The IUPAC name of a compound can be found by using IUPAC nomenclature rules. These rules include identifying the longest chain of carbon atoms, numbering the chain, and assigning the prefix and suffix of the compound. Additionally, other resources such as the Chemical Identifier Resolver from the National Institute of Standards and Technology can be used to find the IUPAC name of a compound.
what is IUPAC ?
IUPAC stands for the International Union of Pure and Applied Chemistry. It is an international scientific organization that works to develop and promote chemical nomenclature, terminology, methods, and standards for chemists. Their primary goal is to promote the science of chemistry for the benefit of humanity.
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Was the volume of the metal cylinder in part a (calculated from length measurements) or part d (calculated from displacement) more accurate? explain your choice.
The volume calculated from displacement in part d is more accurate because the measurement takes into account the air trapped in the cylinder's pores. The volume calculated from length measurements in part a does not take into account the air trapped in the cylinder's pores, so it would be underestimated.
The volume of the metal cylinder is calculated by multiplying the cross-sectional area of the cylinder by its length. If the cylinder is porous, it will contain air pockets that will not be accounted for in the calculation based on length measurements.
The volume calculated from displacement, on the other hand, takes into account the volume of the metal cylinder and the volume of the air trapped in the cylinder's pores. This method provides a more accurate measurement of the volume of the cylinder, as it takes into account all of the space that it occupies, including the air pockets.
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What is the osmotic pressure of a 1.4 M aqueous solution of glycerin in water at 47°c? Report your answer in atm and round to the second decimal place. Glycerin=C3H5(OH)3
The osmotic pressure of the 1.4 M aqueous solution of glycerin in the water at 47 °C is 36.73 atm.
The molarity of the solution = 1.4 M
The temperature of the solution = 47 °C = 320 K
The osmotic pressure is expressed as :
Osmotic pressure = M R T
where,
M = molarity = 1.4 M
R = constant = 0.082 atm L / mol K
T = temperature = 320 K
By solving the values , we get :
Osmotic pressure = M R T
Osmotic pressure = 1.4 × 0.082 × 320
Osmotic pressure = 36.73 atm
Thus, the osmotic pressure is 36.73 atm.
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please write the symbols for the cation and anion that make up each ionic compound. mni3
MNi3 is an ionic compound composed of a metal cation (M+) and a polyatomic anion (Ni3-).
In ionic compounds, the metal cation is typically represented by its elemental symbol, such as M in this case, while the anion is represented by its chemical formula, such as Ni3- in this case.
Ionic compounds are formed through the transfer of electrons from a metal to a nonmetal, resulting in the formation of positively charged cations and negatively charged anions. These charged species are held together by electrostatic forces, resulting in the formation of a solid crystal lattice.
In the case of MNi3, the metal cation is positively charged, while the Ni3- anion is negatively charged. These charged species attract each other and form a solid crystal lattice.
It's important to note that the actual identity of the metal cation M can be determined by considering the oxidation state of the metal and the charge on the Ni3- anion. For example, if the metal has an oxidation state of +3 and the Ni3- anion has a charge of -3, the metal cation could be aluminum (Al3+), while if the metal has an oxidation state of +2 and the Ni3- anion has a charge of -3, the metal cation could be magnesium (Mg2+).
In conclusion, ionic compounds are formed by the transfer of electrons between a metal cation and a nonmetal anion, resulting in the formation of positively charged cations and negatively charged anions. These charged species are held together by electrostatic forces, resulting in the formation of a solid crystal lattice. The actual identity of the metal cation can be determined by considering the oxidation state of the metal and the charge on the anion.
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What is the formula and use of Sulphuric acid?
Two hydrogen atoms, one sulfer atom, and four oxygen atoms make up sulfuric acid, also known as H2SO4. Strong, water-soluble, highly polar sulfuric acid is a great solvent. It is used in the creation of detergents and fertilisers, among other things.
Which two purposes does sulfuric acid serve?
