Take the element krypton. How might you expect its wavelength to change if it goes from traveling through Earth’s atmosphere to traveling through water in the ocean?

Answers

Answer 1

Light moves from a rare to a denser medium at a slower speed and shorter wavelength. As a result, when light enters water from the air, its wavelength is less in water than in air but its frequency remains the same.

What is the wavelength?

The distance between two identical points (adjacent crests) in consecutive cycles of a waveform signal as it moves through space or over a wire is known as its wavelength.

In wireless systems, what do wavelength and frequency mean?

The distance between two wave crests determines the wavelength, but a wave's trough has a constant wavelength. The term "frequency" refers to the number of vibrations that pass over a specific location in a second and is represented in cycles per second (Hz) (Hertz). We discuss how wavelength and frequency are related.

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Related Questions

Which of the following salts, when added to water, will result in a solution with pH = 7.00?(a.) Ca (NO2)2(b.) NaNO3(c.) FeCl3(d.) NH4NO3

Answers

NH4NO3. The pH of a solution is determined by the concentration of hydrogen ions (H+) present in it.

What is concentration?

Concentration, also known as “mental focus”, is the act of focusing one’s thoughts and energies on a specific task or activity. It is a key element of successful learning and is an important skill in all areas of life. Concentration is the ability to filter out unimportant or irrelevant information, maintain focus on the task at hand, and block out distractions. With strong concentration skills, individuals can more easily process and retain information, solve problems, and make decisions.

NH4NO3 is a salt that can release protons (H+) into solution, which will then be neutralized by hydroxide ions (OH-). Therefore, when NH4NO3 is added to water, a solution with pH = 7.00 will be formed.

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a sample of gas at a constant temperature has an initial pressure reading of 2.00 atm with a volume of 175.0 ml. after a change in pressure, the final volume reading is 550.0 ml. calculate the final pressure.

Answers

The final pressure of the gas is 0.63 atm  which has an initial pressure reading of 2.00 atm with a volume of 175.0 ml.

Given data in the question is:

Initial pressure- 2.00 atm

Initial volume-  175 ml

Final volume- 550 ml

The final pressure is supposed to be calculated,

As per the equation of the Boyle's law that we know:

P1V1=P2V2

Substituting the given data in the equation above:

(2)(175)=P2(550)

P2=(2)(175)/550

P2=0.6363 atm

Boyle's law states " The pressure of gas is inversely proportional to the volume occupied by the gas when the temperature(in kelvins) is held constant ".

The final pressure of the gas is 0.63 atm.

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Predict the immediate effect of the following changes on the observed cell voltage, E.H2(g) + PbCl2(s) <–> Pb(s) + 2HCl (aq)Delta H standard rxn > 0Matcha) Dissolve NaOH into solutionb) Increase the temperaturec) Increase the amount of PbCl2d) Dilute the solution by adding H2Oi) Increased Eii) Decreased Eiii) No change in E

Answers

A) No change in E. Adding NaOH does not affect the cell voltage as it does not change the concentrations of the reactants or products.

What is cell voltage?

Cell voltage is the electrical potential difference between two points in a cell. It is the amount of energy needed to move a unit charge from one point to the other. It is measured in volts (V). Cell voltage is an important parameter for battery efficiency, because it affects the amount of current that can be drawn from the battery, as well as its capacity. Cell voltage is determined by the chemical reaction taking place inside the cell, as well as the design of the cell and its components.

b) Increased E. Increasing the temperature increases the rate of the reaction, which causes the cell voltage to increase.
c) Increased E. Increasing the amount of PbCl2 increases the rate of the reaction, which causes the cell voltage to increase.
d) Decreased E. Diluting the solution by adding H2O decreases the concentrations of the reactants and products, which slows down the reaction rate and decreases the cell voltage.

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what do we call the type of chemical reaction that occurs in this step? explain how the name of this type of reaction relates to a key resource other than food.

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The chemical reaction is called hydrolysis, which is a type of catabolic reaction. "Hydro-" means that water is used and "-lysis" means to break down. Thus, hydrolysis is a process that uses water as a resource to break down ATP into ADP and phosphate..

Definition of Chemical Reaction

A chemical reaction is a process in which one or more substances are changed into one or a different substance and produce new products. Substance is a chemical element or compound. Chemical reactions rearrange reactant atoms to make different substances.

