Bond Polarity and Mixing
4. Both gasoline and olive oil are largely made of carbon atoms bonded to hydrogen atoms. In these bonds, the
electrons are shared fairly equally by the atoms. Why do you think these two substances are able to mix?

Answers

Answer 1

The polarity of a compound or a substance is defined as the separation of charges or the two ends of the molecule have a positive or negative end. Gasoline and oil are non-polar compounds, which dissolve in each other.

Based on the law of solubility, it can be explained as:

Polarity is defined as the ability of a compound to dissolve in water or have the dipole moment.

The law suggests that, for a molecule to be polar, it can only dissolve polar substances. For example, methanol dissolves in water.

Also, the non-polar compound will dissolve the non-polar compound, such that gasoline will be dissolved in the oil.

The polar and non-polar substances do not mix and are not able to dissolve, for example, water and oil.

Thus, the polarity of the compound and its solubility is dependent on the dipole moment or electronegativity.

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Related Questions

Is the melting of Arctic ice an example of
positive feedback or negative feedback?
Explain

Answers

Answer:

here is your answer buddy

Ice-albedo feedback is a strong positive feedback in the climate system. Warmer temperatures melt persistent ice masses in high elevations and upper latitudes. Ice reflects some of the solar energy back to space because it is highly reflective.

Explanation:

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The gas sample has a volume of 69.0 μL at 24.2 °C . What is the volume of the gas after the sample is cooled to 8.3 °C at constant pressure? V = μL Which tube represents the gas after the sample is cooled at constant pressure? A

Answers

At the constant pressure, the volume of the gas was equal to  65.31 μL at a temperature of 8.3ºC.

What is Charles's law?

Charles's law can be described as that when pressure is kept constant, the volume of gas is directly proportional to its temperature.

Therefore,   V  ∝ T

[tex]\frac{V_1}{T_1} =\frac{V_2}{T_2}[/tex]                                                                  ..................(1)

Given, the initial temperature of the gas, T₁ = 24.2 ºC

T₁ = 24.2 + 273 = 297.2 K

The final temperature of the gas, T₂ = 8.3ºC

T₂ = 8.3 ºC + 273 = 281.3 K

Given, the initial volume of gas, V₁ = 69.0 μL then the final volume of the gas can be determined as:

Put the value of V₁, T₁, and T₂ in equation (1), and we get:

[tex]\frac{69}{297.2} =\frac{V_2}{281.3}[/tex]

[tex]V_2=\frac{69\times 281.3}{297.2}[/tex]

V₂ = 65.31 μL

Therefore, the volume of the gas was equal to  65.31 μL at a temperature of 8.3ºC. The volume of the gas will decrease when the final temperature is lowered as the pressure remains constant.

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What do the symbols tell you about the conditions of the reactions shown to the right? Check all of the boxes that apply.

-The products and reactants of both reactions are gases.
-Reaction 1 occurs at high pressure.
-Reaction 2 makes a small amount of an additional product.
-A catalyst is used for reaction 2.

Answers

Answer:

A and D

Explanation:

thank me later

Answer:

A and D

A. The products and reactants of both reactions are gases.

D. A catalyst is used for reaction 2.

Explanation: got it right on edge

Which one of the following factors would not speed up a chemical reaction?
A. increasing the concentration of a reactant
B. adding a catalyst
C. raising the temperature
D. making the reactant particles larger

Answers

D. Making the reactant particles larger

Making the reactants particles larger would not speed up a chemical reaction.

HOW TO SPEED UP A CHEMICAL REACTION?

The speed at which a chemical reaction occurs is called the rate of reaction.

The factors that can increase the rate of a chemical reaction are as follows:

increasing the concentration of a reactantadding a catalystraising the temperature

Therefore, making the reactants particles larger would not speed up a chemical reaction.

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Which is an example of a natural disaster limiting population growth?

Answers

Answer:

A hurricane wiping out a new species of flower in the tropical rain forests of Brazil.

Explanation:

a hurricane most likely

What ecosystem is being described in the passage?

Answers

Answer:were is the passage

Explanation:

We’re the pasagee

How many molecules are in 49.0 g of H2SO4? Answer in units of molec.

