an unknown compoound is decomposed into 6.9 g of na, 3.1 g of p, and 6.4 of o. what is its empirical formula

Answers

Answer 1

The compound's empirical formula is [tex]Na_3P_1O_4[/tex].

We must establish the relative ratios of the components in the compound in order to get the empirical formula for the compound.

The simplest whole-number ratio of the various atoms in a compound is represented by an empirical formula. The molecular formula displays the precise quantity of various atom types present in a compound's molecule.

The masses of Na, P, and O will first be converted to moles:

Na: 6.9g / 23g/mol = 0.3 mol

P: 3.15 g / 31 g / mol = 0.1 mol

O: 6.4g/16g/mol = 0.4 mol

The relative ratios will then be obtained by dividing each value by the smallest value (0.1 mol for P) as follows:

P: 0.1 mol/0.1 mol = 1,

Na: 0.3 mol/0.1 mol = 3,

O: 0.4 mol/0.1 mol = 4.

So the formula is [tex]Na_3P_1O_4[/tex]

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Related Questions

vitamin c has the formula cxhyoz. you burn 0.281 g of the compound in a combustion analysis chamber and isolate 0.421 g of co2 and 0.114 g of h2o. what is the empirical formula? enter the elements in the order c, h, and o.

Answers

The simplest whole-number ratio of the various atoms in a compound is represented by an empirical formula.

What is the simple empirical formula?

empirical method a chemical formula, rather than listing the total number of atoms in a molecule, shows the most basic ratio of the components in a compound.

The precise number of various atom types present in a compound's molecule is indicated by the molecular formula. The empirical formula for acetylene is CH. The empirical formula for acetylene is C2H2.

Sample mass equals 0.7789 CO2 mass generated = 1.179

Produced mass of to = 0.3179

C mass in the sample equals [tex]12 x 1.17 44, or 0.3199.[/tex]

Its mass in the sample is equal to [tex]2 x 0.317 18 = 0.0359[/tex]

The sample's mass of is given by [tex]0.778-(0.319+0.035) = 0.424 0.319[/tex].

Divide by 12 H 0.035 0.424 mass their molar and [tex]0.319 0.035 \s0.424 16 \s0.027 \s0.035 \s0.027[/tex]

by the smallest number

[tex]0.027 \s0.027 \s0.035 \s0.027 \s0.027 0.027 \s1.3[/tex]

To express the number 3 4 3 in whole numbers, multiply by 3.

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what does dried mineral water form?

Answers

Answer: "Dried mineral water" is a bit of a confusing term, because water is a liquid and cannot really be dried in the traditional sense. However, minerals that are dissolved in water can be left behind when the water evaporates or is removed in some way.

If we assume that you are referring to mineral-rich water that has been evaporated or otherwise had the water removed, then the minerals that were dissolved in the water could form a solid residue or deposit. The exact composition of this residue would depend on the specific minerals present in the water.

For example, if the mineral water contained a high concentration of calcium and magnesium, then the residue could potentially be calcium and magnesium carbonate, which is the same mineral that makes up limestone. If the water contained a high concentration of sodium and chloride, then the residue could be salt.

In general, when water containing minerals evaporates or is removed, the minerals can precipitate out of solution and form a solid deposit. The exact composition of this deposit will depend on the specific minerals present in the water.

In a reaction between 4. 15 g of iron oxide and excess carbon only 1. 42 g of iron is recovered. What is the percent yield for this reaction?

Answers

In a reaction between 4. 15 g of iron oxide and excess carbon only 1. 42 g of iron is recovered. The percent yield for this reaction is 49.0%.

Mass of iron oxide = 4.15g

Mass of iron recovered = 1.42g

The molar mass of Fe2o3 = 159.69g/mol

Moles of Fe2o3= [tex]\frac{Mass}{Molar mass} = \frac{4.15g}{159.69g/mol} = 0.026mol[/tex]

0.026mol of Fe2o3 react can produce= 0.026 × 4mol of fe/ 2mol of fe2o3

0.052mole of fe.

