The gases can be arranged in increasing order of rate of diffusion at 50°C as follows:
1. Carbon dioxide (CO₂)
2. Methane (CH₄)
3. Nitrogen (N₂)
4. Oxygen (O₂)
5. Hydrogen (H₂)
The rate of diffusion of a gas is determined by its molecular weight, temperature, and pressure. At 50°C, the kinetic energy of the gas particles increases, leading to faster diffusion. The lighter the gas molecule, the faster it diffuses. Therefore, hydrogen being the lightest gas molecule would be expected to have the highest rate of diffusion. However, hydrogen gas also has a small molecular size and can easily escape through small pores and gaps, making it more likely to leak. Carbon dioxide, on the other hand, has a higher molecular weight and is less likely to escape through small pores, resulting in a slower rate of diffusion. Methane, nitrogen, and oxygen fall in between these two extremes in terms of molecular weight and diffusion rate.
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The calculation of relative quantities of reactants, products, and energy in a chemical reaction is called:________
The calculation of relative quantities of reactants, products, and energy in a chemical reaction is called stoichiometry.
Compositional stoichiometry questions involve mass/mole ratios of elements in compounds, whereas reaction-based stoichiometry problems involve mass/mole ratios of compounds in balanced equations.
Reaction stoichiometry refers to the number of compounds consumed or produced during a chemical reaction, whereas composition stoichiometry is concerned with the atomic structure of a chemical compound. The key difference between composition and reaction stoichiometry is this.
The term "stoichiometry" in chemistry refers to the numerical data regarding a chemical compound or chemical reaction. Composition stoichiometry is the term used when the information relates to a chemical compound, and reaction stoichiometry is used when it relates to a chemical reaction.
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what is the density in g/l of co at 1140 torr and 75.0 °c?
The density of CO at 1140 torr and 75.0 °C is 1.12 g/L.
To calculate the density of CO at 1140 torr and 75.0 °C, we need to use the ideal gas law equation: PV = nRT, where P is the pressure in torr, V is the volume in liters, n is the number of moles, R is the gas constant, and T is the temperature in Kelvin.
First, we need to convert the temperature from Celsius to Kelvin: 75.0 °C + 273.15 = 348.15 K.
Next, we need to find the number of moles of CO. To do this, we can use the equation n = PV/RT. We have P = 1140 torr, V = 1 L (since we're looking for density in g/L), R = 0.08206 L•atm/mol•K (the gas constant), and T = 348.15 K. Plugging these values in, we get:
n = (1140 torr × 1 L) / (0.08206 L•atm/mol•K × 348.15 K)
n = 0.0402 mol
Now we can find the mass of CO using the molar mass of CO, which is 28.01 g/mol.
mass = n × molar mass
mass = 0.0402 mol × 28.01 g/mol
mass = 1.12 g
Finally, we can calculate the density by dividing the mass by the volume:
density = mass / volume
density = 1.12 g / 1 L
density = 1.12 g/L
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What reagents might be used to convert cis-2-butene into trans-2-butene? A) 1)Brz; 2)NaOEt; EtOH B) 1)HBr; 2)NaOEt, EtOH C) 1) H;O' , heat; 2) NaOEt; EtOH D) 1) Hz, Pd; 2) NaOEt; EtOH
C) 1) H2O, heat; 2) NaOEt; EtOH reagents might be used to convert cis-2-butene into trans-2-butene.
The reagents needed to convert cis-2-butene into trans-2-butene are H2O and heat, followed by NaOEt and EtOH. The H2O and heat are used to create an acid-catalyzed hydration reaction, which results in the formation of a cis-2-butene-diol.
The NaOEt is then used to protonate the hydroxyl group of the diol, resulting in the formation of trans-2-butene. Finally, EtOH is used as a solvent to facilitate the reaction. This reaction is an example of an acid-catalyzed isomerization, which is a process that changes the position of functional groups on a molecule to create a new isomer.
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What is the VSEPR theory? give the geometric arrangment, the name of the arrangment and the angle between the electron pairs for the following compounds: BeCl2, BH3, CH4, PCL5, and SF6
The VSEPR theory (Valence Shell Electron Pair Repulsion theory) is a model used to predict the three-dimensional shape of molecules based on the number of electron pairs surrounding the central atom.
