The electron configuration 1s22s22p6 corresponds to the noble gas neon (Ne), which has a completely filled valence shell.
What is Electric Configuration?
The placement of electrons around the nucleus of a specific atom or molecule is known as its electronic configuration.
Protons, neutrons, and electrons are the minuscule components that make up an atom. There are the same number of protons and electrons in a neutral atom. The quantity and location of an atom's electrons are revealed by its electronic configuration.
We say that electrons orbit the nucleus of an atom, like the rings of Saturn orbit the planet. Electrons move in orbitals that can accommodate a specific number of electrons as they circle the nucleus.
Four elements that may have ions with this electron configuration are:
Fluorine (F-) - gains one electron to achieve a noble gas configuration (1s22s22p6)
Oxygen (O2-) - gains two electrons to achieve a noble gas configuration (1s22s22p6)
Sodium (Na+) - loses one electron from the valence shell to achieve a noble gas configuration (1s22s22p6)
Magnesium (Mg2+) - loses two electrons from the valence shell to achieve a noble gas configuration (1s22s22p6)
Therefore, the symbols for these ions are:
Na+, Mg2+, F-, O2-.
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What is the mass, in grams, of 2.84 X 1023 particles of lead? (This is a 2- * 1 point
step mole conversion, not a
stoichiometry problem - you are not changing substances.)
The mass of lead based on data is 97.65 grams. The mean atomic mass of lead can be founded in periodic table of elements.
ExplanationGiven:
Lead element symbol = Pb.From periodic table of elements:Therefore:
First, calculate the moles of lead.
[tex]\begin{array}{ll}\sf n &\sf = \dfrac{N}{L}\\\\&\sf = \dfrac{2.84\times 10^{23}}{6.02 \times 10^{23}} \\\\&\sf = 0.471~moles.\end{array}[/tex]
Second, calculate the mass of lead.
[tex]\begin{array}{ll}\sf g&\sf = n \times Ar\\\\&\sf = 0.471 \times 207\\\\&\sf = 97.65~grams.\end{array}[/tex]
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problem 2: an electron beam is directed horizontally into a region where there is both an electric field and a magnetic field. the electric field points upward with a magnitude e
A) The electric force on the electrons will act downward.
B) So to keep the electrons in a straight line, the magnetic force should act to the left.
C) So the magnetic force on them will be perpendicular to their velocity and will act to the left, as we found in part (b).
D)The magnitude of the magnetic field is 3.64 x 10^-5 T.
To calculate the magnitude of the electric force in newtons, we can use the formula: F = qE where F is the force, q is the charge of the electron, and E is the magnitude of the electric field. The charge of the electron is -1.6 x 10^-19 C, and the magnitude of the electric field is given as E = 5.00 x 10^6 N/C. So we have:
F = (-1.6 x 10^-19 C)(5.00 x 10^6 N/C) = -8.00 x 10^-13 N
Since the electric force is acting downward, we should give it a negative sign to indicate its direction.
To calculate the magnitude of the magnetic field, we can use the formula: F = Bqv where F is the magnetic force, B is the magnitude of the magnetic field, q is the charge of the electron, and v is the speed of the electron. We are given the speed of the electron as 110 m/s, and we know from part (b) that the magnetic force is acting to the left with a magnitude equal to the electric force, so we can set F = 8.00 x 10^-13 N. The charge of the electron is -1.6 x 10^-19 C, so we have:
8.00 x 10^-13 N = B(-1.6 x 10^-19 C)(110 m/s)
Solving for B, we get:
B = 3.64 x 10^-5 T
The given question is incomplete, the complete question is
An electron beam is directed horizontally into a region where there is both an clectric field and a magnetic field. The electrie field points upward and has a magnitude E-SNC, as shown in the figure. While moving through the region the electron beam contine in in a horizontal straight line with speed of 110 ms Otheexpertta.com d d d d - 20% Part() in which direction does the electric force act on the electrons ? Downward Correct 20% Part () In order to keep the electrons in a straight line, in which direction abould the magnetic force on the electrons aet? UV Cerrect! 20** Part() What should the direction of the magnetic field be in order to produce the force described in part (by? Isto the screen Cart! 204 Part (d) Calculate the numerical value of the magnitude of the electric force in newtons F- N Grade Sun Ded Potential 7 E 6 Subs Atem pamp sin COMO tan con atan con sinho cosho tail ) cotando Degrees O Radians 4 3 12 0 pl Tim Harem. Feedki o deductie en 20. Parte) Calculate the magnitude of the magnetic field in telif the electron comes in a horizontal straight line.
