Use these cubes to answer the questions below. The cubes contain the same quantity (same number of moles) of gas at the same temperature. The gases have similar structures and similar molecular weights 1st attempt

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Answer 1

Use these cubes to answer the questions below. The cubes contain the same quantity (same number of moles) of gas at the same temperature. The gases have similar structures and similar molecular weights 1st attempt

1. Which cube will have the greatest pressure?

A: The cube with the smallest volume will have the greatest pressure. This is due to the ideal gas law, which states that pressure is proportional to the number of gas particles and inversely proportional to the volume. So, if the number of gas particles is constant and the temperature is constant, a decrease in volume will result in an increase in pressure.

2. Which cube will have the smallest volume?

A: The cube that is compressed the most will have the smallest volume. The volume of a gas is directly proportional to its temperature and inversely proportional to its pressure. So, if the temperature is constant and the pressure increases, the volume will decrease.

3. Which cube will have the highest temperature?

A: If the cubes contain the same quantity of gas, the temperature will be the same in all cubes. The temperature of a gas is proportional to the average kinetic energy of its particles. Since the number of particles and their total kinetic energy are constant, the temperature will remain constant.

About Cube

A cube is a three-dimensional figure which is box shaped and has six square faces which meet each other at right angles. It has eight vertices and 12 edges.

Formula :

Surface Area; 6a²Volume; a³

where "a" is equal to ''Area''

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Related Questions

What color will a solution of water, glucose, and Benedict's reagent turn?

Answers

Answer:

green/yellow if the amount is low and red if it is high.

Explanation:

The solution is blue but, if any carbohydrates are present, it will change color

For each of the hydrocarbons, select from the response list on the right the correct molecular formula. Responses may be used more than once or need not be used at all.
a) C6H12
b) C6H14
c) C8H16
d) C8H18

Answers

For each of the hydrocarbons, select from the response list on the right the correct molecular formula. Responses may be used more than once or need not be used at all is c) C8H16 the formula of 1-octene which is an alkene compound

Hydrocarbons are complex compounds composed of the elements carbon and hydrogen elements. Hydrocarbon compounds in everyday life can be found in fuel oil and gas. Hydrocarbons are compounds composed of hydrogen atoms (H) and carbon atoms (C).

Alkenes are a group of hydrocarbons that have double bonds, so they are included in unsaturated hydrocarbons. The double bond makes the alkene a more reactive compound. An example of an alkene is C8H16 which is the formula for 1-octene.

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Please help me on this

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Infrared is lower frequency than visible light, and ultraviolet is higher frequency. Other forms of energy in the electromagnetic spectrum include radio waves, microwaves, and X-rays.

Describe where, on the spectrum, infrared and ultraviolet light belong based on their frequencies.

With a lower frequency than visible light, infrared light lies just beyond the visible light spectrum. The visible light spectrum is immediately preceded by the ultraviolet region, which has a greater frequency.

Gamma rays, X-rays, and radio waves are three other types of energy that can be found in the electromagnetic spectrum. The frequency of gamma rays is the greatest, that of X-rays is between that of gamma rays and that of ultraviolet light, and that of radio waves is the lowest.

These numerous energy types, which are all a part of the electromagnetic spectrum, provide us with a number of opportunities to view and study the cosmos.

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There several major steps in the single-solvent recrystallization experiment. Which of the following are the necessary steps? Select all that applies. Choose the appropriate solvent. Dissolve the solute in the warm solvent using minimum amount of solvent. Performing a gravity filtration and/or vacuum filtration to collect the solute. Dry the solute.

Answers

Single-solvent recrystallization is a laboratory technique used to purify solid compounds.

The necessary steps are:

Choose the appropriate solvent: It is important to choose a solvent that has a high solubility for the solute at elevated temperatures and a low solubility at room temperature.

Dissolve the solute in the warm solvent: The solute is dissolved in a minimum amount of the chosen solvent and heated until it is fully dissolved.

Performing a filtration: The mixture is then filtered to separate the solute from any impurities or undissolved solids. Gravity filtration or vacuum filtration can be used.

Dry the solute: Finally, the purified solute is dried by evaporating any remaining solvent.

