Water is a compound that is made out of two hydrogen atoms and one oxygen atom. Which statement about water is true?
A.
Water is usually a gas like the elements oxygen and hydrogen.

B.
Water has a set of properties that are different from oxygen and hydrogen.

C.
Water has properties that are a blend of the properties of oxygen and hydrogen.

D.
Water is flammable like the elements oxygen and hydrogen.

Answers

Answer 1

Answer is: B.  Water has a set of properties that are different from oxygen and hydrogen.

For example, boiling point of water is 100°C and oxygen has boiling point of -183°C and hydrogen has boiling point of -253°C.

Another example, at room temperature water is liquid, oxygen and hydrogen are gases.

Water is not flammable, hydrogen anf oxygen are flammable.

Water has polar covalent bonds, oxygen anf hydrogen have nonpolar bonds between atoms.

Answer 2

Answer:

B.

Water has a set of properties that are different from oxygen and hydrogen.

Explanation:

The characteristic properties of these elements are different from those of water. However, hydrogen and oxygen have some common properties. They are both colorless, odorless gases , and they both readily react with other elements—making them "reactive" elements. ... Hydrogen has the lowest density of all the elements. Yee.


Related Questions

The solubility of a salt in a given volume of water depends primarily on the

Answers

Hello!

The solubility of a salt in a given volume of water depends primarily on the temperature of the water. 

Solubility refers to the maximum concentration of a salt that a solution can have at a given pressure and temperature. Generally, solubility increases with temperature. This happens in the cases where the process of dissolving is endothermic (requires heat). Increasing temperature will increase the kinetic energy of the solvent molecules, which will break the intermolecular interactions between solute molecules more effectively.

Have a nice day! 

How can you raise the average kinetic energy of the water molecules in a glass of water?

Answers

boil it. Kinetic energy is energy of motion and hot water moleculues move more

Final answer:

To rise the average kinetic energy of water molecules in a glass, you need to increase the water's temperature, which can be done by heating the water or increasing the room temperature. This is based on the principle that temperature is proportional to the average kinetic energy of the particles in a substance.

Explanation:

The average kinetic energy of water molecules in a glass can be raised by increasing the temperature of the water. This increase in temperature can be achieved in several ways, one of which is by increasing the temperature of the room, allowing heat energy to transfer from the environment to the water. It's important to note that replacing the water with a more dense fluid or adding more water will not increase the kinetic energy of the existing water molecules.

As detailed in the kinetic-molecular theory, temperature is directly proportional to the average kinetic energy of the particles in a substance. Thus, when water is heated, the molecules begin to move more rapidly, with more extensive vibrations and translations. This results in increased collisions between molecules and a higher average velocity and kinetic energy of the particles.

It's worth clarifying that kinetic energy is transferred from hot water molecules to colder substances like ice, but what we want in this scenario is to increase the kinetic energy of the water molecules themselves, which is done by applying heat to the water.

what do we need to survive and how long for

Answers

You need food for surviving
To survive you would need 

- Lots of water 
- Lots of food 
- Shelter 

Hope this helped!

This reaction was monitored as a function of time:

AB --> A + B

A plot of 1/[AB] versus time yields a straight line with slope of -0.055/M*s.

a) What is the value of the rate constant (k) for this reaction t this temperature?
b) Write the rate law for the reaction.
c) What is the half-life when the initial concentration is 0.55M?
d) If the initial concentration of AB is 0.250M, and the reaction mixture initially contains no products, what are the concentrations of A and B after 75s?

Answers

a. The value of the rate constant (k) for this reaction at this temperature is 18.18 [tex]M^-1*s^-1.[/tex]

b. The rate law can be written as: ate = k[AB]

c. The half-life of the reaction when the initial concentration is 0.55 M is  0.038 seconds.

d. The concentrations of A and B after 75 seconds would be approximately 0.004 M each.

How to Write the rate law for the reaction.

