an element of group ii loses two electrons in the process of a chemical combination. what is its ionic charge? choose...

Answers

Answer 1

An element of group (II) loses two electrons in the process of a chemical combination. its ionic charge is + 2.

The group (II) element are the alkaline earth metals. metals have tendency to donate the electrons and form cation . the group (II) metal element have tendency to loose 2 electrons and for cation with ionic charge of +2. example :

beryllium atomic number is 4 . electronic configuration is 1s² 2s² it can loose and form Be⁺² , electronic configuration is  1s².

Thus, An element of group (II) loses two electrons in the process of a chemical combination. its ionic charge is + 2.

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Related Questions

Write the condensed ground-state electron configuration of the transition metal ion mn2+.

Answers

The condensed ground-state electron configuration of the transition metal ion [tex]Mn^{2+}[/tex] is [Ar] [tex]3d^{5}[/tex]

The electronic configuration of an element is the symbolic notation of the manner in which the electrons of its atoms are distributed in the periodic table over different atomic orbitals. While writing electron configurations, standardized rules are followed in which the energy level and the type of orbital are generally written first, followed by the number of electrons present in the orbital which is written in superscript.

In case of Manganese atomic number of the atom is 25. When we follow Aufbau principle the electronic configuration is [tex]1s^{2}2s^{2}2p^{6}3s^{2}3p^{6}4s^{2}3d^{5}[/tex] if we have to write it in a compact form we can write as [Ar][tex]3d^{5}4s^{2}[/tex]. In case of [tex]Mn^{2+}[/tex] we have to remove electron from the higher most orbital that is 4s so now the electronic configuration will be become [Ar][tex]3d^{5}[/tex].

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part iii. determination of the molar mass of the vapor trial 1 trial 2 7. molar mass of vapor g/mol g/mol (show calculations)

Answers

The molar mass of the vapor of trial 1 and trial 2 will be 54.68 g/mol and 57.68 g/mol respectively.

For Trial 1:

(Following values are missing in question)

T = 101 °C or 374.15 K

P = 760 mmHg or 1 atm

V = 292 ml or 0.92 L

R= O.08206 L.atm.K⁻¹.mol⁻¹

mass of vapor (m) = 0.52 g

Calculate the molar mass of vapor by using the ideal gas law

    PV =(m/M) RT

Rearrange it for molar mass

    M = mRT / PV

    M = 0.52 g × 0.08206 L.atm.K⁻¹.mol⁻¹ × 374.15 K / 1 atm × 0.92 L

    M = 54.68 g/mol

For Trial 2:

(Following values are missing in question)

T = 373.15 K

P =  1 atm

V =  0.292 L

R= O.08206 L.atm.K⁻¹.mol⁻¹

mass of vapor (m) = 0.55 g

Calculate the molar mass of vapor by using the ideal gas law

    PV =(m/M) RT

Rearrange it for molar mass

    M = mRT / PV

    M = 0.55 g × 0.08206 L.atm.K⁻¹.mol⁻¹ × 373.15 K / 1 atm × 0.292 L

    M = 57.68 g/mol

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A cycle consists of a carefully balanced set of molecules. In order for the cycle to continue, this balance must be maintained. How many turns of the calvin cycle must occur before one molecule of g3p can leave?.

Answers

The Calvin cycle must occur before one molecule of g3p can leave is 3.

Making a G3P molecule requires three Calvin cycles allowing the G3P molecule to exit the cycle and continue making glucose. He needs all three requirements: chlorophyll pigment, chloroplast "theater", and enzyme catalysis. The first stage converts light energy into chemical energy, which is stored in ATP and NADPH molecules until this point.

In the second step of the Calvin Cycle, the carbon-fixed 3-PGA molecule is converted to the monosaccharide molecule, glyceraldehyde-3-phosphate. This stage uses energy from ATP and NADPH produced in the light-dependent reactions of photosynthesis. The Calvin Cycle harnesses the chemical energy of ATP and reduces the power of NADPH from a light-dependent reaction to produce a tricarbonate.

