Which of the following will result from increasing the temperature of a gas?
O
A. The number of gas molecules will increase.
O
B. The molecules will be forced into a smaller space together.
O
C. The molecules will slow down.
O
D. The volume of the gas will increase.

Answers

Answer 1

Answer:

The correct answer is D) The volume of the gas will increase.

Explanation:

According to Charles's Law, at constant pressure, as the temperature (T) of a gas increases, the volume (V) increases and vice versa. This is observed according to the formula:

V1 / T1 = V2 / T2


Related Questions

Determine the moles of NH3 that can form from 70.0 grams N2.

Answers

Hey there!

5 moles will be produced.

N₂ has a molar mass of 28.014 g/mol.

Convert 70g to mol:

70 ÷ 28.014 = 2.5

In N₂ there are 2 nitrogen atoms. In NH₃ there is 1 nitrogen atom.

So, there will be twice as many moles of NH₃ because every one molecule of N₂ will produce two molecules of NH₃.

2.5 x 2 = 5 moles

Hope this helps!

What type of energy does a rock resting on top of a hill have?
Electrical energy
Kinetic energy
Potential energy
Radiant energy

Answers

Answer:

Potential energy

Explanation:

The rock has potential energy. It has the potential to roll down the hill and have kinetic energy. The rock isn’t moving, but it could be made to move. When you push the rock down the hill the potential energy become kinetic energy.

what is caliper used for

Answers

A caliper is a device used to measure the distance between two opposite sides of an object.

Write a balanced equation for zinc sulfate heptahydrate + sodium carbonate —> zinc carbonate + sodium sulfate

Answers

Answer:

I gotta go - but think heat or solubility, what can you drive away with heat and by what is it is not soluble...it is a catch all answer - but rarely is there ONE WAY ONLY! Good luck.

Explanation:

The balanced chemical equation for the reaction between zinc sulfate heptahydrate and sodium carbonate is: ZnSO₄•7H₂O + Na₂CO₃ → ZnCO₃ + Na₂SO₄ + 7H₂O.

To write a balanced chemical equation for the reaction between zinc sulfate heptahydrate (ZnSO₄•7H₂O) and sodium carbonate (Na₂CO₃), we follow these steps:

Step-by-Step Solution:

Write the unbalanced equation: ZnSO₄•7H₂O + Na₂CO₃ → ZnCO₃ + Na₂SO₄ + 7H₂OIdentify the states of the compounds: ZnSO₄•7H₂O (aq), Na₂CO₃ (aq), ZnCO₃ (s), Na₂SO₄ (aq), 7H₂O (l).Break down the compounds into their respective ions:
ZnSO₄•7H₂O → Zn²⁺ + SO₄²⁻ + 7H₂O, Na₂CO₃ → 2Na⁺ + CO₃²⁻, ZnCO₃ → Zn²⁺ + CO₃²⁻, Na₂SO₄ → 2Na⁺ + SO₄²⁻.Balance the number of atoms on both sides: Since we already have all the atoms balanced by the initial formula, the balanced equation stays the same:

Balanced Equation:

ZnSO₄•7H₂O (aq) + Na₂CO₃ (aq) → ZnCO₃ (s) + Na₂SO₄ (aq) + 7H₂O (l)

the muscle layer of the heart is known as the

Answers

Answer:

Myocardium

Explanation:

myo means "of muscle" or "relating to muscle"

cardium denotes tissues or cells that are associated with the heart.

The myocardium is an involuntary (we don't have to actively contract it), smooth muscle. The cells that make up the muscle are called cardiomyocytes.

These cells/tissues are hugely important for the normal functioning of the heart, and disruption is associated with diseases such as ischemic heart disease.

2. What does it mean to say a bond is polar?

Answers

Answer:

Explanation:

Means in between two bonded atoms one is more electronegative than other the one which is more electronegative has partial negative charge and the other which has less electronegativity has partial positive charge

Final answer:

A polar bond refers to the unequal distribution of electron density between two atoms due to a difference in electronegativity.

Explanation:

The polarity of a bond refers to the unequal distribution of electron density between two atoms.

A bond is considered polar when there is a significant difference in electronegativity between the bonded atoms, resulting in one atom being more electron-attracting than the other.

For example, in a bond between hydrogen (H) and oxygen (O) in a water molecule (H2O), the oxygen atom is more electronegative than the hydrogen atoms, causing the oxygen atom to attract electrons and develop a partial negative charge (δ-) while the hydrogen atoms have a partial positive charge (δ+).

