The number of grams of aluminum that will react fully with chlorine gas is 22.5grams.
How to calculate moles using stoichiometry?Stoichiometry refers to the quantitative relationship between the reactants and products of a specific reaction or equation.
According to this question, aluminium reacts with chlorine gas as follows:
2Al + 3Cl₂ → 2AlCl₃
Based on the above reaction, 2 moles of aluminium reacts with 3 moles of chlorine gas.
1.25 moles of chlorine gas will react with 1.25 × ⅔ = 0.83 moles of aluminum.
mass of aluminum = 0.83 × 27 = 22.5grams of aluminum
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The vapor pressure of liquid X is lower than that of liquid Y at 20oC, but higher at 60oC. What can you deduce about the relative magnitude of the molar heats of vaporization of X and Y?
Hint: ln(P1/P2)= Hvap/R (1/T2-1/T1)
Vapor pressure of X is lower than Y at 20°C, therefore heat of vaporization pf X is greater than Y.
What is vapour pressure ?Vapour pressure is a measure of a material's tendency to change into a gaseous or vapour state, and it rises with temperature.
The boiling point of a liquid is the temperature at which the vapour pressure at its surface equals the pressure exerted by its surroundings.
Heat of vaporization ∝ 1 ÷ Vapour pressure
But at 60°C vapour pressure of X is greater than Y.
Thus, at this temperature heat of vaporization pf Y is greater than X
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Calculate the molarity of the solution in a flask that contains 2.50 moles of potassium sulfate in 125 mL of solution.
Answer:
20M or 20mol/L
Explanation:
molarity = moles/volume (in Liters)
= 2.5/0.125L
=20M or 20 mol/L
select all names that correspond to an isomer of 4-isopropylheptane. question options: 3,4-diethylhexane 4-(methylethyl)heptane decane 2,2,3-trimethyloctane 2-methylnonane
All four compounds are isomers of 4-isopropylheptane, and each isomer has its own unique properties, such as boiling point, melting point, solubility, and other physical properties.
The names of the isomers of 4-isopropylheptane are 3,4-diethylhexane, 4-(methylethyl)heptane, 2,2,3-trimethyloctane, and 2-methylnonane. 3,4-diethylhexane and 4-(methylethyl)heptane are structural isomers, which means that the molecules have different structural formulas and connectivities. 3,4-diethylhexane has two ethyl groups attached to the fourth carbon, while 4-(methylethyl)heptane has one methyl and one ethyl group attached to the fourth carbon. 2,2,3-trimethyloctane and 2-methylnonane are both positional isomers, meaning that the molecules have the same structural formula but the groups attached to the carbon chain are arranged differently. 2,2,3-trimethyloctane has three methyl groups attached to the second, third, and fourth carbons, while 2-methylnonane has two methyl groups attached to the second and ninth carbons.
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Suppose 7.0 g of Compound A and 8.0 g of Compound B are consumed in a reaction that produces only one product, Compound C.
Calculate the theoretical yield of C.
Round your answer to the nearest 0.1 g.
Suppose 12.6 g of C are actually isolated at the end of the
reaction.
What is the percent yield of Compound C?
Round your answer to the nearest whole percent.
The percent yield of Compound C is 84.0%.
What is the percent yield?Theoretical yield of C:
The mass of Compound C produced in the reaction can be calculated using the law of conservation of mass, which states that mass is neither created nor destroyed, so the sum of the masses of the reactants must equal the mass of the product.
Given the masses of Compounds A and B, we can calculate the mass of Compound C as follows:
Mass of Compound C = Mass of Compound A + Mass of Compound B
= 7.0 g + 8.0 g
= 15.0 g
Therefore, the theoretical yield of Compound C is 15.0 g.
Percent yield of Compound C:
The percent yield of Compound C is calculated using the following formula:
Percent yield = (Actual yield/Theoretical yield) x 100
Given that 12.6 g of Compound C was isolated at the end of the reaction, the percent yield of Compound C can be calculated as follows:
Percent yield = (12.6 g/15.0 g) x 100
= 84.0%
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HELP!!! ILL MARK YOU AS BRAINLIST
Show a calculation converting the average mass of a quarter from grams to ounces using
the relationship 1 oz = 28.3 grams. How does your calculated value compare with the
value you measured on the scale in ounces?
