B. The gas molecules are strongly attracted to one another. The ideal gas law states that an ideal gas has no intermolecular forces, hence this assertion does not apply to ideal gases.
A theoretical concept known as an ideal gas is used in thermodynamics to describe a gas' behaviour under specific circumstances. When a gas's behaviour can be explained by the ideal gas law, which states that a gas's pressure, volume, and temperature are all proportionate to one another, the gas is said to be an ideal gas. The ideal gas rule is based on the premise that a gas is made up of a lot of tiny, non-interacting particles that take up a lot more space than the particles do. Although all gases in actuality depart somewhat from their idealised behaviour, the ideal gas law nonetheless serves as a reasonable approximation for a variety of uses.
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when measuring liquids in a graduated cylinder your eye level should be parallel to the level of the? your answer should be one word and not case sensitive (upper and lower case does not matter).
Your eye level should be parallel to the level of the meniscus when measuring liquids in a graduated cylinder.
While measuring liquids in a graduated cylinder, it is critical to keep your eye level in the line up with the level of the meniscus. The meniscus is the bent surface of the fluid that structures at the highest point of the fluid in the graduated chamber.
This bent surface can make the fluid level seem higher or lower than it really is, contingent upon the place where it is seen. By keeping your eye level line up with the meniscus, you can kill any parallax mistake and get a more precise estimation. To peruse the volume of the fluid precisely, you ought to ensure the lower part of the meniscus is at the graduation line on the chamber.
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What components must be present in the atmosphere to create photochemical smog in addition to volatile organic compounds VOCs?
To create photochemical smog, in addition to volatile organic compounds (VOCs), the presence of nitrogen oxides (NOx) is required. The combination of these two groups of pollutants can lead to the formation of ground-level ozone and other harmful secondary pollutants.
In addition to volatile organic compounds (VOCs), the presence of nitrogen oxides (NOx) is required to create photochemical smog. NOx is a term used to describe the family of nitrogen oxides, which include nitrogen monoxide (NO) and nitrogen dioxide (NO2), both of which are produced mainly from vehicle emissions, industrial processes, and combustion of fossil fuels.
When VOCs and NOx are emitted into the atmosphere and are exposed to sunlight, a series of complex photochemical reactions occur. This can result in the formation of ground-level ozone, a key component of photochemical smog, as well as other harmful secondary pollutants such as peroxyacetyl nitrate (PAN) and aldehydes.
Therefore, to create photochemical smog, the presence of both VOCs and NOx is necessary.
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the reaction of 3.30 g of aluminum with excess of hcl produced 10.5 g of alcl3. what is the percent yield for the alcl3?
The reaction of 3.30 g of aluminum with excess of hcl produced 10.5 g of alcl3.Percent yield of AlCl3 is [tex]13.0[/tex]%
Theoretical yield is the amount of product that is expected to be produced during a chemical reaction, based on the amount of reactants used. It is calculated by using the balanced equation of the reaction and the amount of reactants used. The theoretical yield is usually expressed in moles or grams.
Theoretical yield of AlCl3
[tex]3.30 g Al * \frac{1 mol Al}{26.982 g Al }*\frac{3 mol AlCl3}{1 mol Al }\\\\= 0.608 mol AlCl3[/tex]
Theoretical yield of AlCl3
[tex]= 0.608 mol AlCl3 *\frac{133.34 g AlCl3}{1 mol AlCl3 }\\= 81.1 g AlCl3[/tex]
A chemical reaction's efficiency is gauged by its percent yield.It is calculated by dividing the actual yield of a reaction by the theoretical yield and multiplying it by 100. The theoretical yield is the amount of product that would be produced if all the reactants were completely converted to products.
Percent yield of AlCl3 =[tex]\frac{ Actual yield}{Theoretical yield}* 100%[/tex]%
= [tex]\frac{10.5 g AlCl3}{81.1 g AlCl3}*[/tex] 100%
= [tex]13.0[/tex]%
Therefore,Percent yield of AlCl3 is [tex]13.0[/tex]%
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chlorous acid has a ka of 1.2 x 10-2 and hypochlorous acid has a ka of 3.5 x 10-8 . you have a 0.10 m solution of chlorous acid and a second solution that is 0.10 m in hypochlorous acid. which solution will have the lowest ph? explain your reasoning.
