Although BH3 and CH2O have similar shapes, one is polar and the other is non-polar. Explain why.

Answers

Answer 1

BH3 has trigonal planer geometry with zero net dipole moment, hence it is non-polar.

Each B-H bond in BH3 is polar / forms a dipole because the B and H atoms have different electronegativities.

On the other hand, CH2O is having a similar structure but possesses dipole moment because of the presence of polar C=O group, thus the entire molecule is polar.

That is why despite the fact that both BH3 and CH2O have similar structure, but one is polar whereas other is non-polar.

The hydrogen side of the molecule will end up slightly positive. So that is why these two. That is why the first one is non polar because of the symmetry. And the second one is polar because it is a symmetrical it does not have that symmetry that we see in the first molecule.

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Related Questions

HI is an Arrhenius acid because A) it is a polar molecule. B) it can dissolve in water. C) it produces hydronium ions in solution. D) it produces hydroxide ions in solution.

Answers

According to Arrhenius concept a substance that dissociate into water and produce H+ ion or H3O+ ion or proton in the solution called acid.

As HI dissociate into H3O+ and I- ion .

HI(g) + H2O(l) -----> H3O+(aq) + I-(aq)

Thus it gives H3O+ ion .

Therefore, HI is a acid.

Thus option-C is correct.

One or more of the protons in Bronsted acids are released as hydrogen ions, which interact with water molecules.

Lewis acids release hydrogen ions from water after removing one or more hydroxyl ions, which again create hydronium ions.

A weak acid produces hydronium ions when it partially interacts with water.

Water completely deprotonates a strong acid.In water, a weak acid only partly deprotonates.Strong acids that are commonly found in water include HBr, HCl, HI, HNO3, HClO4, and H2SO4.

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most fertilizers consist of nitrogen-containing compounds such as NH3,CaCN2,KNO3 and (NH4)2SO4. plants use the nitrogen content in these compounds for protein synthesis. calculate the mass percent composition of nitrogen in CaCN2

Answers

CaCN2 = 35%

To calculate the mass percent of element in a given compound, we use the formula:

[tex]\text { Mass percent of nitrogen }=\frac{\text { Mass of nitrogen }}{\text { Mass of } CaCN2}=\frac{28}{80} \times 100=35 \%[/tex]

What is the mass percent?

A mass percent is a technique of or expressing a concentration or a factor in a combination. A degree could be manifested using the mass percent. The mass percentage of the solute consisted in a given mass of solution can be used to describe the solution composition.

What is solute?

A solute is a matter that is dissolved in a mixture. A solute is called a substance. While preparing a solution, there are three factors involved: the solute, the diluent and the resulting solution. A solute is dissolved in a diluent, and one or more solvents or solutes form a solution.

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a battery harnesses a chemical reaction to extract energy in the form of useful electrical work. (a) a certain battery runs a toy truck and becomes par- tially discharged. in the process, it performs a total of 117.0 j of work on its immediate surroundings. it also gives off 3.0 j of heat, which the surroundings absorb. no other work or heat is exchanged with the sur- roundings. compute q, w, and du of the battery, making sure each quantity has the proper sign. (b) the same battery is now recharged exactly to its origi- nal condition. this requires 210.0 j of electrical work from an outside generator. determine q for the battery in this process. explain why q has the sign that it does.

Answers

The values of ΔU , w and q are -220.0 J, -117.0 J and -3.0 J respectively. As the heat is gained by the system it has a positive sign. Therefore, the value of q is 10.0 J.

A.

Here, battery is the given system. It does work to run the toy truck. Hence work ( w ) is done by the system, therefore, it's sign should be negative.

Battery releases heat to the surrounding, hence, the sign of heat ( q ) is also negative.

Write the mathematical expression for First law of thermodynamics.

ΔU = q + w

Substitute -3 J for q and -117.0 J for w to calculate ΔU of the battery.

ΔU  = (-117.0 J)+(-3.0 J)

-220

That means, in this process the internal energy of the system decreases by 220 J.

Therefore, the values of ΔU , w and q are -220.0 J, -117.0 J and -3.0 J respectively.

