a binary compound of nitrogen and hydrogen has the following percentage composition: 82.27% nitrogen; 17.76% hydrogen. If the molar mass of the compound is determined by a separate experiment to be slightly more than 17g what are the empirical and molecular formulas of the compound

Answers

Answer 1

Answer:

Both empirical and molecular formulas are NH₃.

Explanation:

Hello.

In this case, since we know the percent compositions of both nitrogen and hydrogen, in order find out the molecular formula and the empirical formula of that compound, we can first assume we have 82.27 g of nitrogen and 17.76 g of hydrogen as a first approximation to compute the present moles:

[tex]n_N=82.27g/(14.01g/mol)=5.872mol\\\\n_H=17.76g/(1.01g/mol)=17.58mol[/tex]

Next, we compute the subscripts in the empirical formula first, by diving the moles of each element by the moles of the element with fewest moles:

[tex]N:\frac{5.872}{5.872}=1\\\\H:\frac{17.58}{5.872}=3[/tex]

It means that the empirical formula is NH₃ and its molar mass is about 17.04 g/mol which is about the same the reported molar mass slightly more than 17 g, it means that the molecular formula is also NH₃.

Best regards!


Related Questions

What is the wavelength (in nanometers) of a photon emitted during a transition from ni = 7 to nf = 3 state in the H atom?

Answers

Answer:

[tex]\mathbf{\lambda = 1.01 \times 10^{3} \ nm}[/tex]

Explanation:

To determine the wavelength; let's first calculate the energy (E) change of the transition by using the Rydberg constant [tex](R_H)[/tex]

[tex]\Delta E = R_H ( \dfrac{1}{n_i^2}- \dfrac{1}{n_f^2})[/tex]

[tex]\Delta E = 2. 18 \times 10^{-18} \ J ( \dfrac{1}{7^2}- \dfrac{1}{3^2})[/tex]

[tex]\Delta E = 1.977 \times 10^{-19 } \ J[/tex]

Now; to calculate the wavelength by using the formula:

[tex]\lambda = \dfrac{c*h}{\Delta E}[/tex]

[tex]\lambda = \dfrac{(3.00 \times 10^8 \ m/s) *(6.63 \times 10^{-34} \ J.s)}{1.977 \times 10^{-19 } \ J}[/tex]

[tex]\lambda = 1.01 \times 10^{-6} \ m[/tex]

To nanometers; we have:

[tex]\lambda = 1.01 \times 10^{-6} \ m \times \dfrac{1 \ nm}{ 1 \times 10^{-9} \ m}[/tex]

[tex]\mathbf{\lambda = 1.01 \times 10^{3} \ nm}[/tex]

Plz help ASAP I will give brainliest to the first answer!!

An element that is usually a gas or brittle solid at room temperature, that is not ductile or malleable. Also it doesn’t conduct heat or electricity well.

A. Lithium
B. Arsenic
C. Nitrogen
D. Cobalt

Answers

I’m not for sure but I think it is c
C. Nitrogen
I’m not positive. However, I believe nitrogen can be gaseous or solid, is not ductile or malleable, and is a bad conductor.

Explain how cells are the basic unit of all living things

Answers

Answer:A cell is the smallest unit of a living thing. A living thing, whether made of one cell (like bacteria) or many cells (like a human), is called an organism. Thus, cells are the basic building blocks of all organisms. ... Several systems that function together form an organism (like a human being).

Hope this helped! If it did leave a brainliest.

Have an amazing night/day!

What kind of reaction is this? C5H8 + 7O2 --> 5CO2 + 4H2O
A. Decomposition
B. Combustion
C. Single replacement
D. Combination

Answers

Answer:

B. Combustion .

Explanation:

Hello.

In this case, since this reaction is started by pentyne and oxygen which are converted to carbon dioxide and water, we can infer this is a combustion reaction because it involves the burnt of a fuel, in this case the pentyne, by using oxygen in order to yield carbon dioxide and water, which are smaller molecules than the original pentyne.

