addition of br2 to (e)-hex-3-ene produces ________. A. meso dibromide B.mixture of enantiomeric dibromides which is optically active C.a mixture of enantiomeric dibromides which is optically inactive D..の3,4-dibromo-3.hexene e e E.-3,4-dibromo-3-hexene

Answers

Answer 1

Option (a) is correct. Addition of br2 to (E)- Hex- 3-ene produces a meso dibromide.

The addition of Br of an alkene involves the formation of an intermediate cyclic bromonium ion, followed by the anti-addition of a bromide ion to form the product. The rigidity of the ring controls the stereochemistry of the reaction. This means that the addition of Br of a trans alkene gives a meso dibromide.  the addition of hex-3-ene gives meso-2,3-dibromohexane as the product. Addition of Br2 to (E)-hex-3-ene produces a meso dibromide, a mixture of enantiomeric dibromides which is optically active and a mixture of enantiomeric dibromides which is optically inactive.

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Related Questions

a sample of an element has a mass of 34.261 grams and a volume of 3.8 cubic centimeters. to which number of significant figures should the calculated density of the sample be expressed?

Answers

To 2 significant figures should the calculated density of the sample be expressed.

Density is the amount of mass per unit of volume. The symbol most often used for density is ρ although the Latin letter D can also be used. The density of a material varies with temperature and pressure. This variation is small for solids and liquids but much greater for gases. Increasing the pressure on an object decreases the volume of the object and thus increases its density. Increasing the temperature of a substance  decreases its density by increasing its volume.

                   Density = mass / volume

                  ρ = m V.

Density has the SI units of kilogram per cubic meter or gram per cubic centimeter. It is a useful quantity in calculating for the mass of fluids.

A sample of an element has a mass of 34.261 grams and a volume of 3.8 cubic centimeters.

  mass = 34.261 grams

  Volume =  3.8 cubic centimeters

Density = 34.261 g / 3.8 cm3

             = 9.0160526

             = 9.0 g/ cm3  ( aprox.)

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records of each controlled substance dispensed, received, or destroyed at the facility where you work must be available for review for what time period?

Answers

Records of each controlled substance dispensed, received, or destroyed at the facility where you work must be available for review. The time for which the records is taken care of depends on person to person.

Maintain Controlled Substance Records The licensee/registrant must maintain applicable, accurate records in a secure storage location for two (2) years from the date of last transaction. All records must be readily available for audit purposes to U-M, the State of Michigan, or DEA Diversion Investigators. we have to manage time to our fullest so that we can use it to our benefit and make good benefit to it. by which information we can particularly consider that records of each controlled substance dispensed, received, or destroyed at the facility where you work must be available for review. The time for which the records is taken care of depends on person to person.

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The half-life of bromine-74 is 25 min. How much of a 4.0 mg sample is still active after 75 min?
a. 0.50 mg
b. 1.0 mg
c. 2.0 mg
d. 0.25 mg
e. 4.0 mg

Answers

The half life of bromine-74 is 25min. After 75 min. only o.5mg of sample is still active.

Half-life of a radioactive element is time required for the element which undergo disintegration and reduces its initial concentration to half of the concentration.

Therefore, the half-life of  the bromine-74 is 25 minute. So we calculate the number of periods.

Half-life = time / no. of periods

No. of period = Time given / [tex]t_{1/2}[/tex]

No. of period = 75 / 25 = 3

The number of periods is three and in each period  half of the amount of the initial concentration of the elements will disintegrates.

So, 6mg disintegrates into 4 / 2 and then 4 / 4 and then 4 /8

4mg→ 4 / 2→ 4 / 4→ 4 / 8

The final value will be 0.5 mg.

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why group V III elements are called Global /inert gas​

Answers

Neon, argon, krypton, xenon, helium, and radon are examples of noble gases. Due to their monatomic nature and general chemical inertness, these gases are referred to as inert gases.

Explain about the noble gases?

Under typical circumstances, the noble gases are inert, tasteless, odorless, and nonflammable. In the past, they were referred to as belonging to group 0 in the periodic table since it was thought that they had a valence of zero, which meant that their atoms couldn't interact with those of other elements to form compounds.