We must compare the acid dissociation constants (Ka) of chlorous acid and hypochlorous acid to determine which solution has the lowest pH.
A solution's acidity or basicity is determined by its pH. It is a logarithmic scale with a neutral value of 7 and a range from 0 to 14. Acidic solutions have a pH below 7, while basic solutions have a pH over 7. The volume of hydrogen ions (H+) that are present in a solution determines its pH. Whereas a higher H+ concentration causes a lower pH and more acidity, a lower H+ concentration causes a higher pH and more basicity. In many industries and biological processes, maintaining the right pH level is crucial because an improper pH can harm materials and living things.
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based on the information from the periodic table, which mistake did darrell make on his diagram? a nitrogen should have six electrons instead of seven. b nitrogen should have eight protons instead of six. c nitrogen should have seven protons instead of six. d nitrogen should have eight electrons instead of seven.
Nitrogen is 7th element in periodic table. It contains 7 electrons and 7 protons .Hence, nitrogen should have seven protons instead of six.
What is nitrogen ?Nitrogen is 7th element in periodic table. It is located in the 15th group of p -block in periodic table. Nitrogen exists in the gaseous state thus it is a non-metallic element.
The atomic number of an element is the number of electrons in its atom in the neutral state. For a neutral atom, the number of electrons is equal to the number of protons of the atom.
Hence, nitrogen has the atomic number of 7 implies it contains 7 electrons and 7 protons. Therefore, nitrogen should have seven protons instead of six.
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Assertion: Hydrogen is not used as fuel even though it has high calorific value.
Reason: Combustion of hydrogen is explosion.
Hydrogen has a high calorific value, meaning that it can produce a lot of energy when burned.
What is high calorific value?
High calorific value (HCV) is the amount of energy released when a fuel is burned. It is measured in joules or kilojoules per kilogram of fuel, and is used to compare different types of fuel. HCV is important, because it helps to determine the efficiency of a fuel, as well as its cost effectiveness. The higher the HCV, the more energy a fuel will produce from a given amount, making it cost effective and efficient. Different fuels have different HCV values, and the higher the HCV, the more efficient the fuel is.
However, it is not used as a fuel due to its explosive nature. When hydrogen combusts, it produces large amounts of heat and light in a very short period of time. This can cause an explosion if the reaction is not properly controlled. Therefore, hydrogen is not used as a fuel in most applications due to safety concerns.
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an 8-l cylinder contains air at 300 kpa and 300 k. now air is compressed isothermally to a volume of 2 l. the work done on air during this compression process is
The work done on air during the compression process is 3.327 KJ in 8l piston-cylinder device which contains air at 300 kpa and 300 k.
The formula for calculating work is given as,
W = Fd
P1 = 300k pa ,
V1 = 8L
V2 = 2L
Temperature remains constant so this means it is a isothermal process
For any isothermal process
P1V1 = P2V2
We know that work for isothermal process is given as,
W = P1V1 ln P1/P2
Now by substituting the values
W = 300 × 8 × 10⁻³ ln 2/8
W = -3.327 KJ
Negative sign in work done indicates the process is compression,
W = 3.327 KJ
Hence, work done on air during this compression process is 3.327 KJ
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Significant figures are important because they indicatea. the accuracy of the conversion factorb. the accuracy of the measurementc. the number of digits on a calculator =d. the precision of measuremente. the number of measurements
Significant figures are important because they indicate the precision of measurement. In scientific measurement, number of significant figures in a measurement is a way to communicate the precision or degree of uncertainty associated with that measurement.
The more significant figures a measurement has, the more precise the measurement is considered to be. Significant figures also help ensure that calculations and conversions are carried out with the appropriate degree of precision and avoid the appearance of false precision in the results.
When performing calculations, it is important to consider the number of significant figures in each number and to round the final result to the appropriate number of significant figures. This helps to ensure that the result is not reported with a degree of precision that is not supported by the data.
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What are the four main types of chemical reactions?