In summary, the necessary steps for a single-solvent recrystallization experiment are choosing the appropriate solvent, dissolving the solute in the warm solvent, performing a filtration, and drying the solute.

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Convert 53.7 μg/mL to lb/ft^3. Label units and report answer with correct number of sig figures.

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The conversion of units is a process of changing one unit to another, while preserving the same value.

The conversion of units

2.62e-7 lb/ft^3 (3 sig figs)

To convert 53.7 μg/mL to lb/ft^3, we will use the conversion factor of 1 lb/ft^3 = 16,018,000 μg/mL.To begin, we will multiply 53.7 μg/mL by the conversion factor of 16,018,000 μg/mL.53.7 μg/mL * 16,018,000 μg/mL = 860,686,600 μg/mLNext, we will divide the result by 16,018,000 μg/mL to get the answer in lb/ft^3.860,686,600 μg/mL ÷ 16,018,000 μg/mL = 53.7 lb/ft^3Therefore, 53.7 μg/mL is equal to 53.7 lb/ft^3. The units of the answer are lb/ft^3 and the answer is rounded to two significant figures.The conversion from micrograms per milliliter (μg/mL) to pounds per cubic foot (lb/ft^3) is not a direct conversion, since they measure different units. To convert from one to the other, we must first convert the given mass of 53.7 μg/mL to pounds.To do this, we can use the conversion of 1 lb = 453,592 μg. This means that 53.7 μg/mL is equivalent to 0.0001185 lb.Next, we must convert from pounds to pounds per cubic foot. To do this, we can use the conversion of 1 lb/ft^3 = 16.02 lb. This means that 0.0001185 lb is equivalent to 0.000743 lb/ft^3.Therefore, the conversion of 53.7 μg/mL to lb/ft^3 is 0.000743 lb/ft^3. This answer should be reported with three significant figures, as the given value of 53.7 μg/mL has three significant figures.

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A student prepared some deep ruby crystals of "chrome alum" by treating
a solution of potassium dichromate(VI) in dilute sulphuric acid with an
excess of ethanol, and then crystallising the solution formed. What is the
maximum mass of chrome alum crystals that could be made from 2.94 g of
potassium dichromate(VI)?
K₂Cr₂O7 + 4H₂SO4 + 3CH3CH₂OH
potassium dichromate (VI)
→ K₂SO4 + Cr₂(SO4)3 +7H₂O +3CH₂CHO
K₂SO4 + Cr₂(SO4)3 +24H₂O → K₂SO4.Cr2(SO4)3.24H ₂0
"chrome alum"
(H = 1; O=16; S = 32; K= 39; Cr = 52)

Answers

The maximum mass of chrome alum crystals that could be made is 9.98g

n = m/M

What is mass?

To describe the amount of matter in a body, the word "mass" is used. The kilogramme is the unit of mass used in the SI (kg). At any given time, a body's mass remains constant. only when a body receives or loses a sizable amount of energy, which happens rarely.

n(K₂Cr₂O7) = 2.94g/294g/mol

n(K₂Cr₂O7) = n(K₂SO4) = n(K2SO4 ∗ Cr2(SO4)3 ∗ 24H2O)

m = nM

m(K2SO4 ∗ Cr2(SO4)3 ∗ 24H2O)

= 0.01mol ∗ 998g/mol

= 9.98g

Hence, the maximum mass of chrome alum crystals that could be made is 9.98g

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Over the years, the thermite reaction has been used for welding railroad rails, in incendiary bombs, and to ignite solid-fuel rocket motors. The reaction is given below.

Fe2O3(s) + 2 Al(s) 2 Fe(l) + Al2O3(s)

What masses of iron(III) oxide and aluminum must be used to produce 30.0 g iron?

What is the maximum mass of aluminum oxide that could be produced?

Answers

a) The mass of the iron III oxide is 43.2 g

b) The mass of aluminum oxide is 13.77 g

What is the mass that is used?

We would need to look at the stoichiometry of the reaction as this would help us to begin to understand how to deal with the question that is at hand here.

