In the three-dimensional structure of methane, ch4, the hydrogen atoms attached to a carbon atom are aligned ________. in the three-dimensional structure of methane, ch4, the hydrogen atoms attached to a carbon atom are aligned ________. at the corners of a square at the corners of a tetrahedron at the corners of a cube in a straight line at the corners of a rectangle

Answers

Answer 1
Answer:
            In the three-dimensional structure of methane, CH₄, the hydrogen atoms attached to a carbon atom are aligned at the corners of a Tetrahedron.

Explanation:
                   In Methane (CH₄) the central atom (carbon) is bonded to four hydrogen atoms. So, the central atom is having four electron pairs and all pairs are bonding pairs and lacks any lone pair of electron. According to Valence Shell Electron Pair Repulsion (VSEPR) Theory the central atom with four bonding pair electrons and zero lone pair electrons will attain a tetrahedral geometry with bond angles of 109°. Hence, the shape of CH₄ is tetrahedral.
In The Three-dimensional Structure Of Methane, Ch4, The Hydrogen Atoms Attached To A Carbon Atom Are
Answer 2
Final answer:

In methane (CH4), the hydrogen atoms align at the corners of a tetrahedron due to the carbon atom's sp³ hybridization. This results in a 109.5° angle between the hydrogens, forming a tetrahedral geometry. This critical alignment impacts the molecule's properties and stability.

Explanation:

In the three-dimensional structure of methane (CH4), the hydrogen atoms attached to a carbon atom are aligned at the corners of a tetrahedron. This spatial orientation is due to the 109.5° angle between the hydrogen atoms, resulting in a tetrahedral geometry. This geometric configuration occurs because the carbon atom in methane exhibits sp³ hybridization, wherein the hybrid orbitals overlap with the s orbitals of hydrogen atoms, aligning the hydrogens in tetrahedral shape.

Such orientation plays a critical role in determining the properties of the methane molecule, and is common in many other hydrocarbons as well. In this configuration, each carbon electron pairs with a hydrogen electron when the C-H bonds are formed, resulting in a balanced and stable structure. The geometry is crucial to the function of macromolecules, which can also exist as linear carbon chains, carbon rings, or combinations of both.

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Related Questions

How many moles of neon occupy a volume of 14.3 l at stp? how many moles of neon occupy a volume of 14.3 l at stp? 1.57 moles 0.638 moles 36.7 moles 32.0 moles 6.45 moles?

Answers

Final answer:

To find the number of moles of neon in 14.3 L at STP, divide the volume by the molar volume of 22.4 L. The result is 0.638 moles of neon.

Explanation:

To determine the number of moles of neon that occupy a volume of 14.3 L at STP (standard temperature and pressure), you use the concept of molar volume. At STP, a mole of any gas occupies 22.4 L. Therefore, you can calculate the moles of neon using the volume and the molar volume as a conversion factor.

The formula for this calculation is:

Moles of neon = Volume of neon (L) / Molar volume (L/mol)

So as an equation:

Moles of neon = 14.3 L / 22.4 L/mol

This gives us:

Moles of neon = 0.638 moles

This is a conversion between moles and gas volume at STP and is a fundamental principle in chemistry.

Iven the balanced equation representing a reaction: mg(s) + ni2+(aq) → mg2+(aq) + ni(s) what is the total number of moles of electrons lost by mg(s) when 2.0 moles of electrons are gained by ni2+(aq)?

Answers

This is a redox reaction where oxidation and reduction take place. Here, Mg(s) oxidizes into Mg²⁺(aq) by increasing oxidation number from 0 to +2 while Ni²⁺(aq) reduces into Ni(s) by decreasing oxidation number from +2 to 0.

Oxidation
Mg(s) → Mg²⁺(aq) + 2 e

Reduction
Ni²⁺(aq)  + 2 e → Ni(s)

Hence, 2.0 moles of electrons lost by Mg(s) when 2.0 moles of electrons are gained by Ni²⁺(aq).

Final answer:

In the oxidation half-reaction, every mole of Mg(s) loses 2 moles of electrons. Therefore, to balance the 2.0 moles of electrons gained by [tex]Ni^2^+[/tex](aq), 2.0 moles of Mg(s) must have lost 2.0 moles of electrons.