B.

Now, the battery is recharged to its original condition. As the system has lost 220 J of energy so it

will have to gain 220 J of energy to reach its original condition.

Since, work is done on the battery by an external generator, w will have a positive sign.

Write the mathematical expression for First law of thermodynamics.

ΔU = q + w

Solve for q.

q = ΔU - w

Substitute +220.0 J for ΔU and +210.0 J for w to calculate the value of q.

q = (220.0 J) -(210.0 J)

= 10.0 J

As the heat is gained by the system it has a positive sign. Therefore, the value of q is 10.0 J.

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Question 45 4.00 moles of sodium have a mass of 0 11.08 0 44.03. 92.03. 4603

Answers

4.00 moles of Sodium have a mass equivalent to 92 grams.

Sodium contains 12 neutrons and 11 protons and has a mass number of 23, which means one mole (6.022 X 1023) of sodium have a mass of 23 grams

Atomic mass of Sodium =23 grams/mol

Mass of 1.00 mole of sodium = 23 grams

Mass of 4.00 moles of sodium = 4 X 23 grams

            = 92 grams

Therefore, 4.00 moles of Sodium have a mass equivalent to 92 grams.

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Which of the following aqueous solutions has highest osmotic pressure at 25 degree Celsius?
A. glucose
B. urea
C. CaCl2
D. KCl

Answers

C. CaCl2 following aqueous solutions has highest osmotic pressure at 25 degree Celsius

How is osmotic pressure determined?

Temperature and concentration both have an impact on osmotic pressure. Temperature and solute concentration both have an impact on how much pressure is generated when water moves through a membrane. Osmotic pressure rises with temperature and concentration.

By controlling the quantities of electrolytes present in the three main fluids of blood plasma, extracellular fluid, and intracellular fluid, mammalian systems have developed to control osmotic pressure. The volume of these fluid compartments may fluctuate as a result of water movement caused by osmotic pressure across membranes.

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Explain why Group 1 metals such as potassium should not be used in displacement reactions with Copper sulphate solution

Answers

Group 1 metals such as potassium should not be used in displacement reactions with Copper sulphate solution because Copper cannot displace potassium from a compound because copper is less reactive than potassium.

What is displacement reaction?

A displacement reaction, also known as single replacement reaction or exchange reaction, is described as a chemical reaction in which one element is replaced by another in a compound.

Most group 1 elements react with oxygen from the air to make metal oxides.

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Which of the following molecules is polar? A. CO2 B. H2C=CH2 C. H2S D. BeCl2 E. BF3

Answers

A. Polar CO2 molecules.

How can you tell if something is polar and nonpolar?

Non-polar molecules lack unshared electrons and are symmetrical.

Polar molecules were asymmetric, either having atoms with differing electronegativities bound together or having single pairs of electrons on the a core atom.

What does the term "polar" and "nonpolar" mean?

Because they not dissolve into water and nonpolar molecules are insoluble in water, fats, oil, gasoline, and other non-polar molecules are referred to as such.On the basis of how the hydrogen and oxygen atoms are arranged within it, glucose is yet another illustration of a polar molecule.

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Select all the intermolecular forces associated With NaCl? a)Ion-dipole b) London Disperson c)H-bonding d)Dipole-dipole

Answers

the intermolecular forces associated With NaCl Is option (a)  )Ion-dipole.

Ion-ion forces: Intermolecular force between two ions with diametrically opposed charges. like NaCl.

In solutions when an ionic chemical is dissolved into a polar solvent, such that of a solution of table salt (NaCl) in water, ion-dipole forces are at play. Note that because they include two distinct species, these must be solutions and not pure substances (an ion and a polar molecule). Intermolecular forces may be classified into four categories: dispersion, dipole-dipole, hydrogen bonding, and ion-dipole. Ion-dipole interaction is the most important and powerful intermolecular force that exists between sodium chloride (NaCl) and carbon monoxide (CO) It lacks both hydrogen bond acceptors and donors (hydrogens bound to O, N, or F) (O, N or F). Therefore, it is unable to establish hydrogen bonds with water. It cannot be solved at all.

