how many grams of NH3 formed from complete reaction of 4.5 moles of H2
The mass of the amonia that can be produced in the reaction is 51 g of ammonia.
What is the reaction equation?We know that a reaction equation has to do with the ay in which there is the combination of the reactants and the products in the reaction. We know also that it is possible to be able to obtain the parameters in the reaction by the use of the stoichiometry of the reaction.
We would have to write down the reaction equation so that we can be able to apply the principles of stoichiometry as we try to solve the problems that have t do with the reaction equation in the problem.
The reaction equation can be written as; \(N_{2} +3H_{2} ----- > 2NH_{3}\). In the reaction equation it is clear that;
3 moles of hydrogen produced 2 moles of ammonia
4.5 moles of hydrogen would produce 4.5 * 2/3
= 3 moles
Mass of the ammonia = 3 moles * 17 g/mol
= 51 g of ammonia
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Reflect on the learning activities titled “Hypothesis”, “Variables and Hypothesis” and “Constructing a Hypothesis”. Describe some similarities and differences between a question that comes in response to an observation, and a scientific research question? Cite quotes from the readings to support your answer. Where do variables fit into this thinking? In other words, if you imagine a number line with observation questions at one end and scientific research questions at the other, what role do variables play anywhere along this continuum?
The learning activities titled "Hypothesis," "Variables and Hypothesis," and "Constructing a Hypothesis" all share certain similarities and differences. A question that arises in response to an observation is similar to a scientific research question in that both require some level of investigation to achieve an answer. However, scientific research questions are typically more specific and refined, with a defined methodology for obtaining data and verifying results.
The following quotes from the readings illustrate this distinction:"A scientific question is one that can be answered by using scientific investigation. In contrast, an observation question is one that comes in response to observing or experiencing something in the natural world" (Scientific Inquiry: Variables, Hypotheses, and the Scientific Method)."An important feature of a scientific question is that it should be answerable within a reasonable amount of time and with the resources available" (Scientific Inquiry: Variables, Hypotheses, and the Scientific Method)."Research questions can be narrow or broad, depending on the scope of the research" (Constructing a Hypothesis).The concept of variables is crucial to both observation and scientific research questions, but they play different roles depending on where they fall on the continuum. Observation questions are usually less precise and may not require much consideration of variables. On the other hand, scientific research questions are likely to include a rigorous examination of variables and their potential effects."Variables are an essential part of a scientific experiment. They are the things that change in an experiment" (Scientific Inquiry: Variables, Hypotheses, and the Scientific Method)."Variables are important because they can affect the outcome of the research" (Constructing a Hypothesis).In summary, observation questions and scientific research questions share some similarities, but the latter is more specific, has a defined methodology, and may require more consideration of variables.For such more question on Hypothesis
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Adding 1.64 g of naphthalene to 80.00 g of cyclohexane, C.H₁2() lowers the freezing point from
5.53°C to 1.37°C. If K, for cyclohexane is 19.9°C/m, calculate the molar mass of the naphthalene.
A cycloalkane with the chemical formula C6H12 is cyclohexane. Non-polar describes cyclohexane.
Thus, Colorless and combustible, cyclohexane has a characteristic detergent-like stench that is reminiscent of cleaning products.
The industrial manufacturing of adipic acid and caprolactam, which are building blocks for nylon, uses cyclohexane primarily.
cyclohexanone and cyclohexanol that serves as the starting point for the production of adipic acid and caprolactam, which are both precursors to nylon. Annual production of cyclohexanone and cyclohexanol totals several million kilos.
Thus, A cycloalkane with the chemical formula C6H12 is cyclohexane. Non-polar describes cyclohexane.
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How is steel made from the raw product of the blast furnace known
as "pig iron"? What are the advantages of using steel?
List references used (if any were used) to answer this question.
Steel is produced from pig iron through a process known as steelmaking or iron and steel production.
