__N2O5+__H2O->__HNO3

What's the reaction?

Answers

Answer 1

Answer:

N₂O₅ + H₂O --> 2HNO₃

This reaction is a combination reaction

Explanation:

I find that making a table is an easy way to balance a table. The table would be something like this:

Reactants (left) Products (right)

N = 2 N = 1

O = 6 O = 3

H = 2 H = 1

The number next the symbol represents how many of atoms of that particular element are present.

The aim is to make the number of atoms of each element on the left side to be equal to the number of atoms of each element on the right side. As we can see, there are 1 more nitrogen than on the right, 3 more oxygen than on the right and 1 more hydrogen than on the left.

So to make the numbers of atoms of each element on right equal to the number of atoms of each element on the left, we have to add a number. This number CANNOT be a subscript number because that would change the reaction.

We can add a 2 in front of the product (this is because there are less atoms in the right side of the equation).

N₂O₅ + H₂O --> 2HNO₃

This means there are now two HNO₃ molecules so every atom in this molecule is basically multiplied by 2. So 1 nitrogen atom becomes two (1 × 2 = 2), 3 oxygen atoms become 6 (3 × 2 = 6) and 1 hydrogen atom becomes 2 (1 × 2 = 2). If we were to make a table again with the following equation - N₂O₅ + H₂O --> 2HNO₃, the table would be as so:

Reactants (left) Products (right)

N = 2 N = 2

O = 6 O = 6

H = 2 H = 2

Now the equation is balanced as we can see the number each type of atom is the same on the right and left side.


Related Questions

Which of the following is a reason that the pressure of a sample of gas at a constant volume would fall/decrease 75 mm Hg?​

Answers

Answer:

The temperature decreased.

Explanation:

Answer:

The temperature decreased. The air particles inside the tire increase their speed because their temperature rises.

Explanation: The combined gas law states that the pressure of a gas is inversely related to the volume and directly related to the temperature. If temperature is held constant, the equation is reduced to Boyle's law. Therefore, if you decrease the pressure of a fixed amount of gas, its volume will increase.

How much heat is required to convert 90. g of ice at -4.0 C to water vapor (steam) at 110 C

Answers

Answer:  How much heat is required to convert 29 g of ice at -4.0 ˚C to water vapor at 105 ˚C (report your answer to three significant figures)? Answer all five parts, showing your detailed calculations: i) Heat to warm ice from -4.0 to 0 oC: ii) Heat to convert ice to liquid: iii) Heat to warm liquid to boiling: iv) Heat to convert liquid to gas

Explanation:

e

Can someone help me with my homework, and show step by step so I can learn?

Answers

Answer:

Not sure.

Explanation:

Give me some time.

which pair of elements would form metallic bonds in a compound

Answers

Answer: Chlorine & Bromine

Explanation:

What is the volume of 7.25 g of oxygen gas at STP? 79.03 L 5.08 L 55.0 L O 2L 86 L​

Answers

98.382 L

This is tricky! But this is my awnswer! :) Hope it helps

Commercial agriculture can often lead to water-quality problems. In one to two sentences, explain how two of those problems occur.(2 points)

Answers

Commercial agriculture can often lead to water-quality problems in the following ways:

The washing of fertilizers and pesticides into water bodies from farms.

What is water quality?

Water quality refers to the state of a water body that encompasses it's physical, chemical and biological characteristics.

The water quality of a water body is crucial to its suitability for domestic or drinking purpose.

Commercial agriculture greatly affects water quality in the following ways:

The washing of fertilizers and pesticides into water bodies from farms.

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In the reaction 2 Na(s) + Br2 ---> 2 NaBr(s). the (s) stands for

Answers

Answer:

The s stands for the phase of that element or compound. The phase solid is represented by (s). In this problem it is saying solid sodium (Na) is reacting with Bromine (Br) gas to form sodium bromide.

Explanation:

The substance that dissolves the solute
A) Solubility
B) Solvent
C) Solute

Answers

Answer:

B) Solvent

Explanation:

The substance being dissolved is called the solute and the liquid doing the dissolving is called the solvent. In order for a substance to dissolve, the molecules of the solute need to interact with the molecules of the solvent.