Because of the many chemical reactions that occur around us, a form of chemical equation is created to make it easier for humans to express chemical reactions. A chemical equation is a mathematical statement that represents the formation of products from the reactants and also states the specific conditions under which the reaction occurs.

The reactants are on the left side, while the products formed are on the right side and are connected by arrows. For example, A+B➡️C+D

From the equation above, you can see that A and B are reactants that react and form products C and D. In actual chemical equations, reactants are denoted by their chemical formulas. Based on the conservation of mass, the chemical equation must be balanced, that is, the number of atoms on both sides must be the same.

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Complete this Bronsted-Lowry reaction, placing each product by its appropriate label. HPO^2-_4 + BrO^-

Answers

Count the hydrogens on each component before and after the reaction to determine if it is an acid or a basic. Acid is the material whose hydrogen content has reduced.

What in chemistry is Brnsted-Lowry?

A Brnsted-Lowry base must have at least one lone pair of electrons in order to absorb a proton and create a new connection with it. A proton is transferred from an acid to a base in an acid-base reaction, according to the Brnsted-Lowry definition.

What distinguishes Lewis acid base from Bronsted-Lowry?

A Bronsted-Lowry base is a chemical that can take a hydrogen ion, whereas a Bronsted-Lowry acid can donate one. Lewis bases

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what is the mole fraction of oxygen in a gas mixture that is 37% oxygen and 63% nitrogen by volume?
a. 0.25
b. 0.37
c. 0.34
d. 0.52

Answers

In the gas mixture, oxygen makes up 0.37 moles. The ratio of molecules of one component in a mixture is known as a mole fraction.

In order to get the mole fraction of oxygen, divide the percentage by volume of oxygen by the percentage by volume of the gas mixture.

oxygen volume as a percentage = 37%, or 0.37.

37% oxygen and 63% nitrogen, expressed as a percentage of the total volume of the gas, = 1.

37% + 67% = 100% = 1

We know that the formula of mole fraction is taken as:

Mole fraction of solute = Number of Moles of Solute / Total number of moles of both the solutes and the solvent.

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which structural feature must a compound possess in order to be classified as an allylic carbocation?

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C=C double bond adjacent to a carbocation is structural feature must a compound possess in order to be classified as an allylic carbocation.

Allylic Carbon Meaning

The double bond carbon atoms can be classified as vinylic and allylic carbon atoms. The general formula for a vinyl group is R-CH = CH 2 where both carbon atoms are bonded with a double bond and the R is attached in the vinylic position.

Because the two carbon atoms form a double covalent bond, they are sp 2 hybridized. The allylic position is also like the vinylic position. The allylic carbon is bonded to a carbon atom that is double bonded to another carbon atom.

Allylic Carbon Atom

The allylic carbon atom is an sp 3 hybridized carbon atom in the RCH 2 -CH=CH 2 allylic group bonded to the -CH=CH 2 group.

For example in propene, the highlighted carbon atom is an allylic carbon atom (CH 3 -CH=CH 2 ). Similarly, in cyclohexene, the carbon atom next to the double bond is an allylic carbon atom.

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The major chemical structures of hormones include____ l a. polysaccharides, esters, and steroids. b. 2 points only molecules containing amine groups. c. steroids, amino acid derivatives, and esters. d. steroids, polypeptides, and anino acid derivatives. e. only steroids.

Answers

The major chemical structures of hormones include c. steroids, amino acid derivatives, and esters.

Steroids are a class of lipids that are characterized by a specific arrangement of four fused carbon rings. They include hormones such as estrogen, testosterone, and progesterone. Amino acid derivatives are hormones that are derived from amino acids, such as thyroxine, which is derived from the amino acid tyrosine.Esters are compounds formed from the reaction between an alcohol and a carboxylic acid, such as adrenaline, which is a catecholamine ester. Polysaccharides, polypeptides, and anino acid derivatives, are not the major chemical structures of hormones, although some hormones may have these as part of their structure.

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Determine the electron geometry (eg) and molecular geometry (mg) of CO2−3

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The electron geometry (eg) of CO2-3 is trigonal planar. This is because the carbon atom has three other atoms bonded to it (two oxygen atoms and one negative charge), and the bonds of these three atoms form a triangle.

