Question 4 (5 points)
Which of the following statements about the partial charge in the compound CIF is
correct?
O
F will have a partial negative charge, and CI will have a partial positive charge.
OF and Cl will have partial positive charges.
OF and Cl will have partial negative charges.
F will have a partial positive charge, and CI will have a partial negative charge.

Answers

Answer 1

Answer:

Explanation:

the second option I believe


Related Questions

What kind of laws with respect to how criminals may or may not vote are on the books in Maine and Vermont?
A. Offenders lose their right to vote permanently.
Parolees can vote but those on probation cannot.
Convicted felons can vote after meeting special requirements.
Convicts can vote while they are still incarcerated
B.
C.
D.
Reset
Next

Answers

Offenders loose their right to vote permanently

How many moles of hydrogen atoms are in 7.10 moles of water?

Answers

Answer:

3 atoms

Explanation:

there are 2 atoms of hydrogen and 1 atom of oxygen

the atomic masses of nitrogen-14, titanium-48, and xenon-129 are 13.999234 amuamu , 47.935878 amuamu , and 128.904779 amuamu , respectively. part a calculate the nuclear masses of all three isotopes.

Answers

a). the nuclear masses of nitrogen-14 is 14.11154 amu

b). the nuclear masses of titanium-48 is 48.38523 amu

c). the nuclear masses of xenon-129 is 130.042455 amu

Define nuclear mass.

The formula for calculating nuclear mass is M=ZM (p)+(A-Z)M (n), where M (p) and M (n) refer to the mass of protons and neutrons, respectively. Nuclear mass is the total mass of all the nucleons represented inside the nucleus.

a). Given, atomic mass of 7N14= 13.999234 amu

We, know

Mass of proton= 1.00727 amu

Mass of neutron= 1.008665 amu

A nucleus contains only neutron and proton. N14 nucleus contains 7 protons and 7 neutrons that is 14 nucleons.

Therefore, the total mass of protons and neutrons= nuclear mass

= (7*1.00727 amu) + (7*1.008665 amu)= 14.11154 amu

b). Given, atomic mass of 22Ti48= 47.935878 amu

We, know

Mass of proton= 1.00727 amu

Mass of neutron= 1.008665 amu

A nucleus contains only neutron and proton. N48 nucleus contains 22 protons and (48-22) =26 neutrons that is 48 nucleons.

Therefore, the total mass of protons and neutrons= nuclear mass

= (22*1.00727 amu) + (26*1.008665 amu)= 48.38523 amu

c). Given, atomic mass of 54Xe129= 128.904779 amu

We, know

Mass of proton= 1.00727 amu

Mass of neutron= 1.008665 amu

A nucleus contains only neutron and proton. N48 nucleus contains 54 protons and (129-54) =75 neutrons that is 129 nucleons.

Therefore, the total mass of protons and neutrons= nuclear mass

= (54*1.00727 amu) + (75*1.008665 amu)= 130.042455 amu

Therefore, a). the nuclear masses of nitrogen-14 is 14.11154 amu

b). the nuclear masses of titanium-48 is 48.38523 amu

c). the nuclear masses of xenon-129 is 130.042455 amu.

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A 25-gram block of Aluminum has an initial temperature of 35 degrees Celcius. What will be the final temperature of the aluminum block with the addition of 503.38 Joules of heat?

Answers

The final temperature of aluminum is 57.37°C
Q=mcΔT
This means that the amount of energy produced is equal to the mass of the system multiplied by its change of temperature and multiplied by its specific heat
ΔT=(x−27.5) °C
503.38 = 25 × 0.9 × (x - 35)
(x - 35) =  503.3 / 25 × 0.9
x = 57.37°C
What is specific heat constant?
The specific heat capacity c [J/(kg K)] of tissue describes how much energy is required to change the temperature of 1 kg of tissue by 1 K (=1°C). For example, the lower specific heat capacity of fat compared to other soft tissue indicates, that fat requires less energy to obtain a certain temperature increase. If we multiply specific heat capacity by mass density (ρ·c [J/(m3 K)]), we obtain the energy required to raise the temperature of 1 m3 of tissue by 1 K (=1°C)—that is, a quantity equivalent to a volume-specific heat capacity
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Which does not explain the frontier ethic?


