what term is used for the geometrical isomer shown below?

Answers

Answer 1

The term used for the geometrical isomer shown below is the term "cis-isomer."

Cis-trans isomerism, also known as geometric isomerism or configurational isomerism, is a type of stereoisomerism that occurs in alkenes and cyclic compounds.

Cis-isomer and trans-isomer are two types of stereoisomers.

Cis-isomer refers to a molecule in which two functional groups or substituents are on the same side of the double bond or ring.

Cis-isomerism occurs when substituents on a double bond or ring have the same spatial orientation.

The molecule shown below is an example of a cis-isomer.

Cis-isomers and trans-isomers have the same molecular formula and sequence of bonded atoms but differ in their spatial arrangement.

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Related Questions

Pure Plutonium-239, a fissile material used in bombs and power generation, is to be stored in an underground long-term storage facility. The standard background radiation level in Asheville, NC, is 0.73 Bq. How long (years) would 250 kg of 239Pu need to be stored in order for its activity to drop to this background level? (Neglect the decay rate of its alpha decay daughter isotope, 235U).

Answers

It would take approximately 354,237 years for the activity of 250 kg of 239Pu to drop to the background radiation level of 0.73 Bq.

To determine the time required for the activity of 250 kg of Plutonium-239 (239Pu) to drop to the background radiation level of 0.73 Bq, we need to consider the half-life of 239Pu.

The half-life of 239Pu is approximately 24,110 years. This means that in every 24,110 years, the activity of 239Pu is reduced by half.

Since we want to determine the time required for the activity to drop to the background radiation level, we need to calculate the number of half-lives required to reach that level.

To do that, we can use the formula:

Number of half-lives = (ln(initial activity/final activity))/ln(2)

The initial activity of 239Pu is proportional to its mass, so we can assume that the initial activity is directly proportional to 250 kg. Therefore, the initial activity of 250 kg of 239Pu can be denoted as A.

Number of half-lives = (ln(A/0.73))/ln(2)

Now we can substitute the value for the half-life of 239Pu, which is 24,110 years:

Number of half-lives = (ln(A/0.73))/ln(2) = (ln(250/A))/ln(2)

Solving for A, we have:

0.73 = 250/e^(ln(2) * Number of half-lives)

Rearranging the equation and solving for the number of half-lives:

Number of half-lives = ln(250/0.73) / ln(2) ≈ 14.7

Therefore, approximately 14.7 half-lives are needed for the activity of 239Pu to drop to the background radiation level.

To calculate the time required, we multiply the number of half-lives by the half-life of 239Pu:

Time required = 14.7 * 24,110 years ≈ 354,237 years

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The following five beakers, each containing a solution of sodium chloride (NaCl, also known as table salt), were found on a lab shelf:
Beaker Contents
1 200 mL. of 1.50 M NaCl solution
2 100 mL. of 3.00 M NaCl solution
3 150 mL. of solution containing 22.5 g of NaCl
4 100 mL. of solution containing 22.5 g of NaCl
5 300 mL. of solution containing 0.450 mol NaCl
Arrange the solutions in order of decreasing concentration.

Answers

The solutions in order of decreasing concentration:

Solution 4, Solution 2, Solution 3, Solution 5, Solution 1

Concentration refers to the amount of a substance in a defined space. Another definition is that concentration is the ratio of solute in a solution to either solvent or total solution.

There are various methods of expressing the concentration of a solution.

Concentrations are usually expressed in terms of molarity, defined as the number of moles of solute in 1 L of solution.

Solution 1: 200 mL of 1.50 M NaCl solution

Molarity (M) = 1.50 mol/L

Solution 2: 100 mL of 3.00 M NaCl solution

Molarity (M) = 3.00 mol/L

Solution 3: 150 mL of solution containing 22.5 g of NaCl

Molar mass of NaCl = 22.99 g/mol (Na) + 35.45 g/mol (Cl) = 58.44 g/mol

Amount of NaCl = 22.5 g / 58.44 g/mol = 0.385 mol

Molarity (M) = 0.385 mol / 0.150 L = 2.57 mol/L

Solution 4: 100 mL of solution containing 22.5 g of NaCl

Similar to Solution 3, the molarity can be calculated:

Amount of NaCl = 22.5 g / 58.44 g/mol = 0.385 mol

Molarity (M) = 0.385 mol / 0.100 L = 3.85 mol/L

Solution 5: 300 mL of solution containing 0.450 mol NaCl

Molarity (M) = 0.450 mol / 0.300 L = 1.50 mol/L

Now we can arrange the solutions in order of decreasing concentration:

Solution 4, Solution 2, Solution 3, Solution 5, Solution 1

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With which of the following will the potassium ion form an insoluble salt? A. Chloride B. Sulfate C. Carbonate D. Sulfate and carbonate E. None of the above

Answers

The potassium ion will form an insoluble salt with option C: Carbonate.