Answer:
synthesis, decomposition redox
Explanation:
Answer:
The four main types of chemical reactions are synthesis, decomposition, exchange (single replacement), and reduction-oxidation (redox).
Explanation:
you have a substance that turns violet when biuret is added, black when iodine is added, no change with benedict's reagent, and leaves no oily spot on a brown paper bag. given the above information, what csn conclude about this substance?
From the observations we can conclude that the substance contains protein and starch.
The different observations are given below:
Biuret - Violet (Violet color represents +ve for proteins)
Iodine - Black (Black color represents +ve for starch)
Benedicts - no change ( No change in color represent -ve due to absent of reducing sugar)
Sudan VI- (-ve as there is not lipid)
So, these results strongly suggest that substance is having protein and starch and showing positive test for these macromolecules in the sample as violet color for in biuret test and black while using iodine.
Therefore, assuming all the observations we can conclude that the substance contains protein and starch.
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the process of separating na and cl- against coulomb attractive force is . group of answer choices endothermic not enough information exothermic
The process of separating Na+ and Cl- against coulomb attractive force is :
Endothermic.
This is because it takes energy to counteract the attraction between the oppositely charged ions while separating Na+ and Cl- ions against Coulomb attractive force. The amount of energy needed to separate the ions is dictated by the intensity of their attraction, which is determined by the size of their charges and the distance between them. The greater the charge and the closer the ions, the greater the amount of energy necessary to separate them.
An endothermic process is one that absorbs energy in the form of heat. This sort of reaction requires an energy input, generally in the form of heat, to proceed. Endothermic processes include the combustion of fuels, the dissolution of salts, and the neutralisation of acids and bases.
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What is the empirical formula for the molecular formula given?
Molecular formula: C5H120
OC₂H6O
OCH5O
O C3H6O
O C5H12 O
The empirical formula for the molecular formula given is C₅H₁₂O as the subscripts cannot be reduced further.
What is empirical formula?Empirical formula of a compound is defined as the simplest whole number ratio of atoms which are present in a compound.It does not make any mention of the arrangement of atoms or the number of atoms. The empirical formula gives information about the ratio of number of atoms which are present in a compound.
Molecular formula is determined from the empirical formula by dividing the molar mass of a compound by the empirical formula mass. The resultant which should be a whole number or very close to the whole number , then the subscripts are multiplied by the whole number to get the molecular formula.
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I need help with 9-13
1) Hydrogen: 1.5 g / 1.008 g/mol = 1.488 mol.
2) Atomic hydrogen: 1.488 mol / 0.999 mol = 1.5
3) As a result, the empirical formula is C2 H3, and the mole ratio is 2: 3.
C₂H₃
What is an element?Primitive human societies first discovered native minerals like carbon, sulfur, copper, and gold.
This is where the history of the elements' discovery and use began (though the concept of a chemical element was not yet understood).
Throughout human history, attempts to categorize things like this gave rise to the concepts of classical elements, alchemy, and numerous related hypotheses.
The work of Dmitri Mendeleev, a Russian chemist who produced the first recognizable periodic table in 1869, contributed significantly to modern knowledge of the elements.
The elements are arranged in this table according to increasing atomic number into rows (or "periods") and columns (or "groups") that have similar physical and chemical characteristics on a regular basis.
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sodium ion concentration in the cytoplasm of a neuron __________ when its sodium channels open.
The sodium ion concentration in the cytoplasm of a neuron increases when its sodium channels open.
This is because the opening of the sodium channels allows for the influx of sodium ions into the cytoplasm, leading to an increase in the content-loaded sodium ion concentration within the cell. As a result, the cytoplasm becomes more positively charged, which can lead to the generation of an action potential and the transmission of a nerve impulse.
The sodium channel itself is the membrane protein that conducts sodium ions (Na⁺) through a cell membrane. It is highly selective to transport sodium ions, which it achieves by encapsulation of the ion in a cavity of a larger molecule.
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you are experimenting with blood samples and you place a drop of rbcs into a solution of 100 millimoles of cacl2. what effect does this have on the rbcs?
You are experimenting with blood samples and you place a drop of rbcs into a solution of 100 millimoles of CaCl2, there is no efect on RBCs.