To answer the given questions, analyze the reaction kinetics based on the provided information:

a) The rate constant (k) can be determined from the slope of the plot 1/[AB] versus time. The slope is given as -0.055/M*s. The rate constant (k) can be calculated by taking the reciprocal of the slope:

k = -1/slope

k = -1/(-0.055/Ms)

k = 18.18 [tex]M^-1s^-1[/tex]

Therefore, the value of the rate constant (k) for this reaction at this temperature is 18.18 [tex]M^-1*s^-1[/tex].

b) The rate law can be determined using the given reaction:

AB --> A + B

Since the reaction is a first-order reaction, the rate law can be written as:

Rate = k[AB]

c) The half-life (t₁/₂) can be calculated using the first-order integrated rate law:

t₁/₂ = (0.693) / k

Given the initial concentration ([AB]₀) as 0.55 M and the rate constant (k) as 18.18 [tex]M^-1*s^-1[/tex],  calculate the half-life:

t₁/₂ = (0.693) / (18.18 [tex]M^-1*s^-1[/tex])

t₁/₂ ≈ 0.038 s

Therefore, the half-life of the reaction when the initial concentration is 0.55 M is approximately 0.038 seconds.

d) To determine the concentrations of A and B after 75 seconds, use the first-order integrated rate law:

[AB] = [AB]₀ * exp(-kt)

Given:

[AB]₀ = 0.250 M (initial concentration of AB)

t = 75 s (time)

Using the rate constant (k) calculated earlier (18.18 [tex]M^-1*s^-1[/tex]), calculate the concentrations of A and B:

[AB] = 0.250 * exp(-18.18 [tex]M^-1*s^-1[/tex] * 75 s)

[AB] ≈ 0.004 M

Since the reaction is stoichiometrically 1:1, the concentrations of A and B after 75 seconds would be:

[A] ≈ 0.004 M

[B] ≈ 0.004 M

Therefore, the concentrations of A and B after 75 seconds would be approximately 0.004 M each.

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Final answer:

The rate constant is 0.055/M*s. The rate law is rate = k[AB]. The half-life is 10.5 seconds and the concentrations of A and B after 75 seconds can be calculated using the integrated rate equation.

Explanation:

a) The slope of the line in the plot represents the rate constant (k) for this reaction. In this case, the slope is -0.055/M*s. So, the value of the rate constant is 0.055/M*s.

b) The rate law for the reaction can be determined by examining the stoichiometry of the reaction. The reaction is AB → A + B. Since the rate is expressed as 1/[AB], the rate law is rate = k[AB].

c) To find the half-life, we need to use the integrated rate equation ln([AB]₀/[AB]) = kt. Substituting the given values, we get ln(0.55/0.25) = (0.055/M*s)t. Solving for t, we find t = 10.5 seconds.

d) To find the concentrations of A and B after 75 seconds, we can use the integrated rate equation again. [A] = [AB]₀ - [AB]₀e^{-kt}. Plugging in the values, we get [A] = 0.250M - 0.250Me^{(-0.055/M*s)(75s)}. Similarly, we can find [B] = 0.250M - [A].

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A student made this model of a carbon dioxide molecule. its has one carbon atom and two oxygen atoms what is the correct way to write the chemical name of carbon dioxide

Answers

The proper way to chemically write carbon dioxide is CO2

Answer:

The chemical name of carbon dioxide is [tex]CO_2[/tex].

Explanation:

[tex]C+2O\rightarrow CO_2[/tex]

In a model of carbon dioxide made by the student there are one carbon atom and two oxygen atoms which means that total atoms in the molecule of carbon-dioxide is three.

While writing the chemical name of the carbon dioxide we will first write the symbol of the electropositive atom and then electronegative atom:[tex]CO_2[/tex]

Please help ill medal and fan!

After 15 minutes, 30 g of a sample of polonium-218 remain uncharged. If the original sample had a mass of 960 g, what is the half-life of polonium-218?

And

Suppose you want to separate the leaves, acorns, and twigs from a pile of soil. Filtration and distillation are two processes of separating mixtures. Explain which process you would use and why.

