What type of bond would form between two atoms of fluorine?
A. Single ionic bond
B. Double covalent bond
C. Single covalent bond
D. Double covalent bond

Answers

Answer 1

Answer:

C. Single covalent bond

Explanation:

A covalent bond would form between these atoms. Covalent bonds

involve atoms sharing electrons.

have a good day

-Hops


Related Questions

How much of this reactant should he order to
make sure he runs out of both reactants at the
same time? Round to the nearest hundredth and
do not round any of your work until the very end.
He should order
reactant.
g of the limiting
DONE

Answers

Answer:

92.41 g

Explanation:

Answer: He should order 92.41g of the limiting reactant.

Determine ΔT if T1 = 45oC and T2 = 13oC

Answers

Answer:

∇T = -32°C

Explanation:

T1 = 45°C

T2 = 13°C

∇T =?

∇T = change in temperature = final temperature - initial temperature

∇T = T2 - T1

∇T = 13 - 45

∇T = -32°C

The change in temperature is -32°C

How did the building of granaries indicate that Harappan civilization was economically strong?

Answers

It showed that the richest Harappan citizens had excess food to trade or sell. It showed that Harappa could store excess food to save, sell, or trade with others.

Which vital element for life participates in the carbon, nitrogen, and phosphorus cycles?
O
A. oxygen
o
B. sodium
O
C. calcium
O
D. chlorine

Answers

I believe its’ A. Oxygen !!!!
Final answer:

Option A. Oxygen is the vital element that participates in the carbon, nitrogen, and phosphorus cycles.

Explanation:

The vital element for life that participates in the carbon, nitrogen, and phosphorus cycles is oxygen. Oxygen is necessary for the breakdown of organic matter and the release of carbon, nitrogen, and phosphorus compounds back into the environment. In the carbon cycle, oxygen is involved in the process of cellular respiration and photosynthesis. In the nitrogen cycle, oxygen is necessary for the conversion of nitrogen gas into usable forms by bacteria. In the phosphorus cycle, oxygen is involved in the weathering of rocks and the release of phosphates.

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How does temperature affect magnetism

Answers

Temperature affects magnetism by either strengthening or weakening a magnet's attractive force. A magnet subjected to heat experiences a reduction in its magnetic field as the particles within the magnet are moving at an increasingly faster and more sporadic rate.

Which statement correctly describes the location and charge of the protons in an atom?

Answers

Answer:

Protons are located in the nucleus and have a positive charge and a mass of 1.

Explanation:

Know about protons, neutrons, and electrons.

A large container holds 2 liters of water. 45.0 grams of NaCl is added to the container. What is the molarity of sodium chloride in the container?

Answers

Answer:

THE MOLARITY OF SODIUM CHLORIDE IN THE CONTAINER IS 0.3846 M.

Explanation:

Molarity of a solution is the number of moles of solute per dm3  of solution.

Mass concentration = Molar concentration * Molar mass

1. calculate the mass concentration;

Mass conc. = 45 g in 2 L

= 45 g in 2 dm3

In 1 dm3, the mass will be 45 / 2

= 22.5 g/dm3 of NaCl.

2. Calculate the molar mass;

(Na = 23, Cl = 35.5)

Molar mass = ( 23 + 35.5 ) g/mol

Molar mass = 58.5 g/mol

3. calculate the molarity

Molarity = mss concentration / molar mass

Molarity = 22.5 g/dm3 / 58.5 g/mol

Molarity = 0.3846 mol/dm3 of NaCl.

The molarity of sodium chloride in the container is 0.3846 mol/dm3

A family has a furnace that uses natural gas to heat their home. They are moving to an area that offers the option of using energy from a solar power plant to heat their home. Which disadvantage will the family most likely face by making this switch?

a less reliable production of heat
higher costs for the monthly heating bill
an increase in waste production
smaller quantities of heat

Answers

“a less reliable production of heat” is your answer. somebody actually answered this question before on this app, and got it correct. hope this helps :)
Final answer:

The family is most likely to face higher costs for the monthly heating bill by switching to energy from a solar power plant. Although solar power is a renewable and clean energy source, the initial installation and maintenance costs of solar panels can be expensive, resulting in higher monthly bills compared to using natural gas.