QUESTION 10

_________________________________ is the major regulatory enzyme in glycolysis that catalyzes the irreversible phosphoryl transfer from ATP to fructose 6-phosphate.

A.
Enolase

B.
Phosphofructokinase-1

C.
3-phosphoglycerate kinase

D.
Aldolase

Answers

Answer:

B

Explanation:

Phosphofructokinase-1

Question 12 of 32
Which element has 5 valence electrons?
The Periodic Table
O A. Magnesium (Mg)
O B. Rubidium (RD)
O C. Arsenic (As)
O D. Boron (B)

Answers

Answer: Arsenic

Explanation:

Arsenic is in column 15 of the periodic table, which means that it has 5 valence electrons.

What is the speed of a sound wave that has a wavelength of 2 m and a frequency of 170.5 Hz?

Answers

Answer:

341m/s

Explanation:

because speed is given by the product of frequency and wavelength, so mathematically we can write ( v=f×lambda)... so in this case we can say speed=170.5×2= 341m/s

:.speed of the wave= 341m/s

How many moles of water would be used reacting with 500g of P4010? *
P20,0 + H2O → H, PO,
PO
4
4 10

Answers

Answer:

410

Explanation:

:)))))))))))))))))))))))))))))))

If a solution has 17.2 moles of LiF in 2000 mL of water, what is the molarity?

4.2 M

10 M

2 M

8.6 M

Answers

Molarity, M = (n x 1000) / vol (in ml)

M = 17.2 x 1000/ 2000

M = 8.6 mol/L

in the following reaction 10.5 moles of chromium are added to 6.8 moles of oxygen find limiting an excess reactants and answer the questions that follow.

Answers

Answer:

If 3.4 moles of carbon dioxide (CO2) form at the end of the reaction, 1.7 moles of oxygen gas

(02) and 3.4 moles of carbon monoxide (CO) entered the reaction

Explanation:

The rule of three or is a way of solving problems of proportionality between three known

values and an unknown value, establishing a relationship of proportionality between all of

them. That is, what is intended with it is to find the fourth term of a proportion knowing the

other three. Remember that proportionality is a constant relationship or ratio between different

magnitudes.

If the relationship between the magnitudes is direct, that is, when one magnitude increases, so

does the other (or when one magnitude decreases, so does the other), the direct rule of three

must be applied. To solve a direct rule of three, the following formula must be followed:

ab

cx

So

C*b

T =

a

In this case, it is possible to use the reaction stoichiometry of the reaction (that is, the

relationship between the amount of reagents and products in a chemical reaction) and the rule

of three to calculate the quantities of moles requested:

.

,

If by stoichiometry 2 moles of CO2 are formed by 1 mol of O2, if 3.4 moles of CO2 are

formed, how many moles of O2 are needed?

molesofo2 = 3.42

=

moles of O2=1.7 moles

• If by stoichiometry 2 moles of CO2 are formed by 2 moles of CO, if 3.4 moles of CO2 are

formed, how many moles of CO are needed?

molesof CO =

=

3.4*2

2

moles of CO=3.4

A gas has a pressure of 853.0 millibars at a temperature of 29.0 °C. If the volume is unchanged but the temperature is increased to 85.0 °C,
what is the new pressure of the gas?
=

Answers

The new pressure of the gas that initially have a pressure of 853.0 millibars at a temperature of 29.0 °C is 1011.17 millibars. Details about pressure can be found below.

How to calculate pressure?

The pressure of a given gas can be calculated using the following formula:

P1/T1 = P2/T2

Where;

P1 = initial pressure = 853.0 millibarsP2 = final pressure = ?T1 = initial temperature = 29°C + 273 = 302KT2 = final temperature = 85°C + 273 = 358K

853/302 = P2/358

358 × 853 = 302P2

305374 = 302P2

P2 = 305374 ÷ 302

P2 = 1011.17 millibars

Therefore, the new pressure of the gas that initially have a pressure of 853.0 millibars at a temperature of 29.0 °C is 1011.17 millibars.

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In a covalent bond between Cl and H, ( ) tends to attract electron density from the other element in the bond.