The elements in Group 18 of the periodic table are known as noble gases, also referred to as inert gases. They are made up of radioactive radon, which lacks any known stable isotopes, as well as helium, neon, argon, krypton, and xenon. Because they hardly ever bind with less-than-stellar elements—those with open outer electron shells—this is why they are known as "noble" gases.

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27. Which of the following molecules are chiral? I. 2-Chlorobutane II. 3-Bromopentane
III. 1-Bromo-2-methylpropene IV. 2-Bromo-3-methylbutane
A) I, II B) I, IV C) II, III
D) III, IV

Answers

Options i, iii are correct. Chiral molecules are molecules that are non-superimposable mirror images of each other, often referred to as "left-handed" and "right-handed" molecules.

Out of the given molecules, the following are chiral:

I. 2-Chlorobutane: This molecule has a chiral carbon atom, which is the carbon atom that is bonded to the chlorine atom and also to two other carbon atoms. III. 1-Bromo-2-methylpropene: This molecule has a chiral carbon atom, molecules which is the carbon atom It's worth noting that even though the molecule has no chiral atoms, it could still be chiral if the molecule is not symmetrical. that is bonded to the bromine atom and also to the double bond.

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Using values from Appendix C , calculate the value of ∆H° for each of the following reactions:a. CaO (s) + 2HCl (g) ---> CaCl2 (s) + H2O (g)b. 4FeO (s) + O2 (g) --> 2Fe2O3 (g)c. 2CuO (s) + NO (g) --> Cu2O (s) + NO2 (g)d. 4NH3 (g) + O2 (g) --> 2N2H4 (g) + 2H2O (l)

Answers

A. ∆H° = -1238.8 kJ/mol. This reaction is endothermic, meaning that heat is absorbed in order for the reaction to occur.

What is reaction?

Reaction is an action in response to a stimulus. It is an immediate response to a situation or event that occurs.

The heat of formation for CaO (s) is -635.7 kJ/mol, HCl (g) is -92.3 kJ/mol, CaCl2 (s) is -790.3 kJ/mol, and H2O (g) is -241.8 kJ/mol. To calculate the ∆H°, we need to use the equation ∆H° = Σ (ΔHf products) - Σ (ΔHf reactants). Plugging in the values, we get ∆H° = (-790.3 + -241.8) - (-635.7 + -92.3) = -1238.8 kJ/mol.

b. ∆H° = -1115.8 kJ/mol

This reaction is exothermic, meaning that heat is released when the reaction occurs. The heat of formation for FeO (s) is -824.3 kJ/mol, O2 (g) is 0 kJ/mol, and Fe2O3 (g) is -1290.1 kJ/mol. To calculate the ∆H°, we need to use the equation ∆H° = Σ (ΔHf products) - Σ (ΔHf reactants). Plugging in the values, we get ∆H° = (-1290.1) - (-824.3 + 0) = -1115.8 kJ/mol.

c. ∆H° = -250.3 kJ/mol

This reaction is endothermic, meaning that heat is absorbed in order for the reaction to occur. The heat of formation for CuO (s) is -157.4 kJ/mol, NO (g) is 90.2 kJ/mol, Cu2O (s) is -167.9 kJ/mol, and NO2 (g) is 33.3 kJ/mol. To calculate the ∆H°, we need to use the equation ∆H° = Σ (ΔHf products) - Σ (ΔHf reactants). Plugging in the values, we get ∆H° = (-167.9 + 33.3) - (-157.4 + 90.2) = -250.3 kJ/mol.

d. ∆H° = -907.2 kJ/mol

This reaction is exothermic, meaning that heat is released when the reaction occurs. The heat of formation for NH3 (g) is -45.9 kJ/mol, O2 (g) is 0 kJ/mol, N2H4 (g) is -208.6 kJ/mol, and H2O (l) is -285.8 kJ/mol. To calculate the ∆H°, we need to use the equation ∆H° = Σ (ΔHf products) - Σ (ΔHf reactants). Plugging in the values, we get ∆H° = (-208.6 + -285.8) - (-45.9 + 0) = -907.2 kJ/mol.