Producing fertilisers like superphosphate of lime and ammonium sulphate is the main usage of sulfuric acid. It is frequently utilised in the production of chemicals, such as synthetic detergents, explosives, hydrochloric acid, nitric acid, sulphate salts, dyes & pigments, and pharmaceuticals.
What are the four industrial uses of sulfuric acid?
It is extensively utilised in the production of chemicals, such as nitric acid, sulphate, and hydrochloric acid.
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Which is the best method to synthesize the following compound? CH3-C-0-CH3? A) CH3-C-H + CH3OH B) CH3-C-NH2 + CH3ONa C) CH3-C-Cl + CH3ONA D) CH3-C-OH + CH3OH E) CH3-C-H + CH3ONa
D. CH3-C-OH+CH3OH
Ethers are a subclass of organic compounds that have an oxygen atom linked to two carbon atoms, and CH3-C-0-CH3 is one of these molecules.
An alcohol (CH3OH) and an alkoxide are combined to create this ether (CH3-C-OH). Williamson ether synthesis is the name given to the reaction in which an alkoxide intermediate is created and subsequently attacked by alcohol to produce the ether product.
The appropriate reactants for this reaction are shown in Option D, CH3-C-OH + CH3OH. Option A, CH3-C-H + CH3OH, represents a reaction between an alcohol and an alkane (CH3-C-H), which does not result in the formation of an ether. The reaction between an amine and sodium methoxide in option B, CH3-C-NH2 + CH3ONa, will result in a salt rather than an ether.
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what was the purpose of adding 2 drops of naoh to the test solution in the second part of the experiment? why did we not just add 1 drop of naoh?
The purpose of adding 2 drops of NaOH to the test solution was to neutralize the acidic solution and to determine the amount of acid present in the solution. Adding 2 drops ensured that all the acid was neutralized.
The purpose of adding NaOH (Sodium Hydroxide) to the test solution was to neutralize the acidic solution. NaOH is a strong base that reacts with acids to form a neutral solution (neither acidic nor basic). This reaction is called neutralization. By adding NaOH to the test solution, we can determine the amount of acid present in the solution.
The amount of NaOH added to the test solution is important as it affects the accuracy of the results. If too little NaOH is added, not all of the acid will be neutralized, and the solution will still be acidic. If too much NaOH is added, the solution will become basic and the results will be inaccurate.
Adding 2 drops of NaOH ensured that all the acid was neutralized. The reaction between NaOH and the acid will continue until all the acid has reacted, at which point the solution will become neutral. By adding 2 drops of NaOH, we can be sure that all the acid has reacted and that the solution is neutral. This, in turn, provides us with accurate results.
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The method used in this experiment is difficult to apply for determining the formula weight of unknown salts in aqueous solutions. Even when accurate freezing point depressions are measured, the results are not always conclusive because there can be an undetermined parameter. Considering the information in the Introduction section, what is the best explanation for this difficulty?
Considering the information in the Introduction section, the best explanation for this difficulty is the value of the van't Hoff coefficient of the salt must be known.
The Van't Hoff factor (i) is a dimensionless number that is used to describe the degree of dissociation or association of a solute in a solution. It is defined as the ratio of the number of particles in solution to the number of solute molecules added to the solution.
For a solute that dissociates into two or more ions, the Van't Hoff factor is greater than 1, and it is equal to the number of ions produced by the dissociation of one molecule of the solute. For example, if a solute dissociates into two ions, its Van't Hoff factor would be 2.
For a solute that associates to form larger species in solution, the Van't Hoff factor is less than 1. For example, if solute associates to form dimers in solution, its Van't Hoff factor would be 0.5.
Therefore, Considering the information in the Introduction section, the best explanation for this difficulty is the value of the van't Hoff coefficient of the salt must be known.
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a student fails to dry their 250 ml beaker between trials 2 and 3. what effect does this have on the calculated molarity of hydrogen peroxide for trial 3?