Answers

Solutions for your questions are the following:
1. remaining amount is equal to:960 g : 100% = 30 g : xx = 30 g * 100% / 960 g
 = 3.125%
= 0.03125
Now, we use this formula to calculate the number of half-lives:(1/2)ⁿ = x,
so,(1/2)ⁿ = 0.03125
to calculate n, use this equation:
n*log(1/2) = log(0.03125) n = log(0.03125)/log(1/2)
= log(0.03125)/log(0.5)
= -1.505/-0.301  
n=5

Ifn = 5T = 15 min

Then
L = T/nL = 15 min/5
= 3 minutes

2. 
You should pick filtration. It is use to separate heterogeneous mixtures just like in the problem stated.

The volume of a gas is 4.00 liters at 293 k and constant pressure. for the volume of the gas to become 3.00 liters, the kelvin temperature must be equal to

Answers

the kelvin  temperature  must    be  equal  to  for  a volume of  a  gas  to  become  3.00L  is  calculated  as  follows

by   use  of  Charles  law  that   V1/T1=V2/T2
V1=4.00L
T1=293k
V2=3.00L
T2=?
from  Charles  law   T2=(V2  xT1)/V1
T2= ( 3.00 x  293)/4=219.75K

The smallest particle from among the following is

A. Li+

B. F

C. F-

D. Li

Answers

The smallest is Li+ since the outermost energy level is now devoid of electrons, leaving only two in the 1s-sublevel.

i only have 3 questions left for this, please help!!!!

QUESTION 3

Daughter atoms X and Y are formed from the fission of atom Z. Which of the following statements is true about X and Y?

The combined atomic mass of X and Y will be greater than the mass of atom Z.

The mass of element X will always equal the exact atomic mass of Z.

High temperatures are required to make atoms X and Y.

Atoms X and Y will have a smaller atomic mass than atom Z.


QUESTION 7

What is the type of material needed in nuclear power plants?

combustible

stable

fissile

low mass
3 points

QUESTION 8

Which of the following are properties of nuclear fission?

The energy produced is controllable.

It is the source of the sun’s energy.

The reaction requires high temperature conditions.

It is used in nuclear power plants.It is used in nuclear power plants.

Answers

x is girl, and y is boy, they are formed by fission.

Answer:

3: Atoms X and Y will have a smaller atomic mass than atom Z

7: Fissile

8: It is used in nuclear power plants

Explanation:

3

The process of nuclear fission is where one unstable atom (in this case atom Z) splits into two smaller atoms (atoms X and Y) and releases energy in the form of radiation.

Hence, the combined atomic mass of X and Y cannot be grater than the mass of atom Z, fission does not need to be at high temperatures to take place, and the mass of element X will never equal the mass of element Z.

7

In nuclear fission, the energy is produced by the decay of radioactive elements, and that energy can not be obtained by combustion. Stable elements will not undergo fission, and low mass elements tend to be very stable too.

8

The energy produced from nuclear fission is not always controllable, that is why disasters such as nuclear meltdowns happen, because the energy output cannot be controlled. The atoms in the sun undergo fusion, and not fission. Once again, nuclear fission does not require high temperatures (nuclear fusion does, hence why the sun has such a high temperature).

Calculate the percent ionization of 0.0075 m butanoic acid (ka = 1.5 x 10-5) in a solution containing 0.085 m sodium butanoate.

Answers

Part 1: Calculate the percent ionization of 0.0075 m butanoic acid (Ka=1.5x10^-5) 
     
                 C4H8O2(aq) +H2O(l) → C4H7O2(aq) + H3O +
initial       0.0075                                   0                        0
change     -X                                        +X                      +X
final        0.0075-X                                  X                      X 
when Ka is relative smaller to the intial concentration of the acid so we can assume that 0.0075-X≈ 0.0075 by substitution in Ka formula:
Ka = [C4H7O2][H3O+] / [C4H8O2]
1.5x10^-5 = X*X / 0.0075

X^2 = 1.125x10^-7
X= 0.00034 m =3.4 x 10 ^-4 m
∴ [C4H7O2] = [H3O+] = 3.4X10^-4
 ∴ percent ionization = [H+ equlibrium]/[acid initial] *100
                                    = 3.4X10^-4/0.0075 * 100
                                    = 4.5 % 

part 2) calculate the percent ionization of 0.0075m butanoic acid in a solution containing 0.085m sodium butanoic?