Number of moles of the iron = 30.0 g/56 = 0.54 moles

If 1 mole of the iron III oxide produces 2 moles of iron

x moles of the iron III oxide would produce 0.54 moles

x = 0.27 moles

Mass of the iron III oxide = 0.27 moles * 160 g/mol

= 43.2 g

Given that the ratio of the iron and the aluminum oxide is 1:1

1 mole of aluminum oxide is obtained for every 2 moles of iron

x moles of the aluminum oxide is produced for 0.27 moles

x = 0.135 moles

Mass of the aluminum oxide = 0.135 moles * 102 g/mol

= 13.77 g

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in a lewis acid-base reaction, the base an electron pair to the acid. this is an example of a general reaction trend, i.e., that electron-rich species react with electron species.multiple choice question.accepts, deficientaccepts, richdonates, richdonates, deficient

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In a Lewis acid-base reaction, the base donates an electron pair to/from the acid. This is an example of a general reaction trend, i.e., that electron-rich species react with electron-deficient species.

Lewis acids are the electron-deficient electrophilic chemical species, which readily accept a pair of electrons, whereas Lewis bases are the electron-rich nucleophilic species. Thus, in the Lewis acid-base reaction, the Lewis base will readily donates an electron pair to the Lewis acid to form a coordinate bond. Thus, it is a kind of chemical reaction where an electron-rich species (Lewis base) will reacts with an electron-deficient species (Lewis acid).

--The given question is incorrect, the correct question is

"In a Lewis acid-base reaction, the base _____ an electron pair to/from the acid. This is an example of a general reaction trend, i.e., that electron-rich species react with electron-_____ species. a) donates, rich b) accepts, deficient c) accepts, rich d) donates, deficient"--

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A solution is prepared by dissolving 1.65 g of an unknown organic compound in 15.00 g of cyclohexane. What is the molar mass of the compound if the solution has a melting point of -6.3°C? See the table for information about cyclohexane.


Can anyone help?

Answers

The molar mass of the unknown organic compound is approximately 15.0 g/mol.

What is an organic compound?

An organic compound can be described as any chemical compound that contains carbon-hydrogen or carbon-carbon bonds.

The molality of the solution can be calculated as follows:

M = moles of solute / mass of solvent (in g)

M = 1.65 g / (molecular weight of solute) / 15.00 g = 0.110 mol/kg

We will use the value of Kf_ for cyclohexane (20.0°C/m), the ΔT can be calculated as follows:

ΔT = Kf_ * m = 20.0°C/m * 0.110 mol/kg = 2.20°C

So the melting point of the solution is:

Tf_ (solution) = Tf_ (pure solvent) - ΔT = 6.6°C - 2.20°C = -0.1°C

The molecular weight of the solute can be calculated as follows:

molecular weight = moles of solute / molality = 1.65 g / (0.110 mol/kg) = 15.0 g/mol

Therefore, we can conclude that the molar mass of the unknown organic compound is approximately 15.0 g/mol.

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Photon a. Having characteristics of both a wave and a particle 7. Spectral lines b. A discrete amount of energy 8. Excited c. The range of different types of electromagnetic radiation (light, x-rays, ultraviolet radiation, and so on) 9. Quantum d. States with higher energy than the ground state 10. Electromagnetic spectrum e. Discrete pattern of narrow bands produced by heated gases 11. Wave-particle duality f. A particle of electromagnetic radiation

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Photon is  particle of electromagnetic radiation , spectral lines are discrete pattern of narrow bands produced by heated gases , excited means states with higher energy than  ground state , quantum is discrete amount of energy, electromagnetic spectrum is range of different types of electromagnetic radiation , wave-particle duality is having characteristics of both wave and  particle.

What is electromagnetic radiation?

The electromagnetic radiation consists of waves made up of electromagnetic field which are capable of propogating through space and carry the radiant electromagnetic energy.

The radiation are composed of electromagnetic waves which are synchronized oscillations of electric and magnetic fields . They are created due to change which is periodic in electric as well as magnetic fields.

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Can you help me solve number 53?

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Difference between the mass in 1 matric ton and 1 english ton is 200 lbs

What is mass ?