A.
harmony with nature


B.
human control of nature


C.
unlimited resources


D.
no natural laws

Answers

Frontier ethics explains that nature has an unlimited supply of resources. So, humans can use natural materials limitlessly. These ethics are sometimes considered as human interference in the matter of natural resources and the environment.  Harmony with nature is not possible if human will follow frontier ethics.  

Human manages and controls the natural environment. Human consumption of resources in unlimited ways was also discussed in frontier ethics. Natural laws are not followed in frontier ethics. According to frontier ethics, human development and economic growth are the most important issues.

In short, human attitudes and behavior toward nature are not so good. Here, humans are not much concerned about environmental problems. They only value their needs and desires.  

Therefore, the correct answer is (A).

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1. Describe an example of a physical change
or chemical change that is endothermic
and a physical or chemical change that is
exothermic.

GIVING BRAINLIEST

Answers

Answer:

Endothermic - Ice cubes absorbing the heat around them to melt into water.

Exothermic - Candle burning giving off heat into the atmosphere.

52.6 g sample of granite initially at 125°C was added to a coffee cup Killorin mentor the calorimeter held 100 mL of water at 20°C what will be the final temperature in the calorimeter

Answers

The final temperature of the granite and the water in the calorimeter is 8.4°.

What is the final temperature?

We know that in accordance to the first law of thermodynamics, energy is neither created nor destroyed but it can be converted from one form to another. This implies that the heat that is lost by the granite has to be equal to the heat that is gained by the water in this case.

Knowing that;

H = mcdT

H = heat lost or gained

c = specific heat capacity of the substance

dT = temperature change

Heat lost by the granite = Heat gained by water

52.6 * 0.79 * (θ - 125) = 100 * 4.18 * (θ - 20)

41.6θ - 5200 = 418θ - 8360

Collecting the like terms

41.6θ  - 418θ =  - 8360 + 5200

-376.4θ =  -3160

θ = -3160/-376.4

θ = 8.4°

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what volume of I2 gas forms when 21 L Cl2 reacts at STP

Answers

At STP, the volume of one mole of any gas is 22.4 L. As per the given reaction, one mole or 22.4 L of Cl₂ gas gives one mole or 22.4 L of I₂ gas. Thus, 21 L of  Cl₂ gives 21 L of I₂ gas.

What is molar volume?

The volume occupied by one mole of a substance is called its molar volume. At standard temperature and pressure condition (STP), one mole of every substance contains 22.4 L .

One mole of Cl₂ gas at STP contains 22.4 L similarly one mole of I₂ contains 22.4 L. As per the reaction, one mole of Cl₂ give one mole of l₂. Thus, both are having equal volumes in this reaction.

Therefore, 21 L Cl₂ reacts to give 21 L l₂ at STP .

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Answer: 21 L i2 at STP

Explanation:

One mole of Cl₂ gas at STP contains 22.4 L similarly one mole of I₂ contains 22.4 L. As per the reaction, one mole of Cl₂ give one mole of l₂. Thus, both are having equal volumes in this reaction.

Therefore, 21 L Cl₂ reacts to give 21 L l₂ at STP .

Ni+2Cl2=NiCl4
Then, write balanced half-reactions describing the oxidation and reduction that happen in this reaction.

Answers

The oxidation reaction: Ni → Ni⁴⁺ + 4e.

The reduction reaction: 2Cl₂ + 4e → 4Cl⁻.

What is Redox Reaction?

Redox or Oxidation-Reduction processes usually involve simultaneous oxidation and reduction reactions. In a chemical reaction, the material that is being reduced is referred to as the reducing agent, while the substance that is being oxidised is the oxidising agent.

The mentioned reaction: Ni + 2Cl₂ → NiCl₄.

It is an oxidation-reduction reaction comes from two half reactions.

The oxidation reaction: in it Ni losses 4 electrons and is oxidized to Ni⁴⁺ according to the reaction:

Ni → Ni⁴⁺ + 4e.

The reduction reaction: every molecule of Cl₂ will gain 2 electrons and is reduced to 2Cl⁻ according to the reaction:

2Cl₂ + 4e → 4Cl⁻.