It is important to properly dry a beaker between trials to ensure accurate measurement of the volume of a solution and to obtain accurate results in chemical experiments and the volume of the hydrogen peroxide solution in trial 3 will be (250 + x) / 1000 liters.
Detailed Explanation:
Accurate measurement of the volume of a liquid in a laboratory setting is crucial for obtaining accurate results in chemical experiments. When a beaker is not properly dried between trials, any residual water or previous solution can alter the volume of the subsequent solution, affecting the calculated molarity.
The molarity of a solution is defined as the number of moles of solute per liter of solution. The formula for calculating molarity is given by:
Molarity (M) = Number of moles of solute/Volume of solution (in liters)
In the case of a 250 ml beaker, the volume of solution is 0.25 liters. If a student fails to dry the beaker between trials 2 and 3, any residual water or previous solution will alter the volume of the hydrogen peroxide solution used in trial 3. This means that the volume of the hydrogen peroxide solution in the beaker will no longer be equal to 250 ml, which will affect the calculated molarity.
Let's say that the volume of the residual water or previous solution in the beaker was x ml. The volume of the hydrogen peroxide solution in trial 3 will now be 250 + x ml. To convert this volume to liters, we divide by 1000, so the volume of the hydrogen peroxide solution in trial 3 will be (250 + x) / 1000 liters.
When we use this new volume in the molarity calculation formula, the calculated molarity will be different from the molarity calculated if the beaker was properly dried. This difference in molarity could affect the validity of the results obtained in trial 3, potentially leading to inaccurate conclusions about the experiment.
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Lucite contain 59. 9 g C, 8. 06 g H,
and 32. 0 g O. You want to determine the empirical formula. How many mole of C are in the ample?
The number of moles of Carbon in the sample is 4.99 moles
How to calculate number of moles?The number of moles in a substance can be calculated by dividing the mass of the substance by its molar mass as follows:
moles = mass ÷ molar mass
According to this question, Lucite contain 59.9 g C, 8.06 g H, and 32.0 g O. The moles of C can be calculated as follows:
Molar mass of C = 12g/mol
moles = 59.9g ÷ 12g/mol
moles = 4.99 moles
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When solutions of barium chloride (aq) and sodium sulfate (aq) are mixed, what is/are the spectator ion(s)?
When solution aqueous solutions of Barium chloride and Sodium sulphate are mixed, here Sodium and Chloride ions are spectator ions as their state does not change in this reaction.
Spectator ions in any reactions are the ions who does not participate in the particular reaction. The state of these ions is same throughout the reaction. The charges on these ions remains same they do not get oxidized or reduced. Spectator ions do not get precipitate in any reaction. They can be cancelled from both side of the reaction. When aqueous solutions of Barium chloride and Sodium sulphate reacts, the resultant product will be Barium chloride and Sodium sulphate. It is an example of double displacement reaction.
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a serum sample gave an absorbance of 0.350. find the glucose concentration and its standard deviatoin
melting, freezing, and boiling are __________ changes.
Melting, freezing and boiling are the types of physical changes that takes place in our surrounding.
Physical attributes change as a result of a physical change. Physical characteristics include things like melting, turning into a gas, changing strength or durability, changing into crystal form, changing texture, and changing shape, size, colour, volume, or density.
Melting is the process through which a solid transforms into a liquid. The melting point is the degree at which this takes place.
Boiling or vaporisation occurs when a liquid turns into a gas. Once more, the molecules will develop sufficient energy to become free and transform into a gas at a specific temperature known as the boiling point.
Freezing is the process by which a liquid becomes solid. A solid is created when the particles in a liquid lose energy, stop moving, and settle into a stable arrangement as a result of cooling. Because freezing happens at the same temperature as melting, a substance's melting point and freezing point are the same temperature.
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How many grams of Mg3(PO4)2 are in 6.5 x10^24 formula units?
The number of grams of magnesium phosphate in 6.5 × 10²⁴ formula units is 2836.21 grams.