                 C4H8O2(aq) + H2O(l) ↔ C4H7O2(aq) + H3O+
  initial        0.0075                                  0                 0.085
change         -X                                        +X                   +X
final           0.0075-X                                X                0.085+X
we can assume that 0.0075-X≈ 0.0075 & 0.085+X ≈ 0.085
∴Ka = (X*(0.085)) / (0.0075)
(1.5x10^-5)*0.0075 = 0.085X
∴X = 1.3x 10^-6
∴ percent ionization = (1.3x10^-6)/0.0075 * 100 = 0.017 %

 

The percent ionization of the solution is 0.017%.

The steps involved are;

Write the reaction equationSetup the ICE tablemake the necessary calculation

The equation of the reaction is;

            CH3CH2CH2COOH(aq)  ⇄ H^+(aq)  + CH3CH2CH2COO^-(aq)

I               0.0075                               0                0.085

C              -x                                        +x             + x

E          0.0075 - x                               x               0.085 + x

The Ka of the acid = 1.5 x 10^-5

Hence;

1.5 x 10^-5 = x(0.085 + x)/0.0075 - x

1.5 x 10^-5 (0.0075 - x ) =  x(0.085 + x)

1.1 x 10^-7 - 1.5 x 10^-5x = 0.085x + x^2

x^2 + 0.085x - 1.1 x 10^-7 = 0

x = 0.0000013 M

Percent ionization=  0.0000013 M/0.0075 × 100/1

= 0.017%

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If horizontal layers of sedimentary rock have a vertical fault running through them, how might a geologist use relative dating to determine when the fault occurred ? Could scientists use absolute dating as well ? Why or why not ?

Answers

1. If horizontal layers of sedimentary rock have a vertical fault running through them, then they cab predict where the fault begame by matching up rock layers over distances.
2. Yes, because they it is use to determine an age on a specified chronology in archaeology and geology. They can use these data to prove their theories.

Answer:

Scientists will be able to use relative dating and absolute dating to determine when the failure occurred.

Explanation:

Scientists will be able to use relative dating, because it is the method capable of determining an order of events that occurred in the past by relating the rock with that failure to a rock without failure or with different failures, without the need to determine an absolute age of when the failure happened, however revealing a relative, approximate date.

It will also be possible to use absolute dating, which will give a more precise age on the fault present in the rock, using a chronological age that will be determined by observing the physical and chemical properties of the rock. This technique shows the age of the event in numbers, as opposed to relative dating.

Which is not a characteristic of chemical equilibrium?

The reactions go to completion.


The reactions are reversible.


The reaction occurs in a closed container.


The forward and reverse processes occur at the same rate.

Answers

The point that reactions go to completion is not a characteristic of chemical equilibrium. Chemical equilibrium is the state in which both reactants and products are present in concentrations which have no further tendency to change with time. At this point the rate of the forward reaction equals the rate of the backward reaction. Characteristics of equilibrium include; they occur in reversible reactions, there is no net change in concentrations of reactants and products, and also the forward and reverse rates are the same.  

C. The reactions go to completion


What effect would poor circulation of the melting point bath liquid have on the observed melting point?

Answers

I believe that poor circulation could either cause the melting point of the compound to be higher or lower. Melting point is the temperature at which the solid and liquid forms of a pure substance can exist in equilibrium. As heat is applied to a solid, its temperature will increase until the melting point is reached.

When a 10 mL graduated cylinder is filled to the 10 mL mark, the mass of the water was measured to be 9.925 g. If the density of water is taken to be 0.9975 g/mL, what is the percent error for the 10 mL of water,

Answers

measured volume = 10 ml 
mass = 9.925 g 
density = 0.9975 g/ml
density = [tex] \frac{mass}{volume} [/tex] 
so actual volume = [tex] \frac{mass}{density} [/tex] = [tex] \frac{9.925}{0.9975} [/tex] = 9.95 mL
Percentage Error = [tex] \frac{measured volume - Actual volume}{actual volume} [/tex] x 100 
= [tex] \frac{10 - 9.95}{9.95} [/tex] x 100 = 0.5 % error
Final answer:

The percent error for the 10 mL of water, given a measured mass of 9.925 g and a density of 0.9975 g/mL, is approximately 0.501%.

