Answer:
Ar effuses 1.37 times faster than Cl₂
Explanation:
The relative rate of effusion of two gases is given by the inverse ratio of the square root of their molar masses.
The molar mass of Ar is 39.95 g/mol
The molar mass of Cl₂ is 70.91 g/mol.
Therefore, the relative rate of effusion of Ar compared to Cl₂ can be calculated as follows:
Sqrt is the square root
sqrt(70.91)/sqrt(39.95) = 1.37
So, Ar effuses 1.37 times faster than Cl₂.
4 Fe(s)+3 O2(g) + 2 Fe2O3(s) HΔ= -1652 kJ
a. How much heat is released when 4.00 mol iron is reacted
with excess O 2?
b. How much heat is released when 1.00 mol Fe 2 O3 is produced?
c. How much heat is released when 1.00 g iron is reacted with
excess O 2?
The 20Δ heat is released when 4.00 mol iron is reacted with excess O 2, 12Δ heat is released when 1.00 mol Fe 2 O3 is produced, 7Δ heat is released when 1.00 g iron is reacted with excess O 2.
What is reaction ?
A chemical reaction is the transformation of one or more chemicals, known as reactants, into one or more new compounds, known as products. The change in concentration of any of the reactants or products per unit of time can be used to determine the rate or speed of a reaction. It is determined by the equation rate=time + concentration.
What is exothermic reaction ?
The exothermic reaction is spreading or eliminating energy to the surroundings. It is the reaction where the energy is released in the state of energy or heat. The reaction which releases heat is called an exothermic reaction; in simple words, it can state like that. In this reaction, the temperature will increase.
Therefore, 20Δ heat is released when 4.00 mol iron is reacted with excess O 2, 12Δ heat is released when 1.00 mol Fe 2 O3 is produced, 7Δ heat is released when 1.00 g iron is reacted with excess O 2.
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Laboratory procedures show that 50.0 g of sodium chloride yields
19.66 g of sodium and 30.33 g of chlorine upon decomposition.
The percent composition of chloride in sodium chloride is 66.60%.
The percent composition of sodium chloride can be calculated using the formula: Percent composition x 100%. In this case, the percent composition of chloride in sodium chloride is 66.60%, as given in the problem.
How can the percent composition of an element in a compound be determined experimentally?Percent composition of an element in a compound can be determined experimentally by performing a decomposition reaction and measuring the masses of the elements produced.
By using the law of conservation of mass, the mass of the original compound can be determined, and the percent composition of the element can be calculated.
What is the significance of percent composition in chemistry?Percent composition is an important concept in chemistry as it provides information about the relative abundance of elements in a compound. It can be used to calculate the empirical formula of a compound, which is the simplest whole number ratio of the atoms present.
The percent composition can also be used to predict the properties and behavior of a compound, such as its solubility and reactivity.
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what's the most efficient, high output, cost free, spontaneous (∆G = -ve) way to convert oxygen to carbon dioxide?
A process needs a negative change in free energy to be spontaneous. The relationship between the changes in enthalpy and entropy and the change in free energy is explained.
What distinguishes the letters G from G?Whereas delta G° refers to the standard Gibbs free energy under standard conditions, delta G alone refers to the change in Gibbs free energy under specific conditions.
Why does a spontaneous reaction have a negative Gibbs free energy?Declining energy and rising entropy interact to form combustion processes, which are what spontaneous reactions are. The reaction is random if the Gibbs Free Energy is negative; it is non-spontaneous if it is positive.
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Which of the following best defines crustal deformation? the constructive force of hot molten rock from the mantle that reaches Earth's surface, resulting in new landforms the outermost rocky layer of Earth the constructive force that moves sediments from one place and lays them to rest at another, forming landforms the constructive force that is the result of the edges of Earth's crust pushing and pulling against each other
The best definition of crustal deformation is that it is the constructive force that is the result of the edges of Earth's crust pushing and pulling against each other.
What is crustal deformation?Crustal deformation refers to the changes in the shape, position, and orientation of the Earth's crust due to the forces acting on it.
