The atomic number of fluorine is 9. Explain the formation of fluoride ion ?

Answers

Answer 1

The atomic number of fluorine is 9.the formation of fluoride ion is mentioned below.

What is atomic number ?

Chemical elements are grouped in the periodic system by increasing the amount of protons they contain, and each chemical element has a unique atomic number. As a result, the number of protons, which is always equal to the number of electrons in the neutral atom, is also the atomic number.

What is electrons ?

It is possible for an atom to have an attached or detached electron, a negatively charged subatomic particle (not bound). The electron, along with protons and neutrons, is one of the three main particle types found inside an atom. Atomic nuclei are composed of protons, neutrons, and electrons.

The electrical structure of a fluorine atom is 1s2 2s2 2p5. To get a stable octate or a noble gas configuration, one electron must therefore be removed. Therefore, the fluorine atom picks up an electron to transform into the flouride anion (F), which leads to a stable octate.

Therefore, atomic number of fluorine is 9.the formation of fluoride ion is mentioned above.

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Related Questions

_____is when chemical precipitates fill in the voids between clasts
A. Sorting
B. Rounding
C. Cementation
D. Lithification

Answers

Cementation is when chemical precipitates fill in the voids between clasts. Option C is the correct alternative here>

Cementation is a process in geology where minerals precipitate from solution and fill in the spaces (or voids) between clasts, which are individual rock fragments or particles.

The precipitation of these minerals forms a solid mass, or rock, by bonding the clasts together. This process is one of the steps in the formation of sedimentary rocks, which are rocks that form from the accumulation of sediment such as sand, silt, and clay.

The type of mineral cement that forms can depend on the environment and the minerals that are present in the surrounding rock. For example, in a marine environment, the mineral calcite may be the cementing material, while in a more silica-rich environment, the mineral quartz may be the cementing material.

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The term "polyatomic ion" tells us that we are working with a _______ particle made of two or more atoms, joined to form a unit.
Responses
A ionicionic
B covalentcovalent
C chargedcharged

Answers

The term "polyatomic ion" tells us that we are working with a covalent covalent particle made of two or more atoms, joined to form a unit. Therefore, option B is correct.

What is polyatomic ion ?

Polyatomic ions are ions that have more than one atom. Nitrate ion, NO3-, for example, has one nitrogen atom and three oxygen atoms. A polyatomic ion's atoms are usually covalently bonded to one another and thus remain together as a single, charged unit.

Polyatomic ions are ions composed of two or more atoms joined by covalent bonds but with a net electron deficiency or surplus, resulting in an overall charge on the group.

Thus, option B is correct.

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calculate the freezing point of a solution of 40.0 g benzoic acid, c7h6o2, dissolved in 800. g of benzene, c6h6. k f for benzene is 5.10°c/m and the freezing point is 5.50°c for benzene.

Answers

The freezing point of a solution of 40.0 g benzoic acid is 5.245 °C.

The freezing point depression of a solution can be calculated using the equation ΔTf = Kf × molality, where ΔTf is the change in the freezing point, Kf is the molal freezing point depression constant, and molality is the concentration of the solute in mol/kg of solvent.

The molality of the solution can be calculated by dividing the mass of the solute (40.0 g of benzoic acid) by the mass of the solvent (800.0 g of benzene) and converting the result to moles.

Molality = (40.0 g of benzoic acid) / (800.0 g of benzene) = 0.05 mol/kg

Next, we can calculate the change in the freezing point using the equation ΔTf = Kf × molality

ΔTf = (5.10 °C/m) × (0.05 mol/kg) = 0.255 °C

Finally, we can calculate the freezing point of the solution by subtracting the change in the freezing point from the freezing point of the pure solvent.

Freezing point of solution = (Freezing point of pure solvent) - ΔTf = (5.50 °C) - (0.255 °C) = 5.245 °C

The freezing point of the solution of 40.0 g of benzoic acid dissolved in 800.0 g of benzene is 5.245 °C.

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The chemical equation below shows the reaction between tin (Sn) and hydrogen fluoride (HF).