The summation of the two-half reactions will give the reaction:

Ni + 2Cl₂ → NiCl₄.

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A 14.01 g sample of N2 reacts with 5.02 g of H2 to form ammonia (NH3). If ammonia is the only product, what mass of ammonia is formed?

Answers

The mass of ammonia formed if it were to be the only product would be 17 grams.

Stoichiometric problem

Nitrogen gas reacts with hydrogen gas to form ammonia gas according to the following balanced equation:

[tex]N_2 + 3H_2 --- > 2NH_3[/tex]

From the balanced equation of the reaction, the mole ratio of nitrogen to hydrogen gas is 1:3.

Recall that, mole = mass/molar mass

Thus, 14.01 g of nitrogen gas would be:

   14.01/28.02 = 0.5 mol

5.02 g of hydrogen gas would be:

   5.02/1.01 = 5.0 mol

Since the mole ratio from the balanced equation is 1:3, 0.5 mol nitrogen should require 1.5 mol hydrogen. In other words, 5.0 mol hydrogen is excess while 0.5 mol nitrogen is the limiting reactant.

The mole ratio of nitrogen to the ammonia produced is 1:2. Thus, the equivalent mol of ammonia gas produced would be:

0.5 x 2 = 1 mol

Mass of 1 mol ammonia = 1 x 17

                                        = 17 grams

Thus, the mass of ammonia gas that will be formed from 14.01 g sample of nitrogen gas and 5.02 sample of hydrogen gas would be 17 grams.

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assign the protons in the nmr spectrum below. for each peak, list the peak location in ppm, and the protons responsible for it (labeled a-e in the structure). isoamyl acettate

Answers

List the peak location in ppm, and the protons responsible for it labeled a-e in the structure is banana oil.

What is ppm ?

Reduction, which involves the exchange of electrons between species, is the process of gaining electrons or reducing an element's oxidation state in a chemical reaction. When the chemical reaction known as reduction occurs, the number of electrons that are bound to a single atom or a group of related atoms rises.

What is protons ?

Positively charged subatomic particles called protons fall into this category. The strong nuclear force is responsible for the protons' interconnection in an atom's nucleus. Subatomic particles without charge include neutrons (they are neutral).

Therefore, list the peak location in ppm, and the protons responsible for it labeled a-e in the structure is banana oil.

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Which of the following substances is formed from the remains of plants and animals?

A. Natural gas B. Petroleum C. Coal D. Water gas E. all except

Answers

Answer:

E. all except

Explanation:

All except Water gas

The substances are formed from the remains of plants and animals are fossil fuels. Therefore, option E is correct.

What are fossil fuel ?

An extracted and burned fossil fuel is a hydrocarbon-containing substance that naturally originated in the Earth's crust from the remains of extinct plants and animals. Coal, oil, and natural gas are the three primary fossil fuels.

Animal and plant remains are used to create fossil fuels. Coal, petroleum (oil), and natural gas are some of them. They are energy sources made of accumulated fossils of living things that were buried millions of years ago.

Microbes that break down the corpses of plants and animals, such as bacteria and fungi, are referred to as saprotrophs or decomposers. Saprotrophs separate these residues into organic and inorganic substances as they decompose them.

Thus, option E is correct.

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Step 1:H2(g)+ICl(g)→HI(g)+HCl(g)(slow)Step 2:HI(g)+ICl(g)→HCl(g)+I2(g)(fast)The reaction is carried out at constant temperature inside a rigid container. Based on this mechanism, which of the following is the most likely reason for the different rates of step 1 and step 2 ?

Answers

H2(g)+2ICl(g) → 2HCl(g)+I2(g)H2(g)+2ICl(g)→2HCl(g)+I2(g)

rate=k[HI][ICl]

What is Rate of Reaction?

The pace at which the products are created from the reactants in a chemical reaction is referred to as the rate of reaction. It provides some understanding of how quickly a response might occur. For instance, the combustion of cellulose in fire has a very rapid response rate and is finished in a fraction of a second.

The pace at which reactants change into products is known as the rate of reaction or reaction rate. It goes without saying that the pace at which chemical reactions take place varies greatly. While certain chemical reactions occur almost instantly, others often take time to achieve their ultimate equilibrium.

