There are 4.9875 mol C, 7.9802 mol H,

and 2.00 mol O in the sample.

Divide each by the smallest number of

moles. What is the ratio for the C?
Do not round your answer
2.48925 C : ? H : ? O

Answers

Answer 1

The ratio of the carbon to other atoms would be 2.49375:3.9901:1.000 and the empirical formula of the compound would be  [tex]C_2H_8O[/tex]

Empirical formula

The compound contains C, H, and O according to the following information:

C = 4.9875 mol

H = 7.9802 mol

O = 2.00 mol

In order to obtain the empirical formula of the compound, divide the mol of each atom by the smallest mol. In this case, the smallest mol is 2.00

C = 4.9875/2.00

  = 2.49375

H = 7.9802/2.00

    = 3.9901

O = 2.00/2.00

   = 1.0000

Thus, the ratio of carbon to the rest of the atoms present in the compound is 2.49375:3.9901:1.000

In order to find the empirical formula of the compound, the mole of each atom needs to be approximated to the nearest whole number.

C = 2

H = 8

O = 1

Thus, the empirical formula of the compound is [tex]C_2H_8O[/tex].

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Related Questions

It takes a sample of CO₂ 23.3 seconds escape from a container. How long will it
take the same volume of NO₂(g) to escape from the same container?

Please show how to solve!!

Answers

It takes a sample of CO₂ 23.3 seconds escape from a container. it will take the same volume of NO₂(g) to escape from the same container is 23.4 sec.

The effusion rate gas is inversely proportional to the square root of molecular mass.

Rate ∝ √1/M

for the same volume of gases,

t1 / t2 = √ M1 / M2

molar mass of  CO₂ = 44 g/mol

molar mas of  NO₂ = 46 g/mol

23.3 / t2 = √ 44 / 46

23.3 / t2 = 6.6 / 6.7

23.3 / t2 = 0.9

t2 = 23.4 sec

Thus, It takes a sample of CO₂ 23.3 seconds escape from a container. it will take the same volume of NO₂(g) to escape from the same container is 23.4 sec.

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In the following reaction;
HCO3- (aq) + H₂O(/)---> CO32- (aq) + H3O+ (aq)
HCO3 is a base and CO32- is its conjugate acid.
H₂O is a base and CO32- is its conjugate acid.
HCO3 is a base and H3O+ is its conjugate acid.
H₂O is a base and H3O* is its conjugate acid.

Answers

In the following reaction HCO³⁻(aq) + H₂O(l) →CO₃²⁻ (aq) + H₃O⁺ (aq) is H₂O is a base and CO₃²⁻ is its conjugate acid

Whenever an acid donates a proton and the acid changes into a base and whenever a base accept a proton and an acid is formed an acid and base which differ only by the presence or absence of a proton are called a conjugate acid base pair so in the reaction

HCO³⁻(aq) + H₂O(l) → CO₃²⁻ (aq) + H₃O⁺ (aq)

H₂O is a base and CO₃²⁻ is its conjugate acid

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4. A student performed a steam distillation of toluene and water and observed that the mixture boiled at
84.5 °C, The student collected the distillate in a graduated cylinder that was at room temperature (25°C)
The distillation was stopped after 2.0 mL of water had been collected. At first, the student was surprised
to see how much toluene had been collected, but after performing some calculations, the student realized
that it made sense. What volume of toluene had been collected? Show your work

Answers

The volume of toluene had been collected is 79.8L

Steam distillation is a process used for the recovery of volatile compounds with high boiling points and from inert and complex matrices solid and liquid using saturated or superheated steam as separation and energy agent

Here a student performed a steam distillation of toluene and water

So we have to calculate the volume of toluene = ?

So density = mass/volume

Rearranging the formula

Volume = mass × density

So mass of toluene = 92.14g/mol

Density of toulene = 867kg/m³

So Volume = mass × density

Volume = 92.14g/mol×867kg/m³

Volume = 79.8L

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The mass of Jupiter is 0.001Ms or 0.001 solar masses. Some people have said that Jupiter is the star that might have been. Would you agree or disagree? What evidence can you discuss to help you prove your point to this group of people?

Answers

We cannot predict whether a spatial object is a star or a planet based on just its mass. However, Jupiter is already proven to be a planet which revolves around the sun. Thus we can't agree to the statement.

What are stars?

Stars are spatial things with light energy formed by gases and dust particles. They are stationary at a position in the universe. They can form groups with other stars called constellations in various shapes which are connected by the force of attraction.