How to calculate mass?The mass of a substance can be calculated by multiplying the number of moles in the substance by its molar mass.
mass = moles × molar mass
According to this question, the formula units of magnesium phosphate is 6.5 × 10²⁴ formula units. The number of moles is calculated as follows:
no of moles = 6.5 × 10²⁴ formula units ÷ 6.02 × 10²³
no of moles = 10.79 moles
mass of magnesium phosphate = 10.79mol × 262.855 g/mol = 2836.21 grams.
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the atoms in the molecule of water shown below are held together by which type of bond?
Answer:
Hydrogen bonding
Explanation:
In the case of water, hydrogen bonds form between neighboring hydrogen and oxygen atoms of adjacent water molecules. This is because forces of attraction between individual water molecules creates a bond known as a hydrogen bond.
A water molecule is held together by covalent bonds, with the oxygen atom forming a double covalent bond with each hydrogen atom.
As a result of the oxygen atom's greater electronegativity compared to the hydrogen atoms', a polar covalent connection forms, giving water its distinctive polarity. Due to the production of hydrogen bonds as a result of this polarity, water has a number of special characteristics, including a high surface tension, high boiling and melting points, and the capacity to dissolve a wide variety of compounds. The creation of a network of links between neighboring water molecules as a result of these hydrogen bonds adds to water's stability and enables it to function as a solvent for a variety of ions and polar molecules.
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A water molecule is held together by:
a. an ionic bond
b. a single covalent bond
c. a double covalent bond
d. a polar covalent bond
e. hydrogen bonds
stereoisomers that result from the hindered rotation of a single bond are called __________.
Stereoisomers that result from the hindered rotation of a single bond are called "configurational isomers" or "cis-trans isomers".
These isomers share the same chemical structure and bond connectivity, but their spatial arrangements are different. When a molecule has a single bond that is surrounded by bulky groups, preventing rotation around that bond, cis-trans isomers can form. The two isomers will differ in terms of their melting and boiling temperatures as well as their biological activity.
The isomers of amides, such as N-phenylacetamide, and alkenes, such as cis-2-butene and trans-2-butene, are examples of cis-trans isomers. As some enzymes and other biological molecules show specificity for one isomer over another, these isomers can also be significant in biology. Therefore, it is crucial for students of organic and biochemistry to understand the characteristics of cis-trans isomers.
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A group of cows are eating grass in a field. What type of energy are they getting from the grass?
Answer:chemical drive
The chemical energy contained in the bonds between the atoms of the carbohydrates in the grass is consumed by the cow when it eats grass. The grass will be broken down within the calf to produce energy that is used to create ATP.
Explanation:
chemical drive
The chemical energy contained in the bonds between the atoms of the carbohydrates in the grass is consumed by the cow when it eats grass. The grass will be broken down within the calf to produce energy that is used to create ATP.
how is the full moon an archetype in the alchemist
In "The Alchemist," the full moon is used as an archetype to represent change and transformation.
The full moon symbolizes the completion of a cycle, the coming to fruition of something that has been growing and developing. This is related to the theme of the alchemist's journey, as the main character, Santiago, embarks on a quest to fulfill his personal legend and transform himself into the person he was meant to be.
The full moon also represents a moment of heightened spiritual energy, when the forces of nature are in alignment and magic is said to be at its strongest. In the context of "The Alchemist," the full moon symbolizes a moment of increased spiritual awareness and understanding, when Santiago is able to connect more deeply with the world around him and with the spiritual forces that guide his journey.
Ultimately, the full moon is an archetype in "The Alchemist" that represents the power of change and transformation, both in the world and within the individual. By embracing this archetype and the lessons it teaches, Santiago is able to grow and evolve, moving closer to his personal legend and fulfilling his destiny.
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What is Iron II Oxide?
Iron II oxide, also known as ferrous oxide, is a chemical compound with the formula FeO. It is a black or brown solid that occurs naturally as the mineral wüstite. FeO is an intermediate in the extraction of iron from iron ore and is also used as a raw material in various industrial processes.
