where nonmetallic wiring methods are subject to exposure to chemical solvents or vapors, they shall be inherently resistant to chemicals based upon their being for the specific chemical reagent.

Answers

Answer 1

Nonmetallic wiring techniques must be inherently resistant to chemicals based on their identification for the particular chemical reagent when they are exposed to chemical solvents or vapours.

Non-metals are minerals (non-metallic minerals) that are typically not used as a source of raw materials for the extraction of metal. The non-metal group, which is present in a wide range of minerals, is crucial economically. In actuality, aqueous solutions are ones whose solvent is water. According to their chemical makeup, organic solvents can be categorised into three groups: hydrocarbons, oxygen, and halogens. In the sections that follow, we'll discuss the many categories of organic solvents and give some instances of each.

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Related Questions

What is the percent by mass of oxygen in carbon dioxide CO2 )?; What is the percent by mass of carbon in carbon dioxide CO2 )?; How do you find the percentage of oxygen in CO2?; What is the percent by mass of carbon in 44g of CO2?; How do you calculate the percentage of oxygen?

Answers

As a result, oxygen makes up 72.7% of carbon dioxide, or 72.7 g of oxygen for every 100 g of carbon dioxide.

What is the oxygen content in carbon dioxide (CO2) in terms of mass percent (%)?

Carbon dioxide contains 72.71 percent oxygen by mass. Carbon dioxide has a molar mass of 44.01 grams per mole, compared to oxygen's molar mass of 15.999 grams per mole.

What is the change in CO2 emissions as a percentage?

Because to human activity, atmospheric CO2 has increased by 50% since the start of the industrial era (in the 18th century), making it 150% higher than it was in 1750. This is more significant than the end of the last ice age, which naturally occurred 20,000 years ago.

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classify the substances as atomic elements, molecular elements, molecular compounds, or ionic compounds.

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Noble gases, which make up the majority of atomic atoms, are the most stable chemical elements. Since they are independent, they can exist. To create compounds, they can also go through chemical reactions. On the other hand, molecular elements are chemical substances that have at least two atoms of the same chemical element in them.

Generally speaking, ionic bonding can be seen in compounds where a metal is bound to a non-metal or a semi-metal. Molecular compounds are those that are made up entirely of non-metallic elements or semi-metals and non-metallic elements.

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How many moles are in MgO?; How many moles are in 10g of MgO?; What is the grams of MgO?; How many moles are in 20 grams of MgO?

Answers

the correct answer is 20g of MgO contains 0.5 moles

Amount of MgO, w = 20g

Molar mass of MgO, M = (24+16)g mol-¹ = 40g mol-1

To find:

No. of moles of MgO in 20g, n = ?

We know that,

No. of moles = given mass(w) molar mass(M)

:: no. of moles in 20g of MgO, n = 20g 40gmol-1 → n = 0.5 mol

The molar mass of a complex mixture is determined by dividing its weight by the amount of that chemical, represented as the number of moles in the test, expressed in moles. The molar mass of a material is a bulk characteristic instead of a molecular one.

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FILL IN THE BLANK the bonds that link the base pairs in the dna double helix are ______ . the bonds that link the base pairs in the dna double helix are _______. ionic bonds ester bonds hydrogen bonds peptide bonds hydrophobic interactions

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the bonds that link the base pairs in the dna double helix are  peptide bonds hydrophobic interactions ionic  bonds ester bonds hydrogen bonds

A hydrogen bond is an electrostatic attraction force between such a hydrogen ion that's also tightly bonded to a more electron - deficient "donor" atom or group and then another electronegative atom with a single pair of electrons—the hydrogen bond electron donor. Hydrogen bonding isn't a sharing of electrons to a hydrogen atom, instead it is a type of dipole-dipole attraction between particles. The force of attraction between a hydrogen atom covalently bonded to a very electronegative including an N, O, or F atom and a very electronegative atom causes it. Because hydrogen has been attached to the a comparatively electronegative, and this electronegative atom is a hydrocarbons donation, the hydrogen bond is the strongest type of link between molecules. As a result, the resulting charge is more powerful.

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Which best describes hydrogen bonding?

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Dipole-dipole interactions between molecules that do not include a covalent bond to a hydrogen atom are known as hydrogen bonds. The attraction between two incredibly electronegative atoms, such N, O, or F, and a hydrogen atom that is covalently bonded to one of them causes it to occur.