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n this project, you will build a simple unix shell to replace sh provided by the linux kernel. the shell is the command-line interface, and thus central to any unix/c programming environment. mastering use of the shell is necessary to become proficient in this world; knowing how the shell itself is built is the focus of this project. there are three specific objectives for this assignment:

Answers

Any unix/c programming environment's command-line interface, or shell, is essential. To succeed in this world, one must learn how to use the shell effectively.

int main (int argc, char **argv)

     {  

while (1){

int childPid;

char * cmdLine;  

printPrompt();

cmdLine= readCommandLine();

//or GNU readline("");

cmd = parseCommand(cmdLine);  

command is record in  list of history(GNU readline history ?)

if ( isBuiltInCommand(cmd)){

executeBuiltInCommand(cmd);

}

else {

childPid = fork();

if (childPid == 0){

executeCommand(cmd); //calls execvp  

} else {

if (isBackgroundJob(cmd)){  

record in list of background jobs

} else {

waitpid (childPid);

}

}

}

}

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true or false? at the end of a precipitation reaction, you can recover (or obtain) the colored solid (the precipitate).

Answers

True! If there is a solid left, the liquid can be removed to obtain it.

65 g of nitric acid are produced in a reaction. 2. 5 g of platinum are added to the reaction vessel at the start of the reaction to act as a catalyst. How much platinum will there be left in the vessel at the end of the reaction?.

Answers

2..5 grams of platinum will be there at the end of the reaction, because Platinum is the catalyst here.

Catalyst is a substance that can be added to a chemical reaction to increase the rate of reaction without getting itself consumed in the reaction. It just acts as a driving force for the reaction and it itself does not take part in the chemical reaction.

Catalysts basically speeds up a reaction by reducing the activation energy or also by changing the reaction mechanism. Enzymes are proteins that act as catalysts in the biological systems.

In the above given question if 2.5 grams of platinum is added to the reaction vessel then at the end of the reaction 2.5 grams of platinum itself will be remaining because it acts as a catalyst here.

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Consider the substitution reaction that takes place when (R)-3-bromo-3-methylhexane is treated with methanol. Which of the following would be true? A) The reaction would take place only with inversion of configuration at the stereogenic center. B) The reaction would take place only with retention of configuration at the stereogenic center. C) The reaction would take place with racemization. D) No reaction would take place. E) The alkyl halide does not possess a stereogenic center. a. А b. B c. C d. D e. Е

Answers

The reaction would take place with racemization. Option C.

The reaction between (s)-3-Bromo-3-methyl hexane and water is a nucleophilic substitution reaction as the leaving group present on the substrate is displaced by a nucleophile. Water is a polar protic solvent and he prefers SN1 reactions over SN2 reactions. Therefore, the reaction mechanism is SN1.

The carbocation and its substituents are all in the same plane. In other words, the nucleophile can attack from either side. As a result, both enantiomers are formed in the SN1 reaction, producing a racemic mixture of both enantiomers. Alkenes react with pure liquid bromine at low temperatures or with solutions of bromine in organic solvents such as carbon tetrachloride. The double bond is broken and a bromine atom is attached to each carbon atom.

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If metals and non-metals make bonds and non-metals and non-metals make bonds, can metals and metals do the same? How?

Answers

The metals loses electrons forming cations while on the other hand, the non-metals gains the electrons forming anions.

What happens when non-metals bond with non-metals?

Covalent bonding is a type of bonding linking two non-metallic atoms which are distinguished by the sharing of pairs of electrons joining atoms and other covalent bonds. An ionic bond is the force of appeal that holds together positive and negative ions. It forms when atoms of a metallic element loses electrons to atoms of a nonmetallic element. Ionic bonds form only allying metals and nonmetals. When two nonmetals bond, they share pairs of electrons in a covalent bond and both gets stability.

So w can conclude that A covalent bond is formed between two non-metals. The sharing of electron pairs takes place between their atoms and a covalent bond is formed.

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Calculate the molarity of 95. 0 ml of a solution that is 0. 92 % by mass nacl. Assume the density of the solution is the same as pure water.

Answers

The mass of the solute will be 0.874 grams.

What is the mass of the molarity?

Molarity = Number of moles of solute/    volume of solution.

The mass percentage of the compound is given by % =

Mass of solute/ Mass of Solution x 100

According to the given equation,

The volume of the solution is 95.0 ml

The density of the solution is equal to the density of pure water that is 1g / mL.

Therefore the mass of solution is calculated by

Mass = Density x Volume

        =  1 g/ mL x 95.0 mL

        = 95.0 gm

If the main percentage is 0.92 % then,

Mass of solute

0.92 = Mass of solute / 95.00 gm x 100

Mass of solute      = 0.874 gm

Hence the mass of solute is 0.874 gm.