Planets are revolving around a star such as in solar system, where, 8 planets including earth and Jupiter. Jupiter is the biggest planet in the solar system and it is not star.

Therefore, Jupiter is not a star and the statement is false.

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Calculate the concentration (in molarity) of an NaH solution if 25.0 mL of the solution is needed to neutralize 19.7 mL of a 0.463 M HCI solution.

Answers

Answer:

0.11 m

Explanation:

H Ci + NaOH H2 O+ NaC1

by titration

0.0025 L of 0.13 mol Na OH = 0.00325 Mol NaOH

L

0.00325 Mol NaOH 1 Mol Hcl/I Mol NaOH = 0.00325 Mol hcl

now 0.00325 mol Hcl/ 0.030 L = 0.0108 M hcl

How many oxygen atoms are
present in one mole of
dinitrogen pentoxide?
N2O5
1.20 x 10^24
3.01 x 10^24
4.21 x 10^24
6.02 x 10^23

Answers

There are 5 oxygen atoms in one nitrogen pentoxide. The number of oxygen atoms in one mole of nitrogen pentoxide is 3.01 × 10²⁴.

What is one mole?

Any  substance containing 6.022 × 10²³ atoms is called one mole of the substance. This number is called Avogadro number. Hence, one mole of every element contains Avogadro number of its atoms.

One mole oxygen contains 6.022 × 10²³ oxygen atoms. Similarly one mole of a compound contains 6.022 × 10²³  number of its constituent molecules.

Now, the number of oxygen atoms in one mole of N₂O₅ will be 6.022 × 10²³ × 5 = 3.01 × 10²⁴. Therefore, option b is correct.

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Mole measure the number of elementary entities of a given substance that are present in a given sample. 6.02 x 10²³ oxygen atoms are

present in one mole of dinitrogen pentoxide N[tex]_2[/tex]O[tex]_5[/tex]. The correct option is option 4.

What is mole?

The SI unit of amount of substance in chemistry is mole. The mole is used to measure the quantity of amount of substance.

One mole of any substance contains  6.02 x 10²³ number of  atoms. 6.02 x 10²³ is called Avogadro number. Mole is inversely proportional to Avogadro number.

Therefore,  6.02 x 10²³ oxygen atoms are present in one mole of dinitrogen pentoxide. The correct option is option 4.

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Draw the Lewis structure for CF3+ and determine the formal charge on the C.

Answers

The formal charge that is carried by the carbon atom is +1.

What is the formal charge on carbon?

Let us recall that the formal charge is defined as the charge that an atom in a compound appears to  have. We know that the formal charge can be obtained by the use of the formula;

Formal Charge = [# valence electrons on neutral atom] – [(# lone electron pairs) + (½ # bonding electrons)]

Now applying this formula to the specie that we have here it would become;

Formal Charge = (4 - 0) + 1/2(6)

Formal Charge = 4 - 3

Formal Charge = 1

It then follows that the formal charge that would appear on the specie is +1 as shown in the image attached here.

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The quantity of antimony in a sample can be determined by an oxidation–reduction titration with an oxidizing agent. A 7.97 g sample of stibnite, an ore of antimony, is dissolved in hot, concentrated HCl(aq) and passed over a reducing agent so that all the antimony is in the form Sb3+(aq). The Sb3+(aq) is completely oxidized by 34.8 mL of a 0.130 M aqueous solution of KBrO3(aq). The unbalanced equation for the reaction is

BrO−3(aq)+Sb3+(aq)⟶Br−(aq)+Sb5+(aq)(unbalanced)

Calculate the amount of antimony in the sample and its percentage in the ore.


mass of antimony in grams:

percentage of antimony:

Answers

The mass of antimony present in the sample is 1.65 g

The percentage mass of antimony in the sample is 20.7%.

What moles of antimony is present in the sample?

The number of moles of antimony present in the sample is determined from the mole ratio of the reaction.

