According to LOCO mass, the mass of reactants and products are what?

Answers

Answer 1

Answer:

Equal

Explanation:

According to the law of conservation of mass, the mass of the products in a chemical reaction must equal the mass of the reactants.


Related Questions

A sample of 10.5g of Nirtogen reacts with 20.2g of Hydrogen to produce ammonia.
3H2(g)+N2(g)=2NH3(g)
a. What is the theoretical yield of ammonia?
b. What is the limiting reactant?
c. What is the excess reactant?
d. How much is the excess reactant?
e. If 4.1 g of ammonia is actually produced, what is the precent yield?​

Answers

Answer:

Explanation:

a) The mass of the reactants is 10.5 + 20.2 = 30.7, so the theoretical yield of ammonia is also 30.7 grams (by the law of conservation of mass)

b) The gram-formula mass of diatomic nitrogen is about 28.014 g/mol, so 10.5 grams of nitrogen is 10.5/28.014 = 0.37 moles. In comparison, the gram-formula mass of diatomic hydrogen is about 2.016 g/mol, so 20.2 grams of hydrogen is about 20.2/2.016 = 10.0 moles. Dividing this by 3, we get 3.33 moles. So, nitrogen is the limiting reactant.

c) Hydrogen

d) 0.37 moles of nitrogen is consumed, so (0.37)(3) = 1.11 moles of hydrogen is consumed. This means that 3.33-1.11=2.22 moles of hydrogen are remaining, which has a mass of (2.22)(2.016)=4.47 grams.

e) (actual)/(theoretical) * 100 = (4.1)/(30.7) * 100 = 13%

PLEASE HELP NEED ANSWER QUICK
An evacuated cylinder has a volume of 50 liters. If 20 liters of nitrogen gas and 20 liters of oxygen gas are pumped into this evacuated cylinder, how much of the cylinder is filled with the two gases? (3 points)
Only 80 percent because only 40 out of 50 liters are used.
The entire container because gases will expand to fill it.
Only 80 percent because of the low molecular weight of the two gases.
The entire container because of the low molecular weight of the two gases.

Answers

Answer: The entire container because gases will expand to fill it.

Explanation:

2.00 L of 0.800 M NaNO3 must be prepared from a solution known to be 2.50 M in concentration.How many mL are required? Plus don't send me virus links!!!! pls explain how to do it​

Answers

Answer:

1.36 × 10³ mL of water.

Explanation:

We can utilize the dilution equation. Recall that:

[tex]\displaystyle M_1V_1= M_2V_2[/tex]

Where M represents molarity and V represents volume.

Let the initial concentration and unknown volume be M₁ and V₁, respectively. Let the final concentration and required volume be M₂ and V₂, respectively. Solve for V₁:

[tex]\displaystyle \begin{aligned} (2.50\text{ M})V_1 &= (0.800\text{ M})(2.00\text{ L}) \\ \\ V_1 & = 0.640\text{ L} \end{aligned}[/tex]

Therefore, we can begin with 0.640 L of the 2.50 M solution and add enough distilled water to dilute the solution to 2.00 L. The required amount of water is thus:
[tex]\displaystyle 2.00\text{ L} - 0.640\text{ L} = 1.36\text{ L}[/tex]

Convert this value to mL:
[tex]\displaystyle 1.36\text{ L} \cdot \frac{1000\text{ mL}}{1\text{ L}} = 1.36\times 10^3\text{ mL}[/tex]

Therefore, about 1.36 × 10³ mL of water need to be added to the 2.50 M solution.

Easy question
Who is the youngest in ateez

Answers

Answer: jongho

Explanation:

Answer:

Choi JongHo

Explanation:

what is the molarity of a solution that contains 1.25 moles of K2SO4 dissolved into water to make 1.5 liters of solution?

Answers

Answer: 0.8 M

Explanation:

molarity = (moles of solute)/(liters of solution) = 1.25/1.5 = 0.8 M

Which of the following statements is correct for precipitation
reaction?

A. All the products must be insoluble.
B. At least one of the products is insoluble.
C. All the reactants must be insoluble.
D. At least one of the reactants must be insoluble.

Answers

Answer:

B. At least one of the products is insoluble.

Explanation:

Precipitation reaction :

A chemical reaction occurring in an aqueous solution where two ionic bonds combine, resulting in the formation of an insoluble salt. These insoluble salts formed in precipitation reactions are called precipitates.

2C₂H₂(g) + 5O₂(g) —> 4CO₂(g) +2H₂O(g)

b. How many moles of H₂O are produced when 64.0g C₂H₂ burns in oxygen?

Answers

I think it’s 2.46 moles of H2O, unless the ‘burns in oxygen’ is relevant to the equation. i hope this helps.