Explanation:

The question involves determining the number of moles of electrons lost by Mg(s) during a redox reaction where electrons are transferred from magnesium to nickel ions.

The given balanced reaction is oxidation of Mg(s), which can be represented as: Mg(s) → [tex]Mg^2^+[/tex](aq) + 2e-. Every mole of Mg loses 2 moles of electrons during the oxidation process.

If 2.0 moles of electrons are gained by [tex]Ni^2^+[/tex](aq), this corresponds to the reduction half of the reaction, and the same number of moles of electrons must have been lost by Mg in the oxidation half. Hence, 2.0 moles of Mg would lose 2.0 moles of electrons to provide the electrons gained by [tex]Ni^2^+[/tex](aq).

What must be done to crude oil for it to be separated ? It must be filtered or chemically altered

Answers

It must be filtered using the different boiling points of the compounds mixed in crude oil. Crude oil is just a mixture of carbon compounds, so it needs no chemical alteration.

Answer:

It must be vaporized is the answer

Explanation:

took thest

The law of conservation of mass and how it applies to chemical changes

Answers

The law of conservarion of mass states that mass can neither be destroyed nor created, but only changed into other forms. So through chemical reactions, the chemical makeup may change but the amount of substance is still equal to the sum of the amount of original chemicals before the reaction.

According to law of conservation of mass, mass is neither created nor destroyed and hence for a chemical reaction the mass of reactants and products is equal.

What is law of conservation of mass?

According to law of conservation of mass, it is evident that mass is neither created nor destroyed rather it is restored at the end of a chemical reaction .

Law of conservation of mass and energy are related as mass and energy are directly proportional which is indicated by the equation E=mc².Concept of conservation of mass is widely used in field of chemistry, fluid dynamics.

Law needs to be modified in accordance with laws of quantum mechanics under the principle of mass and energy equivalence.This law was proposed by Antoine Lavoisier in the year 1789.

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10) In order to make spaghetti cook faster, a chef adds salt to water. How many moles of salt would he need to add to 1.0 kg water to make the water boil at 105 C? The Kb for water is 0.25°C/m. Assume i 2 for NaCl

Answers

The answer is 4.9 moles.
Solution: 
Using the equation for boiling point elevation Δt,
     Δt = i Kb m 
we can rearrange the expression to solve for the molality m of the solution:
     m = Δt / i Kb 

Since we know that pure water boils at 100 °C, and the Ebullioscopic constant Kb for water is 0.512 °C·kg/mol, 
     m = (105°C - 100°C) / (2 * 0.512 °C·kg/mol)
         = 4.883 mol/kg 

From the molality m of the solution of salt added in a kilogram of water, we can now find the number of moles of salt: 
     m = number of moles / 1.0kg
     number of moles = m*1.0kg 
                                  = (4.883 mol/kg) * (1.0kg)
                                  = 4.9 moles

The chef would need to add approximately 555.2 moles of salt NaCl to 1.0 kg of water to raise its boiling point to 105°C.

To determine how many moles of salt NaCl are needed to raise the boiling point of 1.0 kg of water to 105°C, we can use the concept of boiling point elevation and the colligative property of solutions.

Given data.

- Mass of water, [tex]\( m = 1.0 \) kg = \( 1000 \) g\\[/tex]

- Desired boiling point of water,[tex]\( T_{\text{new}} = 105 \)°C[/tex]

- Boiling point constant for water,[tex]\( K_b = 0.25 \) °C/m[/tex]

- Van't Hoff factor for NaCl [tex]\( i \) = 2 since NaCl dissociates completely into Na+ and Cl- ions in water[/tex]

First, calculate the change in boiling point [tex]\( \Delta T_b \)[/tex] using the formula for boiling point elevation

[tex]\[ \Delta T_b = i \cdot K_b \cdot m_{\text{salt}} \][/tex]

where.

- [tex]\( i \)[/tex] is the Van't Hoff factor,

- [tex]\( K_b \)[/tex] is the boiling point elevation constant,

- [tex]\( m_{\text{salt}} \)[/tex] is the molality of the salt in the solution.

