Classify each of the events according to whether the solubility of the solute increases, decreases, or stays the same. Solute solubility increases Solute solubility decreases Solute solubility stays the same Answer Bank glucose in water heating the mixture CO, in blood: body temperature rises to 103 F KCI in water warming the mixture clectrolytes in solution: a mountain climber ascends 5 km with a sports drink, atmospheric pressure drops 50%

Answers

Answer 1

Solubility of gas

Gas solubility increases: O2 in the blood of a person place in hyperbaric chamber. That's the pressure of a gas over a solvent is increased. The partial pressure of an anesthetic gas is increased.Gas solubility decreases: CO2 in a can of opened soda as it warms to room temperature - the temperature is increased.

The solubility of a substance is the amount of that substance that is required to form a saturated solution in a given amount of solvent at a specified temperature. Solubility is often measured in grams of solute per 100g of solvent. The solubility of sodium chloride in water is 36.0g per 100g of water at 20oC. The temperature must be specified because solubility varies with temperature.The solubility of a solid or a liquid solute in a solvent is affected by the temperature, while the solubility of a gaseous solute is affected by both the temperature and the pressure of the gas. We will examine the effects of temperature and pressure separately.

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Related Questions

How many neutrons does cobalt have if its atomic numbers is 27 and its mass number is 59?; How many protons neutrons and electrons are there of cobalt has an atomic number of 27 a mass number of 58 and a charge of 3?; How many neutrons are present if cobalt has an atomic number of 27 a mass number of 59 and a charge of 3?; What is the number of protons of cobalt if it has a number of 27 in atomic number?; How many neutrons does an atom have if its mass number is 27 and it has 13 protons?; How many neutrons in atomic number is 27?

Answers

for the above example there are 27 protons, 31 neutrons, 27 electrons

Atomic number is equal to the number of protons and equal to the number of electrons. So 27 = number of protons = Number of electrons. Mass number is the sum of the number of proton and neutrons Mass number = 58 = Number of proton + Number of neutrons .Number of neutrons = Mass number - Number of protons 58-27=31 The charged amount of an atomic nucleus is the chemical element's atomic number, also known as nuclear charge number. For conventional nuclei, this is equivalent to the proton count or the amount of protons in the nucleus of every atom in that element

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what pressure of carbon dioxide is required to keep the carbon dioxide concentration in a bottle of club soda at 0.10

Answers

It takes 3.48 atm of carbon dioxide pressure to maintain the carbon dioxide concentration in a bottle of club soda at 0.10

Explain about the pressure of carbon dioxide?

Pressure on gas An under pressure liquefied gas is housed in a carbon dioxide cylinder. If heated or if the container is hydraulically full due to overfilling, it may rupture (or burst). Local laws typically govern the filling ratio of common gases.

Nondispersive infrared (NDIR) or electrochemical technology are typically used to measure carbon dioxide. The most popular method for measuring CO2 concentrations with higher accuracy over extremely wide ranges up to 100% volume is now NDIR-based carbon dioxide sensors, thanks to advancements in the technology.

Parts per million (ppm) is a unit of measurement for CO2 that represents the amount of CO2 in micromoles per mole of air. Molars per Mole (mol/mol) is the SI unit for CO2 concentration.

CO2 concentration C is 0.10 mol/L.

3.4 * 10-2 moles/L.atm for CO2 at 25 C.

in light of eq (1)

p(CO2)=C/k=0.10 molL-1/3.4 * 10-2 molL-1atm-1

3.48 atm, or p(CO2).

The complete question is,

What pressure of carbon dioxide is required to keep the co2 concentration in a bottle of club soda at 0.10 mol/l at 25 c? The henry's law constant of co2 in water at 25 c is 3.4 × 10-2 (mol/l)/atm?

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The pressure of carbon dioxide required to keep it's concentration in a bottle of club soda at 0.1 is 2.9 atm.

Henry's Law states that the partial pressure of a gas above a liquid is proportional to the concentration of the gas dissolved in the liquid at a given temperature (C/p). i.e

C = k*P —————-(1)

where k = the constant of Henry

The following is true:

CO2 concentration C = 0.1 mol/L k for CO2 at 25 C = 3.4 * 10-2 mole/L atm

In accordance with eq(1),

p(CO2) = C/k

= 0.1 molL-1/3.4 *10-2 molL-1atm-1,

p(CO2) = 2.9 atm

Henry's law, a gas law in physical chemistry, says that the amount of dissolved gas in a liquid is inversely proportional to the partial pressure of the gas above the liquid. Henry's law constant is the name of the proportionality constant.

