Answer:
B) The family car
Explanation:
I hope this helps :)
Element X has two naturally occurring isotopes, 65X (isotopic mass 65.3410 amu, abundance 31.87%) and 67X (isotopic mass 66.9519 amu, abundance 68.13%). Calculate the atomic mass of element X.
Answer:
\(m_X=66.4385amu\)
Explanation:
Hello there!
In this case, according to the given information for this problem, it turns out possible for us to calculate the average atomic mass of the element by multiplying the mass of each isotope by its percent abundance and then add up the results, just as shown below:
\(65.3410amu*0.3187=20.8242amu\\\\66.9519amu*0.6813=45.6143amu\\\\m_X=20.8242amu+45.6143amu\\\\m_X=66.4385amu\)
Regards!
Which seasons in Atlanta GA have worst AQI
In Atlanta, GA, certain seasons are associated with poorer air quality due to various factors such as weather conditions, human activities, and geographical location.
Typically, the seasons with the worst AQI in Atlanta, GA, are summer and early fall. This is primarily due to the combination of high temperatures, stagnant air masses, and increased pollution from various sources.
During the summer months, Atlanta experiences hot and humid weather, which can contribute to the formation of ground-level ozone. Ozone is a harmful pollutant that is created when pollutants from vehicles, power plants, and industrial activities react with sunlight and heat. High levels of ozone can cause respiratory issues and other health problems.
In addition to ozone, Atlanta also experiences increased levels of particulate matter (PM) during the summer and early fall. PM refers to tiny particles suspended in the air, which can come from sources such as vehicle exhaust, industrial emissions, and wildfires.
These particles can be inhaled into the lungs and can have detrimental effects on respiratory health.
It's important to note that air quality can vary from year to year and is influenced by various factors. Local regulations, weather patterns, and changes in pollutant emissions can all impact the AQI during different seasons.
Monitoring air quality reports and taking necessary precautions such as reducing outdoor activities during times of poor air quality can help individuals stay informed and protect their health.
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Name 3 things in your home that involve chemical energy?
Batteries, natural gas, and coal are all chemical energy
Other than the starting material, 2-methylcyclohexanol, what base or bases are present in the dehydration reaction mixture to participate in proton transfers?
a) H2PO4- only
b) H2O and H2PO4-
c) H2O and HSO4-
d) H2O only
Answer:
c) H2O and HSO4-
Explanation:
The dehydration of 2-methylcyclohexanol occurs in the presence of H2SO4. Recall that acids are proton donors in solution; the equilibrium shown below is then set up,
H2SO4(aq) + H2O(l) ⇄H3O^+(aq) + HSO4^-(aq)
The species H2O and HSO4- are two proton acceptors in the system. According to the Brownstead- Lowry definition, a base is a proton acceptor in solution.
Hence H2O and HSO4- are bases present in the dehydration of 2-methylcyclohexanol.
what reaction involving atp releases a large amount of energy?
Answer: ATP hydrolysis
Explanation:
hope this helps<3
NEED HELP ASAP PLEASE AND TY
The synthesis of the ATP takes place in the organelle known as the mitochondrion. Therefore, option (A) is correct.
What is mitochondrion?Mitochondrion can be described as the membrane-bound organelles in the cytoplasm of all eukaryotic cells, that synthesize adenosine triphosphate (ATP), the main energy source used by the cell.
It is also known as the “Powerhouse of the cell,” Mitochondrion is found inside the cytoplasm and essentially functions as the cell’s digestive system.
Mitochondrion plays a major role in breaking down nutrients and producing energy-rich molecules for the cell. Many of the biochemical reactions in cellular respiration occur within the mitochondria.
The mitochondrion's structure can be described as a double-membraned, rod-shaped structure found in both animal cells and plants.
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A solid is dissolved in a liquid, and over time a solid forms again. How can
you confirm the type of change that took place?
A. Testing the new solid to show that its properties are the same as
the starting solid would confirm that a physical change took
place.
B. The solid dissolving in a liquid is confirmation that a chemical
change took place.
C. The solid forming from the liquid is confirmation that a physical
change took place.
D. Showing that the total mass of the solid and liquid changed would
confirm that a chemical change took place.
Why is the wavelength of 633 nm used to analyze the standard solutions and drink samples?
Group of answer choices
The lower the wavelength, the blue solutions will absorb more light.
Corresponding with orange light, is the wavelength that blue solutions absorb the most.