Explanation:

To calculate the percent error for the 10 mL of water given the measured mass and the density of water, we can use the formula for percent error:

Percent Error = | (Experimental Value - Theoretical Value) / Theoretical Value | × 100%

The theoretical mass of 10 mL of water using the density 0.9975 g/mL is calculated as follows:

Theoretical Mass = Volume × Density = 10 mL × 0.9975 g/mL = 9.975 g

The experimental mass measured is 9.925 g. Now, applying the percent error formula:

Percent Error = | (9.925 g - 9.975 g) / 9.975 g | × 100% = |(-0.05 g) / 9.975 g| × 100% ≈ 0.501%

Therefore, the percent error for the measurement of 10 mL of water is approximately 0.501%.

When the ancient Greeks looked at the night sky they noticed that some points of light seem to "wander" in the sky. Which term do we use for these wanderers today? A. stars B. nebulae C. planets D. moons

Answers

I think the answer might be C. Planets. Not exactly sure though... Let me know if this was correct!! :-)

Answer:

I think planets....?

Explanation:

I'm not actually sure but my brother told me it's nebulae and I think he's lying... stars don't move and the moon wouldn't actually be a "point" even if it was it wouldn't be plural....

If an atom loses a neutron, what happens? (4.10)

Answers

Its mass is lowered, but it is still the same element.

Answer:

Its mass is lowered, but it is still the same element.

Explanation:

It right

How is the strength of a weak acid related to the strength of its conjugate base?

Answers

I think because of the pH range

Final answer:

The strength of a weak acid is related to the strength of its conjugate base through an inverse relationship.

Explanation:

The strength of a weak acid is related to the strength of its conjugate base through an inverse relationship. According to the general rule, the stronger the acid, the weaker the conjugate base, and vice versa. This can be understood by considering the concept of acid-base equilibrium.

For example, if we have a strong acid and a weak base, the acid-base equilibrium will favor the side with the weaker acid and base. Conversely, if we have a weak acid and a strong base, the equilibrium will favor the side with the weaker acid and base.

Therefore, the strength of a weak acid and its conjugate base are inversely related, with the weaker acid having a stronger conjugate base.

Pls hurry!!
If the percent (mass/mass) for a solute is 4% and the mass of the solution is 200 g, what is the mass of solute in solution?
8.0 g
50 g
80 g
800 g

Answers

Percent Mass of solute is 4% ==> 4g of solute is present in 100g of the solution. 

given mass of solution is 200g therefore mass of solute 
= 4% of 200g 
= 8g 
therefore mass of solute = 8g 

Answer : The correct option is, (a) 8.0 g

Solution : Given,

Percent of solute = 4 %

Mass of solution = 200 g

Mass by mass percent (m/m)% : It is defined as the mass of solute present in the mass of solution.

Formula used :

[tex](m/m)\%=\frac{\text{Mass of solute}}{\text{Mass of solution}}\times 100[/tex]

Now put all the given values in this formula, we get the mass of solute.

[tex]4\%=\frac{\text{Mass of solute}}{200g}\times 100[/tex]

[tex]\text{Mass of solute}=8.0g[/tex]

Therefore, the mass of solute in solution is, 8.0 g

The equilibrium constant is given for one of the reactions below. Determine the value of the missing equilibrium constant.

N2O4(g) ⇌ 2 NO2(g) Kc = 1.46
5 N2O4(g) ⇌ 10 NO2(g) Kc = ?

A) 1.46
B) 0.292
C) 6.63
D) 1.08
E) 7.30
Answer: C,

Answers

 the value of the missing equilibrium constant is E. 7.30
Solution:
N2O4(g) ⇌ 2 NO2(g) Kc = 1.46
5 N2O4(g) ⇌ 10 NO2(g) Kc =?

If 1 atom of N2O4(g) is 1.46
So to get 5 atoms of N2O4(g), you will simply multiply it by 5.