In physics, mass is a quantitative measurement of inertia, a basic characteristic of all matter. It essentially refers to a body of matter's resistance to changing its speed or location in response to the application of a force. The change caused by an applied force is smaller the more mass a body has.

A body's mass is an inherent quality. Before the discovery of the atom and the field of particle physics, it was conventionally thought to be connected to the amount of matter in a physical body.

1 metric ton is 1000 kg = 2.2 * 10³ lbs

1 english ton is 2 * 10³ lbs

Difference between the mass in 1 matric ton and 1 english ton is

(2.2 * 10³ - 2 * 10³) lbs = 2200 - 2000 = 200 lbs

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the structure contains a cc double bond, where the first (from left to right) c atom has a ch2ch3 group attached above and an h atom attached below and the second c atom has a ch2ch2ch3 group attached below and an h atom attached above the plane of the bond.

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The structure you describe contains a double bond between the first and second carbon atoms, with the first carbon having a CH2CH3 group attached above the plane of the double bond and an H atom attached below it, and the second carbon having a CH2CH2CH3 group attached below the plane of the double bond and an H atom attached above it.

The reaction of the CH2CH3 and CH2CH2CH3 groups with the double bond can be explained in terms of electron configuration. The double bond consists of two electrons in a pi bond, which is a pair of shared electrons between the two carbon atoms. When the CH2CH3 and CH2CH2CH3 groups react with the double bond, the electrons in the pi bond are pushed apart and replaced with a single bond between the two carbon atoms, with the CH2CH3 and CH2CH2CH3 groups now attached to the respective carbons. This process is called a substitution reaction and is the result of the higher electron density of the CH2CH3 and CH2CH2CH3 groups compared to the double bond.

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How many atoms are In 11.7 grams of potassium dichromate

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Answer:

So, there are approximately 2.4 x 10^24 atoms in 11.7 grams of potassium dichromate.

Explanation:

To determine the number of atoms in a given amount of a substance, you can use Avogadro's number, which is approximately 6.022 x 10^23 atoms/mole. To use this number, you first need to know the molar mass of the substance, which is the mass of one mole of the substance in grams.

The molar mass of potassium dichromate is 294.185 g/mol. So, to find the number of moles in 11.7 grams of potassium dichromate, you would divide 11.7 by 294.185. This would give you a value of 0.0399 moles.

To find the number of atoms in 11.7 grams of potassium dichromate, you would then multiply the number of moles (0.0399) by Avogadro's number (6.022 x 10^23 atoms/mole). This would give you a value of 2.4 x 10^24 atoms.

11.7 grams of potassium dichromate contains 6.39 x 10^23 atoms.

using the gas solubility interactive and the solid solubility interactive, identify the effects of temperature on the solubility of both a solid and a gas.

Answers

Generally, an increase in temperature decreases the solubility of a gas and increases the solubility of a solid.

Basically, solubility is defined as the maximum amount of a substance that will dissolve in a given amount of solvent at a specified temperature. Solubility is a well known characteristic property of a specific solute–solvent combination, and different substances have greatly differing solubilities.

Increasing the temperature will increase the solubility of the solute. This can be proved with an example of a solute whose solubility increases with greater temperature is ammonium nitrate, which can be used in first-aid cold packs.

The gaseous solute's solubility falls because the kinetic energy of the gaseous solute increases as the temperature rises. As a result of this its molecules are more likely to escape the solvent molecule's attraction and return to the gas phase.

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Which of the following solutions is the most acidic?

4 M ammonia

acetone

5 M citric acid

5% vinegar

Answers

Answer:

5 M citric acid is the most acidic solution.

which of the following would you expect to have ionic bonds? responses hbr hbr co co icl icl csf csf nf3

Answers

The following would you expect to have ionic bonds are csf.

Cesium fluoride is a substance consisting of different types of cesium element and fluoride element. Cesium is a metal and fluoride is a non-metal. Given that one metallic and one non-metallic bond leads mainly to ionic compounds, we expect cesium fluoride to be an ionic compound. But we need to prove this further by finding the difference in electronegativity of the two elements.