The pig iron obtained from the blast furnace contains high amounts of carbon, impurities, and other elements. To convert pig iron into steel, the carbon content needs to be reduced to desired levels, and impurities must be removed.One common method of steelmaking is the basic oxygen process (BOP). In this process, pig iron is placed in a vessel called a converter, where oxygen is blown through the molten metal. The oxygen reacts with the carbon and impurities, causing them to oxidize and form gases that are released. Alloying elements and desired additives can be added at this stage to achieve specific steel properties. Another method is the electric arc furnace (EAF), where an electric arc is used to heat and melt the pig iron, allowing impurities to be oxidized and removed.The advantages of using steel are numerous. Steel is strong, durable, and versatile, making it suitable for a wide range of applications. It has high tensile strength, which means it can withstand heavy loads and pressures. Steel is also resistant to corrosion, making it ideal for construction, infrastructure, and transportation projects. It is a recyclable material, contributing to sustainability and reducing environmental impact. Additionally, steel can be fabricated into various shapes and sizes, allowing for customization and flexibility in design.References:
A. Ghosh and A. Chatterjee, Ironmaking and Steelmaking: Theory and Practice, PHI Learning, 2008.
R.H. Tupkary and V.R. Tupkary, An Introduction to Modern Iron Making, Khanna Publishers, 2010.
J.R. Davis, ed., ASM Specialty Handbook: Carbon and Alloy Steels, ASM International, 1995.
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How many grams of Copper (II) sulfate, or CuSO4 must be added to 245 mL of water to make a 1.00 M solution? The molar mass of CuSO4 is 159.6 g/mol.
Answer:
39.1
Explanation:
i took the test.
Find the mass in grams of 4.60 x 10^23 atoms
The mass in grams of 4.60 x 10^23 atoms is approximately 9.17 g.
To find the mass in grams of 4.60 x 10^23 atoms, we need to consider the molar mass and Avogadro's number. Avogadro's number (6.022 x 10^23) represents the number of atoms or molecules in one mole of a substance.
First, we need to determine the molar mass of the substance in question. Let's assume we are dealing with a specific element, such as carbon (C), which has a molar mass of approximately 12.01 g/mol.
To calculate the mass in grams, we can use the following formula:
Mass (in grams) = (Number of atoms / Avogadro's number) x Molar mass
Substituting the given values:
Mass (in grams) = (4.60 x 10^23 atoms / 6.022 x 10^23) x 12.01 g/mol
Calculating the expression:
Mass (in grams) = (0.763 mol) x 12.01 g/mol
Mass (in grams) = 9.17 g
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A lab tech has 8.0 L of a 12.0 M HCl solution available. What volume of this solution does she need to prepare 3.0 L of a 1.5 M HCl solution for CHM 101 lab?
Answer: 0.375L
Explanation: Using M1V1=M2V2, we can solve for V1.
12M*V1=1.5M*3.0L
V1 = \(\frac{1.5M*3.0L}{12M}\)
V1 = 0.375L.
0.375 L volume of the solution she needed to prepare 3.0 L of a 1.5 M HCl solution.
What is a solution?A homogenous mixture of one or more solutes that have been dissolved in a solvent is known as a solution. The material that a solute dissolves in to create a homogenous mixture is known as a solvent.
The component that dissolves in a solvent to create a homogenous mixture is known as a solute.
M₁ is the initial concentration of HCl solution = 12.0 M
V₁ is the volume of initial HCl solution that is needed
M₂ is the final concentration of HCl solution = 1.5 M
V₂ is the final volume of HCl solution to be prepared = 3.0 L
To find V₁, we get
V₁ = (M₂ V₂) / M₁
calculating the values, we will get:
V₁ = 1.5 M x 3.0 L / 12.0 M
= 0.375 L
Therefore, tech required to take 0.375 L of the 12.0 M HCl solution and dilute it to 3.0 L to make a 1.5 M HCl solution.
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HELP PLEASE I WILL GIVE BRAINLIEST PLEASE HELP ME
Explain the law of conservation of mass. Give an example of how mass is conserved using numbers to justify your answer.
Answer:
The law of conservation of mass states that matter cannot be created or destroyed in a chemical reaction.
For example, when wood burns, the mass of the soot, ashes, and gases equals the original mass of the charcoal and the oxygen when it first reacted. So the mass of the product equals the mass of the reactant.
Another example, solar panels don't create solar energy. They harness energy from the sun and transform it into another type of energy (electricity).
Stephan’s mother cuts a twig from a rose bush and plants it in the soil. After a few days, Stephan observes a new plant growing. Which characteristic does the growth of the new plant depict?
The growth of the new plant depicts the asexual reproduction characteristic. The characteristic that describes the growth of the new plant in Stephan's mother cutting a twig from a rose bush and planting it in the soil is asexual reproduction.
Asexual reproduction is the mode of reproduction by which organisms generate offspring that are identical to the parent's without the fusion of gametes. Asexual reproduction is a type of reproduction in which the offspring is produced from a single parent.