1.46 x 5 = 7.30

Answer:

The answer is C) 6.63

Explanation:

When the coefficients in a balanced equation are multiplied by a factor, the resulting equilibrium constant is raised to this factor.

In this case, you have the following equilibrium:

N₂O₄(g) ⇌ 2 NO₂(g) Kc = 1.46

In which the coefficients are 1 (for N₂O₄) and 2 (for NO₂)

In the second equation, notice that you have the coefficients of the first equation multiplied by 5 (1 x 5= 5 for N₂O₄; 2 x 5= 10 for NO₂) :

5 N₂O₄(g) ⇌ 10 NO₂(g)

Thus, to obtain the equilibrium constant of the second equation (Kc'), you have to raise the first equilibrium constant (Kc) to 5:

K'c= (Kc)⁵= (1.46)⁵= 6.63

Sodium ions are used by your body every time you move a muscle. The difference between the Na+ ions and atomic Na is that A) ionic sodium has one more electron. B) atomic sodium has one more electron. C) atomic sodium has one fewer electron. D) ionic sodium is only found in the body.

Answers

B) atomic sodium has one more electron.

This can be easily seen if you compare the charges - ionic sodium carries one more positive charge than atomic sodium, so ionic sodium must have one fewer electron.

Calculate the number of joules released when 72.5 grams of water at 95.0 degrees Celsius cools to a final temperature of 28.0 degrees Celsius.

Answers

water's specific heat capacity is 4200 J/Kg°C
95-28=67
72.5grams in kg is 0.0725kg
Energy = 67×0.0725×4200
Energy = 20,401.5 J or 20.4015 kJ

Temperature at which a substance goes from a solid to liquid

Answers

If this is something like ice as the solid, any temperature above 32 degrees Fahrenheit (0 degrees Celsius).

What are five characteristics of a group on the periodic table?

Answers

Elements in the same group in the periodic table have similar chemical properties. This is because their atoms have the same number of electrons in the highest occupied energy level. Group 1 elements are reactive metals called the alkali metals. Group 0 elements are unreactive non-metals called the noble gases. Hope this helps you

a mixture of 10.0 g of Ne and 10.0 g AR have a total pressure of 1.6 atm. what is the partial pressure of Ne?
Actually I know the answer but I didn't know how they get 2/3

Answers

The partial pressure contributed to the overall pressure is proportional to the number of moles of gas particles. Both Neon and Argon are noble gases so there's just 1 atom per molecule. So let's determine how many moles of each we have:
 Atomic weight neon = 20.1797
 Atomic weight argon = 39.948

   Moles neon = 10.0 g / 20.1797 g/mol = 0.495547506 mol
 Moles argon = 10.0 g / 39.948 g/mol = 0.250325423 mol

   So there's a total of 0.495547506 + 0.250325423 = 0.745872929 moles of gas particles. And for neon, it contributes 0.495547506/0.745872929 = 0.664385965 = 66.4385965% of them, so it contributes 66.4385965% of the total pressure. Which is 66.4385965% * 1.6 atm = 1.063017544 atm.

Rounding to 3 significant figures gives 1.06 atm, or 66.4% of the total pressure.

The partial pressure of Ne is [tex]\boxed{1.063{\text{ atm}}}[/tex].

Further Explanation:

Dalton’s law:

This law states that partial pressure of any gas is calculated by the multiplication of mole fraction and the total pressure of gas mixture.

The expression for partial pressure of a particular gas is,

[tex]{P_{{\text{gas}}}} = {X_{{\text{gas}}}} \cdot {P_{{\text{total}}}}[/tex]                                                                         …… (1)

Where,

[tex]{P_{\text{gas}[/tex] is the partial pressure of the gas.

[tex]{P_{{\text{total}}[/tex] is the total pressure of the mixture.

[tex]{X_{{\text{gas}}}[/tex] is the mole fraction of gas.

The formula to calculate moles of component is as follows:

[tex]{\text{Moles of component}} = \dfrac{{{\text{Mass of component}}}}{{{\text{Molar mass of component}}}}[/tex]                                   …… (2)

Substitute 10.0 g for mass of component and 20.179 g/mol for molar mass of component in equation (2) to calculate moles of Ne.