Corresponding with blue light, is the wavelength that blue solutions absorb the most.
The higher the wavelength, the blue solutions will absorb more light.
Answer:
Corresponding with orange light, is the wavelength that blue solutions absorb the most.
Explanation:
When light is passed through a solution of a particular color, light of other wavelength or color, is absorbed and disappears, whereas the wavelength of light corresponding to the color of that solution is transmitted. The color of light absorbed the most is that which is complementary (opposite it in the color wheel) to the light which is transmitted. In a color wheel, blue is complementary to orange color, red is complementary to green and yellow is complementary to violet.
Therefore, in a blue substance (as in the blue solutions), there would be a strong absorbance of the complementary color of light, orange. Since the wavelength of orange color of light is between 600 - 640 nm, with maximum absorbance of orange light occurring around 633 nm, the wavelength of 633 nm is used to analyze the standard solutions and drink samples.
balance the equation
Answer:
Second answer may be 4Al +3O2 gives 2Al2O3
PLS ANSWER
if a gas is initially at 400L and 600K, then the temperature drops to 295K, what is the new volume?
A) 215 L
B) 305 L
C) 197 L
D) 150 L
The new volume is approximately 197 L. The correct option is C
How to determine the new volume ?
We can use the combined gas law, which relates the pressure (P), volume (V), and temperature (T) of a gas. The combined gas law states that:
(P1 x V1) / T1 = (P2 x V2) / T2
Where
P1, V1, and T1 are the initial pressure, volume and temperature P2, V2, and T2 are the final pressure, volume and temperatureIn this case, we know that the initial volume (V1) is 400 L and the initial temperature (T1) is 600 K. We want to find the final volume (V2) when the temperature (T2) drops to 295 K. We can assume that the pressure is constant.
Substituting these values into the combined gas law, we get:
(P1 x V1) / T1 = (P2 x V2) / T2
P1 and P2 are the same, so we can cancel them out:
V1 / T1 = V2 / T2
Substituting the values we know:
400 L / 600 K = V2 / 295 K
Solving for V2, we get:
V2 = (400 L / 600 K) x 295 K
V2 = 196.67 L
So, the new volume is approximately 197 L
Therefore the correct option is C
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The diagram below left shows a box containing gas molecules at 45 degrees Celsius and 1.25 atm pressure. The piston is free to move. Giving brainliest
The temperature and pressure of the left box is 250c (298 K), and 1 atm pressure.
How to solve thisThe right box is at standard temperature and pressure.
Standard temperature and pressure is 00c (273.15 K) and 1 atm.
Hence, the pressure is the same, therefore the position is piston will be the same as the left figure.
At constant pressure, volume is directly proportional to absolute temperature.
\(V \propto T .\)
Now, as the temperature at the right box is less than 250c that of the left box, hence the volume decreases significantly.
The arrangement of molecules in the right box will be closer.
A diagram of the right box is given below.
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What is the number of electrons in an atom that has 26 protons and 30 neutrons?
Answer:
26
Explanation:
The number of electrons and protons are equal.
Solve. List your answer in scientific notation and use sig figs.
(3.2 x 10^-4)/(1.4 x 10^8)
How can knowledge of separating mixtures help you in daily life and within society? Answer below.
Answer:
I can say that knowledge of separating mixtures can help us in daily life and within society in the following ways:
1. Purification of water: Separation techniques are used to purify water for drinking and industrial purposes. It is essential to remove impurities from water to prevent diseases.
2. Recycling: Separation techniques are used to separate materials for recycling. This helps reduce the amount of waste in landfills and helps conserve resources.
3. Food industry: Separation techniques are used in the food industry to separate unwanted particles from food products. This helps ensure that the food we eat is safe and free from contaminants.
4. Medicine: Separation techniques are used in the pharmaceutical industry to separate and purify chemicals for use in medicine. This helps ensure that medicines are safe and effective.
5. Environmental protection: Separation techniques are used to remove pollutants from the environment. This helps protect our natural resources and prevent pollution-related health problems.
6. Oil and gas industry: Separation techniques are used to separate crude oil and natural gas into their various components. This helps in the production of energy and other useful products.
In summary, knowledge of separating mixtures is essential in our daily lives and within society. It helps ensure that we have access to safe and clean water, food, medicine, and energy, and also helps protect the environment.
Explanation:
According to Figure 25-2, is the Sun brighter than white dwarfs? 100 pointws will mark brainliest
Answer:
the sun is more brighter than white dwarfs
because of above reason.