Answers

Answer:

Cl

Explanation:

In a covalent bond between Cl and H, (Cl) tends to attract electron density from the other element in the bond.

Chlorine is more electronegative than hydrogen. In general, elements towards the top-right of the periodic table are more electronegative. This is because these elements are desperate for a few more electrons to fill their outermost shell (and have a full octet). The more electronegative an element is, the more it wants electrons. As a result, highly electronegative atoms have a greater pull on the electrons in a covalent bond.

The hypothesis stated that the fraction of nuclei still radioactive after n half-life cycles should be 0.5n. How well does the regression equation support the hypothesis?

Answers

The regression equation supports the hypothesis by showing associations between sets of scientific data (in this case, half life cycle and radioactivity).

What is the regression equation?

The regression equation is a type of mathematical tool employed to determine the association between variables.

The regression equation can help to understand the relationships between independent and dependent variables.

In conclusion, the regression equation supports the hypothesis by showing associations between sets of scientific data.

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Answer:

Quite Strongly

Explanation:

Got it right 2022 edge

what property of water molecules is responsible for its high surface tension

Answers

Answer:

Hydrogen bonding

Explanation:

The periodic table is important"
Give three(3) reasons to support this statement?

Answers

Periodic table is important because it provides information, make easier to study and know about relationship between elements.

Why periodic table is important?

The periodic table is very important because it provides a huge amount of information about elements and their relationship to one another. The table can be used to know about the properties of elements.

So we can conclude that periodic table is important because it provides information, make easier to study and know about relationship between elements.

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2.7g of aluminum metal is placed into solution hydrochloric acid to form aluminum chloride and hydrogen gas.
A). Find the mass of the obtained aluminum chloride.

B). Find the volume of the obtained hydrogen gas at STP.

Given: Al=27, H=1, Cl=35.5, at STP: 2g of H2 contain volume 22.4L

Answers

Explanation:

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The whistle of a teakettle has a greater frequency than a drumbeat. True or false and why

Answers

Answer:

how was enacting the GI bill Like teaching someone how to fish


At equilibrium, the total amount of the product(s)

a.is always equal to the total amount of the reactants.

b. is always greater than the total amount of the reactants.

c.is always less than the total amount of the reactants.

d. may be equal to, greater than, or less than the total amount of the reactants.

Answers

Answer: D may be equal to, greater than, or less than the total amount of the reactants.

Explanation:

Answer:

The answer is option D

Explanation:

At equilibruim, the total amount of the products may be equal to, greater than, or less than the total amount of reactants.

The intermolecular forces that exist between the molecules of H₂O is...​

Answers

Answer: hydrogen bonding

Explanation:

When hydrogen atoms bond with oxygen atoms, there is hydrogen bonding.

4. CO2 +NH3 →OC(NH2)2 2 +H2O
How do you make this balanced

Answers

Answer:

I think what you are looking for is below

Explanation:

CO2 + 2 NH3 →  (NH2)2CO + H2O

Molecular shape of the CF2Cl2 molecule

Answers

Answer:

Tetrahedral

Explanation:

Because there is one central atom (C) and 4 surrounding atoms, you can assume that the molecular shape is tetrahedral. However, it is important to add the valence electrons and assign them to each of the atoms to make sure there are no double/triple bonds or lone pairs. This could change the shape.

C = 4 v.e.

F = 7 v.e.

Cl = 7 v.e.

4 + 2(7) + 2(7) = 32 total valence electrons

There are 6 lone pairs around each outer atom and two electrons in each bond.

(6 electrons x 4 outer atoms) + (2 electrons x 4 bonds between atoms) = 32 electrons

This adds up to the total valence electrons. Carbon wants 8 valence electrons. This is satisfied by the 4 bonds between it and the outer atoms. The outer atoms want 8 valence electrons as well. This is satisfied by the 6 electrons (in the form of lone pairs) and 1 bond between them and carbon.

How many moles is 8.7 x 1027 atoms of Helium?

Answers

Answer:

14500.

