Which pair of words best completes the following sentence? colliding nuclei must be at a sufficient _______ and have sufficient _______ to allow effective collisions that lead to fusion.

Answers

Answer 1

colliding nuclei must be at a sufficient density and have sufficient energy to allow effective collisions that lead to fusion.

What is fusion?

When atoms are in close proximity to one another, the nuclear force draws their nuclei together to form a single, bigger nucleus. This process is known as fusion. The positive charge of the nuclei, which repels one another due to the electrostatic force, opposes this action. The nuclei must possess sufficient energy to break through this coulomb barrier for fusion to take place.

The molecules that collide must have the following properties to produce effective collisions: Energy that is more than the threshold energy or a specified minimum amount of energy, and suitable geometry. A correct orientation and D threshold energy Medium

Thus, colliding nuclei must be at a sufficient density and have sufficient energy to allow effective collisions that lead to fusion.

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Related Questions

A molecule with 4 single bonds (and any number of lone pairs) could have which type of molecular geometry?

Answers

A molecule with 4 single bonds (and any number of lone pairs) could have the tetrahedral geometry.

For example carbon(IV) chloride (CCl₄). There are four single covalent bonds between one carbon atom and four chlorine atoms (see the picture below).

Carbon has sp3 hybridization (hybridize one s-orbital and three p-orbitals) and four chlorine atoms are positioned symmetrically as corners in a tetrahedral configuration. Because of symmetrical geometry, carbon tetrachloride is non-polar molecule.

Electron configuration of carbon: ₆C 1s² 2s² 2p².

Electron configuration of chlorine: ₁₇Cl 1s² 2s² 2p⁶ 3s² 3p⁵.

The ammonium ion has exactly the same shape as methane, because it has exactly the same electronic arrangement, ammonium ion is tetrahedral (sp3 hybridized).

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What is the ph of a 0.0100 m sodium benzoate solution? kb (c7h5o2-) = 1.5 x 10-10

Answers

The pH of a 0.0100 M sodium benzoate solution is 8.09.

c(C₆H₅COONa) = 0.0100 M; concentration of the salt sodium benzoate.

Balanced chemical equation for reaction of benzoate ion (from the salt sodium benzoate) with water:

C₆H₅COO⁻(aq) + H₂O  ⇄ C₆H₅COOH(aq) + OH⁻(aq)

Kb = 1.5 × 10⁻¹⁰; constant of base

Kb = c(C₆H₅COOH) × c(OH⁻) / c(C₆H₅COO⁻)

c(C₆H₅COOH) = c(OH⁻) = x

1.5 × 10⁻¹⁰ = x² ÷ 0.0100 M

x = c(OH⁻) = 1.225 × 10⁻⁶ M

pOH = -log c(OH⁻)

pOH = -log (1.225 × 10⁻⁶ M)

pOH = 5.91

pH = 14 - 5.91

pH = 8.09

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What is the major organic product that is obtained from the reaction at the right?
a) cyclohexanol
b) cyclohexene
c) 2-cyclohexene-1-one
d) cyclohexanone
e) 1,3-cyclohexanedione

Answers

The major organic product that is obtained from the reaction is (a) cyclohexanol.

What is a major product?

Chemical reactions take place all around us, including during food digestion in our bodies and the production of light from the sun. Before beginning any chemical processes, it is essential to comprehend physical and chemical changes. A burning candle serves as the best example of a physical and chemical transformation.

The main product of a reaction would be the one that is more stable and hence most likely to form. Propene added electrophilically to HBr would be one instance.

The major organic product that is obtained from the reaction is (a) cyclohexanol. The ketone is reduced to alcohol via proper reagents and conditions.

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A compound has an empirical formula of ch2o with a molar mass of 60.0 g/mol. what is the molecular formula of the compound?

