in the citric acid cycle (see the figure), beginning with one molecule of isocitrate and ending with fumarate, how many atp molecules can be made through substrate-level phosphorylation?

Answers

Answer 1

In the citric acid cycle , beginning with one of the molecule of isocitrate and ending with the fumarate, the ATP molecules can made through the substrate-level phosphorylation is one molecule.

In the citric acid cycle, the substrate level phosphorylation is the high energy of the phosphate group in the organic molecule. it transfers to the ADP to produces the ATP. it is the metabolic reaction and form the ATP molecules. The citric acid cycle is called as Krebs cycle also.

Thus, the number of ATP molecules form during the citric acid cycle that start with the one molecule of the isocitrate and end with the fumarate is the one molecule.

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Related Questions

QUESTION 2
An unknown compound (Compound Nomocorona) was determined to have a solubility of 30.0 in 100.0
mL of pure water at room temperature. When 30.0 grams of the compound were dissolved in 100.0 mL of
pure water, the final volume of the solution was 106.4 mL of solution. What is the m/v % concentration of
Nomocorona in the saturated solution with water?

Answers

The mass per volume concentration is obtained as 30%.

What is the m/v concentration?

We know that the concentration has to do with the amount of substance that can be found in the solution. In this case, the concentration here has been expressed as the mass per volume concentration.

If 30 g of the solid dissolves in 100 mL of the water

x g dissolves in 106.4 mL of the solution

x = 30 * 106.4/100

x = 31.92 g

The mass per volume concentration now becomes;

31.92 g/106.4 mL * 100/1

= 30%

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What type of reactions are the following problems?
10) 12 Al + 1 S8→ 4 Al₂S3
a. Single replacement
b. double replacement.
c. Synthesis/combination
d. Decomposition
e. Combustion

Answers

Answer: a

Explanation:

What is the concentration of sodium ions in 0.300 M NaNO3?

Answers

Answer:

Explanation:

In this question, we are told that we have 0.300 molar n, a n o 3. So we have a material, and our goal should be obvious to us. So we have to determine, but this item is molarity or concentration concentration. It is the molarity indirectly. So, in this scenario, we must determine the molarity or concentration of sodium ions and positive ions. So, what's the deal here? To begin, we should understand this n, a n o 3 point. It is an ionic molecule, therefore it will entirely dissociate why it will completely dissociate. We can argue that it can dissociate partially as well, but we are stating that it will dissociate fully since it is a strong acid and strong base, therefore it ferocites totally into sodium and nitrate irons. So, what happens next? We should understand molarity, which is equivalent to concentration and is denoted as a mole. So we can create this formulary in this specific scenario now fording. What we are capable of. We may state that in this situation, we have this 0.300 point. It is molarity, thus 0.300 moles of n a n o 3 are present and are dissolved in the 1 later, so n, a m o 3. We have 0.300 mole, and on differentiation, it will give us an a positive and a no 3 negative, and the concentration of these iron will also be this amount since it is a combination that is completely dissociated. So sodium concentration may be represented as moles are 0.300 divided by volume on later. As a result, it will likewise be 0.300 molar. It is a sodium iron concentration here. Hope this helps

g carbon-14 radiometric dating can be used to date organic objects up to about 50,000 years old. to determine the age of an object, the following numbers are needed.

Answers

The realistic higher restriction is set 50,000 years for the carbon dating due to the fact so little C-14 stays after nearly nine 1/2 of-lives that it could be difficult to come across and gain an correct reading, irrespective of the dimensions of the sample.

Because of the fast period of the carbon-14 1/2 of-lifestyles, carbon courting is most effective correct for objects which can be lots to tens of lots of years old. Most rocks of hobby are a good deal older than this. Geologists should consequently use factors with longer 1/2 of-lives.

For older fossils, an isotope with an extended 1/2 of-lifestyles ought to be used. For example, the radioactive isotope potassium-forty decays to argon-forty with a 1/2 of lifestyles of 1.three billion years. Other isotopes normally used for courting consist of uranium-238 (1/2 of-lifestyles of 4.five billion years) and thorium-232 (1/2 of-lifestyles 14.1 billion years).