Explanation:

Solar power harnesses energy from the sun's radiation to generate electricity or heat. Photovoltaic cells convert sunlight into electricity, while solar thermal systems use sunlight to produce steam for electricity generation or provide direct heating. Solar power is a sustainable and renewable energy source with minimal environmental impact.

The family is most likely to face higher costs for the monthly heating bill by switching to energy from a solar power plant. Although solar power is a renewable and clean energy source, the initial installation and maintenance costs of solar panels can be expensive, which can result in higher monthly bills compared to using natural gas. Additionally, the family may also face limitations in the amount of heat produced as solar power can be dependent on weather conditions.

An example of a potassium compound containing both ionic and covalent bonds is?
A. potassium chloride
B. potassium hydride
C. potassium nitrate
D. potassium oxide

Answers

Final answer:

Potassium Nitrate (KNO3) is a potassium compound containing both ionic and covalent bonds. The bond between K+ and NO3- is ionic while the bonds within the nitrate ion are covalent.

Explanation:

An example of a potassium compound containing both ionic and covalent bonds is potassium nitrate (C). In potassium nitrate (KNO3), the bond between the potassium ion (K+) and the nitrate ion (NO3-) is ionic. Within the nitrate ion itself, the bonds between the nitrogen atom and the oxygen atoms are covalent.

Ionic bond forms when one atom transfers one or more electrons to another atom; in this case, potassium (K) transfers one electron to nitrate (NO3) ion. Covalent bond on the other hand occurs when two atoms share electrons, as seen in the bonding between nitrogen (N) and oxygen (O) atoms within the nitrate ion (NO3).

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If 16.00 g of O₂ reacts with 80.00 g NO, how many grams of NO₂ are produced? (enter only the value, round to whole number)

Answers

Answer:

  84 g

Explanation:

The molecular weight of nitrogen is 14.01 g/mol. That of oxygen is 16.00 g/mol, so the weights of the various elements available are ...

From NO

  N: (14.01/(14.01+16.00))·(80 g) = 37.35 g

  O: 80 g -37.35 g = 42.65 g

From O₂

 O: 16 g

__

In each mole of NO₂, the weight of the oxygen is 2(16.00) = 32 g. The weight of the nitrogen is 1(14.01) = 14.01 g.

From the available oxygen, we can produce ...

  (42.65 g +16 g)/(32.00 g/mol) = 1.83 mol of NO₂

From the available nitrogen, we can produce ...

  (37.35 g)/(14.01 g/mol) = 2.67 mol of NO₂

Clearly, the reaction is limited by the amount of available oxygen. Then the mass of the NO₂ that can be produced is ...

  (1.83 mol)(32.00 +14.010 g/mol = 84.3 g ≈ 84 g.

84 grams of NO₂ are produced.

The empirical formula is:
A. the actual number of atoms of each element in a molecule.
B. All of these
C. the relative number of atoms of each element, using the lowest whole ratio.
D. representation of a compound that shows how its atoms are arranged

Answers

Answer:

C. the relative number of atoms of each element, using the lowest whole ratio.

Explanation:

The empirical formula is how we simplify the whole formula to simplify it to its smallest indivisible parts.

It is definitely not the actual number of atoms. If you see an empirical formula, don't think that it's the full thing.

It is also not a representation of a compound to show its atoms' arrangement: this would be a Lewis dot structure, or a ball and stick model, or something similar. We don't use the empirical formula for this purpose.

Which statement about ionic bonds is true?
A. Ionic bonds occur between non-metals.
B. Ionic bonds occur between two metals.
C. In ionic bonds one atom accepts electrons from another atom to achieve a stable outer shell.
D. In ionic bonds atoms share electrons to achieve a stable outer shell.

