acetophenone ir spectrum

Answers

Answer 1

Only C-C and C-H bond vibrations can be seen in their IR spectrum.

Acetophenone has an odour and appearance similar to that of oranges and is a white liquid with a sweet, pungent flavour. freezes in cold temperatures. water-soluble to a little extent and denser than water. as a result, sinks in water. more dense than air vapour. mildly irritating to the eyes and skin. High quantities of vapours can be addictive. a flavouring, solvent, and catalyst for polymerization.

Acetone has had one of its methyl groups replaced by a phenyl group to become acetophenone, a methyl ketone. It functions as an animal metabolite, a xenobiotic, and a photosensitizing agent.

Acetophenone is a chemical that is used as a flavouring agent in food, a fragrance in soaps and perfumes, and a solvent for polymers and resins.

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Related Questions

draw a product of bromination of this alkene. clearly indicate stereochemistry at each chiral carbon by drawing a wedged bond, a dashed bond and two in‑plane bonds.

Answers

Answer:

The product of bromination is alkene. So the answer should be none.

Explanation:

During bromination, alkene is formed. Alkenes can react with pure liquid bromine and bromine that has been dispersed in a solvent like tetrachloromethane in the cold.

What is bromination?

An illustration of such an electrophilic aromatic nucleophilic substitution is the bromination of benzene. In this reaction, an intermediate is produced when the electrophile (bromine) makes a sigma bond with the benzene ring.

The intermediate is then stripped of a proton to create a replacement benzene ring. During bromination, alkene is formed. Alkenes can react with pure liquid bromine and bromine that has been dispersed in a solvent like tetrachloromethane in the cold. When a substance undergoes bromination, bromine is added towards the compound as a result of the chemical process.

Therefore, during bromination, alkene is formed.

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15.14 briefly explain how each of the following influences the tensile modulus of a semicrystalline polymer and why: (a) molecular weight (b) degree of crystallinity (c) deformation by drawing (d) annealing of an undeformed material (e) annealing of a drawn material

Answers

A semicrystalline polymer's tensile modulus rises with molecular weight, crystallinity, drawing deformation, annealing of an undeformed material, and decreasing annealing of a drawn material.

What impact does drawing deformation have on the tensile strength of a semicrystalline polymer?

Increased secondary bonding forces between molecules prevent molecules from moving and boost tensile strength. A semicrystalline polymer's tensile strength is thereby increased by drawing-induced deformation.

How does tensile modulus change as a result of drawing deformation?

The tensile modulus is also increased by drawing-induced deformation. Drawing results in a highly orientated molecular structure and a high level of interchain secondary bonding.

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g consider the reaction at 298 k what is the value of e when [sn2 ] and [fe3 ] are equal to 0.50 m and [sn4 ] and [fe2 ] are equal to 0.10 m?

Answers

Take the 298 K reaction as an example. E° = 0.617 V What is the value of E when [Sn2+] and [Fe3+] are equal to 0.50 M. Sn2*(aq) + 2FE3*(aq) Sn4*(aq) + - 2F22*(aq)

What is chemical reaction?

In a chemical reaction, reactants undergo a chemical reaction and transform into products through a chemical process. For instance, when humans breathe in oxygen, it combines with glucose to create carbon dioxide, water, and energy. The response is provided below. C6H12O6 + O2 = 6CO2 + 6H2O + Energy.

Why do chemical reactions occur?

When atoms establish or break chemical bonds, chemical processes take place. Reactants are the substances that begin a chemical reaction, while products are the compounds that are created as a result of the reaction.

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can someone please recommend me an app where i could get chemistry answers, or atleast something to cheat off to?​

Answers

Answer: quizlet

Explanation:

make an account and tests and stuff should be on there. i use it all the time

What is the percent ionization of a 2M solution of acetic acid at 25 degree C? 0.6 percentage 0.3 percentage 0.0036 percentage 0.0018 percentage

Answers

The percent ionization solution of acetic acid at 25°C is 0.3 %. The answer is B.