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Oxidation Unit Test
Consider a galvanic cell with a beaker of Chromium(III) nitrate Cr(NO3)3 and a beaker of Copper(II) nitrate Cu(NO3)2-
The Chromium(III) nitrate beaker contains a strip of chromium, and the Copper(II) nitrate cell contains a strip of copper. A wire
runs between the strips. The reaction that occurs is as follows:
2Cr(s) + 3Cu² (aq) → 2Cr³+ (aq) + 3Cu(s)
In three to five sentences, list which electrode is the anode and which is the cathode and the half reactions that occur at each
electrode.
(4 points)

Answers

In this galvanic cell, the strip of chromium in the Chromium(III) nitrate beaker is the anode, and the strip of copper in the Copper(II) nitrate beaker is the cathode. At the anode, the half reaction that occurs is 2Cr(s) → 2Cr³+ (aq) + 3e-. At the cathode, the half reaction that occurs is 3Cu² (aq) + 3e- → 3Cu(s). These two half reactions combine to form the overall reaction 2Cr(s) + 3Cu² (aq) → 2Cr³+ (aq) + 3Cu(s).

Oxidation Unit Test

1. Which statement best explains why magnesium and chlorine combine in a 1:2 ratio?

A. Magnesium has two valence electrons, and chlorine can accept one electron in its outer shell

2. Hydrogen and nitrogen combine to form ammonia. When nitrogen and hydrogen bond, nitrogen pulls the electrons from hydrogen toward itself. Which statement about the reactants is correct?

C. Hydrogen is oxidized, and nitrogen is reduced.

3. C3H8 + 5O2 → 3CO2 + 4H2O + energy

Which type of reaction is shown?

C. combustion

4. Which phrase best defines a redox reaction?

D. a reaction in which electrons are transferred between different atoms

5. Which statement describes the process of oxidation?

D. Oxidation results in a loss of electrons, so the oxidation number increases.

6. Which chemical equation represents a redox reaction?

D. Fe2O3(s) + 2Al(s) → Al2O3(s) + 2Fe(l)

7. Which statement correctly describes the oxidation number of the manganese atom (Mn) in MnI2 and MnO2?

A. Manganese has an oxidation number of +2 in MnI2 and +4 in MnO2.

8. Br2(l) + 2NaI(aq) → I2(s) + 2NaBr(aq)

Which elements are oxidized and reduced in the reaction?

D. Iodine (I) is oxidized, and bromine (Br) is reduced.

9. Which action occurs at an electrode of a galvanic cell?

D. electron transfer

10. Which statement best compares a battery and a galvanic cell?

A. A battery’s source of power is a galvanic cell in which a redox reaction produces electrical energy.

11. Zn + 2H+ → Zn2+ + H2

2Al + 3Cu2+ → 2Al3+ + 3Cu

Which elements are oxidized?

A. zinc (Zn) and aluminum (Al)

12. 2Cr(s) + 3Cu2+(aq) → 2Cr3+(aq) + 3Cu(s)

Which half reaction occurs at the cathode?

B. 3Cu2+(aq) + 6e– → 3Cu(s)

Simple Distillation - Method
Distillation is the separation of multiple liquid components based on their different boiling points.
As the mixture is heated and the first component boils, its vapor form travels through the distillation set-up and condenses into a different container.

Answers

A method of separating mixtures based on differences in their volatilities in a boiling liquid mixture is known as simple distillation.

Distillation is the process of turning a liquid into the vapour, which is then condensed back into its liquid state. The simplest illustration of it is when the steam from a kettle condenses into drops of  the distilled water that are left on a cold surface. Distillation can be used to separate two or more liquids having different boiling points, such as  separation of gasoline, kerosene, and lubricating oil from the crude oil, or to separate liquids from the nonvolatile solids, as in  separation of alcoholic beverages from fermented materials.

The majority of distillation techniques are variations of simple distillation used in industry and laboratory research.

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consider the fictional case of the incredible shrinking man. if he shrinks proportionately to 1/10 his original height, his weight will be multiplied by question 11 options: 0.1 0.001 0.0001 0.01

Answers

Man weight will be multiplied by 0.001. S o option (b) is correct.

Density is defined as depending on the units of mass and volume used for the calculation, different units are used. The units for density would be kg/cm3 if the mass was measured in kg and the volume in cm3.

Density = Mass divided by volume.