Answers

Answer:

C. In ionic bonds one atom accepts electrons from another atom to achieve a stable outer shell.

Explanation: Some Atoms have positive Charges. Like Na (Sodium) has a charge of +1 because its missing an electron, and there are Atoms with a negative charge like Chlorine, it has an extra electron so a charge of -1. The chlorine atom transfers the extra Electron to the sodium atom. they both gain a neutral Charge.

In ionic bonds, one atom accepts electrons from another atom to achieve a stable outer shell. Hence, option C is correct.

What is an ionic bond?

An ionic bond is formed by the complete transfer of some electrons from one atom to another.

Some Atoms have positive Charges. Like Na (Sodium) has a charge of +1 because it's missing an electron, and there are atoms with a negative charge like Chlorine, it has an extra electron so a charge of -1.

The chlorine atom transfers the extra electron to the sodium atom. they both gain a neutral Charge.

Hence, option C is correct.

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Which of the following is a way that carbon dioxide emissions can be reduced?
A. Conserving species that are in danger of extinction.
B. Planting more trees to soak up carbon dioxide.
C. Generating electricity from coal sources instead of oil.
D. Cutting down only trees that produce carbon dioxide.

Answers

Carbon dioxide is a greenhouse gas that has increased global warming. The carbon dioxide emissions can be reduced by planting more trees to absorb carbon dioxide. Thus, option B is correct.

What is the effect of carbon dioxide emissions?

Carbon dioxide is a greenhouse gas present in the atmosphere and plays an important role in absorbing UV radiation. The increased carbon emissions due to pollution and deforestation have led to an increase in the temperature of the planet. This has resulted in climate change due to global warming.

This effect of carbon emission can only be reduced if more plantation is done to soak up the carbon present in the atmosphere. Plants take carbon dioxide from the surroundings to produce food and oxygen and can help reduce global warming and pollution.

Therefore, option B. more plantations can decrease carbon emissions.

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The best option for reducing carbon dioxide emissions among those provided is B. Planting more trees. Trees act as a carbon sink and absorb CO₂, aiding in the reduction of atmospheric carbon levels.

Among the options provided for reducing carbon dioxide emissions, the correct choice is B. Planting more trees. Trees absorb carbon dioxide from the atmosphere during the process of photosynthesis, which helps to reduce overall concentrations of this greenhouse gas. Additionally, measures such as burning less fossil fuels and increasing carbon sinks like forests can further help remove CO₂ from the atmosphere. However, other options such as generating electricity from coal, which is more carbon-intensive than oil, or cutting down trees would increase carbon emissions rather than reduce them.

To effectively reduce CO₂ emissions, reducing deforestation, increasing afforestation and reforestation, and shifting to cleaner energy sources like solar, wind, and biomass are also crucial strategies. These actions, combined with policies like capping emissions and promoting sustainable agricultural practices, can significantly lower the atmospheric concentration of carbon dioxide.

When mixing HCl(aq) and NaOH(aq) of the same concentration (1.0 m) to produce 100 mL of product solution what volume ratio produces the largest temperature change

Answers

Answer:

See explaination

Explanation:

We have to understand the reason of temperature change , when NaOH reacts with HCl neutralization reaction occurs producing energy. When this released energy is absorbed temperature is increased.

So when 1 mole off NaOH reacts with 1 mole of HCl reacts 57.3 KJ of energy is released .

During a reaction for , when equivalent number of moles reacts higher energy will be produced.

If 80 ml HCl and 20 ml NaOH reacts , then only 20 ml NaOH reacts with 20 ml of HCl and rest 60 ml is not reacting.

But when 60 ml HCl and 40 ml NaOH reacts 40 ml of each are reacting, so energy produced will be higher.

so B > A

For II the observed phenomena is already discussed as higher number of moles of HCl and NaOH reacts so , due to which higher energy is released and thus temperature is higher.

50 ml of each HCl and NaOH produces largest temperature change , as higher number of moles of HCl and NaOH reacts so , due to which higher energy is released and thus temperature is higher.

A 2 L container contains 5 moles of helium gas at 0.5 atm. What is the
temperature of the gas?