For BeCl2 : linear arrangement
For BH3 : trigonal planar arrangement.
For CH4: tetrahedral arrangement.
For PCl5: trigonal bipyramidal arrangement.
For SF6: octahedral arrangement
The VSEPR (Valence Shell Electron Pair Repulsion) theory is a model used in chemistry to predict the shape of individual molecules based on the repulsion of electron pairs around a central atom. Now, let's examine the geometric arrangement, name of the arrangement, and the angle between electron pairs for each of the compounds you mentioned:
1. BeCl2:
Geometric arrangement: Linear
Name of the arrangement: 2 electron pairs (2 bonded atoms, 0 lone pairs)
Angle between electron pairs: 180°
2. BH3:
Geometric arrangement: Trigonal planar
Name of the arrangement: 3 electron pairs (3 bonded atoms, 0 lone pairs)
Angle between electron pairs: 120°
3. CH4:
Geometric arrangement: Tetrahedral
Name of the arrangement: 4 electron pairs (4 bonded atoms, 0 lone pairs)
Angle between electron pairs: 109.5°
4. PCl5:
Geometric arrangement: Trigonal bipyramidal
Name of the arrangement: 5 electron pairs (5 bonded atoms, 0 lone pairs)
Angle between axial electron pairs: 180°
Angle between equatorial electron pairs: 120°
Angle between axial and equatorial electron pairs: 90°
5. SF6:
Geometric arrangement: Octahedral
Name of the arrangement: 6 electron pairs (6 bonded atoms, 0 lone pairs)
Angle between electron pairs: 90° (between adjacent pairs) and 180° (between opposite pairs)
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In order to prevent food contamination a food handler must:______
In order to prevent food contamination, a food handler must follow proper hygiene and sanitation practices, including washing their hands frequently, wearing gloves and hairnets, using separate cutting boards for raw and cooked foods, storing food at proper temperatures, and regularly cleaning and sanitizing all equipment and surfaces.
Food should be stored at the correct temperature to prevent the growth of harmful bacteria.
Refrigerated foods should be kept at 40°F or below, and hot foods should be kept at 140°F or above.
Food handler should avoid cross-contamination by not touching ready-to-eat foods with hands or utensils that have touched raw foods.
By following these practices, food handlers can prevent food contamination and ensure that the food they prepare is safe for consumption.
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Pyruvate enters mitchochindria via ___________ (active/passive)transport. It is then oxidized and _____________________ (carboxylated/ decarboxylated) by what complex? Write the overall reaction of this process (and is it exergonic or endergonic) and give the functions of the enzymes in this complex.
Pyruvate enters the mitochondria via active transport. It is then oxidized and decarboxylated by the pyruvate dehydrogenase complex.
How does Pyruvate undergo oxidation?The overall reaction of Oxidation and Decarboxylation of Pyruvate is:
Pyruvate + [tex]NAD^{+}[/tex] + CoA → Acetyl-CoA + NADH + H+ + [tex]CO_{2}[/tex]
This reaction is exergonic. The enzymes in the pyruvate dehydrogenase complex have specific functions:
1. Pyruvate dehydrogenase (E1) - oxidizes pyruvate and forms hydroxyethyl-TPP.
2. Dihydrolipoyl transacetylase (E2) - transfers the acetyl group to CoA, forming acetyl-CoA.
3. Dihydrolipoyl dehydrogenase (E3) - regenerates the initial disulfide bond in lipoamide and reduces [tex]NAD^{+}[/tex] to NADH.
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What is the pOH of a 0.0020 M HNO3 solution?
A) 0.0020
B) 0.0040
C) 2.70
D) 11.30
Answer:
D) 11.30
H(NO3) --> H+ + NO3-
This is a strong acid so it will completely dissociate into its ions. Leaving the concentration of H+ ions to be .002
-log(.002) ≈ 2.7 pH
14-2.7 = 11.3 pOH
The pOH of a 0.0020 M [tex]HNO_{3}[/tex] solution is approximately 11.30 (Option D).
How to calculate the pOH of a solution?