Answer:
Explanation:
The value you measured on the scale in ounces = X
28.3 grames = 1oz
1/4of grames= 1/28.3 *1/4
You have to compare as below;
if you want to convert the measured scale to grames ; multiply by 28.3
if you want to convert measured to oz ; you have to (1/28.3 *1/4) *X/4
Calculate the number of moles of aluminum, sulfur, and oxygen atoms in 6.00 moles of aluminum sulfate, Al2(SO4)3 .
One mole of the compound Al₂ (SO₄)₃ contains 2 moles of Al, 3 moles of sulphur atoms and 6 moles of O₂ gas.
What is aluminum sulphate ?Aluminum sulphate is an ionic compound formed by the donation of electrons from the Al metal to the sulphate group. In the sulphate group, the oxygen and sulphur are covalently bonded.
The reaction of the formation of aluminum sulphate can be written as follows:
[tex]\rm 2Al + 3 SO_{4} \rightarrow Al_{2}(SO_{4})_{3}[/tex]
Here, one mole of this compound is formed by 2 moles of Al and 3 moles of sulphate group. 3 moles of sulphate group contains 3 moles of S and 6 moles of O₂.
Then, 6 moles of Al₂ (SO₄)₃ contains 12 moles of Al, 18 moles of S and 36 moles of oxygen gas.
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What do the solid lines on the topographic map represent?
The solid lines on a topographic map typically represent contour lines, which are used to show the changes in elevation of the land surface.
What is a topographic map used for?A topographic map is used to represent the three-dimensional features of the terrain on a two-dimensional surface. The topographic map shows the location, shape, and elevation of natural and man-made features on the earth's surface, such as hills, valleys, rivers, lakes, roads, buildings, and contour lines.
These lines connect points of equal elevation and show the shape and slope of the terrain. They can be used to visualize the topography of an area and can be useful for navigation, planning hikes, and other outdoor activities.
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7.50 mol of CH4 contains how many particles
Does a reaction occur when aqueous solutions of silver(I) acetate and cobalt(II) bromide are combined?
Format : _____ + _____ ----> _____
(not a word problem, need net ionic equation)
The chemical equation is the method which is used to represent the chemical reaction using the chemical formulae and symbols of the reactants and products.
What is a net ionic equation?An equation which depicts only the reacting species of the reaction and avoids the spectator ions of the reaction is termed as the net ionic equation. The redox reactions can be represented as net ionic equation.
The spectator ions are those which do not participate in chemical reactions and they are present on both sides of the reaction. Thus they are cancelled while writing a net ionic equation.
Here the silver(I) acetate and cobalt(II) bromide combines as follows:
2AgC₂H₃O₂ + CoBr₂ → Co(C₂H₃O₂)₂ + 2AgBr
The complete ionic equation is:
Ag⁺ (aq) + CH₃COO⁻ (aq) + CO²⁺ (aq) + 2Br⁻ (aq) = CO²⁺ (aq) + 2 CH₃COO⁻ (aq) + 2 AgBr (s)
Thus the net ionic equation is:
Ag⁺ (aq) + 2Br⁻ (aq) → CH₃COO⁻ (aq) + 2 AgBr (s)
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Use the following information to answer questions 16 and 17.
M2R3(aq) + 3TS2(aq) → 2MS3(s) + 3TR(S)
M2R3 and TS, are both ionic compounds. When 20.0 mL of a
1.0 M solution of M2R3 and 50.0 mL of a 1.0 M solution of TS2
are mixed, two precipitates are formed.
16. After the reaction has gone to completion, what ions remain in
solution?
(A) M and R
(B) T and S
(C) M and S
(D) T and R
he correct answer is (C) M and S, which are the ions that remain in solution after the reaction has gone to completion.
When 20.0 mL of a 1.0 M solution of M2R3 and 50.0 mL of a 1.0 M solution of TS2 are mixed, a reaction occurs, producing two precipitates, MS3 and TR. The precipitates are solid compounds that are no longer in solution, so they are not included in the ions that remain in solution.
Based on the balanced chemical equation, the reactants in solution are M2R3 and TS2, which means that the ions that remain in solution are M and S (option C). The reaction consumes the R and T ions, causing them to combine with the M and S ions to form the solid precipitates.