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A pipet is used to transfer 5.00 mL of a 1.25 M stock solution in flask "S" to a 25.00-mL volumetric flask "B," which is then diluted with DI H20 to the calibration mark. The solution is thoroughly mixed. Next, 2.00 mL of the solution in volumetric flask "A" is transferred by pipet to a 50.00-ml volumetric flask "B" and then diluted with DI H20 to the calibration mark. Calculate the molarity of the solution in vol- umetric flask "B."

Answers

The molarity of the solution in the volumetric flask B is 0.0100 M.

This problem is solved firstly by using the concept of dilution formula which can be written as below:

M1V1 = M2V2

Given,

M1 = 1.25 M

V1 = 5 ml

V2 = 25 ml

By substituting all the values, we get

1.25 × 5 = M2 × 25 ml

M2 = 1.25 × 5 / 25

M2 = 0.25 M

Now,

Volume of solution pipet from volumetric flask A V2 = 2 ml

Molarity of solution in volumetric flask 'A' = 0.25 M = M2

Volume Volume of solution in volumetric flask B (V3) = 50 ml

Again by using dilution formula,

M2V2 = M3V3

By substituting all the values, we get

0.25 × 2 = M3 × 50 ml

M3 = 0.0100 M

Thus, we concluded that the molarity of the solution in the volumetric flask B is 0.0100 M.

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Each period in the periodic table corresponds to a(n)___.a. principal energy levelb. energy sub-levelc. orbitald. suborbital

Answers

Each period in the periodic table corresponds to a(n) principal energy level.

What does the term "primary energy level" mean?

The electron's shell or orbital in relation to the atom's nucleus is referred to as its primary energy level in chemistry.

The primary quantum number n serves as a symbol for this level. A new main energy level is introduced by the first element of a period in the periodic table.Up to 2n2 electrons, where n is the total number of principal energy levels, may be present in any one level. As a result, each period in the periodic table correlates to a particular level of primary energy.

Hence, Option a) principal energy level is correct answer.

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a sealed rigid vessel contains bao2(s) in equilibrium with bao(s) and o2(g) as represented by the equation above. which of the following changes will increase the amount of bao2(s) in the vessel?

Answers

In this case , Removing a small amount of BaO will increase the amount of bao2(s) in the vessel.

What do you mean by Barium oxide ?

Barium oxide , BaO.  Barium oxide is found to be white and is non-flammable. It is mostly used  in cathode ray tubes, catalysts, crown glass, and solvent-killing agents because of its cubic structure. Sir Humphry Davy was known as the discovered. Barium oxide has a total monoisotopic mass of 153.9 g/mol.

Uses of Barium oxide is used in the isomer separation process.

It is widely used in the production of fuel and as a reducing agent.It is a fantastic oxidising agent.

Hence, In this case , Removing a small amount of BaO will increase the amount of bao2(s) in the vessel.

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Is there a chemical element beginning with J?

Answers

Answer:The Letter J on the Periodic Table. The letter J was the element symbol for iodine in Mendeleev's 1871 periodic table. You won't find the letter “J” on the IUPAC periodic table of the element

Explanation:

There is no such element beginning with J in the periodic table.

What is an element?

A chemical element is a type of atom with a particular number of protons in the nucleus, such as the specific compound made up entirely of that species. Chemical elements, unlike chemical compounds, cannot be broken down into simpler substances by any chemical reaction. The number of protons in the nucleus is an element's defining attribute, and it is symbolised by the symbol Z - all atoms with the same atomic number are atoms of the same element. Atoms are rearranged into new compounds linked together by chemical bonds when various elements undergo chemical reactions.

There is no such element beginning with J in the periodic table.

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Are metals fcc or BCC?

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A Face Center Cubic Structure (fig. la), a Body Centered Cubic Structure (fig. lb), or an Hexagonal Close Packed structure (fig. lc) characterizes the majority of common metals.

Metal crystal structures, also known as the cubic-closest-packed (CCP) or face-centered cubic (FCC) lattice. In fcc lattices, copper, silver (Ag), and gold (Au) crystallize. The closest feasible packing of spheres can be seen in the hcp and fcc structures, where spheres occupy 74% of the volume.