Any electronegative atom, such as oxygen, chlorine, or fluorine, may make up the other atom, whereas one of the atoms is hydrogen. Between molecules or between two different molecules, hydrogen bonds can develop between the atoms.

How to determine hydrogen bonding?

Determine whether hydrogen bonds are likely by looking at the molecule's Lewis structure. The electronegative atom needs one or more unshared electron pairs and a negative partial charge, much like oxygen and nitrogen do.

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When sodium bromide, NaBr, dissolves in water, which of the following is formed in aqueous solution?
A) Na+ ---- H - O
|
H
B) Na+ ---- O - H
|
H
C) Br- ----- O - H
|
H
D) all of the above
E) none of the above

Answers

Br- ——- In an aqueous solution, O-H is generated as follows: Water and sodium bromide, NaBr, when dissolved,

The correct answer is C

How do valence electrons work?

The electrons in an atom's outermost energy level or shell are known as valence electrons. With six valence electrons, oxygen has two in the 2s subshell и four in the 2p subshell. The oxygen valence electron configuration can be written as 2s22p.

Are valence electrons typically 8 in number?

The octet rule states that in order for most biologically significant elements to remain stable, they must have eight electrons in the outermost shell. Despite having the 3n shell, which has a maximum capacity of 18 electrons, as their valence shell, some atoms can nonetheless be viable with an octet.

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Electrons added to atomic orbitals of the same energy will remain unpaired with parallel spins until the subshell is more than half-filled" is a statement of Select one: O a. Conservation of Energy O b. The Aufbau Principle O c. Hund's Rule O d. The Periodic Law

Answers

The correct option is (c) Hund's Rule.

Hund's rule: every orbital in a subshell is singly occupied with one electron before any one orbital is doubly occupied, and all electrons in singly occupied orbitals have the same spin.When assigning electrons to orbitals, an electron first seeks to fill all the orbitals with similar energy before pairing with another electron in a half-filled orbital. Atoms at ground states tend to have as many unpaired electrons as possible. In visualizing this process, consider how electrons exhibit the same behavior as the same poles on a magnet would if they came into contact; as the negatively charged electrons fill orbitals, they first try to get as far as possible from each other before having to pair up.Electrons are negatively charged and, as a result, they repel each other. Electrons tend to minimize repulsion by occupying their own orbitals, rather than sharing an orbital with another electron. Furthermore, quantum-mechanical calculations have shown that the electrons in singly occupied orbitals are less effectively screened or shielded from the nucleus.

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Selective Uptake and Gas Transport in Chemically Modified PIMs

Answers

Selective uptake is the procedure with the aid of using which membranes in cells decide what molecules can cross in and what molecules can exit of a cell.

The studies aimed to expand chemically changed PIM-1s to be used in adsorption and fueloline separation processes. In particular, the nitrile institution in PIM-1 became transformed to numerous one of a kind purposeful organizations to control the interplay capacity of PIM-1 with one of a kind species. Synthesis of PIM-1 became done with the aid of using one of a kind methods, the usage of each the low (72h, 65 °C) and the excessive temperature (forty min, 160 °C) methods.

The response led to a aggregate of hydrolysis products. The composition of the polymer has a profound impact at the very last overall performance of the polymer. Powder samples of hydrolysed PIMs had been used withinside the studies. The discount of nitrile to number one amine became done the usage of borane dimethyl sulphide complex, ensuing in amine PIM-1.

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From your test data, list general properties that can be associated with each type of bonding in a solid.

Answers

Answer:

it is a soild only

polymer powders are usually blended with to create a wide range of shades from white to jet black.

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Polymer powders are usually blended with pigments and colorants to create a wide range of shades from white to jet black.

A polymer is a substance together with very large molecules referred to as macromolecules, composed of many repeating subunits. Due to their vast spectrum of homes, both synthetic and natural polymers play vital and ubiquitous roles in regular lifestyles.

Products made from polymers are all around us: garb made from synthetic fibers, polyethylene cups, fiberglass, nylon bearings, plastic bags, polymer-primarily based paints, epoxy glue, polyurethane foam cushion, silicone heart valves, and Teflon-covered cookware.