The Mass of Fe produced = 0.052×55.859= 2.90g of Fe.

Percent yield= Actual yield ×100/Theoretical yield

                     = [tex]\frac{1.42}{2.90} *100= 48.97%[/tex]= 49%

A chemical response is a system that results in the chemical transformation of one set of chemical materials to another. Classically, chemical reactions embody adjustments that best contain the positions of electrons inside the forming and breaking of chemical bonds between atoms, and not using a exchange to the nuclei (no change to the factors present), and can frequently be described by way of a chemical equation. Nuclear chemistry is a sub-area of chemistry that includes the chemical reactions of risky and radioactive factors in which each digital and nuclear change can arise.

The substance (or substances) to begin with worried in a chemical response are called reactants or reagents. Chemical reactions are commonly characterized by a chemical change, and they yield one or extra products, which usually have residences one of a kind from the reactants.

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Magnesium and nitrogen react in a combination reaction to produce magnesium nitride:

3 Mg + N2→ Mg3N2

In a particular experiment, a 10.1-g sample of N2 reacts completely. The mass of Mg consumed is ________ g.
Magnesium and nitrogen react in a combination reaction to produce magnesium nitride:

3 Mg + N2→ Mg3N2

In a particular experiment, a 10.1-g sample of N2 reacts completely. The mass of Mg consumed is ________ g.
0.92
26.3
8.76
13.9
35.1

Answers

The term mole concept is used here to determine the mass of magnesium. The mass of magnesium is  26.3 g. Thus the correct option is B .

What is a mole?

One mole of a substance is defined as that quantity of it which contains as many entities as there are atoms exactly in 12 g of carbon - 12. The formula used to calculate the number of moles is:

Number of moles = Given mass / Molar mass

The balanced equation when Magnesium and nitrogen react in a combination reaction to produce magnesium nitride is:

3 Mg + N₂→ Mg₃N₂

The mass of magnesium is obtained as follows:

10.1 g N₂ × 1 mol N₂ / 28.02 g N₂ × 3 mol Mg / 1 mol N₂ × 24.31 g Mg / 1 mol Mg = 26.28 ≈ 26.3

Thus the correct option is B - 26.3 g.

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true or false: for a pure substance, if its liquid and vapor can coexist in equilibrium, the liquid-vapor mixture at these states is called saturated liquid-vapor mixture.

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For a pure substance, if its the liquid and the vapor can coexist in the equilibrium, the liquid-vapor mixture at these states is called as the saturated liquid-vapor mixture. This is true.

A substance that has the fixed chemical composition throughout is called as the pure substance. The saturated mixture is the state when the solution will reached the point in which the no more solute can be added to the mixture. The saturated defined as the  vapor in the equilibrium with the liquid at or above the normal boiling point

Thus, The saturated liquid-vapor mixture can be defined as the state at which the liquid and the vapor phases coexist in equilibrium.

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convert 4.67 g of K to moles.

Answers

Answer:

0.11944253330707622

Explanation:

. in a particular experiment, the reaction of 2.5 g of aluminum with 2.5 g of oxygen gas produced 3.5 g of aluminum oxide. the percent yield of the reaction is

Answers

The percent yield of the reaction is 70%, since 3.5 g of aluminum oxide is produced when 2.5 g of aluminum reacts with 2.5 g of oxygen gas.

The percent yield of a reaction can be calculated if the amount of product produced and the amount of reactants used are known. First, the theoretical yield of the reaction must be determined. This is calculated by multiplying the amount of reactant used by the mole ratio of the reaction. In the given experiment, 2.5 g of aluminum will react with 2.5 g of oxygen, thus the theoretical yield of aluminum oxide will be 5 g. The actual yield is 3.5 g, so the percent yield of the reaction is determined by dividing the actual yield (3.5 g) by the theoretical yield (5 g) and then multiplying by 100. The result is 70%, meaning 70% of the theoretical yield of the reaction was achieved.