The reason why the cell would shrink further in CaCl2 result is because it has a advanced van't Hoff factor i.e. total number of separated ionic species per solute patch( it is 2 for NaCl whereas it's 3 for CaCl2).
Nonionic solutes don't disconnect and will thus have a van't Hoff factor of 1)
Bibulous pressure( and other colligative parcels) are commensurable to van't Hoff factor. thus bibulous pressure in CaCl2 result will be3/2 times of that in an equimolar NaCl result.
Note that the ionic chemical eventuality isn't what drives osmosis; it's the discriminational attention of water( or any other detergent) that drives it.
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if 0.25 mol of br2 and 0.25 mol of cl2 are introduced into a 3.0 l container at 400 k, what is the equilibrium concentration (in m) of brcl?
Introducing 0.25 mol of br2 and 0.25 mol of cl2 into a 3.0 l container at 400 k results in the 0.096 M of equilibrium concentration of BrCl
The reaction for the formation of BrCl from Br2 and Cl2 is:
Br2(g) + Cl2(g) ⇌ 2BrCl(g)
The equilibrium constant expression for the above reaction is:
Kc = ([[tex]BrCl^{2}[/tex]]) / ([Br2][Cl2])
where [BrCl], [Br2], and [Cl2] are the equilibrium concentrations of the respective species in the reaction.
Since we have 0.25 mol of both Br2 and Cl2 in a 3.0 L container, the initial concentration of each is:
[Br2] = 0.25 mol / 3.0 L = 0.083 M
[Cl2] = 0.25 mol / 3.0 L = 0.083 M
At equilibrium, let's assume that the concentration of BrCl is x M. Therefore, the equilibrium concentration of Br2 and Cl2 will be (0.083 - x) M, since each mole of Br2 and Cl2 produces 2 moles of BrCl.
Kc = ([[tex]BrCl^{2}[/tex]]) / ([Br2][Cl2])
At equilibrium, Kc will have a certain value at the given temperature. For this problem, let's assume Kc =2.0 x [tex]10^{-2}[/tex] (which is an estimated value based on literature values at 400 K). Solving for x, we get:
2.0 x [tex]10^{-2}[/tex] = [tex]x^{2}[/tex] / [[tex](0.083 - x)^{2}[/tex]]
x = 0.096 M
Therefore, the equilibrium concentration of BrCl is 0.096 M.
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If the combined mass of the tpmt substrate and cofactor was determined before the enzymatically catalyzed reaction and then compared to the combined mass of the product and the cofactor after the reaction, the net change in molecular weight will be:
The net change in molecular weight would depend on the specific enzymatically catalyzed reaction and the substrates and products involved.
The Net Change in Molecular Weight During Enzymatic CatalysisEnzymatic catalysis involves the conversion of a substrate into one or more products. The net change in molecular weight during the reaction can vary depending on the specific reaction and the molecules involved. If the combined mass of the substrate and cofactor is determined before the reaction and compared to the combined mass of the product and cofactor after the reaction, the net change in molecular weight can be positive, negative, or zero. This is because the reaction may involve the addition or removal of atoms, groups of atoms, or functional groups. In some cases, the product may be larger than the substrate, resulting in a positive net change in molecular weight. In other cases, the product may be smaller than the substrate, resulting in a negative net change. Finally, some reactions may result in no net change in molecular weight, indicating that the reaction involved only the rearrangement of atoms without any addition or removal. Overall, the net change in molecular weight during enzymatic catalysis is dependent on the specific reaction and the molecules involved.
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What type of fault has the geologist found?
which one of the following is an intensive property? question 4 options: number of moles nk of substance k in the system. the product pv in a system. molar enthalpy hm of a system (defined as the ratio of the enthalpy of the system over the total number of moles in the system). volume v of the system. internal energy u of the system
Enthalpy molar is an intense property of a system is its Hm, which is calculated as the system's enthalpy divided by the sum of its moles. Hence, option D is the correct answer.
A thermodynamic feature known as an intense property does not depend on the mass of a system. Pressure, temperature, density, particular volume, specific internal energy, specific enthalpy, and specific entropy are a few examples of intense properties. A property is called as an extensive property which depends on the quantity of the materials in a sample.