Sn + 2HF Right arrow. SnF2 + H2

The molar mass of HF is 20.01 g/mol. How many moles of Sn are required to react completely with 40 g of HF?
1 mole
2 moles
3 moles
4 moles

Answers

Taking into account the reaction stoichiometry, the correct answer is the first option: 1 mole of Sn are required to react completely with 40 g of HF.

Reaction stoichiometry

In first place, the balanced reaction is:

Sn + 2 HF  → SnF₂ + H₂

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:

Sn: 1 moleHF: 2 molesSnF₂: 1 moleH₂: 1 mole

Moles of Sn required

Being the molar mass of HF 20.01 g/mol, if 40 g of HF react, the number of moles of the compound that react is calculated as:

Moles of HF= 40 g÷ 20.01 g/mole

Solving:

Moles of HF= 2 moles

Then, by reaction stoichiometry 2 moles of HF react with 1 mole of Sn (First option)

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Which functional group(s) is not present in the molecule below?
a. Haloalkane
b. Ketone
c. Ether
d. Ester

Answers

All the functional groups except ether are present in the molecule.

Which functional group is not present in molecules?

A functional group is a group of atoms in a molecule with distinguished chemical properties, any way of the other atoms in the molecule. The atoms in a functional group are associated with each other and to the rest of the molecule by covalent bonds. However, sodium is an element, a metal, it is not a functional group.

Some of the main functional groups in biological molecules involve hydroxyl, methyl, carbonyl, carboxyl, amino, phosphate, and sulfhydryl groups. These groups play an important role in the genesis of molecules like DNA, proteins, carbohydrates, and lipids.

So we can conclude that The functional groups perform a vital activity in producing molecules like proteins, DNA, lipids, and carbohydrates.

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you need a 35% alcohol solution. on hand, you have a 240 ml of a 25% alcohol mixture. you also have 75% alcohol mixture. how much of the 75% mixture will you need to add to obtain the desired solution?

Answers

You will need 60ml of the 75% solution to add to the 240ml of a 25% alcohol mixture.

A solution is a specific kind of homogenous mixture made up of two or more components that is used in chemistry. A solute is a substance that has been dissolved in a solvent, which is the other substance in the mixture. The solvent particles will pull the solute particles apart and surround them if the attractive forces between the solvent and solute particles are stronger than the attractive forces holding the solute particles together. The particles of the solute that are enclosed by the solid solute subsequently disperse into the solution.

Now m be the amount of the 75% mixture and you have 240ml of the 25% alcohol mixture.

75% m + 25%(240) = 35%(m + 240)

75/100m + 25/100 × 240 = 35/100m + 35/100 × 240

divide all by 5 to get,

15/20m + 5/20 × 240 = 7/20m + 7/20 × 240

multiply by 20 to get

15m + 1200 = 7m + 1680

Then it will reduces to,

8m = 480

m = 60ml.

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given that 0 k is the lowest possible temperature that can be attained theoretically, which temperatures listed can be achieved for a sample of matter? select all that apply.
-300.0°C 0°C 300.0°F 0°F

Answers

The temperatures that can be achieved for a sample of matter are:

-300.0°C

0°C

0 K (or 0°C) is the lowest possible temperature that can be attained theoretically, and -300.0°C is a temperature that can be achieved for a sample of matter. 300.0°F and 0°F are temperatures in the Fahrenheit scale, and are not applicable in this context as the temperatures given are in the Celsius scale. All the temperatures listed can be achieved for a sample of matter except 0 k which is the lowest possible temperature that can be attained theoretically and has no practical meaning in terms of a temperature scale. 0°F and 300.0°F can be achieved as well as they are both on the Fahrenheit temperature scale where 0°F is the freezing point of water and 300.0°F is a high temperature.

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if a chemical is spilled in lab, what action should you take first? select one: neutralize the spill with baking soda. surround the spill with absorbent. dilute the spill with water. notify the lab instructor or ta.

Answers

If a acid chemical is spilled in lab, then the first step to take is neutralize the spill with baking soda. So, correct answer is option (a).

Both acids and bases can be corrosive to some degree, depending on the extent to which they've been diluted with water; this affects their concentration and strength. Some examples of corrosive acids are nitric acid and sulphuric acid. The acid with the strongest corrosive effect on human skin is hydrochloric acid. If acid is spilled in the laboratory, it should be immediately neutralized with a strong base, such as sodium bicarbonate. Neutralization is defined as a chemical reaction in which an acid and a base react with each other quantitatively.

