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Dmitriy789 [7]
2 years ago
13

Check all the true statements concerning two identical containers, one with helium gas in it and one with xenon gas. Choose one

or more:
a. When the temperature of either sample of gas increases, the root-mean-square speed increases.
b. If both gases are at the same temperature, they have the same average kinetic energy.
c. When the temperature of either sample of gas increases, the number of particles with average kinetic energy increases.
d. If both of the containers are at the same temperature, they will have the same root-mean-square speed.
Chemistry
1 answer:
Allisa [31]2 years ago
7 0

Answer:

The answers to the question are as follows

a. True

b. True

c. True

d. false

Explanation:

The requiredrelation is

u_{rms}  = \sqrt{\frac{3RT}{m} }

Where R = The gas constant

T =  the temperature in kelvin

m = molecular mass

u_{rms} = root mean square speed

From the above relation on the kinetic energy of a gas we have the following true statements

a. When the temperature of either of the sample of gas increases, the root-mean-square speed increases.

This statement is true as the root means square velocity is directly proportional to the square root of the temperature a. is true

b. If both gases are at the same temperature, they have the same average kinetic energy.

From the equation for the average kinetic energy KE_{avg}  = \frac{3}{2} RT we see that the kinetic energy is directly proportional to its Kelvin temperature and  hence b. is true

c. When the temperature of either sample of gas increases, the number of particles with average kinetic energy increases.

This statement is true as shown in the kinetic energy equation

d. If both of the containers are at the same temperature, they will have the same root-mean-square speed.

This statement is false as xenon and helium have different, molecular masses

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Marina CMI [18]

Answer:

(II) only correctly rank the bonds in terms of increasing polarity.

Explanation:

Bond polarity is proportional to difference in electronegativity between bonded atoms.

Atoms    Electronegativity          Bond        Electronegativity difference

Cl                          3.0                       Cl-F                      1.0

Br                          2.8                       Br-Cl                     0.2

F                            4.0                       Cl-Cl                      0

H                            2.1                       H-C                       0.4

C                            2.5                       H-N                       0.9

N                             3.0                      H-O                       1.4

O                             3.5                      Br-F                       1.2

I                               2.7                      I-F                         1.3

Si                             1.9                      Cl-F                       1.0  

P                              2.2                      Si-Cl                      1.1

                                                          Si-P                        0.3

                                                          Si-C                        0.6

                                                           Si-F                        2.1

So, clearly, order of increasing polarity : O-H > N-H > C-H

So, (II) only correctly rank the bonds in terms of increasing polarity

4 0
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Give the product for the reaction of 1-butene with methanol in the presence of acid. The mechanism is the same as the mechanism
Nuetrik [128]

Answer:

The final result is <u>2-methoxybutane. </u>

<u />

Explanation:

1-butene has a carbon-carbon double bound between C1 and C2.

When it will react with methanol, in the presence of an acid, the result will be an ether.

C4H8 + CH3OH → C5H12O

An acid-catalyzed ether synthesis from alkenes is limited by carbocation stability.

In the first step, the double bound will disappear. The C2 atom will be a C+ atom, this becaus it has only 3 bounds and not 4.

This C+ -atom will atract the O- atom to form an ether. The CH3 of methanol will bind on the C3 atom, this is the most stable position.

2-methoxybutane will be formed. It has a structural formula of C5H12O

1-methoxybutane will not be formed, because it's less stable.

1-butanol will be formed when water is added to 1-butene. The mechanism has the same principle but not the same product.

1-ethoxybutane and 2-ethoxybutane have a structural formula of C6H14O, this will not be the final result.

The final result is <u>2-methoxybutane. </u>

<u />

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What is the molarity of a solution that contains 2.35 g of nh3 in 0.0500 l of solution?
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The molarity is the number of moles in 1 L of the solution. 
The mass of NH₃ given - 2.35 g
Molar mass of NH₃ - 17 g/mol
The number of NH₃ moles in 2.35 g - 2.35 g / 17 g/mol = 0.138 mol
The number of moles in 0.05 L solution - 0.138 mol 
Therefore number of moles in 1 L - 0.138 mol / 0.05 L x 1L = 2.76 mol
Therefore molarity of NH₃ - 2.76 M
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2 years ago
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2 years ago
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iren [92.7K]

Answer:

Polymerization.

Explanation:

Polymerization can be defined as a type of chemical reaction in which molecules that are relatively small in size chemically combine to form a huge chain of molecules.

Simply stated, polymerization refers to a chemical reaction where two or more smaller molecules react to produce larger molecules of the same network or repetitive structural units.

In polymerization, the relatively small molecules are generally referred to as monomers while the larger molecules they produce are known as polymers.

Polymerization is given by the chemical formula;

nA -----> A(n).

In this scenario, Luis uses a stencil to repeat the same design on each wall to form one long grapevine with a bunch of grapes every foot along its length.

Hence, the type of chemical reaction this best model is polymerization because it involved repeating the same design (monomers) to form a long grapevine with a bunch of grapes (polymers).

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