What is trigonal planar?

Trigonal planar is a molecular geometry that is characterized by three atoms or groups of atoms that are all in the same plane and all bond angles are equal to 120 degrees.

The molecular geometry (mg) of CO2-3 is linear. This is because the three atoms are arranged in a straight line, with the negative charge located in the middle. The linear shape of the molecule is due to the repulsion of the negative charge between the two oxygen atoms, pushing them away from each other.

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sort the following chromium compounds by whether the cation is chromium(ii) or chromium(iii). Drag each item to the appropriate bin. View Available Hint(s) Reset Help Cris CrBry Cro CIN Cross CrsP Chromium(II) Chromium(111)

Answers

The order of chromium compounds based on their cations:

CrI₃ - Cr is + 3 (III)CrBr₂ - Cr is + 2(II)CrO = Cr is + 2(II)CrN - Cr is +3 (II)Cr₂S₃ - Cr is + 3 (III)Cr₃P₂ - Cr is +2  (II)

Cations are ions that have a positive charge due to the retention of electrons to achieve a level of stability according to the duplet and octet rules. An anion is an ion that has a negative charge due to the binding or acceptance of electrons to achieve a level of stability according to the duplet and octet rules.

When viewed from the atoms/elements that compose them, Anions and Cations can be divided into 2, namely:

Monoatomic Anions and Cations, namely ions formed from only one element, for example, Ka+ cations or Cl- anions.Polyatomic Anions and Cations, namely ions formed from several elements or atoms. For example, SO42- anion or NH4+ cation

Chromium (3+) is a monoatomic trication and chromium cation.

Chromium (2+) is a monoatomic cation, a chromium cation, and a divalent metal cation.

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Which of the following geometries for the complex ion [Co(en)(H2O)4]2+ are possible?
Check all that apply
a. trigonal bipyramidal or square pyramidal
b. octahedral
c. linear
d. tetrahedral or square planar
e. trigonal planar

Answers

One of the probable morphologies for said complex ion [Co(en)(H2O)4]2+ is octahedral.

What are some instances of complicated ions?

An ion that has one maybe more ligands connected to a core metal through a single bond connection is referred to as a complex ion. A ligand is a substance that may use its single electron pair to establish a dative covalent connection with a transition metal.

What is a complex ion made of?

Lewis acid-base interaction causes a metal ion a ligand to combine to produce a complex ion. The ligand, which has one or more lone pairs, functions as a Lewis base, whereas the positively charged ion functions as a Lewis acid.

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What does baking soda have that citric acid doesn't to make bubbles?

Answers

Answer:

First lets write down the chemical formula

baking soda:

NaHCO₃
citric acid:

CH3COOH

Lets write the base ionization reaction for NaHCO3

NaHCO3 + H2O -> NaOH + CO2+ H2O

With this equations down, we can clearly see that baking soda produce carbon dioxide gas since H2CO3 dissolves into CO2+ H2O. The required part is HCO3-, where that does not apply to citric acid

limestone contains the ionic compound calcium carbonate (caco3), which reacts with hcl to form the ionic compound calcium chloride, water, and carbon dioxide. (caco3 has a molar mass of 100 grams/mol) (calcium ion is ca 2 , chloride is cl-) a). write the balanced equation. (what is the new ionic compound?

Answers

The following chemical reaction occurs when hydrochloric acid and calcium carbonate come into contact: CaCO3 + 2HCl → CaCl + CO2 + H2O, providing acid neutralization as well as byproduct production. Carbon dioxide is the new ionic component as a result.

What is the use of calcium carbonate?

Whenever the levels of calcium consumed through food alone is insufficient, calcium carbonate is used as a dietary supplement. The body needs calcium for strong bones, muscles, a healthy neurological system, and a healthy heart. In addition to being an antacid, calcium carbonate is used to treat stomach discomfort, heartburn, and acid indigestion.

What is calcium carbonate made of?

The chemical compound calcium carbonate, with the formula CaCO3, is created when carbon, oxygen, & calcium come together. It is a common mineral found in rocks all over the world, most notably as limestone, and it is the main component of marine animal shells, snail shells, coal balls, pearls, or eggshells.