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describe one chemical property of group 1 metals that results from the atoms of each metal having only one valence electron.

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Alkali metals have a high electropositive polarity.This is so that each alkali metal's atom can readily create a positive ion by releasing its lone valence electron.

What are group 1's chemical characteristics? Electronegativity is a chemical characteristic of Group 1 metals that derives from each metal's atom having only one valence electron.Alkali metals are another name for Group I elements.Sodium, lithium, potassium, cesium, francium, and rubidium are some of them.In seawater, you can find them.Electronegativity is a chemical characteristic of Group 1 metals that derives from each metal's atom having only one valence electron.This refers to the atoms' propensity to attract electrons. Elements from Group 1 have similar properties.All of them are supple silver metals.These metals are highly reactive and have low melting temperatures due to their low ionization energy.As you descend the table, this family becomes more reactive.

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he given reaction takes place in acidic conditions under rigorous heating. complete the reaction mechanism, adding missing atoms and lone pairs, charges, and curved arrows as necessary. ignore hydrogen sulfate in steps 2 and 3. the starting material consists of a 5 carbon ring fused to a 4 carbon ring via a carbon. on the adjacent carbon on the 5 carbon ring is a hydroxy substituent. this reacts with h 2 s o 4 and heat to give two five carbon rings fused through a double bond between carbons 1 and 2. step 1: draw curved arrows.

Answers

The carbonile subtracts a H atom from the HCl in the initial step. The OH+ will then transfer the charge to the carbon, which is tertiary and readily stabilized, via resonance. After that, the chlorine subtracts a hydrogen atom to create a stable double bond on the charged carbon. Now, this combines with a second benzaldehyde molecule, and the result is a condensation product.

What is optimization for heat?

Depending on their intended use, heat exchangers are optimized. The minimum initial cost, minimum operating cost, maximum efficiency, minimal pressure drop, minimal heat transfer area, minimal weight, or material are the most frequently used optimization criteria for heat exchangers.

What is the heat plan of action?

The heat model is a behavioral approach that can be used to deal with complaints. It seeks to calm down and defuse the complainants' anger while, whenever possible, focusing on finding a solution to the problem or issue.

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aqueous sodium bromide reacts with chlorine gas to produce aqueous sodium chloride and liquid bromine

Answers

Chlorine gas and aqueous sodium bromide react to generate liquid bromine and aqueous sodium chloride.

What happens when chlorine and sodium bromide interact?

Chlorine (in the form of a gas or dissolved in water) replaces bromine when added to sodium bromide solution. Chlorine replaces bromine in sodium bromide because it is more reactive than bromine. The solution darkens. The displaced bromine is responsible for this brown color.

Several compounds are created when bromine and chlorine combine. Bromide and hydrogen chloride are produced when bromine and chlorine combine. Bromine reacts with chlorine to form chlorides like hypochlorite and chlorite. These reactions can also happen spontaneously and are used in industrial operations.

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What are the 4 parts you can find on the periodic table?; What is column 4 on the periodic table?; What are the columns and rows called on the periodic table?; Which element is in row 4 and and group IV?

Answers

a). In a modern periodic table, atoms with similar properties are grouped in the same vertical column and the elements are arranged in increasing order of their atomic number. The atomic number, symbol, name, and average atomic mass of each box, which represents an element, are all included.

b). The periodic table's second group of transition metals is Group 4. The four elements that make up this substance are titanium, zirconium, hafnium, and Rutherfordium. In honor of its lightest member, the group is sometimes known as the titanium group or titanium family.

c). Periods are the horizontal rows or lines that make up the periodic table. "Groups" are the vertical lines or columns.

d). Titanium is the common element of Group 4 and row 4.

Define periodic table?

The periodic table is a table that displays the chemical elements in order of increasing atomic number.

a). In a modern periodic table, atoms with similar properties are grouped in the same vertical column and the elements are arranged in increasing order of their atomic number. The atomic number, symbol, name, and average atomic mass of each box, which represents an element, are all included.

The number of protons in an element's atom, as indicated by its atomic number, determines its position on the periodic table.

Periods refer to the rows of the periodic table. The highest electron energy level shared by all elements within a period is zero.