Answers

Answer:

= 3.01× [tex]10^{23}[/tex] molecules.

Explanation:

1 mole of [tex]H_{2}SO_{4}[/tex] - 98g

? moles of [tex]H_{2}SO_{4}[/tex] - 49g

= 49 ÷ 98 = 0.5 moles of O2 in 49g.

But 1 mole of any substance = 6.023 × [tex]10^{23}[/tex] molecules

∴ 0.5 moles = 0.5 × 6.023 × [tex]10^{23}[/tex] molecules

= 3.01× [tex]10^{23}[/tex] molecules.

define chemical equation ​

Answers

Answer:

A chemical equation is the symbolic representation of a chemical reaction in the form of symbols and formulae, wherein the reactant entities are given on the left-hand side and the product entities on the right-hand side.

Explanation:

Final answer:

A chemical equation represents a chemical reaction, listing reactants on the left and products on the right, separated by an arrow, and must be balanced to reflect conservation of mass.

Explanation:

A chemical equation is a concise representation of a chemical reaction. It uses formulas to denote the reactants and products involved in the reaction, as well as symbols to convey additional information. The reactants, which are the starting materials, are written on the left-hand side of the equation. An arrow separates these from the products, which are the end result of the reaction, listed on the right-hand side. This arrow can be read as "yields" or "produces". To properly reflect the conservation of mass, a chemical equation must be balanced, ensuring that the same number and type of atoms are present on both sides of the equation. For example, the combustion of methane is represented by a specific chemical equation showing methane reacting with oxygen to produce carbon dioxide and water.

What is the molarity of 10.0 g of NaCl dissolved in water to make 100. mL?

Answers

Answer:

= 1.7 M

Explanation:

Molecular mass of NaCl = ( 23+35.5 ) = 58.5g

58.5g of NaCl are weighed by 1 mole of NaCl

10.0g of NaCl will be weighed by ( 10÷58.5 )

= 0.17 moles of NaCl

100mL = ( 100÷1000)L = 0.1L

0.1L of a solution is occupied by 0.17 moles of NaCl

1L of solution will be occupied by [(1÷0.1)×0.17]

=1.7 M

Final answer:

The molarity of a solution made by dissolving 10.0 g of NaCl to make a 100 mL solution is 1.71 M.

Explanation:

The student is asking to determine the molarity of a sodium chloride (NaCl) solution made by dissolving 10.0 g of NaCl in enough water to make a 100 mL solution. To find the molarity, we first convert the mass of NaCl to moles by using its molar mass, which is 58.44 g/mol. After that, we divide the number of moles by the volume of the solution in liters.

Calculations:

Moles of NaCl: 10.0 g ÷ 58.44 g/mol = 0.171 mol

Volume of solution: 100 mL = 0.100 L

Molarity of NaCl solution: 0.171 mol ÷ 0.100 L = 1.71 M

Which of the following BEST explains how matter and energy cycle through ecosystems?

Answers

Answer:

A

Explanation:

The modern periodic table is different from Mendeleevs in several ways. In which way are the two tables the same?

Answers

Final answer:

Mendeleev's and the modern periodic table are both organized by increasing atomic number, grouped into periods and groups showing reactivity and physical properties. Both tables also divide into metals, nonmetals and accommodation for chemical families.

Explanation:

Both Mendeleev's periodic table and the modern periodic table are organized based on increasing atomic number and have a structure that groups elements into periods (horizontal rows) and groups (vertical columns). This arrangement shows patterns of chemical reactivity and physical properties. Furthermore, both tables accommodate the division into metal and nonmetals, and have provisions for chemical families, such as the alkali metals, alkaline earth metals, halogens, and noble gases.

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Henri draws a wave that has a 4 cm distance between the midpoint and the trough. Geri draws a wave that has an 8 cm

vertical distance from the bottom of the trough to the top of the crest.

Which statement best describes the energy in Henri and Geri's waves?

Answers

Answer:

I'm thinking Henri's wave and Geri's wave have the same amplitude and energy, but i'm not %100 sure

Explanation:

Answer:

B: Henri’s wave and Geri’s wave have the same amplitude and the same energy.

Explanation:

on edge2021!! hope this helps!!

