The atomic weight of element A is 88.7 if the element consist of two Isotopes that have mass number 88 and 92. what is the approximate % natural abundance of the heaviest Isotope?​

Answers

Answer 1

Answer: 17.5 %

Write the equation for relative Atomic mass in terms of an ( 'a' being one isotope's mass) and solve for x:

88.7 = [tex]\frac{(a * 88) + ((100 - a) * 92)}{100}[/tex]

8870 = 88*a + 9200 - 92 * a

4*a = 330

a = 82.5

Find the value of b using a,

100 - a = b

100 - 82.5 = b

b = 17.5

So, the % abundance for the isotope with mass number 88 is 82.5% and the % abundance for the isotope with mass number 92 is 17.5% .

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Related Questions

According to the collision theory of reaction rates, which of the following are true? Choose all that apply. Raising the temperature would increase the rate of the reverse reaction by increasing the number of successful 2 O2 collisions. Increasing the concentrations of O3 + O would increase the rate of the forward reaction. At a higher temperature, the rate of the reverse reaction will increase because the value of ΔE will be smaller than -392 kJ. Increasing the concentration of O3 + O would have no effect on the rate of the forward reaction. In the presence of a catalyst, the value of ΔE will be smaller than -392 kJ.

Answers

The given reaction is an exothermic reaction thus, heat is evolved in the reaction. Thus increasing temperature increases the rate of reverse or backward reaction. Increasing concentration of ozone and O will increase the rate of forward reaction.

What is collision theory?

According to collision theory, the rate of a reaction depends on the number of effective collisions of the reactants. The given reaction is the combination of ozone with oxygen to give oxygen molecule.

This reaction is exothermic, hence increasing the temperature will effect the equilibrium so as to consume the extra temperature reverse reaction will take place by which collision of O₂ molecules increases.

Similarly increasing the concentration of reactants O₃ and O will increase the rate of forward reaction. The enthalpy change is negative here indicating the reaction is exothermic, thus, increase the temperature and use of catalyst also decreases the activation energy ΔE.

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Have two sides that mirror each other along one plane through the central axis.

Answers

Have two sides that mirror each other along one plane through the central axis called as symmetrical

The line of centroids or central axis is defined as the line that passes through the centroids along the beam and the cross section are then defined as the beam section which are perpendicular to the central axis and that two side are mirror images of each other and place a mirror on the fold then image of one side of the picture will fall exactly on the other side of the picture and that are called as symmetrical means same

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If a gas that has a pressure of 15 atm, a volume of 28 liters, and a
temperature of 400 K, has an increased pressure to 18 atm and increase
the temperature to 500 K, what is the new volume of the gas?
о 8,571 L
о 29.17 L
525 L
18.9 L
*
2 points

Answers

To calculate the new volume of a gas, we must first understand the atm.

What is atm?

oceanic atmospheric pressure At sea level, it has a mean value of about and is defined as the pressure created by the weight of the atmosphere. Sometimes, this figure is used as a standard pressure or a reference pressure. The unit of pressure is atm.

What does one atmosphere of pressure equal?

760 cm of mercury is equal to one atmosphere of pressure at sea level.

Using the atm formula,

P1 V1/T1 = P2 V2/T2

15×28/500= 18×V2/500

15×28×400/500×18 = V2

V2=29.166

V2=29.17 L

Therefore the option (B) is correct.

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) Classify each material below as a Strong Electrolyte, Weak Electrolyte, or Non-Electrolyte
Al(OH)3 , HN3 , C8H10 , HC3H5O2

Answers

Al(OH)3 = weak electrolyte

HN3 = strong electrolyte

C8H10 = Non electrolyte

HC3H5O2 = weak electrolytes.

What are electrolytes?

An electrolyte is described as a medium containing ions that is electrically conducting through the movement of those ions, but not conducting electrons. Electrolytes includes most soluble salts, acids, and bases dissolved in a polar solvent, such as water.

The human cells use electrolytes to conduct electrical charges, which is how your muscles contract. Those same electrical charges gotten from also help with chemical reactions, especially when it comes to hydration and the balance of fluids inside and outside of cells.

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1-Give some examples of buffer solutions.

2-Mention some applications of buffer solutions in Pharmaceutical Sciences.