Answers

The molecular formula becomes [tex]C_{2}H_{4}O_{2}[/tex]

A compound is a substance made of two or more elements in fixed proportions.

the empirical formula tells us the relative ratios of different atoms in a compound. The ratios hold true on the molar level as well. Thus, [tex]H_{2}O[/tex] is composed of two atoms of hydrogen and 1 atom of oxygen.

The empirical formula is [tex]C_{}H_{2}O[/tex]

Molar mass is 60 g/mol

x*C + 2x*H + x*O = 60

Where x is the number of atoms of the element

12*x + 2*x + 16*x =60

30*x = 60

x = 60 / 30

x= 2

Thus the molecular formula becomes C2H4O2

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Would you expect higher or lower conductivity from a solute that does not dissolve well in solution?

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It will be lower conductivity from a solute that does not dissolve well in solution.

The conductivity of the solution will be lower than that of entirely dissociating compounds if an ionic compound does not completely dissociate.Ions are created when an ionic substance dissociates in water and dissolves. As is well knowledge, the degree of an ionic compound's dissociation directly relates to the conductivity of an ionic solution. An ionic compound's conductivity will be high if it dissociates more.The compound's conductivity will be lower if it dissociates less.The ionic compound with less dissociation would thus have lower conductivity, as may be deduced.

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PLEASE HELP ME IM ALMOST DONE WITH MY TEST
Which of the following statements about polyatomic ions is false?

Select one:
a. Polyatomic ions act like a single atom.
b. Each polyatomic ion has a single oxidation number.
c. Polyatomic ions are found in nature.
d. Polyatomic ions do not combine with ions of the opposite charge to form chemical compounds.

Answers

Answer:

D

Explanation:

Opposite charge

At the start of a certain reaction, only reactants are present; no products have been formed. what is the value of qc at this point in the reaction? enter your answer numerically.

Answers

At the start of the reaction, value of reaction quotient  is zero as no product is being formed.

How is reaction quotient calculated?

The reaction quotient is a measure which signifies the relative amounts of reactants and products present in a reaction at any given time.

For any reversible reaction, the value of reaction quotient can be calculated by multiplying the product concentration raised to their moles and then dividing it by the product of reactant concentration which is also raised to their moles.

At the start of the reaction, as no product is formed so its concentration is zero and thereby this concentration divided by the reactant concentration gives a value of zero as the value of reaction quotient.Reaction quotient is closely related to equilibrium constant .

Unlike equilibrium constants which are always calculated when a reaction is at equilibrium reaction quotients can be calculated irrespective of the nature of equilibrium of a reaction.

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Calvin was being bullied by a coworker. That night, he dreamed that the coworker had a terrible accident. According to sigmund freud, his dream was most likely an example of?.

Answers

According to Sigmund Freud, his dream was most likely an example of wish fulfillment when he dreamt about the coworker having a terrible accident.

What is Wish fulfillment?

This is defined as the process in which a desire is fulfilled through and involuntary thought process such as dreams etc.

Sigmund Freud is regarded as the father of psychoanalysis which was used to treat various types of mental illnesses and he was involved in the study of wish fulfillment.

Wish fulfillment is the process in which desire is fulfilled through involuntary process such as dream and in this scenario, Calvin was being bullied by a coworker and he night he dreamed that the coworker had a terrible accident which therefore means that he depicted wish fulfillment in this category.

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Rubidium-86 (86Rb) undergoes beta decay. A 9.52 x 10^−5 mol sample of 86Rb emits 8.87 x 10^16 beta particles in one hour. Calculate the half-life (in hours) for 86Rb

Answers

The half-life (in hours) for 86Rb is mathematically given as

half-life= 447.1 hr

This is further explained below.

What is the half-life (in hours) for 86Rb?