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which of the following is true about a chemical reaction in which the reactant stores less energy than the product
The reactant in a chemical process that releases less energy than the result does the following. Heat absorption will help the reaction move forward.
Heat absorption refers to the process by which a material or object takes in and retains thermal energy from its surroundings. This can occur through several mechanisms, including conduction, convection, and radiation.
The ability of a material to absorb heat is determined by its specific heat capacity, which is a measure of how much energy is required to raise the temperature of the material by a given amount. Materials with a high specific heat capacity can absorb more heat without experiencing a significant increase in temperature.
Heat absorption has important implications in many areas of science and engineering, including thermodynamics, materials science, and climate science. It is also relevant to everyday life, as it affects the performance of various devices and systems, such as air conditioning units, solar panels, and cooking appliances.
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The complete question is:
Which of the following is true about a chemical reaction in which the reactant stores less energy than the product?
which statement correctly describes the quantum number n with reference to the bohr model of the hydrogen atom? select all that apply. multiple select question. n is a measure of the difference in energy between two energy levels. an electron with n
The statement that correctly describes the quantum number n is, "an electron with n = 2 is at a higher energy level than any other energy levels.
Generally, the set of numbers that is used to locate the position and energy of the electron in an atom are known as quantum numbers. Basically, there are four types of quantum numbers, which are named as, principal, azimuthal, magnetic and spin quantum numbers.
In any atom, there are a total of four quantum numbers: the principal quantum number (n), the orbital angular momentum quantum number (l), the magnetic quantum number (ml), and the electron spin quantum number (ms) which generally describes the characteristic properties of an atom.
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What word describes a molecule that contains both hydrophilic and hydrophobic portions?
a) amphoteric
b) ambidextrous
c) amphipathic
d) rings
e) straight
Amphipathic molecules contains both hydrophilic and hydrophobic portions.
Amphipathic molecules are defined as those molecules that are both hydrophilic as well as hydrophobic in nature. For example, phospholipid is an amphipathic molecule which have a hydrophilic head while its acyl tail being hydrophobic.
All of the lipid molecules present in the cell membranes are amphipathic in nature—that is, they have a hydrophilic (“water-loving”) or polar end and a hydrophobic (“water-fearing”) or nonpolar end.
The carbohydrate that forms the hydrophilic head, and the fatty acids form the hydrophobic tail. Phospholipids in structure, generally these lipid molecules are found in the cell membrane.
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The oxidation state of an ion is the same as—> A. The subscript in a formula. B the coefficient in an equation. C. The number of electrons accepted or given away by the atom. D the number of atoms in the formula.
The oxidation state of an ion is the same as the number of electrons accepted or given away by the atom (option C).
What is oxidation state?Oxidation state is the total number of electrons that an atom either gains or loses in order to form a chemical bond with another atom.
Oxidation state is also referred to as oxidation number, and it is the state of an atom having a particular oxidation number.
Examples of oxidation number are as follows:
Pb²+Na+Therefore, option C is synonymous to the oxidation state of an ion.
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which of the following monomers can conceivably form isotactic polymers? briefly explain and list all possible isomers for this polymer
The monomer that can conceivably form isotactic polymers is [tex]C=CH_2 CH_3[/tex]. Option (d) is correct.
Isotactic polymers are stereoregular polymers in which all the substituents in each repeating unit are on the same side of the polymer chain. The vinyl monomer [tex]C=CH_2 CH_3[/tex] has a relatively simple structure that can pack efficiently and promote isotactic polymerization.
For example, monomer (a) has no chirality center and no stereoisomers, so it cannot form isotactic polymers. Monomer (b) and (c) have chirality centers, but their structures are more complex, making it more difficult to achieve isotactic polymerization. Monomer (e) has multiple chirality centers and can form stereoisomers, but it is not a vinyl monomer and is less likely to form isotactic polymers.