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How does adding oxygen (o2) to this reaction change the equilibrium? 2so2(g) o2(g) ⇌ 2so3(g)

Answers

Explanation:

bec. oxygen entered by 6 atoms and became 6 atoms after reaction

but when we add O2 it will enter by 8 atoms and became 6 after reaction so it changes the equilibrium

A refrigerator delays the spoilage of food by ________.
A.killing microorganisms
B.slowing down the rate of chemical reactions within microorganisms
C.expanding the water found within microorganisms
D.diminishing the supply of oxygen to microorganisms

Answers

Refrigeration slows the rate of chemical reactions within microorganisms.

Please mark brainliest I need 2 more!!!!!!!!!!!

A refrigerator delays the spoilage of food by slowing down the rate of chemical reactions within microorganisms. Therefore, option B is correct.

What do you mean by chemical reaction ?

The term chemical reaction is defined as the processes, in which substances undergo a chemical change to formed new substances, with all new properties.

Higher temperatures often result in faster chemical reactions. When food is left on the kitchen counter, it can soon become bad. The process is slowed down by the refrigerator's lower temperature, which allows the same food to stay fresh for longer.

Bacteria, molds, and yeasts are all potential sources of microbial deterioration. Food's water activity plays a significant role in determining the type of food decomposition that results.

Thus, option B is correct.

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As the term "peroxide" is used in Chapter 10, it can refer to which structure(s)? O ROOR O ROOH 0 0 O RCOOCR OTwo of these choices. O Three of these choices.

Answers

The structure which referred to peroxide is ROOR, ROOH, RCOOOCOR.

All the three structure show peroxide because in all the structure two oxygen atom is connected with single covalent bond.

Peroxides are a class of chemical compounds with the formula R-O-O-R, where R can be any element. The peroxide group, also known as the peroxo group, is the O-O group found in peroxides. The nomenclature varies to some extent. Hydrogen peroxide, also referred to as "peroxide," is the most prevalent peroxide.

Hydrogen peroxide is an antiseptic liquid that is often used to treat cuts or other skin wounds and kill germs. It comes in a brown bottle. However, peroxide is frequently employed in non-medical contexts, such as for stain removal, cleaning, and disinfection.

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A student wants to determine the melting point of water as part of an investigation into the strength of electrostatic forces. The student considers determining the freezing point of water instead. Is this a valid option?

a. No, it is not because the freezing point is not related to the melting point.
b. Yes, it is; but determining the freezing point is likely to be more difficult.
c. No, it is not because the freezing point is not related to electrostatic forces.
d. Yes, it is; and determining the freezing point is likely to be more accurate.

Answers

The correct statement is as follows: No, it is not because the freezing point is not related to electrostatic forces (option C).

What is electrostatic force?

Electrostatic forces are attractive or repulsive forces between particles that are caused by their electric charges.

Melting point refers to the temperature at which the solid and liquid phases of a substance are in equilibrium.

According to this question, a student wants to determine the melting point of water as part of an investigation into the strength of electrostatic forces.

However, the student considers determining the freezing point of water instead. This is not valid because freezing point is not related to electrostatic force.

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what happens to the temperature of a mug of hot cocoa when cold milk is mixed in​

Answers

Answer:

Hot chocolate powder dissolves more quickly in hot water because it is a liquid at room temperature.

Explanation:

When you pour cold milk into hot cocoa, the milk and cocoa particles start to collide When a high-energy cocoa particle hits a low-energy milk particle, energy transfers. The cocoa particles slow down, and the cup of cocoa cools down.

Determine the shape and appropriate bond angles for a compound that has a central sulfur atom with two unshared pairs of electrons and single bonds to two hydrogen atoms

Answers

According to the molecular geometry, the shape of of compound with central sulfur atom with two unshared pairs of electrons and single bonds to two hydrogen atoms is V-shaped and bond angle is 92.1 °.

What is molecular geometry?

Molecular geometry can be defined as a three -dimensional arrangement of atoms which constitute the molecule.It includes parameters like bond length,bond angle and torsional angles.

It influences many properties of molecules like reactivity,polarity color,magnetism .The molecular geometry can be determined by various spectroscopic methods and diffraction methods , some of which are infrared,microwave and Raman spectroscopy.

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what is true about minerals? multiple select question. they are classified as water-soluble or fat-soluble. they are structurally simple. they are inorganic. they do not contain carbon atoms.