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Complete question:

if a acid chemical is spilled in lab, what action should you take first? select one:

a)neutralize the spill with baking soda.

b)surround the spill with absorbent.

c) dilute the spill with water.

d) notify the lab instructor or ta.

determine the hybridization state of each carbon atom in nemotin

Answers

Nemotin is a diterpenoid natural substance with a carbocyclic ring system as its main structural component.

Analyzing the bonding configurations of the carbon atoms in nemotin allows one to assess the degree of hybridization.

Usually, sp hybridization occurs between carbon atoms that are bound to one or two other atoms and form a linear or angular shape. Typically, sp3 hybridization occurs in tetrahedral structures made of three bonded carbon atoms. Typically, sp2 hybridization occurs when four carbon atoms are linked together to form a trigonal planar or tetrahedral structure.

Since the carbons in the carbocyclic ring structure of nemotin are connected to four other atoms and arrange themselves in a planar manner, they are most likely sp2 hybridized. Depending on their bonding configurations, the carbons on the side chains connected to the ring system may be either sp3 or sp2 hybridized.

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For centuries, fishermen have used shark liver oil to treat a variety of ailments, including general weakness, wounds, and inflammation of the respiratory and gastrointenstinal tracts. In fact, it is an ingredient in the hemorrhoid cream Preparation H. In addition to chemicals such as vitamins A and D, omega-3 fatty acids, and triglycerides, shark liver oil contains approximately 14% 2,6,10,14-tetramethylpentadecane, also known as pristane.

Write the molar mass of pristane?

Answers

The molar mass of pristane is 204.4 g/mol.

To calculate the molar mass of a compound, you need to use the chemical formula to determine the number of atoms of each element in the compound.

Then, you can use the atomic weights of each element to calculate the total molar mass. For example, if the compound is water (H2O), the molar mass would be 2 (atomic weight of hydrogen) + 16 (atomic weight of oxygen) = 18 g/mol.

Molar mass is the mass of one mole of any substance. It is defined as the amount of a substance that contains a certain number of molecules or atoms.

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How do you determine the number of signals in the NMR spectrum?

Answers

The number of signals these molecules release in a 1H NMR spectrum can be calculated using the number of distinct hydrogens on one side of a symmetry plane.

What is hydrogen, exactly?

Natural gas, sometimes known as methane, is a filthy alternative to hydrogen. It is thought to account about 75% of universe's mass and is the most common chemical element. On Earth, there are a lot of hydrogen atoms in water, plants, animals, plus, of course, us.

How are hydrogens referred to?

The two additional hydrogen isotopes are Deuterium and Tritium, whereas the common synthesis gas H is known as proton. Out of all the elements, only hydrogen's isotopes have been given unique names. The two have their purposes.

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Identify each element. Identify the atomic number and atomic mass of each element. Explain how the atomic structure of the two elements differ. Describe where each element is located on the periodic table (be specific). Predict the characteristics of each element based on their placement on the periodic table.

Answers

The atomic number or the number of protons in an atom are two properties that can be used to identify an element. The number of neutrons and electrons is frequently equal to the number of protons, but this can vary depending on the atom.

What is an atomic number ?

The atomic number of an element is the number of protons, whereas the mass number is the number of protons plus the number of neutrons.

Because different elements have different numbers of protons and electrons, their atomic structures differ. This explains why different elements have distinct properties.

The chemical elements are ordered from left to right and top to bottom by increasing atomic number, or the number of protons in an atom's nucleus, which generally corresponds to increasing atomic mass.

The atomic symbol, atomic number, and mass number of an element are important characteristics in the periodic table. Dmitri Mendeleev, a Russian chemist, is credited with designing the modern periodic table. Only 63 elements were known when he designed his periodic table.

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A student measured the temperature of boiling water to be 105. 25 oc. The correct temperature for boiling water is 100. 00 oc at 1 atm. What went wrong in the experiment?.