To determine the pOH of a 0.0020 M [tex]HNO_{3}[/tex] solution, follow these steps:
1. Identify that [tex]HNO_{3}[/tex] is a strong acid, which dissociates completely in water.
The balanced chemical equation for the dissociation of [tex]HNO_{3}[/tex] is:
[tex]HNO_{3}[/tex] + [tex]H_{2}O[/tex] ->[tex]H_{3}O^{+}[/tex] + [tex]NO_{3} ^{-}[/tex]
2. Calculate the concentration of H+ ions, which will be equal to the concentration of [tex]HNO_{3}[/tex], which is 0.0020 M.
3. Determine the concentration of OH- ions using the ion product of water (Kw):
Kw = [H+][OH-]
Since Kw = 1.0 x 10^(-14) at 25°C, we can solve for [OH-]:
[OH-] = Kw / [H+] = (1.0 x 10^(-14)) / 0.0020 = 5.0 x 10^(-12) M
4. Calculate the pOH using the formula: pOH = -log[OH-]
pOH = -log(5.0 x 10^(-12)) ≈ 11.30
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Which alkyl halide would you expect to undergo an SN2 reaction most slowly?a. 1-bromo-4-methylpentaneb. 1-bromo-3-methylpentanec. 1-bromo-2-methylpentaned. 1-bromo-2,2-dimethylbutane
d. 1-bromo-2,2-dimethylbutane alkyl halide would you expect to undergo an SN2 reaction most slowly.
Explanation: An SN2 reaction is a type of substitution reaction in which a nucleophile displaces a leaving group from an alkyl halide. The rate of an SN2 reaction is determined by the steric hindrance of the substrate and the nucleophile.
The more steric hindrance, the slower the reaction. 1-bromo-2,2-dimethylbutane has the highest level of steric hindrance among the given choices, as it has two methyl groups attached to the carbon bearing the leaving group, making it the slowest to undergo an SN2 reaction.
Therefore, correct option id D.
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the electron configurations for copper and chromium are slightly different. name these exceptions.
The electron configurations for copper (Cu) and chromium (Cr) are indeed exceptions to the standard rules.
For copper (Cu), the expected electron configuration would be [Ar] 4s² 3d⁹. However, the actual configuration is [Ar] 4s¹ 3d¹⁰. Copper's electron configuration is an exception because it has a completely filled d-subshell, which provides greater stability.
For chromium (Cr), the expected electron configuration would be [Ar] 4s² 3d⁴. However, the actual configuration is [Ar] 4s¹ 3d⁵. Chromium's electron configuration is an exception because it has a half-filled d-subshell, which also provides greater stability.
These exceptions occur to maximize the stability of the atoms.
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1. The vapor pressure of pure water at 26°Cis 25.21 mmHg. What is the vapor pressure of a solution which contains 179.38 g of iron (III)sulfate[Fe2(SO4)3]in 450.0 g of water?The molar mass of iron (III)sulfateand water are 399.88g/mol and 18.0 g/mol, respectively.
Answer: 26C is 25.0 torr
Explanation: The decrease in vapor pressure is proportional to the molality of the solution, so the vapor pressure of the solution at 26°C is 25.0 torr.
First, we need to find the number of moles of glucose and water present in the solution:
n(glucose) = 16.0 g / 180.0 g/mol = 0.089 mol
n(water) = 80.0 g / 18.0 g/mol = 4.44 mol
Next, we'll find the mole fraction of water in the solution:
X_water = n(water) / (n(glucose) + n(water)) = 4.44 / (0.089 + 4.44) = 0.989
Finally, we can find the vapor pressure of the solution using Raoult's law:
P_solution = X_water * P_purewater = 0.989 * 25.21 torr = 25.0 torr
So the vapor pressure of the solution at 26°C is 25.0 torr.
In order for water reabsorption to occur, the solute concentration of the medulla needs to:__________
In order for water reabsorption to occur, the solute concentration of the medulla needs to increase.
Water reabsorption occurs in the kidneys by creating a concentration gradient in the medulla of the kidney. This is achieved by active transport of ions such as sodium and chloride, which creates a hypertonic environment in the medulla. As a result, water diffuses out of the descending loop of Henle and the collecting duct, and is reabsorbed into the bloodstream.