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Draw the Lewis structure for BrF with an arrow representing the dipole moment. Refer to Figure 9.10 to estimate the percent ionic character of the BrF bond.

Answers

If we examine the central Br atom in the BrF Lewis structure, we find that it has 5 unbonded electrons. In other words, it has two lone pairs of electrons in Br and one unpaired electron.

There are six free electrons. Each fluorine atom contains three lone pairs of electrons, or three fluorine atoms in total. Brf Lewis octet rule structure. Lewis structures, often referred to as Lewis dot formulas, Lewis dot structures, electron dot structures, or Lewis electron dot structures (LEDS), are diagrams that depict the interactions of atoms in molecules as well as any lone pairs of electrons that may be present. The elementary electric charge of the electron, a subatomic particle, is a negative one.

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10 The labels from bottles of hydrochloric acid, sodium hydroxide and potassium carbonate solutions have fallen off. Using only three test tubes and three pieces of magnesium metal, describe how you could find out what was in each bottle. Include any safety precautions you need to take in your answer. [Total ?]​

Answers

To determine the contents of the bottles, the following steps can be taken:

Safety precautions: Wear gloves and goggles to protect against potential chemical spills or splashes.Add a small amount of the contents of one bottle to a test tube and label it "A." Add a small amount of the contents of the second bottle to a second test tube and label it "B." Add a small amount of the contents of the third bottle to a third test tube and label it "C."Place a piece of magnesium metal in test tube "A." Observe any reaction. If there is no reaction, the contents of bottle "A" are not hydrochloric acid or sodium hydroxide. If there is a reaction, proceed to the next step.Place a piece of magnesium metal in test tube "B." Observe any reaction. If there is no reaction, the contents of bottle "B" are not hydrochloric acid or sodium hydroxide. If there is a reaction, proceed to the next step.Place a piece of magnesium metal in test tube "C." Observe any reaction. If there is no reaction, the contents of bottle "C" are not hydrochloric acid or sodium hydroxide. If there is a reaction, the contents of the bottle are either hydrochloric acid or sodium hydroxide.To determine which of these two substances is present, add a small amount of the contents of bottle "A" to a test tube with a piece of magnesium metal. If there is no reaction, the contents of bottle "A" are hydrochloric acid. If there is a reaction, the contents of bottle "A" are sodium hydroxide.Repeat this process for bottles "B" and "C" to determine their contents.Dispose of the chemicals safely and wash the test tubes thoroughly before discarding.

What is the molecular geometry of the SBr6 molecule? a)octahedral b)trigonal bipyramidal c)tetrahedral d)bent e)trigonal pyramidal

Answers

The molecular geometry of the SBr6 molecule is a) octahedral.

Molecular Geometry:

Molecular geometry is the three-dimensional arrangement of atoms that make up a molecule. This includes not only the general shape of the molecule, but also bond lengths, bond angles, torsion angles, and all other geometric parameters that determine the position of each atom.

Molecular structure influences several properties of matter, such as reactivity, polarity, phase, color, magnetism, and bioactivity. The bond angles an atom falls into are only slightly dependent on the rest of the molecule. That is, they are mostly local and can therefore be understood as transferable properties.

Octahedral Molecular geometry:

The concept of octahedral coordination geometry was developed by Alfred Werner to describe the stoichiometry and isomerism of coordination compounds.

In chemistry, the octahedral molecular geometry, also called the tetragonal bipyramid, consists of six atoms or groups of atoms or ligands arranged symmetrically around a central atom and defining the vertices of the octahedron. represents the shape of a compound with The octahedron has eight faces, so the prefix is ​​okta.

This is because the molecule is composed of 6 Br atoms that are arranged symmetrically around the central S atom, forming an octahedron.

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A silver-colored metal is placed in a blue solution. After a few minutes, a red coating forms

on the metal and the solution turns clear. Which best describes the products of this

reaction?

Answers

The reaction when silver metal is coated with red color after the reaction is known as displacement reaction.

The silver colored metal is coated with red color after reaction so the coating is a single element which is displaced by the silver colored reactant and the silver colored metal will form a compound because it displaces the red colored metal. So the products are a single metal and a compound and the reaction is displacement reaction.