Answers

It is possible that there was an error in the measurement process that caused the recorded temperature to be higher than the actual temperature. This could be due to a number of factors such as incorrect usage of the thermometer, failure to properly calibrate the thermometer or interference from external sources during the measurement.

Additionally, it could be that the atmospheric pressure at the time of the experiment was different from 1 atm, which would affect the boiling point of the water. In order to determine the source of the error, the student should repeat the experiment and carefully examine their methodology to identify and correct any errors.

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the enthalpy of vaporization of substance e is bigger than that of substance f. at any temperature where both substances are liquid, which has the higher vapor pressure?

Answers

If the enthalpy of vaporization of substance E is greater than that of substance F, then substance E has a lower vapor pressure at any temperature where both substances are liquid.

What is vaporization?

Vaporization is the process of a substance changing from a liquid state to a gaseous state, due to an increase in temperature or pressure. It is the reverse process of condensation, where a gas changes into a liquid. Vaporization can occur either at the surface of a liquid, where the molecules have sufficient energy to escape the liquid state and become a gas, or throughout the bulk of the liquid, where enough energy is supplied to cause the liquid to boil.

This is because the enthalpy of vaporization represents the amount of energy required to convert a given amount of a substance from the liquid state to the gaseous state. A substance with a higher enthalpy of vaporization requires more energy to be converted, and therefore has a lower vapor pressure.

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naphthalene is a primary component of mothballs; they readily sublime at room temperature. the heat of sublimation for naphthalene, c10h8, is 72.9 kj/mol. how much energy is needed to sublime 15.0 grams of naphthalene? (molar mass

Answers

The energy required to sublime 15 grams of Naphthalene is 8.54 kJ.

To find the amount of energy needed to sublime 15.0 g of naphthalene, we need to first determine the number of moles of naphthalene, and then multiply that by the heat of sublimation.

First, we need to find the number of moles of naphthalene:

15.0 g / 128.17 g/mol = 0.117 mol

Next, we need to multiply the number of moles by the heat of sublimation:

0.117 mol * 72.9 kJ/mol = 8.54 kJ

So, the energy needed to sublime 15.0 g of naphthalene is 8.54 kJ.

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how much heat is needed to change 18 g of water at 20∘c into water vapor at the boiling point?

Answers

40.22 kJ of heat are required to convert 18 grammes of water at 20°C into water vapour at the boiling point.

The boiling point of a substance is the temperature at which a liquid's vapour pressure matches the pressure around it and the liquid condenses into a vapour.  Different liquids will boil at various temperatures and pressures. The heat required to change a substance from a liquid to a gas is called the enthalpy of vaporization, or ∆Hvap. The amount of heat required to vaporize a given amount of a substance can be calculated using the equation:

q = m x ∆Hvap

here q is heat required, m is mass of the substance, and ∆Hvap is enthalpy of vaporization.

For water, the enthalpy of vaporization at its boiling point (100°C) is 40.7 kJ/mol. To convert this to kJ/g, we can divide by the molar mass of water, which is 18.015 g/mol:

= ∆Hvap

= 40.7 kJ/mol / 18.015 g/mol

= 2.268 kJ/g

So, to vaporize 18 g of water at 20°C, we need:

= q

= 18 g x 2.268 kJ/g

= 40.22 kJ

This is the amount of heat that must be added to the water to change it from a liquid at 20°C to a gas at the boiling point (100°C).

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Suppose the following chemical reaction can take place in this mixture:
4HCI(g) + O2(g) → 2H2O(g)+2C2(g)
Of which reactant are there the most initial moles? enter its chemical formula:

Answers

In the given chemical reaction, 4HCI (g) reacts with O2 (g) to form 2H2O (g) and 2Cl2 (g). If we consider 4HCI as the reactant with the most initial moles, then its chemical formula is HCl.

HCl, or hydrogen chloride, is a colorless and highly reactive gas that is widely used in various industrial processes. It is commonly used as a starting material for the production of other chemicals such as PVC and Teflon. In this reaction, HCl moles reacts with O2 to form H2O and Cl2. H2O, or water, is a common and essential compound reaction that is widely used in various industries, including agriculture, pharmaceuticals, and personal care products. Cl2, or chlorine, is a highly reactive gas that is widely used in the production of various moles chemicals, such as bleach and other disinfectants. In conclusion, the chemical reaction moles between 4HCI and O2 can result in the formation of water and chlorine, which have significant industrial applications. The most number of initial moles are of HCL

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What signal would be easier to interpret when it arrived at a far away destination? digital or analog?