The columns of the periodic table are referred to as groups. Each member of a group of elements has an equal number of valence electrons.

b). The periodic table's second group of transition metals is Group 4. The four elements that make up this substance are titanium, zirconium, hafnium, and Rutherfordium. In honor of its lightest member, the group is sometimes known as the titanium group or titanium family.

c). Periods are the horizontal rows or lines that make up the periodic table. "Groups" are the vertical lines or columns.

d). Titanium is the common element of Group 4 and row 4.

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Use the reaction i2(s) i2(g), h = 62.4 kj/mol, s = 0.145 kj/(molk), for question 10. which direction of the reaction is favored at 298 k (room temperature)?

A. Toward I2(g) production
B. Both are equally favored
C. It is impossible to tell
D. Toward I2(s) production

Answers

Answer:

D. Toward I2(s)

Explanation:

∆G = ∆H - T∆S

∆G = 62.4-.145*298

∆G = 19.2 kJ/mol

Since ∆G is positive (greater than 0) for this reaction, the reverse reaction (going from right to left) is favored: conversion of gaseous I2 to solid I2.

Answer:

the answer is Toward I2(s) production

Explanation:

I took the test rn and that’s what I got.

Which statement comparing ionic bonds and covalent bonds is correct?

Answers

Covalent bonds tend to be less polar than ionic bonds, which is an accurate way to compare the two types of bonds.

How are ionic and covalent bonding compared?

An atom can participate in covalent and ionic bonds, which are the two main types of bonds. By sharing electrons, two or more atoms can form covalent bonds. When two or more ions come together, their opposing charges hold them together to form ionic bonds.

What is true regarding covalent bonding according to the following statements?

Response and Justification: The right answer is (a). Covalent bonds are formed when the orbitals of two atoms overlap. Because the sharing of electrons creates covalent bonds.

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Which of the following statements is correct about covalent bonding?

What is boiling point of water

Answers

The boiling point of water is the temperature at which it changes from a liquid to a gas (vapor) at a given pressure. At sea level, the boiling point of water is 212 degrees Fahrenheit (100 degrees Celsius). However, the boiling point of water can vary depending on the pressure and altitude. For example, at higher altitudes, the atmospheric pressure is lower, so the boiling point of water is also lower. This is why water boils at a lower temperature in mountainous areas than it does at sea level.

212° Fahrenheit is the answer

Write a balanced equation for each reaction.

a. HBr(aq) + KOH (aq)——>



b. HCl(aq) + NaHCo3(aq)—->


Answers

Answer:

a. The balanced equation for the reaction of HBr(aq) and KOH(aq) is: HBr(aq) + KOH(aq) → KBr(aq) + H2O(l)

b. The balanced equation for the reaction of HCl(aq) and NaHCo3(aq) is: HCl(aq) + NaHCo3(aq) → NaCl(aq) + H2O(l) + CO2(g)

Explanation:

based on this figure, how does the amount of water evaporating from the ocean compare to the amount of precipitation falling into the ocean?

Answers

The amount of water evaporating from the ocean is significantly larger than the amount of precipitation falling into the ocean. On a global scale, the ocean loses about 577,000 cubic kilometers of water through evaporation each year, whereas it gains just 505,000 cubic kilometers of water from precipitation.

The Hydrologic Cycle and its Impact on the Ocean

Is a natural process involving evaporation, precipitation, transport, and recirculation of water through the land and ocean. The key elements in the hydrologic cycle are water and heat.

The hydrological cycle is important for life on Earth, as it regulates air moisture levels and contributes to:

Food productionEnergy productionAquifer rechargeFlood mitigation

The hydrological cycle also has a significant impact on the ocean, regulating:

Salinity levelsTemperatureSeawater circulation

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FILL IN THE BLANK a _____consists of a nitrogen-containing base, a sugar, and a phosphate group. a ________consists of a nitrogen-containing base, a sugar, and a phosphate group. base pair nucleoside nucleotide complementary base purine

Answers

A sugar, a phosphate group, and a base with nitrogen make up a nucleoside. A nucleotide is made up of a sugar, a phosphate group, and a base that contains nitrogen.

Who or what uses nitrogen?

When preparing samples for chemical analysis, nitrogen is frequently utilized. Liquid sample concentration and volume reduction are accomplished using it. The chemical sector depends on nitrogen as well. It is used to make explosives, nylon, nitric acid, and fertilizers.

Is nitrogen dangerous to people?