Generally, the equation for k is  mathematically given as

k = (1/t)ln(a/x)

Where

No of mol of Beta particle

β= (8.87*10^16/(6.023*10^23))

β = 1.47*10^-7 mol

Therefore

k = (9.52*10^-5)-(1.473*10^-7)

= 9.50527*10^-5 mol

Hence

k = (1/1)ln((9.52*10^-5)/(9.50527*10^-5))

k = 0.693/t0.5

t0.5=half lifetime

t0.5= 0.693/(0.00155)

half-life= 447.1 hr

In conclusion, the half-life (in hours) for 86Rb

half-life= 447.1 hr

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In IONIC BONDING, the [Blank] TRANSFERS it’s electron(s) to the [Blank] .

Answers

Answer:

An ionic bond forms when atoms transfer electrons.

Explanation:

Ionic bonds are formed when atoms transfer electrons. (In contrast, covalent bonds are formed when atoms share electrons.)

There's a distinction between the two: when two atoms react to form an ionic bond, one atom would completely lose one electron, while the other would completely gain that electron. The atom that loses the electron becomes a positively-charged ion called a cation, whereas the atom that gains the electron becomes a negatively-charged ion called an anion.

For example, consider the reaction between a sodium atom and a chlorine atom: .

When the sodium atom and the chlorine atom encounter, the sodium atom would lose one electron to form a positively-charged sodium ion, . The chlorine atom would gain that electron to form a negatively-charged chlorine ion .

These two ions will readily attract each other because of the opposite electrostatic charges on them. This electrostatic attraction (between two ions of opposite charges) is an ionic bond.

Overall, it would appear as if the sodium atom transferred an electron to the chlorine atom to form an ionic bond.

In contrast, when two atoms react to form a covalent bond, they share electrons without giving any away completely. Therefore, it is possible to break certain covalent bonds apart (using a beam of laser, for example) and obtain neutral atoms.

On the other hand, when an ionic bond was broken, the result would be two charged ions- not necessarily two neutral atoms. The electron transfer could not be reversed by simply breaking the bond.

For example, when table salt is melted (at a very high temperature,) the ionic bond between the sodium ions and chloride ions would (mostly) be broken. However, doing so would only generate a mixture of and ions- not sodium and chlorine atoms.

13.what is the stereochemical basis of the observation that d-aspartyl-d-phenylalanine has a bitter taste, whereas l-aspartyl-l-phenylalanine is significantly sweeter than sugar?

Answers

D-aspartyl-D-phenylalanine tastes bitter, whereas L-aspartyl-L-phenylalanine is significantly sweeter than sugar because the 3D conformation of L-aspartyl-L-phenylalanine will fit and activate certain taste receptors whereas the D-aspartyl-D-phenylalanine would not. That's why one of them is bitter while the other is sweet even though both are composed of the same atoms.

Enantiomers are molecules that are mirror copies of one another but cannot be superimposed on one another. These molecules have the ability to rotate the polarized light plane in an opposite direction but at the same angle.

D-aspartyl-D-phenylalanine has a bitter taste, but L-aspartyl-L-phenylalanine has a considerably sweeter taste than natural sugar. This observation's stereochemical foundation is that both enantiomers adopt entirely dissimilar spatial configurations.

Varied enantiomers interact differently with the taste receptor molecules found on the tongue, which causes a uniquely different flavor to be produced in the mouth.

As a result, the L-aspartyl-L-phenylalanine 3D conformation will fit and activate particular taste receptors, but the D-aspartyl-D-phenylalanine conformation will not.

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A solution, which at a given temperature dissolves as much solute as it is capable of dissolving,is said to be a-

(A) super saturated solution
(C) unsaturated solution
(B) semi saturated solution
(D) saturated solution​

Answers

B; the answer is semi saturated solution.

if 1 mole of Zn contains 6.02 x 1023 atoms and 1 mole of Zn has a mass of 65.4 g. How many atoms are in 0.750 grams of zinc

Answers

There are 4.517 × 10²³ atoms in 0.750 grams of zinc.