It is important to notice that these reactions are very exothermic because they go to break the C-H bonds in the fuel which release a considerably high amount of energy.

Best regards!

what is listed on the right side of a chemical equation

Answers

Explanation:

The substances that "go in" to a chemical reaction are called the reactants (by convention these are usually listed on the left side of a chemical equation), and the substances found that "come out" of the reaction are known as the products (by convention these are usually found on the right side of a chemical equation

Answer: The reactants that go into the chemical reaction are on the left of the equation. The substances that come out of the chemical reaction are usually on the right side of the equation.

Hope it helps!

A gas occupies 1.00 L at 273 K. What is the volume at 606 °C?

Answers

Answer:

3.22 L

Explanation:

0.00 C = 273 K

k = C +273

606 K + 273 K = 879 K

879/273 = 3.219

V2 = 3.22 L

The chemical formula for a molecule that contains two chlorine (Cl) atoms is

Answers

The chemical formula : Cl₂Further explanation

Chlorine is a halogen gas element which has atomic number 17 which is in group 17, p block and period 3

The electron configuration of Cl  : [Ne] 3s² 3p⁵ ⇒ 2, 8, 7

So the valence electron is 7, so to achieve stability you will need 1 more electron so it is stable like Argon

Cl will be covalently bonded (using shared electron pairs) with other Cl atoms to form a non-polar molecule, namely Cl₂

we want to prepare an acetate buffer of pH 6.420 from a 0.664 M acetic acid solution pKa =4.752 and a 2.50 M KOH solution. If we have 975 ml of the acetic acid solution, how many milliliters of the KOH solution do we need to add to make a buffer of pH 6.42?

Answers

Answer:

253.5mL must be added

Explanation:

To find pH of a buffer we need to use H-H equation:

pH = pKa + log [Acetate] / [Acetic acid]

Where pH is pH we want: 6.42; pKa is 4.752 and [] could be taken as moles of each species.

6.42 = 4.752 + log [Acetate] / [Acetic acid]

1.668 = log [Acetate] / [Acetic acid]

46.5586 = [Acetate] / [Acetic acid] (1)

And moles of acetate buffer = Initial moles of acetic acid are:

975mL = 0.975L * (0.664mol / L) = 0.6474 moles acetate buffer =

0.6474 =  [Acetate] + [Acetic acid] (2)

Replacing (2) in (1):

46.5586 = 0.6474 - [Acetic Acid] / [Acetic acid]

46.5586 [Acetic acid] = 0.6474 - [Acetic Acid]

47.5586 [Acetic acid] = 0.6474

[Acetic acid] = 0.01361 moles

And [Acetate]: 0.6474 - 0.01361moles

[Acetate] = 0.63379moles

Now, in the beginning we have just Acetic acid that is converted in acetate with the use of KOH:

Acetic acid + KOH → Acetate

That means the moles of KOH added are the moles of acetate we need. That means we need to add 0.63379 moles of KOH that comes from a 2.50M. The volume is:

0.63379 moles KOH * (1L / 2.50 moles) = 0.2535L =

253.5mL must be added

Imagine an element that has 15 protons, 16 neutrons, and 18 electrons. Which of the following would NOT be considered an isotope of this element? *

15 protons, 16 neutrons, and 15 electrons
15 protons, 17 neutrons, and 15 electrons
15 protons, 15 neutrons, and 18 electrons

Answers

Answer:

Explanation:

Option 1 15. Proton 16 neutron 15 electron

Isotopes have same atomic no but different atomic mass

Explain what is wrong with the following structure.
HH—0:

Answers

Answer:

for the Lewis diagram of water, hydrogens should go on the outside with oxygen in the center

Explanation:

hydrogens always go on the outside

Which reaction product (A or B) is more likely to form in the epoxide ring opening reaction? Consider resonance structures.

Answers

Answer:

Reaction product A is more likely to form in the epoxide ring-opening reaction

Explanation:

The diagram for the reaction can be seen in the image attached below.