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--The complete question is, Which of the following monomers can conceivably form isotactic polymers?--
Which structure is consistent with this 'H NMR spectrum? (wdd) a. Hg CH;CH; CHACH; H (b) 8 CH;O COCH-CH; (C) CH;CHz CH;CHz (D) CCH; CH;CHz
The structure is consistent with this 'H NMR spectrum is CH;OCCH;. Option a is correct answer.
The 'H NMR spectrum doesn't provide enough information to definitively determine the structure of the molecule. However, based solely on given options, the structure that is most consistent with the chemical shift of the proton signal at around 3.7 ppm is option A, CH3OC(=O)CH2CH3.
This is because the chemical shift of the proton on the OCH3 group is typically found in this region, and the presence of the carbonyl group would also affect the chemical shift of nearby protons. However, additional spectroscopic data and/or chemical tests may be necessary to confirm the structure.
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--The complete question is, Which structure is consistent with this 'H NMR spectrum? CH;OCCH; (B) COCH;CH; (C) OCCH,CH; (D) OCCH; CH;--
Write the empirical formula of at least four binary ionic compounds that could be formed from the following ions: Fe^+2,Cr^+4, I^−, S^−2
The empirical formula of any ionic compound can be determined by balancing the charges on the ions to form a neutral compound.
Here are four binary ionic compounds that could be formed from the given ions:
[tex]FeI_2[/tex] : This compound is formed from [tex]Fe^+2[/tex] and [tex]I^-[/tex] ions. The charges on the ions are balanced, resulting in a neutral compound. The empirical formula is [tex]FeI_2[/tex].[tex]CrS_2[/tex] : This compound is formed from [tex]Cr^+4[/tex] and [tex]S^{-2[/tex] ions. The charges on the ions are balanced, resulting in a neutral compound. The empirical formula is [tex]CrS_2[/tex].FeS: This compound is formed from [tex]Fe^+2[/tex] and [tex]S^{-2[/tex] ions. The charges on the ions are balanced, resulting in a neutral compound. The empirical formula is FeS.[tex]CrI_4[/tex] : This compound is formed from [tex]Cr^+4[/tex] and [tex]I^{-[/tex] ions. The charges on the ions are balanced, resulting in a neutral compound. The empirical formula is [tex]CrI_4[/tex].These are just a few examples of binary ionic compounds that could be formed from the given ions.
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rank the following aqueous solution by increasing boiling point. (1) 0.10 m nacl (2) 0.10 m al(no3)3 (3) 0.30 m c12h22o11 (sucrose) instruction: type in (1), (2) or (3) in each answer box below. lowest --------------->--------------->-------------> highest <
The ranking from lowest boiling point to highest boiling point is (1) 0.10 m NaCl, (2) 0.10 m Al(NO3)3, (3) 0.30 m C12H22O11 (sucrose).
The boiling point of a solution is directly related to the solution's vapor pressure. This is due to the fact that, as the vapor pressure of the solution increases, the boiling point of the solution will also increase. The vapor pressure of a solution is a function of its concentration, so the higher the concentration of a solution, the higher its vapor pressure. Thus, the higher the concentration of a solution, the higher its boiling point.
Therefore, the correct order, from lowest to highest boiling point, is: (1) 0.10 m NaCl, (2) 0.10 m Al(NO3)3, (3) 0.30 m C12H22O11 (sucrose).
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Based on the diagram below, what is the wavelength of Wave B?
2 m
10 m
16 m
4 m
4 m is the wavelength of Wave B.
What is wavelength?
The Greek letter lambda (λ), which represents wavelength, is frequently used. When describing modulated waves, their sinusoidal envelopes, or waves created by the interference of several sinusoids, the term wavelength is also occasionally used.
What is frequency ?
The number of full wave cycles that pass a spot in a unit of time is described as frequency. The frequency in SI is measured in Hertz (Hz).
Therefore, 4 m is the wavelength of Wave B.
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Based on Table G, determine the mass of NH3 that must be dissolved in 200 grams of water to produce a saturated solution at 20C??
From the table of plots of solubility, it is clear that, the solubility of ammonia in 100 g of water is 55 g at 20°C. Then, the solubility at the same temperature for 200 g of water is 110 g.