A number of the beneficial houses of diverse engineering polymers are excessive electricity or modulus-to-weight ratios, toughness, resilience, resistance to corrosion, lack of conductivity, color, transparency, processing, and coffee price.

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Which formula represents a molecular compound? A) Ar B) NaI C) N2O4 D) All of the above

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The remaining product, N2O4 N 2 O 4, is a superb illustration of the a molecular compound because it is made entirely of non-metal components.

A molecular substance can be identified by its formula, but how?

Typically, two or more non metallic components make up a molecular complex.Molecular compounds are termed using the stem of the first element's name plus the suffix -ide, followed by the second element.

An molecular compound example is what?

Chemical substances known as molecules or discrete molecules are known as molecular compounds.Examples include common compounds like water (H2O) & carbon dioxide (CO2)

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be able to use results of chemical reactions to idetnify unknown anionas, cations, or ionic compounds

Answers

Sodium hydroxide solution in the presence of 2M and ammonium hydroxides are used to identify cations (ammonia solution). Silver nitrate or lead nitrate solutions are used to test for anions such as halides.

What is an example of a cation?

An ion with one or more lost electrons and a huge gain charge is referred to as a cation. The cation of an element is smaller than that of the neutral atom due to the removal of one or more electrons to produce a cation. The following are some examples of cations: Calcium: Ca

A cation and an anion are what?

Ions with a positive charge are called cations. Ions with a negative charge are called anions. Ionic molecules or atoms are charged. A balanced atom will become a positive charges cationic if it loses one or even more electrons. An anion, which is negatively charged, forms when a balanced element gains one or more electrons.

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The correct question is :

How can you identify cations and anions in an unknown solution?

Why can't we just go directly from grams of reactant to grams of product?; Why mass can neither be created nor destroyed in a chemical reaction?; What is the principle that states that matter is not created or destroyed?; When two substances create a solution what happens to its mass?

Answers

The net change in mass between the reactants and products before and after a chemical reaction is zero, according to the rule of conservation of mass. This implies that mass cannot be produced or destroyed.

What are the names of the four chemicals?

Intermetallic compounds are held together by metallic bonds, ions are held together by ionic bonds, molecules are held together by covalent bonds, and coordination complexes are held together by coordinate covalent bonds.

What exactly is a chemical?

Every molecule that receives just an analytical grade is considered to be a chemical. Therefore, to put it another way, a chemical always contains the same "substance." There are several chemicals found in natural things like water.

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Which of the following features of a 1H NMR spectrum give useful information about the structure of a compound? Choose all answers that apply.
----------------------------------------
The spin-spin splitting of signals
The number of the signals
The area under the signals
The signal distance above the baseline
The chemical shift of the signals

Answers

The number of the signals

The chemical shift of the signals.

The spin-spin splitting of signals.

Count how many signal sets you have.

• This will tell you how many types of hydrogen-bearing carbons you have. Hydrogens attached to symmetry-equivalent carbons will give equivalent signals) . If you have asymmetric looking signals, there is a good chance that two or more different

signal sets may be overlapping

Check the integration of each signal set.

• 3HCH3 group 2HCH2 group 1HCH or OH group.The above are true if there isn’t any accidental overlapping. Clean CH3 or CH2 signal sets will normally have reasonable shape symmetry.Effective recognition and integration of signal sets can help you know how many CH3’s and

CH2’s you have in your molecule

Check diagnostic “chemical shift” windows of the lines

• Use yes-or-no checklist regarding the presence of key functional groups.Things can get more complicated if two or more functional groups are both affecting a common

signal set.Chemical shift information can quickly tell you whether hydrogens are attached to arenas or

alkenes, and tell whether a CH2 or CH3 or CH signal set is attached to a single bond oxygens or

a carbonyl or an aromatic.

The splitting (number of lines) in each signal set

• The splitting provides information about what is connected to a given carbon

a. N lines N-1 “neighbor” H’s (when working from spectrum to structure)

b. N neighbors  N+1 lines (when predicting spectrum from structure)

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Which answer choice number matches the rate law expression for the reaction? (I'm struggling with differential rate law equations. Question and more information is on picture)

Answers

The correct rate law of the reaction is depicted by the expression that has been shown in option 4.

What is the rate law?

We know that the rate law has to do with the expression that shows how the reaction is carrying on. In this case, we can see that the reaction is occurring between ammonia and boron fluoride.