Answers

Examples of buffer solutions include:

ammonia (NH₃)sodium acetate (NaC₂H₃O₂)acetic acid (HC₂H₃O₂)

Some applications of buffer solutions in Pharmaceutical Sciences include:

to establish hydrogen ion activity for calibration of the pH meter using a buffer solution.to prepare isotonic dosage form formulations.to adjust the pH of systems in analytical procedures with the buffer solution.to maintain the stability of dosage forms.

What are buffer solutions?

A buffer solution is an aqueous solution consisting of a mixture of a weak acid and its conjugate base, or vice versa.

Buffers are broadly divided into two types

1. acidic buffer solutions and

2. alkaline buffer solutions.

Acidic buffers are solutions that have a pH below 7 and contain a weak acid.

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How much heat is required to melt 39.4 g of ice at (0 ∘C )? The heat of fusion for water is 6.02 kJ/mol .

Answers

Specific heat capacity of a substance is the amount of heat required to raise the temperature by one degree Celsius of one gram of a substance. Therefore, 13.12KJ of heat is required to melt 39.4 g of ice at (0 ∘C ).

What is Enthalpy?

Enthalpy term is basically used in thermodynamics to show the overall energy that a matter have. Mathematically, Enthalpy is directly proportional to specific heat capacity of a substances.

Mathematically,

q = n ×ΔH

where

q = amount of heat= ?

n = no of moles

ΔH = enthalpy  ( 6.02 kJ/ mol)

n = w / M.M

w = given mass =39.4g

M.M = molar mass ( molar mass of water)=18g/mol

n =39.4/ 18

 =2.18

Substituting all the given values, we get

q = n ×ΔH

   = 2.18 ×6.02

   = 12.401 kJ

   =13.12KJ

Therefore, 13.12KJ of heat is required  to melt 39.4 g of ice at (0 ∘C ).

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Oxygen gas reacts with powdered aluminum according to the following reaction:
4Al(s)+3O2(g)→2Al2O3(s)

What volume of O2 gas (in L), measured at 792 mmHg and 23 ∘C, is required to completely react with 52.6 g of Al?

Answers

The volume (in L) of O₂ gas, measured at 792 mmHg and 23 °C, that is required to completely react with 52.6 g of Al is 34.14 L

How to determine the volume of O₂

We'll begin by obtaining the mole of O₂ that reacted. This can be obtained as follow:

Mass of Al = 52.6 gMolar mass of Al = 27 g/molMole of Al = mass / molar mass = 52.6 / 27 = 1.948 mole

4Al(s) + 3O₂(g) → 2Al₂O₃(s)

From the balanced equation above,

4 moles of Al reacted with 3 moles of O₂

Therefore,

1.948 moles of Al will react with = (1.948 × 3) / 4 = 1.461 mole

Finally, we shall determine the volume of the O₂ required. Details below

Mole of O₂ (n) = 1.461 moles Pressure (P) = 792 mmHg = 792 / 760 = 1.042 atm Temperature (T) = 23 °C = 23 + 273 = 296 KGas constant (R) = 0.0821 atm.L/Kmol Volume (V) =?

PV = nRT

1.042 × V = 1.461 × 0.0821 × 296

Divide both sides by 1.04

V = (1.461 × 0.0821 × 296) / 1.04

V = 34.14 L

Thus, the volume required is 34.14 L

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A sample of gas is placed in a 25.0 L sealed container at STP. The
container is heated to 25 C. What will be the pressure in the container?

Answers

The pressure of a sample of gas placed in a 25.0L container at STP is 0.98atm.

How to calculate pressure?

The pressure of an ideal gas can be calculated by using the following formula:

PV = nRT

Where;

P = pressureV = volume n = number of molesT = temperatureR = gas law constant

According to this question, a sample of gas is placed in a 25.0 L sealed container at STP. The container is heated to 25°C. The pressure in the container is as follows:

P × 25 = 1 × 0.0821 × 298

25P = 24.47

P = 0.98atm

Therefore, 0.98atm is the pressure of the gas

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How much NaOH (in moles) must be added to 1 L of a buffer solution that is 1.8 M in acetic acid and 1.2 M in sodium acetate to result in a buffer solution of ph 5.22? Assume volume to remain constant.