Each year, inhaling "air" with insufficient oxygen results in fatalities. Since nitrogen gas makes up 78 percent of the air we breathe, many people believe it to be safe. Nitrogen is only safe to breathe, though, when combined with the right amount of oxygen.

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dissolved solutes alter some physical (colligative) properties of the solvent water because they change the ______. a.Concentration of the water, b.Hydrogen bonding of the water, c.Ionic bonding of the water, d. pH of the water. e.Temperature of the water.

Answers

Concentration of the water. The standard state for a liquid is the pure liquid, so the standard state of water is pure water, whose concentration is 55.5 M (in a liter, there are 55.5 moles of water, so its concentration is 55.5 mol/L). In dilute aqueous solutions, the concentration of water is very close to 55.5 M.

Solute :- A substance that is dissolved in a solution.In fluid solutions, the amount of solvent present is greater than the amount of solute.

Colligative Properties:- They are  properties of solutions that depend on the number of particles in a volume of solvent (the concentration) and not on the mass or identity of the solute particles.When a solute is added to a solvent to make a solution, the dissolved particles displace some of the solvent in the liquid phase.

The four colligative properties that can be exhibited by a solution are:

Boiling point elevation.

Freezing point depression.

Relative lowering of vapour pressure.

Osmotic pressure.

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based on the information provided, which of the following statements is false? in nh 2 , the nitrogen atom acquires a partial positive charge and the hydrogen atoms acquire a partial negative charge. in h 2 o , the hydrogen atoms acquire a partial negative charge, and the oxygen atom acquires a partial positive charge. in hcl , the hydrogen atom acquires a partial positive charge, and the chlorine atom acquires a partial negative charge. in lif , the lithium atom acquires a negative charge, and the fluorine atom acquires a positive charge.

Answers

The hydrogen atoms in NH2 gain a partial negative charge, whereas the nitrogen atoms gain a partial positive charge.

What exactly is a molecule with a balanced partial positive and negative charge?

Polar molecules are defined as having a partial positive charge on one side and a partial negative charge on the opposite side of the molecule. One example of a polar molecule is water.

Hydrogen has a partial negative charge in what bond?

The electrostatic attraction between a hydrogen atom with a partial positive charge and another atom (often O or N) with a partial negative charge is known as a hydrogen bond. As a result of the relative electronegativity of covalently bound atoms, these partial opposing charges are produced.

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How many atoms of a Group 16 element would be needed to react with one atom of a Group 2
element? Explain.

Answers

According to the electronic configuration, one atom of group 16 element is needed to react with one atom of group 2 element.

What is electronic configuration?

Electronic configuration is defined as the distribution of electrons which are present in an atom or molecule in atomic or molecular orbitals.It describes how each electron moves independently in an orbital.

Knowledge of electronic configuration is necessary for understanding the structure of periodic table.It helps in understanding the chemical properties of elements.

Elements undergo chemical reactions in order to achieve stability. Main group elements obey the octet rule in their electronic configuration while the transition elements follow the 18 electron rule. Noble elements have valence shell complete in ground state and hence are said to be stable.

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propose a synthesis of each of the following compounds using the indicated starting material. you may use any organic compounds and any inorganic compounds or solvents of your choice. do not show any reactive intermediates, mechanisms, or transition states, but be sure to show each isolable compound along your synthetic route.

Answers

Organic compounds are substances in which carbon and hydrogen are covalently bonded to other elements.

Organic compounds. Any of a large class of compounds in which one or more carbon atoms are covalently bonded to atoms of other elements, most commonly hydrogen, oxygen, or nitrogen. The few carbon-containing compounds not classified as organics are carbides, carbonates, and cyanides.

Organic compounds are derived directly or indirectly from plants and animals. Compounds derived from minerals are called inorganic compounds. Inorganic substances are a group of chemicals that do not contain carbon. Chemical compounds in living organisms are called organic compounds. Organic compounds are due to their association with living organisms and because they are carbon-containing compounds.

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Calculate the root main Square Velocity for the atoms in a sample of Nitrogen gas (N2) at 25°c of CO₂ and SO₂ from the same container and at the same temperature and pressure.​

Answers

Answer:

To calculate the root mean square velocity of atoms in a gas, we need to know the mass of the atoms, the temperature of the gas, and the gas constant. The root mean square velocity can be calculated using the following equation:

v_rms = sqrt((3RT)/m)

Where v_rms is the root mean square velocity, R is the gas constant, T is the temperature in kelvins, and m is the mass of the atoms in kilograms.