Answers

Digital signals are easier to interpret when they arrive at a faraway destination compared to analog signals.

Analog signals are continuous signals that represent physical measurements, such as sound waves or voltages.

Binary digits (0s and 1s) are combined to create digital signals, which are then translated into electrical impulses for transmission. They are less prone to interference and noise during transmission, and the signal may be precisely recreated at the other end. Analog signals, on the other hand, are continuous electrical impulses that are susceptible to interference and noise, making it more challenging to correctly interpret the information after transmission. The preferred signal type for long-distance communication is therefore digital.

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Choose the statement that does NOT pertain to amino acids.
a. The groups composing an amino acid are located around a central alpha-carbon.
b. All amino acids must contain a nitrogen-based molecule and a carboxylic acid.
c. The R-side group will determine the overall chemical properties of an individual amino acid.
d. Amino acids always contain a sulfur atom in their R-side group.

Answers

A hydrogen atom, R group, and a carbon atom are all connected by bonds. The amino acid side chain refers to this R group, which differs from one amino acid to another. Among the twenty biologically significant amino acids, five have unique side chains (R). Thus, option D is correct.

What are the main structural components of amino acids?

Each amino acid contains a carbon atom at its core, known as the two to which four groups are attached: a hydrogen atom, a carboxylic acid group, an amine group, and an R-group, also known as a variable group or side chain.

The alpha carbon in every amino acid is joined to a hydrogen atom, a carboxyl group, and an amino group. These protein monomers differences from one another are governed by the R group, which alternates between amino acids.

Therefore, Amino acids always contain a sulphur atom in their R-side group.

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TRUE/FALSE. reverse-phase chromatography (hplc) separates peptides based on molecular weight.

Answers

False. Reverse-phase chromatography (HPLC) separates peptides based on their hydrophobicity and charge, not their molecular weight.

Reverse-phase chromatography (HPLC) separates peptides based on their hydrophobicity and charge, not their molecular weight. HPLC works by running a sample of peptides through a column containing a stationary phase, which is usually a hydrophobic material such as silica gel or alumina. The peptides then interact with the stationary phase, and the ones that are more hydrophobic will be retained in the column longer than the ones that are more hydrophilic, resulting in a separation of the peptides based on their hydrophobicity and charge.

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Without certain tools, scientists would not be able to collect certain types of data in space. Why is this idea by explaining one tool that scientists use to collect data that they would not be able to collect without this technology.

Answers

The  idea by explaining one tool that scientists use to collect data that they would not be able to collect without this technology as it would not give results with accuracy.

What is accuracy?

Accuracy in terms of chemistry can be defined as to how close a measurement is to the true value.There are three types of accuracy:

1) Point accuracy-It means accuracy is present at that point of scale only.It does not give any information about the accuracy of the instrument.

2)Percentage of true value--It is the accuracy  which is determined by identifying accuracy of the instrument  and comparing it with the measured true value.

3)Percentage of scale range- It is the accuracy  which determines accuracy of the measurement.

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Select the reasons that the molecule formed by 2 hydrogen atoms (H2) is stable. (choose more than 1)
It is held together by a covalent bond
The octet rule is not satisfied
It has no net charge
It is held together by an ionic bond
It has no unpaired electrons

Answers

The molecule formed by 2 hydrogen atoms (H2) is stable because: It is held together by a covalent bond, It has no unpaired electrons, It has no net charge.

It is held together by a covalent bond, which is a type of chemical bond formed by the sharing of electrons between atoms.

It has no unpaired electrons, meaning that each hydrogen atom has a full complement of electrons, resulting in a more stable molecule.

It has no net charge, meaning that the positive and negative charges within the molecule are balanced, resulting in a neutral overall charge.

Hydrogen gas (H2) is a simple molecule composed of two hydrogen atoms bonded together by a covalent bond. A covalent bond is a chemical bond that forms when two atoms share electrons in order to fill their valence shells and become more stable. In the case of H2, each hydrogen atom contributes one electron to the bond, and the electrons are shared between the two atoms.