One atom in the middle and eight eighths from each corner make up the BCC unit cell's total of two atoms. The eight atoms at the unit cell's corners and the single atom positioned in the center of each face are present in the FCC layout as well. With the neighboring cell, the atom in the face is shared.

Despite having more slip systems than FCC, the slip planes of BCC materials are not as densely packed. As a result, FCC materials are more ductile than BCC and have a tendency to distort more easily. The BCC materials are more durable and robust than the FCC ones.

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In the gravimetric method, is it important that you dissolve your sample in exactly 10 mL of water? Why or why not?

Answers

In the gravimetric method, it is important that you dissolve your sample in exactly 10 mL of water. A quantitative technique called gravimetric analysis uses the material to be measured to be selectively precipitated out of an aqueous solution.

What is gravimetric method ?

With six-figure precision, it is used to calculate the atomic masses of several elements. It doesn't call for a set of criteria to calculate an unknown and leaves minimal space for instrumental mistake.

Precipitation of either the examined substance's cation or anion is required. The chemical under investigation must have an anion to cation ratio of 1:1. The material under investigation's cation and anion must both be precipitated.

A quantitative technique called gravimetric analysis uses the material to be measured to be selectively precipitated out of an aqueous solution. Filtration is used to remove the precipitate from the residual aqueous solution, and it is then weighed.

Thus, In the gravimetric method, it is important that you dissolve your sample in exactly 10 mL of water.

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explain why absorbance (and not %transmittance) is the important measurement in determining the concentration of a substance (4 sentences at least please) in solution. (25 points)

Answers

One factor that influences the absorbance of a sample is the concentration (c). The expectation would be that, as the concentration goes up, more radiation is absorbed and the absorbance goes up. Therefore, the absorbance is directly proportional to the concentration.

What is beer lamberts law ?

The third factor is known as molar absorbance (ε), where concentrations are given in moles/liter and path lengths are given in centimeters. Some research areas talk more about extinction coefficients. When spectroscopy is used to measure the concentration of a sample, a specific wavelength of radiation is selected to irradiate the sample. As you probably know from other experience, certain chemical species absorb certain wavelengths of radiation and not others. Molar absorptivity is a measure of how much a species absorbs at a particular wavelength of radiation to which it is exposed. The process of absorbing electromagnetic radiation involves the excitation of species from ground states to higher energy excited states. This process is called an excited transition, and excited transitions have probabilities of occurrence. It is appropriate to talk about the allowed range of possible energy transitions within a chemical species. Some migrations are more legal or cheaper than others. Very favorable or very acceptable transitions have high molar absorptivity. Only slightly favorable or slightly tolerant transitions have low molar absorptivities. The higher the molar extinction coefficient, the higher the absorption. Therefore, molar absorbance is directly proportional to absorbance.

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contact lens disinfection large-scale drinking water disinfection sterilization of laboratory glasswares low-temperature sterilizing cabinets for colonoscopes wound cleansing disinfection of countertops and other environmental surfaces large, enclosed spaces in hospital settings hydrogen peroxide

Answers

The given question is incomplete and the complete question is

Select the appropriate uses of hydrogen peroxide for antimicrobial purposes.

contact lens disinfection

skin antisepsis prior to surgery

sterilization of laboratory glassware

low temperature sterilizing cabinets for colonoscopes

wound cleansing

disinfection of countertops and other environmental surfaces

Appropriate uses of hydrogen peroxide for antimicrobial purposes is contact lens disinfection, low temperature sterilizing cabinets for colonoscopes, wound cleansing

Hydrogen peroxide is widely used in antimicrobial chemical and it is used both liquid and gases form fir preservative and disinfection and sterilization and application and its advantage include its potent and broad spectrum and antimicrobial activity, flexibility in use and safety in comparison to other microbicides and appropriate used are contact lens disinfection, low temperature sterilizing cabinets for colonoscopes, wound cleansing in the antimicrobial purposes

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What is the density of NaOH in g mL?

Answers

1.110g mL⁻¹ is the density of a 3 molar solution of NaOH.

Sodium hydroxide, an inorganic substance with the formula NaOH, is also known as lye and caustic soda. It is a white, solid ionic substance made up of the cations sodium (Na+) and the anions hydroxide (OH).