To find [tex]\( m_{\text{salt}} \)[/tex], rearrange the equation:

[tex]\[ m_{\text{salt}} = \frac{\Delta T_b}{i \cdot K_b} \][/tex]

Calculate [tex]\( \Delta T_b \):[/tex]

[tex]\[ \Delta T_b = T_{\text{new}} - T_{\text{normal}} = 105 \text{°C} - 100 \text{°C} = 5 \text{°C} \][/tex]

Substitute the values into the equation.

[tex]\[ m_{\text{salt}} = \frac{5 \text{ °C}}{2 \cdot 0.25 \text{ °C/m}} \][/tex]

[tex]\[ m_{\text{salt}} = \frac{5}{0.5} \][/tex]

[tex]\[ m_{\text{salt}} = 10 \text{ mol/kg} \][/tex]

This molality [tex]10 mol/kg[/tex] represents the number of moles of salt per kilogram of solvent water.

To find the moles of salt [tex]\( n_{\text{salt}} \)[/tex] needed.

[tex]\[ n_{\text{salt}} = m_{\text{salt}} \cdot \frac{m_{\text{water}}}{M_{\text{water}}} \][/tex]

where.

[tex]- \( m_{\text{water}} \) is the mass of water[/tex],

[tex]- \( M_{\text{water}} \) is the molar mass of water.[/tex]

Calculate [tex]\( M_{\text{water}} \)[/tex].

[tex]\[ M_{\text{water}} = 18.015 \text{ g/mol} \][/tex]

Convert [tex]\( m_{\text{water}} \) to grams[/tex].

[tex]\[ m_{\text{water}} = 1000 \text{ g} \][/tex]

calculate [tex]\( n_{\text{salt}} \)[/tex].

[tex]\[ n_{\text{salt}} = 10 \text{ mol/kg} \cdot \frac{1000 \text{ g}}{18.015 \text{ g/mol}} \]\\[/tex]

[tex]\[ n_{\text{salt}} = 10 \cdot \frac{1000}{18.015} \text{ mol} \][/tex]

[tex]\[ n_{\text{salt}} \approx 555.2 \text{ mol} \][/tex]

What is the name for the positive subatomic particles in an atom?

Answers

Answer:

I think the answer is Protons.

Final answer:

Protons are the positive subatomic particles in an atom. They reside in the nucleus of the atom and their number determines the type of the element. Normally, atoms maintain a balance of protons and electrons, resulting in a neutral overall charge.

Explanation:

In an atom, the positive subatomic particles are called protons. These particles are located in the nucleus, or center, of the atom. Protons are one of three main subatomic particles in an atom, along with neutrons (which have no charge) and electrons (which have a negative charge).

The number of protons in an atom's nucleus determines the type of element it is. For example, an atom with 1 proton is hydrogen, an atom with 6 protons is carbon, and so on. The balance of protons and electrons in an atom determines the atom's overall charge. Normally, atoms have an equal number of protons and electrons, so their charges balance out, resulting in a neutral charge overall.

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Which will diffuse through a membrane more rapidly, co or n2? assume that the samples contain only the most abundant isotopes of each element, 12c, 16o, and 14n?

Answers

I think the answer for the above question is none.  The two gases will diffuse at the same rate; simply because they have the same molecular mass. N2 = 28 g and CO = 28 g. From the Graham's law, the rate of diffusion of a fixed mass of a gas is inversely proportional to the square root of its molecular mass. The heavier the gas is the lower the rate of diffusion and vicevarsa. 

Answer: Both will diffuse at the same rate

Explanation:

According to Graham's law, the rate of diffusion is inversely proportional to the square root of the relative molecular mass of the gases. The two gases, carbon II oxide and nitrogen gas has the same relative molecular mass (28). This implies that they must diffuse at the same rate through an membrane.

was the supernova named after kepler becausae he was the first person to see it

Answers

Hi, the super nova was named after Johannes Kepler because he was the first person to discover it. He discovered it in 1604.