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a 0.500 m sample of phosgene gas, cocl2, decomposes to give carbon monoxide and chlorine gases. if theequilibrium concentration of cl2 is 0.045 m, what is the equilibrium constant for the reaction?

Answers

The equation for the decomposition of phosgene gas (COCl₂) to carbon monoxide (CO) and chlorine (Cl₂) is as follows:

COCl₂(g) <=> CO(g) + Cl₂(g)

The equilibrium constant for the reaction can be calculated using the concentration of each species at equilibrium, according to the equation:

Kc = [CO][Cl₂] / [COCl₂]

Since the equilibrium concentration of Cl₂ is 0.045 M, the value of Kc can be calculated as follows:

Kc = [CO][0.045] / [COCl₂]

Note that the concentration of COCl₂ is not known, so the value of Kc cannot be calculated without additional information. To determine the value of Kc, the concentration of COCl₂ at equilibrium is required.

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Give the term for the amount of solute in moles per mass (kg) of solvent.
a) molality
b) molarity
c) mole fraction
d) mole percent

Answers

Answer: Molality

Explanation: Molality measures the number of moles in a solute (per 1kg) in a solvent.

which of these functional groups behaves as an acid?

Answers

The functional group that behaves as an acid is carboxylic acid.

What is a functional group?

Functional groups are atoms or groups of atoms that are the active center of a compound, thus determining the physical and chemical properties of the compound.

The functional groups present in amino acids are carboxyl and amine groups. Amino acids are carboxylic acid derivatives that contain an amine group and behave as an acid in a functional group. Each amino acid molecule contains at least two functional groups, namely a carboxyl group (-COOH) and an amine group (-NH2). Based on the structure of these compounds, there are 3 functional groups, namely esters, ketones, and alkenes.

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at what stage of the isolation process was magnesium metal separated from benzoic acid? write a one-paragraph explanation. be a specific as you can.

Answers

Magnesium metal was separated from benzoic acid in the precipitation stage of the isolation process.

Precipitation is a common method used in chemical separations to form a solid substance from a solution. In this case, magnesium metal was precipitated from a solution containing benzoic acid.

The magnesium metal was likely added to the solution in the form of magnesium oxide or magnesium hydroxide, and an acid was used to react with the magnesium compound to produce magnesium ions and the corresponding anion in solution.

The magnesium ions then combined with a suitable precipitating agent, such as a chloride or sulfate salt, to form solid magnesium metal and a corresponding anion. The solid magnesium metal was then separated from the solution by filtration, leaving the benzoic acid in solution.

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Based on the graphs, describe the patterns of water used in the world for each continent and type of use. Compare and contrast water the patterns of water use in our homes, agriculture and industry around the world. Which category consumes most water? Use evidence from graphs or charts to support your answer.

Answers

The charts show that the greatest water usage would be for agriculture.

Why does agriculture have the greatest water usage?

Agriculture is the largest user of water because crops and livestock need water to grow and produce food. Irrigation is a common method of supplying water to crops, and large amounts of water are also used in livestock production to provide drinking water and to clean facilities. In addition, water is also used in food processing, transportation, and storage.

Moreover, agriculture is a significant contributor to global water demand, as the population continues to grow and demand for food increases.

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What is the mass of :

a) 6 X 10²³ atoms of He

b) 6 X 10²³ atoms of Na

c) 6 X 10²³ molecules of nitrogen

d) 6 X 10²⁴ atoms of Cl

e) 1.2 X 10²⁴ atoms of B

f) 1.8 X 10²⁴ atoms of Mg


How many atoms are there in:

a) 7 g of Li

b) 28 g of Si

c) 62 g of S

d) 12 g of Mg

e) 10 g of Ca

f) 200 g of Ne

Answers

Helium is the sole element that cannot be solidified by adequate cooling at atmospheric pressure. Therefore, 4g is the mass of helium.

What is helium?