What is solubility ?Solubility of a substance in a solvent at a specified temperature is the fraction of its concentration that can be dissolved in the solvent. Solubility depends on the bond type of the substance, its molecular mass, temperature and pressure.
For most of the salts, as the temperature increases, solubility increases. But for some compounds solubility decreases with temperature. From the graph, it is clear, that, the solubility of ammonia decreases with temperature.
The solubility of ammonia at 20 °C in 100 g of water is 55 g. Then, at this temperature, the solubility of ammonia in 200 g of water will be 110 g. Then, to form a saturated solution, 110 g or above of ammonia can be added.
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Table G of your question is attached below:
Consider the reaction
2SO2(g) + O2(g) ⇌ 2SO3(g)ΔH = −198.2 kJ/mol
How would the concentrations of SO2, O2, and SO3 at equilibrium change if we were to
(a) increase the temperature?
[SO2]:
The concentration increases.
The concentration decreases.
There is no change.
[O2]:
The concentration increases.
The concentration decreases.
There is no change.
[SO3]:
The concentration increases.
The concentration decreases.
There is no change.
(b) increase the pressure and decrease the volume?
[SO2]:
The concentration increases.
The concentration decreases.
There is no change.
[O2]:
The concentration increases.
The concentration decreases.
There is no change.
[SO3]:
The concentration increases.
The concentration decreases.
There is no change.
(c) add a catalyst?
[SO2]:
The concentration increases.
The concentration decreases.
There is no change.
[O2]:
The concentration increases.
The concentration decreases.
There is no change.
[SO3]:
The concentration increases.
The concentration decreases.
There is no change.
The concentrations of the components will vary as explained below.
Equilibrium reactions(a) If the temperature is increased, the equilibrium will shift in the endothermic direction to consume some of the added heat. This means that the concentration of SO2 and O2 will increase, while the concentration of SO3 will decrease.
[SO2]: The concentration increases.[O2]: The concentration increases.[SO3]: The concentration decreases.(b) If the pressure is increased and the volume is decreased, the equilibrium will shift in the direction that produces fewer moles of gas to relieve the pressure. Since there are 3 moles of gas on the left side of the equation and 2 moles of gas on the right side, the equilibrium will shift to the left to produce more SO2 and O2 and less SO3.
[SO2]: The concentration increases.[O2]: The concentration increases.[SO3]: The concentration decreases.(c) Adding a catalyst will increase the rate of the forward and reverse reactions equally, so the equilibrium concentrations of SO2, O2, and SO3 will remain the same, but they will be reached more quickly.
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The radius of a single atom of a generic element X is 151 picometers (pm) and a crystal of X has a unit cell that is body-centered cubic. Calculate the volume of the unit cell.
The volume of the unit cell of element X is approximately 1.785 × 10⁸ picometers cubed (pm³).
What is the volume of the unit cell?
In a body-centered cubic unit cell, there are atoms at each of the eight corners of the cube, and one atom in the center of the cube. Each atom at the corner is shared by eight unit cells, while the atom at the center is contained within a single unit cell.
The distance from one corner of the cube to the opposite corner is equal to four times the radius of the atom (i.e. 4 × 151 pm = 604 pm), which is known as the body diagonal of the cube.
Therefore, the length of one side of the cube is given by:
a = (4/√3) × r
= (4/√3) × 151 pm
≈ 554.6 pm
The volume of the unit cell is then given by:
V = a³
= (554.6 pm)³
≈ 1.785 × 10⁸ pm³
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Who collaborated to develop the digital hearing aid
Dr. James Jerger, collaborated to develop the digital hearing aid
Who collaborated to develop the digital hearing aid?The development of the digital hearing aid was the result of a collaboration between several individuals and organizations. One of the key figures in the development of digital signal processing technology, which forms the basis of modern digital hearing aids, was Thomas Stockham, a physicist and engineer who worked at the Massachusetts Institute of Technology (MIT) in the United States.
In the years since the first digital hearing aids were developed, many other researchers, engineers, and clinicians have contributed to the ongoing development and refinement of these devices. Today, digital hearing aids are widely used around the world and have helped millions of people with hearing loss to improve their communication and quality of life.
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What is the nucleophile in Friedel-Crafts reaction?