The potassium ion will form an insoluble salt with option C: Carbonate. This option best matches the description of insoluble salt.

Moreover, the combination of potassium ion and carbonate will lead to the formation of an insoluble salt called potassium carbonate, a white crystalline substance. In aqueous solutions, potassium carbonate can be obtained by reacting potassium hydroxide with carbon dioxide:

2 KOH + CO₂ → K₂CO₃ + H₂O

However, the other options in the question won't lead to the formation of an insoluble salt. A soluble salt dissolves in water, whereas an insoluble salt does not. When an insoluble salt dissolves in water, it forms a precipitate that can settle at the bottom of the container when left undisturbed.

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Name the nutrient present in cooked rice , a boiler eggs

Answers

Explanation:

cooked rice

nutrient

carbohydrate.

Boiler eggs

nutrient

Protein.

What is drilling mud and what are its uses and what are its environmental problems. What A llutio. il and II

Answers

Drilling mud, also known as drilling fluid, is a mixture of various fluids, additives, and solids that is used in drilling operations to aid in the drilling process and maintain good stability.

It serves several purposes:

Lubrication and Cooling: Drilling mud helps to cool and lubricate the drill bit, reducing friction and heat generated during drilling.

Pressure Control: The mud exerts hydraulic pressure on the well bore walls, preventing the influx of formation fluids and maintaining well integrity.

Cuttings Removal: Drilling mud carries drill cuttings to the surface, clearing the well bore and allowing for continuous drilling.

Formation Evaluation: Mud properties can be adjusted to provide information about the formation being drilled, such as its porosity and permeability.

However, drilling mud can also pose environmental problems:

Discharge and Spills: Improper handling or accidental spills of drilling mud can lead to contamination of water bodies, impacting aquatic ecosystems and wildlife.

Toxicity and Chemical Additives: Drilling mud often contains various additives, some of which can be toxic to aquatic organisms and the environment. These additives can persist in the environment and cause long-term harm.

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the frequency of electromagnetic radiation of wavelength 5.6 mm is

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The frequency of electromagnetic radiation of wavelength 5.6 mm is 53.6 GHz (gigahertz).

Explanation: Frequency is the number of times a wave oscillates in one second. The unit of frequency is Hertz (Hz), which is defined as one cycle per second. The formula for finding the frequency of electromagnetic radiation is:f = c/λWhere,f is frequencyλ is wavelength c is the speed of light

The speed of light, c, is 3 × 10^8 m/s (meters per second).

Now, let's substitute the given values in the formula:

f = c/λf

= 3 × 10^8 / (5.6 × 10^-3)

f = 53.6 × 10^9 Hz or 53.6 GHz

Therefore, the frequency of electromagnetic radiation of wavelength 5.6 mm is 53.6 GHz (gigahertz).

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what is the oxidation number (oxidation state) for n in n2h4 ?

Answers

The oxidation number of nitrogen (N) in N₂H₄ (dinitrogen tetrahydride or hydrazine) is -2.

To determine the oxidation number of nitrogen in N₂H₄, we assign oxidation numbers to other elements in the molecule and use the known rules and guidelines for assigning oxidation numbers.

In N₂H₄, hydrogen (H) is generally assigned an oxidation number of +1, as it tends to lose one electron to form H⁺ ions. Since N₂H₄ is a neutral molecule, the sum of the oxidation numbers of all atoms must equal zero.

Let's assume the oxidation number of nitrogen (N) in N₂H₄ is x. Since there are two nitrogen atoms in N₂H₄, the total contribution from nitrogen would be 2x.

The oxidation number of hydrogen is +1, and there are four hydrogen atoms in N₂H₄. Thus, the total contribution from hydrogen would be
4(+1) = +4.

Setting up the equation based on the sum of oxidation numbers equaling zero, we have,

2x + 4(+1) = 0

Simplifying the equation:

⇒ 2x + 4 = 0

⇒ 2x = -4

⇒ x = -2

Therefore, the oxidation number of nitrogen (N) in N₂H₄ is -2.