Given,

1 mole of zinc = 6.022 × 10²³ atoms

Mass of 1 mole of Zn = 65.4 grams

We have to find the number of atoms present in 0.750 grams of zinc.

As we know, there are 6.022 × 10²³ atoms in 1 mole of a substance. The total atoms in an element are equal to Avogadro's number.

Where 6.022 × 10²³ is Avogadro's number

Then, 0.750 moles of zinc have 0.750 × 6.022 × 10²³ atoms.

0.750 × 6.022 × 10²³ atoms = 4.517 × 10²³ atoms

Hence, there are 4.517 × 10²³ atoms in 0.750 grams of zinc.

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7.39 mmol of base was used when titrating 432 mg of a monoamine monocarboxylic amino acid from ph 0.8 to 12.0. what is the name of the amino acid?

Answers

Answer:

Valine

Explanation:

Okkkkk I will give you 100 points and a brainliest if you please answer this question soon

Infer from Figure 22 how long the ozone hole lasts.

Answers

Answer

A couple months

Explanation:

What mass of nitrogen gas is required to react completely with excess hydrogen gas to produce 13.6 g of ammonia?

Answers

Taking into account the reaction stoichiometry, 11.2 grams of nitrogen gas is required to react completely with excess hydrogen gas to produce 13.6 g of ammonia.

Reaction stoichiometry

In first place, the balanced reaction is:

3 H₂ + N₂  → 2 NH₃

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

H₂: 3 molesN₂: 1 mole NH₃: 2 moles

The molar mass of the compounds is:

H₂: 2 g/moleN₂: 28 g/moleNH₃: 17 g/mole

Then, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

H₂: 3 moles×2 g/mole= 6 gramsN₂: 1 mole ×28 g/mole= 28 gramsNH₃: 2 moles ×17 g/mole= 34 grams

Mass of N₂ required

The following rule of three can be applied: If by reaction stoichiometry 34 grams of NH₃ are produced by 28 grams of N₂, 13.6 grams of NH₃ are produced by how much mass of N₂?

mass of N₂= (13.6 grams of NH₃× 28 grams of N₂)÷ 34 grams of NH₃

mass of N₂= 11.2 grams

Finally, 11.2 grams of nitrogen gas is required to react completely with excess hydrogen gas to produce 13.6 g of ammonia.

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Drag each number to the correct location on the equation. Each number can be used more than once, but not all numbers will be used. Balance the equation with the correct coefficients. 2 3 4 5 Reset Next

Answers

The balanced equation is as follows:

2KClO3 → 2KCl + 3O2

A chemical equation is said to be balanced when there are an equal number of atoms on both the reactant and product sides.

first we will calculate number of atoms in reactant as well as product side.

In the given reaction,

KClO3 → KCl + O2

Number of atoms on reactant side are as follows:

K = 1

Cl = 1

O = 3

Number of atoms on product side are as follows:

K = 1

Cl = 1

O = 2

Here, we can see that number of oxygen atom on reactant side is not equal to the number of oxygen atom on product side.

Hence to balance the equation we will multiply KClO3 by 2 on reactant side and KCl by 2, O2 by 3 on product side.

(KClO3)2 → (KCl)2+ (O2)3

Therefore the balanced equation will be:

2KClO3 → 2KCl + 3O2

Now, number of atoms on reactant side are equal to the number of atom on product side.

The coefficient used to balance out the equation are 2 and 3.

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What is the ph of a solution of 1.699 l of 1.25 m hcn, ka = 6.2 x 10-10, and 1.37 moles of nacn?