The mole ratio of the reaction is obtained from the balanced equation of the reaction as follows:

Balanced equation of the reaction:

BrO₃⁻ (aq) + 3 Sb³⁺ (aq) + 6 H⁺ ⟶ Br⁻ (aq) + 3 Sb⁵⁺ + 3 H₂O

moles of KBrO₃ in the 34.8 mL of a 0.130 M aqueous solution of KBrO₃ is determined as follows:

Moles = molarity * volume in liters

Moles of KBrO₃ = 0.13 * 34.8/1000

Moles of KBrO₃ = 0.004524 moles

1 mole of  KBrO₃ reacts with 3 moles of Sb³⁺

Moles of Sb³⁺ reacted = 0.004524 * 3

Moles of Sb³⁺ reacted = 0.13572 moles

The mass of antimony present = moles * molar mass

Molar mass of antimony = 121.76 g/mol

Mass of antimony = 121.76 * 0.13572

Mass of antimony = 1.65 g

Percentage mass of antimony = (1.65/7.97) * 100%

Percentage mass of antimony = 20.7%

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How many oxygen atoms are
present in one mole of
dinitrogen pentoxide?
N2O5
1.20 x 10^24
3.01 x 10^24
4.21 x 10^24
6.02 x 10^23

Answers

There are 5 oxygen atoms in one nitrogen pentoxide. The number of oxygen atoms in one mole of nitrogen pentoxide is 3.01 × 10²⁴.

What is one mole?

Any  substance containing 6.022 × 10²³ atoms is called one mole of the substance. This number is called Avogadro number. Hence, one mole of every element contains Avogadro number of its atoms.

One mole oxygen contains 6.022 × 10²³ oxygen atoms. Similarly one mole of a compound contains 6.022 × 10²³  number of its constituent molecules.

Now, the number of oxygen atoms in one mole of N₂O₅ will be 6.022 × 10²³ × 5 = 3.01 × 10²⁴. Therefore, option b is correct.

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Mole measure the number of elementary entities of a given substance that are present in a given sample. 6.02 x 10²³ oxygen atoms are

present in one mole of dinitrogen pentoxide N[tex]_2[/tex]O[tex]_5[/tex]. The correct option is option 4.

What is mole?

The SI unit of amount of substance in chemistry is mole. The mole is used to measure the quantity of amount of substance.

One mole of any substance contains  6.02 x 10²³ number of  atoms. 6.02 x 10²³ is called Avogadro number. Mole is inversely proportional to Avogadro number.

Therefore,  6.02 x 10²³ oxygen atoms are present in one mole of dinitrogen pentoxide. The correct option is option 4.

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Which of the following equilibrium constants indicates the reaction that gives the greatest amount of reactant? (most reactant favored)
Kc = 5 x 10^-10
Kc = 5 x 10^-1
Kc = 5 x 10^0
Kc = 5 x 10^1
Kc = 5 x 10^10

Answers

5 ×10^-10 equilibrium constants indicates the reaction that  gives the greatest amount of reactant.

At equilibrium, the forward and reverse reaction rates are equal, resulting in constant concentrations for all of the chemicals. Given that, it seems sense that the ratio of concentration for any given reaction at equilibrium will always keep a constant value.

The ratio of the mathematical product of a reaction's products to that of the concentrations of its reactants is known as the equilibrium constant (Keq). The balanced chemical equation raises each concentration to the power of its corresponding coefficient. K=1 when equilibrium attains. It has no units.

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If a certain piof metal is cooled, it will conduct electricity better

Answers

If a certain piece of metal is cooled it will conduct current better is a hypothesis.

When a conductor is connected to a fluctuating magnetic flux, it induces closed loops of electric currents known as eddy currents. They create closed circuits in a plane perpendicular to the magnetic field and are subject to Faraday's law of electromagnetic induction. These currents will flow in a direction that opposes the shift required by the Lenz law.

Eddy currents are created when a conductor is traveling through a magnetic field or when the magnetic field around a conductor at rest changes over time. They arise from variations in the strength and direction of a conductor-linked magnetic field or magnetic flux.

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Part B
When carbon is burned in air, it reacts with oxygen to form carbon dioxide. When 15.6 g of carbon were burned in the presence
of 52.1 g of oxygen, 10.5 g of oxygen remained unreacted. What mass of carbon dioxide was produced?

Answers

When the Carbon reacts with oxygen it produce CO₂. This can be depicted by the below equation.

C + O₂ → CO₂. By the given process, 57.2 g of CO₂ are produced.

It has been mentioned that when 15.6 g of C reacts with 52.1 g of O₂  , then 10.5 g of O₂ remains unreacted. It indicates that Carbon is the limiting reagent and hence the amount of CO₂ produced is based on the amount of Carbon burnt.

C + O₂ → CO₂

In the given equation , 1 mole of carbon reacts with the  1 mole of O₂ to produce 1 mole of CO₂.