Thus, the reaction describes a displacement reaction.

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if the reaction begins with 95.00 grams of cr2o3 and 183.0 grams of silicon, how many grams of the excess reactant will be used?

Answers

The limiting reactant is the one that is used up first and sets a limit on the quantity of product(s) that can be produced. Calculate the moles of each reactant present and contrast this ratio with the mole ratio of the reactants in the balanced chemical equation to determine the limiting reactant.

When a chemical reaction is complete, the limiting reagent—also known as the limiting reactant or limiting agent—is the reactant that has been completely consumed. Since the reaction cannot proceed without this reagent, the amount of product that can be produced is constrained. Excess reagents or excess reactants are any reagents that are present in amounts greater than those necessary to cause a reaction with the limiting reagent (sometimes abbreviated as "xs"). Since the amount of product produced when the limiting reagent interacts entirely is defined as the theoretical yield, the limiting reagent must be identified in order to calculate the percentage yield of a reaction. There are various equivalent techniques to determine the limiting reagent and assess the excess amounts of other reagents given the balanced chemical equation that describes the reaction.

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Prediction: If an increase in temperature increases the rate of evaporation of
water, then an increase in average daily temperatures will decrease lake water
levels over a two-year period.
Which of the following best describes this prediction?
OA. The prediction is useful because it specifies what observations
will be made to test a hypothesis.
OB. The prediction is not useful because scientists are skeptical of
anyone who claims to see into the future.
OC. The prediction is useful because it proves that the hypothesis is
true before any data have been collected.
OD. The hypothesis is not useful because it is too long as a sentence
and therefore difficult to read.

Answers

A. The prediction is useful because it specifies what observations will be made to test a hypothesis.

A prediction is a statement about what is expected to happen based on a particular hypothesis. In this case, the prediction is that an increase in average daily temperatures will decrease lake water levels over a two-year period. This prediction is useful because it specifies a clear and specific observation that can be made to test the hypothesis that an increase in temperature increases the rate of evaporation of water.

C4H6 VSEPR shape and Hybridization of central atom CH3COOH VSEPR shape and Hybridization of central atom CH3CH2OH VSEPR shape and Hybridization of central atom

Answers

The core of methanol, CH3CH2OH, has three atoms: two C and one O. Each internal (centre) atom's molecular (and electron-domain) shape is assigned separately. Tetrahedral geometry surrounds the first C. Tetrahedral geometry surrounds the second C.

What is C2H5OH's Vsepr shape?

According to the VSEPR theory, a molecule with an AX4 designation has a tetrahedral form, making ethanol or C2H5OH a tetrahedral molecule.

What are the CH3CH2OH bond angles?

The following diagram depicts the structure of ethanol (CH3CH2OH C H 3 C H 2 O H). This demonstrates that the oxygen atom is surrounded by two bonding groups and two lone pairs. The geometry of the electron would then be tetrahedral. Therefore, the carbon, oxygen, and hydrogen link should have a theoretical bond angle of around 109.5 degrees.

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What is the name of the compound: CoN: #spelling counts! Answer: Name the following acid: HI

Answers

Iodides are made by reacting hydrogen iodide (HI), also known as hydroiodic acid, with metals or their oxides, hydroxides, and carbonates.

The acid in this instance is Hydroiodic acid (HI) entirely dissociates in water, making it a powerful acid. Iodine is bigger than hydrogen, which is smaller. As a result, the electron cloud's overlapping is likewise not very appropriate. This results in an extremely low binding energy between hydrogen and iodine. An aqueous solution of hydrogen iodide is known as hydroiodic acid (or hydriodic acid). It is a potent acid that totally ionizes in aqueous solutions. It has no color. Concentrated solutions typically range in HI from 48% to 57%.

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NMR spectroscopy, or ____magnetic resonance spectroscopy, is a very important tool in the determination of organic structures. this technique relies on the interaction of a particular nucleus with a____ field followed by absorption of energy of a specific____ , depending on the chemical environment of the nucleus.