Given a man shrinks proportionality to 1/10 of the original height

Now as it is the proportional overall area will also be decreased by (1/10)^2 = 1/ 100 times

Therefore overall decrease in volume = 1/10 x 1/100

= 1 / 1000 times(v/1000)

Mass/ volume = Q (density)

Here Q remains constant

Hence M initial = Q x V

M final = QV/1000

Initial weight = QV x g

= QVg

Final Weight = (QV/1000) x g

Final /Initial = QVg/1000QVg

= 1/1000

= 0.001

Therefore his weight will be multiplied by 0.001

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This mineral can be protective for the teeth when introduced into the water supply; however it can cause tooth mottling when consumed in high quantities

Answers

Fluoride is mineral can be protective for the teeth when introduced into the water supply; however it can cause tooth mottling when consumed in high quantities

Natural mineral fluoride is emitted from rocks into the land, water, and atmosphere. Although nearly all water contains some fluoride, the amount is typically insufficient to stop tooth decay. Additionally, fluoride can be added to drinking water supplies as a preventative step to lower cavities. Mineral fluoride is naturally found in many foods and is also sold as a dietary supplement. Fluoride, which is the ionic form of the element fluorine, prevents or delays the development of dental caries (tooth decay) and promotes the production of new bone. [1]

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a 5.00-g sample of aluminum pellets (specific heat capacity 0.89 j/c g) and a 10.00-g sample of iron pellets (specific heat capacity 0.45 j/c g) are heated to 100.0c. the mixture of hot iron and aluminum is then dropped into 97.3 g of water at 22.0c. calculate the final temperature of the metal and wa- ter mixture, assuming no heat loss to the surroundings. socratic.org

Answers

The final temperature of the metal and water mixture, assuming no heat loss to the surroundings is 23.7 °C.

The heat expression is given as :

q = mc ΔT

q = heat

m = mass

c = specific heat

ΔT = change in temperature

for the metals Al and Fe :

q = 5 × 0.89 × ( 100 - T) + 10 × 0.45 (100 - T)

for the water is given as :

q = 97.3 × 4.184 ( T - 22 )

the heat lost by the Al and Fe = heat gained by the water

5 × 0.89 × ( 100 - T) + 10 × 0.45 (100 - T) = q = 97.3 × 4.184 ( T - 22 )

415.95 T = 9851

T = 23.7 °C.

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after studying the chemical reactions of many compounds made of carbon, august discovers a that says carbon always forms chemical bonds to other atoms when it forms a compound.

Answers

After studying the chemical reactions of many compounds made of carbon, august discovers Law that says always forms chemical bonds.

A chemical reaction transforms one or more substances (the reactants) into one or more new substances (the products). Substances are made up of chemical components or chemical elements. The atoms that make up the reactants in a chemical reaction are rearranged to create different products. Chemical reactions are essential to all aspects of life, including technology and culture. A few examples of prehistoric processes that involved chemical reactions include the burning of fuels, the smelting of iron, the production of glass and pottery, the brewing of beer and wine, and the making of cheese. Chemical reactions are abundant in the Earth's geology, atmosphere, oceans, and a wide range of complex processes that occur in all living systems.

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Match each four-electron group designation with the correct molecular shape.
AX4
AX3E
AX2E2Tetrahedral
Trigonal Pyramidal
Bent

Answers

Four-electron group designation with the correct molecular shape is AX4 : Tetrahedral, AX4 : Tetrahedral, AX3E : Trigonal pyramidal,   molecular shape.

Here E represent lone pair electrons and A represent central atom and X represent bonded atom.

AX4 : Tetrahedral

AX3E : Trigonal pyramidal

AX3E2 : T-shaped

AX2E3 : Linear

A molecule will adopt that shape in which lone pairs are present at maximum distance in order to have least repulsion. Thus, lone pairs are present in the at equatorial position in Trigonal bipyramidal structure to give molecular shape to the molecule.

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a thin solid barrier in the xy-plane has a 10um diameter circular hole. an electron traveling in the z-direction with vx

Answers

The range is it likely to be -18 m/s to 18 m/s.

Define Heisenberg's uncertainty principle.

According to Heisenberg's uncertainty principle, it is impossible to precisely measure or quantify an object's position or momentum.

Given:

xy-plane has a 10 um diameter

vx= 0 m/s

From Heisenberg relation, we can say

Δx Δp ≥ h/2

We can modify as,

Δp= h/2Δx

Relation between Δvx and Δpx is

Δpx= mΔvx=0

Here Δx= 10um

=10 um[tex]\frac{10^{-6} m}{1 um}[/tex]

= 10 x [tex]10^{-6}[/tex]m

we get,

Δvx= h/2Δx

Δvx= h/2mΔx

Δvx= 6.63 x [tex]10^{-23}[/tex]/ 2(9.11 x [tex]10^{-31}[/tex])(10 x [tex]10^{-6}[/tex])

=36 m/s

Average velocity is zero, so range is -18 m/s to 18 m/s.