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what is the mole fraction of solute in a 3.79 m aqueous solution?

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The mole fraction of solute in a 3.79 m aqueous solution is 0.0203. The solution is aqueous, the solvent is water, and the moles of solute will be equal to the molality

The mole fraction of solute in a 3.79 m aqueous solution can be calculated using the formula:

mole fraction of solute = moles of solute / moles of solute + moles of solvent

m = molality of solution

M = molar mass of solute

Since the solution is aqueous, the solvent is water, and the moles of solute will be equal to the molality (m). However, we need to know the mass of water to calculate the moles of solvent.

Hence, the answer to the given question is mole fraction of solute =

                   3.79 / (3.79 + 1000/18)

                  = 0.0203.

Therefore, the mole fraction of solute in a 3.79 m aqueous solution is 0.0203.

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Which of the following is most likely to exhibit covalent bonding?
a. NaF
b. CO2
c. CaCl2
d. NaCl

Answers

Option B, CO2

The compound that is most likely to exhibit covalent bonding among NaF, CO2, CaCl2, and NaCl is CO2.

Covalent bonding refers to a chemical bond that occurs between two non-metals when electrons are shared between them.

The atoms can share one or more pairs of valence electrons so that both atoms attain a stable electron configuration.

In covalent bonding, the atoms do not transfer electrons, and the bond is formed through the sharing of valence electrons.

The compound CO2, or carbon dioxide, consists of two oxygen atoms that share two pairs of valence electrons with one carbon atom.

Oxygen and carbon are both non-metals, making the compound covalent rather than ionic.

Hence, the compound CO2 is the most likely to exhibit covalent bonding among NaF, CO2, CaCl2, and NaCl.

Option B, CO2 is the correct answer.

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fire resistant material no longer used due to its carcinogenicity

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Asbestos, a fire-resistant material, is no longer used due to its carcinogenicity.

Asbestos, a fire-resistant material that was widely used in building insulation and fireproofing, has been linked to various types of cancer and respiratory diseases. Due to its carcinogenicity and health hazards, it is no longer used in construction. Asbestos fibers are easily inhaled and can cause lung cancer, mesothelioma, and asbestosis, a lung disease that causes shortness of breath and other symptoms.

These health hazards associated with asbestos exposure led to its prohibition in many countries. The United States banned the production and use of asbestos in 1989, while the European Union banned it in 2005. Despite the ban, asbestos is still found in some older buildings and products, which requires safe handling and removal protocols to prevent asbestos exposure and ensure public health and safety.

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provide the name of the oxyanion of the acid: h3po4(aq)

Answers

The oxyanion of the acid H3PO4 (aq) is the phosphate ion (PO4)3-.

When H3PO4 is dissolved in water, it ionizes to release three hydrogen ions (H+) and one phosphate ion (PO4)3-. The phosphate ion is formed when all three hydrogen ions from the acid are dissociated.

The structure of the phosphate ion consists of one central phosphorus atom (P) bonded to four oxygen atoms (O) in a tetrahedral arrangement. The oxygen atoms are bonded to the phosphorus atom through covalent bonds.

The naming of oxyanions follows a specific pattern based on the number of oxygen atoms present. In the case of the phosphate ion, the prefix "phosph-" is used to indicate the presence of phosphorus. The suffix "-ate" is used to denote that the ion is negatively charged and contains oxygen. The overall charge of the phosphate ion is 3-, indicating that it has three more electrons than protons.

Therefore, the oxyanion of the acid H3PO4 (aq) is called the phosphate ion (PO4)3-. It is a polyatomic ion commonly encountered in various biological and chemical processes. The phosphate ion is crucial in biochemistry, as it plays a significant role in energy storage (adenosine triphosphate, ATP) and is a vital component of DNA, RNA, and many other important molecules in living organisms.

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a) The antacid component of Tumsr is calcium carbonate. Assume Tumsr is 40.0 percent CaCO3 by mass. If we have 400. mg of Tumsr how many ml of 0.100 M HCl can we neutralize? Express your answer in mL.
b) For every 5.00 mL of milk of magnesia there are 400. mg of magnesium hydroxide. How many mL of milk of magnesia do we need to neutralize 40.0 mL of 0.500 M HCl? Express your answer in mL.
c) Suppose 13.00 mL of 0.100 M barium hydroxide is required to neutralize 17.00 ml of nitric acid with an unknown concentration. What is the concentration of the nitric acid. Express your answer in mol/L.