Sodium hydroxide is a chemical that manufacturers utilize to make things like soap, rayon, paper, explosives, colors, and petroleum products. Processing cotton fabrics, metal cleaning and processing, electroplating, oxide coating, and electrolytic extraction are further uses for sodium hydroxide.

Caustic soda or lye are two other names for sodium hydroxide. It is a typical ingredient in soaps and cleansers. Sodium hydroxide is a white, odorless solid at ambient temperature.

Because sodium hydroxide is a potent base that entirely dissociates into hydroxide ions in solution, the initial concentration of sodium hydroxide is the same as the first concentration of hydroxide ions in solution.

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When preparing a solution in a cuvette, make sure to handle the cuvette by the choose. And avoid touching the choose. . Then, choose. The cuvette before placing it in the spectrophotometer.

Answers

When preparing a solution in a cuvette, make sure to handle the cuvette by the textured side and avoid touching the smooth sides. Then, wipe down the cuvette before placing it in the spectrophotometer.

The cuvette is made up of silica quartz. So care must be ensured before using a cuvette. Gloves free from powder must always be worn when handling cuvettes. The most common cause of cuvette malfunction and unreliable readings is fingerprints. To prevent any harm to the lower region of the cell where the light enters, cuvettes should always be held by the upper component of the cell.

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Select all that apply. Among the compounds below, identify those that have a chirality axis. A: (CH_3)_3C- B: (CH_3)_3C- X: H- Y:G- A: (CH_3)_3C- B: H- X: (CH_3)_3C- Y: H- A: (CH_3)_3C- B: (CH_3)_3C- X: (CH_3)_3C- A: (CH_3)_3C- B: H- X: H-

Answers

The second option i.e. A: (CH3)C-, B: H-, X:CH3)C-, Y: H-, has a chiral axes.

What do you mean by chirality axis?

In science, pivotal chirality is an exceptional instance of chirality wherein a particle contains two sets of synthetic gatherings in a non-planar plan about a hub of chirality so the particle isn't superposable on its mirror image. The hub of chirality (or chiral hub) not set in stone by a compound bond that is compelled against free revolution either by steric obstruction of the gatherings, as in subbed biaryl mixtures like BINAP, or by torsional firmness of the bonds, as in the C=C twofold bonds in allenes, for example, glutinic corrosive. Pivotal chirality is most generally seen in subbed biaryl compounds wherein the turn about the aryl bond is limited so it results in chiral atropisomers, as in different ortho-subbed biphenyls, and in binaphthyls like BINAP.

Pivotal chirality contrasts from focal chirality (point chirality) in that hub chirality doesn't need a chiral focus like an uneven carbon particle, the most widely recognized type of chirality in natural mixtures. Attaching to hilter kilter carbon has the structure Cabcd where a, b, c, and d should be unmistakable gatherings. Allenes have the structure abC=C=Ccd and the gatherings need not all be particular insofar as gatherings in each pair are unmistakable: abC=C=Cab is adequate for the compound to be chiral, as in penta-2,3-dienedioic corrosive. Essentially, chiral atropisomers of the structure abC−Ccd might have a few indistinguishable gatherings (abC−Cab), as in BINAP.

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janice looks up the structure of ice. she has been told it has hydrogen bonding. she learns that while most solids sink in their liquid counterparts, ice floats. she wants to know how to explain this based on hydrogen bonding. can you research this and then explain it to her?

Answers

Ice floats because it is about 9% less dense than liquid water. In other words, because ice occupies approximately 9% more space than water, a litre of ice weighs less than a litre of water. Because heavier water displaces lighter ice, ice floats to the surface.

As a result, lakes and rivers freeze from top to bottom, allowing fish to survive even when the lake's surface has frozen over. If ice sank, the water would rise to the surface and be exposed to colder temperatures, causing rivers and lakes to fill with ice and freeze solid.

What is hydrogen bonding?

Hydrogen bonding is not a covalent bond to a hydrogen atom, but rather a type of dipole-dipole attraction between molecules. The attractive force between a hydrogen atom covalently bonded to a very electronegative atom such as an N, O, or F atom and another very electronegative atom causes it.

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When determining the mass of an atom, the electrons are not considered. Why can scientists disregard the electrons?.

Answers

The electrons are so much lighter than the protons and neutrons that they don't contribute much to the atom's mass.

What is atom's mass?