The solute concentration of the medulla is therefore crucial in creating this gradient, and if it is not maintained, water reabsorption may be impaired, leading to dehydration or other issues.
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List the following elements in order of decreasing atomic radius (largest at the top to smallest at the bottom).
Li, N, He, B
Elements in order of decreasing atomic radius are He, Li, B, N
Atomic radius is the distance from the center of an atom to its outermost electron shell. Generally, atomic radius decreases from left to right across a period (horizontal row) on the periodic table, and increases from top to bottom within a group (vertical column).
So, in the given list:
- He has the largest atomic radius because it is the topmost element in the list and has only two electrons in its first (and only) energy level.
- Li has the second largest atomic radius because it is the next element in the list and has three electrons in its first energy level.
- B has a smaller atomic radius than Li because it has more protons (and a stronger nuclear charge) that pull the electrons closer to the nucleus, making the atom smaller.
- N has the smallest atomic radius in the list because it is the most electronegative element among them and has a strong attraction for electrons, resulting in a smaller atomic radius.
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does tramadol have acetaminophen or ibuprofen in it?
Tramadol does not have acetaminophen or ibuprofen in it. It is a standalone pain medication that works by blocking pain signals in the brain and nervous system.
Some combination medications do contain tramadol along with acetaminophen or ibuprofen to provide a more comprehensive approach to pain relief. It is important to always read the label and check with a healthcare provider before taking any medication to ensure it is safe and appropriate for your individual needs.
Tramadol does not have acetaminophen or ibuprofen in it. Tramadol is an opioid pain medication that works on the central nervous system to relieve pain, while acetaminophen and ibuprofen are non-opioid pain relievers. These medications are separate and distinct from one another.
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carbon has an atomic radius of 0.071 nm. what type of defect does it most likely form in nickel, which has an atomic radius of 0.125 nm?
Since carbon is smaller than nickel, it causes a point defect called a substitutional defect when it takes up a lattice spot in nickel.
A alien atom replaces a host atom in a material's crystal lattice in a substitutional defect. In this instance, the lattice substitutes a carbon atom for a nickel atom, and the lattice is deformed around the defect location.
The qualities of the material, including its mechanical strength and magnetic properties, can be significantly impacted by this kind of flaw. It's important that carbon can create interstitial defects in nickel by occupying the spaces left by the host atoms in the crystal lattice.
However, because carbon is much smaller than nickel, it has a far lesser chance of occupying an interstitial site than it does a substitutional site.
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which combination of aqueous solutions should produce a precipitate?
A precipitate is formed when two aqueous solutions react to form an insoluble compound.
To determine which combination of aqueous solutions should produce a precipitate, we need to consider the solubility rules. These rules indicate which compounds are soluble in water and which are not.
For example, if we mix a solution of sodium chloride (NaCl) with a solution of silver nitrate (AgNO3), a precipitate of silver chloride (AgCl) should form. This is because silver chloride is insoluble in water and will form a solid when the two solutions are mixed.
Similarly, if we mix a solution of calcium chloride (CaCl2) with a solution of sodium carbonate (Na2CO3), a precipitate of calcium carbonate (CaCO3) should form. This is because calcium carbonate is insoluble in water and will form a solid when the two solutions are mixed.
Overall, the combination of two aqueous solutions that will produce a precipitate depends on the solubility rules for the specific compounds involved.
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If the temperature of 4 grams of oxygen gas is changed from 321 °C to 24 °C and at the same time the volume of the container is tripled. By what factor will the pressure of the container decrease?
The pressure of the container will decrease by a factor of 3.18. Alternatively, we can say that the pressure will decrease to approximately 31% of its initial value.
We can use the combined gas law to solve this problem, which relates to the pressure, volume, and temperature of a gas:
P₁V₁/T₁ = P₂V₂/T₂
Where P₁, V₁, and T₁ are the initial pressure, volume, and temperature of the gas, and P₂, V₂, and T₂ are the final pressure, volume, and temperature of the gas.