Mass and volume are two examples of extensive qualities. Intense properties are those that are unaffected by the substance's concentration. For example, temperature and pressure are strong characteristics. Enthalpy, energy, and volume are all significant qualities. Contrarily, intensive qualities, such as colour, melting point, boiling point, electrical conductivity, and physical state at a certain temperature, are independent of the amount of the substance present.
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Correct Question:
Which one of the following is an intensive property?
(A) Internal energy U of a system.
(B) Volume V of a system.
(C) Number of moles [tex]n_{k}[/tex] of a substance k in a system.
(D) Molar enthalpy Hm of a system (defined as the ratio of the enthalpy of the system over the total number of moles in the system).
(E) The product pV for a system.
Stoichiometry
2. Balance the equation
Name:
1. Given this equation: N₂ +_______ H₂ →NH,, balance it and write the following molar ratios:
a)
N₂/H₂
b)
Ng/NH,
c) Hạ / NH,
a) Li,N/H,O
b)
N₂ + 3H₂ →2NH[tex]_3[/tex] is the balanced equation. A balanced equation is indeed a chemical reaction equation.
What is balanced equation?A balanced equation is indeed a chemical reaction equation in which the overall charge and the amount of atoms for every element inside the reaction are the same for both the products and reactants.
In plenty of other terms, the mass as well as charge across both endpoints of the reaction are balanced.
N₂ + H₂ →NH[tex]_3[/tex]
Number of atom of nitrogen on reactant side is 2 while on product side it is 1.
N₂ + H₂ →2NH[tex]_3[/tex]
Number of atom of hydrogen on reactant side is 2 while on product side it is 6.
N₂ + 3H₂ →2NH[tex]_3[/tex]
Therefore, N₂ + 3H₂ →2NH[tex]_3[/tex] is the balanced equation.
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what will be the most likely change in ph when the h ions in the solution is increased to twice its original concentration
The most likely change in pH when the H+ ions in the solution is increased to twice its original concentration is from 9.5 to 6.5.
This is because the pH of a solution is a measure of the concentration of H+ ions in the solution, and if the concentration is doubled, the pH will decrease. This can be shown mathematically using the equation pH = -log[H+]. For example, if the original concentration of H+ ions is 10^-9.5 moles/liter, then the pH will be 9.5. If the concentration of H+ ions is doubled to 10^-9 moles/liter, then the pH will become 6.5 (-log[10^-9]).
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complete question:What will be the most likely change in pH when the H+ ions in the solution is increased to twice its original concentration?
5.0 to 2.5
4.0 to 2.0
1.6 to 1.3
9.5 to 6.5
If we protect the special spaces of deserts, grasslands, and forests, then the animal and plant species will bounce back. true or false
True, protecting special spaces of deserts, grasslands, and forests can help restore the habitats of animals and plant species.
What is species?A species is a distinct group of organisms that are capable of interbreeding and producing fertile offspring. A species is identified by its unique set of characteristics, which distinguish it from other species. Species exist in many different environments, from the depths of the ocean floor to the tops of the tallest mountains. They are the basis of biological diversity and are a fundamental unit of classification in the field of biology. Species help define an ecosystem and the roles that each organism plays within the system. They are also an important source of food for many species, both predators and prey.
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How many moles of oxygen are formed when 58.6 g of KNO3 decomposes according to the following reaction? The molar mass of KNO3 is 101.11 g/mol. 4 KNO3(s) → 2 K2O(s) + 2 N2(g) + 5 O2(g) A) 0.290 mol O2 B) 0.580 mol O2 C) 18.5 mol O2 D) 0.724 mol O2 E) 1.73 mol O2
Using stoichiometry and the balanced chemical equation, 58.6 g of KNO3 produces 0.724 mol of O2, as 4 moles of KNO3 produce 5 moles of O2. The answer is D.
To determine the number of moles of oxygen formed when 58.6 g of KNO3 decomposes, we need to use stoichiometry and the balanced chemical equation provided.