Answers

The initial molar concentration of acetic acid in the buffer solution:
C
A
=
1.8

M
The initial molar concentration of sodium acetate in the buffer solution:
C
S
=
1.2

M
The volume of the buffer solution:
V
=
1

L
The final pH of the resulting solution:
x
=
5.22

It's 100 degrees outside today. You forgot your nearly full water bottle in the car when you went into the store. When you return later, you open the water bottle and it makes a "hissing" sound. Explain why this occurs. In your response, discuss what is happening with the water molecules and how thermal energy is changing.

Answers

The hissing sound from the water bottle occurred due to increase in thermal energy of the car which is the immediate environment of the water bottle.

What is thermal energy?

Thermal energy is defined as the type of energy that expresses the flow of heat through a medium.

When there is increase in heat energy, outside the an enclosed medium such as a car, all the contents within the medium also increases in temperature.

There is also a rise in temperature of water in the water bottle and this causes the water molecules to gain energy, vibrate and collide more often among each other.

The hissing sound occurs due to a rise in pressure of the water occuring due to rise in temperature.

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A chemist needs 16.61 mL of 1.312 M NaOH. What volume in mL of 3.6 M NaOH must be diluted in water to form this solution?
Please report your answer in mL to 3 decimal places.

Answers

A chemist must take 6.053 mL of 3.6 M NaOH in water to form 16.61 mL of 1.312 M NaOH solution.

In the laboratory, high-concentration solutions are prepared for using a longer duration. This solution is known as a stock solution. These solutions are diluted based on chemical needs.                                               We need 6.61 mL of 1.312 M NaOH solution                                                                                The stock concentration of NaOH solution = 3.6 M                                                  We have to find the volume of this stock solution that should be taken Given M₁ = 3.6 M M₂ = 1.312 M V₂ = 16.61 mL V₁ =?

M₁V₁ =M₂V₂

3.6 × V₁ = 1.312 × 16.61

V₁ = 1.312 × 16.61 ÷ 3.6

V₁ = 6.053 mL

Hence, 6.053 mL of 3.6 M NaOH is needed to form 16.61 mL of 1.312 M NaOH solution

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When 15.6 mL of 0.500 M Silver (1) Nitrate is added to 12.5 mL of 0.300 M
Ammonium chloride, how many grams of solid product (if any) formed?
Select one:
A. 0.537 g
B. 1.65 gx
C. NR
D. 1.11 g

Answers

The grams of solid product is 0.537 g.

Hence, Option A is correct.

The above equation can be solved by

The Symbol Ag used for Silver originates from the Latin word “Argentum

AgNO3 + NH4Cl ? AgCl + NH4NO3

(15.6 mL) x (0.500 M AgNO3) = 7.8 m mol AgNO3

(12.5 mL) x (0.300 M NH4Cl) = 3.75 m mol NH4Cl

7.8 m mol AgNO would react completely with 7.8 x (1/1) = 7.8 mol NH4Cl, but there is not that much NH4Cl present, so NH4Cl is the limiting reactant.

(3.75 m mol NH4Cl) / (1000 m mol/mol) x (1/1) x (143.3214 g AgCl/mol) = 0.537 g AgCl.

Hence,  The grams of solid product is 0.537 g.

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A 1.20 L weather balloon on the ground has a temperature of 25.0°C and is at atmospheric pressure (1.00 atm). When it rises to an elevation where the pressure is 0.730 atm, then the new volume is 1.80 L. What is the temperature (in °C) of the air at this elevation?

Answers

The final temperature (°C) of the air at this elevation is 326.3K.

How to calculate temperature?

The temperature of a gas can be calculated using the combined gas law equation as follows:

P₁V₁/T₁ = P₂V₂/T₂

Where;

P₁ = initial pressureV₁ = initial volumeT₁ = initial temperature P₂ = final pressureV₂ = final volumeT₂ = final temperature

According to this question, 1.20L weather balloon on the ground has a temperature of 25.0°C and is at atmospheric pressure (1.00 atm). When it rises to an elevation where the pressure is 0.730 atm, then the new volume is 1.80L. The final temperature can be calculated thus:

1 × 1.2/298 = 0.730 × 1.8/T₂

0.004027T = 1.314

T = 326.3K

Therefore, 326.3K is the final temperature of the balloon.

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A piece of metal (mass = 25.0 g) at 95.0 °C is placed in a styrofoam coffee cup containing 25.0 mL of water at 18.2 °C. At thermal equilibrium, the temperature of the water is 25.4. Assuming that no heat is lost to the cup or the surroundings, what is the specific heat capacity of the metal? The specific heat capacity of water = 4.18 J/g°C.