The o-to-o-to-o bond angle in an ozone (o3) molecule is not exactly 120° because

Answers

There is an extra pair of electrons bound to the central oxygen. This set of electrons repels against the other electrons surrounding the outside oxygen molecules, compressing the bond angle more than if another atom were present in its place. The actual angle size is around 116 degrees, noticeably smaller than the 120 degrees present in a trigonal planar structure.

Final answer:

The bond angle in ozone is not exactly 120° due to electron pair repulsion and resonance structures, which cause deviations from the expected angle as explained by valence bond theory and hybridization.

Explanation:

The o-to-o-to-o bond angle in an ozone (O3) molecule is not exactly 120° because of the effects of electron pair repulsion and the molecule's resonance structure. Unlike a perfect equilateral triangle where angles are 120° due to identical bonding situations, in ozone, there are lone electron pairs on the central oxygen atom that push against the bonding pairs, causing a deviation from the expected angle. Additionally, the resonance structures contribute to an unequal distribution of electron density, further altering the bond angles.

Valence bond theory and hybridization explain that bonding in such molecules deviates from simple p-orbital overlap that would predict a 120° angle. Instead, these molecules adopt shapes that minimize the repulsion between electron pairs, which in case of water, leads to a bond angle of 104.5°, despite predictions of a 90° angle from unhybridized p-orbitals.

a 45.0-ml sample of nitric acid solution is neutralized by 119.4 ml 0.200M NaOH solution. What is the molarity of the nitric acid solution?

Answers

The molarity  of nitric  acid  solution  is = 0.53M

calculation

calculate the  moles   of NaOH

moles =  molarity  x volume
= 119.4  x0.200 =  23.88 moles

write the   equation for reaction

NaOH  +HNO3  = NaNO3  +H2O

by  use of mole  ratio  between  NaOH  to  HNO3   which is 1:1  the  moles of HNO3  is also = 23.88 moles

molarity = moles/volume

23.88/45  =  0.53 M

The net ionic equation for the reaction between aqueous nitric acid and aqueous sodium hydroxide is ________. h+ (aq) + na+ (aq) + oh- (aq) → h2o (l) + na+ (aq) h+ (aq) + hno3 (aq) + 2oh- (aq) → 2h2o (l) + no3- (aq) h+ (aq) + oh- (aq) → h2o (l) hno3 (aq) + naoh (aq) → nano3 (aq) + h2o (l) hno3 (aq) + oh- (aq) → no3- (aq) + h2o (l)

Answers

HNO3+NaOH ----> H2O
H⁺ +NO3⁻+Na⁺+OH⁻ ---> Na⁺ +NO3⁻ +H2O
H⁺ (aq)+OH⁻(aq)----> H2O(l)
Final answer:

The net ionic equation for the reaction between aqueous nitric acid and aqueous sodium hydroxide is H+ (aq) + OH- (aq) → H2O (l). It represents a neutralization reaction, where hydrogen ions from the nitric acid and hydroxide ions from sodium hydroxide react to form water.

Explanation:

The net ionic equation for the reaction between aqueous nitric acid (HNO3) and aqueous sodium hydroxide (NaOH) is an example of a neutralization reaction, where an acid and a base react to form water and a salt. The general complete ionic equation would be: HNO3(aq) + NaOH(aq) → NaNO3(aq) + H2O(l). However, to obtain the net ionic equation, you only include the species that undergo a chemical change, which are the hydrogen ions (H+) from the nitric acid and the hydroxide ions (OH-) from the sodium hydroxide. Thus, the net ionic equation becomes: H+ (aq) + OH- (aq) → H2O (l).

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The total amount of living tissue within a given trophic level is called the select one:
a. organic mass.
b. trophic mass.
c. energy mass.
d. biomass.

Answers

Answer is D- biomass

Biomass indicates that how does the energy flow within tropic levels. It is the amount of energy that a tropic level has consumed. That can be shown in a biomass pyramid. Second tropic level gets the 10% percent of energy from the first tropic level's biomass. Hence from bottom to top levels of the food chain, the biomass decreases.
Final answer:

The correct term for the total amount of living tissue within a given trophic level is biomass. It encompasses the weight of all living organisms within an ecosystem or a specific trophic level. The answer to the student's query is thus d. biomass.