Converting the temperatures to Kelvin:
T₁ = 321°C + 273.15 = 594.15 K
T₂ = 24°C + 273.15 = 297.15 K
Substituting the given values:
P₁V₁/594.15 = P₂V₁/297.15
Simplifying:
P1/3.18 = P2
Therefore, we can say that the pressure of the container will decrease by a factor of 3.18.
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a solution is prepared from 8 grams of acetic acid ( ch3cooh ) and 725 grams of water.what is the molality of this solution?
The molality of the solution is approximately 0.1836 mol/kg for a solution prepared from 8 grams of acetic acid and 725 grams of water.
Molality (m) is defined as the number of moles of solute per kilogram of solvent.
First, we need to convert the given mass of acetic acid to moles. The molar mass of acetic acid is 60.05 g/mol. Thus, the number of moles of acetic acid is:
n([tex]CH_3COOH[/tex]) = 8 g / 60.05 g/mol = 0.133 mol
Next, we need to calculate the mass of water in kilograms:
mass of water = 725 g / 1000 = 0.725 kg
Now we can calculate the molality of the solution using the formula:
molality (m) = moles of solute/mass of solvent in kilograms
molality (m) = 0.133 mol / 0.725 kg ≈ 0.1836 mol/kg
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True or False: aldehydes/ketones and Carboxylic acids are similar in the sense that they both undergo Nucleophilic acyl substitution?
True, both aldehydes/ketones and carboxylic acids undergo nucleophilic acyl substitution reactions.
In these reactions, a nucleophile attacks the carbonyl carbon of the functional group, leading to the substitution of the leaving group (usually an -OH group in carboxylic acids and an -OR group in aldehydes/ketones) with the nucleophile. Aldehydes and ketones contain a carbonyl group (C=O), while carboxylic acids contain a carboxyl group (COOH). In nucleophilic acyl substitution reactions, a nucleophile attacks the electrophilic carbonyl carbon, leading to the substitution of the existing group. This results in the formation of a new compound with a new functional group.
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the weak base hydrazine, h2nnh2, can react with water to form a diprotic acid h3nnh3 . write chemical equations to depict the two equilibrium steps. when hydrazine is dissolved in water, which of the three hydrazine species will be present in the lowest concentration?
The weak base hydrazine, NH₂NH₂, can react with water to form a diprotic acid NH₂NH₃⁺, the chemical equation is NH₂NH₂ + H₂O → NH₂NH₃⁺
Hydrazine is a weak base, also called as diazane diamine or nitrogen hydride . It reacts with water to form a diprotic acid.
NH₂NH₂ + H₂O → NH₂NH₃⁺
Each subunit of H2N-N has a pyramidal structure and the N−N bond distance is 1.45 Å.
It has a wide variety of uses which includes : as a propellant in space vehicles; as a precursor in pharmaceutical products.
; as a reducing agent for selenium, arsenic and tellurium; as a corrosion inhibitor in water reactors; in the process of electrolytic plating of metals on plastic and glass; in the manufacturing of agricultural chemicals. It is also commonly used as a solvent in inorganic compounds.
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Identify the compound that is acid-insoluble.
A) PbCl2
B) As2S3
C) FeS
D) Ca3(PO4)2
E) LiCl
D) Ca3(PO4)2 is the compound that is acid-insoluble.
What is Compound?
A compound is a substance formed when two or more chemical elements are chemically bonded together in a fixed proportion by mass. The elements that make up a compound are always present in a specific ratio and are held together by chemical bonds, such as covalent bonds or ionic bonds. Compounds can be formed through chemical reactions between different elements, such as the reaction between hydrogen and oxygen to form water.
Acid-insoluble compounds are those that do not dissolve in acid. This is usually a result of their chemical properties, such as having strong covalent bonds or being highly stable. In the given options, the compound that is acid-insoluble is Ca3(PO4)2, or calcium phosphate.
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how many grams of ethanol, c2h5oh, can be boiled with 206.2 kj of heat energy? the molar heat of vaporization of ethanol is 38.6 kj/mol.
246.0 grams of ethanol, c2h5oh, can be boiled with 206.2 kj of heat energy? the molar heat of vaporization of ethanol is 38.6 kj/mol.