According to the electronegativity table, cesium has an electronegativity of 0.7 and fluorine has an electronegativity of 4.0. Therefore, the difference in electronegativity between the two 3,3s is significant enough to transfer electrons between atoms to form ionic compounds. Therefore, the binding of cesium fluoride compounds is ionic.

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What is the mole fraction of solute in a 3.69 m aqueous solution?

Answers

Molality = [tex]\frac{ Moles of solute}{Kilograms of solvent}[/tex]

X = [tex]\frac{3.69 mol}{3.69 . mol + \frac{1000.g}{18.01.g.mol^{-1} } }[/tex] = 0.062

Explanation:

Mole fraction = X = [tex]\frac{Moles.of .solute }{Moles.of.solute.and.moles.of.solvent}[/tex]

Thus

Moles of solute = 3.69 mol

Moles of solvent = [tex]\frac{1000}{18.01.g.mol^{-1} }[/tex] = 55.5 mol

So, X = 0.062

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calculate the reaction heat for the following reaction: a b c 2d the standard enthalpy values for these compounds are: a: 35 kj/mole b: 100 kj/mole c: 10 kj/mole d: 50 kj/mole the initial system enthalpy value is kj/mole, the final system enthalpy value is kj/mole, and the heat of the reaction is kj per mole of a.

Answers

The reaction heat for the following reaction is calculated as follows:

Initial System Enthalpy [1]: (1 mole A x 35 kJ/mole) + (2 moles B x 100 kJ/mole) + (1 mole C x 10 kJ/mole) + (2 moles D x 50 kJ/mole) = 435 kJ/mole

Final System Enthalpy: (2 moles A x 35 kJ/mole) + (2 moles C x 10 kJ/mole) + (2 moles D x 50 kJ/mole) = 280 kJ/mole

Reaction Heat: (Initial System Enthalpy - Final System Enthalpy) / (1 mole A) = 155 kJ/mole

The reaction heat is a measure of the energy released or absorbed during a chemical reaction. It can be calculated by subtracting the initial system enthalpy from the final system enthalpy, and then dividing by the number of moles of the reactant.

This calculation is used to measure the amount of energy released or absorbed during a reaction, which can in turn be used to determine the spontaneity of the reaction.

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10. Calculate the root mean square velocity for each of the following gases: He, Kr, CH4, O2

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The temperature is taken as standard temperature of 298 K here. The root mean square velocity of  helium gas is  1363.15 m/s and that of Kr gas is 290.6 m/s. the RMS velocity of methane gas is 681.5 m/s and that of oxygen gas is 481.9 m/s.

What is RMS velocity ?

The root means square velocity of a gas is given by the equation:

v = √3RT/M

where M is the mass of the gas in Kg.

Mass of He = 4 g = 0.004 Kg

T is taken as 298 K

R = 8.314 J/K mol

v = √(3× 8.314 ×298 /0.004 ) = 1363.15 m/s

Mass of Kr = 83.79 g = 0.088 Kg

v = √(3× 8.314 ×298 /0.088 ) = 290.6 m/s

Mass of CH₄ = 16 g = 0.016 Kg

v = √(3× 8.314 ×298 /0.016 ) = 681.5 m/s

Mass of O₂ = 32 g = 0.032 Kg

v = √(3× 8.314 ×298 /0.032 ) = 481.9 m/s

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For the following reactions, calculate the ionization constant of each reaction. CH3COOH (aq) + H2O (l) equation H3O+ (aq) + CH3COO-(aq); [CH3COOH] = 0.8M, [H3O+] = 7.6M, [CH3COO-] = 16.4MKa =

Answers

Ionization constant of a reaction is the ratio of the molar concentration of product to that of reactants. For the given  reaction, the ionization constant is 155.8 .

What is ionization constant ?

A compound or element gets ionized to form its anion or cation by the gain or lose of electrons.

Here, acetic acid, CH₃COOH ionizes to form hydronium ion and acetate ion. The ratio of product of molar concentrations of products to the product of molar concentrations of the reactants is called the reaction constant.