The rate law would show us the individual order of reaction in each of the reactants that are in the reaction. As such, we can see that the correct rate law shows the changes in the concentration of the species has shown in the table.

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Sixty-five liters of liquid ethanol at 70.0 derajat celcius and 55 L of liquid water at 20.0 derajat celcius are to be mixed in a well-insulated flask. The energy balance for this constant pressure process is Q=ΔH.
a) Neglecting evaporation and the heat of mixing, estimate the final mixture temperature. b) If the experiment were actually performed and the final mixture temperature were measured, it would almost certainly not equal the value estimated in Part (a). List as many reasons as you can to explain the observation. (there are at least seven of them, most involving approximations made in the estimation.)

Answers

The temperature that is required is 44.3 celcius in the Sixty-five liters of liquid ethanol at 70.0 celcius and 55 L of liquid water at 20.0.

Here we have the 75 L of ethanol;

789 * 1 mol /46.07 = 1284 mol of ethanol.Heat required = Q= 4H = mT1/T2Q =4U=4HT=44.3 celsius.Mixing the solution may have an effect on the very last temperature.Heat loss to the outdoor of the system (now no longer adiabatic)Evaporation of the drinks will have an effect on the very last temperature.Heat capability of water won't be constant.There wherein each systematic and random mistakess that came about at some stage in the test along with errors in size of temperatures and volume. It also can be the shortage of accuracy and precision of the researcher.

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place the following substances in order of increasing boiling point. ch3ch2ch3 ch3och3 ch3ch2oh ch3ch2ch3 < ch 3och 3 < ch 3ch 2oh ch 3ch 2oh < ch3ch2ch3 < ch 3och 3 ch 3ch 2oh < ch 3och 3 < ch3ch2ch3 ch 3och 3 < ch3ch2ch3 < ch 3ch 2oh ch3ch2ch3 < ch 3ch 2oh < ch 3och 3

Answers

The substances in the increasing order of boiling point are

CH3CH2CH3<CH3OCH3<CH3CHO<CH3CH2OH

What is the boiling point of a compound?

The boiling point of organic compounds can reveal vital details about their structural makeup and physical features. The boiling point of a substance aids in identifying and describing it. When the air pressure and the vapour pressure of a liquid are equal, the liquid boils. The kinetic energy of a molecule affects vapour pressure.

Despite having similar molecular weights across the board, CH3CH2OH exhibits the most intermolecular h-bonding, giving it the greatest boiling point.

Lowest boiling point for CH3CH2CH3 due to weak van der Waals forces. Furthermore, CH3CHO has a higher boiling point than CH3OCH3 because it exhibits more interactions between dipoles.

Therefore the order of increasing boiling point goes CH3CH2CH3<CH3OCH3<CH3CHO<CH3CH2OH

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A 20.00 mL sample of aqueous oxalic acid, H2C2O4 was titrated with a 0.09113 M solution of
potassium permanganate, KMnO4:
2????????????4- ( (????????) + 5 H2????2????4 (????????)+ 6 H+ (????????) → 10 ????????2(????) + 2 ????????2+ (????????) + 8 H2???? (ℓ)
A volume of 23.24 mL was required to reach the end point. What is the oxalic acid molarity?

Answers

The molarity of the oxalic acid solution titrated with the potassium permanganate solution is 0.053 M

To determine the molarity of the solution, stoichiometric relationships and rules of three are used.

Balanced equation of the reaction

2 KMnO4 + H2C2O4 → 2 CO2 + K2O + 2 MnO3 + H2O

Determination of moles of KMnO4 used

If there are 0.09113 mol of KMnO4 in 1 liter of solution then in 0.2324 liters there are:

X moles of KMnO4 = 0.02324 x 0.09113 x 1

X moles of KMnO4 = 0.0021 mole

Stoichiometric calculation of moles of oxalic acid

If 2 mol KMnO4 combines with 1 mol H2C2O4 then 0.0021 mol KMnO4 combines with:

X mol H2C2O4 = 0.0021 mol KMnO4 x 1 mol / 2 mol KMnO4

X mol H2C2O4 = 0.0021 x 1 / 2 = 0.001 mol

Calculation of the molarity of the oxalic acid solution

If there are 0.001 mol H2C2O4 in 0.02 liters of solution then in 1 liter there are:

X mol H2C2O4 = 1 x 0.001 / 0.02 = 0.053

Therefore, the molarity of H2C2O4 is 0.053M

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A compound with a molecular formula C10H12O2 has the following HNMR spectrum. Which of the following structures is consistent with this spectrum?