An epoxide is any class of organic compound, cyclic ethers, having a three-membered ring; they are usually prepared by selective oxidation of alkenes or by ring-closure of halohydrins(any class of organic compound having a hydroxyl functional group and a halogen on neighboring carbon atom ) which are used in making plastic.

What are two important characteristics of the silica gel and alumina that are used for column chromatography

Answers

Answer:

Two important characteristics of the silica gel and alumina that are used for column chromatography-:

Uniform particle sizeHigh specific area                                                                        

Explanation:

The adsorbent must be thinly split in column chromatography to provide a well packed column that serves as a stationary step.  

The silica gel and alumina qualities that render them appropriate as column chromatography adsorbents are-:  

Have a uniform particle size that guarantees uniform column packaging.  A highly specific area in which a rapid balance is formed between the mobile phase and the stationary phase.

When temperature drops, particle speed decreases.
True?
False?

Answers

This would be true, I’m adding this cause I need 20 characters to answer

yes they decrease when the temperature drops so it's true

A chemist must prepare 650.0mL of sodium hydroxide solution with a pH of 13.90 at 25°C. He will do this in three steps:

Answers

Answer:

1. Weigh 3.27 ×10⁻⁴ ng of NaOH  in a special balance for weighing in nanograms

2. Measure a volume of 650 mL in a test tube

3. Make the solution by mixture

Explanation:

NaOH is a strong base. As every strong base, can be completely dissociated:

NaOH →  Na⁺  +  OH⁻

If pH is 13.90, we can calculate the [OH⁻], so we would know the molarity of NaOH.

1 mol of NaOH can generate 1 mol of OH⁻

[OH⁻] = 10⁻¹³'⁹ = 1.26×10⁻¹⁴ M

In conclussion, molarity of NaOH is 1.26×10⁻¹⁴ M

M = moles of NaOH / volume of solution

We convert the volume from mL to L

650 mL . 1 L /1000mL = 0.650 L

Moles of NaOH = 0.650 L . 1.26×10⁻¹⁴ M = 8.18×10⁻¹⁵ moles

We convert the moles to mass, to determine the grams:

8.18×10⁻¹⁵ moles .  40 g/mol = 3.27 ×10⁻¹³ g

We can convert the grams to ng = 3.27 ×10⁻⁴ ng

If 18.2 of 0.800 solution are needed to neutralize 5.00 of a household ammonia solution, what is the molar concentration of the ammonia

Answers

Answer:

2.91M is the concentration of the household ammonia solution

Explanation:

18.2mL of a 0.800M HCl solution to neutralize 5.00mL

The reaction of HCl with NH3 is:

HCl + NH3 → NH4Cl

Thus, the moles of HCl needed to neutralize the household are equal to moles of NH3. That is:

18.2mL = 0.0182L * (0.800mol / L) = 0.01456 moles HCl = Moles NH3.

In 5.00mL = 0.005L:

0.01456 moles NH3 / 0.005L =

2.91M is the concentration of the household ammonia solution

If an acyclic alkane hydrocarbon contains n carbon atoms, how many hydrogen atoms must it also contain

Answers

Answer: The answer is 2n+2

Explanation:

the general formula for defining an Alkane is [tex]CnH2n+2[/tex]

Hence for each n carbon there will be 2n+2 hydrogens present in the hydrocarbon.

An iron ore sample contains plus other impurities. A 896-g sample of impure iron ore is heated with excess carbon, producing 182 g of pure iron by the following reaction: What is the mass percent of FeO2 in the impure iron ore sample

Answers

Answer:

20.3%

Explanation:

Given mass of impure ore = 896g and mass of pure iron to be 182g after purification,

[tex]\frac{(896-182)g}{896}[/tex] × 100

= 79.7%

in subtracting the weight of impure mass from that of the pure sample, we are left with the mass of the impurities alone.

This means the mass percent of pure iron in this iron ore sample is 20.3%.

Let me know if this was helpful.

1. How is a covalent bond formed?
When electrons between atoms are transferred
When electrons between atoms are shared.
When electrons are subtracted from atoms.
When electrons are added to atoms.