An atom's mass is its atomic mass (ma or m). Atomic mass is frequently stated in the non-SI unit dalton (symbol: Da), or unified atomic mass unit, even though the SI unit of mass is the kilogram (symbol: kg) (u). One Da is equal to one-twelfth of the mass of a free carbon-12 atom in its ground state. Nearly majority of an atom's mass is made up of its protons and neutrons, with the electrons and nuclear binding energy making up the remainder. As a result, the atomic mass has a value that is virtually identical to the mass number when given in daltons.

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4. What mass of ethanol that has a volume of 75.0 mL?

Answers

Mass of ethanol that has a volume of 75.0 mL is 591 g

Ethanol is used in the manufacture of drugs, plastics, lacquers, polishes, plasticizers, and cosmetics

Here given data is

Volume = 75.0 mL

Density = 789kg/m³

We have to calculate mass of ethanol = ?

So the formula is density = mass/volume

Mass = volume × density

Mass = 75.0 mL×789kg/m³

Mass = 591 g

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cOUNTS TOWARDS GRADE Write electron configurations for cations Key for entering electron configuration information Key for entering orbital box information u- electron with spin "up" Enter answer on one line WITHOUT superscripts Separate each subshell with a space d = electron with spin "down". Always start with spin up. Leave empty orbitals blank. Example: Neon (1s22s22p6) should be entered as 1s2 2s2 2p6 Write the electron configurations for the following ions using spectroscopic (spdf) and orbital box notation. (a) K+ Full electron configuration - (do not use noble gas notation) Orbital box notation: 1s 2 3s (b) Ti2+ Noble gas electron configuration - Orbital box notation: 3d Check & Submit Answer Show Approach

Answers

The full form of the electronic configurations are :

a) K⁺ = 1s² 2s² 2p⁶ 3s² 3p⁶

b) Ti⁺² = 1s² 2s² 2p⁶ 3s² 3p⁶ 3d²

a) the electronic configuration of potassium , K with atomic number 19 is as follows :

K = 1s² 2s² 2p⁶ 3s² 3p⁶ 4s¹

K⁺ ion losses one electron from the outermost shell.

K⁺ = 1s² 2s² 2p⁶ 3s² 3p⁶

b) the electronic configuration of titanium , Ti with atomic number 22 is :

Ti =  1s² 2s² 2p⁶ 3s² 3p⁶ 3d² 4s²

Ti⁺² = 1s² 2s² 2p⁶ 3s² 3p⁶ 3d²

Thus, The full form of the electronic configurations are :

a) K⁺ = 1s² 2s² 2p⁶ 3s² 3p⁶

b) Ti⁺² = 1s² 2s² 2p⁶ 3s² 3p⁶ 3d²

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an optically active compound with molecular formula c8h14 undergoes catalytic hydrogenation to give an optically inactive product. which of the following structures are consistent with all the data? compound a is a 6 carbon ring with a wedged bond to methyl on carbons 1 and 4 and a double bond between carbons 2 and 3. compound b is a 6 carbon ring with a wedged bond to methyl on carbon 1 and a dashed bond to methyl on carbon 4. there is a double bond betweeen carbons 2 and 3. compound c is a 6 carbon ring with a wedged bond to methyl on carbon 1 and a double bond between carbons 3 and 4. there is a methyl substituent on carbon 4. compound d is a 6 carbon ring with a wedged bond to methyl on carbon 1 and a dashed bond to methyl on carbon 5. there is a double bond between carbons 2 and 3. compound e is a 5 carbon ring with a double bond between carbons 1 and 2. there is a methyl substituent on carbons 1, 2 and 4. select the compounds that match the data.

Answers

Any compound that possesses a plane of symmetry in any conformation will be achiral. Achiral molecules are optically inactive.

(a) The reactant and the product formed on catalytic dehydrogenation of the reactant are as follows:

Reactant  Cat.[tex]H_{2}[/tex]  Product

Both the reactant and the product are optically inactive due to the presence of a plane of symmetry.

A compound may be optically active if it contains at least one asymmetric carbon atom or chiral center. Due to the presence of symmetry elements, the complex has no optical isomers. Optical isomerism is a form of stereoisomerism in which isomers have the same molecular and structural formula but different directions of rotation for linearly polarized light.

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what is the wavelength of 1.28x10^17HZ

Answers

Answer:
The wavelength of the wave is 2.34 pm.