How many grams of C6H12O6 are needed to be dissolved in water to make 100. grams of a 250. ppm solution?

Answers

Answer:

0.025 g C6H12O6

Explanation:

ppm = (g solute/ g solution)* 10^6

g solute= (ppm * g solution)/ 10^6

g solute = (250 ppm * 100 g)/10^6

g solute=0.025 g C6H12O6

Mass of C₆H₁₂O₆ needed to be dissolved in water to make 100g of a 250ppm solution is 0.025g.

What is Parts Per Million?

Parts per million or ppm mean out of a million. Usually describes the concentration of solute in the solvent. One ppm is equivalent to 1 milligram of something per liter of water (mg/l).

This could be used to describe contents in water, a supplier's defective rate, etc.

It is technically a dimensionless measure illustrated as a percentage, and is better suited to describing smaller concentrations of substances in gases, liquids, or solids.

Given,

Mass of solution = 250ppm = 250 × 10⁶ g

a 250 ppm solution would be 250 g of solute per 1,000,000 g solution. To make 100 g of this solution would require:

(250 × 100) ÷ 10⁶ = 0.025g

Therefore, Mass of C₆H₁₂O₆ needed to be dissolved in water to make 100g of a 250ppm solution is 0.025g.

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What is the correct order of steps to determine the mass of product created, given a certain mass of reactant?

I. Convert given mass to moles
II. Determine mole ratio between given mass and substance being solved for
III. Balance the equation
IV. Convert moles of substance being solved for to mass

Answers

Answer: 3, 1, 2, 4

Explanation:

The correct order of steps to determine the mass of product created, given a certain mass of reactant are 3, 1, 2, 4.

What is mass?

The quantity of matter that makes up every item or body is the greatest way to understand mass. Everything that we can see has mass. Examples of objects with mass include a table, a seat, your bed, a ball, a glass, or even air. The mass of a thing determines whether it is light or heavy.

The correct order of steps to determine the mass of product created, given a certain mass of reactant are

Balance the equation

Convert given mass to moles

Determine mole ratio between given mass and substance being solved for

Convert moles of substance being solved for to mass

Therefore, the correct order of steps to determine the mass of product created, given a certain mass of reactant are 3, 1, 2, 4.

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What pressure in kPa is exerted by 2.150 mol of Co, at 57.00 °C in 0.7500 L?!​

Answers

This is an ideal gas law question. Use the equation PV =nRT.
P(0.75) = (2.150)(0.08206)(273+57)
P = 77.63atm
The answer needs to be in kPa and theres 101.325kpa per 1atm, so
77.63*101.325 = 7865.73 kPa
If youre supposed to have 3 significant figures, then 7870kPa

What type of bond is composed of a metal and anonmetal?

Answers

Answer:

anonmetal

Explanation:

What is the molar volume of a gas at standard temperature and pressure?
LOL
241
1121
2241

Answers

Lol is the answer to this question
Lol

A scientist is tracking an object orbiting the sun that is found between mars and Jupiter. Which additional feature can be used to determine the object is an asteroid?

Answers

Final answer:

An object orbiting the sun between Mars and Jupiter is likely an asteroid if its orbital period is between 3.3 to 6 years and it is not spherical but 'potato-shaped' or highly elongated, which indicates it is in the asteroid belt. Additional features like a cylindrical shape, as observed in the interstellar asteroid discovered in 2017, also suggest it's an asteroid.

Explanation:

To determine if the object orbiting the sun between Mars and Jupiter is an asteroid, several features can be considered. Primarily, asteroids are found mainly in the asteroid belt, which contains all asteroids with orbital periods between 3.3 to 6 years. If the object's orbit is within this range and lies near the plane in which Earth and other planets circle, this would suggest it is indeed an asteroid. Additionally, asteroids have a variety of shapes but are often not spherical due to their smaller size, which lacks sufficient gravity to pull them into a round shape. They can be "potato-shaped," exhibiting irregularities; however, if the object was found to have a highly elongated or cylindrical shape, this would also indicate it is an asteroid, as seen with the first interstellar asteroid discovered in 2017.