These forces can be compressional, tensional, or shear, and they cause the crust to buckle, fold, fault, and uplift.
Crustal deformation can result in the formation of new landforms, such as mountains, valleys, and plateaus, and can also cause earthquakes and volcanic eruptions.
Thus, the best definition of crustal deformation is that it is the constructive force that is the result of the edges of Earth's crust pushing and pulling against each other.
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How many grams of NaOH (40.00 g/mol) is produced from 1.2x1024 particles of Na2O (61.98 g/mol)?
Explanation:
To solve this problem, we need to use stoichiometry, which is the study of the relationships between reactants and products in a chemical reaction.
The balanced equation for the reaction between Na2O and NaOH is:
Na2O + 2H2O → 2NaOH
From this equation, we can see that 1 mole of Na2O produces 2 moles of NaOH.
First, we need to find the number of moles of Na2O in 1.2x10^24 particles:
1.2x10^24 particles of Na2O / 6.022x10^23 particles/mol = 1.99 mol of Na2O
Next, we can use the mole ratio between Na2O and NaOH to find the number of moles of NaOH produced:
1.99 mol Na2O × (2 mol NaOH / 1 mol Na2O) = 3.98 mol NaOH
Finally, we can use the molar mass of NaOH to convert the number of moles to grams:
3.98 mol NaOH × 40.00 g/mol = 159 g NaOH
Therefore, 1.2x10^24 particles of Na2O will produce 159 grams of NaOH.
CaCO3 + HCl →→ CaCl₂ + CO₂ + H₂O
2
A sample of aluminum foil contains 8.50×1023 atoms. What is the mass of the foil?
Answer:
38.1g
Explanation:
Determine the molar mass of aluminum (Al): 26.98 g/mol
Convert the number of atoms of Al to moles of Al:
8.50×10^23 atoms Al × (1 mol Al/6.022×10^23 atoms Al) = 1.41 mol Al
Calculate the mass of Al in the foil using the molar mass:
1.41 mol Al × 26.98 g/mol = 38.1 g
Therefore, the mass of the aluminum foil is 38.1 g.
A sealed, inflated balloon is placed into a flask of liquid nitrogen at a temperature of 77 k. The ballon begins to shrink and shrivel up. Use gas particle motion to explain why.
When a balloon is submerged in liquid nitrogen, the gas particles inside it lose kinetic energy and slow down, causing the balloon to contract and shrivel up.
What is liquid nitrogen used for?Liquid nitrogen, which has a boiling point of -196C, is used for a number of purposes, including as a computer coolant, in medicine to remove warts, unwanted skin, and precancerous cells, and in cryogenics, which is the study of how materials respond to extremely low temps.
Is dry ice liquid nitrogen?In a nutshell, it is a solid form of carbon dioxide brought on by pressure and cold temperatures. On the other hand, liquid nitrogen is a particular kind of nitrogen gas that has been cooled and pressurized to the point where it becomes a liquid.
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You add 4.00 mL of 0.100 M NaOH to 50.00 mL of pure water, and to this mixture you then add 19.00 mL of 0.800 M HCl. What will be the pH of the resulting solution?
Answer:
To solve this problem, we need to calculate the number of moles of NaOH and HCl that are added to the water, and then determine how these react to form a new solution.
First, let's calculate the number of moles of NaOH that are added to the water:
moles NaOH = Molarity x Volume (in liters)
moles NaOH = 0.100 mol/L x 0.00400 L
moles NaOH = 0.000400 mol
Next, let's calculate the number of moles of HCl that are added to the solution:
moles HCl = Molarity x Volume (in liters)
moles HCl = 0.800 mol/L x 0.01900 L
moles HCl = 0.0152 mol
Now we need to determine how these react with each other. NaOH and HCl react in a 1:1 ratio to form NaCl (sodium chloride) and water:
NaOH + HCl → NaCl + H2O
Since we have an excess of HCl, all of the NaOH will be used up in the reaction. Therefore, the moles of NaCl formed will be equal to the moles of NaOH added. The remaining HCl will determine the pH of the resulting solution.