Calculate the volume of 0.413 mol of hydrogen gas at a temperature of 20°C and a pressure of 1200 torr.

Answers

Answer:

The volume is 6, 28 liters

Explanation:

The unit of pressure and temperature must be converted. 760 Torr = 1 atm and 0°C=273 K.     20+273=293K

760 Torr---1 atm

1200Torr--x= (1200 Torr x 1 atm)/760 Torr =1,58 atm

PV=nRT V=(nRT)/P

V= (0,413 mol x 0,082 L atm /K mol x 293K)/ 1,58 atm

V=6, 28 L

what is the mass, in grams, of 0.0287 mol of sucrose

Answers

Answer: 9.82401 grams

1.Intramolecular forces are between

aMolecules
bAtoms within a molecule.
cProtons and electrons
dProtons and neutrons

Answers

Answer:

b Atoms within a molecule

Explanation:

Intramolecular forces are usually found within a molecule. Molecules are made up of combinations of atoms.

They are also called interatomic forces which joins atoms together to form another atom.

These bond types determines the chemical properties of substances.

Examples are:

Ionic bondsPure covalent bondsCoordinate covalent bondsMetallic bonds

which is a determine factor for the direction a motor spins in an electric motor.

Answers

Answer:

Magnet determine factor for the direction a motor spins in an electric motor.

The property of water in which it attaches to another surface is known as: *

Answers

Answer:

The property of water which makes it to attach or stick to another surface is Adhesion.

Explanation:

Adhesion is the characteristic ability a substance possess to stick to other substances. This is as a result of the covalent bond existing between the two hydrogen atoms and the one oxygen atom in the water molecule.

An example of the property of Adhesion is a water drop that stuck to the end of the pine needles

A reaction of 12.640 g of copper
oxide with 0.316 g hydrogen
produces 2.844 g of water and Xg
of copper. X=_9

Answers

Answer: it’s 10.112

Explanation:

Final answer:

This question relates to the law of conservation of mass in a chemical reaction. Following this law, the weight of copper (X) can be found by subtracting the weights of water and hydrogen from the weight of initial copper oxide. The calculated copper weight will be approximately 9.48g.

Explanation:

This question relates to a chemical reaction which suggests you are being asked to understand the law of conservation of mass. In a chemical reaction, mass cannot be created or destroyed, only rearranged. The correct method to solve this problem is to add the mass of the water produced and the mass of copper produced and use this total to find the mass of the copper.

If we add the weight of water (2.844g) and the weight of copper (which is given to be 'X'), we will get the total weight of copper oxide, because in a reaction, the total mass of the reactants is equal to the total mass of the products. From the problem, we know that total weight of copper oxide is 12.640g. So

X = 12.640g (Copper Oxide) - 2.844g (Water) - 0.316g (Hydrogen)

When we calculate this we find that X = 9.480g.

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How many Liters are in 13 moles Acetylene (C2H2) at STP?

Answers

Answer:

291.2L

Explanation:

Given parameters:

Number of moles of acetylene  = 13moles

Unknown:

Volume of acetylene at STP  = ?

Solution:

The problem can be solved by applying the equation that shows the relationship between the volume of gases at STP and their number of moles.

   Volume of gas at STP  = number of moles x 22.4

Input the variables and solve;

  Volume of gas at STP  = 13 x 22.4  = 291.2L

Final answer:

To find the number of Liters in 13 moles of Acetylene (C2H2) at STP, we use the Ideal Gas Law equation. Plugging in the given values, we find that there are approximately 302.19 Liters.

Explanation:

To determine the number of liters in 13 moles of acetylene (C2H2) at STP, we need to use the Ideal Gas Law. The Ideal Gas Law equation is PV = nRT, where P is pressure, V is volume, n is moles, R is the ideal gas constant, and T is temperature. At STP (standard temperature and pressure), the pressure is 1 atm and the temperature is 273.15 K. Since we are given the number of moles (13) and want to find the volume, we rearrange the equation to solve for V: V = nRT/P.

Plugging in the values, we get V = (13 mol)(0.08206 L·atm/mol·K)(273.15 K)/(1 atm) = 302.19 L.

Which statement best describes the kinetic molecular
theory?
The kinetic molecular theory relates the properties of a state of matter to the motion of
its molecules.
B
The kinetic molecular theory relates the properties of a state of matter to the mass of its
molecules.
C
The kinetic molecular theory relates the properties of a state of matter to the size of its
molecules.
D
The kinetic molecular theory relates the properties of a state of matter to the diameter of
its molecules.

Answers

The kinetic molecular theory is best illustrated by the statement that the properties of a state of matter is associated with the motion of its molecules.