Answers

The specific heat capacity of the metal can be calculated using the calorimeter equation. The specific heat capacity of the metal is obtained as 0.406 J/(°C g).

What is specific heat capacity?

The specific heat capacity of a substance is the heat energy required to raise its temperature by one degree celsius per one gram of that substance.

The calorimeter equation relating heat energy q, mass m and temperature difference ΔT and specific heat capacity c is written as:

q = mcΔT.

In the given system the heat energy is transferred from the metal to water thus the final temperature of both will be 25 °C. Thus, at thermal equilibrium we can write it as:

25 g × c (95 -25 °C) = 25 × 4.18  × (25 - 18.2 °C )

Where, mass of water can be taken as 25 g since its density is 1 g/ml. From this specific heat capacity of the metal c is calculated as follows:

c =  [ 25 × 4.18  × (25 - 18.2 °C ) ] / 25 g ×  (95 -25 °C)

  = 0.406 J/(°C g).

Therefore, the specific heat capacity of the metal is  0.406 J/(°C g).

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Calculate Gibbs energy for the following condition K = 1.7 x 10^2, T = 25 c

Answers

The Gibbs free energy of the system is - 12.7 kJ/mol.

What is the Gibbs free energy?

The term Gibbs free energy has to do with the amount of thermodynamic work that could be done by a system. We know that we can find the Gibbs free energy by the use of the equilibrium constant and the temperature of the system and that is what we have to do in this question as we do it.

We know that;

ΔG = -RTlnK

ΔG = The Gibbs free energy

R = gas constant

T = temperature

K = equilibrium constant

Thus;

R = 8.314 J/K/Mol

T = 25°C + 273 = 298 K

K =  1.7 x 10^2

When we substitute the values, we have;

ΔG =-(8.314  * 298 * ln  1.7 x 10^2)

ΔG =- 12.7 kJ/mol

We can see from the calculation that we are going to have the Gibbs free energy of the system thus described as - 12.7 kJ/mol.

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How many joules are in 6,458 Cal? Express your answer in scientific notation with the correct number of significant figures.

Answers

The number of Joules in 6,458 Calories calculated to the correct number of significant figures would be 2.6790 x [tex]10^4[/tex] Joules.

Unit conversion

Both Joules (J) and Calories (Cal) are units of energy. According to the standard unit of conversion:

1 kiloCalorie = 4148 Joules

Since, 1 kiloCalorie = 1000 Calorie

Then:

1000 Calorie = 4148 Joules

Thus;

1 Calorie = 4148/1000

               = 4.148 Joules

Now, let's see the number of Joules that is equivalent to 6,458 Calories.

1 Calorie = 4.148 Joules

6,458 Calories = 4.148 x 6,458

                         = 26787.784 Joules

According to one of the rules guiding significant figures when performing multiplication operations, the number with the lowest significant figure is considered for the significant figures of the final answer.

Thus, the final answer, in this case, would be to four significant figures.

In other words, 6,458 Calories = 2.6790 x [tex]10^4[/tex] Joules.

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18.00 g hydrated magnesium
sulfate is heated to drive off the
water, leaving 9.211 g MgSO4 solid.
What is the formula of the hydrate?

Answers

The formula of the hydrate would be  [tex]MgSO_4.6H_2O[/tex].

Deducing the formula of a hydrate salt

In order to get the formula of the hydrated salt, the empirical formula method can be used to know the mole of the salt and that of the water.

The formula of magnesium sulfate = [tex]MgSO_4[/tex]

The formula of water = [tex]H_2O[/tex]

Mass of hydrated magnesium sulfate = 18.00 g

Mass of anhydrous magnesium salt = 9.211g

Mass of water = 18 - 9.211

                      = 8.789 g

Now, let's find the mole equivalent of each component:

Molar mass of magnesium sulfate = 120.366 a/mol

Molar mass of water = 18.01 g/mol

Mole of magnesium sulfate anhydrous = 9.211/120.366

                                                                 = 0.0765 mole

Mole of water = 8.789/18.01

                       = 0.4880 mole

Now, let's divide by the lowest mole:

Magnesium sulfate = 0.0765/0.0765

                                 = 1

Water = 0.4880/0.0765

           = 6.37

Thus, the mole ratio of magnesium sulfate and water of hydrate is 6 to 1. Therefore, the formula of the hydrated salt would be [tex]MgSO_4.6H_2O[/tex].