At 25°C, the dissociation constant (Ka) for acetic acid is 1.75 × 10⁻⁵. The ionization reaction for acetic acid

                                        CH₃COOH → CH₃COO⁻ +   H⁺

initial concentration                   2                  -                -

changing concentration          - x                + x             + x

equilibrium concentration       2-x                 x                x

[tex]Ka \:=\: \frac{[CH_3COO^-] \: [H^+]}{[CH_3COOH]}[/tex]

[tex]Ka \:=\: \frac{x \: x}{2-x}[/tex]

[tex]Ka \:=\: \frac{x^2}{2-x}[/tex]

Ka = x² ÷ (2-x)

1.75 × 10⁻⁵ = x² ÷ (2-x)

The magnitude of x is so small that x can be negligible.

1.75 × 10⁻⁵ = x² ÷ 2

1.75 × 10⁻⁵ × 2 = x²

x² = 3.50 × 10⁻⁵

[tex]x = \sqrt{3.50 \times 10^{- 5}}[/tex]

x = 5.92 × 10⁻³ M

The percentage ionization = (x ÷ 2) × 100%

= (5.92 × 10⁻³ ÷ 2) × 100%

= 2.96 × 10⁻³ × 100%

= 0.296%

= 0.3%

B

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Draw the Lewis structure for the SeO3-2 ion, then using VSEPR theory, what is its geometry and electronic structure?

Answers

According to VSEPR theory and hybridization of the molecule, the geometry and shape are trigonal planar and  107. 5 degrees.

In terms of genomics, the process of hybridization is the joining of two complementary single-stranded DNA and/or RNA molecules to create a double-stranded molecule. Base pairing must be appropriate for the two single-stranded molecules in order for the bond to form. A crucial step in many research and clinical laboratory methods is hybridization. In most cases, DNA is a double-stranded molecule. Through a process known as hybridization, the two strands bond to one another in a complementary way. Naturally, the new strand of DNA combines with the old strand when it is copied. In the lab, we may create tiny DNA fragments that are intended to check a cell for the presence or absence of specific DNA or RNA molecules.

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How many protons (p) and neutrons (n) are in an atom of calcium-46?
a. 20 p.26 n b. 26 p.20 n c. 46 p.20 n d. 20 p.46 n

Answers

Taking into account the definition of atomic number and atomic mass, the correct answer is option a.: an atom of calcium-46 has 20 p. and 26 n.

Subatomic particles

First of all, all atoms are made up of subatomic particles: protons and neutrons, which are part of their nucleus, and electrons, which revolve around them.

Definition of atomic number

The atomic number, also known as nuclear charge, represents the number of protons inside its nucleus and is represented by the letter Z.

Definition of atomic mass

The atomic mass (A) is obtained by adding the number of protons and neutrons in a given nucleus of a chemical element. That is, the mass number is the sum of the number of protons and the number of neutrons in the atomic nucleus:

Mass number = (number of protons) + (number of neutrons)

Protons ans neutrons in this case

The atomic number provides the structure in which the elements are arranged on the periodic table. Therefore, it is possible to observe in the table that the atomic number of calcium is 20. Therefore, the number of protons of calcium is 20.

An atom of calcium-46 has a mass number of 46. Then, the number of netruons can be calculated as:

Mass number = (number of protons) + (number of neutrons)

46= 20 + number of neutrons

46 - 20= number of neutrons

26= number of neutrons

Then, the number of neutrons is 26.

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if 11.65 ml of 0.595 m koh is required to titrate the unknown acid to the equivalence point, what is the concentration of the unknown acid?

Answers

The concentration of the unknown acid is 6.93175 divided by the volume of the unknown acid in mL and the unit is M (mole/liter)

The formula for volumetric analysis can be given as follows;
[tex]\frac{C_{a}V_{a} }{C_{b}V_{b} } = \frac{N_{a} }{N_{b} }[/tex]

At the equivalence point, [tex]N_{a} = N_{b}[/tex]

Therefore, [tex]C_{a} V_{a} = C_{b} V_{b}[/tex]

[tex]C_{a}[/tex] (concentration of unknown acid) = [tex]\frac{C_{b}V_{b} }{V_{a} }[/tex]

[tex]C_{a}[/tex]  represents the concentration of unknown acid in mL

[tex]C_{b}[/tex] (concentration of KOH) = 0.595M

[tex]V_{b}[/tex] (volume of KOH) = 11.65 mL

[tex]C_{a}[/tex] = 11.65 × 0.595 / [tex]V_{a}[/tex] = (6.93175 / [tex]V_{a}[/tex]) M

Hence, the concentration of the unknown acid is calculated to be 6.93175 divided by the volume of the unknown acid in mL if 11.65 ml of 0.595 KOH is required for titration.