Therefore, the correct answer is (C) M and S, which are the ions that remain in solution after the reaction has gone to completion.
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Samples of NaF(s) and NH4Cl(s) are dissolved in separate beakers that each contain 100 mL of water. One of the salts produces a slightly acidic solution. Which of the following equations best represents the formation of the slightly acidic solution? (A) Nat(aq) + 2 H2O(l) + NaOH(aq) + H2O+(aq) (B) F (aq) + H2O(1) = HF(aq) + OH(aq) (C) NH4+(aq) + H2O(l) + NH3(aq) + H2O+(aq) (D) Cl(aq) + H2O(l) + HCl(aq) + OH(aq)
Samples of NaF(s) and NH₄Cl(s) are dissolved in separate beakers that each contain 100 ml of water. The equation that best represents the formation of the slightly acidic solution will be option c.
NH⁴⁺(aq) + H₂O(l) --- NH₃(aq) + H₃O(aq)
The NH4Cl salt forms a slightly acidic solution as it generates hydronium ions when dissolved in water. The NaF salt does not generate hydronium ions when dissolved in water, so it forms a neutral solution. Substitute with "Sodium fluoride is an inorganic salt of fluoride carrying molecular formula NaF." Sodium fluoride solutions are utilized with hard water-insoluble mixtures of calcium and magnesium fluoride can constitute. It is a dry chemical utilized in the fluoridation of drinking water, it should be manually cogitated and summed up in the mixing tank. NH₄Cl is an inorganic compound with the chemical term Ammonium chloride.
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Answer the following for a Bi atom. Include the sign of the charge of the ion even if it is positive and place it in front of the number. For example, enter -3 not 3- or 3.
The valence electron configuration is
The number of unpaired electrons is
The number of occupied p orbitals in the atom is
The charge on its most common ion is
French chemist Claude Geoffroy the Younger proved in 1753 that it was an element in and of itself, not only a variety of lead.
What is Bismuth atoms?The word "bismuth" is most likely a Latinization of the old German word "weissmuth," which means "white material" and may have been given to the metal because of its white oxide.
As such, it is resistant to magnetization and is attracted to magnetic fields. The video demonstrates one result of this (left). Additionally, for a metal, bismuth has very high electrical resistance. Other than mercury, it has the lowest heat conductivity of any metal.
The peculiar characteristic of bismuth is that it expands when it freezes, much like water. Four more elements—silicon, gallium, antimony, and germanium—also increase when they freeze.
Therefore, French chemist Claude Geoffroy the Younger proved in 1753 that it was an element in and of itself, not only a variety of lead.
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) A solution contains 13.5 g of NaCl in 100.0 g of water at 25°C. a) What are the mole fractions of NaCl and water in the solution?
Answer:
the mole fraction of NaCl is 0.232 mol ÷ 5.782 mol = 0.0401
the mole fraction of water is 5.55 mol ÷ 5.782 mol = 0.9598.
Match the density to the object
- The object at the bottom of the yellow layer
- The object at the bottom of the blue layer
- The nut in the red layer
- The object at the top of the yellow layer
● 6 g/mL
● 1.5 g/mL
● 3 g/mL
● 0.5 g/mL
Answer:
The object at the bottom of the yellow layer: 6 g/mL
The object at the bottom of the blue layer: 1.5 g/mL
The nut in the red layer: 3 g/mL
The object at the top of the yellow layer: 0.5 g/mL
what two things are involved in the provision of the welfare state
What is missing is 234/90 Th
What is the alpha decay?We know that when we talk about the radioactive decay, we are talking about the breaking up of the radioactive nucleus into its components. The components of the radioactive nucleus can be seen on the left hand side of the reaction equation.
In this case, we can see that what we have here is actually an alpha decay as what has been given off on the right is an alpha particle from the image that has been shown here as concerns the radioactive decay of the isotope
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The formation of a new strain free grains in a metal that has been heated to an elevated to an elevated temperature is called which one of the following:
A. hot hardness
B. recrystallization
C. strain hardening
D. strain softening
B. recrystallization. Recrystallization is the process of forming new strain-free grains in a metal that has been heated to an elevated temperature.