 [tex]\begin{aligned}{\text{Moles of Ne}} &= \frac{{{\text{10}}{\text{.0 g}}}}{{{\text{20}}{\text{.179 g/mol}}}} \\ &= 0.4956{\text{ mol}} \\\end{aligned}[/tex]

Substitute 10.0 g for mass of component and 39.948 g/mol for molar mass of component in equation (2) to calculate moles of Ar.

 [tex]\begin{aligned}{\text{Moles of Ar}} &= \frac{{{\text{10}}{\text{.0 g}}}}{{{\text{39}}{\text{.948 g/mol}}}} \\&= 0.2503{\text{ mol}} \\ \end{aligned}[/tex]

Total number of moles can be calculated as follows:

[tex]\begin{aligned}{\text{Total number of moles}} &= \left( {0.4956 + 0.2503} \right){\text{ mol}} \\ &= 0.7459{\text{ mol}} \\\end{aligned}[/tex]

The formula to calculate mole fraction of Ne is as follows:

[tex]{\text{Mole fraction of Ne}} = \dfrac{{{\text{Moles of Ne}}}}{{{\text{Total number of moles}}}}[/tex]                                    …… (3)

Substitute 0.4956 mol for moles of Ne and 0.7459 mol for total number of moles in equation (3).

[tex]\begin{aligned}{\text{Mole fraction of Ne}} &= \frac{{{\text{0}}{\text{.4956 mol}}}}{{{\text{0}}{\text{.7459 mol}}}} \\&= 0.6644 \\\end{aligned}[/tex]  

Substitute 0.6644 for [tex]{X_{{\text{gas}}}}[/tex] and 1.6 atm for [tex]{P_{{\text{total}}}}[/tex] in equation (1) to calculate partial pressure of Ne.

[tex]\begin{aligned}{P_{{\text{Ne}}}} &= \left( {0.6644} \right)\left( {1.6{\text{ atm}}} \right) \\&= 1.063{\text{ atm}} \\\end{aligned}[/tex]  

Learn more:

Calculate the moles of chlorine in 8 moles of carbon tetrachloride: https://brainly.com/question/3064603 ]Which law states the direct relationship between volume and absolute temperature at constant pressure? https://brainly.com/question/1403211

Answer details:

Grade: Middle School

Subject: Chemistry

Chapter: Gases and the kinetic-molecular theory  

Keywords: partial pressure, mole fraction, Ne, Ar, moles, molar mass, mass, 1.063 atm, 1.6 atm, 0.6644, mole fraction of Ne.

Calculate the number of moles in 3.025 X 10^28 atoms of NaCl.
1.0 mol NaCl
5.02 X 10^4 mol NaCl
5.02 X 10^50 mol NaCl
1.78 X 10^39 mol NaCl

Answers

According  to  Avogadro  constant
1mole  =  6.02  x10^23   atoms

what  about    3.025  x10^28  atom
 
(1  mole  x  3.025  x10^28) / ( 6.02 x  10 ^23) =  5.02  x 10^4  mole  of  NaCl

How many electrons are needed in the outer energy levels of most atoms to be chemically stable?

Answers

Most of the elements important in biology need eight electrons in their outermost shell in order to be stable, and this rule of thumb is known as the octet rule. Some atoms can be stable with an octet even though their valence shell is the 3n shell, which can hold up to 18 electrons.

The loss of static energy electric charges move off an object is called

Answers

It is called electric discharge. Electric discharge can occur slowly.

The loss of static energy as electric charges move off an object is called electric discharge.

Electric discharge can be defined as release and transmission of electricity through a medium in an applied electric field.

It results from the conducting path between two points of different electrical potential in the medium where the points are immersed.

Radio stations identify themselves by their position on the radio dial such as 90.1 and 93.3. This number is based on the number of waves or cycles that pass a fixed point in a specific unit of time. To which property of a wave does this identification number refer? A. frequency B. wavelength C. loudness D. amplitude

Answers

The answer is A. 
Reason:The frequency of waves are determined by the amount of waves that pass a specific point in a certain period of time and Radio stations broadcast their signals at different frequencies so that the range of radio frequencies can be used by many stations.