Helium (He) is a chemical element and inert gas in Periodic Group 18 (noble gases). Helium, the second lightest chemical (only hydrogen is lighter), is a colorless, odorless, and colorless gas that solidifies at 268.9 °C (452 °F). Helium has lower boiling as well as freezing points than any other known material.

Helium is the sole element that cannot be solidified by adequate cooling at atmospheric pressure; it must be consolidated at a stress of 25 atmospheres at a temperature of one K (272 °C or 458 °F).

mole = given number of atoms/  6.022×10²³

        =  6 X 10²³ /6.022×10²³

           = 1 mole

mass = mole× molar mass

         = 1×4

          = 4g

Therefore, 4g is the mass of helium.

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what is the relationship between the amount of salt dissolved and the temperature of the water in this experiment?

Answers

Amount of salt dissolved directly depends on the temperature of water.

High temperature means higher average velocity of water molecules, thus higher kinematic energies to break the bonds of salts (dissolving salts). Another reason is the higher chance for hotter water molecules to interact with salts, and it is another reason that salts dissolve quicker in hot water.

In short, the reasons are: higher velocities, higher energies and more frequent interactions. Solubility increase with temperatures. This is because hot temperatures make atoms move quicker and the quicker they move, the easier they come apart!

When you hit the maximum amount that will dissolve, you say the mixture is a saturated solution at room temperature.

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a sample of a certain monoprotic weak acid was dissolved in water and titrated with 0.125m naoh, requiring 16.00 ml to reach the equivalence point. during the titration, the ph after adding 2.00ml of naoh was 6.912. calculate k a for the weak acid.

Answers

A sample of the certain monoprotic weak acid was dissolved in the water and titrated with 0.125 M NaOH. The value of ka for the weak acid is 8.572x10⁻⁷.

The molarity = 0.125 M

The volume = 0.016 L

The number of moles = molarity × volume

The number of moles = 0.125 × 0.016

                                    = 0.002 mol

The moles  = molarity × volume

                   = 0.125 × 0.002

                   = 0.00025 mol

The remaining moles = 0.002 - 0.00025

                                     = 0.00175 mol

The Henderson - Hasselbach equation is expressed as :

pH = pKa    + log [(A⁻)/(HA)]

6.912 =  pKa +  log[0.00025/0.00175]

6.912 = pKa  -  0.845

pKa = 6.067

ka = 8.572x10⁻⁷

                       

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Which of the following is a correctly written thermochemical equation?

Answers

Answer: option A

Explanation:

Answer:

A. a balanced chemical equation that includes the enthalpy change and phase of each reactant and product

Explanation:

took the test.

what conditions will cause a redox reaction to be nonspontaneous

Answers

The redox reaction will be non-spontaneous when the sum of the voltages of the oxidation and reduction half reactions are negative.

What is a redox reaction?

A redox reaction, also known as oxidation-reduction reaction, is a type of chemical reaction that involves the transfer of electrons between two species in order to produce a net change in oxidation states. This transfer of electrons can be either a gain or loss of electrons, leading to a net change in the oxidation states of the species involved. Redox reactions are essential for many biological processes, such as respiration and photosynthesis.

The sum of the voltages of the oxidation and reduction half reactions being negative indicates that the reduction half reaction has a higher voltage than the oxidation half reaction. This means that the reaction is energetically unfavorable, and therefore non-spontaneous.

Therefore, the sum of the voltages of the oxidation and reduction half reactions are negative

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Choose the best measuring cup to take each measurement in one go.
A. 36 mL of water
B. 5.75 mL of sucrose solution
C. 18.5 mL of NaCl solution

Answers

The best measuring cup to take each measurement in one go that is 36 mL of water, 5.75 mL of sucrose solution and 18.5 mL of NaCl solution is the graduated cylinder.

The graduated cylinder chosen same number of decimal places reading capability as the number of decimal places in the volume measured to be measured. For example: for 36ml, we require reading or marking with best reading 1 mL.