Explanation:

The total amount of living tissue within a given trophic level is referred to as the biomass. Biomass can be considered as the weight of all living organisms within a particular ecosystem or at a specific trophic level. This includes animals, plants, microorganisms and all other living things. For example, in a forest ecosystem, the biomass includes everything from the massive trees to the tiny fungi and bacteria within the soil. Therefore, the answer to the student's question is d. biomass.

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What is the total pressure of a gaseous mixture that contains three gases with partial pressures of 0.845 atm, 120 torr and 210 mm hg? 972 torr 0.411 atm 331 torr 1175 torr?

Answers

partial pressure is the pressure that is exerted by individual gases. 
Partial pressure is calculated as the product of total pressure by the mole fraction of the corresponding gas. 
pressures exerted by gases are in three different units, therefore we can convert them all into a common unit - torr
1 - 0.845 atm - 0.854 atm x 760 Torr/atm = 642 torr
2 - 120 torr
3 - 210 mmHg - 1 mmhg is almost equivalent to 1 torr - therefore its 210 torr
total pressure - 642 + 120 + 210 = 972 torr

answer is 972 torr

Calculate the molality of a solution containing 257 g glucose (c6h12o6) dissolved in 1.62 l of water. assume a density of 1.00 g/ml for water.

Answers

molality is defined as the number of moles of solute in 1 kg of solvent.
since density and volume has been given we can calculate the mass of water
mass = density x volume
mass = 1.00 g/mL x 1620 mL = 1620 g
number of moles of glucose - 257 g / 180 g/mol = 1.43 mol
number of moles of glucose in 1620 g - 1.43 mol
therefore number of moles in 1000 g - 1.43 mol / 1.620 kg = 0.883 mol/kg
therefore molality is 0.883 mol/kg

Final answer:

The molality of a glucose solution with 257 g of glucose dissolved in 1.62 L of water is 0.880 mol/kg. This is determined by converting the mass of glucose to moles and then dividing by the mass of the water in kilograms.

Explanation:

To calculate the molality of the glucose solution, we need to know the amount of solute (glucose) in moles and the mass of the solvent (water) in kilograms. The molecular weight of glucose (C6H12O6) is 180.16 g/mol.

First, convert the mass of glucose to moles:


(257 g glucose) / (180.16 g/mol) = 1.426 mol glucose

Next, since the density of water is assumed to be 1.00 g/mL, we use that to find the mass of the water:


(1.62 L water) (1000 mL/L) (1.00 g/mL) = 1620 g water = 1.62 kg water

Now, we can calculate the molality (m):


m = mol solute / kg solvent = 1.426 mol / 1.62 kg = 0.880 mol/kg

The molality of the glucose solution is 0.880 mol/kg.

According to the Arrhenius theory a substance that yields hydrogen ions as the only ion in an aqueous solution is

Answers

According to the Arrhenius theory a substance that yields hydrogen ions as the only ion in an aqueous solution is Acid.

What are acids?

Acids are those substances which are having pH range from 0 to 7.

According to the Arrhenius theory of acid and base, acids are those compounds which donate H⁺ ion or proton in the aqueous medium and bases are those substances which donate OH⁻ ion in the aqueous medium.

Example of Arrhenius acids are HCl, CH₃COOH, HNO₃, etc.

Hence, those substance which yields H⁺ ions is acids.

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Which example best demonstrates the benefit of understanding physical properties?

Engineers can design safer structures because they understand flammability of building materials

Engineers can design better bridges because they know how metal changes shape

Scientists can easily classify mixtures of unknown substances

Scientists can predict how well two substances will react

Answers

I'd assume the second one because all the others deal with a chemical property. Not 100% sure. Please let me know. :)

Answer:  Engineers can design better bridges because they know how metal changes shape.

Explanation:  Physical Properties are those properties which are also regarded as observable because they can be easily seen or observe through naked eyes like melting point etc.

These are those properties which do not change chemical identity of the species.

Thus out of the given options, only physical property is the change of shape of metal.

And the rest one represents the chemical property as chemical property are the one which changes the chemical identity of the substance.

Explain how a catalyst affects the activation energy for a chemical reaction

Answers

Answer: it decreases the activation energy for a chemical reaction.