The  property of a wave is given as frequency

What is the frequency?

Generally, Frequency is simply defined as the number of waves that pass through a fixed point in a given amount of time

In conclusion, for a number  based on the number of waves or cycles that pass a fixed point in a specific unit of time, we refer to it as frequency

Read more about frequency

https://brainly.com/question/24623209

Look back at your data and your regression equation. (Sample data is shown to the right, with X= pressure and Y=volume.) click all statements that are true.
Answered.

Answers

Select the block of cells to be included in the scatter plot by clicking and dragging, then from the Insert ribbon under Chart drop down the Scatter or Bubble menu and select Scatter.  A chart will appear on the spreadsheet.

To set up a scatter plot in Excel, enter the pairs of data in two columns with each value of a pair on the same row.  By default, Excel considers the column on the left to contain the horizontal (X) values and the column on the right to contain the vertical (Y) values.

If you click on the + sign at the upper right of the chart, a list of checkboxes will appear.  Check Axes, Axis Titles, and Trendline.  Uncheck everything else.  You should edit the Axis Titles to include the name of the factor and any units associated with it.  Double-click on the Axis numbers to bring up the Format Axis dialog, then click on the bar-graph icon to access Axis Options.  Set the bounds and units appropriately and set the tick marks to something sensible.


Answer:

ALL are true

Explanation:

Under standard condition and 298 K, the free energy difference, ∆Gº between the two chair conformations of a substituted cyclohexane molecule is 5.95 kJ/mol. What percent of the sample at equilibrium represents the most stable conformer?

Answers

delta Go = -RTlnKeq

delta Go = 5.95 kJ/mole = 5.95 X 1000 = 5950 J/mole ( 1 kj = 1000 J )

putting the values and finding Keq

5950 = -8.314 X 298 X ln Keq

ln Keq = -5950 / 2477.572 = -2.4015

Keq = e^-2.402 = 0.0905

suppose the equilibrium reaction is :-

chair 1 <--------> chair 2

now as Keq is less than 1 ....so chair 1 will be more stable

Keq = [chair2]/[chair 1 ] = 0.0905

this means that [chair 2] ~ 0.0905 and [chair 1] ~ 1

[total] = [chair 2] + [chair 1] ~ 1 + 0.0905= 1.0905

percentage of chair 1 = [chair 1] / [total] = 1 / 1.0905 X 100 = 91.70 %

Using the given free energy difference at 298 K and the equation ∆Gº = -RTlnK, we calculate the equilibrium constant (K) and determine that the most stable conformer of a substituted cyclohexane molecule comprises approximately 91.7% of the sample at equilibrium.

To determine what percent of the sample at equilibrium represents the most stable conformer of a substituted cyclohexane molecule, we use the free energy difference (
∆Gº) between the two chair conformations. Given that
∆Gº is 5.95 kJ/mol at 298 K, we first calculate the equilibrium constant (K) using the equation ∆Gº = -RTlnK, where R is the universal gas constant (8.314 J/mol•K) and T is the temperature in Kelvin. Substituting the known values, we have:

5.95 kJ/mol = - (8.314 J/mol•K)(298 K)lnK

Converting 5.95 kJ/mol to J/mol, we get 5950 J/mol. We then solve for K:

5950 J/mol = - (8.314 J/mol•K)(298 K)lnK

lnK = -5950 J/mol / (- (8.314 J/mol•K)(298 K))

lnK = 2.397

K = e^(2.397)

K ≈ 11.0

The ratio of the amounts of each conformer at equilibrium can be expressed as K = [Most Stable]/[Least Stable]. Hence, if the least stable conformer is taken as 1 part, the most stable will be 11 parts out of a total of 12 parts. The percent representation of the most stable conformer at equilibrium is then (11/12) * 100%, which approximates to 91.7%.

Therefore, the most stable conformer comprises approximately 91.7% of the sample at equilibrium.

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