We can use the following equation to determine how much ethanol can be boiled using 206.2 kJ of heat energy:
q = n*ΔHvap
where n is the substance's (in moles) vaporized amount of ethanol, Hvap is the molar heat of vaporization of ethanol, and q is the amount of heat energy given.
First, we may use the equation to determine how much ethanol was vaporized:
q/ΔHvap = n
Inputting the values provided yields:
5.34 mol is equal to n = 206.2 kJ/38.6 kJ/mol.
Next, we can convert the amount of substance to mass using the molar mass of ethanol (46.07 g/mol):
m = n * M
where M is ethanol's molar mass.
When we change the values, we obtain:
246.0 g= 5.34 mol * 46.07 g/mol
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true statements about ozone include which of the following? i. ozone is a precursor of acid rain. ii. contact with ozone can be injurious to human health. iii. ozone absorbs some wavelengths of ultraviolet radiation (a) ii only (b) iii only (c) i and iii only (d) ii and iii only (e) i, ii, and iii
The statements (ii) and (iii) are the true statement which include about ozone . So, option (d) is correct choice.
The ozone layer is the layer that surrounds the earth and contains a high concentration of O₃ ozone. Ozone O₃ is a gas molecule composed of three oxygen atoms. Ozone is commonly known as photochemical "smoke" and is harmful to respiration.
It is formed by the dissociation of two atoms forming oxygen. It is a harbinger of acid rain. Exposure to ozone can harm human health. Ozone absorbs some wavelengths of ultraviolet radiation and protects the earth's surface from dangerous radiation. Therefore, it is clear from the above discussion that (ii) and (iii) are correct statements about ozone.
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How many moles is 58. 2 g of copper (II) phosphate
The number of moles in 58.3 g of copper (II) phosphate having a molecular formula [tex]Cu_3(PO_4)_2[/tex] is 0.15 mol.
Copper (II) Phosphate has the molecular formula of [tex]Cu_3(PO_4)_2[/tex] and we can calculate the molecular formula by:
Molar mass = (Mass of copper) * 3 + ((Mass of phosphorus) + (Mass of Oxygen) * 4) * 2
= 63.5 * 3 + (31 + (16 * 4)) * 2
= 63.5 * 3 + (31 + 64) * 2
= 190.5 + 95 * 2
= 190.5 + 190
= 380.5 g
Moles are the amount of substance in a system that contains as many elementary entities as atoms in 12 g of Carbon.
Number of moles = [tex]\frac{m}{M}[/tex]
where m is the given mass
M is the molar mass
Number of moles = [tex]\frac{58.3}{380.5}[/tex] mol
= 0.15 mol
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Calculate the molarity of hydroxide ion in an aqueous solution that has a pOH of 3.24. A) 5.8 × 10^-4
B) 10.76
C) 1.7 × 10^-11
D) 3.2 × 10^-14
E) 1.1 × 10^-13
The molarity of hydroxide ion in an aqueous solution that has a pOH of 3.24 is 1.1 × 10^-13 (option E).
pH + pOH = 14
Given that pOH = 3.24, we can find pH:
pH + 3.24 = 14
pH = 10.76
Now that we know pH, we can calculate the concentration of H+ using the equation:
pH = -log[H+]
10.76 = -log[H+]
[H+] = 10^-10.76
Since the solution is neutral (pH + pOH = 14), the concentration of hydroxide ion (OH-) is equal to the concentration of hydrogen ion:
[OH-] = [H+] = 10^-10.76
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if an atom has a radius of 43 p.m. what is its circumference
atom is sphere so we can write cicumference as 2pier
now put value
2 x 3.14 x 43
= 270.04
hence the circumcentre is 270.04
when maggots are collected from a crime scene, how should they be preserved? group of answer choices 70% ethanol 50% ddt 30% isoproponol sterile water
Option a is correct. Maggots are collected from a crime scene they should be preserved in 70% ethanol.
Maggots must first be collected using sterile tweezers or forceps and placed in a sterile container before being preserved in 70% ethanol. Then, pour enough 70% ethanol into the container to thoroughly cover the maggots.