Answer:
yes
Explanation:
That is exactly what Edge says. Just yes
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Question 2 of 19
In the combustion of hydrogen gas, hydrogen reacts with oxygen from the air to form water vapor.
hydrogen + oxygen —— water
If you burn 53.0 g of hydrogen and produce 474 g of water, how much oxygen reacted?
mass of oxygen:
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9:27 A
4/25/2
Answer:
hydrogen + oxgen = nitrogen
SOMEONE HELP ME
1. How many grams of C are present in 4.86 grams of carbon dioxide
?
grams C.
2. How many grams of carbon dioxide contain 1.73 grams of O ?
grams carbon dioxide.
Answer:
1. 1.33 gram of carbon
2. 2.38g of carbon dioxide
Explanation:
From the given information:
Total amount of CO₂ = 4.86 grams
Atomic mass of C = 12 g/mole
molar mass of CO₂ = 44 g/mole
∴
The mass of the Carbon (C) in grams is:
\(= Total\ amount \ of \ CO_2 \times \dfrac{12 \ g/mol}{44 \ g/mol}\)
\(= 4.86 \ g \times \dfrac{12 \ g/mol}{44 \ g/mol}\)
= 1.33 gram of carbon
2.
Here, the total amount of CO₂ = unknown
Atomic mass of O₂ = 32 g/mole
molar mass of CO₂ = 44 g/mole
amount of oxygen = 1.73 g
∴
The mass of CO₂ = \(Total \ amount \ of \ O_2 \times \dfrac{44 \ g/mol}{32\ g/mol}\)
\(=1.73 \times \dfrac{44 \ g/mol}{32\ g/mol}\)
= 2.38 g of carbon dioxide
If your equation includes 7(CrO4)2, how many Cr's are there?
If your equation includes 7(CrO4)2, how many O's are there?
If an equation includes 7(CrO₄)₂, the numbers of Cr's and O's atoms that are there are 14 and 56 respectively.
How to calculate number of atoms?The number of atoms present in a chemical compound can be calculated by multiplying the subscript of the particular element by any coefficient.
According to this question, 7 moles of chromate with the chemical formula; (CrO₄)₂ is given. The number of oxygen and chromium atoms in this compound can be calculated as follows:
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1. Write the IUPAC names for the following 1.1 1.2 N 1.3 O NO2 x Y ·0 OH 5
1. The IUPAC name of N is nitrogen.
2. Nitrogen dioxide
3.The IUPAC name of O is oxygen
4.The IUPAC name of OH is hydroxyl.
The IUPAC name of ·0 is a radical. It is commonly found in organic chemistry and plays an important role in many reactions.
IUPAC names for the given compounds are:1.1. N: Nitrogen
The IUPAC name of N is nitrogen.
It is a non-metal and belongs to group 15 in the periodic table. It has an electronic configuration of 1s2 2s2 2p3.1.2. NO2: Nitrogen dioxide
Explanation: NO2 is a chemical compound that is formed by the combination of nitrogen and oxygen. It is a reddish-brown gas that has a pungent odor.
The IUPAC name of NO2 is nitrogen dioxide.1.3. O: Oxygen
Explanation: The IUPAC name of O is oxygen.
It is a non-metal and belongs to group 16 in the periodic table. It has an electronic configuration of 1s2 2s2 2p4.
X: UnknownExplanation: No IUPAC name can be given to an unknown compound as the structure and composition are not known.
Y: Hydroxyl Explanation: The IUPAC name of OH is hydroxyl.
It is a functional group that is composed of an oxygen atom and a hydrogen atom (-OH). It is commonly found in alcohols and phenols. ·0: RadicalExplanation: A radical is a molecule or an ion that contains an unpaired electron.
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Note: The complete question is given below
Provide the IUPAC names for the following compounds:
\(CH_3CH_2CH(CH_3)CH_2CH_2CH_2CH_3\)
C6H5CH(CH3)2
H2NCH2CH2CH2CH2CH2NH2
CH3CH2CH2CH2CH2OH
CH3CH2CH2CHOHCH3
How many moles are in 1459 grams of Na
Answer:
24.3 but you can go smaller
the basicity of tetraoxosulphate vi acid is 2 explain this statement with an equation showing the reaction between the acid and potassium hydroxide
The balanced chemical equation for the reaction is: H2SO4 + 2KOH → K2SO4 + 2H2O. It can be concluded that the basicity of tetraoxosulphate VI acid is 2.