For nitrogen gas (N2), the mass of each atom is 14/6.022 x 10^23 = 2.34 x 10^-23 kg.

For CO2, the mass of each atom is 12/6.022 x 10^23 = 2.0 x 10^-23 kg.

For SO2, the mass of each atom is 32/6.022 x 10^23 = 5.3 x 10^-23 kg.

Plugging these values into the equation, we can calculate the root mean square velocity for each gas at 25°C:

v_rms (N2) = sqrt((38.31298)/(2.34 x 10^-23)) = 466 m/s

v_rms (CO2) = sqrt((38.31298)/(2.0 x 10^-23)) = 505 m/s

v_rms (SO2) = sqrt((38.31298)/(5.3 x 10^-23)) = 691 m/s

Therefore, the root mean square velocity of atoms in a sample of Nitrogen gas at 25°C is 466 m/s, while the root mean square velocity of atoms in a sample of CO2 at the same temperature and pressure is 505 m/s, and the root mean square velocity of atoms in a sample of SO2 at the same temperature and pressure is 691 m/s.

Explanation:

SELF EXPLANATORY

draw the major product of this reaction. ignore inorganic byproducts and the phthalic acid side product

Answers

CH3CH2CH2CH2CI is the major product of this reaction ignore inorganic compound by products and the phthalic acid side product. In chemistry, inorganic compounds are usually compounds that do not have carbon-hydrogen bonds, i.e., are not organic compounds.

What is inorganic compound?

In chemistry, inorganic compounds are usually compounds that do not have carbon-hydrogen bonds, i.e., are not organic compounds.

Therefore, CH3CH2CH2CH2CI is the major product of this reaction ignore inorganic compound by products and the phthalic acid side product. In chemistry, inorganic compounds are usually compounds that do not have carbon-hydrogen bonds, i.e., are not organic compounds.

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when two hydrogen atoms pair together, they form a bond to achieve a complete , which is a stable configuration.

Answers

By sharing electrons and forming a covalent connection, two hydrogen atoms can reach a stable electron configuration.

What does place when two hydrogen atoms combine to produce the H2 molecule?

A covalent bond is the name given to this kind of chemical interaction. When two atoms share one or more pairs of electrons, the link is referred to as covalent. When two hydrogen atoms combine to form a hydrogen molecule, their individual single electrons are shared (H2).

The reaction between H2 and O2 is what kind of reaction?

H2 is oxidizing to H+ ions because oxidation involves the loss of electrons, while O2 is reducing to O- - ions because reduction involves the gain of electrons. Since both oxidation and reduction are occurring at the same time.

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How to remove dye from effluent from azo dye factory

Answers

The removal of the azo dye can be achieved by the use of the adsorbents.

How do you remove the azo dye?

We know that a dye could be one of the contaminants that could be seen to be present in an effluent stream. It is always very important that we should be able to remove the wastes that are part of a stream as this is going to make sure that we do not have the effluent filled with a contaminant.

The contaminant that is found in the stream can be able to be passed into the aquatic ecosystem and then it could be passed along food chain and this is going to cause a much larger damage to people that are living in a locality.

We can be able to remove the azo dye by the use of the adsorbents that would be able to take up the dye and such save the environment.

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Finish the pre-laboratory assignments before the laboratory experiment. Read the manual of this experiment and complete the following questions. 1. a. Identify oxidation-reduction reactions in the copper cycle experiment. For each oxidation-reduction reaction, write half reactions to show what is oxidized and what is reduced. b. Identify acid-base reactions and precipitation reactions in the copper cycle experiment. Write equations for the corresponding reactions. b. How many mL of 3.0 M NAOH are required to neutralize 4.0 mL of 16.0 M HNO2?

Answers

[tex]\begin{aligned}& \mathrm{Cu}(s) \stackrel{\text { Part I }}{\longrightarrow} \mathrm{Cu}^{2+}(\alpha q) \stackrel{\text { Part II }}{\rightarrow} \mathrm{Cu}(\mathrm{OHI})_2(s) \\&\end{aligned}[/tex]

Oxidation-reduction reactions in the copper cycle experiment. For each oxidation-reduction reaction,  half reactions to show copper is oxidized and copper is reduced.

Any chemical reaction in which the oxidation number of a molecule, atom, or ion changes by acquiring or losing an electron is referred to as an oxidation-reduction reaction. Some of the fundamental processes of life, such as photosynthesis, respiration, combustion, and corrosion or rusting, depend on redox reactions.