Answers

The pH of a solution is 9.02.

c(HCN) = 1.25 M; concentration of the cyanide acid

n(NaCN) = 1.37 mol; amount of the salt

V = 1.699 l; volume of the solution

c(NaCN) = 1.37 mol ÷ 1.699 l

c(NaCN) = 0.806 M; concentration of the salt

Ka = 6.2 × 10⁻¹⁰; acid constant

pKa = -logKa

pKa = - log (6.2 × 10⁻¹⁰)

pKa = 9.21

Henderson–Hasselbalch equation for the buffer solution:

pH = pKa + log(cs/ck)

pH = pKa + log(cs/ck)

pH = 9.21 + log (0.806M/1.25M)

pH = 9.21 - 0.19

pH = 9.02; potential of hydrogen

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Which of the following is an example of an element? a water b air c sugar d oxygen

Answers

Answer:

d. Oxygen

Explanation:

- Water is not an element but a compound made of hydrogen and oxygen elements

- Air is a compound made of gases such as oxygen, nitrogen, rare gases and carbondioxide...

- Sugar is an organic compound (sucrose) made of carbonyl carbons and hydrocarbons

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The diameter of the he atom is approximately 0.10 nm. calculate the density of the he atom in g/cm3 (assuming that it is a sphere).

Answers

The density of the He atom is 12.69 g/cm³.

d(He) = 0.1 nm = 1 × 10⁻⁸ cm; a diameter of helium atom

V(He) = 1/6 × (1 × 10⁻⁸ cm)³ × 3.14

V(He) = 5.23 × 10⁻²⁵ cm³; volume of helium atom

m(He) = 4 amu; mass of helium atom

d(He) = m(He) / V(He)

d(He) = 4 × 1.66 × 10⁻²⁴ g / 5.23 × 10⁻²⁵ cm³

d(Cr) = 12.69 g/cm³; density of the helium atom

Volume of the helium is the measure of the amount of space occupied by the helium.

Diameter or the atomic radius of an atom is a measure of the size of that atom. It is distance from the center of the nucleus to the outermost isolated electron of an atom.

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Ivr Which order shows the levels of organization from largest to smallest? organism, organ system, cell, organ, tissue organism, tissue, organ system, organ, cell organism, organ, organ system, cell, tissue organism, organ system, organ, tissue, cell​

Answers

The levels of organization from largest to smallest are - organism, organ system, organ, tissue, and cell.

Therefore, option (D) is correct.

The cell is the basic or fundamental unit of life of an organism.

A Group of cells with similar shapes and functions combines to form tissues.

Then the tissues organize to form organs.

A group of organs with similar functions combine to form an organ system.

A group of organ systems organizes to form an organism.

Hence, the correct order of levels of organization from largest to smallest is - organism, organ system, organ, tissue, and cell.

Option (D) is correct.

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what do we call the temerature at which all substance will turn into a solid ?

Answers

Answer:

freezing point, i think.

Explanation:

freezing point is the point at which all substances turn solid, this varies based on what you have, but this characteristic temperature is freezing point.

The molecular formula of a carbohydrate molecule is c24h42o21. the maximum number of glucose and water molecules that will be consumed by complete hydrolysis of the carbohydrate is:_________

Answers

The molecular formula of a carbohydrate molecule is C24H42O21. the maximum number of glucose and water molecules that will be consumed by complete hydrolysis of the carbohydrate is 3 molecules of water and 3 molecules of water.

Hydrolysis means the breakdown of a compound into its individual constituents

The splitting of carbohydrates into their components takes place in the small intestine through a hydrolysis reaction and the process is called saccharification.

Fructose and glucose are the primary products that are manufactured as a result of carbohydrate hydrolysis.

The human body utilizes glucose during respiration to produce energy in the form of ATP.

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why is it important and be able to identify chemical and physical changes

Answers

Answer: because without them we can't produce any type of substances as for producing new products physical or chemical change is necessary

Explanation:

How many grams of sodium hydroxide will be formed when 200 g of sodium react completeyl with water?

Answers

347.8 grams of sodium hydroxide will be formed.

Balanced chemical equation for reaction of sodium with water:

2Na + 2H₂O → 2NaOH + H₂

m(Na) = 200 g; mass of sodium

M(Na) = 23 g/mol; molar mass of sodium

n(Na) = m(Na) ÷ M(Na).

n(Na) = 200 g ÷ 23 g/mol.

n(Na) = 8.695 mol; amount of sodium.