The basicity of tetraoxosulphate VI acid is 2. The term "basicity" is used to describe the number of replaceable hydrogen atoms in an acid molecule. Tetraoxosulphate VI acid, also known as sulfuric acid (H2SO4), contains two hydrogen atoms that can be replaced by a metal or base, hence its basicity of 2. This means that two molecules of a base or metal hydroxide are required to neutralize one molecule of sulfuric acid. This can be represented by the following chemical equation: H2SO4 + 2KOH → K2SO4 + 2H2OThe reaction between sulfuric acid and potassium hydroxide (KOH) can be used to illustrate the basicity of tetraoxosulphate VI acid. When sulfuric acid is mixed with potassium hydroxide, the reaction produces potassium sulfate (K2SO4) and water (H2O). Since sulfuric acid has a basicity of 2, two molecules of potassium hydroxide are needed to react with one molecule of sulfuric acid.For more such questions on chemical
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If 25.82 mL of 0.0500 M NaOH solution are required to reach the equivalence point of an acid-base titration of 40.0 mL of 7-Up, how many moles of NaOH were required?
If 25.82 mL of 0.0500 M NaOH solution are required to reach the equivalence point of an acid-base titration of 40.0 mL of 7-Up, the number of NaOH required is 0.00126 moles.
What is equivalence point?The point at which chemically identical amounts of reactants are put together is known as the equivalence point in a chemical reaction.
In other words, during titration, it is the point at which the titrant addition is sufficient to totally neutralize the analyte solution. The number of moles of a solution with an unknown concentration is equal to the number of moles of a titrant, or standard solution. Because it is a point where the amount of acid and base required to neutralize a solution is equal, it is often referred to as the stoichiometric point. It should be noted that the acid to base ratio need not be 1:1. The balanced acid-base chemical equation explains this acid-base ratio. For this, indicators might be used, for example, phenolphthalein or methyl orange.
The reaction between citric acid and NaOH is,
H₃C₆H₅O₇(aq) + 3NaOH(aq) → Na₃C₆H₅O₇(aq) + 3H₂O(l)
According to the formula,
M = \(\frac{n}{V}\)
where,
M is the molarity,
n is the number of moles and,
V is the volume(L)
For NaOH;
M = 0.0500 M
V = 25.82ml = 0.02582 l
n = M × V
n = 0.00126 moles
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How many liters of carbon dioxide can be produced if 37.8 grams of carbon disulfide react with excess oxygen gas at 28.85 degrees Celsius and 1.02 atmospheres?
CS2(l) + 3O2(g) yields CO2(g) + 2SO2(g)
2.78 liters
5.95 liters
12.1 liters
11.9 liters
The volume of carbon dioxide produced is approximately (d) 11.9 liters.
To determine the amount of carbon dioxide (C\(O_2\)) produced when 37.8 grams of carbon disulfide (C\(S_2\)) reacts with excess oxygen gas (\(O_2\)), we need to use stoichiometry and the given balanced chemical equation:
C\(S_2\)(l) + 3\(O_2\)(g) → C\(O_2\)(g) + 2S\(O_2\)(g)
First, we calculate the number of moles of C\(S_2\) using its molar mass:
Molar mass of (C\(S_2\)) = 12.01 g/mol (C) + 32.07 g/mol (S) × 2 = 76.14 g/mol
Number of moles of (C\(S_2\)) = mass / molar mass = 37.8 g / 76.14 g/mol ≈ 0.496 mol
From the balanced equation, we can see that the stoichiometric ratio between (C\(S_2\)) and C\(O_2\) is 1:1. Therefore, the number of moles of C\(O_2\) produced will also be 0.496 mol.
Now we can use the ideal gas law to calculate the volume of C\(O_2\) at the given temperature and pressure. The ideal gas law equation is:
PV = nRT
where P is the pressure, V is the volume, n is the number of moles, R is the ideal gas constant (0.0821 L·atm/mol·K), and T is the temperature in Kelvin.
Converting the temperature from Celsius to Kelvin:
T(K) = 28.85°C + 273.15 = 302 K
Using the ideal gas law:
V = nRT / P = (0.496 mol) × (0.0821 L·atm/mol·K) × (302 K) / (1.02 atm) ≈ 11.9 L
The correct answer is 11.9 liters.