The offspring created are clones of the parent plant, meaning they are identical to the parent.The new plant in Stephan’s mother cutting a twig from a rose bush and planting it in the soil depicts the process of asexual reproduction, which is the ability of a plant to reproduce without seeds. In asexual reproduction, plants can reproduce vegetatively by cloning themselves using their roots, bulbs, or stems.
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H2O2(aq)+ClO4−(aq)→ClO2−(aq)+O2(g)
Express your answer as a net ionic equation including phases in basic solution
Answer:
H
2
O
2
(aq)+ClO
4
−
(aq)⟶O
2
(g)+ClO
2
−
(aq)
All atoms except H and O are balanced.
The oxidation number of Cl changes from 7 to 3. The change in the oxidation number is 4.
The oxidation number of O changes from -1 to 0. The change in oxidation number per O atom is 1.
Total change in the oxidation number for 2 oxygen atoms is 2.
To balance the increase in oxidation number with decrease in the oxidation number, multiply H
2
O
2
and O
2
with coefficients 2.
2H
2
O
2
(aq)+ClO
4
−
(aq)⟶2O
2
(g)+ClO
2
−
(aq)
To balance O atoms, add 2 water molecules on RHS.
2H
2
O
2
(aq)+ClO
4
−
(aq)⟶2O
2
(g)+ClO
2
−
(aq)+2H
2
O(l)
The oxygen atoms are already balanced.
This is the balanced chemical equation
Which element has the highest electronegativity?
Answer:
fluorine
Explanation:
has the highest electronegativity?
please help me out with this. I was told me to show how you crossed something to get the answer i dont know but anything helps thank you
Here are the chemical formulas for the given ionic compounds:
Rubidium fluoride: RbFAluminum chloride: AlCl₃Calcium oxide: CaOSilver nitrate: AgNO₃Barium acetate: Ba(C₂H₃O₂)₂Nickel(II) chloride: NiCl₂Ammonium bromide: NH4BrLithium carbonate: Li₂CO₃Sodium sulfite: Na₂SO₃Mercury(I) phosphite: Hg₃(PO₃)₂Chromium(II) dichromate: Cr₂(Cr₂O₇)₃How to convert name to formula?To convert Name to Formula:
Identify the cation and anion in the compound. The cation is the positively charged ion, and the anion is the negatively charged ion.Determine the charges of the cation and anion using the periodic table. You can find the charge of the cation based on its group number, while the charge of the anion is determined by its position in the periodic table and the number of electrons it gains or loses.Balance the charges of the cation and anion so that they add up to zero.Write the chemical formula by writing the symbol of the cation followed by the symbol of the anion, with subscripts indicating the number of each ion needed to balance the charges.Learn more on chemical formulas here: https://brainly.com/question/11574373
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A physical change :_______
a) occurs when water is evaporated.
b) occurs when glucose is converted into energy within your cells.
c) occurs when sugar is heated into caramel
d) occurs when iron rusts.
Electroplating is a way to coat a complex metal object with a very thin (and hence inexpensive) layer of a precious metal, such as silver or gold. In essence the metal object is made the cathode of an electrolytic cell in which the precious metal cations are dissolved in aqueous solution. Suppose a current of 0.270 A is passed through an electroplating cell with an aqueous solution of Ag_2 SO_4 in the cathode compartment for 72.0 seconds. Calculate the mass of pure silver deposited on a metal object made into the cathode of the cell. Round your answer to 3 significant digits. Also, be sure your answer contains a unit symbol.
Mass of the pure silver deposited on a metal object made into the cathode of the cell is calculated to be 0.0217 gm.
What is electroplating?The process of using electrodeposition to coat an object in a layer of metal is called electroplating .
As we know that, Q = I * t
=0.270 * 72
= 19.44 C
Here Q is quantity of electricity , I is current in amperes = 0.270 A (given)
t is time in seconds (72.0 sec)
As 96500 Coulomb of electricity electrolyzes 1 mole of Ag
then,19.44 C of electricity deposits,
=1/96500 * 19.44
= 0.000201 moles of Ag
Mass of Ag is = number of moles * molar mass
= 0.000201 * 108
= 0.0217 gm
Thus, mass of pure silver deposited on a metal object made into the cathode of the cell is 0.0217 gm.
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A galvanic cell at a temperature of 25.0°C is powered by the following redox reaction: →+2IO−3aq+12H+aq5Cos+I2s+6H2Ol5Co+2aq Suppose the cell is prepared with 6.64 M IO−3 and 1.54 M H+ in one half-cell and 7.82 M Co+2 in the other. Calculate the cell voltage under these conditions. Round your answer to 3 significant digits.