Answers

a. The volume of 0.100 M HCl required to neutralize 0.0007995 mol of HCl is 7.995 mL

b. We need 219.4 mL of milk of magnesia to neutralize 40.0 mL of 0.500 M HCl.

c. The concentration of the nitric acid is 0.153 M.

a) The antacid component of Tums® is calcium carbonate. It is given that Tums® is 40.0 percent CaCO3 by mass and we have 400. mg of Tums®.

Hence, the mass of calcium carbonate in 400 mg of Tums® is 0.4 × 400 = 160 mg (since Tums® is 40% calcium carbonate by mass).

We know that 1 mole of CaCO3 neutralizes 2 moles of HCl. The molar mass of CaCO3 is 40.08 + 12.01 + 3(16.00) = 100.09 g/mol.

Hence, the number of moles of CaCO3 present in 160 mg of calcium carbonate is:

moles of CaCO3 = (mass of calcium carbonate) / (molar mass of CaCO3) = 160 / 100.09 × 10⁻³ g/mol = 0.001599 mol

Since 1 mole of CaCO3 neutralizes 2 moles of HCl, the number of moles of HCl that can be neutralized by 0.001599 mol of CaCO3 is:

moles of HCl = (0.001599 mol CaCO3) / 2 = 0.0007995 mol HCl

The volume of 0.100 M HCl required to neutralize 0.0007995 mol of HCl is given by:

volume of HCl = (moles of HCl) / (molarity of HCl) = 0.0007995 mol / 0.100 M = 0.007995 L = 7.995 mL

b) We are given that for every 5.00 mL of milk of magnesia there are 400. mg of magnesium hydroxide.

Hence, the mass of magnesium hydroxide present in 40.0 mL of milk of magnesia is:

mass of Mg(OH)₂ = (40.0 mL / 5.00 mL) × 400.0 mg = 3200.0 mg = 3.2 g

The molar mass of Mg(OH)₂ is 24.31 + 2(16.00 + 1.01) = 58.33 g/mol. Hence, the number of moles of Mg(OH)₂ present in 3.2 g of magnesium hydroxide is:

moles of Mg(OH)₂ = (mass of Mg(OH)₂) / (molar mass of Mg(OH)₂) = 3.2 / 58.33 g/mol = 0.05483 mol

Since 2 moles of HCl are neutralized by 1 mole of Mg(OH)₂, the number of moles of HCl that can be neutralized by 0.05483 mol of Mg(OH)₂ is:

moles of HCl = 2 × 0.05483 mol = 0.1097 mol

The volume of 0.500 M HCl required to neutralize 0.1097 mol of HCl is given by:

volume of HCl = (moles of HCl) / (molarity of HCl) = 0.1097 mol / 0.500 M = 0.2194 L = 219.4 mL

c) We are given that 13.00 mL of 0.100 M barium hydroxide is required to neutralize 17.00 mL of nitric acid with an unknown concentration.

Let the concentration of the nitric acid be x M. The balanced chemical equation for the reaction between barium hydroxide and nitric acid is:

Ba(OH)₂ + 2HNO₃ ⟶ Ba(NO₃)₂ + 2H₂O

From the equation, we can see that 1 mole of Ba(OH)₂ reacts with 2 moles of HNO₃. Hence, the number of moles of HNO₃ present in 17.00 mL of nitric acid with concentration x M is:

moles of HNO₃ = (molarity of HNO₃) × (volume of HNO₃) = x × 0.01700 L = 0.017x mo

lSince 2 moles of HNO₃ are neutralized by 1 mole of Ba(OH)₂, the number of moles of Ba(OH)₂ required to neutralize 0.017x mol of HNO₃ is:

moles of Ba(OH)₂ = 0.5 × 0.017x mol = 0.0085x mol

The volume of 0.100 M Ba(OH)₂ required to neutralize 0.0085x mol of Ba(OH)₂ is given by:

volume of Ba(OH)₂ = (moles of Ba(OH)₂) / (molarity of Ba(OH)₂) = 0.0085x mol / 0.100 M = 0.085x L = 85x mL

We know that the volume of 0.100 M Ba(OH)₂ required to neutralize 17.00 mL of nitric acid is 13.00 mL.