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It is the kind of interaction in which both organisms benefit from each other. *
Answer:
Mutualism
Explanation:
An experiment was performed under identical conditions as yours. The absorbance of the penny solution was recorded as 0.219 absorbance units. A calibration plot of absorbance vs. concentration of Cu(II) (M) yielded the following trendline equation:
y= 11.589x - 0.0002
Required:
What is the concentration (mol/L) of the penny solution?
Answer:
Concentration C = 0.0189 mol/L
Explanation:
From the given information:
Let consider the formula used in calculating the concentration according to Beer's law:
\(\mathtt{A =\varepsilon \times L \times C}\) --- (1)
here;
A = absorbance
ε = coefficient of molar absorptivity
L = path length
C = concentration (mol/L)
Also, from Beer law plot:
y = mx+b
where,
y represent absorbance A
b represents intercept
m represents the coefficient of molar absorptivity ε
and x represents the concentration(C).
replacing the substituted entities
A = ε × C + b ---- (2)
Making the concentration the subject of the above formula:
\(C = \dfrac{A-b}{\varepsilon}\)----(3)
From y = 11.589x - 0.0002
A = 11.589 *C - 0.0002
Given that:
A = 0.219
∴
0.219 = 11.589 *C - 0.0002
0.219 + 0.0002 = 11.589 *C
C = 0.2192/11.589
C = 0.0189 mol/L
How many liters of a 0.200 M sodium cyanide solution would be needed to react with 45.0kg of rocks that contain 2.00% by mass of gold?
There are 91.84L of a 0.200 M sodium cyanide solution would be needed to react with 45.0kg of rocks that contain 2.00% by mass of gold
Percentage weight by weightThe formula for % w/w is mass of solute /mass of solution*100
Substituting the values in the equation
2%= mass of solute/45000 *100
mass of solute= 2*45000/100
mass of solute = 900 gram
Now, to calculate the volume we use the molarity given
molecular weight of sodium cyanide is 49 g/mol
Molarity= mass of solute/molecular mass *volume
0.2=900/49* volume
volume= 900/49*0.2
volume= 91.84 liter
The mass percentage of a solute in solution is the percent concentration of a substance (solute) in solution when it is stated as 'w/w'. This phrase is frequently used when the solute and solution are weighted.
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Helppppppp
Unit 6: Balancing Equations and Simple Stoichiometry
6.06: Stoichiometry Practice Worksheet
This worksheet is worth 10 points. For problems 5-7 make sure to show your work using the factor-label method (Please circle or highlight your answers). Also, please round answers to the correct number of significant figures.
Answer:
Q5. 16.3g
Q6. 18.9g
Q7. 43.3g
Explanation:
Knowledge required to answer the questions:
1. The mass in 1 mole of a chemical substance in grams is equal to the formula mass of the substance
2. The equation: m = n × Mr, where m = mass (in g), n = number of moles (in mol) and Mr = formula mass (i.e. the sum of the atomic mass of all the atoms in the chemical substance)
3. The ratio of moles of each chemical substance in a reaction is according to the balanced equation
Question 5:
HBr + KHCO₃ → H₂O + KBr + CO₂
According to principle 2, find the number of moles of HBr using the given mass and the calculable Mr;
The Mr will be the sum of the atomic mass of each atom in the chemical compound, these atomic masses can be found on the periodic table:
HBr Mr = 1 + 79.9
HBr Mr = 80.9
If m = n × Mr, then n = m/Mr;
n = 30/(80.9)
n = 0.370828183
According to principle 3, and the balanced reaction equation, we can see the ratio of HBr to the CO₂ is 1:1;
In other words, 1 mol of HBr will react with 1 mol of KHCO₃ to produce 1 mol of H₂O, 1 mol of KBr and 1 mol of CO₂;
So, if you start with 30g or 0.37... moles of HBr, this will react with 0.37... moles of KHCO₃ to produce 0.37... moles of H₂O, 0.37... moles of KBr and 0.37... moles of CO₂;
Now, we simply have to use the equation from principle 2 to get the mass;
CO₂ Mr = 12 + 2(16)
Notice how you need to add (2 × 16) since CO₂ has two oxygen atoms
CO₂ Mr = 44
m = 0.37... × 44+
m = 16.3164401 ⇒ 16.3g
If the number of moles of reagents does not match up with the ratio illustrated in the balanced equation, then one will be the limiting reagent and the other or others would be in excess;
Using this principle and the method used previously, you could solve the questions 6 and 7;
I won't explain in full these questions, but will give the answers:
Question 6:
2 NaOH + H₂SO₄ → 2 H₂O + Na₂SO₄
NaOH m = 150
NaOH Mr = 23 + 16 + 1 = 40
m = n * Mr
n = 40/150 = 0.2666..
