Why is polarity a key connection between the structure of a molecule and its properties?

Answers

Answer 1
The intermolecular force of the molecule is determined by the polarity of the molecule and hence the physical properties of a molecule are affected. As polar molecules would have stronger intermolecular forces than non-polar molecules, they have higher boiling points, freezing points and surface tension. Further, a polar molecule would retain an assymmetrical structure while non-polar molecules will be symmetrical. Hence polarity determines structure of molecules and its properties.
Answer 2

Polarity is crucial because it affects a molecule's solubility, boiling and melting points, and intermolecular interactions. Polar molecules dissolve well in polar solvents, have higher boiling and melting points due to strong dipole-dipole interactions, and can form hydrogen bonds, influencing their behavior and properties in various environments.

1. Solubility: Polar molecules tend to dissolve well in polar solvents (like water) because of the attraction between the partial charges on the molecules and the solvent. Non-polar molecules dissolve better in non-polar solvents (like oils).

2. Boiling and Melting Points: Polar molecules generally have higher boiling and melting points compared to non-polar molecules of similar size because the dipole-dipole interactions (forces between the positive end of one polar molecule and the negative end of another) are stronger than the van der Waals forces present in non-polar molecules.

3. Intermolecular Interactions: Polarity determines the type of intermolecular forces a molecule can participate in, such as hydrogen bonding (a strong type of dipole-dipole interaction found in molecules with N-H, O-H, or F-H bonds), which significantly affects the physical properties and reactivity of the molecule.


Related Questions

What substance is present in a solution consisting solely of electrolytes?

Answers

Electrolytes are substances which are capable of producing a solution that has the ability to conduct electricity. These electrolytes are formed from the dissociation of salts into ions. The positive ions are named cations while the negative ions are termed anions. 

Hence, the answer to these item is SALT. Salt are substances produced by the reaction of cations and anions. 

Is instant coffee compound solution or heterogeneous mixture?

Answers

Heterogeneous mixture because the small particles would be floating

What does the velocity of a wave describe

Answers

The Velocity of a Wave. If the crest of a slinky wave moves a distance of 20 meters in 10 seconds, then the speed of the ocean wave is 2 m/s. ... For a given velocity, if you increase the frequency, the wavelength will be shortened.

Answer:if you increase the frequency, the wave length will be shortened

Explanation:

Explain the conductivity results observed for sodium chloride in the solid state and in aqueous solution

Answers

NaCl when in solid state does not conduct electricity while it does in aqueous solution.

Explanation:

NaCl (or what we call common salt) first needs to be either melted or dissolved in a solution for it to conduct electricity. The reason for this is that electrons in a solid state does not have enough freedom to move to either the Cathode (-ve) or to the Anode (+ve). So in a liquid state the electrons are now free enough to move.

Final answer:

The ionic nature of sodium chloride (NaCl) influences its ability to conduct electricity. It is non-conductive in solid form as the ions are fixed and aren't able to move. However, in an aqueous solution or when molten, the ions dissociate and can freely move, enabling the conduction of electricity.

Explanation:

Sodium chloride, or NaCl, displays different conductivity results in its solid state versus aqueous solution due to its ionic nature. When NaCl is in its solid state, it does not conduct electricity because the ions are fixed in place and cannot flow. It is said that electricity is the flow of charged particles, and in the case of a solid such as solid NaCl, these charged particles, i.e. ions, are unable to flow due to the rigid ionic lattice structure.

However, the situation changes when sodium chloride is in an aqueous solution or when it is molten. Sodium chloride, when dissolved in water, dissociates into ions, producing free flowing Na+ and Cl- ions. These ions are electrolytes and are capable of conducting an electrical current in solution. Similar thing happens when it becomes molten due to high heat, sodium chloride melts at around 801 °C, freeing the ions and allowing them to conduct electricity.

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In this experiment you are directed to add a limited amount of naoh (aq) and then an excess amount. a similar strategy will be used with the addition of nh3(aq). why?

Answers

Adding a limited amount of  NaOH and then an excess amount is because initially, a metal hydroxide may form which gets soluble when more base will be added and then form a metal complex.

What is qualitative analysis?

Qualitative Analysis can be described as the determination of non-numerical information about a chemical species, a reaction, etc. Qualitative analysis is often easier, faster, and cheaper to perform.

In qualitative analysis, we commonly add the base in drops, and then in addition will be done in excess. When the base is added in drops, then metal hydroxide is formed and this metal hydroxide is often insoluble.

