There are some substances in nature, like water. Chlorine and other chemicals are made at factories.All of these things are made of chemicals, some natural and others synthetic, including air, water, iron, fuel, clothing, stones, furniture, plastics, plants, and food.Chemicals can be made up of several different chemicals or they can be single chemical molecules like water. Nitrogen, oxygen, water, carbon dioxide, and other substances are all present in air.The three basic categories of substances are elements, compounds, and mixes, which are composed of only one type of atom.

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identify reagents that can be used for the following synthesis: 1) h2, pt; 2) br2, hv ; 3) naoet 1) h2, lindlar's catalyst; 2) br2, hv ; 3) t-buok 1) na, nh3(liq); 2) br2, hv ; 3) naoet 1) h2, pt; 2) br2, hv ; 3) t-buok

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Reagents that can be used  naoet. In organic chemistry, the electrophiles and nucleophiles are the two main categories of reagents.

For what purposes do reagents in chemistry?Reagents are frequently employed to conduct tests to determine whether particular chemicals are present because their interactions with the substance or other related substances result in specific responses. Reagents and reactants are two entirely distinct concepts, despite the fact that the terms are occasionally used synonymously.Reagents are listed as Grignard reagent, Tollens reagent, Fehling reagent, Millon reagent, Collins reagent, and Fenton reagent. The word "reagent" does not, however, appear in all reagent names. Solvents, enzymes, and catalysts are additional reagents. The use of reagents can be restricted.In organic chemistry, the electrophiles and nucleophiles are the two main categories of reagents.              

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The structure of one form of boron nitride is represented above. This form of boron nitride is one of the hardest substances known. Which of the following best helps explain why boron nitride is so hard?
answer choices
O Boron ions and nitrogen ions are held together by ionic bonds.
O Boron nitride is a network solid of atoms connected by covalent bonds with fixed bond angles.
O Boron nitride is an alloy, and alloys are typically harder than the elements used to make them.
O Boron nitride is a polymer made of long chains of boron atoms and nitrogen atoms held together by dispersion forces.

Answers

A network solid made of atoms joined by covalent bonds with set bond angles is called boron nitride. the  best helps explain why boron nitride is so hard.

What is the boron ?

Chemical element boron has the atomic number 5 and the letter B in its symbol. It is a nonmetallic, trivalent-metalloid element with a black or brown-black appearance. Boron is found in many minerals and is used industrially in various compounds. It is present in most soils, seawater, and some plants. Boron has low electrical and thermal conductivity and is not particularly reactive. It is one of the few elements that can form stable compounds with carbon, although these are rare. Boron is an essential trace element for plants and animals, but has no known role in human physiology. It is used in some industrial and medical applications and is an important component of certain insecticides and fertilizers. Boron compounds are also used as mild antiseptics and as wood preservatives.

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Which of the following atoms has the highest electronegativity? a. sulfurb. oxygenc. hydrogend. nitrogene. carbon

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Oxygen atoms has the highest electronegativity. Fluorine is the most electronegative element, but francium is one of the least electronegative.

Which element has a higher electronegativity, oxygen or nitrogen?Nitrogen is more electronegative than oxygen.In groups, electronegativity rises from bottom to top, and throughout periods, it rises from left to right. Fluorine is the most electronegative element, but francium is one of the least electronegative.In water molecules, oxygen has a greater electronegative charge than hydrogen. So, although both hydrogen atoms receive a tiny positive charge, oxygen draws bound electrons in its direction and acquires a slight negative charge. Hydrogen has an electronegativity of 2.1 while oxygen has a value of 3.5.Oxygen atoms has the highest electronegativity. Fluorine is the most electronegative element, but francium is one of the least electronegative.          

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