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the partial pressure of ch4(g) is 0.550 atm, and the partial pressure of o2(g) is 0.150 atm in a mixture of the two gases. the mixture occupies a volume of 20.6 l at 150 oc. solve all three parts of the question

Answers

Mole fraction of CH4 = 0.550 / 0.7 = 0.78

Mole fraction of O2 = 0.150 / 0.7 = 0.21

What is partial pressure ?

The force applied per unit of area is referred to as pressure. The region to which a force is being applied and its amount both affect the pressure. This pressure is created by kinetic energy-driven collisions that occur on the container's walls.

The pressure a single gas exerts within a mixture is referred to as partial pressure. The total pressure of a gas is the sum of all the partial pressures present in the mixture.

Partial pressure of the given molecule CH4 = 0.550 atm

partial pressure O2 =0.150 atm

And the total pressure  0.550 atm + 0.150 atm  = 0.7

Mole fraction of CH4 = 0.550 / 0.7 = 0.78

Mole fraction of O2 = 0.150 / 0.7 = 0.21

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hich label belongs in the area marked X? breathe in from atmosphere produce themselves eat other organisms absorb from soil

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absorb from soil in the area marked X, breathe in from atmosphere produce themselves eat other organisms absorb from soil

What does the root absorb from the soil?

Through B, roots take in water from the soil. Given that the soil environment is hypotonic, liquid will be taken by root hairs through osmosis. Passive absorption characterizes this process. Without using any energy, the water can readily flow from the higher concentration area to the low concentration.

How do soil-borne nutrients get to plants?

Through root hairs at the very end of the roots, the majority of nutrients are absorbed. Super duper roots called root hairs have a vast surface area, which enables it for them to absorb more water. Most plants collaborate with various fungus to take up additional minerals from the water present in the soil.

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Draw Lewis structures for each molecular formula. a. C2H4Cl2 (two isomers) b. C3H8O (three isomers) c.C3H6 (two isomers)

Answers

Dots are used to indicate the positions of electrons surrounding the atoms in a molecule, while lines or pairs of dots are used to represent covalent connections between atoms in a Lewis structure.

The goal of creating a Lewis structure is to locate the molecules' lone electron pairs in order to establish how chemical bonds are formed. A group of two or more atoms bound together by the attractive forces known as chemical bonds is referred to as a molecule; depending on the context, the term may or may not include ions that meet this requirement. The distinction between ions and molecules is abolished in quantum physics, organic chemistry, and biochemistry. The electron (e or ) is a subatomic particle with an initial electric charge that is negatively one.

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An atom with an electron configuration of 1s2 2s2 2p3 has how many valence electrons?

Answers

Helium two, S 22, and P 3 would make up the core in this situation. Outside the core, we have five Valence electrons. So five valence electrons would be our solution in this case.

The electrons in an atom's outermost electron shell are known as valence electrons. These are the electrons that take part in bonds and reactions since they are the ones that are farthest distant from the nucleus and hence aren't as strongly bound to the atom. This implies that an element's valence electron count also affects other properties, such as its electronegativity and the number of bonds it can form.

The ability of an element to create bonds with other atoms is referred to as valence. The number of hydrogen atoms an element can connect to (which is defined by how many valence electrons are available for bonding) has historically been used to establish an element's valence. For instance, carbon can form CH4, hence it has a valence of 4, and possesses four valence electrons. The valence of nitrogen, on the other hand, is 3, and it possesses 3 valence electrons since it can form NH3.

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25 Which of the following is considered an atomic solid? a)F2(s) b)CsBr (s) c)N2 (s) d.Nb (s)

Answers

atomic solid is Option (d) is correct Nb (s)

At room temperature, gases of the elements hydrogen and fluorine, H2 and F2, respectively, exist. Diamond, silicon crystals, and pure metals are a few examples of atomic solids. Network solids are atomic solids in which the atoms are covalently connected to one another.

Chemical element boron has the symbol B and atomic number 5. At room temperature, boron, a metalloid, is a solid.