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Determine the force in members CD, HI, and CH of the following truss using the method of sections and state if the members are in tension or compression. Also, determine the force in members GF and Ef using the method of joints and state if the members are in tension or compression.

Answers

The force in members HI will be in tension, CD will be zero force member, CH will be in compression GF will be in tension and EF will be in compression.

What is the definition of force?

In mechanics, a force is any action that has the potential to change, maintain, or distort a body's motion.

Applying equilibrium equations,

∑v = 0

[tex]V_{A}[/tex] + [tex]V_{K}[/tex] = 1500 + 1500 + 1500+ 1500+ 1500

[tex]V_{A}[/tex] + [tex]V_{K}[/tex] = 7500lb

∑m = 0 taking the moment about joint K

[tex]H_{A}[/tex] × 4 = 1500×3 + 1500×6 + 1500×9 + 1500×12 + 1500×15

4[tex]H_{A}[/tex] =  4500lb + 9000lb + 13500lb + 18000lb+ 22500lb

4[tex]H_{A}[/tex] = 67500lb

[tex]H_{A}[/tex] = 67500/4

∑H = 0

[tex]H_{A}[/tex] +[tex]H_{K}[/tex] = 0

[tex]H_{K}[/tex] = -67500/4 = -16876lb

Taking the moment of joint F

[tex]V_{A}[/tex] ×15 + [tex]V_{K}[/tex]×15 + [tex]H_{K}[/tex]×15

-1500×12 -1500×9 -1500×6-1500×3 = 0

15 ([tex]V_{A}[/tex]+[tex]V_{K}[/tex]) + 4 [tex]H_{K}[/tex] = 1500×30

15 ([tex]V_{A}[/tex]+[tex]V_{K}[/tex]) + 4(-16876) = 1500×30

([tex]V_{A}[/tex]+[tex]V_{K}[/tex]) = 7500lb

∑v = 0

[tex]F_{CH}[/tex] Sinθ  + 7500 = 0

[tex]F_{CH}[/tex] = -9375lb

[tex]F_{CD}[/tex] + [tex]F_{HI}[/tex] + [tex]F_{CH}[/tex] ×3/5 = 0

[tex]F_{CD}[/tex] + [tex]F_{HI}[/tex] - 9375×3/5 = 0

[tex]F_{CD}[/tex] + [tex]F_{HI}[/tex] = 5625lb

Taking the moment of joint A,

-16875×4 + [tex]F_{HI}[/tex]×4 - [tex]F_{CH}[/tex] Sinθ  + 6H = 0

([tex]F_{HI}[/tex] - 16875) ×4 = -9375 ×6×4/5

[tex]F_{HI}[/tex] = 5625lb

[tex]F_{CD}[/tex] = 0lb

member HI will be in tension

CD will be zero force member

CH will be in compression

[tex]F_{GF}[/tex] Sinθ = 1500

[tex]F_{GF}[/tex] = 1500/Sinθ = 1500/4×5

[tex]F_{GF}[/tex] = 1875lb

[tex]F_{EF}[/tex] + [tex]F_{GF}[/tex] Cosθ = 0

[tex]F_{EF}[/tex] = -  [tex]F_{GF}[/tex] Cosθ

[tex]F_{EF}[/tex] = - 1875×3/5

[tex]F_{EF}[/tex] = - 1125lb

GF will be in tension and EF will be in compression.

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Complete question is attached below.

In an experiment, 2.0 moles of oxygen atoms reacts with 80.1 g of calcium to form a new compound. What is the percent composition by mass of each element in the new compound?

Answers

Explanation:

The balanced equation for the reaction is:

2 O + Ca → Compound

From the information given, we know that 2.0 moles of oxygen atoms reacts with 80.1 g of calcium. To find the percent composition by mass of each element in the new compound, we first need to determine the molar mass of the compound.

The molar mass of the compound can be calculated by adding up the molar masses of oxygen and calcium.

Molar mass of O = 2 x (16.00 g/mol) = 32.00 g/mol

Molar mass of Ca = 40.08 g/mol

Molar mass of Compound = 32.00 g/mol + 40.08 g/mol = 72.08 g/mol

Now we can use this information to find the percent composition by mass of each element in the compound.