From the balanced chemical equation, we can see that 4 moles of KNO3 produce 5 moles of O2. Therefore, we can use a proportion to find the number of moles of O2 produced when 58.6 g of KNO3 decomposes:
(5 mol O2 / 4 mol KNO3) = (x mol O2 / 58.6 g KNO3)
Solving for x, the number of moles of O2 produced, we get:
x = (5/4) * (58.6 g KNO3 / 101.11 g/mol)
= 0.725 mol O2
Rounding to the appropriate number of significant figures, we get 0.724 mol O2, which corresponds to option (D). Therefore, the answer is D) 0.724 mol O2.
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a doctor orders 120. ml of 4 % (m/v) ibuprofen. if you have 10. % (m/v) ibuprofen on hand, how many milliliters do you need? express the volume to two significant figures and include the appropriate units.
When we have 10% (m/v) ibuprofen on hand, we have to add 48ml of 10% (m/v) solution.
Lets say, we need 'x' ml of ibuprofen
the molecular weight of ibuprofen = 206.29 g/mol
now we know 4%(m/v) ibuprofen means 100ml of the total solution contains 4g of ibuprofen = 4g/206.29g/mol
= [tex]\frac{4}{206.29}[/tex]mol of ibuprofen
100 ml contains = [tex]\frac{4}{206.29}[/tex]mol
therefore 120 ml contains = = [tex]\frac{4}{206.29}[/tex] x 120 mol........(1)
10% (m/v) means 100ml contains mol
therefore we know 'x' ml is
10/206.29 × x mol........(ii)
we can say that (i) = (ii)
so we get,
120×4 = 10x
10x = 480
x = 48
so now we have to add 48ml of 10% (m/v) solution.
S₁×v₁ = S₂v₂
∴4 × 120 = 8 × v₂
v₂ = 48
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19. 50 cc of N/2 HCl and 10 cc of 2N H₂SO4 solutions are mixed with 0.4 g of NaOH. Calculate the normality of resulting mixture. [0.583N]
The normality of the resulting mixture is 0.583N.
What is the Normality of a mixture?The normality is described as the number of gram or mole equivalents of solute present in one liter of a solution.
How to calculate the normality:
First, let's calculate the number of moles of NaOH in 0.4 g of the compound:
Molar mass of NaOH = 23 + 16 + 1 = 40 g/mol
Number of moles of NaOH = 0.4 g / 40 g/mol = 0.01 mol
Next, we need to calculate the total number of acid equivalents in the mixture of HCl and H₂SO4:
Number of acid equivalents of HCl = (50 cc / 1000) L x (N/2) = 0.025 N LNumber of acid equivalents of H₂SO4 = (10 cc / 1000) L x (2N) = 0.02 N LTotal number of acid equivalents = 0.025 N L + 0.02 N L = 0.045 N LSince NaOH is a strong base and reacts completely with the acid, the number of moles of NaOH is equal to the number of acid equivalents in the mixture.
Therefore, the normality of the resulting mixture is:
Normality = number of acid equivalents / volume of the mixture in liters
Normality = 0.045 N L / ((50 + 10) cc / 1000) L = 0.583 N
So the normality of the resulting mixture is 0.583N.
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Write a diary entry describing a typical day in your life without an ozone layer. Your diary entry should demonstrate that you understand the role of the ozone layer and the many struggles that our world would face. Be prepared to read your diary entry to your group tomorrow. At least one entry per group will be presented to the class.
The chemical name for ozone is O3, and it is a unique type of oxygen. We breathe O2, and O2 is essential to life on Earth.
What is the ozone?The existence of ozone, despite making up a relatively minor portion of our atmosphere, is essential to human health. Between 10 and 40 kilometers above Earth's surface, where the majority of ozone is found, is the upper atmosphere. Ninety percent of the ozone in the atmosphere is found in this region, which is known as the stratosphere.The sun's biologically hazardous UV light is partially absorbed by ozone in the stratosphere. Stratospheric ozone is known as "good" ozone because of this advantageous role.For more information on ozone kindly visit to
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propane gas is to be compressed irreversibly from 5 bar and 323 k to 15 bar and 343 k in an adiabatic compressor in a petrochemical plant. calculate the work required per mole of propane using
The work input per mole of propane passing through the compressor If Propane obeys the Redlich-Kwong equation of state is 676.9 J/mol.