Answers

The HNMR spectrum of a substance with the chemical formula C10H12O2 is shown below. This spectrum is compatible with the III structure.

A formyl functional group is created when a carbonyl is joined to hydrogen. When a formyl group is attached to a R group, the result is an aldehyde. Butyraldehyde, often known as butanal, is an organic compound with the formula CH3(CH2)2CHO. This chemical is a derivative of butane's aldehyde. It smells terrible and is a combustible, colourless liquid. You discover X, a brand-new chemical. Observed proton and lR NMR spectra reveal the chemical formula to be C9H120, and mass spectroscopy confirms this.

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in general, beads are the ideal mix ratio for working with monomer liquids and polymer powders.

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For working with monomer liquids and polymer powders, medium beads are the ideal mix ratio.

A monomer is a molecule of any one of a group of primarily organic chemicals that can combine with other molecules to generate much larger molecules, or polymers. A monomer's ability to form chemical bonds with at least two other monomer molecules, known as polyfunctionality, is its primary characteristic. Bifunctional monomers can only create linear, chain-like polymers, whereas higher functional monomers can create cross-linked, network polymeric products.

functional group: polymers and monomers

functional group: polymers and monomers

Monomers that have either a double bond between two atoms or a ring of three to seven atoms are known to undergo addition reactions; examples include styrene, caprolactam (which produces nylon-6), butadiene, and acrylonitrile (which copolymerize to form nitrile rubber, or Buna N).

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What term describes fog?; What is the solute of fog?

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The term aerosol can be used to describe fog, in which the solute is water (H₂O).

An aerosol is a homogeneous colloidal solution in which the dispersion medium or solvent is a gas and the dispersed medium or solute is a liquid. In this case, the dispersion medium is air and the dispersed medium is water.

A fog usually occurs when the relative humidity approaches 100%. In case of fog, this water is often found in the form of droplets which sometimea precipitates as water droplets, often known as dew. In colder regions, the water is sometimes present as tiny ice crystals.

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Fill in the Blanks Type your answers in all of the blanks and submit While we haven't really discussed this yet, there is actually a mathematical relationship that links wavelength and energy. This is a very famous equation and takes the form E = hc/ 6.63 x 10-34 and c= the speed of light = 3 x 108 m/s. where h = planks constant = Use this equation to determine the Energy of the following photons: Type your answer here 1. A photon with a wavelength of 500 nm. E = Type your answer here J 1. A photon with a wavelength of 840 nm.

Answers

A photon with a wavelength of 500 nm. E = 3.98 X 10-13 J ~ 4X 10 J,A photon with a wavelength of 840 nm lambda is 986.241

Given: Energy (E) =hc/lambda, where, h = planck's Const. = 6.63 X 10 34 J sec, C= Speed of light= 3x 108 ms, Wavelength (in m)= lambda

(i) d = 500mm = 500x109m E= 6.63 X 10-34 JS x 3x 108 ms-1 5 x 107  = 5x107 mT, E = 3.98 X 10-13 J ~ 4X 10 J. 2) lambda= 840mm = 840X109 m = 8.40x 107m 840X109 m = 8.40x 107m, E=  6·63× 10-34 JSX 3X 108 ms/8.40 X 10-7m=2.37X/0, (iii) Given: E=5-15 X 10-19 E = bcJ = 5-15x10 195 = 6·63x10-34×3×108 lambda  = 3.862 × 10 = 986.241. The wavelength refers to the distance among 2 sequential waves' intersection point. The term "corresponding points" describes two pts or particulate that are within the same phase, that is, pts that have finished exactly equal fragments of one‘s periodic motion. The distance among both identical points (adjoining crests) in adjoining cycles of the a sound wave transmitter perpetuated in space or through a wire is described as the wavelength. This distance is usually specified in wireless communication systems in metres (m), centimetres (cm), or millimetres (mm) (mm). Radio signals, light waves, and infra - red (heat) waves everybody has distinctive differences that they follow as they traverse space. Each wave has its own distinctive structure and length. The particular wavelength between peaks (high points).