When designing a spacecraft to match course with an asteroid, one would likely include instruments for imaging, such as cameras to capture visual morphology; spectrometers to analyze the composition; and perhaps instruments to measure the asteroid's mass and gravity field. The purpose of these instruments would be to learn about the asteroid's physical properties, composition, and potentially its internal structure to gain insights into the early solar system's history and the composition of the material that formed the planets.

How many moles of magnesium nitrate are in 6.35 grams of magnesium nitrate?

Answers

Answer:

0.0428 moles

Explanation:

6.35 g Mg(NO3)2 ×

[tex]\frac{1 \: mol}{148.32 \: g} [/tex]

6.35 g / 148.32 g

0.0428 moles

According to mole concept, there are 0.0428 moles  of magnesium nitrate  in 6.35 grams of magnesium nitrate.

What is a mole?

Mole is defined as the unit of  the amount of substance . It is the quantitative measure of amount of substance of how many elementary particles are present in a given amount of  substance.

It is defined as exactly 6.022×10²³ elementary entities. The elementary entity can be a molecule, atom or  ion depending on the type of substance. Amount of elementary entities  present in a mole is called as Avogadro's number.

It is widely used in chemistry as a suitable way for expressing amounts of reactants and products.For the practical purposes, mass of one mole of compound in grams is approximately equal to mass of one molecule of compound measured in Daltons. Molar mass has units of gram per mole . In case of molecules, where molar mass  in grams present in one mole  of atoms is its atomic mass.Number of moles=mass/molar mass= 6.35/148.3=0.0428 moles.

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What are the ways in which energy conversion can occur?

Answers

Answer:

Energy can exist in many forms within a system and may be converted from one form to another within the constraint of the conservation law. These different forms include gravitational, kinetic, thermal, elastic, electrical, chemical, radiant, nuclear, and mass energy.

Explanation:

Energy can exist in many forms within a system and may be converted from one form to another within the constraint of the conservation law. These different forms include gravitational, kinetic, thermal, elastic, electrical, chemical, radiant, nuclear, and mass energy.

Energy can be converted from one form to another; Mechanical energy to electrical energy, Electrical energy to chemical energy.

Principle of conservation of energy

The principle of conservation of energy states that, energy can neither be created nor destroyed but can be converted from one form to another.

Conversion of energy from one form to anotherMechanical energy to electrical energy: This occurs when a generator is used to produce electricity.Electrical energy to chemical energy: This occurs when current is used to slit or deposite molecules in electrolysisChemical energy to electrical energy: This occurs when chemical energy from a battery is usued to power a torch light.

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Erosion piles up in low places to form:

soil and sand
lava and soil
magma and silt
sand and lava

Answers

Soil and sand is the answer to this question

Answer:

suck dryeeeeeeeeeeeeeeeeeeeeeeeeeeeewwkkffjfkv3kmc,kflr

Explanation:

Which half-reaction correctly represents reduction? *


a. S²⁻+2e⁻ ⇒ S⁰

b. S²⁻⇒S⁰ + 2e⁻

c.Mn⁷⁺+3e⁻⇒Mn⁴⁺

d.Mn⁷⁺⇒Mn⁴⁺₊3e⁻

Answers

Answer:

C

Explanation:

Reduction can be seen through addition (gaining) of electrons, addition of Hydrogen or removal of Oxygen

Mn7+ is reduced to Mn4+ by the addition of 3 electrons.

20. If you add the same amount of heat to a kilogram of water and a
kilogram of gold, would they both be the same temperature? If not,
which would be higher? Why? Assume that both start out at the same
temperature.

Answers

No, water’s will be higher
Because regarding Q=mc [delta teta]
Water’s c (specific heat) is higher, so giving the same heat to the same masses of gold and water, will cause a greater increase in water’s temperature

Gold’s specific heat: 0.129 j/g
Water: (about) 4.2 j/g

Final answer:

No, the final temperature of water will be higher than that of gold because water has a higher specific heat capacity.

Explanation:

No, when the same amount of heat is added to a kilogram of water and a kilogram of gold, they will not both reach the same temperature. The final temperature of water will be higher than that of gold. This is because water has a higher specific heat capacity than gold.