What is Recrystallization ?Recrystallization is a process used to purify a solid compound. It involves dissolving the compound in an ariate solvent, usually one that has a high boiling point, and then slowly cooling the solution. As the solution cools, the dissolved compound will slowly crystallize out of the solution and the impurities that were present in the sample will remain dissolved. This process is repeated multiple times to ensure the highest purity of the compound is achieved. Recrystallization is a useful technique for purifying compounds that are not soluble in water, since it does not require the use of expensive reagents. It also allows for the purification of compounds that are insoluble in any organic solvent. This process is commonly used in laboratories to prepare a sample for further analysis or for use in a synthesis.
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gef4 gecl4 g for each pair of compounds listed, check the box next to the one with the higher boiling point.
The compound with the higher boiling point in this pair is GeF₄. The boiling point of GeF4 is 128 °C, whereas the boiling point of GeCl₄ is only -40.6 °C.
This is due to the larger size of the GeF₄ molecule, which results in stronger London dispersion forces between molecules, increasing the boiling point.
London dispersion forces are extremely weak attractive forces between atoms or molecules caused by the electrostatic attraction between temporary induced dipoles. They arise due to the uneven distribution of electrons within an atom or molecule, which causes one end of the atom or molecule to become slightly positively charged and the other end to become slightly negatively charged.
These charges attract each other, resulting in a temporary attractive force between the two atoms or molecules. London dispersion forces are the weakest of the intermolecular forces, but they are still important in determining the properties of substances.
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You should test the conductivity of the substance before melting it.For what amount of time are you supposed to heat each substance on the hot plate? Choose the correct answer(s).
• up to 3 minutes
• 5 minutes
•less than 3 minutes if the substance melted sooner
• longer than 5 minutes if it still hasn't melted
A substance should be heated for: option C and D
less than 3 minutes if the substance melted soonerlonger than 5 minutes if it still hasn't meltedWhat is conductivity?Conductivity is a measure of a material's ability to conduct electrical current. It is the property of a material to allow the flow of electric charges through it. The conductivity of a material is determined by the number of free electrons it has, as well as the mobility of those electrons.
The appropriate heating time for a substance on a hot plate would depend on a variety of factors, including the specific substance being heated, the desired temperature, and the equipment being used. The heating time may also vary depending on whether the substance is being melted or simply heated for another purpose.
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For which equation is the enthalpy change described as an enthalpy change of formation?
A CuSO4(aq) + Zn(s) → ZnSO4(aq) + Cu(s)
B Cu(s) + S(s) + 2O2(g) → CuSO4(aq)
C 5H2O(l) + CuSO4(s) → CuSO4.5H2O(s)
D Cu(s) + S(s) + 2O2(g) → CuSO4(s)
5 H₂O(l) + CuSO₄(s) → CuSO₄.5 H₂O(s) is the chemical equation which describes as an enthalpy change of formation.
What is chemical equation?Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.
A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .
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For each pair of compounds listed, check the box next to the one with the higher boiling point. compounds higher boiling point SiF4 GeF Geld CCI CI o Х 6 ?
The boiling point of a compound is determined by the strength of the intermolecular forces between its constituent molecules. Stronger intermolecular forces result in a higher boiling point.
The boiling point information for each of the compounds:
SiF₄ has a boiling point of -90.1°C.
GeF₄ has a boiling point of -67.2°C.
So, SiF₄ has a higher boiling point than GeF₄.Geld has a boiling point of 63.6°C.
CCl₄ has a boiling point of 77.7°C.
So, CCl₄ has a higher boiling point than Geld.CO has a boiling point of -191.5°C.
CI₂ has a boiling point of -39.8°C.
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if the absolute pressure in a tank is 140 kpa, and the atmospheric pressure is 100 kpa. Determine the pressure head in mm of mercury.
If the absolute pressure in a tank is 140 kpa, and the atmospheric pressure is 100 kpa. 0.2998 m is the pressure head in mm of mercury.
What is pressure ?
The definition of pressure is the amount of force that is exerted to a certain region. It can be calculated mathematically as P=FA, where F is the force applied perpendicular to surface area A. The pascal (Pa), or one newton per square metre (N/m 2), is the accepted unit of pressure..
What is temperature ?
Temperature is a unit used to represent how hot or cold something is. It can be stated using the Celsius or Fahrenheit scales, among others. Temperature shows which way heat energy will naturally flow, i.e., from a hotter (body with a higher temperature) to a colder (body with a lower temperature) (one at a lower temperature).