The container must be properly labeled with pertinent details including the date, place, and time of collection, and it must be completely sealed. Other preservation techniques, such as employing 30% isopropanol are less frequently employed and might not be as efficient as using ethanol.
It is crucial to remember that using sterile water as a preservative is not advised because it could hasten the decay of the maggots and weaken any potential DNA evidence.
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Complete question
When maggots are collected from a crime scene, how should they be preserved?
a. 70% ethanol
b. 50% ddt
c. 30% isoproponol
d. sterile water
Which one of the following salts, when dissolved in water, produces the solution with the lowest pH?
A) NaI
B) KI
C) MgI2
D) AlI3
To determine which of the following salts, when dissolved in water, produces the solution with the lowest pH, you should consider the acidic properties of the resulting ions. The options given are:
A) NaI
B) KI
C) MgI2
D) AlI3
The salts can be broken down into their respective cations and anions:
A) Na⁺, I⁻
B) K⁺, I⁻
C) Mg²⁺, 2I⁻
D) Al³⁺, 3I⁻
The pH of the solution will be influenced by the acidic or basic properties of these ions. For Na⁺ and K⁺, they are neutral and do not affect the pH. Mg²⁺ has a small basic character, while Al³⁺ is amphoteric but exhibits acidic behavior in the presence of water.
The anion, iodide (I⁻), is a weak base. Since the acidic character of Al³⁺ is more pronounced than the basic character of Mg²⁺, the combination of Al³⁺ and I⁻ (AlI3) will produce the solution with the lowest pH.
So, the answer is D) AlI3, as this salt, when dissolved in water, produces the solution with the lowest pH.
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Identify the food that is not acidic.
A) soft drink
B) apple
C) egg white
D) soda
E) wine
Among the given, Egg white is not acidic.
The food that is not acidic is egg white. While it is true that eggs as a whole have a slightly acidic pH level of around 6.5, the egg white itself is actually alkaline with a pH level of around 7.6. This means that consuming egg whites can actually help to balance the body's pH levels and reduce acidity.
On the other hand, Soft drinks are generally very acidic, with pH values typically ranging from 2 to 4. Apples are slightly acidic, with a pH range of 3 to 4. Wines are acidic, with pH values typically ranging from 3 to 4.
Overall, it's important to consider the pH levels of the foods and beverages we consume, as they can have an impact on our overall health and well-being. Choosing more alkaline foods, like egg whites, can help to balance out the acidity in our diets and promote a more optimal pH level.
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11. A gas has a solubility of 16.9 g/L at a
temperature of 20 °C and 5.00 atm of pressure.
What is the solubility at 20 °C and 3.00 atm
pressure?
Answer:
Using Henry's law, we know that solubility is directly proportional to pressure:
S1/P1 = S2/P2
where S1 and P1 are the initial solubility and pressure, and S2 and P2 are the new solubility and pressure.
Plugging in the values given:
16.9 g/L / 5.00 atm = S2 / 3.00 atm
Solving for S2:
S2 = 10.14 g/L
Therefore, the solubility of the gas at 20 °C and 3.00 atm pressure is 10.14 g/L.
Alkanes have what chemical formula? (carbons and hydrogens)
Alkanes have the chemical formula CnH2n+2, where "n" represents the number of carbon atoms in the molecule. In this formula, "C" stands for carbon and "H" stands for hydrogen. Alkanes are a family of hydrocarbon compounds that only contain single bonds between carbon and hydrogen atoms.
Alkanes are a group of organic compounds that consist entirely of carbon (C) and hydrogen (H) atoms bonded together using single covalent bonds. The general formula for alkanes is CnH2n+2, where n is the number of carbon atoms in the molecule. For example, the simplest alkane is methane, which consists of a single carbon atom and four hydrogen atoms. Its chemical formula is CH4, which can be derived from the general formula by setting n=1:CnH2n+2 = C1H2(1)+2 = CH4Similarly, the next alkane in the series is ethane, which has two carbon atoms and six hydrogen atoms. Its chemical formula is C2H6, which can also be derived from the general formula by setting n=2:CnH2n+2 = C2H2(2)+2 = C2H6As the number of carbon atoms in the molecule increases, the number of hydrogen atoms.
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