The nucleophile in a Friedel-Crafts reaction is the alkyl or acyl group attached to the Lewis acid catalyst.
In a Friedel-Crafts reaction, a Lewis acid catalyst, such as aluminum chloride (AlCl3) or iron(III) chloride (FeCl3), is used to activate an alkyl or acyl halide to make it a better electrophile. The activated alkyl or acyl group then acts as the nucleophile, attacking the aromatic ring of the substrate to form a new carbon-carbon bond.
The overall reaction can be summarized as follows:
R-X + AlCl3 → R+ + AlCl4- (activation of the alkyl or acyl halide)
R+ + Ar-H → Ar-R + H+ (nucleophilic attack on the aromatic ring)
In this reaction, the nucleophile is the R group, which can be an alkyl or acyl group. The Lewis acid catalyst activates the alkyl or acyl halide, making it a better electrophile and allowing it to attack the aromatic ring.
The end result is the formation of a new carbon-carbon bond between the alkyl or acyl group and the aromatic ring.
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How many atoms are in 1.2 mol of carbon?
How would I be able to solve this?
Answer:
23 atoms for the first question
Explanation:
HELP ASAP! I WILL GIVE YOU BRAINLIST IF YOU SOLVE THESE TWO QUESTIONS
Answer: All visible light waves except red are absorbed by the ball. The wave transfers its energy to the material.
Explanation: The red is reflected back, which is how we see color. This is why most plants look green, they cannot absorb green light.
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TRUE/FALSE. the particles are so small compared with the distances between them that the volume of the individual particles can be assumed to be zero.
The statement that, the particles are so small compared with the distances between them that the volume of the individual particles can be assumed to be zero is true.
This statement is a reasonable approximation for the behavior of particles in a gas or a dilute solution, where the individual particles are separated by relatively large distances. In these cases, the particles are typically much smaller than the average distance between them, so their volume can be assumed to be negligible.
However, in condensed phases such as liquids and solids, the particles are much closer together, and their volumes cannot be ignored.
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relationship between the polarity of molecules and their solubility and miscibility.
Polar molecules dissolve as well as miscible in polar solvents, while nonpolar molecules dissolve and miscible in nonpolar solvents.
What is polarity?Polarity is indeed a division of electric charge in chemistry that results in a molecule and its chemical groups possessing and electric dipole moment with a negative charges end as well as a positive charge end.
Atoms prefer to adopt the configuration of noble gases in order to achieve stability. As a result, we may deduce that chemical bonding was responsible for atom stability and the formation of molecules. Polar molecules dissolve as well as miscible in polar solvents, while nonpolar molecules dissolve and miscible in nonpolar solvents.
Therefore, polar molecules dissolve as well as miscible in polar solvents, while nonpolar molecules dissolve and miscible in nonpolar solvents.
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What is the answer to this question?
Answer: Phosphorus
Explanation:
A system undergoes a process consisting of the following two steps:
Step 1: The system absorbs 72 J of heat while 35 J of work is done on it.
Step 2: The system absorbs 35 J of heat while performing 72 J of work.
Calculate ΔE for the overall process.
The total change in internal energy for the process is 70 J.
The change in internal energy (ΔE) of a system can be calculated using the first law of thermodynamics, which states that the change in internal energy of a system (ΔE) is equal to the heat added to a system (q) minus work done by the system (w):
ΔE = q - w
In this case, the system undergoes two steps:
Step 1: q = 72 J, w = -35 J (work is done on the system)
ΔE₁ = q - w = 72 J - (-35 J) = 107 J
Step 2: q = 35 J, w = 72 J (work is done by the system)
ΔE₂ = q - w = 35 J - 72 J = -37 J
The overall change in internal energy (ΔE) for the process is the sum of the changes in internal energy for each step:
ΔE = ΔE₁ + ΔE₂ = 107 J + (-37 J) = 70 J
Therefore, the overall change in internal energy for the process is 70 J.
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How many moles of silver chloride will be produced if 2 moles of silver is allowed to react with an unlimited amount of chlorine?
what is the mass, in grams, of 1.28 mol of water, h2o ? express the mass in grams to three significant figures. view available hint(s)for part a
The mass of 1.28 mol of water is 23.04 grams to three significant figures.