Gauge pressure= absolute pressure - atmosphere pressure
= 140-100
= 40Kpa
∴Gauge pressure = Pm × g × hm
40×10³= 13600× 9.01× hm
hm= 0.2998 m
Therefore, If the absolute pressure in a tank is 140 kpa, and the atmospheric pressure is 100 kpa. 0.2998 m is the pressure head in mm of mercury.
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Identify the structure of S (molecular formula C7H14 O2).
Compound S the odor of rum, H NMR data (ppm) at 0.93 (doublet, 6H), 1.15 (triplet, 3H), 1.91 (multiplet, 1H), 2.33 (quartet, 2H), and 3.86 (doublet, 2H) ppm.
The molecular formula of compound S, C₇H₁₄O₂, suggests that it is a secondary alcohol or an aldehyde.
What is this compound "C₇H₁₄O₂"?The compound "C₇H₁₄O₂" is a molecular formula which represents the chemical structure of an organic compound containing 7 Carbon atoms, 14 Hydrogen atoms and 2 Oxygen atoms. The H NMR data is consistent with a secondary alcohol, as the doublet at 0.93 ppm and the doublet at 3.86 ppm correspond to the CH3 groups and the multiplet at 1.91 ppm corresponds to the OH proton.
The triplet at 1.15 ppm corresponds to the CH₂ group and the quartet at 2.33 ppm corresponds to the CH group. Based on these spectral data, it is likely that compound S is a secondary alcohol with the molecular formula C₇H₁₄O₂.
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match the concept with it's definition. group of answer choices intermediate [ choose ] transition state [ choose ] activation energy [ choose ] rate determining step [ choose ] exothermic [ choose ] catalyst [ choose ] chemical kinetics [ choose ] thermodynamic control
Intermediate is a high energy substance that exists for a short time in The process of the reaction.
Transition state : The point where bonds break or form.
1. Intermediate : An intermediate is a molecule that is formed from two or more reactants and then reacts further to give products.
2. Transition state : A very short-lived configuration of atoms at a local energy maximum in a reaction-energy diagram.
3. Activation energy : The minimum energy required to cause a process (Such as a chemical reaction) to occur.
4. Rate determining step : The slowest step of a chemical reaction that Determines the speed (rate) at which the overall reaction proceeds.
5. Exothermic : A chemical reaction that involves the release of energy in The form of heat or light.
6. Catalyst : A substance that changes the mechanism, but is not itself Changed by the reaction.
7. Chemical Kinetics : Governs the rate of a reaction (speed of the Reaction).
8. Thermodynamic control : Governs the extent of a reaction (Spontaneous).
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hazmat labels are used to communicate information necessary to protect human health and the environment? true or false
Answer:
True
Explanation:
True because Hazmat labels are used to communicate information necessary to protect human health and the environment. They are used to identify the presence of hazardous materials, and provide information about the risks associated with these materials.
Solid iron (III) hydroxide decomposes to produce iron (III) oxide and water vapor. Write a balanced equation. If 0.75 L of water vapor are produced at STP,
Fe(OH)3 --> Fe2O3 + H2O (YOU MUST BALANCE THIS BEFORE STARTING)
a. How many grams of iron (III) hydroxide were used? _________ grams of iron (III) hydroxide (3 sig figs)
b. How many grams of iron (III) oxide were produced? __________ grams of iron (III) oxide (3 sig figs)
50 points
Answer:
Balanced equation: 2Fe(OH)₃ → Fe₂O₃ + 3H₂O
a) 2.39 g
b) 1.78 g
Explanation:
Given unbalanced chemical equation:
Fe(OH)₃ → Fe₂O₃ + H₂O
To balance a chemical equation, we need to make sure that there are the same number of atoms of each element on both sides of the equation. We can do this by adding coefficients in front of a chemical symbol or formula where needed.