Explanation:

Activation energy is the extra energy that must be supplied to reactants in order to cross the energy barrier and thus convert to products.

A catalyst is a substance which increases the rate of a reaction by taking the reaction through a different path which involves lower activation energy and thus more molecules can cross the energy barrier and convert to products.

The catalyst itself does not take part in the chemical reaction and is regenerated as such at the end.

Final answer:

A catalyst plays a key role in reducing the activation energy for a chemical reaction by providing an alternative reaction pathway that requires less energy. Because of this reduction in energy, the reaction can proceed more rapidly. The catalyst itself is not consumed in the reaction and can be used again.

Explanation:

A catalyst works by providing an alternative reaction pathway that requires less energy, thus decreasing the activation energy for a chemical reaction. In other words, it helps to speed up the reaction by lowering the energy needed for it to occur.

Let's take the example of a hypothetical reaction, 'A + B → AB'. Without a catalyst, this reaction might require a high activation energy, prohibiting the reaction from occurring under typical circumstances. However, with a catalyst, the reaction might proceed with an intermediate step 'A+C → AC → AB + C'. In this example, 'C' is the catalyst and 'AC' is the intermediate step; each individual step needs less energy than the original reaction, thus lowering the overall activation energy.

It's important to note that catalysts do not change the total energy of the reactants or the product; they just make it quicker for the reaction to reach the product stage. After the reaction, the catalyst is not consumed and can be used again for the same reaction.

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In the reaction: pb + 2ag+ → pb2+ + 2ag, the oxidizing agent is

Answers

With reference to present question, following things may be noted
1) Oxidation is process of lose of electron. Atom//ion undergoing oxidation is refereed as reducing agent
2) Reduction is process of gain of electron. Atom/ion undergoing reduction is refereed as oxidizing agent.

in present system, Ag+ gain an electron to reduced to Ag. Therefore, Ag+ is an oxidizing agent. 

Answer: The oxidizing agent for the given reaction is Silver.

Explanation:

Oxidizing agent is defined as the agent which helps the other substance to get oxidized and itself gets reduced. It undergoes reduction reaction in which a substance gains electrons. The oxidation state of this substance gets reduced and the substance gets reduced.

Reducing agent is defined as the agent which helps the other substance to get reduced and itself gets oxidized. It undergoes oxidation reaction in which a substance looses its electrons. The oxidation state of this substance gets increased and the substance gets oxidized.

For the given chemical reaction:

[tex]Pb+2Ag^+\rightarrow Pb^{2+}+2Ag[/tex]

The half reactions for the given above chemical reaction is:

Oxidation half reaction:  [tex]Pb\rightarrow Pb^{2+}+2e^-[/tex]

Reduction half reaction: [tex]2Ag^++2e^-\rightarrow 2Ag[/tex]

As, lead is loosing electrons. So, it is getting oxidized and is considered as a reducing agent and silver is gaining electrons. So, it is getting reduced and is considered as an oxidizing agent.

Thus, the correct answer is silver.

This is a specific type of dipole-dipole force that exists between molecules with hydrogen atoms and molecules with nitrogen, oxygen or fluorine atoms

Answers

Answer:  This description refers to:  "hydrogen bonding" .
______________________________________________________

         
 Hydrogen bonding   is a specific type of "dipole-dipole force" that exists between  [molecules with hydrogen atoms]  and  [molecules with nitrogen, oxygen, or fluorine atoms.] .
______________________________________________________

Answer:

This is a specific type of dipole-dipole force is known as Hydrogen bonding.

Explanation:

Hydrogen bonding (H-bonding) is an intermolecular force having partial ionic-covalent character. H-bonding takes place between a hydrogen atom attached with an electronegative atom( like : O, N and F) and lone pairs of electrons on an neighboring atoms.

Generally this type of bonding is observed where atoms like nitrogen , oxygen, fluorine attached to another molecule are present in neighbors of a hydrogen atom attached to other molecule. This bonding arises due to the interaction between the  developed partial positive and negative charges on the hydrogen and electronegative atoms.