The Redlich – Kwong equation of state is an empirical, algebraic equation that relates temperature, pressure, and volume of feasts. It's generally more accurate than the van der Waals equation and the ideal gas equation at temperatures above the critical temperature. It was formulated by Otto Redlich and Joseph Neng Shun Kwong in 1949.
Tc = 369.9K
Pc = 42.5bar
W = 0.123
Cp = 29.595+0.838x10⁻₁ + 3.256 x 10⁻⁴ - 3.958 x 10⁻⁷ + 13.129 x 10⁻¹¹
Now given system is Adiabatic compressor
ΔH = Q +W [Q = 0]
ΔH = W
State1: T1 = 323K, P1 = 5bar
Tr = T/Tc = 323/369.9 = 0.873
Pr = P/Pc = 5/42.5 = 0.118
Redlich-Kwong equation of state is,
ΔH = RT2[Z2 - 1 -3/2 A2/B2 ln(1+B2/Z2)]
A1 = 0.42748x0.118/(0.873)².⁵
= 0.071
B1 = 0.08664x0.118/0.873
= 0.012
ΔH = W =(8.314)(343)[0.830-1-3/2(0.182/0.033)lm(1+0.033/0.830)]
ΔH = 676.9J/mol
Work input is 676.9 J/mol.
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Complete question:
Propane gas is to be compressed irreversibly from 5 bar and 323 K to 15 bar and 343 K by an adiabatic compressor in a petrochemical plant. Calculate the work input per mole of propane passing through the compressor If Propane obeys the Redlich-Kwong equation of state.
A student measures the mass of a solution before and after a chemical reaction takes place. in both cases the students measures the mass to be 50.25 g on an electronic balance with an uncertainty of 0.05 g. the student realizes that the ranges of uncertainty for each measurement overlap exactly. which claim can the student make?
The student can claim that the mass of the solution before and after the chemical reaction is the same.
This can be supported by the fact that the ranges of uncertainty for each measurement overlap exactly, indicating that the mass of the solution was the same before and after the reaction. This is because the ranges of uncertainty for the two measurements overlap exactly, meaning that the two values are statistically indistinguishable. Mathematically, this means that the absolute difference between the two measurements
[tex](50.25 g - 50.25 g)[/tex] is within the combined uncertainty of the two measurements[tex](0.05 g + 0.05 g).[/tex]
Therefore, the student can conclude that the mass of the solution has not changed.
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HELPPP plss thankyou
what is the percent abundance (in units of percent) of zinc in a sample whose density is 7.796 g/ml and the only other component is copper? the density for pure copper is 8.96 g/cm3 and the density of pure zinc is 7.13 g/cm3. report your answer to one decimal place.
The percent abundance of zinc is approximately 73.8%, a sample whose density is 7.796 g/ml and the density for pure copper is 8.96 g/cm3 and the density of pure zinc is 7.13 g/cm3.
What do you mean by the density ?The term density is defined as the measurement of how tightly a material is packed together.
It is also defined as the mass per unit volume.
Formula: ρ = m/V,
where ρ is the density, m is the mass of the object and V is the volume of the object.
Density of mixture = (density of copper)(percent abundance of copper) + (density of zinc)(percent abundance of zinc)
Now, Converting the densities to consistent units, we have:
density of mixture
= (8.96 g/cm³)(0.01)(100 - x) + (7.13 g/cm³)(0.01)(x)
By simplifying and converting to g/mL, we get:
density of mixture = 0.0896 g/mL (100 - x) + 0.0713 g/mL (x)
density of mixture = 0.0896 g/mL (100) - 0.0896 g/mL (x) + 0.0713 g/mL (x)
density of mixture = 8.96 g/mL - 0.0183 g/mL (x)
Then, we can use the given density of the mixture (7.13 g/mL) to solve for x:
7.13 g/mL = 8.96 g/mL - 0.0183 g/mL (x)
0.0183 g/mL (x) = 1.35 g/mL
x = 73.8
Thus, the percent abundance of zinc is approximately 73.8%.
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