After the formation of metal hydroxide, the base can be added in excess so that the metal hydroxide which was formed first will dissolve in the excess base by forming a metal complex.

For example,

[tex]CuCl_2(aq) + 2NaOH(aq) \longrightarrow Cu(OH)_2(s) + 2NaCl(aq)\\Cu(OH)_2(s) + 2OH^-(aq) \longrightarrow[Cu(OH)4]^{2+}(aq)[/tex]

This same strategy can be used with the addition of ammonia NH₃(aq).

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Adding limited and then an excess amount of NaOH and NH₃(aq) helps in selective titration and neutralization reactions when dealing with mixtures. It ensures accurate stoichiometry and the formation of desired products while maintaining appropriate conditions such as pH.

In the described experiment, adding a limited and then an excess amount of NaOH as well as NH₃ is a strategy used to perform selective titrations in the presence of multiple reactive species. The use of NaOH in limited amounts allows for the neutralization of specific components, such as acids in a mixture, while minimizing interference from other components. For NH₃, since it is a weak base and would react to form ammonium ions (NH₄⁺ ), adding NaOH in excess ensures that any conjugate acid forms of amines present are converted back to the free base, making it easier to extract due to its non-polar nature.

When dealing with a mixture containing NH₄⁺  ions, their titration with NaOH can be problematic due to a poorly-defined end point. This is because NH₄⁺ is a weak acid with a very low acid dissociation constant (Ka), resulting in an end point that is difficult to detect accurately. By adding NaOH in varying amounts, chemists are able to control the reactions and attain the correct stoichiometry needed for analytical purposes or product formation.

Moreover, buffers such as the HC₂H₃O₂/NaC₂H₃O₂ buffer help to maintain pH levels when strong bases are added, preventing significant pH changes by converting the OH⁻ ions into water instead of simply increasing the basicity of the solution.

What is the concentration of a solution prepared by dissolving 100g of sorbitol in 1000 ml of water?

Answers

first you divide them together and get an answer of 10 then you times it by 5 and your answer is   50 ml


Xenon (xe) of mass 5.08 g reacts with fluorine to form 9.49 g of a xenon fluoride compound. what is the empirical formula of this compound?

Answers

We are already given with the mass of the Xe and it is 5.08 g. We can calculate for the mass of the fluorine in the compound by subtracting the mass of xenon from the mass of the compound.

  mass of Xenon (Xe) = 5.08 g
  mass of Fluorine (F) = 9.49 g - 5.08 g = 4.41 g

Determine the number of moles of each of the element in the compound. 
    moles of Xenon (Xe) = (5.08 g)(1 mol Xe / 131.29 g of Xe) = 0.0387 mols of Xe
   moles of Fluorine (F) = (4.41 g)(1 mol F/ 19 g of F) = 0.232 mols of F

The empirical formula is therefore,
      Xe(0.0387)F(0.232)
Dividing the numerical coefficient by the lesser number.
     XeF₆

Final answer:

To find the empirical formula of a xenon fluoride compound, first calculate the mass of fluorine that reacted, then determine the mol amounts of both xenon and fluorine, and finally, simplify their ratio. The calculations reveal that the empirical formula of the compound is XeF₆.

Explanation:

To determine the empirical formula of the xenon fluoride compound formed when xenon (Xe) reacts with fluorine, we first need to figure out the mass of fluorine that reacted with xenon. Given that the original mass of xenon is 5.08 g and the final mass of the xenon fluoride compound is 9.49 g, the mass of fluorine that reacted can be calculated as 9.49 g - 5.08 g = 4.41 g.

Next, we calculate the molar amounts of xenon and fluorine in the compound. The molar mass of xenon (Xe) is approximately 131.29 g/mol, and the molar mass of fluorine (F) is approximately 19.00 g/mol. Therefore, the molar amount of xenon is 5.08 g / 131.29 g/mol = 0.0387 mol, and the molar amount of fluorine is 4.41 g / 19.00 g/mol = 0.232 mol.

Then, to find the empirical formula, we divide the molar amounts of both elements by the smallest value to simplify the ratio. This gives us a molar ratio of Xe:F approximated to 1:6, leading to the empirical formula of XeF₆.

A tub of water is placed in a small room. If heat is removed from the room, which of the following will most likely occur if enough heat is removed?
Question 3 options:

A.The water will freeze.

B.The water will evaporate.

C.The water will become a gas.