Answers

Minerals are water soluble or fat soluble and these are inorganic naturally.

Mineral is a naturally being inorganic solid with a definite chemical composition and a liquid structure. The earth is composed of mineral rudiments, either alone or in a myriad of combinations called composites.

A mineral is composed of a single element or emulsion. Minerals are water-soluble and don't bear enzymatic digestion. They're absorbed directly into the bloodstream, although some minerals need the backing of transport proteins for immersion and transport in blood.

Minerals are inorganic, naturally being, homogenous solid, with a definite chemical composition, and ordered(crystalline) infinitesimal structures.

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“16.2gAl x 1 mol Al/ 26.98gAl x 6.022 x 10^23 Al atoms/1 mol Al” and please explain

Answers

The number of atoms in 16.25 g of Al is calculated here. One mole or 26.98 g of Al contains 6.022 × 10²³ atoms. Thus, the atoms in 16.25 g or 0.60 mol of Al contains 3.62 × 10²³ atoms.

What is one mole ?

Any substance containing 6.022 × 10²³ atoms is called one mole of that substance. This number is called Avogadro number. Therefore, one mole of every substances contains Avogadro number of atoms. The mass of one mole of an atom is called its atomic mass.

Al is 13th element in periodic table. Its atomic mass is 26.98 g/mol. Thus, the  number of moles of 16.25 g of Al is calculated as follows:

no.of moles = given mass/atomic mass

                    = 16.25/26.98 =0.60 moles.

1 mole of Al contains 6.022 × 10²³ atoms. Thus, 0.60 moles contains 6.022 × 10²³ × 0.60 =  3.62 × 10²³ atoms.

Therefore, to calculate the number of atoms in a given number of moles of an element multiply the number of moles with Avogadro's number.

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1) Which of the following substances is not a solution? A) steel B) humid air C) oxygen D) beer E) brass

Answers

Oxygen as the substances is not a solution. It is classified as an element.

In general , solution is known as a homogeneous mixture in which two or more substances are present. Air is also considered as an example of a solution (gaseous solution) because it is a homogeneous mixture of different gases like oxygen, nitrogen, hydrogen, etc.  Also Air is known as a  gaseous mixture that are composed of variety of gases. Beer is a mixture of Ethanol and water.

Hence, solution is considered as an mixture which has  uniformity throughout. A perfect example of solution is salt and water so also considered as  a homogenous mixture. When a mixture is not uniform throughout is not considered as solution example includes sand in water.

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A particular brand of supplement pills contains calcium that is normally distributed with a mean of 490 mg and a standard deviation of 12 mg. What is the probability that a randomly selected pill contains at least 500 mg of calcium?.

Answers

The probability that a randomly selected pill contains at least 500 mg of calcium 1 - P(X < 500) = 1 - P(Z < 0.833).

The probability that a randomly selected pill contains at least 500 mg of calcium can be found by using the CDF of the normal distribution with a mean of 490 and a standard deviation of 12, and subtracting the probability that a pill contains less than 500 mg of calcium from 1.

We can use the cumulative distribution function to find the probability of X < 500, this would be the probability that a pill contains less than 500mg of calcium.

The probability of X < 500 = P(X < 500) = P(Z < (500 - 490)/12) = P(Z < 0.833)

Where Z is a standard normal variable. This is equivalent to the area under the standard normal distribution curve to the left of Z = 0.833.

To get the probability of X >=500, we subtract the probability we just calculated, from 1, that is:

1 - P(X < 500) = 1 - P(Z < 0.833)

This will give us the probability that a randomly selected pill contains at least 500 mg of calcium.

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1 - P(X 500) = 1 - P(Z 0.833) is the probability that a randomly chosen tablet contains at least 500 mg of calcium.

Using the CDF of the normal distribution with a mean of 490 and a standard probability of 12, one can calculate the likelihood that a randomly chosen calcium pill has at least 500 mg of calcium by subtracting the likelihood that it contains less calcium from 1.

We can calculate the likelihood that X 500, or the likelihood that a pill calcium contains fewer than 500 mg of calcium, using the cumulative distribution function.