In general as the similarity of the structure between solvent and solute increases the solubility does what

Answers

the intermolecular forces of attraction between solute and solvent

Given the balanced equation: 3fe3+(aq) + al(s) → 3fe2+(aq) + al3+(aq)what is the total number of moles of electrons lost by 2 moles of al(s)?

Answers

Answer is: the total number of moles of electrons lost by two moles of aluminium are six moles (6 mol).
Oxidation half reaction: Al° → Al³⁺ + 3e⁻, lost of electrons.
Reduction half reaction: Fe³⁺ + e⁻→ Fe²⁺ /·3; 3Fe³⁺ + 3e⁻→ 3Fe²⁺; gain of electrons.
One mole of aluminium lost 3 moles of electrons, so 2 moles of alumiunim:
2 · 3 mol = 6 mol.

What is MC2 minus 8?

A. MC2
B. 4
C. 9
D. None of the above

Answers

It’s B , I guess..Good afternoon!

Answer:

d

Explanation:

How can i use gland and hormone in a same sentence.?

Answers

You can go like bla..bla.. Gland produces bla.. Bla... Hormone.

What role did gravity play in the formation of our solar system?

Answers

Answer:

Gravity helped to hold things in orbit and create the planets.

Explanation:

Scientist believe that the solar system started in a similar way to stars, from a nebula. They say that the it was a cloud of dust and gas called a nebula that contained mostly hydrogen and helium leftover from the "Big Bang"(which I have my arguments about.) They also say there were heavier elements. Gravity caused the nebula to shrink. As the nebula became smaller it had a rotation. As it got smaller it began to spin faster. The planets were formed by materials cooling off. As they were cooling off they began to clump together. Clumps collided with each other to make a bigger clump. Larger clumps would attract smaller clumps with their gravitational pull. Eventually the clumps started to form the planets and moons in today's solar system.

What is the role of the activated complex in a chemical reaction?

Answers

the activated complex is the intermediate between reactants and products in a chemical reaction

If the number of particles in a mole is 6.022x1023, what is the total mass of 1.81×1024 particles of nitrogen gas (N2)?
A. 42 g
B. 4.2 g
C. 84 g
D. 8.4 g

Answers

 the total mass  of 1.81 x10^24  particle  nitrogen  gas  is calculated as follows

find the moles of nitrogen

1 moles = 6.022 x10 ^23  particles
what about 1.81 x10^23 =? moles

= (1.81 x10^ 24)/(6.022 x10^23) = 3 moles

mass = moles x molar mass of nitrogen gas = 14 x2 = 28 g/mol

= 3  moles x28 g/mol = 84 grams

Answer:

56 g

Explanation:

The complete combustion of which of the following substances produces carbon dioxide and water?



-CO


-Na2CO3


- MgCl2


-C4H10

Answers

Answer:
            The complete combustion of CH₁₀ produces carbon dioxide and water.

Explanation:
                   Hydrocarbons when heated in the presence of Oxygen produces CO₂ and H₂O along with heat. The reaction of Butane with oxygen is as follow,

                            C₄H₁₀  +  5 O₂    →    4 CO₂  +  2 H₂O

So, 1 mole of Butane reacts with 5 moles of oxygen and produces 4 moles of Carbon dioxide and 2 moles of water along with heat.
D. C4H10 Is your answer. Hope I helped! :)

During which of the following processes does a glucose molecule break down into ethanol? Aerobic respiration, Alcoholic fermentation, Lactic acid fermentation, Photosynthesis

Answers

alchoholic fermentation

Answer:

Alcoholic fermentation

Explanation:

Alcoholic fermentation is an anaerobic process executed by yeasts, molds and some bacteria, which cause chemical changes in organic substances.

Alcoholic fermentation has the biological function of supplying energy to microorganisms in the absence of oxygen. To achieve this, the glucose molecules are dissociated and in this way the energy required to survive is obtained, producing ethanol and CO2 as products.

When a solid is formed from the combination of two solutions of ionic compounds it is called?

Answers

The answer is Precipitation.   When a solid is formed from the combination of two solutions of ionic compounds it is called Precipitation.

mole used in a chemistry sentence

Answers

One mole of NaOH (Sodium hydroxide) is equal to 39.997 grams of NaOH. 
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