Kinetic molecular theory:

According to the kinetic molecular theory, all the matter is formed of particles, which are in motion spontaneously. All the particles possess energy, however, the energy changes based upon the temperature of the sample of matter. This is further determined by the fact that whether the substance prevails in liquid, solid, or gaseous state.

In the solid phase, the molecules exhibit the least amount of energy, while the particles of gas exhibits the highest amount of energy. According to the kinetic molecular theory, all the particles of gas are in spontaneous motion and exhibit perfectly elastic collisions.

Thus, the correct statement is option A.

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Final answer:

The kinetic molecular theory best describes the properties of a state of matter as being related to the motion of its molecules, not their mass, size, or diameter.

Explanation:

The kinetic molecular theory is a model that explains the properties and behavior of matter, particularly in the state of gases. The theory posits that matter is made up of tiny particles that are always in motion. This motion is responsible for the observable properties of solids, liquids, and gases. The theory is most applicable to an ideal gas, which is a hypothetical gas that perfectly adheres to the kinetic molecular theory's assumptions, with molecules that are in constant motion, having negligible volume, colliding elastically, and with a distribution of speeds dependent on temperature.

In relation to the question, which statement best describes the kinetic molecular theory, the correct answer is:(A). The kinetic molecular theory relates the properties of a state of matter to the motion of its molecules.

What numbers should be added to the blanks to balance this chemical equation? ___F2 + __ H20 --------> ___OF2 + ___HF
A) 2,2,1,2
B)2,1,1,2
C)3,2,1,4
D)1,2,2,1

Answers

The numbers to be added to the blanks to balance this chemical equation are 2, 1 , 1 and 2

Explanation:

According to the law of conservation of mass, mass can neither be created nor be destroyed. Thus the mass of products has to be equal to the mass of reactants. The number of atoms of each element has to be same on reactant and product side. Thus chemical equations are balanced.

[tex]2F_2+H_2O\rightarrow OF_2+2HF[/tex]

Thus in the reactants, there are 2 atoms of hydrogen , 1 atom of oxygen and 4 atoms of flourine.Thus there will be  atoms of hydrogen , 1 atom of oxygen and 4 atoms of flourine in the product as well.

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If 8.00 miles of NH3 of 10.00 moles of O2 react in the following reaction, how many moles of which reactant will be left over

Answers

Answer:

No moles will be left over of either reactant because both are limiting.

Explanation:

4NH₃    +    5O₂    →    4NO   +    6H₂O

8 mol       10 mol

How is potential measured?

Answers

Potential energy is measured In joules (j)

What is the total amount of heat released when 94.0 g water at 80.0 °C cools to form ice at −30.0 °C?

Answers

Answer:

The total amount of heat released  is  68.7 kJ

Explanation:

Given that:

mass of water = 94.0 g

moles of water = 94 / 18.02 = 5.216

80⁰C   ------>  0⁰C  -------->    -30⁰C

Q1 = m Cp dT

      = 94 x 4.184 x (0 - 80)

     = -31463.68 J

     = -31.43 kJ

Q2 = 6.01 x 10^3 x 5.216

    = - 31348.16 J

   = -31.35 kJ

Q3 = - 94 x 2.09 x 30

    = - 5893.8 J

   = -5.894 kJ

Total heat = Q1 + Q2 + Q3  = -31.43 kJ  + (-31.35 kJ  ) + (-5.894 kJ )  = -68.7 kJ

Total heat released = -68.7 kJ

Note that the "negative sign" simply indicates heat released, therefore no need to put it in the answer.

The total amount of heat released is 68.7 kJ.

Given:

Mass of water = 94.0 g

Moles of water = 94 / 18.02 = 5.216

Transformation of heat:

80⁰C   ------>  0⁰C  -------->   -30⁰C

Q₁ = m*Cp*dT

= 94 * 4.184 * (0 - 80)

= -31463.68 J

Q₁ = -31.43 kJ

Q₂ = 6.01 * 10³ * 5.216

= - 31348.16 J

Q₂ = -31.35 kJ

Q₃ = - 94 * 2.09 * 30

= - 5893.8 J

Q₃ = -5.894 kJ

Total heat = Q₁ + Q₂ + Q₃  

Total heat = -31.43 kJ  + (-31.35 kJ  ) + (-5.894 kJ )  = -68.7 kJ

Total heat = -68.7 kJ

Total heat released = -68.7 kJ

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for multiple covalent bonds to form in molecules the molecules must contain carbon nitrogen or​

Answers

For multiple covalent bonds to form in molecules, the molecules must contain carbon nitrogen or​ oxygen.