The odds of X exceeding 500 are P(X exceeding 500) = P(Z (500 - 490)/12) = P(Z 0.833)

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A substance is present in the gaseous state at room temperature. Which of the following best explains the probable position of the substance in the periodic table?

1. It is between groups 1 to 12 because it is a metal.
2. It is between groups 13 to 18 because it is a metal.
3. It is between groups 1 to 12 because it is a non-metal.
4. It is between groups 13 to 18 because it is a non-metal.

Answers

A substance that is present in a gaseous state at room temperature would be between groups 13 to 18 on the periodic table because it is a non-metal. Option 4.

Gaseous elements

Gaseous elements are elements that are in gaseous states at room temperature. They are usually found concentrated in the upper right corner on the right side of the periodic table.

Some of the gaseous elements include elements in group 18 which are collectively known as the noble gases, nitrogen in group 15, oxygen in group 16, and so on.

Even though some elements that exist as gases at room temperature can be found in other groups outside of groups 13 to 18, gaseous elements are concentrated between the referenced groups.

In other words, a substance that is present in the gaseous state at room temperature will most likely be between groups 13 to 18 of the period table.

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ALSO FOR 13 help asap please

Answers

Answer: 1 absolute zero

2. melting point

3.Sublimation

4.

5.Molecule

6. element

7.plasm

8.homogenous mixture

9.celsius

10. Liquid

11.catenation

12deposition

13.

Explanation:

the process by which the atoms of one or more substances are rearranged to form different substances is called a

Answers

Answer:

Chemical reaction

Explanation:

This process is called a chemical reaction. A chemical reaction is where atoms are rearranged to create various compounds, so the atoms can either be formed or broken.

For example, in this equation for the formation of water:

2H2(g) + O2(g) → 2H2O(l)

Here hydrogen and oxygen both combine to form water. This new compound, water, that has formed is what makes it a chemical reaction.

In this equation for the decomposition of calcium carbonate:

CaCO3(s) → CaO(s)+ CO2(g)

Here, CaCO3 has been broken down into CaO and CO2, which takes place as a chemical reaction.

2 As (s) + 6 NaOH (aq) → 2 Na3AsO3 (s) + 3 H2 (g)

If 39.3g of As reacts with excess NaOH at STP, what volume of H2 will be produced in liters?

Answers

The volume of the hydrogen gas is 17.6 L.

What is the volume of the hydrogen gas that is produced?

We know that the volume of the hydrogen that we can get using the stoichiometry of the reaction and that is what we are going to do here. We can see that from the question, we have;

Number of moles of the Arsenic = 39.3g /75 g/mol

= 0.524 moles

We have;

2 moles of arsenic produces 3 moles of hydrogen

0.524 moles of arsenic produces x moles of hydrogen

x = 0.524 moles * 3 moles/ 2 moles

= 0.786 moles

Mass of the oxygen =  0.786 moles * 22.4 L

= 17.6 L

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Select Copper(1) oxide, Cu₂O. Note that CużO is a compound composed of different types of atoms bonded together. Place the CużO molecule on the nano-balance.

A. What is the molecular mass of Cu2O?

B. Add molecules to the larger balance until its reading matches that of the nano- balance exactly. How many molecules did you need to add?

C. Repeat the above procedure with another molecule of your choice. How many molecules did you need to add?​

Answers

Copper monoxide is an ionic compound. The molar mass of copper oxide is 143 g/mol. In nanobalance, we need to add the Avogadro number of molecules.

What is Avogadro number?

The number of atoms contained by one mole of every substance is called Avogadro number. It is equal to 6.02 × 10²³. Hence, one mole of every compound contains these much molecules.

Copper (I)oxide is an ionic compound formed through electrons shared form copper metal to oxygen atom.

Atomic mass of copper = 63.5 g/mol

Atomic mass of oxygen = 16 g/mol

molar mass of copper oxide  = (63.5 × 2) + 16 =143 g/mol

We need to Avogadro number of molecules or one mole of the compound into nano - balance to balance it exactly. Thus, 6.02 × 10²³ molecules.

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What is the molecular geometry of SeCl2

Answers

Trigonal pyramidal: The correct response is Thionyl chloride structure, revealing trigonal pyramidal shape.

What is the shape of the molecule SeCl2?