moles NaCl = 0.000400 mol
The total volume of the resulting solution is:
volume = 50.00 mL + 4.00 mL + 19.00 mL
volume = 0.07300 L
The concentration of HCl in the resulting solution is:
concentration HCl = moles HCl / volume
concentration HCl = 0.0152 mol / 0.07300 L
concentration HCl = 0.208 M
To find the pH, we can use the formula:
pH = -log[H+]
where [H+] is the concentration of hydrogen ions in the solution. Since HCl is a strong acid, it completely dissociates in water to form H+ and Cl- ions. Therefore, the concentration of H+ ions in the solution is equal to the concentration of HCl.
pH = -log(0.208)
pH = 0.68
Therefore, the pH of the resulting solution is 0.68.
How many moles of plutonium
are present in a sample
containing 8.4 x 1022 atoms of Pt?
?] moles Pt
moles Pt
Enter
Help
Done
Answer:
0.1395 mole
Explanation:
1 mole of plutonium contains 6.022 x 10^23 atoms
=> 8.4 x 10^22 / 6.022 x 10^23 = 1.395 x 10^-1 = 0.1395 mole
A chemist needs to determine the concentration of a sulfuric acid solution by titration with a standard sodium hydroxide solution. He has a 0.1838 M
0.1838
M
standard sodium hydroxide solution. He takes a 25.00 mL
25.00
mL
sample of the original acid solution and dilutes it to 250.0 mL.
250.0
mL
.
Then, he takes a 10.00 mL
10.00
mL
sample of the dilute acid solution and titrates it with the standard solution. The endpoint was reached after the addition of 10.81 mL
10.81
mL
of the standard solution. What is the concentration of the original sulfuric acid solution?
concentration:
Initial solution concentration of the original sulfuric acid solution is 1.66.
How to calculate concentration?We know that Na2SO4 + 2 H2O > H2SO4 + 2 NaOH.The concentration of NaOH has been reported at 0.1678.Volume of NaOH: 19.88 mL (or 0.01988 L)Here are the calculations for NaOH moles: NaOH concentration times volume equals 0.01988 x 0.1678 x 0.00333 moles.Half a mole of NaOH is equivalent to half a mole of in 25 mL of the original solution, which is equivalent to 0.00166 mol in 10 mL of the diluted solution. 250 mL of the diluted solution divided by 10 is equal to 0.0415 mol.Initial solution concentration = moles/volume = 0.0415/0.025 = 1.66For more information on concentration kindly visit to
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125 J of energy are released when 25.0 g Si comes into contact with cold water. What is the change in temperature for the silicon? Correct answer only cuh
The change in temperature for the silicon is 7.042°C.
How to calculate change in temperature?The change in temperature of a substance can be calculated by using the following formula:
Q = mc∆T
Where;
Q = energy released or absorbedm = mass of substance∆T = change in temperaturec = specific heat capacityAccording to this question, 125 J of energy are released when 25.0 g Si comes into contact with cold water.
125J = 25 g × 0.71 J/g K × ∆T
125 = 17.75∆T
∆T = 125/17.75
∆T = 7.042°C
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Is this possible? Why or why not?
In the nineteenth and twentieth centuries, cast iron—also known as gray cast iron was a type of pipe that was utilized as a pressure pipe for the transfer of water and sewage.
Fertiliser :Any natural or manufactured product that is applied to soil or plant tissues to provide nutrients for plants (see spelling variations) is an example. It is possible to differentiate fertilizers from liming materials and other non-nutritious soil additives.
Rust :Iron oxide, a chemical that is used a lot, is known as rust. Iron's rapid interaction with oxygen results in the formation of iron oxide, or Fe₂O₃, which is so common that pure iron rarely occurs in nature.
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What is the mass of oxygen gas if it has a pressure of 7.05 atm and a volume 5.2 L at 25oC?
So, 5.42 g or so is roughly the mass of oxygen gas.
How can you determine a gas' mass?The number of moles of gas, n, is equal to the mass of the gas in the syringe divided by its molar mass in grammes. To calculate n, the number of moles of gas, use the ideal gas equation PV = nRT. For this, the experiment's ambient temperature and pressure must be recorded.