Therefore, the balanced equation is:
[tex]\large\boxed{\sf 2Fe(OH)_3 \rightarrow Fe_2O_3 + 3H_2O}[/tex]
[tex]\hrulefill[/tex]
Part (a)Given that 0.75 L of water vapor (H₂O) is produced at STP (Standard Temperature and Pressure), which is 273.15 K and 1 atm, we can calculate the number of moles of water vapor produced using the ideal gas law:
[tex]\large\boxed{PV = nRT}[/tex]
where:
P = 1 atm (pressure)V = 0.75 L (volume)n is the number of moles of H₂O we want to calculate.R is the ideal gas constant (0.082 L·atm/mol·K)T = 273.15 K (temperature at STP).Solving for n:
[tex]\begin{aligned}n &= \dfrac{PV}{RT}\\\\n&= \dfrac{1 \cdot 0.75}{0.082\cdot 273.15}\\\\n&\approx 0.0334846841 \;\rm mol\end{aligned}[/tex]
Therefore, the number of moles of water vapor produced is 0.0335 moles (3 s.f.).
Using the stoichiometric coefficients from the balanced equation, we can relate the moles of water vapor produced to the moles of iron (III) hydroxide (Fe(OH)₃) used.
From the balanced equation, 2 moles of Fe(OH)₃ produce 3 moles of H₂O. Therefore, the number of moles of Fe(OH)₃ is:
[tex]\phantom{w.}\rm 0.0334846841\; moles\;of\;H_2O \times \dfrac{2 \text{ moles of } Fe(OH)_3}{3 \text{ moles of } H_2O}\\\\ \approx 0.0223231227 \text{ moles of } Fe(OH)_3[/tex]
Now, calculate the molar mass of Fe(OH)₃:
[tex]\phantom{w.}\rm Molar\; mass\; of\; Fe(OH)_3\\\\=\rm (1 \times Atomic\; mass \;of\; Fe) + (3 \times Atomic\; mass\; of\; O) + (3 \times Atomic \;mass\; of \;H)\\\\\rm \approx (1 \times 55.845\;g/mol) + (3 \times 15.999\; g/mol) + (3 \times 1.008\;g/mol)\\\\\rm \approx 106.866\; g/mol[/tex]
Finally, calculate the mass of Fe(OH)₃ by multiplying the number of moles by the molar mass:
[tex]\begin{aligned}\rm Mass\; of\; Fe(OH)_3 &= \rm 0.0223231227 \; mol \times 106.866\; g/mol\\&= \rm 2.38558283\; g\\&\approx \rm 2.39\;g\;(3\;s.f.)\end{aligned}[/tex]
Therefore, approximately 2.39 grams of iron (III) hydroxide were used.
[tex]\hrulefill[/tex]
Part (b)From the balanced equation, 2 moles of Fe(OH)₃ produce 1 mole of Fe₂O₃. Therefore, the moles of Fe₂O₃ produced is:
[tex]\phantom{w.}0.0223231227 \text{ moles of } \rm Fe(OH)_3 \times \dfrac{1 \text{ mole of } Fe_2O_3}{2 \text{ moles of } Fe(OH)_3}\\\\ \approx 0.0111615614\text{ moles of } Fe_2O_3[/tex]
Now, calculate the molar mass of Fe₂O₃:
[tex]\phantom{w.}\rm Molar\; mass\; of\; Fe_2O_3\\\\=\rm (2 \times Atomic\; mass \;of\; Fe) + (3 \times Atomic\; mass\; of\; O) \\\\\rm \approx (2 \times 55.845\;g/mol) + (3 \times 15.999\; g/mol) \\\\\rm \approx 159.687\; g/mol[/tex]
Finally, calculate the mass of Fe₂O₃ by multiplying the number of moles by the molar mass:
[tex]\begin{aligned}\rm Mass\; of\; Fe_2O_3&= \rm 0.0111615614 \; mol \times 159.687\; g/mol\\&= \rm 1.78235625\; g\\&\approx \rm 1.78\;g\;(3\;s.f.)\end{aligned}[/tex]
Therefore, approximately 1.78 grams of iron (III) oxide were used.
8.
9.
Your ear canal is closed off from the outside environment by the eardrum. Explain why your ears feel
pressure if you go below water.
Airplanes have pressurized cabins while flying. What do you think is the purpose of this pressurization?
Explain your answer.
You are selected to be the first high school student on the International Space Station. Explain what happens
to the gas in your spacecraft and in your body at each of these times:
a. prior to takeoff, inside the rocket, wearing your space suit.
b. Just prior to leaving the atmosphere and entering space.
c. onboard the ISS with your space suit off.
Please help thank you for your time helping me have a great day!!!!!!!!