Rate of reaction=Amount of reactant used/Time taken for the                           consumption of the reactant

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Explain why an object might be classified as having a negative electrostatic charge.

Answers

A negative charge indicates that an item contains more electrons than protons, that's why an object might be classified as having a negative electrostatic charge.

What is negative electrostatic charge?

An item has an excess of electrons and is considered to have a negative charge when it obtains electrons. When an item loses electrons, it is considered to have a positive charge because it lacks electrons. Static electricity is the accumulation of electric charges.

Transferring electrons to or taking them away from an item produces an electrical charge. When electrons are introduced to an item, it acquires a negative charge due to the negative charge of electrons.

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Please explain using Newton’s Laws of Motion (All of them) what happens when a car hits an SUV on the street, given that the first vehicle (car) is moving, while the second vehicle (SUV) is standing still. You may decide which way the SUV moved and how it hits the car, but you have to explain this in this assignment.

Answers

According to Newton's second law, force equals mass multiplied by acceleration. As a result, in a car accident, the force exerted by the vehicle and its occupants decreases as the time required for the vehicle to stop increases.

What is Newton's second law?

We clearly observed in the Exploration that when two cars collide, each feels a force from the other.

According to Newton's third law, when one object exerts a force on another, the second object feels an equal and opposite force exerted by the first object. This is very clear in the two-object collision.

The force with which your body is struck in a collision is referred to as crash force. Crash force is equal to your body weight multiplied by the vehicle's speed.

Newton's second law states that force equals mass multiplied by acceleration. As a result, the force exerted by the vehicle and its occupants in a car accident decreases as the time required for the vehicle to stop increases.

Thus, this way it hits the car.

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As volume increases pressure decreases?

Answers

Answer: true

Explanation:

Boyle's Law states both that as volume increases pressure decreases and that as pressure increases volume decreases. Explanation: Boyle's Law states that pressure and volume are inversely proportional, but also assumes that the material is a confined gas (so no amount of gas increases or decreases) and the temperature remains steady.

What process is being shown in this diagram?
precipitation
metathesis
dissolution
combustion

Answers

Answer:

dissociation

correct answer mark brainliest

Dissociation

This is the correct answer

Suppose you discovered a mutant yeast whose glycolytic pathway was shorter because of the presence of a new enzyme catalyzing the reaction: NAD NADH + H" Glyceraldehyde 3-phosphate + Hz 3-phosphoglycerate Would shortening glycolysis in this way be beneficial to the cell? Why or why not?

Answers

A mutant yeast whose glycolytic pathway was shorter because of the presence of a new enzyme catalyzing the reaction: Glyceraldehyde 3-phosphate + H₂O + NAD⁺→ NADH + H⁺ + 3-phosphoglycerate  will shortening glycolysis and wouldn't benefit the cells (anaerobic cells) because ATP isn't being produced and energy gain will be equal to 0.

What are glycolysis and cellular respiration?

Using oxygen and the chemical energy from food, a cell can manufacture energy in the form of ATP through a sequence of chemical reactions known as cellular respiration.

The initial stage in the process of cellular respiration is glycolysis, which is also the only step in anaerobic respiration.

Additionally, the anaerobic processes that generate ATP from glyceraldehyde 3-phosphate (G3P) depend on the enzymes phosphoglycerate kinase and pyruvate kinase.

Anaerobic cells won't benefit from these enzyme mutations because they will impair ATP generation.

In conclusion, because ATP isn't being created and energy gain will be equal to zero, reducing the glycolytic pathway won't help the cells (anaerobic cells).

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For a radical addition reaction involving HBr and propene, sort each reaction step into the following categories: CH3CH=CH2 + HBr CH3CH2CH2Br

Answers

Answer:

Explanation: Breaking double bond and adding HBr with a catalyst as hydrogen peroxide.

which of the following is a disadvantage of using a lithium ion (li-ion) battery over a nickel metal hydride (nimh) battery?

Answers

The price of lithium ion batteries is a significant drawback. They typically cost about 40% more to produce than nickel-cadmium cells.

What applications does lithium have?