The copper gets oxidized and in the fourth step, the copper gets reduced.

Acid - base reaction

In a chemical reaction known as neutralization or neutralisation, an acid and a base interact quantitatively. By neutralizing a reaction in water, surplus hydrogen or hydroxide ions are removed from the solution.

      CuO(s) + H₂SO₄(aq) -->CuSO₄(aq) + H₂O(l)

      precipitation reaction

     Cu(NO₃)₂(aq) + 2NAOH(aq) -->Cu(OH)₂ + 2NANO₃

Thus, 21.3 mL of NaOH is required to react with 4 mL of 16 M HNO3 H N O 3 .

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calculate ecell for 1.0 m cu2 / 0.001 m zn2 : [ select ] tip: room temperature of 298 k can be assumed and use the e0cell for the cu/zn cell calculated from standard reduction potentials in q2.

Answers

In q2, the Cu/Zn cell was  1.041V by using standard reduction potentials.

As we have the formula

ZnZn 2+ (0.001M) Cu 2+ (0.1M) Cu

Overall cell reaction: ZnZn² +2e

Cu²+  +2e ⟶Cu

Zn+Cu 2+ Zn+Cu²+ Zn²+Cu

E cell o = cathode standard reduction potential + anode standard oxidation potential

E cell o = 0.34 to 0.76 V

E cell o =1.1 V

Kc = [Zn 2+ ] / [Cu 2+ ]= 10²

E cell o =1.1 V

K C = [Cu 2+ ] [Zn 2+ ] = 10 1

The cell's EMF at any electrode concentration is:

E=E o n 0.059 log(K C )=1.1 -0.059/2 X log(10² )=1.1 2 0.059 (2)

=1.10-059=1.041V

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Which of the following is not a result of special additives blended into the monomer liquid and polymer powders?
longer shelf life.
color stability.
maximum flexibility.
maximum durability.

Answers

The following is not a result of special additives blended into the monomer liquid and polymer powders is maximum flexibility.

A monomer is the molecule that will combine to another identical monomer and form the polymers. A monomer is the simplest unit of the polymer. A polymer is the natural  or it can be synthetic substance that is composed of the very large molecules and is called as macromolecules. A polymer is composed of the repeating units. the additive blended to the monomer is not the results in the maximum flexibility.

Thus, the maximum flexibility is not a result of special additives blended into the monomer liquid and polymer powders

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The vapor pressure of water at 5C is 6.55 toor. Calculate the vapor pressure in mm Hg and atm . Round each of your answers to 3 significant digits.

Answers

Answer: 6.55 mmHg, 0.00862 atm

Explanation:

1 mmHg is equal to 1 torr, so those two values are the same thing.

1 atm is 760 torr, we can find the atm value by (6.55)/(760)=0.00862 atm.

in which compound does the bond between the atoms have the least ionic character; which element is composed of molecules that each contain a multiple covalent bond; in terms of their formulas what is the difference between the chlorate and perchlorate ions; using the symbols a and q the chemical formula of the product could be written as; which compound contains both ionic and covalent bonds; the bonds in bao are best described as; sodium phosphate symbol; chemical bonds

Answers

1. Compound with the least ionic character: Carbon dioxide (CO2)

2. Element composed of molecules with multiple covalent bonds: Carbon (C).3. Difference between chlorate and perchlorate ions: The chlorate ion has the formula ClO3- while the perchlorate ion has the formula ClO4-.

4. Using the symbols a and q, the chemical formula of the product could be written as aq.5. Compound containing both ionic and covalent bonds: Sodium Chloride (NaCl)

6. Bonds in Bao (BaO): The bonds in BaO are ionic bonds.

7. Sodium phosphate symbol: Na3PO4

8. Chemical bonds: Chemical bonds are forces of attraction that hold atoms or ions together. There are four main types of chemical bonds: covalent, ionic, metallic, and hydrogen bonds. Covalent bonds involve the sharing of electrons between two atoms, while ionic bonds involve the transfer of electrons from one atom to another. Metallic bonds involve the delocalization of electrons throughout a lattice of metal atoms, and hydrogen bonds involve the attraction between a hydrogen atom and another atom.