Answers

Answer:

2.44 K IS THE TEMPERATURE OF THE GAS

Explanation:

PV = nRT

P = 0.5 atm

V = 2 L

n = 5 moles

R = 0.082 L atm mol^-1 K^-1

T = ?

Substituting for T in the equation, we obtain:

T = P V / nR

T = 0.5 * 2 / 5 * 0.082

T = 1 / 0.41

T = 2.44 K

The temperature of the gas is 2.44 K

The air pressure in Denver, Colorado is about 83 percent of the air pressure in Miami Beach, which is at about sea level. Given that the air pressure in Miami Beach is 760 mm Hg and oxygen makes up 21 percent of the air in Miami Beach, what are the percentage of oxygen and the partial pressure of oxygen in Denver

Answers

Answer:

Explanation:

mass ratio of oxygen and nitrogen in air at Miami

= 21 : 79

ratio of their moles

= [tex]\frac{21}{32} : \frac{79}{28}[/tex]     ( mol weight of oxygen is 32 and of nitrogen is 28 )

=  .65625 : 2.8214

= 1 : 4.3

This ratio will also be maintained in the air of Denver though total pressure decreases there.

Partial pressure of oxygen in air at both the places

mole fraction of oxygen

= [tex]\frac{1}{( 1 +4.3)}[/tex]

= .18868

partial pressure of oxygen at Denver

= .18868 x .83 x 760

= 119 mm.

Final answer:

Denver's total air pressure is 630.8 mm Hg. The percentage of Oxygen in Denver remains the same as at sea level, which is 21%. The partial pressure of Oxygen in Denver is therefore 132.47 mm Hg.

Explanation:

The question is asking us to determine the percentage of oxygen and the partial pressure of oxygen in Denver given that Denver's atmospheric pressure is 83 percent of Miami Beach's pressure. First, let's calculate the total pressure in Denver. We multiply Miami Beach's total air pressure of 760 mm Hg by 0.83 (Denver's air pressure as a fraction of Miami Beach's) to get 630.8 mm Hg as Denver's total air pressure. Since the proportion of oxygen in the air doesn't change with altitude, the percentage of Oxygen remains 21%. Now, let's find the partial pressure of oxygen in Denver. Partial pressure is the pressure that a gas would have if it alone occupied the volume of the mixture. It would be the total pressure times the fraction of the gas in the mixture. So, for oxygen in Denver, the partial pressure would be 630.8 mm Hg * 0.21 (percentage of oxygen in the air) which gives us 132.47 mm Hg.

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What is the molality of a solution in which 55g of sucrose are dissolved in 950mL of water?

Answers

Final answer:

The molality of a solution with 55g of sucrose dissolved in 950mL of water is 0.1692 mol/kg, calculated by dividing the moles of sucrose by the kilograms of water.

Explanation:

To calculate the molality of a solution in which 55g of sucrose are dissolved in 950mL of water, we first need to find the number of moles of sucrose and the mass of the solvent (water) in kilograms.

The molar mass of sucrose (C₁₂H₂₂O₁₁) is approximately 342.3 g/mol. 55 grams of sucrose is therefore 55 g / 342.3 g/mol = 0.1607 mol. Since density of water is approximately 1 g/mL, 950 mL of water weighs 950 g, which is the same as 0.950 kg.

The molality (m) is then calculated using the formula m = mol solute/kg solvent. Substituting the values we have, 0.1607 mol/0.950 kg = 0.1692 mol/kg. So, the molality of the solution is 0.1692 m.

all you have to do is figure out the word for the blank. pls help me

Answers

Search Results
Featured snippet from the web
For a child to have symptoms of an autosomal recessive disorder, the child must receive the abnormal gene from both parents. Because most recessive disorders are rare, a child is at increased risk of a recessive disease if the parents are related.

Answer:

Gene disorders require the inheritance of a defective gene from each parent

A plane can fly 3952 kilometers in 3
hours. If the plane flies in cloudy skies,
it can fly 184 less kilometers than usual
within the same time. What is the speed
for the plane flies in cloudy skies?
km/h

Answers

Final answer:

The speed of the plane in cloudy skies is calculated by subtracting the lesser distance it covers in such conditions from its usual distance (3952km - 184km = 3768), and then dividing by the given time which is 3 hours. The speed is thus 1256 km/h.