% mass of O = (moles of O x molar mass of O) / molar mass of Compound x 100

% mass of O = (2.0 moles x 32.00 g/mol) / 72.08 g/mol x 100 = 44.68%

% mass of Ca = (moles of Ca x molar mass of Ca) / molar mass of Compound x 100

% mass of Ca = (80.1 g / 40.08 g/mol) / 72.08 g/mol x 100 = 55.32%

So, the percent composition by mass of oxygen in the new compound is 44.68% and the percent composition by mass of calcium in the new compound is 55.32%

a piece of titanium metal with a mass of 20.8g is heated in boiling water to 99.5 o c and then dropped into a coffee cup calorimeter containing 75.0g of water at 21.7 o c. when thermal equilibrium is reached, the final temperature is 24.3 o c. calculate the specific heat of titanium.

Answers

The the specific heat of titanium is 0.524 J g-1 °C-1.

What is specific heat, exactly?

The amount of heat required to increase the temperature of 1 gram of a substance by 1 degree Celsius (°C) is known as specific heat. Since water has a higher specific heat than other substances, it requires more energy to raise its temperature.

q = m × C × ΔT

q = m × C × (T_f - T_i),

where:

q = amount of heat energy gained or lost by substance

m = mass of sample

C = specific heat capacity (J g-1 °C-1)

T_f = final temperature

T_i = initial temperature

The specific heat capacity of water is 4.20 J g-1 °C-1

2) Therefore:

q_lost by titanium = (20.8 g) × C_titanium × (24.3 - 99.5)°C

q_lost by titanium = -1564.16 × C_titanium

q_gained by water = (75.0 g) × (4.20 J g-1 °C-1) × (24.3 - 21.7)°C

q_gained by water = 819

-q_lost by titanium = q_gained by water

-(-1564.16 × C_titanium) = 819

C_titanium = (819) / (1564.16) = 0.5236 = 0.524

C_titanium = 0.524 J g-1 °C-1

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Draw the structure of 4-isopropyl-2,4,5-trimethylheptane and identify the primary, secondary, and tertiary hydrogens.

Answers

The primary, secondary, and tertiary hydrogens should be indicated on a diagram of the structure of 4-isopropyl-2,4,5-trimethylheptane. Hydrocarbons: Organics include hydrocarbons.

Which statement regarding the structure of 4 benzyl 2 4 5-trimethylheptane is true?

Response and Justification: 4-Isopropyl-2,4,5-Trimethylheptane is the supplied substance. Heptane, a chain with seven carbons, is its parent chain. The methyl group, CH3, is bound each of the heptane's second, fourth, and fifth carbons, as implied by the term 2,4,5-trimethyl.

In chemistry, what does skeletal structure mean?

The succession of atoms joined together to produce the compound's fundamental structure is known as the skeletal system of an organic complex. Chains of bound atoms, branches, and/or rings can make up the skeleton.

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calculate the grams of ethane present in a sample containing 0.1066 moles if the molar mass of ethane is 30.067 g/mol.

Answers

The grams of ethane present in the sample is approximately,

m = 3.2051 unit.

The number of atoms, molecules, and ions that make up a material is measured in moles. Any atom has 6.022 x 1023 molecules in a mole. We use the mole to quantitatively determine the size of the tiniest entities, much as we use a standard value to compute various things, such as 1 dozen Equals 12 items.

So now,
Number of moles = mass of substance / Molar mass of the substance.
n=m/M
0.1066 = m / 30.067
Multiply both sides by 30.067.

0.1066 x 30.067 = ( m / 30.067 ) x 30.067.

m = 3.2051 unit.

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what is the mass (in kg) of 6.89 × 1025 molecules of co2? the molar mass of co2 is 44.01 g/mol. (Show work on scratch paper) o 5.04 kg o 6.39 kg o 3.85 kg o 3.03 kg o 2.60 kg

Answers

The mass of the molecule of CO₂ is 5.04 kg

Avogadro's number represents the number of units in one mole of any substance. This has the value of 6.022 x 10²³units / mole.

It is used to make very large number easier to handle.