Although some people would refer to it as a molecule, it is actually a mixture of atoms; it is not atomic. If we were to examine N2, the most prevalent element in air, we would see that it is a gas. That is not a solid, then.  Element 35, bromine (Br), is likewise a diatomic gas.

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Question 7 Which of the following names is correct? a)3-butyl-4-pentene b)3-ethyl-1-heptene c)3-etheneheptane d)5-ethyl-6-heptene e)All of these are correct

Answers

All those statements pertain to 3-butyl-4-pentene.

At room temperature, the chemical benzene is a colorless or pale yellow liquid. It smells pleasant and is quite combustible. Benzene swiftly disappears into the atmosphere. Its vapor can descend into low-lying locations since it is heavier than air. Benzene is classified as "carcinogenic to humans" by the IARC due to substantial proof that it causes acute myeloid leukemia (AML).

What is the purpose of benzene?

A common industrial chemical is benzene. Crude oil contains benzene, which is also a main component of gasoline. Plastics, resins, synthetic fibers, rubber lubricants, dyes, detergents, pharmaceuticals, and pesticides are all made with it. Volcanoes and forest fires naturally produce benzoene.

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the beta decay of platinum-199

Answers

There can be emissions of radiations like gamma radiation. There can be emission of particles too like alpha particle. Therefore, the beta decay of platinum-199 is ₇₉Au¹⁹⁹.

What is nuclear decay?

Nuclear decay is process in which the radioactive element releases particles or radiations. Alpha particles is ⁴₂He. Alpha particle is nothing but helium particle.

The balanced equation for the beta decay of ₇₈Pt¹⁹⁹.

₇₈Pt¹⁹⁹ [tex]\rightarrow[/tex] -₋₁e⁰ + ₇₉Au¹⁹⁹

Beta decay is the emission of electron particle from the given isotope. the product is gold- 199.

Therefore, the beta decay of platinum-199 is  ₇₉Au¹⁹⁹.

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which group on the periodic table is nonreactive

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Answer:

The noble gases, group 8A

Noble gas are present in the group are non reactive in nature.

What are noble gases?

Noble gases is defined as group 18 (VIIIa) of the periodic table is made up of seven different chemical elements. The noble gases are employed to create inert atmospheres, usually for arc welding, to shield specimens and prevent chemical reactions. The substances are utilized in lasers as well as lamps like neon and krypton headlamps.

Gases that are noble or inert. Helium, neon, argon, krypton, xenon, and radon are the noble gases, or inert gases, that make up group 8A (or VIIIA) of the periodic table (Rn). The name of these elements refers to how little they react with other elements or compounds. Non-reactive elements do not mix with other elements readily.

Thus, noble gas are present in the group are non reactive in nature.

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before the lab class, use the web or other resources and find out the chemical formula and the molar mass of methanol, ethanol, 1-propanol, 1-butanol, n-pentane, n-hexane. identify which compounds exhibit hydrogen bonding.

Answers

Methanol, CH3OH, ethanol, C2H5OH, 1-butanol, C4H10O, pentane, C5H12, and n-HEXANE, C6H14 are all examples of hydrocarbons.

What kind of intermolecular forces does 1-butanol contain?

Thus, 1-butanol contains the three intermolecular interactions of hydrogen bonding, dipole-dipole interaction, and London dispersion forces.

What kind of intermolecular force between two 1-propanol molecules is the strongest?

The 1-propanol creates hydrogen bonds, London interactions, and diple-dipole interactions. The hydrogen linked to the oxygen atom of the group in 1-propanol creates the highest intermolecular interaction.

What kind of intermolecular interaction is most powerful at drawing ethanol molecules together?

A particular category of dipole-dipole forces known as hydrogen bonds is the cause of the particularly strong intermolecular forces in ethanol.

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Methanol (CH₃OH), Ethanol (C₂H₅OH), 1-Propanol (C₃H₈O), 1-Butanol (C₄H₁₀O), n-pentane (C₅H₁₂), n-hexane (C₆H₁₄). All compound exhibit hydrogen bonding but n-hexane and n-hexane does not.

Why is hydrogen essential?

When transformed into a carrier like ammonia, a fuel with no carbon emissions for transportation, for instance, it may convey renewable energy. Fuel cells and hydrogen can be employed to run anything that requires energy, including electric cars and electronic equipment.

Can hydrogen combust?