Explanation:

To calculate the speed of the plane flying in cloudy skies, we first need to establish the number of kilometers the plane usually flies which is 3952 km. In cloudy conditions, it covers 184 km less, so we subtract that from the usual distance (3952 - 184 = 3768 km). The time is still 3 hours. Speed is calculated by dividing the distance by the time. That gives us 3768 km / 3 hours = 1256 km/h.

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Find the number of moles, of hydrogen, in a sample of gas at STP ( 0.0 °C & 101.325 kPa) in an 11.2 L container.

Answers

Answer:

0.5 mol.

Explanation:

Given,

Pressure, P = 101.325 kPa = 1 atm

Temperature, T = 0 +273 = 273 K

Volume = 11.2 L

Now, using ideal gas equation

PV = n RT

1 x 11.2 = n x 0.08206 x 273

n = 0.5 mol.

Hence, number of moles of the hydrogen sample of gas at STP is 0.5 mol.

Early in the earth’s history there was little to no oxygen into atmosphere. How did oxygen levels in the atmosphere reach current levels?

Answers

Final answer:

Earth's atmosphere contained little free oxygen until cyanobacteria’s photosynthesis began producing oxygen, which accumulated over time due to geological activities that limited oxygen's recombination with organic matter. The rise in oxygen levels led to the creation of the ozone layer, allowing life to thrive on land.

Explanation:

Initially, Earth's early atmosphere contained little to no free oxygen. This was because oxygen is a byproduct of photosynthesis, a process that was not prevalent until the evolution of photosynthetic organisms like cyanobacteria. Over time, as more plants appeared and photosynthesis increased, more oxygen was produced. However, the oxygen was quickly removed from the atmosphere through chemical reactions with the Earth's crust, preventing it from accumulating. This changed around 2.4 billion years ago, when geological activity increased and plants were buried before they could decompose fully, which decreased the removal of oxygen and allowed it to begin accumulating in the atmosphere.

The buildup of oxygen in the atmosphere had significant evolutionary consequences. The emergence of the ozone layer, comprised of three oxygen molecules (O3), protected life from the Sun's ultraviolet radiation, enabling the colonization of land. Thus, the oxygenation of the atmosphere facilitated the development of aerobic life and the complex biodiversity we have today.

Using R=0.0821, calculate the volume that 0.540 mol of propane gas takes up at STP

Answers

Answer:

qaaaaaAaaaAAAaaaaaaa

Atoms of an element always have the same number of _________.
A. protons
B. neutrons
C. quarks
D. electrons

Answers

Answer:

protons

Explanation:

Protons is the answer, because they are what determines the identity of an element. Hydrogen always has one proton. No more, no less.

You can remove electrons from an element and it is still the same element. We call it an ion when this happens: think of something like Na+ or Cl-. An electron has been taken or added to those elements, but they're still the same element!

You can remove neutrons from an element and it is still the same element. We call it an isotope when this happens: maybe you've heard of carbon-14, which has two extra neutrons. We use that in carbon-dating. It's still carbon, though!

Those other options, A B and D, are made up of quarks. This isn't the right answer, because you can have two elements with different amount of quarks because quarks make up neutrons and other subatomic particles.

Final answer:

Atoms of an element have the same number of protons, and those with different numbers of neutrons are called isotopes. The mass number (A) is the sum of protons and neutrons in the nucleus. (Option A)

Explanation:

Atoms of an element always have the same number of protons, which is characteristic of that particular element and is known as the atomic number (Z). Atoms that vary in the number of neutrons found within their nuclei are called isotopes. The overall charge of an atom is neutral because it has an equal number of protons and electrons.

Furthermore, the sum of the numbers of protons and neutrons is the mass number, notated as (A). For instance, the carbon atom, which has 6 protons and can have varying numbers of neutrons, is recognized in its standard form as having 6 neutrons, making its mass number (A = 12).