Answer:
E = 1.47
Explanation:
To do this, you need to apply the Nerst equation which is the following:
E = E° - RT/nF lnQ (1)
Where:
E: cell voltage
E°: Standard potential reduction
R: universal constant
T: temperature of the system
n: number of electrons transfered during the reaction
F: Faraday constant.
Q: Equilibrium constant
However, as the reaction is taking place at 25 °C, and R and F have constant values, we can reduce the above expression to the following:
E = E° - 0.05916/n lnQ (2)
We can get the value of Q because it has to do with the reaction which is the following:
2IO₃⁻(aq) + 12H⁺(aq) + 5Co(s) ----------> I₂(s) + 5Co²⁺(aq) + 6H₂O(l)
Now, using only the aqueous state the expression of Q will be:
Q = [Co²⁺]⁵ / [H⁺]¹² [IO₃⁻]²
Replacing the values we have:
Q = (7.82)⁵ / (1.54)¹² * (6.64)²
Q = 3.728
Knowing this, all we need to know now is the standard potential reduction of the reaction. To do so, we need to write the two semi equations of reduction and oxidation:
2IO₃⁻ + 12H⁺ + 10e⁻ ---------> I₂ + 6H₂O E₁° = 1.20 V
5Co ---------> 5Co²⁺ + 10e⁻ E₂° = 0.28 V
E° = 1.2 + 0.28 = 1.48 V
Now that we have all the values (n = 10) we can write now the nernst equation to calculate the cell voltage:
E = 1.48 - 0.05916/10 ln (3.728)
E = 1.48 - 0.005916 (1.315872)
E = 1.47 V
This will be the cell voltage
Consider the reaction below: 4 NH3(g) + 5O2(g) 4 NO(g) + 6 H₂O(g) H°=-906 kJ How many moles of ammonia must react to produce 453 kJ? Show your work on a separate piece of paper or provide the answer in the space provided.
The given reaction releases 906 kJ of heat energy when 4 moles of ammonia react.
So, the amount of heat energy released when 1 mole of ammonia reacts is:
906 kJ ÷ 4 mol = 226.5 kJ/mol
How many moles of ammonia must react to produce 453 kJ?To produce 453 kJ of heat energy, we can use the following proportion:
226.5 kJ/mol = 453 kJ/x
where x is the number of moles of ammonia required.
Solving for x, we get:
x = (453 kJ × 4 mol) ÷ 906 kJ
x ≈ 2 mol
Therefore, 2 moles of ammonia must react to produce 453 kJ of heat energy.
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The given reaction releases 906 kJ of heat energy when 4 moles of ammonia react.
So, the amount of heat energy released when 1 mole of ammonia reacts is:
906 kJ ÷ 4 mol = 226.5 kJ/mol
How many moles of ammonia must react to produce 453 kJ?To produce 453 kJ of heat energy, we can use the following proportion:
226.5 kJ/mol = 453 kJ/x
where x is the number of moles of ammonia required.
Solving for x, we get:
x = (453 kJ × 4 mol) ÷ 906 kJ
x ≈ 2 mol
Therefore, 2 moles of ammonia must react to produce 453 kJ of heat energy.
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In a protein molecule, the number of amino acid molecules may be as few as
5
5,000
500
50
In a protein molecule, the number of amino acid molecules may be as few as d. 50.
Proteins are large macromolecules composed of chains of amino acids. These amino acids are linked together through peptide bonds to form the primary structure of a protein. The number of amino acids present in a protein molecule can vary greatly and depends on the specific protein.
Proteins can range in size from small peptides composed of just a few amino acids to large complex proteins containing thousands of amino acids. The minimum number of amino acids required for a protein to be considered functional is typically around 50. This is because proteins need a certain length and structural complexity to carry out their specific functions.
Proteins play vital roles in living organisms and are involved in various biological processes such as enzyme catalysis, cell signaling, structural support, and immune response. The specific number and sequence of amino acids in a protein molecule determine its unique structure and function.
Therefore, while some proteins may consist of as few as 50 amino acids, larger and more complex proteins can contain thousands of amino acids, enabling them to perform intricate and diverse functions within living systems. Therefore, Option D is correct.