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Temperature affects equilibrium in one direction or the other (depending on whether the system is exo or endothermic). Discuss.

Answers

Temperature is a factor that affects the equilibrium in a reaction, shifting to the right or left in endothermic or exothermic reactions if it increases or decreases.

The role of temperature in chemical reactions

When the temperature in a reaction system increases, an increase in the speed of the reaction is induced because there is an increase in kinetic energy in the molecules and they tend to collide with each other more frequently.

The relationship of temperature with the equilibrium and speed of a reaction is that it affects the kinetic energy of the molecules and this leads to an increase in the concentration of reactants or products by increasing the number of collisions between the molecules.

Therefore, temperature is considered as a catalyst reagent.

Effects of temperature on the endothermic reaction

In this type of reaction, if the temperature is increased, the equilibrium will shift to the right (more products, less reactants) and if it is decreased, to the left (more reactants, less products).

Effects of temperature on the exothermic reaction

Here if the temperature is increased the equilibrium moves to the left (more reactants less products). If the temperature is lowered, the equilibrium will shift to the right (more less reactive products).

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in both the structures shown, replacement of ha and hb, in turn, with an atom z will produce two different compounds that are diastereomers of each other. ha and hb are therefore diastereo -topic and will give nmr signals.

Answers

In both the structures shown, replacement of ha and hb, in turn, with an atom z will produce two different compounds that are diastereomers of each other. ha and hb are therefore diastereomer -topic and will give different or distinct nmr signals.

Stereoisomers that are not enantiomers or related as object and mirror images are known as stereoisomers. Diastereomers are not mirror images of one another and cannot be superimposed, in contrast to enantiomers which are. Diastereomers can differ in their reactivity and physical characteristics. They differ in their melting points, boiling points, and densities. There are at least two stereocenters there.

It is simple to mix up diasteromers with enantiomers. Three-bromo-2-butanol, for instance, has four steroisomers. SS, RR, SR, and RS are the four potential combinations (Figure 1). One of the molecules is both the diasteromer and the enantiomer of each of the other two molecules (SS is enantiomer of RR and diasteromer of RS and SR). SS's mirror.

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Which is the order from fastest to slowest for the rates of the SN2 reactions of these alkyl bromides with CH3S-/DMSO?
a. 1>2>3
b. 3>1>2
c. 2>3>1
d. 1>3>2

Answers

The order from fastest to slowest for the rates of the SN2 reactions of these alkyl bromides with CH3S-/DMSO is 2>3>1. Option C.

Primary alkyl halides undergo SN2 reactions faster than secondary and tertiary ones. Compound IV reacts faster in the SN1 reaction than in the SN2 reaction. This is due to the steric hindrance and difficult access of the nucleophile from the side opposite the leaving group.

The rate-limiting step in the reaction is the attack of the nucleophile on the substrate. Therefore, SN2 is easier to run against stronger nucleophiles. Since there are two molecules in the transition state, the reaction is a bimolecular reaction, indicated by the number 2 in the SN2 symbol. The kinetics of the SN2 reaction is first order within the substrate and first order within the nucleophile.

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calculate the theoretical oxygen demand (in mg/l) of a solution containing 450 mg of glucose (c6h12o6) in 2 liters of distilled water. (hint: write and balance the oxidation reaction of glucose) (4 pts)

Answers

The theoretical oxygen demand THOD=239.792 mg/L is given for the solution of 450 mg of glucose.

Theoretical Oxigen demand (THOD):

is the theoretical quantity of oxygen

required to oxidize the natural fraction of a

waste as much as carbon dioxide and water.

→ Csln = 450 mg C6H12O6 / 2 L H2O =225 mg/L sln.. mm C6H12O6 = 180.156 g/molbalanced reaction:C6H12O6+ 602 6CO2 + 6H2O mol C6H12O6 = 1 mol→ mass C6H12O6 (180.156 g/mol)(1 mol) = =180.156 gThe fee of ThOD is decided when180.156 g C6H12O6 devour mass O2 =.mm C6H1206 = 180.156 g/molbalanced reaction:C6H12O6+6O2 6CO2+6H2O mol C6H12O6 = 1molRightarrow massC6H12O6 = (180.156g / m * ol)(1mol) = 180.156 ghe fee of ThOD is decided when180.156 g C6H12O6 devour mass 02 =6(32) = 192 g Oxygen; then in an answer of225mg / L you have: → ThOD = (192/180.156)x 225mg / LThOD = 239.792mg / L.