Hence,85x = 13.00 mL ⇒ x = 0.153 M

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The molar mass of ammonium acetate is 77.083 g/mol. A student uses 0.100 mol of ammonium acetate in a chemical reaction. The
student claims that the reaction uses (0.100 mol) (77.083 g/mol) = 7.71 g of ammonium acetate, which has
(7.71) (6.022 x 1023) = 4.64 x 1024 molecules.
In one to two sentences, explain the mistake that the student made and determine the correct number of molecules of ammonium
acetate used in the reaction.

Answers

The student's claim of 4.64 × 10^24 molecules is incorrect, and the correct number of molecules of ammonium acetate used in the reaction is 6.022 × 10^22 molecules.

The mistake the student made is assuming that the molar mass of ammonium acetate directly corresponds to the number of molecules. However, the molar mass of a substance represents the mass of one mole of that substance, not the number of molecules.

To determine the correct number of molecules of ammonium acetate used in the reaction, we need to use Avogadro's number, which relates the number of particles (atoms, molecules, etc.) in one mole of a substance.

Avogadro's number is approximately 6.022 × 10^23 particles/mol. Given that the student used 0.100 mol of ammonium acetate, we can calculate the correct number of molecules by multiplying the number of moles by Avogadro's number:

Number of molecules = (0.100 mol) × (6.022 × 10^23 molecules/mol)

Performing the calculation, we find that the correct number of molecules of ammonium acetate used in the reaction is 6.022 × 10^22 molecules.

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Which of the following acids is named nonmetal stem + -ous acid: HCl,HClO3,HClO2,

Answers

HClO₂ is named as Chlorous acid.

A chemical formula is a representation that indicates the types and numbers of atoms present in a molecule or compound. It provides information about the composition of a substance by using chemical symbols and subscripts.

For example, the chemical formula for water is H₂O, where H represents hydrogen and O represents oxygen. The subscript 2 indicates that there are two hydrogen atoms bonded to one oxygen atom in each water molecule.

Similarly, the chemical formula for carbon dioxide is CO₂, where C represents carbon and O represents oxygen. The subscript 2 indicates that there are two oxygen atoms bonded to one carbon atom in each carbon dioxide molecule.

Chemical formulas allow scientists and chemists to communicate the precise composition of substances and are essential in understanding chemical reactions and interactions.

While naming oxyacids of non metals, they are named with stem + ous acid.

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when an electric current passes through water what takes place

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When an electric current passes through water, the process is known as electrolysis.

In this process, the water molecule is decomposed into its constituent parts. Electrolysis is a chemical process in which an electric current is passed through a solution or a molten salt. This results in the decomposition of the compound, which in turn results in the formation of positive and negative ions that migrate to the anode and cathode respectively. Electrolysis of water produces oxygen at the anode and hydrogen at the cathode.

                                       The electrolysis of water can be represented by the following equation:2H2O + electrical energy → 2H2 + O2In detail, the electrolysis of water involves the following steps:

                              At the anode, the oxygen ions in the water molecule combine to form oxygen gas.OH–(aq) → ½O2(g) + H+(aq) + e–At the cathode, the hydrogen ions in the water molecule combine to form hydrogen gas.H+(aq) + e– → ½H2(g)

The overall reaction for the electrolysis of water can be represented as:2H2O(l) → 2H2(g) + O2(g)

In summary, when an electric current passes through water, electrolysis takes place and the water molecule is decomposed into its constituent parts: hydrogen and oxygen gas.

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A substance Y has a melting point of -25°C and a boiling point of 135°C.
1) in which state of matter is Y at a)20°C and b) 250°C?
2) State which state symbol you could use for Y in a symbol equation.

Answers

1) a) At 20°C, Y is in a solid state. b) At 250°C, Y is in a gaseous state.
2) The state symbol for Y in a symbol equation would depend on the temperature and pressure conditions of the reaction. If Y is in a solid state, (s) would be used. If Y is in a liquid state, (l) would be used. If Y is in a gaseous state, (g) would be used.

Answer:

influence of a business invironment

the formula for terbium phosphate is tbpo4. the formula for terbium sulfate is

Answers

The formula for terbium sulfate is Tb₂(SO₄)₃.Terbium is a chemical element that is symbolized by the Tb symbol.

In the lanthanide series, it is a silvery-white, rare earth metal that is malleable, ductile, and soft enough to be cut with a knife. Terbium is never found in nature as a free element; rather, it is found in several minerals, including monazite and xenotime.The formula for terbium phosphate is TbPO₄.