In the case 15.6 g of Carbon reacts with 52.1 of O₂ to produce the  "x" g of CO₂.

No of moles of a substance = mass of  the substance/molar mass of  substance

No of moles of carbon = 15.6 /12= 1.3 moles

No of moles of O₂ = Mass of reacted O₂/Molar mass of O₂.

No of moles of O₂ = (Total mass of O₂ burned - Mass of unreacted O)/32

No of moles of O₂ = (52.1-10.5) ÷ 32 = 1.3 moles.

Hence as already discussed 1 mole of Carbon reacts with 1 mole of O₂ to produce 1 mole of CO₂. In this case 1.2 moles of carbon reacts with 1.3 moles of O₂ to produce 1.3 moles of CO₂.

Moles of carbon dioxide = Mass of CO₂ produced /Molar mass of CO₂

Mass of CO₂ produced(x) = Moles of CO₂ ×Molar mass of CO₂

Mass of CO₂ produced(x) = 1.3 x 44 =  57.2 g

Thus 57.2 g of CO₂ is produced.

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There are 4.9875 mol C, 7.9802 mol H,
and 2.00 mol O in the sample.

Divide each by the smallest number of

moles. What is the ratio for the C?
Do not round your answer
2.48925 C : ? H : ? O

Answers

The ratio of the carbon to the rest of the atoms in the compound would be 2.49375 to 3.9901 of hydrogen, and 1.00 of oxygen.

The ratio of atoms in a compound

The ratio of an atom to the rest of the atoms in a compound can be determined by knowing the empirical or molecular formula of the compound.

Now, the compound in question contains C, H, and O.

Amount of C = 4.9875 molAmount of H = 7.9802 molAmount of O = 2.00 mol

Let's divide the mol f each atom by the mol of the smallest. the smallest in this case is 2.00 moles.

C = 4.9875/2.00 = 2.49375

H = 7.9802/2.00 = 3.9901

O = 2.00/2.00 = 1.00

Thus, the ratio for carbon is 2.49375 to 3.9901 of hydrogen, and 1.00 of oxygen.

The empirical formula of the compound is [tex]C_2H_4 O[/tex].

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The ratio of C if 4.9875 mol C, 7.9802 mol H, and 2.00 mol O are present in the sample is 2.5.

How to calculate empirical ratio?

Empirical formula is a notation indicating the ratios of the various elements present in a compound, without regard to the actual numbers.

The empirical ratio to derive the empirical formula can be calculated by dividing the number of moles of each element by the smallest value.

According to this question, there are 4.9875 mol C, 7.9802 mol H, and 2.00 mol O in the sample. The smallest mole is 2 moles.

C = 4.9875mol ÷ 2 = 2.4938H = 7.9802 mol ÷ 2 = 3.9901O = 2 mol ÷ 2 = 1

Therefore, the empirical ratio of carbon in the compound is 2.5.

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please help!





For the reaction:
2H2 (g) + O2 (g) —-> 2H2O (l)

calculate the change S of system and the change of S of surroundings

Answers

+571.6 KJ and 1803.03 J/K are  the entropy (S) of system and the change of S of surrounding.

2H2O(l) --->2H2(g) + O2(g)

first step is to get dHrxn = dHf(Products) - dHf(reactants)

take dHf of reactants and products from standard thermodynamic table

dHf(H2O) = -285.8 KJ/mol

dHf(H2) =0 kj/mol

dHf(O2)= 0 kj/mol

dHrxn = 2dHf(H2) + dHf(O2) - 2dHf(H2O)

  = 2*0 + 0 - 2 [-285.8] kj =  +571.6 KJ

this is for 2 mole of H2O

for 1.88 mols H2O, dHrxn =  +571.6 KJ/2mol×1.88 mol = 537.304 kj

T =298 K

dS surrounding = - dHrxn/T = -537304 j/298 K = -1803.03 J/K

Entropy is the measurement of the amount of thermal energy per unit of temperature in a system that cannot be used for productive labor. Entropy is a measure of a system's molecular disorder or unpredictability since work is produced by organized molecular motion.

In an isolated system—one that does not exchange heat or work with its surroundings—spontaneous change for an irreversible process always moves in the direction of rising entropy, according to the Clausius form of the second law. For instance, the ice block and the stove are two components of a standalone system for which the overall entropy rises as the ice melts.