The question was incomplete. find the full content below:
In a protein molecule, the number of amino acid molecules may be as few as
a. 5
b. 5,000
c. 500
d. 50
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6 Which of the following types of rays combine to form atoms of helium? (A) gamma (y) rays (B) beta (B) rays (C) alpha (a) rays (D) X-rays
Answer:
(C) alpha (a) rays
Explanation:
thanks me later
1. Explain how you would determine the enthalpy of reaction for the hypothetical reaction A2X4(l) + X2(g) → 2AX3(g) using the following information. You do not need to calculate an answer. Respond to the prompt with a minimum response length of 50 words.
we can determine the enthalpy of reaction for the hypothetical reaction A2X4(l) + X2(g) → 2AX3(g) using the following steps:
write the balanced chemical equation for the reactionwe obtain the standard enthalpies of formation for each compoundwe apply Hess's law calculate the enthalpy of reactionwe then add up the changes to get the total enthalpy change for the reaction State Hess law?Hess's Law of Constant Heat Summation states that regardless of the multiple stages or steps of a reaction, the total enthalpy change for the reaction is the sum of all changes.
The law is Hess's Law of Constant Heat Summation is described as a manifestation that enthalpy is a state function.
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The figure below shows the rotation curves of several spiral galaxies, extending to the very edge of their visible disks. What do these curves tell us about the distribution of dark matter in these galaxies?
Group of answer choices
Most of the dark matter is in the bulge.
Most of the dark matter is in the galaxies’ outskirts.
Most of the dark matter is near stars.
Most of the dark matter is in clumps.
The thing that the curves tell us about the distribution of dark matter in these galaxies is option B: Most of the dark matter is in the galaxies’ outskirts.
Why do galaxy rotation curves suggest the existence of dark matter?Beyond the visible borders of galaxies, the velocity of stars remains relatively constant, suggesting that there must be more matter present than what we can see as stars and gas.
When the impact of DE became noticeable, the rotation curves are shown to dip at a specific distance. r. These flat, v = constant, rotation curve data suggest that the amount of dark matter is increasing linearly with r up to great distances from the spiral galaxies' centers.
From the graph you can see they all pointing or going one direction, hence we can deduce that it is option B.
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The density of ethanol is 0.789 g/cm^3. A flask holds 165.0 g of ethanol. What is the volume of the ethanol?
a. 4.78 x 10^-3 g
b. 130. g
c. 209 g
The volume of the ethanol that has a density of ethanol is 0.789 g/cm³ is 209.13cm³.
How to calculate volume?The volume of a substance can be calculated by dividing the mass of the substance by its density as follows:
Volume = mass ÷ density
According to this question, the density of ethanol is 0.789 g/cm³. A flask holds 165.0 g of ethanol and the volume can be calculated as follows:
Volume = 165.0g ÷ 0.789g/cm³
Volume = 209.13cm³
Therefore, the volume of the ethanol that has a density of ethanol is 0.789 g/cm³ is 209.13cm³.
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Do you think a benitoite ring would be costly or inexpensive?
Answer:
I think it would be costly due to the fact that the gem is very rare and gorgeous. Also, the current prices are on average $3,000 per carat, so I would say that is pretty costly.
Explanation:
Hope this helps:)....if not then sorry for wasting your time and may God bless you:)
What is the relationship between an elements position and it’s atomic mass in the periodic table
Answer:
The chemical elements are arranged from left to right and top to bottom in order of increasing atomic number, or the number of protons in an atom's nucleus.
Explanation:
___Al + ____O2 → ____Al2O3
Answer:
4,3,2
Explanation:
HOPE THIS HELPS
Cal is titrating 57.5 mL of 0.363 M HBr with 0.315 M Ba(OH)2. How many mL of Ba(OH)2 does Cal need to add to reach the equivalence point?
Answer:
33.1mL of 0.315M Ba(OH) are required to reach the equivalence point.
Explanation:
The reaction of HBr with Ba(OH)₂ is:
2HBr + Ba(OH)₂ → BaBr₂ + 2H₂O
That means to find the theoretical volume Cal need to add we need to find moles of HBr in solution, convert these to moles of Ba(OH)₂ and with its molar concentration find the volume, thus:
Moles HBr:
57.5mL = 0.0575L * (0.363mol/L) = 0.0209 moles HBr
Moles Ba(OH)₂:
0.0209 moles HBr * (1mol Ba(OH)₂ / 2 mol HBr) = 0.0104 moles Ba(OH)₂
Volume:
0.0104 moles Ba(OH)₂ * (1L / 0.315mol) = 0.0331L =
33.1mL of 0.315M Ba(OH) are required to reach the equivalence point.What is the component concentration ratio, [CH3COO−]/[CH3COOH], of a buffer that has a pH of 4.650? (Ka of CH3COOH = 1.8 × 10−5)
Answer:
Refer to the attached page,
I've done the calculation over there
Roasting battle, Bored xD
Answer: ok lets battle XD
Explanation:
Answer:
hmmmmm
Explanation:
seems kinda sus
How many grams of Aluminum Sulfate are produced when 4 g of Aluminum Nitrate react with 3 g of Sodium Sulfate?