1. The ears feel pressure below water because of the pressure of the water above and the atmospheric pressure.
2. The purpose of this pressurization is to ensure that the pressure in the ear and that of the outside atmosphere are equal.
3. What happens to the gas in your spacecraft and in your body at each of these times is as follows:
A. prior to takeoff, inside the rocket, wearing your space suit, the air pressure is the same
B. The air pressure is greater
C. The air pressure is less
What is air pressure?The force that air, whether compressed or unconfined, applies to whatever surface it comes into touch with is known as air pressure.
Air pressure is also known as atmospheric pressure and varies based on altitude.
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which of the following lewis diagrams best represents the bonding in the n2o molecule, considering formal charges? responses
In the lewis diagram of N₂O molecule, a triple bond is formed between the nitrogen atoms, which means, in the Lewis diagram the nitrogen atoms are connected with three lines.
The Lewis diagram is used to represent the way in which two or more atoms are bonded to each other. This is possible by using lines to represent bonds and dots to represent the electrons.
In the case of the molecule N₂O bonding occurs in such a way that the oxygen atom is connected to one of nitrogen atoms. The nitrogen atom that is not connected to the oxygen will have 2 electrons which is represented by dots as the number of valence electrons is 5, but in case of triple bond three are used.
The oxygen atom has 6 electrons represented by dots, which is equal to the number of valence electrons.
Considering the formal charges, the lewis structure in which the electronegative oxygen atom (O) contains a negative charge and the electropositive nitrogen atom (N) contains a positive charge represents bonding in the N₂O molecule.
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Complete the following statements: (4.2,4.3)
a. The atomic number gives the number of ________ in the
nucleus.
b. In an atom, the number of electrons is equal to the number of ___________.
c. Sodium and potassium are examples of elements called ____________.
a. The atomic number gives the number of protons in the nucleus.
b. In an atom, the number of electrons is equal to the number of protons.
c. Sodium and potassium are examples of elements called alkali metals.
Alkali metals are elements located in Group 1 on the periodic table, and they are extremely reactive. They are characterized by having a single electron in their outer shell, which makes them highly reactive and prone to forming chemical bonds. Alkali metals are found in the atmosphere, in the soil, and in the human body, and they are essential for life. They are also used in various industries, including the production of fertilizers, cleaning agents, and medicines.
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Given a sample of (R)-2,3-dimethylhexan-3-ol, which of the following would be the best synthesis of (R)-3-chloro-2,3-dimethylhexane?a.) PCl3b.) SOCl2c.) HCl/ZnCl2d.) 1. TsCl/Pyridine 2. NaCl
The best synthesis of (R)-3-chloro-2,3-dimethylhexane from (R)-2,3-dimethylhexan-3-ol would be using PCl3.
PCl3 is a commonly used reagent for chlorination reactions, and it can efficiently convert alcohol into the corresponding alkyl chloride.
What does PCl3 do in a reaction?
Phosphorus trichloride (phosphorus chloride, PCl3) is a colorless fuming liquid that reacts violently with water to liberate phosphoric acid and hydrogen chloride (HCL) gas. PCl3 is a strong oxidizer and will readily react with many organic compounds.
What is PCl3 used for?
Phosphorus Trichloride is a colorless, clear, fuming liquid with a strong odor. It is used in gasoline additives and textile finishing, and to make other chemicals, pesticides, dyestuffs, catalysts, and plasticizers.
Is PCl3 oxidizing or reducing agent?
PCl(3) can act as an oxidizing as well as a reducing agent
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Concentration data is commonly monitored during a reaction to determine the order with respect to a reactant. Consider the types of observations listed, and determine which order is likely for that reactant. Assume all other factors are held constant. The reaction rate is constant regardless of the amount of reactant in solution. a. second b. orderfirst c. orderzero d. order
Order zero. Concentration data is commonly monitored during a reaction to determine the order with respect to a reactant. Consider the types of observations listed.
What is observations ?Observations are the data collected through direct or indirect means. It is the process of gathering information by watching, listening, and measuring in order to gain knowledge and understanding. Observations can be qualitative, meaning they involve descriptions and subjective information, or quantitative, meaning they involve measurements and objective information. Examples of observational data include surveys, interviews, audio recordings, video recordings, and physical measurements. Observations are used to learn more about the world around us and to make informed decisions.
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