Explanation:
It is required to find the wavelength of a 1.28 × 1017 H: wave. A wave moves with a speed of light. Speed of a wave is given in terms of wavelength and frequency.

an unknown sugar is found to have a molar mass of 180.18 g/mol. the sugar contains: 40 grams of c, 6.7 grams of h, and 53.3 grams of o. find the molecular formula of this sugar.

Answers

C6H12O6 is the molecular formula for 6-carbon monosaccharides, such as glucose, fructose, and galactose , is the molecular formula of this sugar .

What is molecular formula ?

A molecular formula indicates the type and number of atoms of each element present in a molecular compound. In many cases the molecular formula is the same as the molecular formula. The molecular formula for methane is CH4, and since it contains only one carbon atom, so is the molecular formula. However, sometimes the molecular formula is a simple integer multiple of the molecular formula. Acetic acid is an organic acid . Its molecular formula is C2H4O2. Glucose is a simple sugar that cells use as their primary source of energy. Its molecular formula is C6H12O6. The structures of both molecules are shown. Although they are very different compounds, they both have the same molecular formula CH2O.

We first need to find the empirical formula, which represents the smallest whole number ratio of elements in the compound. After we determine the empirical formula, we determine the empirical molar mass.

If the empirical molar mass is the same as the molecular molar mass, then the empirical formula is also the molecular formula.

If the empirical molar mass is not the same as the molecular molar mass, we divide the molecular molar mass by the empirical molar mass, which will give us the factor to multiply by the subscripts in the empirical formula. This will give the molecular formula.

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Match the formula to the correct name.

Column A
1.
Al2O3

:
Al2O3

2.
Al(HCO3)3

:
Al(HCO3)3

3.
Al2(CO3)3

:
Al2(CO3)3

Column B
a.
Aluminum oxide

b.
Aluminum carbonate

c.
Aluminum bicarbonate

Answers

[tex]Al_2O_3[/tex] is aluminum oxide

[tex]Al_2(CO_3)_2[/tex] is aluminum carbonate

[tex]Al(HCO_3)_3[/tex] is aluminum bicarbonate

Chemical formulas

The chemical formula of a compound is derived from the component elements in their symbolic forms. Thus, from the name of a compound, we are likely to know the component elements present in the compound.

In other words, aluminum oxide compounds will contain aluminum and oxygen, while aluminum carbonate compounds will contain aluminum and a carbonate ion.

The component elements will combine using their respective valence electrons to make bonds and produce compounds.

Thus, the chemical formulas given in the illustration and their matching names would be as follows:

[tex]Al_2O_3[/tex] = aluminum oxide

[tex]Al_2(CO_3)_2[/tex] = aluminum carbonate

[tex]Al(HCO_3)_3[/tex] = aluminum bicarbonate

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periodic trends worksheet 1. indicate whether the following trends increase or decrease as you move from left to right across the periodic table. a. atomic radius b. first ionization energy c. electronegativity (excluding noble gases) 2. indicate whether the following trends increase or decrease as you move down a column of the periodic table.

Answers

The atomic radius will be decreases then the first ionization energy will increases and electronegativity will increases from left to right across the periodic table

The horizontal rows in the periodic table are periodsSo when we move from left to right in the period the number of electron and effective nuclear charge increases due to which the following properties are increasesElectronegativity is an ability of an atom to attract shared pair of electron toward itselfFirst ionization enthalpy is an amount of energy required to remove an outermost electron from an isolated gaseous atom in its ground stateElectron affinity is an amount of energy released when an electron is added to a neutral atom or molecule to form a negative ionThe atomic radius of the element decreases on moving left to right in a period due to high nuclear charge electron is highly attracted toward the nucleus

So that atomic radius will be decreases then the first ionization energy will increases and electronegativity will increases from left to right across the periodic table

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In the chemical reaction, Fe(s) + 2HCl(aq) →FeCl2 (aq) + gas, the gas evolved is A helium. B oxygen.C chlorine.D hydrogen. ​

Answers

Answer:

The correct option is A Hydrogen

Explanation:

The correct option is A Hydrogen

Iron on reaction with hydrochloric acid, replaces the hydrogen from the acid and forms ferrous chloride. Hydrogen gas is evolved during the reaction in the form of bubbles.

Fe (s) + 2HCl (aq) → FeCl2 (aq) +H2 (g)

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