What are the uses of Iron II oxide?
Iron II oxide (FeO) has various industrial uses. It is used in the production of iron and steel, as a raw material in the production of pig iron, in the manufacture of ferromagnetic alloys, and as a catalyst in the synthesis of chemicals.
FeO is also used as a refractory material in high-temperature industrial processes, as well as in the production of ceramics and glass. It is also used as a pigment in the ceramics and glass industries, as well as in the production of magnetic inks for audio and video tapes.
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During the process of mountain building,
Answer: the villain arc was real
Explanation: got it right 100% on my test
Answer: material from the Earth's interior is often returned to the surface for study island.
Which one of the following molecules is nonpolar?
A) NH3 B) OF2 C) CH3Cl D) H2O E) BeCl2
E. BeCl2 is non-polar molecule. Since Beryllium (1.57) and chlorine (3.16) have different electronegativities, and their difference of 1.59 places them in the polar covalent range.
How polar is the CH3Cl molecule?The electronegativities of these two or more atoms differ just little when it comes to the link between carbon and hydrogen. The C-H bond is considered as nonpolar as a consequence. However, CH3Cl is a polar molecule since this chlorine atom has partial negative charges and a net dipole moment.
What distinguishes polar from nonpolar matter?The electron density is distributed evenly among polar molecules. A nonpolar molecule is generated when the density of electrons is not evenly distributed. The organization of polar compounds is asymmetric. They share symmetrical polar bonds.
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What is Nitrogen dioxide?
Nitrogen dioxide (NO2) is a toxic gas composed of nitrogen and oxygen atoms.
What is Nitrogen dioxide (NO2)?
Nitrogen dioxide (NO2) is a toxic gas composed of nitrogen and oxygen atoms. It is a reddish-brown gas with a strong, pungent odor. It is produced by combustion processes and is commonly found in air pollution, especially near heavily populated cities and industrial areas. NO2 has negative impacts on human health and the environment and is a significant contributor to acid rain and smog.
Nitrogen dioxide has limited practical uses, mostly in the production of nitric acid and as a feedstock for the manufacture of fertilizers. However, its major use is as a pollutant, resulting from transportation and industrial activities.
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Why is CHCl3polar even though the electronegativity difference is smaller than 1.0
?
CHCl3 molecule is polar because of the asymmetric bond distribution that produces a dipole moment and results in a polar molecule.
What is a definition of polarity ?
An object has polarity when it has two distinct, opposing poles that can either attract or repel one another. The phrase is frequently used to describe the movement of electrons in the fields of electricity, magnetism, chemistry, and electronic signaling.
Because chlorine is exerting more of a pull on the electrons that it shares with carbon, CHCl3 is polar. The force atoms exert on shared electrons in a covalent connection is known as electronegativity. In general, an element is more electronegative the closer it is to fluorine on the periodic table.
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316 Ether groups are formed when alcohols are treated with acid. Consider the following two questions that focus on acid-catalyzed ether formation using alcohol functional groups. lSee Periodic Table See Hint Part 1 (1 point) How many unique ether products will be formed when the following reaction is performed? dilute HCI heat Choose one: o A. 1 B. 3 o C. 4 D. 2
There are two primary methods for producing ethers: dehydration of alcohols or the Williamson Synthesis.
Williamson's synthesis, which involves reacting an alkoxide with a haloalkane, can be used to make acyclic ethers.
Alcohols dehydrate in the presence of protic acids (sulphuric acid) to produce alkenes and ethers under different conditions.
Dehydration of ethanol at 443 K, for example, yields ethene in the presence of sulphuric acid, whereas it yields ethoxyethane at 413 K.
The most common ether reaction is the cleavage of the C-O bond by strong acids. The ether oxygen is protonated during acidic cleavage to form good leaving groups that can be eliminated as part of an SN2, SN1, or E1 reaction mechanism.
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explain why biodiesel fuels have a different effect on atmospheric carbon levels than fossil fuels do.