Answers

A crucial technique in identifying organic compounds is NMR spectroscopy, often known as magnetic resonance spectroscopy. dependent on the chemical environment of the nucleus, followed by the absorption of energy at a certain frequency, depending on the chemical environment of the nucleus.

Why would someone utilize NMR spectroscopy?

The study of the physical, chemical, and biological characteristics of matter is done using NMR spectroscopy. It helps chemists identify and characterize molecules.

How is the identification of organic compounds accomplished using NMR spectroscopy?

In order to understand unknown organic compounds, nuclear magnetic resonance (NMR) is a crucial technology. But it has a low sensitivity, and there are numerous elements without an isotope that can be seen by NMR. A comprehensive structural elucidation therefore requires a variety of spectroscopic techniques.

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Perform at ta tion using half life Question e expressions can be derived from H Select the correct answer below
O rate laws integrated rate laws
O relative rate expressions
O none of the above
MORE INSTRUCTION SUBMIT Content Anaswa

Answers

Rate law expression is in the differential form while integrated rate law expression using integral calculus, where concentration of reactants and time are interrelated, so half life can be derived from integrated rate law. Option is (B)

A rate law demonstrates the relationship between reaction rate and reactant concentration. In general, the rate law for a reaction like aA products takes the form rate = k[A]n, where k is the proportionality constant referred to as the rate constant and n is the order of the reaction with respect to A. Rate laws can be represented as an integrated rate law or a differential rate law, which describes the actual reactant or product concentrations as a function of time. A differential rate law describes the change in reactant or product concentrations as a function of time.

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2. How many valence electrons does each atom have?
Sodium:_______
Chlorine:______

Answers

Sodium has one valence electron,Chlorine has 7 valence electrons

Answer:

Sodium Valence Electrons: 1

Chlorine Valence Electrons: 7

Explanation:

Sodium has 1 valence electron while Chlorine has 7 valence electrons.

nuclear decay occurs according to first-order kinetics. a nuclide decays in 23.0 minutes from 12.9 g to 2.04 g. what is the rate constant for the nuclide?

Answers

The nuclide's rate constant is 0.0803 min-1 assuming first-order kinetics governs nuclear decay. A nuclide degrades from 12.9 g down 2.04 g in 23.0 minutes.

Exactly why do nuclear atoms degrade?

When a nuclear configuration with a lower energy is available to which an atom can transition, the atom radioactively decays. It's not the product of the atom aging or changing over time; rather, the actual decay occurrence of a single atom occurs arbitrarily.

How is nuclear decay a reaction?

Nuclear reactions can be divided into two categories: nuclear transmutation reactions and nuclear decay reactions. An unstable nucleus emits while undergoing nuclear decay, also known as radioactive decay, when it becomes the nucleus of one or several other elements.

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Classify each of the following diatomic species as ionic, polar covalent or nonpolar covalent. Bra CsBr NaCl Cao HCI 02 KE HBr

Answers

The classification of each of the following diatomic species as ionic, polar covalent, or nonpolar covalent is given below:

Br₂ - nonpolar covalentCsBr - ionicNaCl - ionicCaO - ionicHCl -  polar covalentO₂ - nonpolar covalentKF - ionicHBr -  polar covalent

What are diatomic species?

Diatomic species are species that are composed of two atoms alone which may be the same or different atoms.

When the two atoms of a diatomic species are of the same element, the species formed is a molecule of the element.

When the two atoms of a diatomic species are of different elements, the species formed is a molecule of a compound.

The nature of the given diatomic species is determined by the atoms present in the diatomic species.

If the atoms have similar electronegativities, a non-polar covalent species are formed.

If the atoms have different electronegativities, polar covalent species or ionic species are formed.

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CO₂

How to find the chemical or iupac name

Answers

Answer: Carbon oxide

Explanation:

Acetaminophen, better known as paracetamol, has the following Lewis structure: (a) What are the approximate values of the bond angles labelled 1, 2, and 3? (b) What hybrid orbitals are used about the central atom of each of these angles? (c) How many bonds are in the molecule?

Answers

(a) What are the approximate values of the bond angles labelled 1, 2, and 3?