Hence proved.

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Complete question:

a thin solid barrier in the xy-plane has a 10 um diameter circular hole an electron traveling in the z-direction with vx=0m/s passes through the hole. afterward is vx still zero? if not, what range is it likely to be?

write the condensed (noble-gas) electron configuration of iodine. for multi-digit superscripts or coefficients, use each number in succession.

Answers

Iodine, its atomic number is 53. Its complete electron configuration is 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁶ 5s² 4d¹⁰ 5p⁵ or [Kr] 5s² 4d¹⁰ 5p⁵.

The electron configuration of an atom is the representation of the arrangement of electrons distributed among the orbital shells and subshells.

The four different types of orbitals, s,p,d, and f have different shapes, and one orbital can hold a maximum of two electrons.

The p, d, and f orbitals have different sublevels, thus can hold more electrons. As stated, the electron configuration of each element is unique to its position on the periodic table.

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Students were investigating heat transfer by conduction and they set up the simple experiment you see here. Three spoons made of different materials were placed in a pot of hot (90°C) water. A pat of butter was placed on the handle of each spoon. Students were asked to predict the order of melting butter on the three spoons, from first to last. Which answer seems the most reasonable?
Responses
A plastic - wood - tinplastic - wood - tin
B plastic - tin - woodplastic - tin - wood
C wood - tin - plasticwood - tin - plastic
D tin- plastic - wood

Answers

The order of the melting of the butter among the materials is;  tin- plastic - wood. Option D

What is heat transfer?

We know that the term heat transfer has to do with the manner in which heat can be transferred from one material to another. We can see that the nature of the materials differ. The tin is a pure conductor of heat, the plastic and the wood are poor conductors of heat.

However, it is clear that heat would flow better from the plastic than it would do from the wood. As such, the butter on the tin would melt the greatest and the butter on the wood would melt the least.

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For each pair of compounds, pick the one with the higher vapor pressure at a given temperature.
• CH3Cl or CH4 ________________________
• CH3CH2CH2OH or CH3OH ________________________
• CH3OH or H2CO ________________________

Answers

The CH4 , CH3OH , H2CO  these have high vapor pressure.

What is vapor pressure?

Vapor pressure rises with temperature and measures a substance's propensity to transform into a gaseous or vapor state. The boiling point of a liquid is the temperature at which the vapor pressure present at its surface equals the atmospheric pressure.

What is temperature ?

The average kinetic energy of all the atoms or molecules in a given material, expressed as its temperature. The kinetic energy of a substance's particles varies. A distribution can be used to show how the particles' kinetic energy is distributed at any particular moment.

Higher the magnitude of intermolecular bonding, lower will be the vapor pressure.

(a). Ans :- CH4

CH4 = Low molecular mass, therefore magnitude of vander waal's forces is less and hence have high vapor pressure.

CH3Cl = High molecular mass, therefore magnitude of vander waal's forces is more and hence low vapor pressure.

(b). Ans :- CH3OH

Both CH3OH and CH3CH2CH2OH form intermolecular hydrogen bonding but intermolecular bond in CH3CH2CH2OH are more strong. Hence, CH3OH have high vapor pressure.

(c). Ans :- H2CO

H2CO for dispersion forces while CH3OH form strong intermolecular H-bonding, So, H2CO have high vapor pressure.

Therefore, CH4 , CH3OH , H2CO  these have high vapor pressure.

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30. Which is true of atoms X and Y if they are isotopes of the same element?
A. X and Y have the same atomic number and mass number.
B. X and Y have the same number of protons but different number of neutrons
C. X and Y have the same mass number but different atomic number.
D. X and Y have the same number of neutrons but different number of protons

Answers

Answer: B

Explanation: ISOTOPE has the same atomic number but a different mass number. Isotopes have same chemical properties ( same number of electrons) but different physical properties(as they have different masses).

complete the balanced chemical equation for the following reaction between a weak acid and a strong base. NH4Cl + KOH

Answers

Balanced equation is same as the following reaction between a weak acid and a strong base. NH4Cl + KOH.

strong base is a compound that can remove a proton from a very weak acid. In water, they completely dissociate into its ions. Potassium hydroxide (KOH) and sodium hydroxide are two examples (NaOH) When dissolved in solutions, weak acids do not completely dissociate into their constituent ions. When dissolved in water, an equilibrium between the concentrations of the weak acid and its constituent ions is established. Strong bases are those that completely ionise in water and produce a large amount of hydroxide ions. Weak bases are those that ionise partially in water and produce a small amount of hydroxide ions. NaOH and KOH are powerful bases. Weak bases include NH4OH, Ca(OH), and Mg(OH).