Rechargeable batteries for cell phones, computers, digital cameras, and electric vehicles are the most significant applications for lithium. Many non-rechargeable batteries for devices like heart pacemakers, toys, and clocks also include lithium.

Whose lithium deposits are the largest?

With 8 million tons, Chile possesses the largest known lithium resources in the world. In comparison, Russia (1.2 million tons), Australasia (2.7 million tons), and Argentina (2 metric tons) are all ahead of the South American country (1 million tons). Compared to the rest of Europe, Portugal has fewer of the expensive raw materials.

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relationship between electron geometry, molecular geometry, orbital hybridization and molecular polarity

Answers

The relationship between electron geometry, molecular geometry, orbital hybridization, and molecular polarity is:

Hybridization affects molecular geometry because a molecule's geometry depends on the number of s and p orbitals of a molecule. The orbital hybridization also affects the positions of electron groups and the lone pairs, which affects the electron geometry and the molecular polarity as well.

How do electron geometry, molecular geometry, orbital hybridization, and molecular polarity correlate?

These 4 aspects have a significant role in the characteristic of a molecule:

Electron geometry, which is the arrangement of electron pairs around the central atom.Molecular geometry, which is the structure that represents the arrangement of atoms in a molecule.Orbital hybridization, which is the redistribution of energy of an atom into the orbitals.Molecular polarity, which is the distribution of the electron clouds across the atoms within a molecule.

Orbital hybridization is the key to the other aspects. By determining an atom's s and p hybridization, we can analyze the molecular geometry. For example, an sp³ atom has tetrahedral geometry. Molecular geometry depends on the electron arrangement in atoms and molecules. The electron arrangement defines the electron clouds and affects the molecular polarity as well.

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the empirical formula and molar mass of several compounds are listed. find the molecular formula of each compound. a. c6h7n, 186.24 g>mol

Answers

The molecular formula of C₆H₇N is  C₁₂H₁₄N₂; C₂HCl is C₆H₃Cl₃; C₅H₁₀NS₂ is C₁₀H₂₀N₂S₄

The molecular formula can be calculated from the empirical formula and molar mass as follows:

C₆H₇N

first we know that  the number of moles = subscript

So,

C has 6 moles

H has 7 moles

N has 1 mole

then we can Multiply moles by atomic mass to find molecular weight

therefore,

C = 6 × 12 =72

H =7 × 1 = 7

N = 1 × 14 = 14

to get the empirical weight we calculate by adding molecular weight

C+H+N = 72+7+14= 93

we know that molecular formula is (empirical formula )n

so we should find n by Divide molar mass by the empirical weight

186.24 ÷ 93 = 2

so molecular formula of C₆H₇N is (C₆H₇N)2 = C₁₂H₁₄N₂

C₂HCl

first we know that  the number of moles = subscript

So,

C has 2 moles

H has 1 moles

Cl has 1 mole

then we can Multiply moles by molar mass to find molecular weight

therefore,

C = 2 × 12 = 24

H = 1 × 1 = 1

Cl = 1 × 35.5 = 35.5

to get the empirical weight we calculate by adding molecular weight

C+H+Cl = 24+1+35.5 = 60.5

we know that molecular formula is (empirical formula )n

so we should find n by Divide molar mass by the empirical weight

181.44 ÷ 60.5 = 3

so molecular formula of C₂HCl is (C₂HCl)3 = C₆H₃Cl₃  

C₅H₁₀NS₂

first we know that  the number of moles = subscript

So,

C has 5 moles

H has 10 moles

N has 1 mole

S has 2 moles

then we can Multiply moles by atomic mass to find molecular weight

therefore,

C = 5 × 12 = 60

H = 10 × 1 = 10

N = 1 × 14 = 14

S = 2 × 32 =64

to get the empirical weight we calculate by adding molecular weight

C+H+N +S = 60+10+14 +64 = 148

we know that molecular formula is (empirical formula )n

so we should find n by Divide molar mass by the empirical weight

296.54 ÷ 148 = 2

so molecular formula of C₅H₁₀NS₂ is (C₅H₁₀NS₂)2 = C₁₀H₂₀N₂S₄

Your question is incomplete but most probably your full question was

From the given empirical formula and molar mass, find the molecular formula of each compound. C₆H₇N, 186.24 g/mol C₂HCl, 181.44 g/mol C₅H₁₀NS₂,296.54 g/mol