NaOH : Na₂SO₄
2 : 1
Na₂SO₄ n = 0.26.../2 = 0.1333...
Na₂SO₄ Mr = 2(23) + 32.1 + 4(16) = 142.1
m = 0.1333... * 142.1 = 18.946... ⇒ 18.9g
Question 7:
Pb(SO₄)₂ + 4 LiNO₃ → Pb(NO₃)₄ + 2 Li₂SO₄
Li₂SO₄ m = 350
Li₂SO₄ Mr = 2(6.9) + 32.1 + 4(16) = 109.9
Li₂SO₄ n = 109.9/350 = 0.314
Li₂SO₄ : LiNO₃
2 : 4 simplifies to:
1 : 2
LiNO₃ n = 0.314 × 2 = 0.628
LiNO₃ Mr = 6.9 + 14 + 3(16) = 68.9
LiNO₃ m = 0.628 × 68.9 = 43.2692 ⇒ 43.3g
PLSS HELP!!!
A student determines the density of a metal by taking two cylinders of equal mass and volume. Cylinder A is filled with mercury and the metal. The mercury and metal together have a mass of 92.60 g. Cylinder B is filled only with mercury. The mass of the mercury in cylinder B is 52.6 g more than the mass of mercury and metal in cylinder A. What is the density of the metal? The density of mercury is 13.6g/cm3.
The density of the metal is 10.34g/\(cm^{3}\).
What is density ?ρ1/ρ2 = m1/m2
13.6/ρ2 = 52.6/40
ρ2 = 10.34g/\(cm^{3}\)
The definition of density is the mass of a material per unit of volume. The Latin letter D may also be used, however the sign is most usually employed to denote density. The mathematical formula for density is mass divided by volume: show manner frac = rho mV. where V is the volume, is the density, and m is the mass.
By dividing the mass by the volume of an item or material, the density is determined. To calculate density, use the following equation: Mass divided by volume is the definition of density. If something is both heavy and tiny, it is dense. An item has a low density if it is light and large in size.
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spent lead-acid batteries are exempt from hazardous waste regulations if they are: a. stacked recycled b. thrown away c. stored outside
Answer:
It’s A
Explanation: they stack the waste batteries and then recycle it
An equilibrium mixture contains 0.250 mol of each of the products (carbon dioxide and hydrogen gas) and 0.200 mol of each of the reactants (carbon monoxide and water vapor) in a 1.00 L container.
CO(g)+H2O(g)↽−−⇀CO2(g)+H2(g)
How many moles of carbon dioxide would have to be added at constant temperature and volume to increase the amount of carbon monoxide to 0.300 mol once equilibrium has been reestablished?
Once equilibrium has been restored, we need to increase the amount of carbon monoxide to 0.300 mol by adding 0.343 mol of carbon dioxide at a fixed temperature and volume.
What makes up the equilibrium mixture?By measuring the rate of effusion through a pinhole, the composition of the equilibrium mixture (Cl2=2Cl), which is obtained at 1200 degrees Celsius, is ascertained. At 1.80 mm hg pressure, it is noted that the mixture emits 1.16 times more quickly than Krypton does at the same pressure.
The following is the expression for the reaction's equilibrium constant:
Kc = [CO2][H2] / [CO][H2O]
Do the equilibrium constant calculation:
Kc = [(0.250 mol/L)(0.250 mol/L)] / [(0.200 mol/L)(0.200 mol/L)]
= 1.5625 mol/L
The updated equilibrium concentrations of every species will be:
[CO2] = 0.250 + x mol/L
[H2] = 0.250 + x mol/L
[CO] = 0.300 mol/L
[H2O] = 0.200 + x mol/L
When we substitute these concentrations into the formula for the equilibrium constant, we obtain:
Kc = [(0.250 + x)(0.250 + x)] / [(0.300)(0.200 + x)]
Simplifying and solving for x, we get:
1.5625 = [(0.250 + x)(0.250 + x)] / [(0.300)(0.200 + x)]
4.6875(0.300 + x) = (0.250 + x)(0.250 + x)
1.40625 + 1.40625x = 0.0625 + 0.5x + x²
x² + 1.09375x - 1.34375 = 0
Using the quadratic formula, we get:
x = 0.343 mol
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