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5. When magnesium hydroxide and HCl are mixed together, magnesium
chloride and water are formed. In a particular reaction, 25.0 g of HCI is used with
enough magnesium hydroxide to completely react the HCl.
Mg(OH)₂ +HCI—-> MgCl2 + H20

(a) Balance this equation.
(b) Calculate the number of moles of hydrochloric acid available (25.0 g).
(c) How many moles and grams of magnesium hydroxide were needed for
complete reaction of the 25.0 g of HCI ?
moles=
grams
=

Answers

The moles and mass of the magnesium hydroxide are 0.356 mol and 20.77 g.

What is the balanced chemical equation?

A balanced equation in which the number of atoms of each element is equal on both sides of the chemical equation. The law of conservation of matter must follow a balancing of equations.

By obeying the law of conservation of matter, the total mass of the chemical elements on the reactant side must be equal to the total mass of chemical elements on product side in a balanced chemical equation.

The balanced chemical equation magnesium hydroxide and HCl:

[tex]Mg(OH)_2 +2HCI \longrightarrow MgCl_2 + 2H_2O[/tex]

The mass of the HCl = 25 g

The number of moles of HCl = 25/36.5 = 0.712 mol

2 mol of HCl reacts with magnesium hydroxide = 1 mol

0.712 mol of HCl reacts with magnesium hydroxide = 0.712/2 = 0.356 mol

The mass of magnesium hydroxide  = 0.356 × 58.32 = 20.77 g

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find the degree, leading coefficients, and the maximum number of real zeros of the polynomial. f ( x )

Answers

This polynomial has a leading coefficient of -3 and a degree of 6. The greatest number of real zeros is two, according to Descartes' rules of signs.

Determine the polynomial f(x)=3+degree, 3 is leading term, and leading coefficient. The highest power on x is 3, which is the degree. The term with the highest degree in f(x) originates from the fact that A polynomial's real zeros correspond to its linear components.

The term with the highest power of x is the leading term in a polynomial. As an illustration, the leading term in 7+x3x2 is 3x2. A polynomial's leading coefficient is the coefficient of the leading term. The leading coefficient in the aforementioned illustration is 3.

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What Is The Molar Concentration Of Na+ Ions In 0.0200 M Solutions Of The Following Sodium Salts In Water?

Answers

The molar concentration of Na⁺ ions In 0.0200 M solutions of the given  sodium salts in water is:

For NaBr, the molar concentration of Na⁺ ions = 0.020 M

For Na₂SO₄; the molar concentration of Na⁺ ions = 0.040 M

For Na₃PO₄; the molar concentration of Na⁺ ions = 0.060 M

What is the molar concentration of a substance?

The molar concentration of a substance is the amount in moles of that substance that is present in a given volume of a solution of that substance.

Mathematically;

molar concentration = number of moles of substance / volume of the substance

The molar concentration of Na⁺ ions In 0.0200 M solutions of the given  sodium salts in water is calculated as follows:

Molar concentration = moles of sodium ions in 1 mole of the salt * molar concentration of the salt.

For NaBr;

moles of Na⁺ ions in 1 mole of the salt = 1 mole

molar concentration of Na⁺ ions = 1 * 0.020 M

molar concentration of Na⁺ ions = 0.020 M

For Na₂SO₄;

moles of Na⁺ ions in 1 mole of the salt = 2 moles

molar concentration of Na⁺ ions = 2 * 0.020 M

the molar concentration of Na⁺ ions = 0.040 M

For Na₃PO₄;

moles of Na⁺ ions in 1 mole of the salt = 3 moles

molar concentration of Na⁺ ions = 3 * 0.020 M

the molar concentration of Na⁺ ions = 0.060 M

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Complete question:

What Is The Molar Concentration Of Na+ Ions In 0.0200 M Solutions Of The Following Sodium Salts In Water?