The ideal gas law can be used to solve this issue:
PV = nRT
We need to find the number of moles of oxygen gas, which can be calculated as:
n = PV/RT
where P = 7.05 atm, V = 5.2 L, R = 0.08206 L·atm/mol·K, and T = 25°C + 273.15 = 298.15 K.
n = (7.05 atm)(5.2 L)/(0.08206 L·atm/mol·K)(298.15 K) ≈ 0.169 mol
Now we can use the molar mass of oxygen to calculate its mass:
mass = n × M
where M is the molar mass of oxygen, which is approximately 32 g/mol.
mass = 0.169 mol × 32 g/mol ≈ 5.42 g
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What is the osmotic pressure formed by dissolving 44.2 mg
of aspirin (C9H8O4) in 0.358 L of water at 25 °C?
By dissolving 44.2 mg of aspirin in 0.358 L of water at 25 °C, an osmotic pressure of 0.00578 atm is created.
What is osmotic pressure?When aspirin is dissolved in water, osmotic pressure ( π ) = iMRT
Where,
π = The osmotic pressure is (in atmospheres)i = The van't Hoff factor, or I measures how many particles a solute in solution can separate into (in this case, aspirin does not separate in water, hence I = 1).M = solution's molarity (in moles per liter)R = gas constant, or R, is 0.08206 L atm/(mol K).T =he absolute temperature is T. (in Kelvin)What is molar mass?Molar mass of aspirin (C9H8O4) = 180.16 g/mol
44.2 mg = 0.0442 g
Moles of aspirin = 0.0442 g / 180.16 g/mol
= 0.000245 moles
Molarity of aspirin solution
= moles / volume = 0.000245 moles / 0.358 L
= 0.000685 M
π = iMRT {on equating both the equations}
= (1)(0.000685 M)(0.08206 L·atm/(mol·K))(25 + 273.15 K)
= 0.00578 atm
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What is the total number of moles of solute in 0.805 liters of a 3.91 M solution of NaCl?
mol
There are 3.14805 moles of NaCl in 0.805 liters of 3.91 M solution of NaCl.
What is NaCl?Sodium chloride, is a mineral substance that is a member of the broader group of substances known as ionic salts.
To calculate the total number of moles of solute in a solution, we use the formula: moles of solute = molarity x volume in liters
It is given the volume of the solution as 0.805 liters and the molarity as 3.91 M for NaCl.
moles of NaCl = 3.91 M x 0.805 L
moles of NaCl = 3.14805 moles
Therefore, there are 3.14805 moles of NaCl in 0.805 liters of a 3.91 M solution of NaCl.
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can you please help me ASAP
Answer: multiple choice
Q1: Empty Space
Q2: protons and neutrons
Q3: A
Q4:C
Q5:A
Explanation:
If you can answer it with another sheet answering all that I would appreciate it.
Boyle's law is a fundamental principle in physics that describes the relationship between the pressure and volume of a gas, when temperature and the number of particles are kept constant.
What is Boyle's law?It states that the pressure of a gas is inversely proportional to its volume, meaning that if the volume of a gas decreases, its pressure will increase, and if the volume of a gas increases, its pressure will decrease.
1)
P1V1 = P2V2
P2 = P1V1/V2
P2 = 1 * 1000/473
P2 = 2.1 atm
2)
V2 = P1V1/P2
V2 = 1 * 2/6 * 10^4
V2 = 3.3 * 10^-5 L
3) V2 = P1V1/P2
V2 = 2 * 10^6 * 1 * 10^-5/0.275
V2 = 72.7 L
4)
V2 = P1V1/P2
V2 = 3.04 * 10^4 * 10/150
V2 = 2027 L
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1. Fe + 02 → Fe 304 help on this please
The given chemical equation represents the reaction between iron (Fe) and oxygen (O₂) to form iron oxide (Fe₃O₄).
How to balance the chemical equationThe reaction between iron and oxygen to form iron oxide is a type of redox reaction, which involves the transfer of electrons between the reactants. In this reaction, iron loses electrons (oxidation) while oxygen gains electrons (reduction).