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. For a particular liquid, raising its temperature from 298 K to 318 K causes its vapor pressure to
double. What is the enthalpy of vaporization of this liquid? (R = 8.31 J/(K- mol))
115 kJ/mol
288 kJ/mol
27.3 kJ/mol
2.53 kJ/mol
270 kJ/mol
a)
b)
c)
d)
e

Answers

Answer:

he enthalpy of vaporization is 27.3 kJ/mol. The correct answer is therefore (C) 27.3 kJ/mol.

Explanation:

To find the enthalpy of vaporization, we can use the Clausius-Clapeyron equation, which relates the vapor pressure of a liquid to its enthalpy of vaporization. The equation is given by:

ln(P2/P1) = (delta Hvap / R) * (1/T1 - 1/T2)

where P1 and P2 are the vapor pressures at temperatures T1 and T2, respectively, delta Hvap is the enthalpy of vaporization, and R is the gas constant. In this case, we are given that the vapor pressure doubles when the temperature is raised from 298 K to 318 K, so P2 = 2 * P1. We can plug this into the equation and solve for delta Hvap to find the enthalpy of vaporization:

ln(2) = (delta Hvap / R) * (1/298 - 1/318)

delta Hvap = R * ln(2) / (1/298 - 1/318)

Plugging in the values, we get delta Hvap = 8.31 J/(K-mol) * ln(2) / (1/298 - 1/318) = 27.3 kJ/mol. The correct answer is therefore (C) 27.3 kJ/mol.

A sample of nitrogen gas is kept in a container of volume 2.3 L at a temperature of 32 degrees Celsius exerts a pressure of 4.7 atm. Calculate the number of moles of gas present.

Answers

The number of moles of gas present would be 0.43 mol.

Ideal gas equation

The ideal gas law is mathematically expressed as the ideal gas equation and is written as:

pv = nRT

Where p is the pressure, v is the volume, n is the number of moles, R is the gas constant, and T is the temperature of the gas in kelvin.

In this case, the pressure of the gas is given as 4.7 atm, the volume is given as 2.3 L, R is 0.082057 L.atm.K-1.mol-1, and the temperature is given as 32 degree Celsius.

32 degree Celsium = 32 + 273 = 305 kelvin

Making n the subject in the above equation:

n = pv/RT

  = 4.7 x 2.3/0.082057x 305

   = 10.81/25.027385

   = 0.43 mol

In other words, the number of moles of gas present in a sample of nitrogen gas kept in a container of volume 2.3 L at a temperature of 32 degrees Celsius exerts a pressure of 4.7 atm is 0.43 mol.

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which of the following allows for atp to be produced with the electron transport chain? answer acetyl-coa oh- concentration gradient h concentration gradient nad i don't know yet

Answers

The Krebs cycle produces molecules necessary for function of the electron transport chain.

What is electron transport chain ?

The oxidative phosphorylation process, also known as oxidative phosphorylation, is a comprehensive system that produces ATP by coupling redox processes through a sequence of four protein complexes known as the electron transport chain. Cellular respiration and photosynthesis both involve it in mitochondria.

What is  Krebs cycle?

The Krebs cycle, also known as the TCA cycle or the citric acid cycle, is a sequence of enzyme-catalyzed processes taking place in the mitochondrial matrix where acetyl-CoA is oxidized to produce carbon dioxide and coenzymes are reduced to produce ATP in the electron transport chain.

Therefore, the Krebs cycle produces molecules necessary for function of the electron transport chain.

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a sealed container holds 0.0135 mol CO2 gas what mass of Na2CO3 is needed to generate the CO2

Answers

The mass of Na₂CO₃ needed to generate 0.0135 mole of CO₂ is 1.431 grams

How do I determine the mass of Na₂CO₃ needed?