Bond Angle 1 = 105°

Bond Angle 2 = 120°

Bond Angle 3 = 120°

(b) What hybrid orbitals are used about the central atom of each of these angles?

Oxygen at 1 = [tex]sp^{3}[/tex] = Bent

Carbon at 2 = [tex]sp^{2}[/tex] = Trigonal Planar

Carbon at 3 = [tex]sp^{2}[/tex] = Trigonal Planar

(c) How many bonds are in the molecule?

Number of bonds = 20

Molecule : Molecules are made up of one or more atoms. The smallest particle of a substance that has all of the chemical and physical properties of that substance. For example, oxygen atom is represented as O, oxygen molecule is represented as [tex]O_{2}[/tex].

Molecules are of 3 types : Molecule of an atom, Molecule of an element and Molecule of a compound. There are four major classes of large biological molecules—carbohydrates, lipids, proteins, and nucleic acids.

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Why is helium not the most electronegative elemnt?

Answers

[tex]\huge\underline{\red{A}\green{n}\blue{s}\purple{w}\pink{e}\orange{r} —}[/tex]

It has no electronegativity because it is a noble gas.

Explanation:

Electronegativity describes an atoms relative tendency to attract a pair of electrons in a molecule. It can be described as a property of an atom within a molecule. As helium is a noble gas it will not react to form molecules and will thus not be in a situation where it would attract a pair of electrons within a molecule.

Hope it helps you!!

Answer: As helium is a noble gas it will not react to form molecules and will thus not be in a situation where it would attract a pair of electrons within a molecule.

Explanation:

In the reaction C2H6O, O2, CO2, and H2O What element is oxidized? What element is reduced? What molecule is oxidizing agent? What molecule is reducing agent?

Answers

In the reaction C2H6O, O2, CO2, and H2O this is an oxidation-reduction reaction. C2H6 is a reducing agent, and O2 is an oxidizing agent.

What does mean of oxidation and reduction?

Oxidation:- Oxidation is a process which involves the addition of oxygen or any electronegative element or the removal of hydrogen or any electropositive element.

Oxidation is defined as the process in which an atom or ion loses one or more electrons.

Reduction:- Reduction is a process which involves the addition of hydrogen or any electropositive element or the removal of oxygen or any electronegative element.

Reduction is defined as the process in which an atom or ion gains one or more electrons.

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Which of the following is NOT a multivalent ion? A. Au+
B. Ni²+
C. Zn^2+
D. Pb^2+​

Answers

The  Au+ is not a multivalent ion.

What is multivalent ion?

Having more than one valency or having a valency greater than three is referred to as being multivalent (comparatively more multivalent, superlatively most multivalent).

What is ion?

Ions are atoms or groups of atoms that have a different number of electrons than proton atoms. If there are more protons than electrons, the particle is a negative ion, sometimes referred to as a cation.

The all the ions are having the valence electron is 2 so they are considered as multivalent ion, Au+ having one valence electron it is not fall under multivalent ion.

Therefore, Au+ is not a multivalent ion.

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Calculate Δ H o for the following reaction in two ways, using the data given below.

H2(g) + I2(g) → 2HI(g)

(a) Using the equation Δ H o rxn = ∑ (BE(reactants)) − ∑ (BE(products)) ???kJ/mol

(b) Using the equation Δ H o rxn = ∑ (nΔ H o f (products)) − ∑ (mΔ H o f (reactants)) ??? kJ/mol

Answers

a). According to given question using the equation ΔH°rxn = -9.2kJ/mol

b). According to given question using the second equation ΔH°rxn = -9.2kJ/mol

How do you define reaction in chemistry?

In a reaction mixture, one or maybe more compounds called as reactants—are changed into one or maybe more additional substances—also known or products. Substances or compounds make up substances.