The balanced chemical equation for this reaction is:
6Fe + 4O₂ → 2Fe₃O₄
This equation shows that:
six atoms of iron react with four molecules of oxygen to form two molecules of iron oxide.The equation is balanced because the same number of atoms of each element is present on both the reactant and product sides of the equation.
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What is the output light frequency of the material used before doubling
Balance the equation by inserting coefficients as needed.
equation:
ZnS+HBr⟶ZnBr2+H2S
Answer:
ZnS + 2HBr⟶ ZnBr2 + H2S
Explanation:
ZnS + 2HBr⟶ ZnBr2 + H2S
Zn = 1
S = 1
H = 2
Br = 2
ZnS + 2HBr = ZnBr2 + ZnS The number the atoms for every element on each side of the equation is now equal, balancing the equation.
What is an element's straightforward definition?a simple substance that's unable to be divided into smaller components or transformed into another substance is referred to as in chemistry. Atoms, which are made up of protons, neutrons, and electrons, are the building blocks of an element.
Two atoms of zinc (Zn) can be seen in the diagram below.
one atom just on left and one atom on the right make up sulfur (S).
There are two atoms of hydrogen (H) on the right and one on the left.
Bromine (Br) has two atoms here on right and one on the left.
We need to add a 2 coefficient in front of HBr here on left side in order to balance between hydrogen or bromine atoms:
2HBr + ZnS = ZnBr2 + H2S
Now that the hydrogen plus bromine atoms are in balance, we only have one sulfur atom on the left side and two on the right. The coefficient of 1 must be placed in front of ZnS just on left side in order to balance all sulfur atoms:
1/ZnS + 2/HBr 1H2S + 1ZnBr2
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Write the balanced reduction half reaction of I^- + S==> S^-2 + I^2
Reactants -> Products
Answer:
The given chemical equation is:
I^- + S ==> S^-2 + I^2
To balance the reduction half-reaction of this equation, we need to identify which species is undergoing reduction, i.e., which species is gaining electrons. In this case, sulfur (S) is being reduced to sulfide (S^-2), so the reduction half-reaction involves sulfur.
The unbalanced reduction half-reaction is:
S ==> S^-2
To balance this half-reaction, we need to add electrons (e^-) to the left-hand side to balance the charge. The number of electrons added should be equal to the difference in oxidation states of sulfur between the reactant and product sides of the equation. In this case, sulfur is going from an oxidation state of 0 to -2, so it is gaining two electrons. The balanced reduction half-reaction is:
S + 2 e^- ==> S^-2
Therefore, the balanced reduction half-reaction of the given chemical equation is:
S + 2 e^- ==> S^-2
an iron or sample was dissolved in hydrochloric acid and the iron was obtained as Fe2+ (aq). The iron solution was titrated with 36.35 mL of 0.493 M Ce4+ Solution according to the balanced chemical reaction: Ce4+(aq)+Fe2+(aq)->Ce3+(aq)+Fe3+(aq) calculate the mass of iron in the original or sample.
Around 0.999 grams of iron made up the initial sample. Mathematical definitions of molarity include: Molarity is equal to the quantity of solute in moles.
What does molarity mean in chemistry?By dividing the number of moles of HCl even by volume (L) of a solution in which they were dissolved, we may get the acid solution's molarity: moles of Ce4+ = Molarity Volume (in liters)
By substituting the values specified in the problem, we obtain:
Ce4+ moles equal 0.493 M 0.03635 L 0.0179 moles.
As the reaction requires the same number of moles of Fe2+ and Ce4+, we may state that:
Fe2+ mole equivalent: 0.0179 moles
We must translate the moles of Fe2+ into grams if iron using molar mass of Fe in order to determine the amount of iron with in original sample. A mol of iron has a molar mass of 55.845 g.
Fe2+ molar mass is equal to 0.0179 moles, or 55.845 g/mol, times the mass of Fe, making Fe mass equal to 0.999 g.