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Fe(s) + 2 HNO3(aq) →Fe(NO3)2(aq) + H₂(g)
What is the total number of oxygen atoms represented in the formula of the iron
compound produced?

Answers

Answer: 6

Explanation:

If we are only looking at the number of oxygen atoms in the product then the answer is 6.

NO3 contains 3 oxygen atoms.

(NO3)2 means that we have 2 NO3 groups which means there are 6 oxygen atoms.


Explain the reaction between iodine solution and polysaccharides by giving the structures of related Compounds.

Answers

The explanation of the reaction between the compounds is here.

What is compound?

A thing that is composed of two or more separate elements is called compound.

Sol-There is no chemical reaction. Know the extent between to react to react and fair play mixing I too means iodine and potassium I Od um ordered solution solution and I could not React directly as such bad form poorly I owed eight iron like I five and I seven. They negatively charged iodide in the negatively charged how you died. All right, come and did come about charge donor. The neutral iodine charging accepted a solution of iodine, a solution of iodine and potassium iodide um added in water had the light orange brown color, light orange brown color, orange brown color. Once a mileage is added it from another city complex. When once a mileage in my load I added it from another city complex.

When once a mileage in my load I added it from another city complezx.. The police have cried. The police had cried, the police have cried act as a George donor charges and the police have died. And the poly iodide act as a except her. The new council looks absorbing light of a different wavelength than polly iodide and the color turn dark dark blue. The object structure are poorly added inside the am I late helix Alex is not clear. Are bulky and sit inside the policy crowds of glucose units and could not get out of date.

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What is a negative control?

A- Group that gives a result that disproves your hypothesis

B- Group in which no response is expected

C- Group that gives an unexpected result

D- Group in which a response is expected

Answers

According to the given information Group in which no response is expected is a negative control.

The correct option is C.

What is an example of a hypothesis ?

A scientist may develop the hypothesis that a given type of tomato will be red if it carries the gene for the colour red. The scientist then discovers that every tomato of this variety is red during investigation.

What is the purpose of an hypothesis?

Hypotheses are frequently employed to promote scientific research and enhance knowledge. These clear declarations serve as the cornerstone for all research experiments. Therefore, a problem in the creation of a hypothesis may lead to errors in the design of a whole experiment.

What is the main function of hypothesis?

As previously said, a hypothesis serves as a response to the research question and directs the gathering and analysis of data. Researchers can use hypotheses to both identify relationships between variables and forecast relationships based on theoretical principles and/or empirical data.

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Starch and cellulose have similar chemical structures, but differ in the _____.

substituents added to glucose monomers

orientation of bonds between glucose monomers

simple sugar that serves as a monomer

length of the monomer chain

Answers

Starch and cellulose have similar chemical structures, but differ in the orientation of bonds between glucose monomers.

Starch is glucose polymer in which repeating unit are connect by alpha bond and all the repeating unit are direct in one direction. starch is present in foods. it is less crystalline.

Cellulose is also a glucose polymer but cellulose units can be rotated around the axis of backbone of glucose polymer. cellulose is natural organic compound. glucose if formed by the combination of carbon, hydrogen , oxygen , .

Thus, Starch and cellulose have similar chemical structures, but differ in the orientation of bonds between glucose monomers

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Calculate the molar solubility of iron(II) hydroxide, Fe(OH)2, in a solution buffered at a pH of
13.15. The Ksp of Fe(OH)2 is 1.6 × 10−14.

Answers

The solubility of solute in a solution can be find out from the solubility constant Ksp and molar concentrations. The solubility of iron hydroxide in the solution is 3.19 ×10 ⁻¹⁶ M.

What is solubility?

Solubility of substance is the fraction of its concentration which dissolves in a solvent at a specific temperature. The solubility constant Ksp is the product of molar concentrations of the ions in the solute.

It is given that the pH of the solution is 13.15. Thus, pOH = 14 -13.15 = 0.85.

[OH-] = Antilog (pOH) = antilog (0.85)

         = 7.07 M.