Terbium phosphate is a crystalline solid that has a white color. Terbium phosphate is employed in the production of fluorophores, which are phosphorescent compounds that are utilized to label biological materials and to visualize cellular structures.

Terbium sulfate is a chemical compound with the formula Tb₂(SO₎₄)₃. Terbium sulfate is a salt that is composed of terbium cations and sulfate anions. Terbium sulfate is a white crystalline powder that is insoluble in water and alcohol but soluble in nitric acid.Terbium sulfate is often employed as a greenish phosphor in fluorescence lamps and other lighting devices because of its fluorescent properties.

Terbium sulfate is also employed in the production of laser materials and magnetic bubble memory devices.

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How many moles of silver are 8.46 x 10 24 atoms of silver?

Answers

Answer:

Answer and Explanation: To determine the number of moles of silver (Ag), we simply need to divide the number of atoms of Ag by the Avogadro's number, N , which is equal to 6.02 10 atoms of Ag per mole of Ag. Therefore, c) 6.3 moles of Ag are present in a sample of 3.8 10 atoms Ag.

amino acids are linked together by covalent bonds to make which polymer?

Answers

Amino acids are linked together by covalent bonds to make the polymer called as proteins.

What is a protein?

Proteins are organic compounds composed of amino acids arranged in a linear sequence and held together by peptide bonds between adjacent amino acids, which are commonly referred to as polypeptide chains.

Some proteins are composed of a single polypeptide chain, while others are composed of numerous polypeptide chains that have been combined.

A protein is a chain of amino acids linked together by peptide bonds.

There are 20 different amino acids that can be combined to form a protein chain, each with its unique side chain or "R" group.

The "R" group's chemistry determines the amino acid's chemical characteristics, including whether it is hydrophobic or hydrophilic.

The chain of amino acids that forms the protein can fold up on itself in various ways, resulting in a

three-dimensional structure that determines the protein's function.

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What is the volume of 6.9 mol of oxygen at 233 K and a pressure of 4.0 atm

Answers

The volume of 6.9 mol of oxygen at 233 K and a pressure of 4.0 atm is approximately 12.0L.

To calculate volume of a gas, we can make use of Ideal Gas Law equation. It is a fundamental equation in thermodynamics that describes the behaviour of an ideal gas under certain circumstances. It relates pressure(P), volume(V), number of moles (n), and temperature(T) of an ideal gas using the equation:

PV = nRT

Where P = Pressure of the gas,

           V = Volume of the gas,

           n = Number of moles of the gas,

           R = Ideal gas constant commonly expressed as 0.0821  L·atm/(mol·K) or 8.314 J/(mol·K),

          T = Temperature of the gas.

In the question, we are given with:

n = 6.9 mol

T = 233 k

P = 4.0 atm

Substituting the above values in the equation to find the volume, we get:

4.0 * V = 6.9 * 0.0821 * 233

V = (6.9 * 0.0821 * 233) / 4.0

V = 11.9997 (approximately 12.0)

Therefore, The volume of 6.9 mol of oxygen at 233 K and a pressure of 4.0 atm is approximately 12.0L.

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Which of the following is not usually evidence of a chemical change?
a. a color change
b. a temperature decrease
c. a new smell
d. a change in appearance only

Answers

d. A change in appearance only.

The answer to the question "Which of the following is not usually evidence of a chemical change?" is

d. A change in appearance only.

What is a chemical change?

A chemical change, also known as a chemical reaction, is a process that results in the formation of new substances.

This means that the original substances have undergone a chemical transformation and become something else.

What are the evidences of a chemical change?

The following are examples of chemical changes:

Color change, temperature change, and production of a new odor.

A change in the pH of the substance.

The formation of a solid that was previously dissolved in a solution.

Bubbles are formed in the solution.

bb c daxws

A substance that was once able to burn is no longer flammable.

The formation of light is a phenomenon that is observed.

A sound is emitted from the substance that is being transformed.

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identify a substance that is not in its standard state

Answers

The substance that is NOT in its standard state among the options provided is e. H (hydrogen).

What is a Substance that is not in its Standard State?

Among the given options, hydrogen (H) is the substance that is not in its standard state, as it typically exists as a diatomic molecule (H₂) rather than as individual hydrogen atoms.