64.0g C2H2 X 1 mol C2H2 over 26.04g C2H2 X 2 mol H2O over 2 mol C2H2

The first step of the equation is a basic diversion factor showing that for ever C2H2, there’s one mole. I got the number 26.04 grams of C2H2 by calculating their combined mass. To do that, I added them from the periodic table for and multiplied it by the amount of each that I had. Which was displayed as 12.01(2) + 1.01(2)

The second step to the equation is the mole conversion factor. In this step, I took the number of moles from the equation. That just shows that for every 2 moles of C2H2, there will be 2 moles of H2O.

After setting it up, you can ignore any ones in the problem as they won’t make any difference in the answer. And since, in this equation, the moles in the mole conversion factor are equal, you may ignore those too as they will divide down to one and not have any significance.

Now, to find the answer I divided 64.0g C2H2 by 26.04g C2H2 since everything else cancelled out. It equals 2.457757296 moles of H20. But, to get get credit for the sig-figs, you’ll have to change the numbers before submitting.

The beginning number has three placements (64.0) so the answer must also have three. If we look at the long decimal we got in the calculator, we can go over three and round the last number either up or down depending on the fourth number.

Calculate the volume occupied by 56. 5 g of argon gas at stp.

Answers

Answer:

39.95 hope this helps

Explanation:

According to the brønsted–lowry definition of acids-base reaction, acids have the ability to.

Answers

Answer:

gain, or accept, a hydrogen cation

Explanation:

Hope this helps! :)

what is after gallium on the periodic table?

Answers

Answer:

Germanium or Ge

Explanation:

It is on the perioidic table. Gallium has an atomic number of 31 and Germanium has an atomic number of 32.

How/why do acids and bases different from weak acids and bases?

Answers

Answer:

Weak acids and bases are less than 100% ionized in aqueous solution

Explanation:

hope this helps

pls mark brainliest

Which term describes this reaction?

O addition
O condensation
O elimination
O substitution

Answers

Answer:

addition

Explanation:

I really don't know why

The diagram below shows the different phase transitions that occur in matter.


Three bars are shown labeled Solid, Liquid, and Gas. They are connected by arrows labeled 1 to 6. Arrow 1 points from liquid to gas; arrow 2 from solid to liquid, arrow 3 from solid to gas, arrow 4 from gas to liquid, arrow 5 from liquid to solid, and arrow 6 from gas to solid.

Which arrow would most likely represent the phase change that occurs when silver is poured into a mold and cools to become a solid bar?
1
3
4
5

Answers

Answer:

# 5

Explanation:

The question describes silver being "poured" into a mold and cools to become a solid bar. This is the phase of liquid to solid. When a element cools down below it's freezing points to become a solid.

Liquid to Solid Definition:

Freezing, or solidification, is a phase transition in which a liquid turns into a solid when its temperature is lowered to or below its freezing point. All known liquids, except helium, freeze when the temperature is low enough.

Where would you find ocean water with the most solar radiation?
Near the Equator
Near the South Pole
Near the Arctic Circle​

Answers

Answer:

The answer is Near the Equator.

Explanation:

Its near africa and africa is near the equator.

Answer:

near the equator

Explanation:

took the quiz its right for me

Where does most regular lightning occur?
A. The stratosphere

B. The troposphere

C. The Mesosophere

Answers

Answer:

the troposphere because we are living in atmosphere when the atmosphere next troposphere the sudden flashes of light and discharge resulting atmosphere condition sound waves of trambeling

thank you

________ can be made in small amounts by creating a chemical reaction through the mixing of pseudoephedrine with regular household items.

Answers

Synthetic cathinone can be made in small amounts by creating a chemical reaction through the mixing of pseudoephedrine with regular household items.

What is cathinone?

Cathinone is an alkaloid drug obtained from a shrub plant (Catha edulis) and is equivalent to Akovaz (ephedrine).

The cathinone can also be artificially designed by using a pseudoephedrine medical drug.

Synthetic cathinone can be artificially produced in order to obtain this substance for medical use.

Learn more about ephedrine here:

https://brainly.com/question/8947903

.How many grams of NaCl required to form a 500ml solution with a molarity of 0.5M , the molar mass of NaCl is 58.5g/mol?

Answers

The answer will be 14.625

A molecule that is _____ loses electrons, and a molecule that is _____ gains electrons. oxidized; reduced negative; positive reduced; oxidized weak; polar None of the other answer options is correct.

Answers

Answer:

Oxidized, and reduced

Explanation:

The acronym LEO, and GER may be helpful, or think of a specific example (such as a copper 2+ ion being reduced into copper).
Loose
Electron
Oxidization

Gain
Electron
Reduction

from this, we know that a molecule which looses electrons is being oxidized, and a molecule that gains electrons is being reduced.  

Elements strontium and beryllium sboth form a bond with fluorine with similar chemical formulas the similartiy in their formulas is due to:_________

Answers

Answer:

having the same number of valence electrons

Explanation:

Speed is defined as __________.