For 5.75 mL, we require marking that can tell up to two decimal places so marking should be 0.01 mL or maximum 0.05 mL as 0.01 mL marking is very difficult to read. For 18.5 mL, we require marking should be with reading capability 0.1 mL.

Hence, for 36 mL water we require 50 mL graduated cylinder with marking every 1 mL.For 5.75, of sucrose solution we require 10 mL graduated cylinder with marking every 0.01 mL or marking for every 0.05 mL is also suffix.For 18.5 mL of NaCl solution we require 25 mL graduated cylinder with marking every 0.1 mL.

Hence the required measuring cup is graduated cylinder.

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Which of the following mathematical expressions correctly states the relationship among percentage yield, actual yield, and theoretical yield?A. Actual yield=(percentage yield)/(theoretical yield) x 100
B. Percentage yield=(actual yield)/(theoretical yield) x 100
C. Percentage yield=(measured yield)/(theoretical yield) x 100
D. Both B. and C.

Answers

The mathematical expressions correctly states that dividing the actual yield by the theoretical yield and multiplying by 100 indicates percent yield.

We know that the percent yield is the percent ratio of actual yield to the theoretical yield ( since the actual yield is commonly less than the theoretical yield.), then multiply with 100.

Hence, the true statement about percent yield is "Dividing the actual yield by the theoretical yield and multiplying by 100 indicates percent yield."

percent yield of the reaction = [(actual yield)/(theoretical yield)] x 100.

∴ actual yield = [(percent yield of the reaction) x (theoretical yield)]/100.

So the right choice is: (Percent yield × theoretical yield) ÷ 100.

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what is the pka for an acid if the kb of its conjugate base is 2.3 x 10-4? a. 40.2 b. 25.9 c. 10.4 a. 4.3

Answers

The pKa for an acid if the [tex]\mathrm{ K_b}[/tex] of its conjugate base is [tex]2.3 \times 10^{-4 }[/tex] is 10.4.

What is acid?

Acid is any chemical substance that has a pH level below 7.0. It is a corrosive substance that can react with other substances and break them down to form new substances. Acids are found naturally in many everyday items such as citrus fruits, vinegar, and yogurt. They can also be created in a lab by combining certain elements in a reaction. Acids have many uses in industries such as metalworking, food processing, and pharmaceuticals. They can also be used in household cleaning products to remove dirt, grease, and other stains. Acids are powerful and should be handled with caution as they can cause burns and other injuries.

At 25° C

[tex]\mathrm{ K_aK_b = 10^{-14 } }[/tex]

[tex]$ \Rightarrow \mathrm{ K_a = \frac{10^{-14}}{2.3 \times 10^{-4 }} }[/tex]

[tex]$ \Rightarrow \mathrm{ K_a = 0.4347 \times 10^{-10 }} }[/tex]

Now,

[tex]\mathrm{ pKa = -\log Ka = 10.4373 }[/tex]

Thus, Option C is correct, The pKa for an acid if the [tex]\mathrm{ K_b}[/tex] of its conjugate base is [tex]2.3 \times 10^{-4 }[/tex] is 10.4.

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Pb(SO4)2 + 4LiNO3 —> Pb(NO3)4 + 2LiSO4

Equation is balanced

How many molecules of lithium nitrate will be needed to make 2.7
moles of lithium sulfate, assuming that you have an adequate amount
of lead (IV) sulfate to do the reaction?

Answers

The amount of  many molecules of lithium nitrate that will be needed to make 2.7 moles of lithium sulfate, assuming that you have an adequate amount of lead (IV) sulfate to do the reaction is: 2 moles of lithium nitrate.

How to find the amount of  many molecules of lithium nitrate?

To find the number of moles of lithium nitrate required, we first need to determine the stoichiometric ratio between lithium nitrate and lithium sulfate in the balanced equation.

From the equation:

Pb(SO4)2 + 4LiNO3 -> Pb(NO3)4 + 2LiSO4

We can see that for every 2 moles of lithium sulfate produced, 4 moles of lithium nitrate are consumed. Therefore, to produce 2.7 moles of lithium sulfate, we need:

4 moles LiNO3 / 2 moles LiSO4 = 2 moles LiNO3

Therefore , 2.7 moles of lithium sulfate would require 2 moles of lithium nitrate.