What is molarity, and what does its SI unit mean?Mathematical definitions of molarity include: Molarity is equal to the quantity of solute in moles. number of litres in the solution. The volume of the solution will be in litres (L), as the quantity of moles per solute was measured in moles. Therefore, mol L – 1 is the unit of molarity.
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Calculate the IHD for each of the following and see whether it corresponds to the structure shown.
IHD (Index of Hydrogen Deficiency) is a measure of the number of unsaturations (double bonds or rings) present in an organic compound.
How do you calculate IHD for an organic compound?IHD = 1/2 times (2C+2+N-H-X)
C = Number of carbon atoms
N = Number of nitrogen atoms
H = Number of hydrogen atoms
X = Number of halogen atoms
a) 2(5) + 2 + 0 - 6 - 0/2
= 3
b) 2(6) + 2 + 0 - 10 - 0/2
= 2
c) 2(12) + 2 + 1 - 17 - 0/2
= 5
d) 2(3) + 2 + 0 - 5 - 1/2
= 1
e) 2(5) + 2 + 0 - 6 - 0/2
= 3
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Given the reaction
2 C4H10 + 13 O2 --> 10 H2O + 8 CO2
If this reaction happened and produced 47 g of water, how many grams of carbon dioxide would it also produce? (record to the nearest whole number
If this reaction happened and produced 47 g of water, it would also produce 92 grams of carbon dioxide.
How do you determine the amount of carbon dioxide produced?Eight moles of CO2 are created for every ten moles of water. Based on the quantity of water created, we can use this ratio to determine the amount of CO2 produced:
Moles of H2O are equal to the mass of H2O divided by the molar mass of H2O, which is 18.015 g/mol.
moles of CO2 = (8/10) * moles of H2O moles of CO2 = (8/10) * 2.61 mol = 2.09 mol moles of H2O = 47 g / 18.015 g/mol = 2.61 mol
Ultimately, mass of CO2 is calculated as moles of CO2 times the molar mass of CO2, where the molar mass of CO2 is 44.01 g/mol.
Hence, 91.8 ≈ 92 grams of carbon dioxide would result from the process.
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CAN SOMEONE HELP WITH THESE QUESTIONS?
They are equations that describe chemical processes using chemical formulae and symbols. In a chemical equation, the reactants are represented on the left and the products are represented on the right.
What are chemical equations examples?Chemical equations are symbols and chemical formulas that describe a chemical process symbolically. With a plus symbol separating the entities in both the reactants and the products and an arrow pointing in the direction of the products to indicate the orientation of the reaction, the reactant entities are given on the left and the product entities are given on the right.
Chemical formulations can be combined, structural (represented by pictures), or both. The exact amounts of the stoichiometric numbers are shown as coefficients next to the symbols and formulations of the various entities. Jean Beguin drew the first chemistry equation in 1615.
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How many molecules of glucose are in 90.0 g C6H12O6? The molar mass of glucose is about 180 g/mol. 90.0 g C6H12O6 [?]×10 molecules C6H₁2O6 Note: Avogadro's number is 6.02 x 1023 particles/mole. Coefficient (green) Exponent (yellow) Enter
9.0 g of C6H12O6 contain 3.01 x 10²³ molecules of glucose.
How many moles of glucose, C6H12O6, are contained in 90 grammes?The result is 180.156, with grammes per mole being the unit. Hence, the mass of glucose is 90 and its molar mass is 180.156, giving us the moles of glucose, which are roughly 1.5 moles.