Firstly we will calculate the moles of CO₂

As, 6.022 x 10²³ molecules of  CO₂ is present in 1 mole of CO₂

So, 6.89 × 10²⁵  molecules of CO₂ present in  mole of  CO₂will be found as

6.89 × 10²⁵/6.022 x 10²³ = 114.4 moles of CO₂

Now we have to calculate the mass of  CO₂

mass = moles × molar mass

mass =114.4 moles× 44.01 g/mol

mass = 5.034 Kg

So it will be nearly equal to 5.04kg

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there is 5% (vol/vol) ethanol (c2h5oh) molecules found in a 12-oz (356 ml) bottle of budweiser beer? density of ethanol is 789 kg m-3. how many hydrogen atoms are found in that same bottle of beer?

Answers

The same bottle of beer contains  1.09 x 10²⁴  hydrogen atom

The hydrogen atom in the bottle of beer can be calculate as follows:

First we should find the moles of the ethanol

We know that moles = mas / mass molar, but the question give us the density of the ethanol

We also knew that density = mass/ volume

To find the mass of ethanol we should calculate the volume first

Volume of ethanol = 5% = 0.05

Volume of ethanol = 0.05 × 356= 17.8 mL

Density of ethanol =  mass/ volume

mass of ethanol = Density x volume

mass of ethanol =  0.789 g/ mL x 17.8 mL = 13. 884 g

Molecular weight of ethanol (C 2H 5OH)=2×12+5+16+1=46 g/ mol

so 46 g C 2H5OH has 6g H

​∴13. 884 g C2H5OH = 6 x 13.884 g x 6.02 x 10 ²³= 1.09 x 10²⁴ H atom

                                                     46

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using formal charges, which of these three resonance forms is likely to be the most important?

Answers

The correct option according to the formal charge is (B) , among the resonance structures of N₂O.

Dinitrogen monooxide: what are they?

N2O, or dinitrogen monooxide, has three resonance configurations, two of which contribute significantly to the resonance. There are a total of 18 valence electrons in the N2O molecule: 6 from the nitrogen atom and 6 from each oxygen atom. All three resonance configurations exhibit atoms with complete octets and account for the 18 valence electrons. The same number of covalent bonds—2 sigma bonds and 2 pi bonds—are present in all three configurations. The location of the negative charge will tip the balance in favour of the structure on the upper right when comparing it to the structure in the upper left. The negative charge will be because oxygen is more electronegative than nitrogen.

What do dinitrogen monoxide resonance structures entail?

Due to its larger separation of charge than the other two, the bottom structure will have a modest impact. The more electronegative oxygen atom is given a positive charge, and a nitrogen atom is given an extremely unstable (-2) formal charge. As a general rule, formal charges greater than (-1) or (+1) automatically suggest that the resonance structure is a modest factor. Dinitrogen monoxide can thus be represented by three resonance structures, with one major and two minor contributors.

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The complete question is as follows :

Calculate the equilibrium constant for the reaction, at 25°CCu(s) + 2Ag+ (aq) → Cu+2 (aq) + 2Ag (s)at 25oC, Eocell = 0.47 V, R = 8.134 JK−1 F = 96500 C is

Answers

The equilibrium constant for the reaction is 8.5* 10^15.

What does chemical equilibrium mean?

Chemical equilibrium is characterized as an active condition in which the concentration of each reactant remains constant. While they might not be equal, they are not altering. A double arrow in a chemical process denotes an equilibrium state. Products are on the right while reactants are to the left.

What are equilibrium and an example?

The Latin term libra, which meaning weight or balance, is the origin of the word equilibrium. Several instances of equilibrium include: a book that is open and at rest. a vehicle that is going steadily. a chemical process where both the forward and backward rates of reaction are equal.

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Two students investigated the electrolysis of copper sulfate solution. When copper sulfate solution is electrolysed, copper is produced at the negative electrode What substance is produced at the positive electrode when copper sulfate solution is electrolysed

Answers

Oxygen gas is produced at the positive electrode of the solution.

What is produced?

We know that the term electrolysis has to do with the process by which we can be able to cause the splitting of a compound that is ionic when we pass a direct current through the solution of the compound.

Now we know that at the negative electrode, we are going to have the copper metal that is discharged but at the positive electrode, we are going to have the discharge of oxygen gas. This is because it is higher in the series than sulfate ions.

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the fuel used in many disposable lighters is liquid butane, c4h10. butane has a molecular weight of 58.1 g/mol. how many carbon atoms are in 3.50 g of butane?