NaBr

Na₂SO₄

Na₃PO₄

How many atoms of oxygen are on the reactant side in the reaction below?

Answers

In the reaction of decomposition of potassium  chlorate to give potassium chloride and oxygen gas, there are 6 oxygen atoms present in both reactant side and product side of the reaction.

What is decomposition?

Decomposition is a type of reaction in which a single substance or reactant decompose or break into its constituent compounds or molecules. Normally decomposition reactions are exothermic and evolve heat to the surrounding.

Potassium chlorate KClO₃ breaks into KCl and O₂. In one mole of KClO₃ there are 3 oxygen atoms. Hence, for 2 moles of potassium chlorate there are 6 oxygen atoms.

The number each elements have to be balanced in both side. Here the number of oxygen on both side is 6. Similarly all other elements are balanced in the given reaction.

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The molar volume of a certain form of solid lead is 18 cm3/mol. Assuming cubic closest-packed structure, determine the following.
The number of Pb atoms per unit cell
3
4
10
12
14

Answers

18 cm3/mol is the molar volume of a specific type of solid lead. The following should be determined assuming a cubic closest-packed structure. 4 Pb atoms are contained in each unit cell.

What materials make up atoms?

Protons, neutrons, and electrons are three extremely small types of particles, together referred to as subatomic particles, that make up an atom. The nucleus, which is made up of protons and neutrons, is where an atom's energy is stored. An electron cloud flies above the nucleus.

Are we made of atoms?

Atoms of hydrogen, carbon, nitrogen, and oxygen make up the vast majority of the molecules in your body. The other elements necessary for life are also present in much lesser quantities in you.
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Nuclides below the valley of stability can become more stable through which of the following processes?
A) beta emission
B) neutron bombardment
C) neutron emission
D) positron emission
E) gamma emission

Answers

Nuclides below the valley of stability can become more stable through the processes : D) positron emission.

What is meant by positron emission?

An imaging procedure that can assist in determining how your tissues and organs function metabolically or biochemically is known as a positron emission tomography (PET) scan. A radioactive substance (tracer) is used in the PET scan to display both regular and aberrant metabolic activity.

A proton inside a radionuclide nucleus is transformed into a neutron while generating a positron and an electron neutrino, which is known as beta plus decay, positron emission, or + decay. The weak force mediates positron emission.

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2. show how to make the molecule below from the indicated starting material. include the reagents necessary and any synthetic intermediates. (2 pts) 3. explain the regioselectivity of the nucleophilic attack of the chloronium ion below. compare it to nucleophilic attack of an epoxide. (2 pt)

Answers

When using specialized reagents like oxidizing reagents, reducing reagents, Grignard's reagents, etc., the reaction in organic chemistry is carried out by changing one functional group to another functional group.

Cyclohexane carboxaldehyde, which is transformed into 1-cyclohexylethanone, is the suggested starting material. (Aldehyde to ketone conversion).

As a result, the reaction takes place in two steps:

1. Grignard's reagents react with aldehydes to produce alcohol; for example, cyclohexane carboxaldehyde interacts with methyl magnesium bromide to produce secondary alcohol.

2. The intended product is a ketone, which is produced when the secondary alcohol combines with PCC (pyridine chlorochromate).

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The attraction that nonpolar molecules have for each other is primarily caused by the presence of
A) hydrogen bonding
B) high ionization energy
C) electronegativity differences
D) van der Waals forces

Answers

The answer is D.

Van der Waal's Force of attraction

These are weak intermolecular forces that depend on the distance between non-polar atoms or molecules. The name came into existence from the name of a Dutch scientist Johannes Diderik Van Der Waals. He discovered these forces for the first time in 1873 while analyzing the deviation of real gas from the ideal gas.

There are two types of Van der Waals forces:

Weak London Dispersion Forces Stronger dipole-dipole forces

 

Properties of Van der Waal forces:

They are weaker than covalent or ionic bonds.They are not directionalThey are additive in nature.They are temperature-independent (except dipole-dipole interactions)

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The pressure of a gas in a rigid container is halved when the Kelvin temperature changed.
Which of the following temperature change could be responsible for this?
A. 400 K to 800 K
B. 200 K to 300 K
C. 600 K to 300 K
D. 800 K to 200 K

Answers

The change in temperature would be 600 K TO 300 K

According to Gay Lussac's Law the temperature and pressure are directly proportional.

Gay Lussac's Law states that " The pressure of a given amount of gas held at constant volume is directly proportional to the Kelvin temperature."