From chemical equation: n(Na) : n(NaOH) = 1 : 1.

n(NaOH) = 8.695 mol; amount of sodium hydroxide

M(NaOH) = 40 g/mol; molar mass of sodium hydroxide

m(NaOH) = 8.695 mol × 40 g/mol

m(NaOH) = 347.8 g; mass of sodium hydroxide

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When are measurements accurate and precise?

Answers

Answer:

the sample or set can be said to be accurate if their average is close to the true value of the quantity being measured, while the set can be said to be precise if their standard deviation is relatively

Which part of the atom change the mass number 

Protons, neutrons, electrons

Answers

Answer: Atomic number is the number of protons 

Atomic mass subtract

atomic number is the number of neutrons

Atomic number is the number of electrons in a neutral atom

Explanation:The atomic number is assigned based on the number of protons, so the atomic number is always the same as the number of protonsAtomic mass is the sum of protons and neutrons. Protons and neutrons both have masses of 1 amu, but the mass of electrons is negligible so it is left out. The atomic mass of an element is never a round number because it's a weighted average of all the isotopes of the element. Just round the number to the nearest integer get the most likely atomic mass. In a neutral atom number of protons = number of electrons since there is no overall charge. In an ion, add an electron for every negative charge and subtract an electron for every positive charge (ex. Mg2+ has 10 electrons because its atomic number is 12 and you subtract two electrons for the 2+ charge)

__________ could be the formula of an alkene. a. c3h8 b. c2h8 c. c6h6 d. c3h6 e. c17h36

Answers

The general formula for alkenes is CnH2n, the formula with hydrogen count double the carbon count should be the correct formula for alkene and that is d. C3H6.

What are alkenes?

Alkenes, commonly known as olefins, are organic unsaturated hydrocarbons that have one or more carbon-carbon double bonds in their chemical structure and are composed of carbon and hydrogen atoms.

Alkenes are unsaturated hydrocarbons with a double bond between the carbon atoms. Carbon atoms are connected by at least one double bond. The general formula for alkenes is C n H 2n. Olefin is frequently substituted with alkenes. The word "olefin" comes from the Greek phrase "olefin gas," which denotes the production of oil.

Since, their general formula is CnH2n, the formula with hydrogen count double the carbon count should be the correct formula for alkene and that is d. C3H6.

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Mercury has a specific weight of 133 kn/m^3 when the temperature is 20C. Determine the density and specific gravity at this temperature.

Answers

Mercury has a specific weight of 133 kn/m^3 when the temperature is 20C.

Density of given mercury = 133kg/m3

Density of water = 1000 kg/m3

specific gravity of mercury = Density of Hg/ Density of H20

= 133/1000 = 0.133

0.133 is the specific gravity of given Hg.

What is specific gravity?

The ratio of the densities of two different objects or substances is known as specific gravity. The ratio of the substance's density to the density of water is the most common way to define specific gravity.

Given, specific weight of 133 kg/m^3

Thus, Density of given mercury = 133kg/m3

Density of water = 1000 kg/m3

Thus, specific gravity of mercury = Density of Hg/ Density of H20

= 133/1000 = 0.133

0.133 is the specific gravity of given Hg.

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Observing and
How could you prove that your inference about the acidity of the paper is true?

Answers

By doing scientific experiment we can prove inference about the acidity of the paper is true.

what is the basic requirements of an experiment ?

The experiment is nothing but to do the test of the hypothesis and are the main foundation of the scientific method, the steps include Make an observations, form hypothesis, conduct experiment, evaluation of result.

Then accept or reject the hypothesis from the evaluated result, if rejected make new hypothesis; Another important factor is variable which is compulsorily added to the experiment.

Three major types of variables included like dependent, independent and controlled variables.

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