Answers

When electrons between atoms are shared. I hope this helps!

Specialist species can respond more easily to changing environmental conditions tan can generalist species OTrue O False​

Answers

Answer:

false

Explanation:

Which scientist determined that electrons had predicted zones orbiting the nucleus?
Rutherford
Bohr
Dalton
Schrödinger
Marthie

Answers

Answer:

Bohr

Explanation:

Neils Bohr was the scientist that suggested that electrons follow predictable orbits round the nucleus.

In 1913, he put forward his own model of the atom based on the quantum mechanics originally developed by Planck. He assumed the Rutherford's model and suggested that the extranuclear part consists  of electrons in specific spherical orbits around the nucleus. The orbits/energy levels are designated as K, L, M, N.....

Answer:

schrodinger

Explanation:

jelly benee

What does this image represent? (5 points)
-Formation of ionic bonds in water
-Formation of covalent bonds in water
-Transfer of valence electrons from oxygen to hydrogen
-Sharing of valence electrons between two hydrogen atoms

Answers

I believe it is the formation of covalent bonds in water. The two hydrogen atoms are sharing valence electrons with the oxygen atom to become stable. It wouldn’t be the formation of ionic bonds because no atoms are transferred. It wouldn’t be the transfer of valence electrons between two hydrogen atoms because they aren’t transferring atoms and it isn’t just between the two hydrogen atoms. It wouldn’t be the sharing of valence electrons between two hydrogen atoms because it isn’t just between the two hydrogen atoms. It is the formation of covalent bonds in water because they are sharing atoms with the oxygen to make the compound H2O or water. I hope this helps.



There are two types of chemical compound one is covalent compound and other is ionic compound, covalent compound formed by sharing of electron and ionic compound formed by complete transfer of electron. Therefore, the correct option is option B that is formation of covalent bonds in water.

What is chemical Compound?

Chemical Compound is a combination of molecule, Molecule forms by combination of element and element forms by combination of atoms in fixed proportion.

An ionic compound is a metal and nonmetal combined compound.  Ionic compound are very hard. They have high melting and boiling point because of strong ion bond.

The given image represents the formation of covalent bonds in water. Water is a covalent compound having covalent bond between oxygen and hydrogen.

Therefore, the correct option is option B that is formation of covalent bonds in water.

To learn more about chemical compound, here:

brainly.com/question/26487468

#SPJ2

An aqueous solution contains dissolved and . The concentration of is 0.50 M and pH is 4.20. Calculate the concentration of in this buffer solution.

Answers

Here is the correct format for the question.

An aqueous solution contains dissolved [tex]\mathbf{C_6H_5NH_3Cl}}[/tex] and [tex]\mathbf{C_6H_5NH_2}[/tex]. The concentration of [tex]\mathbf{C_6H_5NH_2}[/tex] is 0.50 M and pH is 4.20. Calculate the concentration of [tex]\mathbf{C_6H_5NH_3^+}[/tex] in this buffer solution. [tex]\mathbf{K_b = 3.8 \times 10^{-10}}[/tex]

Answer:

[tex]\mathbf{C_6H_5NH_3^+ = 1.1995 M }[/tex]

Explanation:

From the above information:

[tex]pKb \ of \ C _6H_5NH_2 = -log(3.8 \times 10^{-10})[/tex]

[tex]pKb \ of \ C _6H_5NH_2 = 9.42[/tex]

pH = 4.20

pOH = 14 - pH

pOH = 14 - 4.20 = 9.8

According to Henderson Hasselbalch equation

[tex]pOH = pKb + log \dfrac{[C_6H_5NH_3^+]}{[C_6H_5NH_2]}[/tex]

[tex]9.8 = 9.42 + log \dfrac{[C_6H_5NH_3^+]}{(0.50)}[/tex]

[tex]9.8-9.42 = log \dfrac{[C_6H_5NH_3^+]}{(0.50)}[/tex]