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Does a centrifuge load always contains an even number of tubes?

Answers

Yes, the centrifuge load always contains the an even number of the tubes.

The centrifuge load always contains the an even number of tubes. To prevent the unnecessary wear on the shaft and the bearings, it always load the centrifuge with the an even number of the tubes. If you have the only one sample to the centrifuge, fill the second test tube with the water to the same level as the sample tube have, and the place it in the port of the opposite of the sample tube.

Thus, it is necessary to load always contains the an even number of the tubes.

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strontium-90 has a half-life of 29 years. given that you begin with a 12 mg sample, determine a model that represents the amount of the sample still remaining after 34 years.

Answers

There will be 5.3241 mg of the sample still remaining after 34 years.

What does an element's half-life mean?

A radioactive isotope's half-life is the amount of time it takes for one half of it to decay. The half-life of a particular radioactive isotope is independent of its surroundings or initial concentration.

The half-life is the amount of time required for a quantity (of substance) to reduce to half of its initial value.

Now, the value of N( t ) is given by the formula ,

N( t ) = N₀ ( 1/2 )^ t/ t½

Where,

The value of t½ = 29 years

The initial amount of strontium-90 (N₀) = 12 mg

The number of days (t) = 34 years

The amount of strontium-90 left after 34 years = N( t )

Substituting the values in the equation , we get

N( t ) = 12 mg( 1/2 )^34/29

N( t ) = 12 mg ( 1/2 )¹ ¹⁷²⁴

N( t ) = 12 mg x 0.4436

N( t ) = 5.3241 mg

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To go from grams of one compound to grams of another which of the following do you use?

Answers

Use the mole-to-mole conversion factor (B/A) to convert the mass of A first into moles, then back into grams of A using the mole quantity of B.

What is a compound?

A chemical compound is a substance that contains atoms from many chemical elements bonded together by chemical bonds. It is made up of numerous similar molecules. Therefore, a molecule made up of only one type of atom is not a compound.

Examples of compounds are table salt (NaCl), which is generated from the elements sodium and chloride, and water (H2O), which is created from the components hydrogen and oxygen.

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A 3.0 L container holds a sample of hydrogen gas at 300 K.

The temperature decreases to 200 K and the pressure remains constant.

What will the volume be?
A)0.1 L
B)0.5 L
C)1.0 L
D)2.0 L

Answers

The volume of the hydrogen gas will increase as the temperature decreases to 200 K, so the answer is likely to be greater than 3.0 L.

The volume of the hydrogen gas in the container can be found using the Ideal Gas Law, PV = nRT.

At 300 K, the pressure (P) and number of moles of gas (n) are constant, so the volume (V) and temperature (T) are related by the equation:

V1/T1 = V2/T2

Where V1 is the original volume, T1 is the original temperature, V2 is the new volume, and T2 is the new temperature.

Solving for V2, we get:

V2 = V1 * T2/T1 = 3.0 L * 200 K / 300 K = 2.0 L.

So the volume of the hydrogen gas at 200 K will be 2.0 L.

A 3.0 L container holds a sample of hydrogen gas at 300 K.

The temperature decreases to 200 K and the pressure remains constant.

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carbon-14 is a radioactive isotope with a half-life of 5,730 years. a squirrel bone found in southwestern colorado contains 14 of the carbon-14 of a living squirrel. approximately how old is the squirrel bone?

Answers

To determine the age of the squirrel bone based on its carbon-14 content, we can use the half-life of carbon-14. The half-life of carbon-14 is 5,730 years. The age of the squirrel bone is half of the half-life, or 5,730 years / 2 = 2,865 years.

If a squirrel bone contains 14 of the carbon-14 of a living squirrel, it means that half of the original carbon-14 has decayed. This means that the age of the squirrel bone is half of the half-life, or 5,730 years / 2 = 2,865 years.