Al(NO3)3 + Na2SO4 ---------> Al2(SO4)3 + NaNO3
3.21 grams of Aluminum Sulfate are got when 4 g of Aluminum Nitrate reacts chemcially with 3 g of Sodium Sulfate.
WHat is the balanced equation for this reaction? How many grams of Aluminum Sulfate are produced?The equation given is not balanced. Thus, when balanced the equation becomes:
2 Al(NO₃)₃ + 3 Na₂SO₄ → Al₂(SO₄)₃ + 6 NaNO₃
The molar mass of Al(NO₃)₃ is:
Al(NO₃)₃ = 1(Al) + 3(N) + 9(O) = 213 g/mol
The molar mass of Na₂SO₄ is:
Na₂SO₄ = 2(Na) + 1(S) + 4(O) = 142 g/mol
From the balanced equation, we can see that 2 moles of Al(NO₃)₃ react with 3 moles of Na2SO4 to produce 1 mole of Al₂(SO₄)₃. Therefore, we can calculate the number of moles of Al(NO₃)₃ and Na₂SO₄ that react:
Number of moles of Al(NO₃)₃ = 4 g / 213 g/mol = 0.0188 mol
Number of moles of Na₂SO₄ = 3 g / 142 g/mol = 0.0211 mol
From the balanced equation, we can see that 2 moles of Al(NO₃)₃ produce 1 mole of Al₂(SO₄)₃. Therefore, the number of moles of Al₂(SO₄)₃ produced is:
Number of moles of Al₂(SO₄)₃ = 0.0188 mol / 2 * 1 = 0.0094 mol
The molar mass of Aluminum Sulfate (Al₂(SO₄)₃) is:
Al₂(SO₄)₃ = 2(Al) + 3(S) + 12(O) = 342 g/mol
Therefore, the mass of Aluminum Sulfate produced is:
Mass of Al₂(SO₄)₃ = Number of moles of Al₂(SO₄)₃ * Molar mass of Al₂(SO₄)₃
= 0.0094 mol * 342 g/mol
= 3.21 g
Hence, 3.21 grams of Aluminum Sulfate are liberated when 4 g of Aluminum Nitrate change state with 3 g of Sodium Sulfate.
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The specific heat of a certain type of cooking oil is 0.418 cal/(g·°C). How much heat energy is needed to raise the temperature of 1.227 kg of this oil from 23.0 °C to 60.0 °C?
The quantity of heat energy needed to raise the temperature of 1.227 kg of oil from 23.0 °C to 60.0 °C is 18.98 calories.
How to calculate heat energy?The amount of heat energy absorbed or released by an object can be calculated using the following formula:
Q = mc∆T
Where;
Q = quantity of heat absorbed or releasedm = mass of substancec = specific heat capacity∆T = change in temperatureQ = 1.227 × 0.418 × (60°C - 23°C)
Q = 18.98 calories
Therefore, the quantity of heat energy needed to raise the temperature of 1.227 kg of oil from 23.0 °C to 60.0 °C is 18.98 calories.
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DUE IN 4 MINUTES!!! NEED ANSWER ASAPSSSSSSSS
If 50 grams of water is to be heated from 42.0° C to 100.0° C to make a cup of tea, how much heat must be added?
Question 42 options:
15,200 calories
84 calories
2,900 calories
2,100 calories
Answer:
Explanation:
The amount of heat that must be added to heat 50 grams of water from 42.0° C to 100.0° C can be calculated using the specific heat capacity formula: Q = m*C*ΔT, where Q is the heat required, m is the mass of the water, C is the specific heat capacity of water, and ΔT is the temperature change.
Using the values given, we have:
Q = 50 g * 1 cal/g °C * (100.0°C - 42.0°C)
Q = 50 g * 1 cal/g °C * 58.0°C
Q = 2,900 calories
Therefore, the amount of heat that must be added to heat 50 grams of water from 42.0° C to 100.0° C is 2,900 calories. The answer is option (C).