In its standard state, hydrogen exists as a diatomic molecule, H₂. However, the option e. H suggests that hydrogen is not in its standard state and likely refers to atomic hydrogen (H), which exists as a highly reactive and unstable species. In its standard state, hydrogen is found as H₂, not as individual hydrogen atoms.

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Complete Question:

Identify a substance that is NOT in its standard state

a. Ca

b. H₂

c. Li

d. Ne

e. H

a current of 5.85 a is passed through a cr(no3)2 solution. how long, in hours, would this current have to be applied to plate out 6.50 g of chromium?

Answers

To plate out 7.10 g of chromium, this current will have to be applied for 2.21 hours.

Electroplating is a process in which a metal ion present in a solution is deposited on an electrode by the use of an electric current. The metal ion's positive charge is neutralized as it accepts electrons from the negatively charged cathode (the electrode to be plated). The anode (the electrode with the metal to be deposited) oxidizes and dissolves into the electrolyte solution, providing metal ions to replenish those deposited on the cathode.

The formula to calculate the time is given as;

Time = (Weight of metal)/(Current × 96500 × electrochemical equivalent weight).

Weight of chromium, w = 6.50 g

Current, I = 5.85 A

Electrochemical equivalent weight, E = 0.52

The formula to calculate the time is given as;

Time = (Weight of metal)/(Current × 96500 × electrochemical equivalent weight)Substituting the values;

Time = 6.50/(5.85 × 96500 × 0.52)Time = 2.21 hours.

Therefore, to plate out 6.50 g of chromium, this current will have to be applied for 2.21 hours.

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On p. 57, Klak states that "Sustainable Development has, in recent years, become a universally annunciated goal". Discuss what is meant by sustainable development, both culturally and environmentally, followed by a discussion of how that goal is threatened or enabled by various activities within the region such as an expanding export economy, tourism in its various forms (be sure you incorporate at least 3 forms of tourism in this discussion), and drug production (SEE CHAPTERS 10 AND 11). Lastly, do you feel that the gradual transition away from neoliberalism would improve or deter the region’s sustainability efforts? Why (be as specific as possible)?

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A nation's economic development without compromising the environment's quality for future generations is known as sustainable development. Tourism is an industry in which that addresses the needs of visitors, and the host communities and takes into account all its current and future economic, social, and environmental impacts.

Biodiversity conservation, not polluting, and treating workers and local communities with respect, the hospitality industry work with go hand in hand with the environment and be aware of its social and economic impact. Neoliberalism has been connected to the privatization of state-claimed, or normal property assets like backwoods, water, and biodiversity; environmental services in public expenditures for environmental management and deregulation contributing to sustainable development.

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a car factory is testing whether 25 hybrid electric cars (m=76) get more miles compared to non-hybrid cars (μ = 65, σ =24). 4a) should we use a one tail or two tail test?

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A one-tail test should be used to determine if hybrid electric cars get more miles compared to non-hybrid cars.

In a one-tail test, we have a specific directional hypothesis that the hybrid electric cars will get more miles compared to non-hybrid cars. By using a one-tail test, we focus on the upper tail of the distribution and test if the sample mean of the hybrid cars is significantly greater than the population mean of the non-hybrid cars. This allows us to assess if there is evidence to support the claim that hybrid cars have a higher average mileage.

Using a one-tail test is appropriate when we have a specific direction in mind and want to determine if the observed data supports that direction. In this case, the aim is to determine if hybrid electric cars perform better than non-hybrid cars in terms of mileage.

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how to tell if work is done on or by the system chemistry

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In chemistry, determining whether work is done on or by the system can be determined by considering the sign convention used for work in thermodynamics.

Work Done on the System:If work is done on the system, it is considered to have a positive sign convention.This typically occurs when external forces or pressure exerted on the system compresses it, reducing its volume.Examples include compressing a gas, applying pressure to a piston, or decreasing the volume of a container holding the system.

2. Work Done by the System:

If work is done by the system, it is considered to have a negative sign convention.This generally occurs when the system expands or does work on its surroundings, increasing its volume.Examples include a gas expanding against external pressure, a reaction generating gas that pushes a piston, or a system doing mechanical work.

To determine the sign of work, you need to consider the perspective of the system. If the system is being compressed by external forces or pressure, work is done on the system and is considered positive.

Conversely, if the system is expanding and doing work on the surroundings, work is done by the system and is considered negative. It's essential to understand the context of the system and its interactions to determine the correct sign convention for work.