[tex]0.38 = log \dfrac{[C_6H_5NH_3^+]}{(0.50)}[/tex]

[tex]10^{0.38} = \dfrac{[C_6H_5NH_3^+]}{(0.50)}[/tex]

[tex]2.399 = \dfrac{[C_6H_5NH_3^+]}{(0.50)}[/tex]

[tex]C_6H_5NH_3^+ = 2.399 \times(0.50)[/tex]

[tex]\mathbf{C_6H_5NH_3^+ = 1.1995 M }[/tex]

1. What surface would reflect light the best?

Answers

Answer:

Glass mirror

Explanation:

The correct answer is a glass mirror

Calculate the mass of sodium acetate that must be added to 500.0 mL of 0.300 M acetic acid to form a pH

Answers

Answer:

22.4 g

Explanation:

Calculate the mass of sodium acetate that must be added to 500.0 mL of 0.300 M acetic acid to form a pH  = 5.00 buffered solution.

Step 1: Given data

Volume of solution: 500.0 mL

[acetic acid]: 0.300 M

pH = 5.00

pKa of acetic acid: 4.74

Step 2: Calculate the concentration of sodium acetate

We will use the Henderson-Hasselbach equation.

pH = pKa + log [sodium acetate]/[acetic acid]

5.00 = 4.74 + log [sodium acetate]/0.300 M

[sodium acetate] = 0.546 M

Step 3: Calculate the moles of sodium acetate

We have 500.0 mL of a 0.546 M sodium acetate solution

0.5000 L × 0.546 mol/L = 0.273 mol

Step 4: Calculate the mass of sodium acetate

The molar mass of sodium acetate is 82.03 g/mol.

0.273 mol × 82.03 g/mol = 22.4 g

The electron configuration for Helium (He) is shown below.
152
Which diagram shows the correct distribution of electrons in the electron shells of a helium atom?
1P
ON

Answers

2 electrons in the atomic shell

Further explanation

Helium belongs to the noble gas group (group 18), s block and period 1

Electron configuration: 1s²

Symbol: ₂He⁴

With atomic number 2 and mass number 4, the composition of the subatomic particles is:

2 protons, 2 electrons, and 2 neutrons

2 protons and 2 neutrons make up the atomic nucleus while 2 electrons are in the atomic shell

Where are metals found on the periodic table?
O Metals are on the far left side of the periodic table
Metals are found on the left side/middle
O Metals are on the bottom two rows of the periodic table
Metals are found on the stairstep line

Answers

Metals are found on the far left side of the periodic table

what year did Robert Milliken discover the electron charge?

Answers

Answer: 1909

Explanation: In 1909 Millikan began a series of experiments to determine the electric charge carried by a single electron.

Answer: 1909

Explanation:

4.60 g of 3-hexanol were obtained from 5.33 g of hex-3-ene. Determine the percentage yield of 3-hexanol. a Determine the moles of hex-3-ene, , used in the experiment. (To avoid introducing rounding errors on intermediate calculations, enter your answer to four significant figures.)

Answers

Answer:

Explanation:

C₆H₁₂     + H₂O      =     C₆H₁₃OH

hexene                      hexanol

1 mole                             1 mole  

Mol weight of hexene = 84

Mol weight of hexanol   = 102

5.33g of hexene = .06345 moles

4.6 g of hexenol = .0451 moles

percentage yield of hexanol

= .0451 x 100 / .06345

= 71.07 %

Moles of hexene used = .0451 moles

How many degrees along its orbit does the Moon travel between new moons?

Answers

Answer:

The moon orbits quite fast: it moves about 0.5 degrees per hour in the sky. In 24hrs it moves 13 degrees. the moons observed motion eastward results from its physical motion of the moon along its orbit around the earth

Plz mark brainliest

What is another way scientists find planets being blocked by the light of a star?
PLEASE ANSWER!

Answers

Answer:

The Short Answer: All of the planets in ... Planets that orbit around other stars are called exoplanets. All of the ... So, astronomers use other ways to detect and study these distant planets.

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