Molar mass is the mass of one mole of a substance, which is expressed in units of grams per mole (g/mol). The molar mass of a compound is the sum of the atomic masses of all the atoms in the compound.
The molar mass of water (H2O) is approximately 18.015 g/mol.
To find the mass of 1.28 mol of water, we can use the following calculation:
mass = number of moles × molar mass
mass = 1.28 mol × 18.015 g/mol
mass = 23.04 g
Therefore, the mass of 1.28 mol of water is 23.04 grams to three significant figures.
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how many grams of H2 are produced when 67.12 grams of HCl are reacted with copper
1.852 grams of H₂ are produced when 67.12 grams of HCl are reacted with copper.
What is mole ?A mole is a important unit of measurement. 1 mole = 6.023 × 10²³ particles.
The term mole is defined as the amount of matter containing 6.023 × 10²³ molecules.
For each two moles of HCl there is one mole of hydrogen.
So first convert the grams to moles.
Then find formula mass of HCl
The mass of hydrogen = 1.007 amu
mass of chlorine = 35.453 amu
Then 1.007 + 35.453 = 36.46 grams
Hence, one mole of HCl = 36.46 grams/mol
67.12g ÷ 36.46 = 1.84 moles
Therefore, 1.84 mols / 2
= 0.92 moles of hydrogen
Now to convert the moles into grams by multiply the number of moles of hydrogen by the atomic mass of hydrogen
= 0.92 mols × 2.014 g/mol
= 1.852 grams of hydrogen
We get 1.852 grams of hydrogen.
Thus, 1.852 grams of H₂ are formed.
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add curved arrows to both structures to show the delocalization of electron pairs needed to form the other resonance contributor. resonance structure a consists of a benzene ring where carbon 1 has an o minus substituent with three lone pairs. carbons 2 and 3 are fused to a 6 membered ring. moving clockwise from the top fused carbon, the next two atoms are carbons that are double bonded to each other. the next position is a carbon double bonded to oxygen with two lone pairs. the next position is an oxygen with two lone pairs, and this is bonded to the bottom fused ring carbon. resonance structure b consists of a set of 2 fused 6 membered rings. the left ring consists of a carbon in position 1 that is double bonded to an oxygen with two lone pairs. moving clockwise, positions 2 and 3 are fused to the right ring. the carbon in position 2 is double bonded to the first clockwise carbon in the right ring. the next two carbons in the right ring are also double bonded. the carbon 3 positions clockwise from the top fused carbon is bonded to o minus with three lone pairs. this carbon is also bonded to an oxygen with two lone pairs, which is bonded to the bottom fused carbon. the bottom fused carbon is also bonded to the next clockwise carbon in the left ring. the last two carbons in the left ring are also double bonded to each other.
The curved arrow representation for the provided resonance structure is attached.
How to convey informationThe negative charge (lone pair) is moved towards the hybridized carbon and the pi electrons also move towards another carbon, so the delocalization takes place and forms new C=O, C=C bond, and then oxygen atom gets the negative charge.
The lone pairs on nitrogen atom moved to the hybridized carbon and another pi bond moves towards the oxygen atom. This is shown with the curved arrows.
Note that necessary diagrams are attached.
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acid-catalyzed dehydration of 3-methyl-2-pentanol gives three alkenes: 3-methyl-1-pentene, 3-methyl-2-pentene, and 3-methylenepentane. draw the structure of the carbocation intermediate leading to the formation of 3-methyl-2-pentene. you do not have to consider stereochemistry. you do not have to explicitly draw h atoms. if more than one structure fits the description, draw them all. separate structures with signs from the drop-down menu.
3-methyl-2-Pentene is the correct answer. 3-methyl-2-pentene is an alkene with a molecular formula of C_5H_10. It is a colorless liquid with a pungent odor.
What are alkenes ?Alkenes are a class of organic compounds that contain a carbon-carbon double bond. They are unsaturated hydrocarbons, meaning that they have fewer hydrogen atoms than their corresponding saturated hydrocarbons.