We'll begin by obtaining the mole of Na₂CO₃ that reacted to produce 0.0135 mole of CO₂

Na₂CO₃ + 2HCl -> 2NaCl + H₂O + CO₂

From the balanced equation above,

1 mole of CO₂ was obtained from 1 mole of Na₂CO₃

Therefore,

0.0135 mole of CO₂ will also be obtained from 0.0135 mole of Na₂CO₃

Now, we shall determine the mass of Na₂CO₃ needed for the reation. Details below:

Mole of Na₂CO₃ = 0.0135 moleMolar mass of Na₂CO₃ = 106 g/molMass of Na₂CO₃ = ?

Mole = mass / molar mass

0.0135 = Mass of Na₂CO₃ / 106

Cross multiply

Mass of Na₂CO₃ = 0.0135 × 106

Mass of Na₂CO₃ = 1.431 grams

Therefore, the mass of Na₂CO₃ needed is 1.431 grams

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Experimental data for the reaction
2NO2(g)+F2(g)→2NO2F(g)2NO2(g)+F2(g)→2NO2F(g)
are given in the table below.
[NO2](M)[NO2](M) [F2](M)[F2](M) Initial rate (M/s)(M/s)
0.100 0.100 0.026
0.200 0.100 0.051
0.200 0.200 0.103
0.400 0.400 0.411
a) Enter an expression for the reaction rate law.
Express your answers in terms of kk, [NO2][NO2], and [F2][F2].

Answers

The reaction is:  2NO2(g) + F2 (g) =2NO2F (g)

Let us consider the order of the reaction i.e., a and b with respect to NO2 and F2.

So, the rate Law is: Rate = K [NO2] a [F2] b                                       ------- (i)

Where, K is the rate law constant

Now, for experiment no. 1

Rate = 0.026 = K (0.100) a (0.100) b                                       ----------(ii)

for experiment no. 2

Rate = 0.051 = K (0.200) a (0.100) b                                       ----------(iii)

for experiment no. 3

Rate = 0.103 = K (0.200) a (0.200) b                                       ----------(iv)

for experiment no. 4

Rate = 0.411 = K (0.400) a (0.400) b                                       ----------(v)

Now, dividing equation no. – (ii) by (i), we get

0.026/0.051 = {K (0.100) a (0.100)b} / K (0.200) a (0.100) b

1/2 = (1/2) a

a = 1

Now, dividing equation no. – (iii) by (ii), we get

0.051/0.103 = {K (0.200) a (0.100) b} / K (0.200) a (0.200) b

1/2 = (1/2) b

b = 1

Hence, the rate law expression is –

Rate = K [NO2]1 [F2]1

Rate = K [NO2] [F2]

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100 POINTS HELPPP Which of these is a potential use for a beaker?
A. Obtaining reagents from the original bottle
B. Holding a liquid that evaporates fast at room temperature
C. Creating a specific concentration of a solution
D. Making specific (precise) measurements

Answers

Answer:

B. Holding a liquid that evaporates fast at room temperature

Explanation:

Beakers are useful as a reaction container or to hold liquid or solid samples. They are also used to catch liquids from titrations and filtrates from filtering operations. Laboratory Burners are sources of heat. Burets are for addition of a precise volume of liquid.

B. Holding a liquid that evaporates fast at room temperature

Which would you predict to have a higher boiling point and why?

Salt: NaCl
Sugar: C12H1801

Answers

Answer:

salt

Explanation: This is because salt (salt solution) contains more water than sugar. When it boils, the heat of the liquid water and vaporized salt combine to create a hot gas, which pressure forces out from the bottom of the container.

when looking at the carbon isotopes present in the atmosphere, scientists determined that 13c and 14c levels have decreased over time.

Answers

The use of fossil fuels is responsible for increased atmospheric CO2.

What is fossil fuel?

A fossil fuel is a hydrocarbon-containing material that forms naturally in the earth's crust from the remains of dead plants and animals, which is extracted and burned as fuel.The main fossil fuels are coal, oil and natural gas.Fossil fuels can be burned to provide heat for direct use (such as cooking or heating), to power engines (such as internal combustion engines in motor vehicles), or to generate electricity.Some fossil fuels are refined into derivatives such as kerosene, gasoline, and propane before being burned.The origin of fossil fuels is the anaerobic decomposition of buried dead organisms containing organic molecules produced by photosynthesis.Conversion from these materials to high-carbon fossil fuels typically requires a geological process lasting millions of years.

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