What kind of acid is chlorous acid?

A Monoprotic acid
B Diprotic acid
C Triprotic acid​

Answers

Answer:

It might be B

Explanation:

because its HClO2

C because i need points

The solubility of a salt in a given volume of water depends primarily on the A) surface area of the salt crystals B) temperature of the water C) rate at which the salt and water are stirred D) pressure on the surface of the water

Answers

Answer:

The correct answer to the following question will be Option B (temperature of the water).

Explanation:

The solubility of that same salt which appears whenever the substance is added in some kind of a fluid which already incorporates another origin of many of its atoms.The solubility of such a substance throughout a given quantity of water is predominantly dependent on the whole of the water temperature.

Final answer:

The solubility of a salt in water is primarily determined by the temperature, with most solutes having increased solubility at higher temperatures. This greatly influences the maximum amount of solute that can dissolve, making temperature a key factor in solubility. The correct answer is B.

Explanation:

The solubility of a salt in a given volume of water depends primarily on the B) temperature of the water. This is because solubility is significantly influenced by temperature, with most solid or liquid solutes having their solubility increased with rising temperature. The solubility of sodium chloride, for example, is 36.0 g per 100 g of water at 20°C, underscoring the need to specify temperature when discussing solubility. While surface area affects the rate of dissolution and stirring can increase the rate of solute-solvent collisions, it is the temperature that primarily determines the maximum amount of solute that can dissolve. Pressure, on the other hand, has a prominent effect on the solubility of gases rather than salts in water.

P3F4 is a(n) _________.
A. ionic compound
B. metallic compound
C. covalent compound
D. None of these

Answers

Answer:

Covalent Compound

Explanation:

Answer via Founder's Education/ Educere

P3F4 is a covalent compound , therefore option (c) is correct.

What is covalent bond?

A covalent bond is a chemical bond in which pairs of electrons are shared between two atoms. The covalent bond is also called a molecular bond.

The forces of attraction or repulsion between two atoms, when they share electron pair or bonding pair, is called as Covalent Bonding.

Covalent bonding occurs between non-metal elements when pairs of electrons are shared by atoms.

Atoms will covalently bond with other atoms to attain the nearest noble gas electron configuration.

P3F4 is a covalent compound ,  hence option (c) is correct.

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How many moles are in 63 grams of water (H2O)?

Answers

Final answer:

To find the number of moles in 108 grams of water, divide the given mass by the molar mass of water, which is 18.02 grams per mole. The number of moles is 6.

Explanation:

To determine the number of moles in 108 grams of water (H2O), we can use the molar mass of water as a conversion factor. The molar mass of water is 18.02 grams per mole. So, to find the number of moles, divide the given mass by the molar mass:

Number of moles = Mass of water / Molar mass of water

Number of moles = 108 g / 18.02 g/mol

Number of moles = 6 moles.

What would happen if you let a balloon go? Would it go into space or just pop later on?

Answers

Answer:

Simply put, your balloon will pop before it can get to that point due to pressure.

Answer:

it would pop as soon as it was exposed to the vacuum of space. The pieces would then burn or freeze depending on how far you are from the nearest star

What mass of sodium sulfate is needed to make 2.5 L of 2.0 M solution?
A 120 g
B 150 g
C 180 g
D 710 9
E 750 g​

Answers

D) 710 g

Step by Step:
Multiply 2.5 L by 2.0 M to solve for moles
2 mol/L • 2.5 L= 5 mol

Find formula weight of sodium sulfate

Na2SO4-142.04 g/mol

Na- 2(22.99)=45.98
S-32.06
O-4(16)=64

Multiply miles by formula weight

5 mole • 142.04 g/mol=710.2 g

Solution A is more acidic than Solution B. Compare their pH values.

Answers

Answer:

Solution A has a lower pH level because it is more acidic. This means that there is a greater amount of hydronium [[tex]H_{3}O[/tex]] present in the solution which results in a more acidic solution.

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