The general formula for an alkene is Cn[tex]H_{2}[/tex]n, where "n" represents the number of carbon atoms in the molecule. The simplest alkene is ethene, which is also called ethylene and has the chemical formula [tex]C_{2} H_{4}[/tex]. Alkenes are important intermediates in many industrial processes and are used in the production of a variety of products including plastics, synthetic rubber, and solvents.
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find an example of each type of reaction. synthesis: decomposition: single replacement: double replacement:
Answer:
Explanation:
Synthesis
2H2 + O2 ---> 2 H2O
Decomposition
CaCO3----> CO2 + CaO
Single replacememt
Na + KCl---> KCl + Na
Double replacement
AgNO3 + NaCl --> AgCl + NaNO3
a solution is made by mixing 500.0 ml of 0.04074 m na2haso4 with 500.0 ml of 0.04997 m naoh . complete the mass balance expressions for the sodium and arsenate species in the final solution.
The mass balance expression for the sodium is 45.36 mmol and arsenate is 49.98 mmol species in the final solution.
According to the following equation, sodium hydrogen arsenate ([tex]Na_{2} HAsO_{4}[/tex]) and sodium hydroxide ([tex]NaOH[/tex]) react to produce sodium arsenate ([tex]Na_{3} AsO_{4}[/tex]) and water ([tex]H_{2} O[/tex]) when combined:
[tex]Na_{2} HAsO_{4} + 2 NaOH[/tex] → [tex]Na_{3} AsO_{4} + 2 H_{2} O[/tex]
To determine the mass balance expressions for the sodium and arsenate species in the final solution, we need to consider the initial amounts of these species in each of the two solutions and the changes that occur upon mixing.
For the sodium ion ([tex]Na^{+}[/tex]), we have:
Initial amount
= (500.0 mL) x (0.04074 mol/L)
= 20.37 mmol
Amount added
= (500.0 mL) x (0.04997 mol/L)
= 24.99 mmol
Total amount
= 20.37 mmol + 24.99 mmol
= 45.36 mmol
The sodium ion participates in the reaction as a spectator but doesn't change chemically. As a result, the following is the mass balance statement for [tex]Na^{+}[/tex] in the final solution:
[[tex]Na^{+}[/tex]] = 45.36 mmol
For the arsenate ion ([tex]AsO_{4} ^{2-}[/tex]), we have:
Initial amount
= (500.0 mL) x (0.04074 mol/L)
= 20.37 mmol
Amount added
= (500.0 mL) x (0.04997 mol/L) x (2/1)
= 49.98 mmol
Total amount
= 20.37 mmol + 49.98 mmol
= 70.35 mmol
In the reaction, 1 mol of [tex]Na_{2} HAsO_{4}[/tex]produces 1 mol of [tex]Na_{3} HAsO_{4}[/tex]. Therefore, the amount of [tex]AsO_{4} ^{2-}[/tex]produced is equal to the amount of [tex]Na_{2} HAsO_{4}[/tex] that reacted. Since we started with 20.37 mmol of [tex]Na_{2} HAsO_{4}[/tex] and it reacts in a 1:1 ratio with [tex]NaOH[/tex], the amount of [tex]Na_{2} HAsO_{4}[/tex] that reacted is equal to:
Amount of [tex]Na_{2} HAsO_{4}[/tex] reacted
= (500.0 mL) x (0.04074 mol/L)
= 20.37 mmol
The remaining amount of [tex]AsO_{4} ^{2-}[/tex] in the final solution is therefore:
Amount of [tex]AsO_{4} ^{2-}[/tex] in the final solution
= 70.35 mmol - 20.37 mmol
= 49.98 mmol
The mass balance expression for [tex]AsO_{4} ^{2-}[/tex] in the final solution is:
[ [tex]AsO_{4} ^{2-}[/tex]] = 49.98 mmol
Therefore, the mass balance expressions for the sodium and arsenate species in the final solution are:
[[tex]Na^{+}[/tex]] = 45.36 mmol
[ [tex]AsO_{4} ^{2-}[/tex]] = 49.98 mmol
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The green elements on this table are called ____________ elements. They each have two electrons in their
outer shell.
Answer:The green elements on the table you are referring to are called Noble gases or Inert gases.
Explanation:
The green elements on the table you are referring to are called Noble gases or Inert gases. They each have two electrons in their outer shell, which gives them a full and stable electron configuration.