The ionization constant of the given reaction is written as:

K = [H₃O]⁺ [CH₃COO-]/[CH₃COOH]

Given, [CH₃COOH] = 0.8 M

[CH₃COO-] = 16.4 M

and [H₃O]⁺ = 7.6 M.

then, K = 7.6 M × 16.4 M/ 0.8 M = 155.8

Therefore, the ionization constant of the reaction is 155.8.

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The area surrounding an outdoor hazardous materials storage tank shall be keptclear of combustible materials and vegetation for a minimum distance of _____feet.a. 25b. 50c. 75d. 100

Answers

To ensure fire safety, a minimum clear distance of 100 feet must be maintained around an outdoor hazardous materials storage tank, free of any combustible materials or vegetation. So option D is correct.

This requirement for a minimum clear distance of 100 feet around hazardous materials storage tanks is a commonly accepted standard in the industry for fire safety purposes. Keeping the area clear of combustible materials and vegetation helps to prevent fire from spreading to the tank and potentially causing a hazardous release of the stored materials.

This requirement is based on the assumption that a fire spreading from surrounding combustible materials could rapidly increase in intensity and reach the tank, putting personnel and the surrounding community at risk. By maintaining a clear distance of 100 feet, the likelihood of such an event is significantly reduced.

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Which of the images below shows DECREASING turgor pressure in a plant cell?

(A)II
(B)I
(C)None of the images show decreased turgor pressure
(D)III

Answers

None of the images show decreased turgor pressure is Decreasing turgor pressure in a plant cell.

What is Plant cells?

The fundamental unit of life in species belonging to the kingdom Plantae is the cell.

They are eukaryotic cells, which have specialized components called organelles and a real nucleus that performs several duties. Chloroplasts are unique organelles found in plant cells that use photosynthesis to produce carbohydrates.

Cell walls, chloroplasts, and the central vacuole of plant cells set them apart from those of other creatures.

Therefore, None of the images show decreased turgor pressure is Decreasing turgor pressure in a plant cell.

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To make 1.50 L of 0.100 M NaCl from a 3.13 M stock solution, you would need to take (blank) mL of the stock solution and add (blank) mL of water.

Answers

To make 1.50 L of 0.100 M NaCl from a 3.13 M stock solution, you would need to take 0.43L of the stock solution and add 0.00106 mL of water.

What is the stock solution ?

To make a stock solution, weigh out an appropriate portion of a pure solid or measure out an appropriate volume of a pure liquid, place it in a suitable flask, and dilute to a known volume.

The precise method of measuring the reagent is find out by the desired concentration unit.

The formula is Cs x Vs = Cd x Vd

Where,

C = concentration, V = volume, s = stock solution, d = dilute solution.

Vs = Cd x Vd / Cs

= .1 M x 1.5 L / 3.48

Vs = .15 / 3.48

= 0.43L

So, your starting volume is .05 L and your dilute solution is 1.5 L, subtract the starting volume to find out how much water was added to make 1.5 L: 1.5 - .0.45 = 1.06 L water

= 0.00106ml

Thus,  you would need to take 0.43L of the stock solution and add 0.00106 mL of water.

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a prescription medication requires 8.50 mg per kg of body weight convert this quantity to the number of grams required per pound of body weight

Answers

The quantity of grams required per pound of body weight, given the prescription medication, is 0.00385714 g per pound.

How to find the requirement ?

You would first need to convert kg to lbs in order to translate the dosage of 8.50 mg per kg of body weight to the number of grams per pound of body weight. A kilogram weighs 2.20462 pounds. To calculate the dosage in mg per pound of body weight, divide the 8.50 mg dose by 2.20462.

= 8.50 mg / 2.20462

= 3.85714 mg per pound

Since 1g = 1, 000mg, we may convert mg to g. Thus, we can multiply 1000 by 3.85714 mg/lb to obtain the dosage in grams per pound.

= 3.85714 mg/lb / 1000

= 0.00385714 grams per pound

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Element X has two isotopes and an average atomic mass of 110.12 amu. One isotope has a mass of 109.82 amu and an abundance of 79.43%. What is the mass of the other isotope?