A) the change in position and direction over time

B) the change in acceleration over time

C) the change in velocity over time

D) the distance traveled over time

Answers

Answer:D)

Explanation: the distance traveled over time

how many sulfer is in h2s

Answers

Answer:

H2S is a hydride of sulfur while SO2 is an oxide of sulfur.

Explanation:

2. How many grams of CaCl₂ are needed to prepare 125 mL of a 2.00 M solution of aqueous CaCl₂(aq)?
(M, molarity)

Answers

Answer:

  The solution contains 0.50 mol or 55 g of CaCl2.

Explanation:

An atom of which element reacts with an atom of hydrogen to form a bond with the greatest degree of polarity?

A. carbon
B. fluorine
C. nitrogen
D. oxygen

Answers

Answer is b if wrong please tell me

A sample of CH3OH(g) is placed in the previously evacuated vessel with a pressure of P1 at 600 K. What is the final pressure in the vessel after the reaction is complete and the contents of the vessel are returned to 600 K

Answers

For a  sample of CH3OH(g) is placed in the previously evacuated vessel with a pressure of P1 at 600 K, the final pressure in the vessel is

Pt=3P1

What is the final pressure in the vessel after the reaction is complete and the contents of the vessel are returned to 600 K?

Generally, the Chemical reaction is given as

CH3OH----->CO +2H2

Therefore, The pressure P1 doubled at the product side of the reaction

In conclusion, the final pressure in the vessel at 600k

Pt=P1+P2

Pt=3P1

Read more about Chemical reaction

https://brainly.com/question/16416932

A balloon that can hold 85 L of air is inflated with 3.5 moles of gas at a pressure of 1.0 atmosphere. What is the temperature of the balloon?

Answers

Answer:

295.96 K    (  = 22.81 degrees C)

Explanation:

PV = n RT    R = .082057 L-Atm / (K-Mol)     n = 3.5   P = 1 atm    V = 85 liters

(1)(85) = 3.5 (.082057)(T)

solve for T = 295.96 K

When 20.00 mL of an unknown monoprotic acid is titrated with 0.125 M NaOH, it takes 15.00 mL to reach the endpoint. What is the molarity of the unknown acid?

Answers

Answer:

About 0.0940 M.

Explanation:

Recall that NaOH is a strong base, so it dissociates completely into Na⁺ and OH⁻ ions. Because the acid is monoprotic, we can represent it with HA. Thus, the reaction between HA and NaOH is:


[tex]\displaystyle \text{HA}_\text{(aq)} + \text{OH}^-_\text{(aq)} \longrightarrow \text{H$_2$O}_\text{($\ell$)} + \text{A}^-_\text{(aq)}[/tex]

Using the fact that it took 15.00 mL of NaOH to reach the endpoint, determine the number of HA that was reacted with:

[tex]\displaystyle \begin{aligned} 15.00\text{ mL} &\cdot \frac{0.125\text{ mol NaOH}}{1\text{ L}} \cdot \frac{1\text{ L}}{1000\text{ mL}} \\ \\ &\cdot \frac{1\text{ mol OH}^-}{1\text{ mol NaOH}} \cdot \frac{1\text{ mol HA}}{1\text{ mol OH}^-}\\ \\ & = 0.00188\text{ mol HA}\end{aligned}[/tex]

Therefore, the molarity of the original solution was:


[tex]\displaystyle \left[ \text{HA}\right] = \frac{0.00188\text{ mol}}{20.00\text{ mL}} \cdot \frac{1000\text{ mL}}{1\text{ L}} = 0.0940\text{ M}[/tex]

In conclusion, the molarity of the unknown acid is about 0.0940 M.

a. Two possible Lewis electron-dot diagrams for CO2 are shown above. Explain in terms of formal charges why diagram Z is the better diagram.
b. Identify the hybridization of the valence orbitals of the C atom in the CO2 molecule represented in diagram Z.

Answers

The carbon atom is SP hybridized while the oxygen atom is SP2 hybrized.

What are resonance structures?

The term resonance structures are those structures that can be used to explain the bonding in a molecule. Sometimes, a single structure is insufficient in explaining the structure of a compound.

Now looking at the two sturctures, Z is better because there are mo formal charges which make the molecle less stable unlike in X. In the CO2 molecule, the carbon atom is SP hybridized while the oxygen atom is SP2 hybrized.

Learn kire about hydridization of atoms: https://brainly.com/question/5637463

I have 0.445 L of a 1.8 M NaCl solution. If I boil away some water until the volume of the solution reaches 0.250 L, what will the new molarity of the solution become?

Answers

Answer:

3.2 M

Explanation:

M1V1=M2V2

1.8*.445=.801

.801/.25=3.204

Molarity = M2 = 3.2 M

Which is best supported by the data in the chart

Answers

Answer:

B

Explanation:

What type of heat transfer does not need to travel through matter?.

Answers

radiation - The other two ways are conduction and convection, both of which need matter to transfer energy.
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