Answers

The total number of carbon atoms in 3.50g of butane is 0.24 mol.

Liquid butane (C4H10) is a commonly used fuel in disposable lighters. Butane has a molecular weight of 58.1g/mol, which means that for every 1 mol of butane, there are 58.1 grams.

To calculate the number of carbon atoms in 3.50 grams of butane, we can use the following equation: Amount (mol) = Mass (g) / Molecular Weight (g/mol).

In this case, 3.50g / 58.1g/mol = 0.060 mol of butane. Since each molecule of butane contains 4 carbon atoms, the total number of carbon atoms in 3.50g of butane is 0.060 x 4 = 0.24 mol of carbon atoms.

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Petunia needs 68.39 grams of potassium hydroxide (KOH) to run a reaction in class. How many moles of potassium hydroxide does she need?

Answers

The number of moles of potassium hydroxide needed by Petunia would be 1.22 moles.

Determination of moles from masses

The number of moles present in a given mass of a substance is the ratio of the mass of the substance and the molar mass of the substance. This can be mathematically expressed as:

Mole = mass/molar mass

In this case, we want to know the mole equivalent of 68.39 grams of potassium hydroxide (KOH) that Petunia needs. First, we need to determine the molar mass of KOH from the molar weights of its component atoms.

Molar weight of K = 39

Molar weight of O = 16

Molar weight of H = 1

Molar mass of KOH = 39+16+1 = 56 g/mol

Number of moles present in 68.39 grams of KOH = 68.39/56 = 1.22 moles.

In other words, the number of moles of potassium hydroxide that Petunia needs is 1.22 moles.

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Which statement describes mechanical energy?
A.the energy that is stored in chemical bonds

B.the energy that is associated with temperature

C.the sum of the kinetic energy and the potential energy of an object

D.the type of energy that is associated with electromagnetic radiation

Answers

Answer:

C.the sum of the kinetic energy and the potential energy of an object

Explanation:

This question can be viewed from two angles.

What is mechanical energy?

Mechanical energy is defined as the energy of an object in motion or the energy that is stored in objects according to their position.

Mechanical energy can also be defined algebraically as:

[tex]Energy_{Mechanical} = U + K[/tex]

Where U is the potential energy. Where K is the kinetic energy.Answer BreakdownChoice C is the best answer because it covers both the equation for mechanical energy and the scientific definition. Kinetic energy is the energy of an object in motion while potential energy is the energy of a stationary object. When these energies are summed we can find the mechanical energy.Choice B is incorrect. The Energy associated with temperature is thermal energy. This energy can be endothermic or exothermic.Choice D is incorrect. The energy that is associated with electromagnetic radiation is based on the EM spectrum. Choice A is incorrect. The energy that is stored in chemical bonds is a type of potential energy but it is not mechanical. These bonds can be ionic, covalent, or metallic.

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Activity 2: My Characteristics
Directions: After exploring the amazing asteroids, comets, and meteors, test yourself if you
can compare and differentiate the three: comets, meteors, and asteroids. Below are some
characteristics of comets, meteors, and asteroids (1-15).
Choose from the following (A-G), and write the letters before each characteristic in your
activity notebook.
A. if it refers to comets
B. if it refers to meteors
C. if it refers to asteroids
D. both comets and meteors
E. if it refers to both meteors and asteroids
F. if it refers to both asteroids and comets
G. if it refers to all (comets, meteors, and asteroid)
Characteristics:
1. Progress across the sky very slowly
2. Known as falling stars or shooting stars
3. Remnants of the formation of the solar system
4. They glow as they enter the earth's atmosphere
5. Reflect sunlight
6. Rocky composition
7. Orbit the sun in highly elliptical orbits s
8. Minor planets
9. Mostly found between Mars and Jupiter
10. Can reach 150 million km in length
11. Most have slightly elliptical orbits
12. The result from the collision of asteroids
13. Streak across the sky very fast
14. Come in all sizes and shapes
15. Icy object

Answers

Answers:

ABGBFEACCAGEBGA

Explanation:

Progress across the sky very slowly - This characteristic refers to cometsKnown as falling stars or shooting stars - This characteristic refers to meteorsRemnants of the formation of the solar system - This characteristic refers to all (comets, meteors, and asteroid)They glow as they enter the earth's atmosphere - This characteristic refers to meteorsReflect sunlight - This characteristic refers to both asteroids and cometsRocky composition - This characteristic refers to both meteors and asteroidsOrbit the sun in highly elliptical orbits - This characteristic refers to cometsMinor planets - This characteristic refers to asteroidsMostly found between Mars and Jupiter - This characteristic refers to asteroidsCan reach 150 million km in length - This characteristic refers to cometsMost have slightly elliptical orbits - This characteristic refers to all (comets, meteors, and asteroid)The result from the collision of asteroids - This characteristic refers to both meteors and asteroidsStreak across the sky very fast - This characteristic refers to meteorsCome in all sizes and shapes - This characteristic refers to all (comets, meteors, and asteroid)Icy object - This characteristic refers to comets

how do different molecules exert different force of attraction on each other resulting in different solubilities within different solvents

Answers

Chemists use the phrase, "like dissolves like" to describe how varying polarity causes molecules to interact with one another. Both polar and non-polar chemicals will dissolve in other polar and non-polar substances, respectively. Although compounds can have varying degrees of polarity, they are rarely completely polar or non-polar. Different molecules attract each other using different forces, which affects how well they dissolve in various solvents. It is feasible to separate mixtures into their individual components due to variations in solubility.

It is feasible to separate mixtures into their individual components due to variations in solubility. On the other hand, two phases will emerge if the solvent molecules have a significant attraction to one another but minimal affinity for the solute molecules. The well-known fact that oil and water do not mix, or if they do, do not mix for very long, is a typical illustration of the second scenario mentioned in the preceding sentence. Alkanes and other nonpolar molecules make up oil, but polar water molecules may create strong hydrogen bonds with one another.

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Hydrogen bonds form between H2O molecules, but not H2S, H2Se, or H2Te. This explains why:a) H2O is liquid at room temperature while the other compounds are gases.b) H2O is more volatile than the other compounds.c) H2O has the highest molecular weight of all four compounds.d) H2O has a more distinct aroma than the other compounds.

Answers

The main reason why hydrogen bonds form between H2O molecules and not between H2S, H2Se, or H2Te molecules is because of their different chemical structures.

H2O consists of two hydrogen atoms and one oxygen atom, while H2S, H2Se, and H2Te consist of two hydrogen atoms and one sulfur, selenium, and tellurium atom, respectively.

Because oxygen has a higher electronegativity than sulfur, selenium, and tellurium, it creates a stronger bond between the hydrogen and oxygen atoms, allowing for the formation of hydrogen bonds.

These bonds are what give H2O its distinct properties, such as its ability to exist as a liquid at room temperature, its volatility, and its higher molecular weight. Additionally, these hydrogen bonds give H2O its distinct aroma, which the other compounds lack.

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a 5.34 g sample of an aluminum alloy is reacted with hydrochloric acid to produce aluminum chloride and hydrogen gas. at a temperature of 298 kelvin and a pressure of 1.03 atm, a volume of 1.53 l of hydrogen gas is collected. assuming that the hydrochloric acid only reacts with the aluminum in the sample, what is the percent of aluminum in the alloy sample? (solid aluminum reacts with hydrochloric acid to produce aluminum chloride and hydrogen gas).

Answers

The percent of aluminum in the alloy sample when hydrochloric acid only reacts with the aluminum is found to be 21.7%.

How should aluminium and hydrochloric acid be balanced?

This single replacement reaction is described by the following balanced chemical equation: 2Al(s)+6HCl(aq)→2AlCl3(aq)+3H2(g).

Aluminium interacts with weak hydrochloric acid at room temperature. The dissolution of the metal in hydrochloric acid results in the production of aluminium chloride and colourless hydrogen gas. Because the finished products do not interact, this reaction cannot be stopped.

moles of H2 = PV/RT

             => 1.03atm X 1.53L / 0.0821 x 298K

            => 0.0644 mol H2

Balanced equation => 0.0644 mol H2 x 2 mol Al / 3 mol H2 x 26.98g/        

                                                                                                    1 mol Al

                              => 1.16g Al      

% Al = 1.16/5.34 x 100 = 21.7%

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