Briefing:

Hess's law allows you to calculate the H of the a reaction given the H at which the compounds participating in the reaction were formed, as shown below:

ΔH°rxn = ∑(BE(reactants)) − ∑(BE(products))

Or:

ΔH°rxn = ∑(nΔH°f (products)) − ∑(mΔH°f (reactants))

For the reaction:

H₂(g) + I₂(g) → 2HI(g)

a). Using the first equation:

ΔH°rxn = ΔH (H-H) + ΔH (I-I) - 2ΔHBE (H-I)

ΔH°rxn = 436.4kJ + 151kJ - 2×298.3kJ

ΔH°rxn = -9.2kJ/mol

b). Using the second equation:

ΔH°rxn = 2Δ°f (HI) − ΔH°f (H₂) - ΔH°f (I₂)

ΔH°rxn = 2×25.9kJ - 0kJ - 61.0kJ

ΔH°rxn = -9.2kJ/mol

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32. A bundle of 70-100, mostly undifferentiated human cells is....... a) axon b) neuron c)blastocyst: d)chondrocyte_

Answers

d)chondrocyte. The extracellular matrix (ECM) is preserved by chondrocytes, who also create the cartilage matrix. Chondrocytes, which are encircled by collagenous fibers, emit chemicals.

That give cartilage its strength and flexibility. In general, chondrocytes are present in all types of articular cartilage, including intervertebral discs (AC). The only type of specialized cell found in cartilage tissue are chondrocytes. Chondrocytes are the cells that produce cartilage and are essential for the endochondral ossification process, which is important for bone growth. Additionally, chondrocytes play a crucial role in fracture repair by imitating skeletal growth. The cartilage matrix is created and maintained by chondrocytes. They are essential for maintaining the AC joints' homeostasis and providing cushioning for joint motion. Chondrocyte enlargement and the production of proteolytic enzymes result in cartilage degradation. These enzymes that break down the ECM include matrix metalloproteinases (MMPs) and A Disintegrin and Metalloproteinase with Thrombospondin Motifs (ADAMTS).

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Better Life Ind compound has infrared absorptions at the following frequencies: 3300 and 3385 cm-[ (both weak) and no band between 1600 and 1850 cm Suggest the likely functional group that may be preseni ester ketone carboxyl group Submit Answer Try Another Verslon Iten secondary amine alcohol ether aldchyde primary amine primary amide sacondary amide tertiary amine tertiary amide

Answers

The likely functional group present is primary amine, Better Life Ind compound has infrared absorptions at the following frequencies: 3300 and 3385 cm-[ (both weak) and no band between 1600 and 1850 cm Suggest the likely functional group that may be preseni ester ketone carboxyl group

There is no C=O in this compound because the IR signal for C=O is ~1700, So the following can't be present: ester, ketone, carboxyl group, aldehyde, primary amide, secondary amide, and tertiary amide , There is no -OH group because the IR signal for -OH is broad at ~3400, So the following can't be present: alcohol, Now the choices, we are left with are: primary amine, secondary amine, and tertiary amine .Note that the primary amine results in 2 bands, secondary amine results in only 1 band, and teritary amine results in no bands near ~3300. This represents the N-H stretching. The likely functional group present is primary amine

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When 1-chlorobutane is treated with sodium hydroxide, two products are formed_ 14.17a1 Identify the two products: (Select all that apply:) a)1-butyne b) 1-butanal c)1-butene d)2-butanol e)2-butene f)1-butanol

Answers

Two products that are created 1-Butene and 1-Butanol are produced when sodium hydroxide is used to treat 1-Chlorobutane.

NaOH + CH3CH2CH2CH2-Cl NaCl + CH3CH2CH2CH2-OH

This is a substitution reaction as opposed to an elimination reaction. One of the primary (1°) alkyl halides, 1-chlorobutane, is "unhindered," and sodium hydroxide's hydroxide ion (OH-) is a potent nucleophile. In this reaction, the hydroxide will take the place of the chloro group to produce solely 1-butanol. The alkyl halide must be sterically inhibited, that is, either tertiary (3°) or secondary (2°), for elimination to take place. However, substitution reactions can also take place for 2° alkyl halides as a rival process, producing a variety of products.

When 1-chlorobutane is present in a sodium hydroxide solution and an E2 elimination takes place, the hydroxide will vigorously deprotonate the 1-chlorobutane. In turn, a double-bond will form and the chlorine group will go as a result. As a result, but-1-ene will be the end result.

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