D.The water will change from gas to solid

Answers

A. The water will freeze. This is because if there's not enough heat, water will freeze. Just like in winter. There's not enough heat to keep the water from melting, so it just freezes. Hope this helps!

What types of orbital overlap occur in cumulene? check all that apply. check all that apply. p/p overlap sp/sp2 overlap s/sp overlap sp/sp overlap s/s overlap sp2/sp2 overlap s/sp2 overlap?

Answers

Cumulene is an alkene hydrocarbon that has two or three double bonds. It is also known as allene. The simplest cumulene is butatriene. It is a rigid hydrocarbon due to the presence of double bonds.

Answer: The orbital that overlap are p/p overlap, s/sp2 overlap, sp/sp2 overlap and sp/sp orbital.
sp/sp overlap p/p overlap sp/sp^2 overlap

How many sugar molecules are in 0.734 mol sugar, C6H12O6? Please explain

Answers

To answer this question, you need to know the Avogadro number. To find the amount of sugar molecule from mol unit you need to multiply it by the Avogadro number.
The calculation should be like this: 0.734 mol * 6.02*10^23 molecule/ mol= 4.41 * 10^23 molecule

Janice is given a mixture of alcohol and water. The teacher tells her that she can use temperature to separate these compounds. What property is being demonstrated by this experiment.
A) conduction
B) density
C) solubility
D) boiling

Answers

Answer: D) boiling

Explanation:

In order to separate a mixture of alcohol and water the mixture can be heated until the alcohol boils. The boiling point of alcohol is lower than water. The alcohol will boil off leaving the water.

Final answer:

The experiment utilizes the physical property of boiling points to separate a mixture of alcohol and water through distillation, demonstrating how substances with different volatilities can be separated without altering their chemical properties. The correct answer is D) boiling.

Explanation:

The experiment demonstrates the physical property of boiling points by utilizing temperature to separate a mixture of alcohol and water. This is because alcohol and water have different boiling points, which allows them to be separated through a process known as distillation. Distillation relies on the fact that the substance with the lower boiling point (in this case, alcohol) will vaporize first, and then it can be condensed back into a liquid and collected separately from water. This method is a physical process that does not alter the chemical properties of the substances involved.

Therefore, the correct answer to the question is D) boiling. This property is crucial for separating mixtures into their component substances by taking advantage of their different volatilities, a measure of how easily a substance converts to gas at a given temperature.

A(n) __________ is a substance in which atoms of two or more elements are combined in a fixed proportion.

Answers

A(n) _compound_ 

Hope this helps

A compound is a pure substance formed by chemically bonding two or more different elements in a fixed ratio. It can only be broken down into simpler substances through chemical processes.

An compound is a substance in which atoms of two or more elements are combined in a fixed proportion. A compound is a pure substance composed of atoms of two or more different chemical elements bonded in some fixed ratio, forming molecules of that substance. These atoms are held together by chemical bonds and the compound has properties different from the individual elements that compose it. Compounds can be separated into simpler substances and elements only through chemical methods, not by physical means such as filtering or distillation.

An _____ is a hydrocarbon in which one or more hydrogen atoms is replaced by a -COH group.

A. aldehyde
B. alcohol
C. ester
D. amino acid

Answers

Answer is A. Aldehyde (-CHO)
Esters  (=O)
Alcohols (-OH)
Amino acids (-NH2COOH)

Answer :  The correct option is, (A) Aldehyde

Explanation :

Alcohol group : It is the class of organic compound in which the hydroxy (-OH) group is attached to a hydrocarbon is known as alcohols.

The general representation of alcohol are, [tex]R-OH[/tex].

For example : [tex]CH_3-CH_2-OH[/tex] is obtained when one hydrogen atom is replaced by [tex]-OH[/tex] group.

Amino acid : Amino acid are the acid that contains two functional groups which are carboxylic group, [tex]-COOH[/tex] and ammine group, [tex]-NH_2[/tex].

The bond present between the two amino acid is a peptide bond. The peptide bond is formed between the nitrogen of one amino acid and carbon of another amino acid.

Ester group : It is the class of organic compound in which the [tex]-COO[/tex] group is attached to a hydrocarbon is known as ester.

The general formula of ester are, [tex]R-COO-R^'[/tex]. It is directly attached to the two alkyl group of carbon.

Aldehyde group : It is the class of organic compound in which the (-CHO) group is attached to a hydrocarbon is known as aldehyde.