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Answer:

Element X has two isotopes and an average atomic mass of 110.12 amu. One isotope has a mass of 109.82 amu and an abundance of 79.43%. What is the mass of the other isotope?

how many liters of h2 gas are in 37.3 grams of h2?

Answers

To convert grams to liters, you need to know the molar mass of hydrogen (H2) and the ideal gas law. The molar mass of H2 is 2.02 grams/mole. So 37.3 grams of H2 is equal to 37.3 / 2.02 = 18.5 moles.

The ideal gas law states that PV = nRT, where P is pressure, V is volume, n is the number of moles, R is the ideal gas constant, and T is temperature (usually measured in Kelvins). If we assume standard temperature and pressure (STP), which is 0 degrees Celsius and 1 atmosphere, then R = 0.0821 Latm/molK.

So, at STP, we can calculate the volume of 18.5 moles of H2 as follows: V = (nRT) / P = (18.5 * 0.0821 * 273.15) / 1 = 4.8 Liters

Therefore, 37.3 grams of H2 is equal to 4.8 Liters.

a stock solution will be prepared by mixing the following chemicals together: 3.0 ml of 0.00200 m kscn 10.0 ml of 0.200 m fe(no3)3 17.0 ml of 0.5 m hno3 determine the molar concentration of fe(no3)3 in the stock solution. enter this number in the box below. m determine the molar concentration of fe3 in the stock solution. enter this number in the box below. m when written in scientific notation, these numbers should include decimal places.

Answers

The molar concentration of Fe(NO3)3 in the stock solution is 0.0634 M, written in scientific notation as 6.34 x 10-2 M.

To calculate the molar concentration of Fe(NO3)3 in the stock solution , you must first calculate the total moles of Fe(NO3)3 present. This can be done by multiplying the volume of Fe(NO3)3 by its concentration. Therefore, the total moles of Fe(NO3)3 present is 10.0 ml x 0.200 M = 2.00 moles.

Next, the total volume of the stock solution must be found. This can be done by adding the volumes of all components, which in this case is 3.0 ml + 10.0 ml + 17.0 ml = 30.0 ml. Finally, the molar concentration of Fe(NO3)3 can be found by dividing the total moles of Fe(NO3)3 by the total volume of the stock solution: 2.00 moles / 30.0 ml = 0.0634 M.

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complete the following nuclear equations
please help asap

Answers

Nuclear equations, the symbol has two numbers associated to it. The mass number, often called the "A" number, is in the upper right corner.

Nuclear equations – what are they?Radiation decay, nuclear fusion, and nuclear fission are all represented by nuclear equations, which show the reactants and products. Atomic mass and proton number are conserved in nuclear reactions, as opposed to chemical equations, which demonstrate that the number of distinct elements is conserved in a reaction.The symbol has two numbers associated to it. The mass number, often called the "A" number, is in the upper right corner. The protons and neutrons in the atom's nucleus are counted and the atom's atomic weight is indicated by the letter "A."The symbol has two numbers associated to it. The mass number, often called the "A" number, is in the upper right corner.

The complete question is,

Write nuclear equations in what format?

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A soft gel capsule contains 700 mcg
of vitamin A. How many grams of vitamin A are present?
Use 2 significant figures.

Answers

Answer: .00070 g

Explanation:

Start with what you are given and then use conversion factors to find grams.

1000 mcg = 1 mg

1000 mg = 1 g

700 mcg x (1 mg/1000mcg) x (1 g/1000 mg) = .00070 g

Determine the average density if the results for three trials were: 3.5512 g/mL, 3.4188 g/mL and
3.8617 g/mL.

Answers

The average density of three trials are 3.61 g/mL

It is given that

Density in first trial d1 = 3.5512 g/mL

Density in second trial d2 = 3.4188 g/mL

Density in first trial d3 = 3.8617 g/mL

We have to find average density

Density is a measurement that compares the amount of matter an object has to its volume. An object with much matter in a certain volume has high density. An object with little matter in the same amount of volume has a low density.

Average density = sum of all density/number of density

Average density = d1 + d2 + d3

3

Average density =

3.5512 + 3.4188 + 3.8617

3

= 3.61 g/mL

Hence, average density of three trials are 3.61 g/mL

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