Tetrahedral: In a very early study of the vapor from solid SeCLi using electron diffraction, Lister and Sutton came to the conclusion that the SeCL molecule is (distorted) tetrahedral with a (mean) SeCl bond distance of 2.13 0.04 [13].

SeCl2 chemical: SeCl2 is twisted or V-shaped because the main atom possesses four pairs of electrons—two bonding pairs and two lone pairs. As a result, SCl2 possesses a tetrahedral form and bent molecular geometry in nature. Two Chlorine atoms around a single Sulfur atom to form SCl2.

The tetrahedral molecular structure of SO2Cl2 has an asymmetric charge distribution on its core atom. This molecule is hence polar. Sulfur dichloride has a tetrahedral electron shape. With two bond pairs and two lone pairs, the molecular geometry is twisted.

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What does a control group show in an experiment investigation

Answers

Control group is used to establish causality by isolating the effect of an independent variable.

What is Control group?

Control group can be defined as any group used as a control in a statistical experiment, extrasensory perception a group of patients who receive either a placebo or a standard drug during an investigation of the effects of another drug on other patients.

Therefore control groups are an important aspect of true experimental designs. The presence of control groups allows researchers to confirm that study results are due to the manipulation of independent variables (IVs) rather than extraneous variables

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Write the name for Ba 3(PO4)2

O barium phosphate
O barium phosphite
O barium (ll) phosphite
O barium (III) phosphite
O tribarium phosphorustetraoxide

Answers

The correct name for Ba3(PO4)2 is barium (III) phosphite. The name reflects the fact that the compound contains three barium cations and two phosphate anions, with the barium cations having an oxidation state of +3.

Chemical nomenclature is the formal system of naming chemical compounds. It is based on certain rules and conventions, and allows scientists to quickly and accurately identify and communicate the structure and composition of a compound.

The rules of chemical nomenclature vary depending on the type of compound, but generally involve assigning the correct prefix, suffix, and stem to the compound. The prefix indicates the type of element present in the compound, the stem indicates the number and arrangement of the atoms, and the suffix indicates the type of bonding and the type of compound. For example, the name for H2O is "dihydrogen monoxide" because the prefix "di" indicates two atoms of hydrogen, the stem "hydrogen" indicates that the compound contains hydrogen atoms, and the suffix "oxide" indicates that it is an oxide compound.

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choose the chiral structures among the ones shown.

Answers

Since the central carbon is attached to various groups, all of the compounds in the list have chiral centres.

If a compound has at least one carbon atom with four different valencies, known as a chiral centre, it is said to be chiral.

Because the carbon atom in CFClBrI is joined to four different groups, it is chiral.

Chiral have stereoisomers and are optically active.

The second carbon with the OH group has four different groups attached to it in the chiral first compound. The first is OH, the second is H, the third is a CH3 group, and the fourth is CH(CH3)2. The carbon containing the OH group has four different valencies in the second compound, which is also chiral. The carbon atom in the third one has four different groups, making it chiral as well. As a result, every compound is chiral.

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5.
older, oibors
As the elements of Group 16 (VIA) are considered
from top to bottom on the Periodic Table, the
covalent radii
$160
A. increase and the ionization energies decrease
B.
increase and the ionization energies increase
C. decrease and the ionization energies increase
D. decrease and the ionization energies decreases

Answers

As the elements of Group 16 (VIA) are considered from top to bottom on the Periodic Table, the covalent radii decrease and the ionization energies decreases.

What is Periodic Table?
The Periodic Table of Elements is an arrangement of all known chemical elements, arranged in order of atomic number, from the lightest (hydrogen) to the heaviest (uranium). The table is organized into rows and columns, with each element having its own unique properties. Elements are arranged according to their atomic number, number of protons, and electron configuration. The table also has information about the element’s chemical symbol, atomic mass, and physical properties. The Periodic Table helps scientists understand the structure of atoms, predict their chemical reactions, and the characteristics of their compounds. It also allows scientists to compare how elements interact with each other to form new substances.

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write formulas for the compounds that form from k and each of the following element: n, o, f.

Answers

Potassium (K) forms compounds KN, K₂O and KF with N, O and F element respectively.