It is important to note that this method of dating only provides an estimate of the age of the bone, and that the actual age may be slightly different due to various factors such as differences in the rate of decay for different isotopes, and variations in the initial carbon-14 content of the bone. Additionally, this method is only applicable to organic materials that were once living, and cannot be used to date inorganic materials or materials that have not been in contact with the atmosphere.

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Alyssa is trying to decide where to spend this year's vacation she could go snorkeling

Answers

Snorkeling is a great way to spend your vacation this year! It's a great way to explore the underwater world and see all sorts of amazing sea creatures up close.

What is vacation?

Vacation is a period of time away from work and other regular activities, typically used for rest, relaxation, or travel. It is an opportunity to take a break from the everyday hustle and bustle of life and to visit new places and explore different cultures.

Plus, it's a wonderful way to get some exercise while having an adventure. You can find great snorkeling spots all over the world, from tropical beaches to coral reefs and beyond. So, if you're looking for an exciting and unique vacation experience, why not consider snorkeling?

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A cylinder with a movable piston contains 7. 00 moles of helium. What is the final amount of moles in the cylinder if the volume was changed from 8. 00 L to 12. 7 L?



this is on boyles , charles law , avogadros , and combined unit.



any helps is appreciated:))

Answers

The final amount of moles in the cylinder is 10.28 moles

What is mole?

Mole is a unit of measurement used in chemistry to measure the amount of a substance. It is defined as the amount of a substance that contains as many elementary entities (atoms, molecules, ions, electrons, etc.) as there are atoms in 0.012 kg of carbon-12.

The amount of moles in the cylinder is determined by the ideal gas law (PV=nRT),
where P is the pressure,
V is the volume,
n is the number of moles,
R is the ideal gas constant, and
T is the temperature.

When the volume of the cylinder is changed from 8.00 L to 12.7 L, the number of moles in the cylinder will change accordingly:
n1/V1 = n2/V2
Where n1 is the initial number of moles (7.00 moles) and V1 is the initial volume (8.00 L).
Rearranging the equation gives us:
n2 = n1*V2/V1
Therefore, the final amount of moles in the cylinder is:
n2 = 7.00 moles * 12.7 L/ 8.00 L = 10.28 moles

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if 12.89 grams of water are produced, how many moles of C4H10 are used?

Answers

The mass of C4H10 that is produced is 8.4 g.

What is the number of moles used?

In this case we have to note that the stoichiometry of the reaction is very important and that is what be have to look at in the problem that we have here. For this reason, we need the reaction equation as follows;2C4H10 + 13O2 → 8CO2 + 10H2O

Then we have;

Number of moles of the water = 12.89/18 g/mol

= 0.72 moles

If 2 moles of the C4H10  produces 10 moles of water

x moles of the C4H10  produces 0.72 moles of water

x = 0.144 moles

Mass of the C4H10 = 0.144 moles * 58 g/mol

= 8.4 g

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What happens to gas solubility of oxygen in the blood of a person who is placed in a hyperbaric chamber?

Answers

The solubility of oxygen in the blood of a person who is placed in a hyperbaric chamber increases.

This is because the pressure inside the hyperbaric chamber is increased, which results in an increased partial pressure of oxygen. The solubility of a gas in a liquid is directly proportional to the partial pressure of that gas, so as the pressure of oxygen increases, the solubility of oxygen in the blood increases.

As a result, more oxygen can dissolve in the blood, providing more oxygen to the tissues and organs of the body. This increased oxygen supply can help to improve oxygenation in tissues that may be deprived of oxygen, such as in cases of decompression sickness, carbon monoxide poisoning, and some wounds.

It is important to note that while the increased solubility of oxygen in the blood can provide benefits in certain cases, it can also lead to toxicity if the pressure is increased too much. Therefore, it is important to carefully monitor the pressure inside the hyperbaric chamber and adjust it as necessary to avoid any harmful effects.

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