Biodiesel has decreased emission of atmospheric carbon than fossil fuels due to the presence of oxygen molecules.
Biofuels have lower carbon emissions than burning fossil fuels because oxygen molecules are present in them and help in complete combustion. Carbon in biodiesel is recently present in the atmosphere while carbon in fossil fuels are formed by action of many geological forces on deep layers of earth over many thousands of years so the carbon is preserved and lack the presence of oxygen.
Fossil Fuels are Hydrocarbons which release Carbon Dioxide on burning. The Carbon recently present in atmosphere is extracted in Biofuels so this cause no net Change in Carbon levels in atmosphere.
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complete the table below by writing the symbols for the cation and anion that make up each ionic compound. nicl2
Cation Anion Ionic Compound NiCl2 Ni2+ Cl- An ionic compound is a particular kind of chemical compound made up of electrostatically attracted positively charged ions (cations) and negatively charged ions
Nickel and chlorine ions combine to form the inorganic substance nickel(II) chloride (NiCl2). It is a crystalline solid that is greenish-yellow and soluble in water. The positively charged Ni2+ ion combines with anionic ligands to generate coordination compounds like NiCl2, which contains chloride (Cl-). In the industrial setting, nickel is electroplated onto metal surfaces using NiCl2 as a catalyst. Additionally, it is utilised in the manufacture of nickel-cadmium batteries as well as pigment and dye synthesis. When working with the substance, safety measures must be followed because it is dangerous if swallowed or breathed.
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For each of the following precipitation reactants, calculate how many grams of the first reactant are necessary to completely react with 18. 0 gram of the second reactant.
K2SO4(aq)+Sr(NO3)2(aq)--->>SrSO4(s)+2KNO3(aq)
29.2 grams of Potassium Sulfate are necessary to completely react with 18.0 grams of Sr(NO3)2.
The balanced chemical equation for the reaction between K2SO4 and Sr(NO3)2 is:
K2SO4 (aq) + Sr(NO3)2 (aq) -> SrSO4 (s) + 2KNO3 (aq)
To calculate the amount of K2SO4 needed to react with 18.0 grams of Sr(NO3)2, we need to use stoichiometry. From the balanced equation, we can see that 1 mole of Sr(NO3)2 reacts with 2 moles of K2SO4. To convert 18.0 grams of Sr(NO3)2 to moles, we use the molar mass:
(18.0 g Sr(NO3)2) / (214.0 g/mol Sr(NO3)2) = 0.084 mol Sr(NO3)2
Since 1 mole of Sr(NO3)2 reacts with 2 moles of K2SO4, then 0.084 moles of Sr(NO3)2 will react with 0.084 × 2 = 0.168 moles of K2SO4. To convert moles of K2SO4 to grams, we use the molar mass:
(0.168 mol K2SO4) × (174.3 g/mol K2SO4) = 29.2 g K2SO4
Therefore, 29.2 grams of K2SO4 are necessary to completely react with 18.0 grams of Sr(NO3)2.
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which one of the following changes would cause the volume of a gas to double, assuming moles were held constant? a) doubling pressure while keeping temperature constant. b) doubling absolute temperature while keeping pressure constant. c) doubling absolute temperature while cutting the pressure in half. d) doubling the absolute temperature while doubling the pressure.
Doubling the absolute temperature while doubling the pressure changes would cause the volume of a gas to double, assuming moles were held constant.
What is volume?
Volume is a measurement of a three-dimensional object's capacity to contain something. It is usually measured in cubic units such as cubic centimeters (cm3), cubic meters (m3), cubic feet (ft3), and liters (L). It is an important concept in many fields, including physics, chemistry, and mathematics. In physics, volume is often used to measure the amount of physical space occupied by an object or substance. In chemistry, it is used to measure the amount of a specific substance in a given space. In mathematics, volume is often used to calculate the area of a three-dimensional shape. Volume is also used in everyday life, such as to measure the capacity of a container, the size of a room, or the amount of a substance. It is a fundamental concept in many areas of science, engineering, and technology.