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o have eight valence electrons, atoms can __________ electrons.
Responses
A gain or sharegain or share
B gain, lose, or sharegain, lose, or share
C give or removegive or remove
D create more

Answers

Oxygen have six  valence electrons, atoms can gain or share gain or share electrons. Therefore, option A is correct.

When oxygen gains electrons what happens?

To fill its outermost electron shell, oxygen requires two electrons. Hydrogen can only bond with one electron. As a result, an oxygen atom requires two hydrogens to complete its shell. The oxygen ion now has 10 electrons and 8 protons after gaining two electrons, giving it a net charge of 2.

Oxygen has six valence electron in its outermost orbit therefore, it gains two electron from another atom.

Thus, option A is correct.

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explain your prediction for the effect na cl- might have on glucose transport. in other words, explain why you picked the choice that you did. how well did the results compare with your prediction?

Answers

The prediction for the effect that Na⁺ Cl⁻ might have on the glucose transport is that when decreasing  the NaCI lead to decrease in the osmotic pressure.

The  effect of Na⁺ Cl⁻  that might have on the glucose transport is that when decreasing the NaCI lead to decrease in the osmotic pressure. This is due to reason that the water will need to diffuse at the higher concentration gradient till the equilibrium will reached. The glucose is transported across the membrane via the  GLUT transporters.

Thus, on increasing the NaCI concentration lead to increase in the osmotic pressure , this is the  effect that Na⁺ Cl⁻ .

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What is an Aldehyde?

Answers

Organic substances called aldehydes have the substituents -CHO. Carbonyl compounds have a core carbonyl carbon that is single and doubly bound to the R group, an oxygen, as well as a hydrogen atom.

What distinguishes Class 12 ketone from aldehyde?

The organic molecules with the carbon functional group are aldehydes and ketones. The carbonyl group, which is linked to at least 1 hydrogen atom, is present in aldehydes. A carbonyl group connected to two carbon is present in ketones.

What are the benefits of aldehydes?

Aldehydes are versatile substances that can be used to create resins, dyes, acids, as well as detergents, soaps, and scents for cologne. Formaldehyde is the aldehyde that is most widely generated industrially.

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Which substance involves no bonding forces except London dispersion forces?
a) NaCl (l)
b) HF (l)
c) N2(s)
d) H2O
e) K(s)

Answers

N2 (s) does not show any other type of force except London dispersion force.

What are the dispersion forces in London?

The least powerful intermolecular force is the London dispersion force. When the electrons in two nearby atoms occupy positions that cause the atoms to temporarily form dipoles, the consequence is the London dispersion force, a transient attractive force. The term "induced dipole-induced dipole attraction" is frequently used to describe this effect.

Give an illustration of what London dispersion forces are.

This induced dipole can get deformed when another atom or molecule comes into touch with it, which causes an electrical attraction between the two. Dispersion forces exist between any of these atoms or molecules that come in contact with one another.

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Which set of three quantum numbers does not specify an orbital in the hydrogen atom? Please I need a step by step explanation.
A- n =2; l =1; ml =-1
B- n =3; l =2; ml =2
C- n =2; l =0; ml =0
D- n =3; l =4; ml =0

Answers

The values of the three quantum numbers are n = 3, l = 4, and ml = 0.

What is the quantum ?

Quantum is a term used to describe the smallest possible unit of a physical quantity, such as energy. It is the fundamental building block of all matter and is the basis of modern quantum mechanics. Quantum mechanics is a branch of physics that deals with the behavior of matter and energy on the atomic and subatomic level. In quantum mechanics, particles of matter and energy are described by wave-like equations, and the behavior of these particles is unpredictable and usually counterintuitive.

The correct answer is D- n =3; l =4; ml =0.

The three quantum numbers specify an orbital in the hydrogen atom are the principal quantum number (n), the angular momentum quantum number (l), and the magnetic quantum number (ml). The values of these three quantum numbers must satisfy the following conditions:

1. The principal quantum number (n) must be a positive integer: n = 1, 2, 3, 4, etc.

2. The angular momentum quantum number (l) must be an integer between 0 and n-1: l = 0, 1, 2, ..., n-1.

3. The magnetic quantum number (ml) must be an integer between -l and +l: ml = -l, -l+1, -l+2, ..., 0, ..., +l-2, +l-1, +l.