We can convert grammes to moles using the molar mass of glucose, and then moles to molecules using Avogadro's number:
1 mole C6H12O6 = 180 g C6H12O6
90.0 g C6H12O6 = (90.0 g C6H12O6) / (180 g/mol) = 0.5 mol C6H12O6
1 mol C6H12O6 = 6.02 x 10²³ molecules C6H12O6
0.5 mol C6H12O6 = (0.5 mol C6H12O6) x (6.02 x 10²³ molecules/mol) = 3.01 x 10²³ molecules C6H12O6
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Hi can someone help me with this homework
We must melt about 3.8 kg of brass A, 4.1 kg of brass B, and 6.5 kg of brass C to obtain about 14.5 kg of the desired alloy
How do we calculate?we can set up a system of equations based on the conservation of mass and the desired composition:
0.533x + 0.247y + 0.220z = 14.5 (desired composition of copper, zinc, and nickel)
The given information includes:
Brass A: 41% copper, 23% zinc, 36% nickel
Brass B: 54% copper, 23% zinc, 23% nickel
Brass C: 56% copper, 26% zinc, 18% nickel
Using this information, we can write the following equations:
0.41x + 0.54y + 0.56z = 0.533(x + y + z) (copper)
0.23x + 0.23y + 0.26z = 0.247(x + y + z) (zinc)
0.36x + 0.23y + 0.18z = 0.220(x + y + z) (nickel)
Simplifying each equation, we get:
0.067x - 0.027y - 0.023z = 0 (copper)
-0.017x + 0.017y + 0.003z = 0 (zinc)
-0.020x - 0.027y + 0.038z = 0 (nickel)
We can solve the equations using substitution method or elimination method and our values will be:
x = 3.8462
y = 4.1077
z = 6.5461
In conclusion, we need to melt about 3.8 kg of brass A, 4.1 kg of brass B, and 6.5 kg of brass C to obtain about 14.5 kg of the desired alloy.
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Consider the half reactions below for a chemical reaction.
Upper Z n right arrow upper Z n superscript 2 plus (a q) plus 2 e superscript minus. Second line: upper C u superscript 2 plus (a q)plus 2 e superscript minus right arrow upper C u (s).
What is the overall equation for this chemical reaction?
Upper Z n (s) plus upper C u superscript 2 plus (a q) right arrow upper Z n superscript 2 plus (a q) plus upper C u (s).
Upper Z n (s) plus upper C u superscript 2 plus (a q) right arrow upper C u superscript 2 plus (a q) plus upper Z n (s).
Upper Z n superscript 2 plus (a q) plus upper C u (s) right arrow upper C u superscript 2 plus (a q) plus upper Z n (s).
Upper Z n superscript 2 plus (a q) plus 2 e superscript minus right arrow upper C u superscript 2 plus (a q) plus 2 e superscript plus.
Mg(s) + 2H⁺ → Mg²⁺(aq) + H₂.To obtain the overall reaction, we sum the two half-reactions and omit the similar species in the reactants and products sides.We have two reactions: oxidation reaction:Mg(s) → Mg²⁺(aq) + 2e.Reduction reaction:2H⁺ + 2e → H₂. So, we add the two half-reactios and obtain the overall reaction:Mg(s) + 2H⁺ → Mg²⁺(aq) + H₂.
What is the general chemical reaction equation?A chemical equation's generic form is:Products Reactants.In a chemical equation, the reactants are the materials that are present before the reaction begins, and the byproducts are indeed the chemicals that are created during the reaction.
What is the reaction's overall rate?The chemical reaction rate is calculated by dividing the change that occurs in a reactant's or product's concentration by the coefficient from the equation's balanced state.
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A solution can be added ic copper sulfate solution to show the presence of copper(Il) loos.
A solution that can be added to copper sulfate solution to show the presence of copper(ii) ions is sodium hydroxide.
What is a test for copper (ii) ions using copper (ii) sulfate?To test for copper (II) ions using copper (II) sulfate, you can use a simple chemical reaction known as displacement reaction.
The steps are given below:
Take a small amount of copper (II) sulfate (CuSO4) in a test tube.Add a few drops of dilute hydrochloric acid (HCl) to the test tube. This step is to acidify the solution and prevent the precipitation of copper (II) hydroxide.Add a few drops of sodium hydroxide (NaOH) solution to the test tube containing CuSO4.Observe the color of the solution. If the solution turns blue, it indicates the presence of copper (II) ions, as copper (II) hydroxide is formed and is blue in color.To confirm the presence of copper (II) ions, add excess sodium hydroxide solution to the test tube. The excess NaOH will cause the blue precipitate to dissolve, forming a deep blue solution.
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