Explanation:

Think about carbon dioxide (CO2). If every oxygen atom imparts one electron to the carbon molecule, there will be 6 electrons in carbon particle and 7 electrons in every oxygen atom. This doesn't give the carbon atom as a total octet.Sometimes more than one set of electrons is shared between two atoms. In carbon dioxide, a second electron from every oxygen atom is likewise imparted with the central carbon atom, and the carbon particle imparts one more electron with every oxygen atom. Two sets of electrons shared between two atoms make a double bond between the atoms. A few particles contain triple bonds, covalent bonds in which three sets of electrons are shared by two atoms.

What are the environmental pressures of the plant the cactus. Or what are the variations of the plant called the cactus

Answers

The most well-known threat is posed by human pressures brought on by the spread of agriculture, housing, and commercial space into cactus ecosystems .Cereus, Rebutia etc are a few of the more popular cacti groups.

A desert-dwelling plant with strong stems and sharp projections called spines. The term "cactus" is derived to the Greek word "kaktos," which was also the name of a kind of spiky plant that is frequently seen in Sicily: the cardoon. The word's earliest recorded use in English, describing the emerald-green, leafless plants found in the American desert, goes back to 1769. The most well-known threat is posed by human pressures brought on by the spread of agriculture, housing, and commercial space into cactus ecosystems .Cereus, Rebutia etc are a few of the more popular cacti groups.

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How many moles of calcium carbonate-CaCO3 = 4.15 g​

Answers

Answer:

Number of moles = 0.042 mol

Explanation:

Given data:

Number of moles = ?

Mass of calcium carbonate = ?

Solution:

Formula:

Number of moles = mass/ molar mass

now we will calculate the molar mass of calcium carbonate.

atomic mass of Ca = 40 amu

atomic mass of C = 12 amu

atomic mass of O = 16 amu

CaCO₃ = 40 + 12+ 3×16

CaCO₃ = 40 + 12+48

CaCO₃ = 100 g/mol

Now we will calculate the number of moles.

Number of moles = 4.15 g / 100 g/mol

Number of moles = 0.042 mol

you need to make 1.5L of 1.0M HCl from a stock solution of 12.0M HCl. How many L of the stock solution do you need?

Answers

Answer:

125 ml of HCl

Explanation:

The molarity of the stock solution to determine how many milliliters would contain 1.5 moles of HCl. Since a concentration of 12.0 mol/L means that you get 12.0 moles of hydrochloric acid per liter of solution,  

Concentration of required HCl (C1)  = 1.0M

Volume of required HCL (V1)  = 1500 ml

Concentration of stock HCl (C2)  = 12M

Volume of stock  HCL (V2)   = ?

C1V1 = C2V2

V2 = C1V1/C2 = 1*1500/12 = 125 ml

Final answer:

To make a 1.0M HCl solution from a stock solution of 12.0M HCl, you need to take 125mL of the stock solution and dilute it to a final volume of 1.5L.

Explanation:

To make a 1.0M HCl solution, you need to dilute a stock solution of 12.0M HCl. The formula to calculate the volume of stock solution needed is (C1 x V1) = (C2 x V2), where C1 is the concentration of the stock solution, V1 is the volume of stock solution needed, C2 is the desired concentration, and V2 is the final volume. In this case, C1 = 12.0M, V2 = 1.5L, and C2 = 1.0M.

Plugging in these values into the formula:

(12.0M x V1) = (1.0M x 1.5L)

Solving for V1:

V1 = (1.0M x 1.5L) / 12.0M = 0.125L or 125mL.

Therefore, you need to take 125mL of the stock solution to make 1.5L of 1.0M HCl.

what is one characteristic of sulfur

Answers

Answer:

Sulfur is a soft, pale yellow, odorless, brittle solid. It is insoluble I. carbon disulfide. It burns with a blue flame, oxidizing to sulfur dioxide. Sulfur exists in several crystalline and amorphous allotropes.

Final answer:

Sulfur has the ability to form thiols which are known for their potent odors, a characteristic shared with oxygen as they are in the same group on the periodic table. Hydrogen sulfide is an example of a toxic sulfur compound with a strong smell.