Potassium nitride (KN) - Potassium (K) combines with nitrogen (N) to form potassium nitride (KN). The chemical formula for this compound is KN. Nitrides are compounds containing the nitrogen anion (N3-).

Potassium oxide (K2O) - Potassium (K) combines with oxygen (O) to form potassium oxide (K2O). The chemical formula for this compound is K2O. Oxides are compounds containing the oxygen anion (O2-).

Potassium fluoride (KF) - Potassium (K) combines with Fluorine (F) to form potassium fluoride (KF). The chemical formula for this compound is KF. Fluorides are compounds containing the Fluorine anion (F-).

Potassium is an alkali metal, and it forms ionic compounds with non-metals such as Nitrogen, Oxygen, Fluorine which are highly electronegative elements, these compounds are formed through the transfer of electrons from Potassium to Nitrogen, Oxygen, Fluorine which results in the formation of K+ and N3-,O2-,F- ions respectively.

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A sample of sodium hydroxide (NaOH) has a mass of 160.0 g. The molar mass of NaOH is 40.00 g/mol. How many moles of NaOH does this sample contain

Answers

A  sample of sodium hydroxide (NaOH) has a mass of 160.0 g and molar mass of 40g/mol so the moles will be 4 moles.

A mole is defined as the mass of the substance which consists of the equal quantity of basic units.The basic units can be molecules, atoms or formula units based on the substance.

The data from the question is as follows

Mass of NaOH = 160g

molar mass of NaOH =40 g /mol

The formula for the number of moles formula is expressed as

Number of Moles = [tex]\frac{Mass of substance }{ Mass of one mole}[/tex]

no. of moles = [tex]\frac{m}{MM}[/tex]

So by putting values in the given formula we will get the answer

no. of moles =[tex]\frac{160}{40}[/tex]

no.of moles = 4mol

So moles of NaOH does this sample contain is 4 mol

Your question is incomplete most probably your full question was

A sample of sodium hydroxide (NaOH) has a mass of 160.0 g. The molar mass of NaOH is 40.00 g/mol. How many moles of NaOH does this sample contain?

A) 4.000

B) 40.00

C) 160.0

D) 6,400

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Create the orbital diagram for sodium.

Answers

An orbital diagram, also known as an orbital filling diagram, is a type of notation that depicts the electron distribution and electron spin within orbitals of an atom.

What is the orbital diagram of sodium?Sodium (Na) seems to have the electronic configuration 1s2 2s2 2p6 3s1. The 1s, 2s, and 2p orbitals are paired because they each have two electrons; moreover, the 3s orbital have only one electron, leaving Sodium with one unpaired electron.The energy levels of the 2s and 2p sublevels, as well as the 3s and 3p sublevels, are very close. On the page, the s sublevel is located beneath the p sublevel.Chemical bonds between substances contain energy. During the course of a reaction, exothermic reactions generate both heat and chemical energy. In quantum theory, a sublevel is defined as an energy level. Sublevels in chemistry explains electron-related energies.In physics, sublevels also can refer to nuclear energy levels. The s-sublevel is made up of a single orbital that can hold up to two electrons. Spherical is the best way to describe it. The 1s is the particle closest to the nucleus because it is smaller than the 2s, which is smaller than the 3s, and so on. The p-sublevel is made up of three identical orbitals that are similar.

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How do you balance the following reaction:
Cl2(g)+NaOH(aq)→NaCl(aq)+NaClO3(aq)+H2O(l)

Answers

The balanced chemical equation is given as :

3Cl₂(g)   +  6NaOH(aq)   ----->   5NaCl(aq)  +  NaClO₃(aq)   +   3H₂O(l)

The chemical reaction is given as :

Cl₂   +  NaOH   ----->   NaCl  +  NaClO₃   +   H₂O

          reactant     product

Cl           2                   2

Na           1                   2

O              1                  4

H            1                    2

To balance the chemical equation , multiply 3 in Cl₂ , 6 in NaOH , 5 in NaCl and 3 in H₂O, we get :

3Cl₂(g)   +  6NaOH(aq)   ----->   5NaCl(aq)  +  NaClO₃(aq)   +   3H₂O(l)

Now the equation is balanced as to balanced equation ,the number of the atoms in the reactants side is equals to the number of the atom in the product side.

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