Specific heat capacity is the amount of heat energy required to raise the temperature of a material by one degree Celsius per unit mass. Water has a specific heat capacity of approximately 4.18 J/g°C, while gold has a specific heat capacity of about 0.13 J/g°C. This means that it takes much more heat energy to raise the temperature of water compared to gold.

Therefore, even if the same amount of heat is added to both substances, the water will experience a larger increase in temperature compared to gold.

Of the following groups, which was the last to receive the right to vote?
A. Women
B. Hispanit men
C. African-American men
D. White men
Please select the best answer from the choices provided

Answers

Answer:

a.

Explanation:

How many joules of heat are needed to raise the temperature of 5.0 g of aluminum from 22°C to 32°C, if the specific heat of aluminum is 0.90 J/g°C .

Answers

Answer:

Heat, Q = 45 J

Explanation:

We have,

Mass of aluminium is 5 g

The temperature is raised from 22°C to 32°C.

The specific heat of aluminium is 0.90 J/g°C.

It is required to find the heat are needed to raise the temperature.

The heat required to raise the temperature is given by :

[tex]Q=mc\Delta T\\\\Q=5\times 0.9\times (32-22)\\\\Q=45\ J[/tex]

So, 45 J of heat are needed to the temperature of 5.0 g of aluminum from 22°C to 32°C.

an NaOH solution contains 1.90 mol of NaOH, and its concentration is 0.555 M. What is the volume of the solution?

Answers

Answer:

The volume of solution that contains 1.9 moles of NaOH is 3.42 L

Explanation:

To solve the question, we note that the solution contains 1.9 moles of 0.555 M NaOH

Therefore, 1000 mL contains 0.555 moles of NaOH

1000/0.555 mL contains 1 mole of NaOH

1.9 × 1000/0.555 mL contains 1.9 moles of NaOH

Therefore, the volume of solution that contains 1.9 moles of NaOH is 1.9 × 1000/0.555 mL  or 3423.42342 mL = 3.42 L.

Salt and water are the general products of which type of reaction?


A. Decomposition


B. Combustion


C. Single-displacement


D. Acid-base

Answers

Answer:

Acid Base

Explanation:

Acid base reactions produce water by combining H+ from acids and  OH- from bases and the remaining spectator ions form salts

Answer:

Acid-based

Explanation:

Acid base reactions produce water by combining H+ from acids and  OH- from bases and the remaining spectator ions form salts

what type of bonding is shown in the diagram

Answers

Answer:

Covalent Bond

Explanation:

In the diagram Carbon and each of the 4 Hydrogens are sharing electrons. They are also both non metals. Both of these are characteristics of Covalent Bonds.

The type of bonding shown in the diagram is a Covalent bond. Covalent

bonding involves sharing of electrons between two elements.

Covalent bonding is necessary in the formation of new compounds and in

their attainment of a stable configuration.

In this scenario, the compound is known as methane (CH₄). The carbon atom

shares electrons with the Hydrogen atoms which helps them form the

compound CH₄ .

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A hydrogen ion, H+, is the same as a....
PLEASEEE

Answers

It is the same as a proton. That is why, if hydrogen was a molecule not an ion, one electron is needed to 'cancel' out the proton.

Final answer:

A hydrogen ion, H+, is essentially a proton and in an aqueous solution, it is better represented as a hydronium ion, H3O+, showing its association with water molecules.

Explanation:

A hydrogen ion, H+, is often referred to as a proton because it is a hydrogen atom that has lost its lone electron. However, we do not find bare protons in an aqueous solution since they are typically attracted to water molecules, forming hydronium ions (H3O+). The representation of H3O+ is more accurate for how a hydrogen ion exists in water. While in many chemical reactions, H+ and H3O+ are treated equivalently, the latter shows our understanding that protons are associated with water molecules, and not free-floating.

True or False: Water molecules "stick together" due to hydrogen bonds.

Answers

Answer:

True

Explanation:

To begin with,

Hydrogen bonds are attractions that contain a force caused by the difference in charge. This is due to the positive hydrogen ions as well as  slightly negative ions. Therefore, hydrogen bonds make water molecules 'sticky.' To add, the attractions between hydrogen bonds are weaker than ionic and covalent bonds but strong enough to cause them to 'stick together'

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