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rank the following fatty acids from highest melting point to lowest melting point:

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The ranking of the melting points of the given fatty acids from highest to lowest is 1) Stearic acid 2) Palmitic acid 3) Trans-oleic acid 4) Cis-oleic acid and 5) Linoleic acid.

Stearic acid has the highest melting point among the given fatty acids because it is a saturated fatty acid with a straight carbon chain and no double bonds. The absence of double bonds allows for closer packing of the molecules, resulting in stronger intermolecular forces and a higher melting point.

Palmitic acid comes next, also being a saturated fatty acid. While it has a slightly shorter carbon chain than stearic acid, it still lacks double bonds and therefore exhibits higher intermolecular forces.

Trans-oleic acid has a lower melting point than the previous two because it is a monounsaturated fatty acid with one double bond. The presence of the double bond introduces a kink in the carbon chain, reducing the ability of the molecules to pack tightly, resulting in weaker intermolecular forces and a lower melting point compared to saturated fatty acids.

Cis-oleic acid follows trans-oleic acid in the ranking. It is also a monounsaturated fatty acid with a double bond but in the cis configuration. The cis configuration introduces more kinks in the carbon chain compared to the trans configuration, further reducing the ability of the molecules to pack closely. This leads to a lower melting point than trans-oleic acid.

Linoleic acid has the lowest melting point among the given fatty acids because it is a polyunsaturated fatty acid with multiple double bonds. The presence of multiple double bonds introduces even more kinks in the carbon chain, preventing the molecules from packing tightly. Consequently, linoleic acid exhibits the weakest intermolecular forces and the lowest melting point.

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The complete question is:

Rank the melting points of the following fatty acids from highest to lowest:

1) cis-olic

2) trans-oleic

3) linoleic

4) stearic

5) palmitic

what is the mass percent composition of calcium in calcium sulfate, caso4?

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The mass percent of calcium in calcium sulfate, CaSO₄, is 29.44%.

Calcium sulfate is a compound in chemistry with molecular formula as CaSO₄. Calcium is the most important element that is found in calcium sulfate, which makes it an important compound because of the various properties and wide usage. The mass % composition of calcium in calcium sulfate, CaSO₄, is given below.

Calcium sulfate which is called CaSO₄ has a molecular weight of 136.14 g/mol.

Calcium has molar mass of 40.08 g/mol.

Mass percent composition-

The mass percent composition is the % by mass of each element in a compound in chemistry. The mass % of an element in a compound is calculated by dividing the mass of that element by the total mass of the compound and multiplying the complete term by 100%.

Therefore, the mass percent of calcium element in calcium sulfate compund is:

(40.08 g/mol / 136.14 g/mol) × 100% = 29.44%

Therefore, the mass percentage of the calcium element in the calcium sulfate compound, CaSO₄, is 29.44%.

This means about 29.44% of the total mass of calcium sulfate compound is made up of calcium element only.

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what happens when solid sodium chloride is mixed with water

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When solid sodium chloride is mixed with water, it dissolves and forms a solution. Sodium chloride, also known as table salt, is an ionic compound that consists of positively charged sodium ions and negatively charged chloride ions.

When it is added to water, the water molecules surround each ion, separating them from each other and dissolving them. The ions become hydrated as they are surrounded by water molecules. The dissolution of sodium chloride in water is an exothermic process, meaning it releases heat. This is because when the ions are separated from each other, they release energy that was previously holding them together. The resulting solution is a clear, colorless liquid that conducts electricity due to the presence of ions.

Overall, the solid sodium chloride is transformed into a solution when mixed with water.

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the action of hydrochloric acid in the stomach on protein results in ________ .

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The action of hydrochloric acid in the stomach on protein results in denaturation.

The action of hydrochloric acid (HCl) in the stomach on protein results in denaturation. Hydrochloric acid in the stomach helps break down food by dissolving nutrients and killing bacteria. It is mainly responsible for the conversion of pepsinogen to pepsin which is responsible for the breakdown of proteins.

In the presence of HCl, the protein in food is denatured. HCl is important for the digestive process as it creates an acidic environment that is necessary for the activation of digestive enzymes. Denaturation is a process by which the structure of a protein is altered due to exposure to certain external factors like heat, acid, and alcohol.

Denaturation results in a loss of protein function as the protein loses its three-dimensional shape. Denaturation is an irreversible process that affects the protein structure and function and cannot be reversed. Hence, the action of hydrochloric acid in the stomach on protein results in denaturation. 

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