In the case of option D, the values of the three quantum numbers are n = 3, l = 4, and ml = 0. This does not satisfy the condition for l, which must be an integer between 0 and n-1. Therefore, option D is the correct answer.

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of the following, which is the strongest base

Answers

The strongest base among the ones listed is NaOH.The conjugate acid NH3 is the least powerful in the group.

which is the H2N-conjugate acid.. H2N- will therefore be the most powerful basis. The existence of a lone pair of electrons on the nitrogen atom, which are available for the bond formation with Lewis acid, is what gives amine its basic nature. due to the +I action of the CH 3 NH 2 group.

Strong Bases List (8):

LiOH (lithium hydroxide) (lithium hydroxide)

NaOH (sodium hydroxide) (sodium hydroxide)

KOH (potassium hydroxide) (potassium hydroxide)

Ca(OH)2 (calcium hydroxide) (calcium hydroxide)

RbOH (rubidium hydroxide) (rubidium hydroxide)

Sr(OH)2 (strontium hydroxide) (strontium hydroxide)

CsOH (cesium hydroxide) (cesium hydroxide)

Ba(OH)2 (barium hydroxide) (barium hydroxide)

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rank the relative nucleophilicity of halide ions in dimethyl sulfoxide solution.

Answers

In dimethyl sulfoxide (DMSO) solution, the relative nucleophilicity of halide ions can be ranked as follows:

Iodide (I-)

Bromide (Br-)

Chloride (Cl-)

Fluoride (F-)

This ranking is based on the fact that, in general, nucleophilicity increases as the basicity of the species increases. In DMSO, iodide is the most basic halide ion and has the highest nucleophilicity, followed by bromide, chloride, and fluoride in that order. Fluoride is the least nucleophilic due to its small size and high electronegativity, which make it less likely to participate in nucleophilic reactions. Nucleophilicity is a measure of the tendency of a nucleophile (an electron-rich species) to participate in a chemical reaction. It is a measure of the reactivity of a nucleophile towards an electrophile (an electron-poor species). A highly nucleophilic species has a high affinity for electrons and is therefore more likely to react with an electrophile.

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a student added solid to a volumetric flask of volume 200.0 ml, which was then filled with water, resulting in 200.0 ml of naoh solution. then 5.00 ml of the solution was transferred to another volumetric flask and diluted to 500.0 ml. the ph of the diluted solution is 13.25. (a) what is the molar concentration of hydroxide ions in (i) the diluted solution, (ii) the original solution? (b) what mass of was added to the first flask?

Answers

a) (i) The diluted solution has a volume of 500.0 ml and a concentration of hydroxide ions of 13.25. The concentration of hydroxide ions (C) can be found using the formula:

C = 10^(pH-14)

Thus,

C = 10^(13.25-14) = 10^(-0.75) = 0.0562 M

(ii) The original solution has a volume of 200.0 ml and a concentration of hydroxide ions of 0.0562 M. We can find the original concentration (C1) from the dilution formula:

C1 = (C * V2) / V1

Where

C = 0.0562 M

V1 = 200.0 ml = 0.200 L

V2 = 5.00 ml = 0.005 L

Thus,

C1 = (0.0562 * 0.005) / 0.200 = 0.0562 * 0.025 = 0.1405 M

b) The moles of hydroxide ions in the original solution can be found using the concentration and volume:

moles = C * V = 0.1405 * 0.200 = 0.0281 moles

The moles of NaOH can be found using the balanced equation:

NaOH + H2O → Na+ + OH-

Since one mole of NaOH generates one mole of hydroxide ions, the moles of NaOH can be found from the moles of hydroxide ions:

moles of NaOH = 0.0281 moles

The mass of NaOH can be found in the moles and the molar mass:

mass = moles * molar mass = 0.0281 * 40.0 g/mol = 1.1244 g

Thus, 1.1244 g of NaOH was added to the first flask.

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