The general representation of aldehyde are, [tex]R-CHO[/tex].

For example : [tex]CH_3-CH_2-CHO[/tex] is obtained when one hydrogen atom is replaced by [tex]-CHO[/tex] group.

Hence, the correct option is, (A) Aldehyde

Jimmy does a cannonball into the swimming pool. After surfacing and floating for a few seconds, he observes something interesting. He notices that if he takes deep breaths his body seems to float more. Also he notices that he sinks into the water after he releases his breath. Explain why this is happening to Jimmy.

Answers

Air is lighter than water.

Therefore, when Jimmy takes a deep breath, he fills his lings with air which is lighter than water, therefore, he floats.
On the other hand, when he releases his breath, he loses the air, therefore, he sinks in the water.

You can imagine your lungs as a balloon. When you fill the balloon with air, you will find that the balloon floats in water.

If an atom has an equal number of electrons and protons, it would be considered ________

Answers

it would be considered NEUTRAL

Write a balanced equation for the reaction of aluminum with water (aluminum hydroxide is the other product).

Answers

2Al + 6H2O ----> 2Al(OH)3 + 3H2.


Which of the following is the number of protons plus the number of neutrons?
Atomic charge
Mass number
Atomic number
Atomic isotope number

Answers

The number of protons plus the number of neutrons is the mass number.

The ionic charge depends on the number of electrons.

The atomic number is the number of protons.

Atoms can have different isotopic masses, but there is no such thing as atomic isotope number.

What do the properties of waves moving through aquatic environments tell us about the organisms living in those environments?

Answers

Assmksksmwmwosmeodmksnsks

Under which conditions will sugar most likely dissolve fastest in a cup of water? open study

Answers

the sugar would dissolve better under warmer temperatures because the hot particles interfere with the sugars particles.

Aqueous lithium sulfate was mixed with aqueous strontium chlorate, and a crystallized strontium sulfate product was formed. consider the other product and its phase, and then write the balanced molecular equation for this precipitation reaction

Answers

Lithium sulfate is Li2SO4

Strontium chlorate is Sr(ClO3)2

Strontium sulfate is SrSO4

 

So the complete balanced chemical reaction for this is:

 

Li2SO4 (aq) +  Sr(ClO3)2 (aq) -->  SrSO4 (s)  +  2 LiClO3 (aq)

 

 

This is a type of double replacement reaction since there is an exchange of ions.

Final answer:

In a precipitation reaction between aqueous lithium sulfate and strontium chlorate, strontium sulfate precipitates while lithium chlorate remains aqueous. The balanced molecular equation for this reaction is: Li2SO4 (aq) + Sr(ClO3)2 (aq) → SrSO4 (s) + 2 LiClO3 (aq).

Explanation:

When aqueous lithium sulfate (Li2SO4) is mixed with aqueous strontium chlorate (Sr(ClO3)2), one product that forms is strontium sulfate (SrSO4), which crystalizes due to its insolubility in water. The other product is lithium chlorate (LiClO3), which remains aqueous due to its high solubility.

The balanced molecular equation representing this precipitation is: Li2SO4 (aq) + Sr(ClO3)2 (aq) → SrSO4 (s) + 2 LiClO3 (aq).

This equation reflects the conversion of the reactants, lithium sulfate and strontium chlorate, into the products, strontium sulfate (a precipitate) and lithium chlorate.

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Does matter have protons, nuetrons, and electrons ??

Answers

yes , matter has protons , neutrons and electrons

Dalton theorized that atoms are indivisible and that all atoms of an element are identical. Scientists now know that
A. Dalton’s theories are completely correct.
B. atoms of an element can have different numbers of protons.
C. atoms are all divisible.
D. all atoms of an element are not identical but they all have the same mass.

Answers

this is easy the answer is c

Scientists know that atoms of elements are all divisible.

What is atomic structure ?

Atomic structure refers to the structure of atom which consists of a nucleus in the  center with protons and neutrons being present inside the nucleus .Protons are positively charged sub atomic particles while the neutrons are sub atomic particles which are electrically neutral.

Outside the nucleus , in circular orbits there are electrons revolving around the nucleus with negative charge on each electron .The history of atomic structure dates back to the time of Democritus who proposed that matter is made up of atoms.

The study of atom gives a great insight about the wide range of chemical reactions , chemical bonds and their physical properties.To explain the atomic structure , various atomic models were proposed like Dalton's atomic theory ,Thomson's atomic model and Rutherford's atomic model and Bohr's atomic model.