The solute Fe(OH)₂ dissociates into Fe²⁺ ion and 2 OH- ions. Let s be the solubility of one mole of ion. Thus [Fe²⁺] = s. Then, the Ksp can be written as follows:

Ksp = [Fe²⁺] [OH-]²

 1.6 × 10⁻¹⁴  = s  × [7.07 M]²

   s =   1.6 × 10⁻¹⁴/[7.07 M]²

      =  3.19 ×10 ⁻¹⁶ M.

Therefore, the molar solubility of iron(II) hydroxide in the given solution is  3.19 ×10 ⁻¹⁶ M.

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Hydrogenation of cholesterol

Answers

The molecular structure of the fat is changed when lipids like cholesterol are exposed to hydrogenation.

What is cholesterol?
Any member of the lipids class of specific chemical compounds is a kind of cholesterol. It is a sterol, a class of lipid (or modified steroid).  All animal cells produce cholesterol, which is a crucial part of the membranes that make up those cells. It is a yellowish crystalline solid when chemically separated. It is possible to increase the saturation of fatty acids by adding hydrogen to unsaturated fatty acid chains, which connects the hydrogen atoms to the saturation sites.

Hence, the molecular structure of the fat is changed when lipids like cholesterol are exposed to hydrogenation.

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How many molecules are in 12.80 moles of strontium bydroxide?

Answers

77.094*[tex]10^{23}[/tex]  molecules are in 12.80 moles of strontium bydroxide.

What does Sr OH 2's formula go by?

The chemical strontium hydroxide has a molecular weight of 121.6324 g/mol and the molecular formula Sr(OH)2. It appears in the form of an anhydrate with prismatic, colorless crystals that are liquescent.

What fraction of atoms and molecules makes up NaOH?

The building By counting the number of components (and their corresponding quantities) listed in the chemical formula, one can easily determine that each molecule of the compound NaOH contains three atoms.

By mole concept-

1moleof strontium bydroxide =6.023*[tex]10^{23}[/tex] molecules of strontium bydroxide.

so,

12.80 moles of strontium bydroxide =12.80*6.023*[tex]10^{23}[/tex]

No of molecule =77.094*[tex]10^{23}[/tex] molecule

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If 2.186×10-2 mol of NH3 gas has a volume of 365 mL at 32°C, what would be the volume of 2.186×10-2 mol of N2 gas under identical temperature and pressure conditions?

Answers

The volume of the 2.186×10⁻² mole of N₂ gas under identical temperature and pressure conditions will also be 365 mL

How do I determine the volume of N₂?

We'll begin by obtaining the pressure of NH₃. This can be obtained by using the ideal gas equation as illustrated below:

Mole of NH₃ (n) = 2.186×10⁻² moleVolume (V) = 365 ml = 365 / 1000 = 0.365 L Temperature (T) = 32 °C = 32 + 273 = 305 KGas constant (R) = 0.0821 atm.L/Kmol Pressure (P) = ?

PV = nRT

Divide both sides by V

P = nRT / V

P = (2.186×10⁻² × 0.0821 × 305) / 0.365

P = 1.5 atm

Finally, we shall determine the volume of the N₂ under identical (i.e the same) temperature and pressure conditions. This is illustrated below:

Mole of N₂ (n) = 2.186×10⁻² moleTemperature (T) = 32 °C = 32 + 273 = 305 KPressure (P) = 1.5 atm Gas constant (R) = 0.0821 atm.L/Kmol Volume (V) = ?

PV = nRT

Divide both sides by P

V = nRT / P

V = (2.186×10⁻² × 0.0821 × 305) / 1.5

V = 0.365 L

Multiply by 1000 to express in liters

V = 0.365 × 1000

V = 365 mL

Thus, the volume is 365 mL

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What is one way the concept of stability is seen in chemistry?

Answers

Stability can be seen in chemistry through thermodynamics or kinetic stability.

There are two possible meanings of stability when it refers to coordination compounds (metal complexes): kinetic stability or thermodynamic stability.

The change in energy when reactants become products or G for the reaction is referred to as thermodynamic stability. Reactivity, or generally ligand substitution, is referred to as kinetic stability. In some situations, substitution happens relatively quickly, while in others, it happens quite slowly. Complexes of the first type are known as labile, whereas those of the second type are known as inert. These two forms of stability can sometimes be parallel to one another, but they are frequently not.The energetics and associated equilibrium constant for the reaction of an aquated metal ion with another ligand is frequently referred to as the reaction's "thermodynamic stability" (other than water). The stability constant () is equal to the instability constant reciprocated.