Explanation:

1) Avlgadro's number is 6.022*10²³;

2) 1 mol is 6.022*10²³ atoms of Hellium, then 8.7*10²⁷ atoms is

[tex]3) \ \frac{87*10^{26}}{6*10^{23}}=14.5*10^3=14500[moles].[/tex]

Part 1. A chemist reacted 15.0 liters of F2 gas with NaCl in the laboratory to form Cl2 and NaF. Use the ideal gas law equation to determine the mass of NaCl that reacted with F2 at 280. K and 1.50 atm.

F2 + 2NaCl → Cl2 + 2NaF

Part 2. Explain how you would determine the mass of sodium chloride that can react with the same volume of fluorine gas at STP.

Answers

From the calculation and the data provide, the mass of NaCl is about 115 g.

What is reaction?

The term reaction refers to the combination of two or more substances to yield a product.

The equation of the reaction is; F2 + 2NaCl ----->Cl2 + 2NaF

Number of moles of F2 reacted is obtained from;

PV = nRT

n = PV/RT

n =  1.50 atm. * 15.0 l/0.082 atmLK-1mol-1 * 280

n = 22.5/22.9

n = 0.98 moles

If 1 mole of F2 reacts with 2 moles of NaCl

0.98 moles of F2 reacts with 0.98 moles * 2 moles/1 mole

= 1.96 moles

Mass of NaCl = 1.96 moles * 58.5 g/mol = 115 g

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The Keq for the decomposition of hydrogen iodide to form hydrogen and iodine as follows

2HI(g)

H2(g) + I2(g)

is 1.6 x 10–4. If the concentration at equilibrium of H2 and I2 are each 2 x 10–3 M, what is [HI]?

Answers

The equilibrium constant (Keq) is given for the reversible reactions. The concentration of hydrogen iodide will be 1.58 M.

What is Keq?

The equilibrium constant (Keq) is the proportion of the ratios of the concentration of the products to the reactants.

The balanced chemical reaction is shown as:

2HI  ⇔ H₂ + I₂

The equilibrium expression for the reaction can be given as:

Keq = [H₂] [I₂] / [HI]²

Given,

Equilibrium constant = 1.6 × 10⁻⁴

Concentration of dihydrogen = 2  × 10⁻³ M

Concentration of iodine = 2 × 10⁻³ M

The concentration of hydrogen iodide is calculated as:

1.6 × 10⁻⁴ = [ 2  × 10⁻³ M][2  × 10⁻³ M] ÷ [HI]²

[HI]² = 4  × 10⁻⁶ ÷ 1.6 × 10⁻⁴

= 2.5 M

[HI] = 1.58 M

Therefore, 1.58 M is the concentration of hydrogen iodide.

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When studying the immune system in class, Peta concluded that T-cells are more specific to the pathogen than inflammation is.

What did Peta most likely learn that led to this conclusion?

T-cells are made to identify antibodies, while inflammation starts a fever.
T-cells are made to identify antigens, while inflammation starts to make antibodies.
T-cells make antibodies that cause a fever, while inflammation identifies antigens on the pathogens.
T-cells are made to identify antigens, while inflammation fights anything in the affected area.
Mark this and return

Answers

Answer:

T-cells are made to identify antigens, while inflammation fights anything in the affected area.

Explanation:

virus antigen on an infected cell fits into the Killer T-cell receptor

T-cell releases perforin and cytotoxins.

Perforin first makes a hole infected cell membrane

Cytotoxins go inside the cell through this hole, destroying it and any viruses inside

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How many ions are in 0.5 moles of NaCl?

Answers

Explanation:

Step 1: Write out the chemical formula of the compound.

Magnesium Chloride = MgCl^2

Step 2: Convert moles into number of compounds using Avogadro's number

0.5 moles MgCl^2 ⋅(6.022⋅10^23 - 1 mole MgCl^2)= 3.011⋅ 10^23

                               

Step 3: Determine how many Chloride ions there will be in 1 compound

There will be 2 Cl− ions in each compound (Cl^2 part)

Step 4: Multiply the number from Step 2 by the number in Step 3

3.011 ⋅ 10^23 ⋅ 2= 6.022 ⋅ 10^23

We do this because the ratio is 2 Cl− ions for every 1 compound.

In the case of finding how many ions in general (both sodium and chloride), we would multiply by 3 because there are 3 ions per 1 compound.

I hope this helped!

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