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a solution of cacl2 in water forms a mixture that is 40.5alcium chloride by mass. if the total mass of the mixture is 450.1 g, what masses of cacl2 and water were used
182.29 gm calcium chloride and 267.80 gm water is present in the solution
In this solution, Calcium Chloride is the solute and water is the solution. Here we are given concentrations by mass.
The total mass of solution = calcium chloride mass + water mass
= 450.1 gm
40.5 % of calcium chloride by mass
0.405 x 450.1 = 182.29 gm
100 - 40.5 = 59.5 % of water by mass
0.595 x 450.1 = 267.80 gm
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what kind of intermolecular forces act between a bromide anion and a methanol ch3oh molecule?
The intermolecular forces that act between a bromide anion (Br-) and a methanol molecule are hydrogen bonding and dipole-dipole interactions
Bromide anion (Br-) and methanol (CH3OH) are held together by intermolecular forces. The polar hydroxyl (OH) group in methanol creates hydrogen bonds with the negatively charged bromide anion. These hydrogen bonds are strong, directional, and specific. The methanol molecule has an overall dipole moment, creating dipole-dipole interactions with the bromide anion. Dipole-dipole interactions are the result of attractive forces between positive and negative ends of polar molecules. The polar nature of methanol and the negative charge of the bromide anion result in a significant dipole-dipole interaction between them .London dispersion forces may also play a role in the interaction between Br- and CH3OH, as both species are non-polar. These intermolecular forces result in a stable, cohesive molecular assembly between the bromide anion and methanol. The strength of these intermolecular forces will influence the physical properties of a solution containing Br- and CH3OH.
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An herbicide contains only C , H , Cl , and N . The complete combustion of a 175.0 mg sample of the herbicide in excess oxygen produced 183.0 mL of CO2 and 106.8 mL of H2O vapor at STP. A separate analysis determined the 175.0 mg sample contained 48.25 mg Cl . Determine the percent composition of the herbicide.
The herbicide has a percent composition of carbon 56 %, hydrogen 5.37 %, Cl 27.57 %, and N 11.06%.
1 mole of gas has a volume of 22.4 L. The molar mass of a gas is equal to 1 mole of the gas. As a result, the molar mass is equal to the mass of gas at 22.4 L.
Calculation of the herbicide's percent183.0 mL of carbon dioxide are generated.
Carbon has a molar mass of 12 g.
In 183.0 mL of carbon dioxide, there are
22400 mL = 1 mol
183 mL = 1 x 183 mol
22400
183 mL= 0.00817 mole
A mole of carbon dioxide contains the same number of moles of carbon.
The mass of carbon is as a result:
1 mole = 12 g
0.00817 mole = 12 g x 0.00817 mole
0.00817 mole = 0.098 g
so the mass of carbon is 0.098 g
The volume of water vapor produced is 122 mL.
The molar mass of hydrogen is 1 g/mol
The mass of water vapors produced is:
22400 mL = 1 mol
106.8 mL = 1 x 106.8 mol
22400
106.8 mL= 0.0047 mole
mass = moles x mass molar
mass = 0.0047 mole 2g/ moles = 0.0094 g
A total of 0.0047 mol of water vapor is generated.
Half as many moles of hydrogen as water are present. As a result, there are 0.0047 moles of hydrogen.
There is 0.0094 g of hydrogen produced.
Cl weighs 48.25 mg in the sample.
Herbicide weighs 175 mg.
The sample's nitrogen content is measured as:
N = total - C+H+Cl
N = 0.175 - (0.098 g + 0.0094 g + 0.04825 g)
N = 0.01935 g
%C = 0.098/ 0.175 x 100 = 56 %
% H = 0.0094 / 0.175 x 100 = 5.37 %
% Cl = 0.04825 / 0.175 x 100 = 27.57 %
% N = 0.01935 / 0.175 x 100 = 11.06 %
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