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2. When 47.5 J of heat are added to 13.2 g of a liquid, its temperature rises by 1.72 °C. What i
the heat capacity of the liquid?

Answers

answer : 2.02 J/g°C

Answer:

Below

Explanation:

specific heat cap =  j / (gm c)

                = 47.5 / (13.2 *1.72) = 2.09   j / (gm-c)   or   = 2093 j/(kg-C)

Heat capacity  =  47.5 / 1.72 = 27.6 J / C

1. 25 cm³ of a solution of 0.1 mol dm-³ NaOH reacts with 51.5 cm³ of a solution
of hydrochloric acid. What is the molarity of the acid?

Answers

The molarity of the acid is the 64.3dm³

Molarity is the amount of a substance in a certain volume of solution

Here given data is

25 cm³ of a solution of 0.1 mol dm-³ NaOH reacts with 51.5 cm³ of a solution of hydrochloric acid

We have to calculate molarity = ?

So the molarity = number of moles of solute/volume of solution in L or dm³

1. 25 cm³ = 1.25ml = volume

Molarity =  51.5 cm³ × 1.25ml

Molarity = 64.3dm³

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6 The pressure of 8.06 L of an ideal gas in a flexible container is decreased to
one-third of its original pressure, and its absolute temperature is decreased by
one-half. What is the final volume of the gas?

Answers

The pressure of 8.06 L of an ideal gas in a flexible container is decreased to one-third of its original pressure, and its absolute temperature is decreased by one-half and the final volume of gas is 12.09 L

The volume of gas in a flexible container is 8.06 L

The pressure is P1=X atm

Temperature is T1=YK

Let us calculate the volume V2 if Pressure P2=X/3 atm

Temperature T2=Y/2 K

Using the ideal gas equation, we get

P1V1/T1=P2V2/T2

V2=V1P1T2/T1P2

V2=8.06LX atm×Y/2K/YK.X/3 atm

V2=8.06x3/2

V2=12.09 L

The combined gas law is an amalgamation of the three previously known laws which are- Boyle's law PV = K, Charles's law V/T = K, and Gay-Lussac's law P/T = K.Applications of the combined gas law exist. This rule is applicable when the pressure, volume, and temperature are constant but the quantity of gas varies. The law can predict things like cloud formation, refrigerators, and air conditioners, for instance.

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Huda sees an obvious set of fingerprints on a mirror at a crime scene. How can she BEST preserve this evidence?

A.
Sketch the shape of the prints.

B.
Cut the fingerprints out of the mirror.

C.
Use clear tape to lift the prints.

D.
Make a plaster mold of the prints.

Answers

If Huda sees an obvious set of fingerprints on a mirror at a crime scene, the way in which she could best preserve this evidence is to: C. use clear tape to lift the prints.

What is an evidence?

In English language, an evidence can be defined as a collection of factual information that comprises empirical statistics and analysis, which are typically used to show or prove that an action, event, message, etc., is credible, reliable, truthful, and verified.

The type of evidence.

In Forensics, there are different types of evidence that are used in combatting crimes and these include the following:

Real evidenceDocumentary evidence.Impression evidence.Trace evidence.Demonstrative evidence.Testimonial evidence.

Additionally, it is very important and essential that forensic experts and scientist preserve any evidence that is seen or obtained from a crime scene, especially by choosing the most efficient and effective technique (method) such as using a clear tape to lift set of fingerprints on a mirror.

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Answer: C

Explanation:

At which of the following temperatures will gas particles have the slowest root mean-squared speed?
63c
25c
54c
19c

Answers

The speed that reflects the average kinetic energy of the molecules is known as the root-mean-square speed. using N2 at 25 °C.

Does root mean square speed vary with temperature?

The square root of temperature and the square root of the molar mass are both exactly proportional to the rms velocity. Thus, doubling the rms velocity of the molecules when the temperature of a specific gas is quadrupled.

What is the root mean square temperature?

The root mean square velocity of gaseous hydrogen molecules equals that of oxygen molecules at 47°C at what temperature.

A gas will effuse more quickly the lighter it is; conversely, the heavier a gas is ,the slower it flows, the more. Helium (He) will have the highest rate of effusion since it has the lowest molecular weight (atomic weight, in this example).

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If you have 257.4 mL of a 0.7280 M potassium carbonate solution and you need 500.0 mL of a 0.2250 M potassium carbonate solution, how much concentrated solution?