Explanation:

One characteristic of sulfur is its ability to form thiols, which are the sulfur analogs of alcohols. Thiols, such as methanethiol (CH3-SH) and the garlic odorant prop-2-ene-1-thiol (CH2=CH-CH2-SH), are known for their strong and often unpleasant odors. For example, methanethiol is present in oysters, cheddar cheese, onions, and garlic, contributing to their unique smells. Sulfur is part of the same group (6A) as oxygen on the periodic table, and mirrors some of oxygen's properties, including the ability to replace oxygen in organic compounds, such as alcohols, forming thiols. Hydrogen sulfide (H2S), another sulfur compound, is noteworthy for its colorless appearance yet potent smell of rotten eggs and its high toxicity, which is comparable to that of hydrogen cyanide.

are plastic bags organic or inorganic? ​

Answers

Answer:

nilon is inorganic so they can be in the soil up to 5000 years

Explanation:

Answer: The answer would be INORGANIC

Explanation:

i did the test

Please this is due tomorrow!!!

A little quantity of trichloromethane (b.pt. 60° C) was added to a large quantity of ethanol (b.pt. 78°C). The most probable boiling point of the
resultant mixture is from
A. 69°C - 70°C
B. 70°C - 74°C
C. 82°C - 84°C
D. 60°C - 78°C​

Answers

Answer:

the correct answer is C

Final answer:

The boiling point of the mixture of trichloromethane and ethanol is likely to be within the range of 60°C to 78°C. However, due to the larger quantity of ethanol with a higher boiling point, it is likely to be closer to 78°C.

Explanation:

The boiling point of a mixture depends on the individual components and their proportions. Here, we have trichloromethane (boiling point 60°C) and ethanol (boiling point 78°C). Even though a small quantity of trichloromethane is added, since the boiling point of ethanol is higher, it is likely that the mixture will start to boil close to the boiling point of ethanol. The boiling point of most mixtures is typically within the range of the components' boiling points.

Therefore, we can say that answer D (60°C - 78°C) is a likely range for the resultant boiling point of the mixture, but the actual boiling point is more likely to be closer to 78°C, the boiling point of ethanol. The specific boiling point would depend on the exact proportions of the two substances in the mixture.

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11.
In the 1930s, how did Dobzhansky and Mayr explain the origin of species?

Species originate due to gradual adaptations to the environment.

Species originate from interbreeding.

Species originate through allopatric speciation.

Species originate due to behavioral changes.

Answers

Answer:

species originate through allopatric speciation:

Have a good day! :)

Answer:

species originate through allopatric speciation

Explanation:

Why does food have potential energy?

Answers

Answer:

So that if we feel weak, energy is released through it so we can do work and do stuff like walk or think. It's like stored energy that can do things for the future.

Please give brainliest if it helped.

Food has potential energy because it contains stored chemical energy. The potential energy in food comes from the energy captured by plants through the process of photosynthesis.

During photosynthesis, plants convert sunlight, water, and carbon dioxide into glucose and other organic molecules.

Glucose, along with other carbohydrates, fats, and proteins present in food, is a rich source of potential energy.

The energy stored in these molecules is in the form of chemical bonds. When we consume food, our bodies break down these complex molecules through digestion and metabolic processes.

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Question 2
What is the freezing point of water in Celcius

Answers

0°C

Explanation:

The freezing point of water is zero (0) degrees Celsius. Converted to Kelvin it is 273.15 kelvin. At these temperatures pure liquid water, and at 1 atm, changes to ice.  The boiling point of water, on the other hand, is 100 degrees Celsius, temperatures at which liquid changes to a gaseous phase (water vapour).

is ammonium hydroxide a strong base

Answers

Answer:

No

Explanation:

Ammonium hydroxide is a weak base and not a strong base.

What is a base?

A base is any substance that interacts with water to produce  or yield excess hydroxide ions in an aqueous solution.

A strong base is one that ionizes completely in solution. Most strong bases are hydroxides of alkali and alkaline earth metals.

A weak base is one that partially or slightly ionizes in an aqueous solution.

Such is ammonium hydroxide;

                NH₃  +  H₂O   ⇄   NH₄⁺   +   OH⁻

In the ionization of a weak base, the process results in an equilibrium reaction.

What is the objective of sustainable development? Sustainable development is concerned with meeting needs without jeopardizing the needs of generations.

Answers

Answer:

To meet the needs of the present without jeopardizing that of the future.

Explanation:

Sustainable development applies to all faculties of resource allocation. Most available resources are limited in their capacity to satisfy our limited human wants.

Sustainable development is such development geared towards satisfying the developmental needs of our present generation without endangering those of the future generations. It allows for safe and efficient use/allocation of resources to meet wants. Conservation of resources is an approach towards sustainable development. The use of recycled materials is one method of attaining the obligations of sustainable development.

Answer:

Explanation:

Present

Future

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