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Decide whether or not each of the following metals dissolves in 1 M HCl. For the metals that do dissolve, write a balanced redox reaction showing what happens when the metal dissolves. Identify all of the phases in your answer.
A. Zn
B. Co
C. Na

Answers

All the mentioned metals, that is zinc, cobalt and nickel react with hydrochloric acid.

The chemical reaction is as follows -

Zn + 2HCl -> [tex] ZnCl_{2}[/tex] + [tex] H_{2}[/tex]

Co + 2HCl -> [tex] CoCl_{2}[/tex] + [tex] H_{2}[/tex]

2Na + 2HCl -> 2NaCl + [tex] H_{2}[/tex]

In these balanced redox chemical reaction, reactants are Zinc, Cobalt, Sodium and Hydrochloric acid. The products are [tex] ZnCl_{2}[/tex] represents zinc chloride, [tex] CoCl_{2}[/tex] represents cobalt chloride, NaCl represents sodium chloride and [tex] H_{2}[/tex] hydrogen.

The metals in the above reactions are in solid phase and react to release the hydrogen gas. The salts are also in solid form. However, the reaction between cobalt and hydrochloric acid leads no visible reaction.

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A sample of an unknown compound is vaporized at 150.°C . The gas produced has a volume of 960.mL at a pressure of 1.00atm , and it weighs 0.941g . Assuming the gas behaves as an ideal gas under these conditions, calculate the molar mass of the compound. Round your answer to 3 significant digits.

Answers

The molar mass of the unknown compound that vaporizes at 150 °C is  34.81 g/mol

What is the molar mass of a compound?

The molar mass of a chemical compound is defined as the mass of a sample of that compound divided by the number of moles in that sample. Its unit of measurement is grams per mole (g/mol) although in the International System of Measurements it should be kilograms per mole (kg/mol).

This is a property closely related to the relative molar mass of a compound and to the standard atomic masses of the constituent elements.

Determination of the molar mass of the unknown gas

To determine the molar mass of the gas, the ideal gas equation was used: PV = nrt, in which

P = Pressure

V = Volume

n = number of moles

R = Gas constant

t = temperature

But previously the moles of the gas are calculated

Calculate the moles of the unknown compound

Data

t = 150°C = 423.15K

V = 960ml = 0.96L

P = 1.00 atm

R = 0.082 L Atm / mol °K .

n = ?

PV = nrt

n = PV/rt

n=1. 0.96 / 0.082. 423.15

n = 0.96 / 34.7

n = 0.027 mole

Calculation of the molar mass of the unknown compound

M = m/n

M = 0.94 g/ 0.027 mol

M = 34.81 g/mol

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which of the following are potential safety concerns for this lab? two of the answer choices below are correct...select the two correct answers. (grading note: for this type of question, canvas will award points for correct selections and deduct points for incorrect selections. make sure you are focusing on the safety concerns for this specific experiment.) group of answer choices broken glassware caustic bases (such as naoh) organic solvents (such as acetone or toluene) open flames

Answers

Since the flame test in this experiment requires the use of heat. Consequently, two potential risks include glassware shattering during the flame test and open flames. The correct answers are a and e.

What is a flame test?

A qualitative test called the flame test is employed in chemistry to help identify or rule out the identity of a metal or metalloid ion present in an ionic compound. A distinctive color that can be seen with the eye may be released if the compound is placed in the flame of a gas burner.

Why do we do flame tests?

The flame test is used to visually identify a metal or metalloid ion that is unknown.

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What does pH Measure? | What is the pH of water?

Answers

The pH of a solution gauges how acidic it is. The pH of pure water is 7.

The pH scale is used in chemistry to determine whether an aqueous solution is basic or acidic. The term pH originally meant "potential of hydrogen." Acidic solutions often have lower pH values than basic or alkaline solutions.

Water is neither acidic nor basic, having a pH of 7, which indicates that it is neutral. The scale goes from 0 (extremely acidic) to 14 (very alkaline) (very basic). Water often falls between the range of 6.5 and 8.5 on the scale.

Pure water has a pH of seven. In pure water, the concentration of the hydrogen ion and the hydroxide ion is equal, making it neutral.

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