Answers

The amount of the concentrated solution and water needed would be 154.5 mL and 345.5 mL respectively.

Dilution problem

The problem here can be solved using the simple dilution equation that is expressed as:

[tex]m_1v_1[/tex] = [tex]m_2v_2[/tex]

Where [tex]m_1[/tex] is the molarity of the undiluted solution, [tex]v_1[/tex] is the volume of the underlined solution needed, [tex]m_2[/tex] is the molarity of the solution to be prepared, and [tex]v_2[/tex] is the volume of the solution to be prepared.

In this case:

[tex]m_1[/tex] = 0.7280 M

[tex]v_1[/tex] = ?

[tex]m_2[/tex] = 0.2250

[tex]v_2[/tex] = 500.0 mL

Rearranging the equation to make [tex]v_1[/tex] the subject:

[tex]v_1[/tex] = [tex]m_2v_2/m_1[/tex]

 

Now, let's substitute the values:

[tex]v_1[/tex] = 0.2250 x 500.0/0.7280

    = 154.5 mL

This means the volume of the concentrated solution needed is 154.5 mL out of 257.4 mL available. Since our final volume is 500.0 mL, the 154.5 mL stock solution will be made up to 500 mL with water.

Thus, the amount of water required would be:

500.0 - 154.5

  = 345.5 mL

In other words, the volume of the concentrated solution needed is 154.5 while the volume of water needed is 345.5 mL.

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The complete question: If you have 257.4 mL of a 0.7280 M potassium carbonate solution and you need 500.0 mL of a 0.2250 M potassium carbonate solution, how much concentrated solution and how much distilled water do you need?

What is the formula to determine the mass in grams of 3.6 moles of H2SO4

Answers

The formula to find the mass in grams is =  number of moles × Molecular mass

A mole is defined as 6.02214076 × 1023 of the chemical unit, be it atoms, molecules, ions, or others as well. The mole is a convenient unit to use because of the great number of atoms, molecules, or others that are present in any substance.

To find number of moles we use the formula that is weight divided by molecular mass

From this we can find out the mass as well;

Mass = Number of moles × Molecular mass

Mass = 3.6 × 98.070 ⇒ 353.08 grams

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Write the charge and full ground-state electron configuration of the monatomic ion most likely to be formed by Se.

Answers

The ground state electron configuration for the monoatomic ion is 1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6.

What is a monoatomic ion?

A monoatomic ion is an ion that contains only one atom. We can be able to form an ion by the addition or by the removal of an electron from the atom. We form a positive ion by the removal of an electron and we form a negative ion by the addition of an electron.

Now we have the element that is called selenium (Se) the ion that is formed by this element is Se^2-. Selenium is able to form a monoatomic ion when it gains two electrons. The electron configuration of this ion is; 1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6.

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Which type of joints hold together the bones of the skull?

Answers

sutures are nonmoving joints that connect bones of the skull. These joints have serrated edges that lock together with fibers or connective tissue.

Example 1:
A student dissolves 5.00 g of CaCl₂ into 200.0 g of H₂O. The temperature changes from 25.0°C to 28.0°C.
1.Calculate q surr
a. Find mass of solution (solute + solute).
b. Calculate heat of surroundings q = MCAT. Convert to KJ.

Answers

2520 joule is the heat (q) when a student dissolves 5.00 g of CaCl₂ into 200.0 g of H₂O. The temperature changes from 25.0°C to 28.0°C.

H₂O mass=200.0 g

c of H₂O= 4.2 joules per gram

Δt=3 °C

q=mcΔt

q=200.0 g×4.2×3

q=2520 joule

mass of solution= (solute + solute)

mass of solution=5.00 g+200.0 g

mass of solution=700 g

Heat has a very precise meaning in thermodynamics that is distinct from how we typically use the word. Heat is the thermal energy that is transmitted when two systems with different surface temperatures come into contact. Heat is denoted by the letters q or Q and is measured in Joules.

Because it is defined in the context of a process through which energy can be transmitted, heat is occasionally referred to as a process quantity. We don't discuss the heat that a cup of coffee contains, but we may discuss the heat that the cup of hot coffee transfers to your hand. Another significant characteristic is heat.

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As a pathologist, Joachim is responsible for performing autopsies. What does this MOST likely mean for Joachim?