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Using the table Melting and Glass Transition Temperatures for Some of the More Common Polymeric Materials, which of the following polymer(s) would be suitable for the fabrication of cups to contain hot coffee: (a) polyethylene, (b) polypropylene, (c) poly(vinyl chloride), (d) polystyrene, (e) polycarbonate, and (f) PET polyester? O (a) and (d) O only (e) (a), (b), and (c) (b), (c), (f), and (e) O (d) and (e)

Answers

Probably a little below 100°C (212°F) is the maximum temperature for hot coffee. Only polycarbonate and polystyrene have glass transition temperatures of 100°C or higher (Table 15.2), making them the only polymers on the list that would work for this application.

The temperature at which an amorphous polymer transitions from a hard, glassy state to a soft, leathery state, or vice versa. Tg is a direct correlation between a material's strength and capabilities in a specific end-use application.

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What Is The Strongest Acid Among The Following? A) H2S B) HCI C) H20 D) HF

Answers

The HCl acid is stronger than all of the following because chlorine atom is more electronegative.

HCl is a sturdy acid as it dissociates nearly completely. By contrast, a susceptible acid like acetic acid (CH3COOH) does now no longer dissociate properly in water – many H+ ions stay bound-up inside the molecule. In summary: the more potent the acid the extra loose H+ ions are launched into solution.

HCl is a more potent acid than HF due to the fact fluorine is extra electronegative than chlorine.H2S is extra acidic than water due to the fact OH bonds are more potent than SH bonds. Sulfur is likewise large than oxygen, in order that allows stabilize the SH− anion relative to OH.

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Which of the following statements is true?
Diffusion involves the movement of molecules using transport proteins.
Diffusion involves the breaking down of dead organelles.
Diffusion involves the movement of molecules in the cytoplasm.
Diffusion involves the movement of molecules into or out of a cell.
Diffusion involves the movement of molecules into or out of a cell.

Answers

The Correct answer is d) Diffusion involves the movement of molecules into or out of a cell.

What is Diffusion?The process of molecule movement along a concentration gradient is called diffusion. When molecules travel from one area with a higher concentration to one with a lower concentration, it happens. Every living creature experiences it, and it is a significant process.The movement of materials into and out of cells is facilitated by diffusion. The molecules move from an area of higher concentration to an area of lower concentration until the concentration is the same everywhere.Since molecules can move about in gases and liquids, diffusion takes place in such media.Diffusion is frequently employed throughout several academic fields, including physics, chemistry, and biology. The two primary types of diffusion are simple diffusion and assisted diffusion.

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what is the mass of 0.015 moles of na2so4

Answers

The mass of 0.015 moles of na2so4 is 2.13 grams.

Define number of moles.

The ratio of a substance's given mass in a chemical reaction to the mass of one mole of that substance is the number of moles of that substance. A mole of any substance is equal to 6.023 1023, Avogadro's number.

Number of moles (n) = 0.015 mol

Molar mass of Na2SO4 = 142.04 g/mol

Required Mass (in g)

= Number of moles × Molar mass

= 0.015 mol × 142.04 g/mol

= 2.13 g

Therefore, the required mass is 2.13 g.

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A swimming pool, 20.0 m ✕ 12.5 m, is filled with water to a depth of 3.73 m. If the initial temperature of the water is 17.5°C, how much heat must be added to the water to raise its temperature to 29.7°C? Assume that the density of water is 1.000 g/mL.

Answers

The amount of heat added to the water to raise its temperature to 29.7 °C, given that the initial temperature of the water was 17.5 °C is 4.76×10¹⁰ J

How do I determine the amount of heat added to the water?

First, we shall determine the mass of the water. This is shown below:

Volume = 20 × 12.5 × 3.73 = 932.5 m³ = 932.5 × 10⁶ = 9.325×10⁸ mLDensity of water = 1 g/mLMass of water =?

Mass = density × volume

Mass of water = 1 × 9.325×10⁸

Mass of water = 9.325×10⁸ g

Finally, we shall determine the heat added to raise the temperature. Details below:

Mass of water (M) = 9.325×10⁸ gInitial temperature (T₁) = 17.5 °CFinal temperature (T₂) = 29.7 °CChange in temperature (ΔT) = 29.7 - 17.5 = 12.2 °CSpecific heat capacity of water (C) = 4.184 J/gºC Heat (Q) =?

Q = MCΔT

Q = 9.325×10⁸ × 4.184 × 12.2

Q = 4.76×10¹⁰ J

Thus, the heat added is 4.76×10¹⁰ J

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