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the nuclear equation of the neutron bombardment of cobalt-60

Answers

The nuclear equation for this reaction shows the gamma rays that are released when cobalt-60 is produced. 5927Co+10n6027Co+γ

What is nuclear reaction ?

In nuclear physics and chemistry, a nuclear reaction is the process by which two atomic nuclei or nuclei and external particles collide to produce one or more new nuclides. Therefore, a nuclear reaction must transform at least one nuclide into another nuclide. When a nucleus interacts with another nucleus or particle and they separate without changing the properties of the nuclide, this process is simply called a form of nuclear scattering and is not a nuclear reaction.

Although in principle two or more particles could react and collide, the probability of three or more nuclei colliding in the same place at the same time is much lower than for two nuclei, so such Incidents are very rare.

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the substance that speed up the digestion stop working when they have been boiled, what does asim need to put in a fourth test tube to test this in his experiment?

please help me guys i need this like rn

Answers

It is expedient that Asim put some few pancreatic blood in a test tube to test for the functioning of digestive enzymes produced by the pancreas.

What is the purpose of the Asim experiment for digestive enzyme?

When someone is considering the purpose of digestive enzyme experiments, it should be what is given below:

Objectives:

To identify the substrates and enzymes,Also to the reasons while the substance which speeds up digestion stopped.

That being said, enzymes are organic, biological or biochemical catalysts which speed up the rate of chemical reactions. Within the context of the task given above, digestive enzymes help to speed up the digestion of food substances. In order to confirm why this substance stopped working, a pancreatic blood test needs to be done in a test tube to confirm the reasons why the substance stopped working.

However, some of the reasons why digestive enzymes stopped working include the following:

Concentration of the substancepH of the substance Temperature of the substance

So therefore, screening for pH, concentration and temperature of the digestive enzyme can used to test for inactivity of enzymes.

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Calculate the volume (mL) of a 2.50M NaOH solution are required to make 725 mL of a 0.150M NaOH solution?

Answers

The volume of a 2.50M NaOH solution required to make 725 mL of a 0.150M NaOH solution is 43.5mL.

How to calculate volume of a solution?

The volume of a solution can be calculated using the following expression:

CaVa = CbVb

Where;

Ca = initial concentrationCb = final concentrationVa = initial volumeVb = final volume

Molarity is the concentration of a substance in solution, expressed as the number moles of solute per litre of solution.

According to this question, 2.50M NaOH solution are required to make 725 mL of a 0.150M NaOH solution. The volume required can be calculated as follows:

2.5 × Va = 725 × 0.150

2.5Va = 108.75

Va = 43.5mL

Therefore, 43.5mL is the volume of the solution.

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Imagine you are sitting in a room with a volume of 23000 liters and a temperature of 69 degrees F. The total air pressure is 766 mm Hg, and the partial pressure from oxygen is 21% of the total pressure. How many grams of oxygen are in the room?

Answers

The mass (in grams) of oxygen gas in the sitting room of 23000 liters is 6412.16 grams

How do I determine the mass of oxygen gas?

We'll begin by converting 69 °F to °C. This can be obtained as follow:

Temperature (°F) = 69 °FTemperature (°C) =?

°C = 5/9(°F - 32)

°C = 5/9(69 - 32)

°C = 20.6 °C

Next, we shall determine the mole of oxygen gas in the room. This is shown below:

Volume (V) = 23000 L Temperature (T) = 20.6 °C = 20.6 + 273 = 293.6 KTotal pressure = 766 mmHg = 766 / 760 = 1 atmPercentage of oxygen = 21%Presure of oxygen (P) = 21% × 1 = 0.21 atmGas constant (R) = 0.0821 atm.L/Kmol Number of mole (n) =?

PV = nRT

0.21 × 23000 = n × 0.0821 × 293.6

Divide both sides by (0.0821 × 293.6)

n = (0.21 × 23000) / (0.0821 × 293.6)

n = 200.38 moles

Finally, we shall determine the mass of oxygen gas in the room

Mole of oxygen gas = 200.38 moles Molar mass of oxygen gas = 32 g/molMass of oxygen gas =?

Mole = mass / molar mass

Cross multiply

Mass = Mole × molar mass

Mass of oxygen gas = 200.38 × 32

Mass of oxygen gas = 6412.16 grams

Thus, the mass of oxygen gas is 6412.16 grams

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