A.
He spends hours trying to match fingerprints to a database.

B.
He compares bullets to guns to see if he can find a match.

C.
He dissects human bodies to determine how someone died.

D.
He uses insects to learn when a person most likely died.

Answers

As a pathologist, Joachim is responsible for performing autopsies which means that he will most likely be involved in dissecting human bodies to determine how someone died and is denoted as option C.

What is Autopsy?

This is referred to as a surgical procedure which involves the thorough examination of a dead body by dissection to determine the cause and manner of death so as to know next line of action.

As a pathologist, the bodies have to be cut open and carefully analyzed so as to ensure that the cause of death is determined and also helps to solve crime cases during investigations.

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When 2 moles of
H₂(g) react with
O2(g) to form
H₂O(g) according to the following
equation, 484 kJ of energy are
evolved.
2H2(g) + O2(g) → 2H₂O(g)
Is this reaction endothermic or
exothermic?
exothermic
What is the value of q? _____kj

Is this reaction endothermic or exothermic ?

Answers

This reaction is exothermic reaction and the q value is -484 kJ

An exothermic reaction is a chemical reaction that involves the release of energy in the form of heat or light

Here given reaction is

2H2(g) + O2(g) → 2H₂O(g)

In this reaction we can see that heat is released so if heat is released after completion of the reaction such reaction are called as exothermic reaction and thus given reaction is exothermic reaction

The fuel is hydrogen it react with oxygen from the air this is an exothermic reaction

So because of exothermic reaction ΔH = -ve

That why the q value is also negative so it is q = -484 kJ

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what is the most reactive alien metal? alien periodic table answers

Answers

The most reactive alien metal are:  bazinga (Bz) , minajine (Mdj) , madmenium (Mlr) and Dancingstar (Ds).

The metalloid from space is what?

When newly prepared, polished, or shattered, a metal exhibits a shiny look and quite good electrical and thermal conductivity. Typically, metals are malleable and ductile. The metallic link formed by the atoms or molecules of the metal gives rise to these characteristics.

Therefore, Ernst (E), highho (Hi), terriblum (T), and sississ are the metalloids (Ss). Sississ has the largest atomic mass of any metalloid. Ernst has the lowest atomic mass of any metalloid. Group 14 includes Highho and Terriblum.

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What is the empirical formula for this compound?
B3H6N3

A- B3H6N3
B- B2H4N2
C- BH2N

Answers

It is the simplest whole number ratio of elements in a compound. Molecular formula is n times the empirical formula where n is integers 1,2,... The empirical formula is BH2N.

What is empirical formula?

Empirical formula gives the proportion of the element that is present in a compound. It does not give information about the actual number or the arrangements of the atoms.

n= molecular formula÷ empirical formula

Molecular formula =B[tex]_3[/tex]H[tex]_6[/tex]N[tex]_3[/tex]

Molecular formula = 3×BH2N

Molecular formula =3×empirical formula

Empirical formula = BH2N

Therefore, the empirical formula for this compound B[tex]_3[/tex]H[tex]_6[/tex]N[tex]_3[/tex] is BH2N.

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A gas evolved during a chemical reaction and has a volume of 651 mL at 38 °C and 869 torr. What was the volume of this gas in mL at 110 °C and 3.87 atmospheres?
Just put in the number. The assumption is the unit is mL.
1 atm = 760 torr = 760 mmHg = 101,325 pa = 101.325 kpa = 1.01325 barr = 14.696
p.s.i. = 29.921 inHg
(inHg and p.s.i. are approximations of the metric pressures and are subject to significant figures)

Answers

A gas evolved during a chemical reaction and has a volume of 651 mL at 38 °C and 869 torr.  the volume of this gas in mL at 110 °C and 3.87 atmospheres was 238 mL.

given that :

volume V1 = 651 mL

temperature T1 = 38 °C = 38 + 273 = 311 K

pressure P1  = 869 torr = 1.14 atm

pressure P2 = 3.87 atm

temperature T2 = 110 °C = 110 + 273 = 383 K

volume V2 ?

using ideal gas equation , we get :

P1 V1 / T1 = P2 V2 / T2

(1.14 × 651 ) / 311 = (3.87 × V2 ) / 383

2.38 = 0.010 V2

V2 = 238 mL

Thus, A gas evolved during a chemical reaction and has a volume of 651 mL at 38 °C and 869 torr.  the volume of this gas in mL at 110 °C and 3.87 atmospheres was 238 mL.

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Calculate the molarity of 23.5 g of NaOH in 400. mL of an NaOH solution.

Answers

Answer:

1.468 M

Explanation:

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