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Which ion will form a basic solution when dissolved in water? hso4-?

Answers

The ion that will form a basic solution when dissolved in water is OH ionds, or hydroxide ions. When HSO4 is dissolved in water it will form an acidic solution with hydrogen ions separating from the sulfate.

Final answer:

The hydrogen sulfate ion (HSO4-) will form a slightly basic solution when dissolved in water because it reacts to produce hydroxide ions (OH-) which increases the pH above 7.

Explanation:

The hydrogen sulfate ion (HSO4-) is the conjugate base of sulfuric acid (H2SO4) and the conjugate acid of sulfate (SO42-). When HSO4- is dissolved in water, it can react with water to form hydrogen sulfate (H2SO4) and hydroxide ions (OH-), which causes the solution to be basic. This is due to the fact that it slightly ionizes to produce OH- ions. Based on the reactions and comparative strengths of acids and bases, HSO4- being a conjugate base of a strong acid is a very weak base and will therefore form a solution that is slightly basic, provided that the resulting concentration of OH- ions is greater than that of H3O+ ions in the water.

how many moles of sodium carbonate na2co3 are contained by 57.3 g of sodium carbonate

Answers

There are 0.54 moles of sodium carbonate are contained by  57.3 grams of sodium carbonate.

we can calculate number of moles in a compound by dividing number of grams of compound by the molar mass of the compound.
molar mass of sodium carbonate = 105.987 g/mol
now, 57.3 / 105.987 = 0.54 moles

Which scenario would cause a covalent bond to form?

Answers

Searching for this question, I found the options on the internet.
"1.Two atoms share electrons so they can fill their outer shells2.The constant motion of electrons and the creation of charge imbalances bonds two molecules together3.A hydrogen atom with a slight positive charge is attracted to a negative charge of another molecule or atom4.One atom loses one or more electrons and the other atom gains one or more electrons"

The correct answer would be number 1. A covalent bond is achieved when two atoms share electrons from their outer shell so that they have a full outer shell leading to the electronic configuration balance they need.

What is unique about the orbitals around the nucleus of an atom?

Answers

The thing that makes the orbitals surrounding an atom's nucleus special is that the energy level changes as the electrons occupy space farther away from the nucleus. The s, p, d, and f orbitals are distinct because the nucleus is dropped as their energy rise and their bonds weaken.

Generally speaking, an atom's electrons have a lot of special characteristics, such as how they orbit the nucleus.

The electrons that it contains

Additionally, the energy level that changes when electrons occupy space farther from the nucleus

The s, p, d, and f orbitals are distinct because the nucleus is dropped as their energy rise and their bonds weaken.

Someone help me please

Answers

oh yeah i can put it now. so the answer is Sr

PLEASE HELP ASAP!!!!
The following graph shows the relationship between predator and prey populations. If the time is measured in months, how long does the predator rise in population follow the prey rise in population?

a. About six months
b. About two months
c. About one month
d. About eight months

Answers

c. About one month To answer this question, TAKE A LOOK AT THE GRAPH. If you do so, you'll see that the first peak for prey happens at about 2.5 months. The first peak for predators happens at about 3.5 months, or in other words, lags by about a month. Looking at the second peak for prey and predator you see the figures of 8 months and 9 months. Another lag of about 1 month. Looking at the third peak, you see a bit past 13 months and a bit past 14 months. Another one month lag. Therefore the answer is "c. About one month"

What does henry miller mean when he says "Life moves on,whether we act as cowards or heroes"?

Answers

This is a complex question that can be interpreted in many ways. Personally, I believe that it is saying that whether you decide to stand up and fight or sit back and allow life to pass us by, either way, the time passes and moves forward to the next opportunity. But, in that respect, it also gives us an opportunity each time a decision needs to be made to choose to be a hero or a coward and regardless of your chosen life will move on to the next decision. 

Compare and contrast the bonds in these two compounds: MgCl2 and C2H6. Include similarities and differences. Be sure to discuss both compounds in your answer.


PLEASE HELP!!!!!

Answers

Both of the compounds contain primary bonding; however, the bonding is of different types. Magnesium chloride (MgCl₂) contains ionic bonds, which are stronger and involve the complete transfer of electrons. Meanwhile, ethane (C₂H₆) also bonds by electron transfer but the electrons are not completely transferred from one atom to another. Instead, they are shared, forming what is known as a covalent bond. 
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