P is directly proportional to T.

P= k* T

k is the proportionality constant.

P1/T1 = P2/T2

So when the temperature is halved the pressure is halved.

So the change in temperature will be from 600K to 300K

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the images depict solid particles of different diameters in a liquid. identify each mixture as a colloid, suspension, or true solution.

Answers

A colloidal particle is a tiny particle whose size can range from a few nanometers to several micrometers, depending on the particular colloidal behavior being studied. For instance, if the stability of a colloidal solution is a concern, the upper limitation needs to be lower than roughly five micrometers, as beyond this limit the Brownian motion of the particles may not be strong enough to prevent them from coagulating with one another.

A suspension is defined as a homogenous mixture of particles having a diameter bigger than 1000 nm so that the particles are visible to the eye sight. All of the components in this kind of combination are thoroughly combined, and all of the particles are visible under a microscope.

A true solution-Any homogenous mixture of two or more substances that has a particle size of less than 10-9 m or 1 nm is considered to be a genuine solution.

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show the balanced chemical equation of methane with the heat of reaction added to the right side because it is an exothermic reaction.

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The balanced chemical equation of methane with the heat of reaction will generally tell us that One mole of CH4 reacts with two moles of O2, producing one mole of CO2 and two moles of H2O.

A balanced chemical equation is one that generally has equal number of atoms of each element on both sides of the equation. This equation can be used to determine how many grams, moles or also molecules of each reactant will react with each other and how many grams, moles or molecules of each product will be produced.

A balanced chemical equation generally gives information about the number of moles or the number of molecules of each reactant that is usually consumed during the reaction as well as the number of moles or the number of molecules of products that are produced during the chemical reaction.

The given chemical equation is:

[tex]CH_{4}[/tex] + [tex]2O_{2}[/tex]  → [tex]CO_{2}[/tex] + [tex]2H_{2}O[/tex]

According to this balanced chemical equation,

One mole of CH4 reacts with two moles of O2, producing one mole of CO2 and two moles of H2O.

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Which of the following has the highest boiling point? Hint: They are all non polar. CH4 CH3CH3 CH3CH2CH3 CH3CH2CH2CH3
CH3CH2CH2CH3

Answers

CH3CH2CH2CH3 i.e., butane having more boiling point among the all given .

Compounds composed of molecules joined by chemical bonds arranged so that their charge distributions are symmetrical are called non-polar compound

Compounds composed of molecules joined by asymmetric polar bonds.

Polar compounds exhibit polarity. This is a property characterized by two opposite charges or poles. As such, it can be converted into a water-soluble ion, which is a polar molecule.

Reason :

while increasing the number of carbons in the chain, the boiling point also increases. The alkanes having intractions with the neighbour alkanes will be Van der Waals dispersion forces, these intractions are very less in the small molecule such as methane. The the force of attraction between the molecules increases as the molecule gets longer and has more electrons.

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410A is a commonly used refrigerant. What
is the energy change when 100. g of 410A
goes from -40.0 °C to -60.0 °C?
Heating Curve Data for Coolant 410a
Boiling Point (°C)
-51.53
AHVan (kJ/kg)
276.2
vap
Specific Heat, gas (kJ/kg K)
0.823
Specific Heat, liquid (kJ/kg K)
1.84
q = [?] kJ
Do not round until the end. Include either a + or -
sign AND the magnitude.

Answers

Answer: The energy change when 100 g of 410A goes from -40.0 °C to -60.0 °C is -184 kJ.

Explanation:

To find the energy change when 100 g of 410A goes from -40.0 °C to -60.0 °C, we need to use the specific heat capacity of 410A in the liquid state, which is 1.84 kJ/kg K.

The energy change can be calculated using the formula

q = m * c * ΔT,

where q is the energy change, m is the mass of the substance, c is the specific heat capacity, and ΔT is the change in temperature.

Plugging in the values, we get:

q = 100 g * 1.84 kJ/kg K * (-60.0 °C - (-40.0 °C))

Simplifying the equation, we get:

q = 100 g * 1.84 kJ/kg K * (-100.0 °C)

Converting 100 g to kilograms gives us:

q = 0.1 kg * 1.84 kJ/kg K * (-100.0 °C)

Solving for q, we get:

q = -184 kJ

So the energy change when 100 g of 410A goes from -40.0 °C to -60.0 °C is -184 kJ.

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