Fuel cell hydrogen is a highly flammable gas that, if not properly handled, can results in explosions or fires. Since hydrogen flames are invisible, if a worker suspects a leak, they also should consider that there is flame present.

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Draw the Lewis structure for acetamide, CH3CONH2. What are the electron-pair geometry and molecular geometry around the two C atoms? What is the hybridization of each of the C atoms? What orbitals overlap to form the σ and π bonds between carbon and oxygen?

Answers

Lewis structure for acetamide, CH3CONH2. four (4) are the electron-pair geometry and molecular geometry around the two C atom. Sp3d2 is the hybridization of each of the C atoms.

When the valence bond theory failed to accurately predict molecular structure, hybridization was used to explain it. Organic compounds' bond angles have been experimentally found to be near to 109o, 120o, or 180o. The Valence Shell Electron Pair Repulsion (VSEPR) theory states that because electron couples resist one another, the bonds and lone pairs surrounding a core atom are often spaced apart at their greatest angles. The behavior of electrons inside of molecules is modeled using orbitals. Since the hydrogen atom is the only neutral atom for which the Schrödinger equation can be precisely solved, this approximation for simple hybridization is based on atomic orbitals that are similar to those found for that atom. The 2s and 2p atomic orbitals, which are akin to the excited state orbitals for hydrogen, are utilised in heavier elements including carbon, nitrogen, and oxygen. It is believed that hybrid orbitals are combinations of atomic orbitals that are overlaid on one another in different ratios.

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draw the organic product formed when 1−hexyne is treated with h2o, h2so4, and hgso4. click the draw structure button to launch the drawing utility.

Answers

The organic product formed when 1−hexyne is treated with H₂O, H₂SO₄, and HgSO₄ will be 2-hexanone (structure attached).

This reaction is an example of an oxymercuration reaction of the organic product 1−hexyne.

Oxymercuration is shown in three steps to the right. The nucleophilic double bond attacks the mercury ion, releasing an acetoxy group. The mercury ion's electron pair attacks carbon on the double bond, generating a positive-charged mercuronium ion. Mercury's dxz and 6s orbitals give electrons to the double bond's lowest unoccupied molecular orbitals.

In the second stage, the nucleophilic H₂O attacks the highly modified carbon, freeing its mercury-bonding electrons. Electrons neutralize mercury ions by collapsing. Water molecules have positive-charged oxygen.

In the third stage, the negatively charged acetoxy ion released in the first step attacks the hydrogen of the water group, generating the waste product HOAc. The two electrons in the oxygen-hydrogen link collapse into oxygen, neutralizing its charge and forming alcohol.

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Draw the electronic configuration for a neutral atom of manganese?

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The electronic configuration for a neutral atom of manganese is 1s²2s²2p⁶3s²3p⁶4s²3d⁵.

The electronic configuration is a method to display the distribution of electron in an atom in accordance to the specific orbitals of the atom.

Manganese is item that has an atomic number 25.

This atomic number is same as the number of electrons in the atom so this is a crucial number in deciding the configuration of the manganese atom.

Now, we can write the in neutral electronic configuration for the manganese atom as 1s²2s²2p⁶3s²3p⁶4s²3d⁵.

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The sugar burned for energy in cells of the body is Glucose (molar mass of 180.16 g/mol), elemental analysis
shows that it contains 40.00% C, 6.719 % H, and 53.27 % O. What is the molecular formula of glucose?

Answers

The molecular formula = C₆H₁₂O₆.

What is empirical formula?

An empirical formula is the simplest whole-number ratio of the different atoms in a molecule. The molecular formula specifies the number of distinct types of atoms contained in a chemical molecule.

Assume we have 100 g of the compound.

Then we have 40.00 g of C, 6.72 g of H, and 53.28 g of O.

Moles of C = 40.00 g C × (1 mol C/12.01 g C)

                  = 3.331 mol C

Moles of H = 6.72 g H ×( 1 mol H/ 1.008 g H)

                  = 6.67 mol H

Moles of O = 53.28 g O × (1 mol O/16.00 g O)

                   = 3.330 mol H

Moles of C:Moles of H:Moles of O = 3.331:6.67:3.330=1.000:2.00:1 ≈ 1:2:1

The empirical formula is CH₂O.

The empirical formula is the simplest formula of a compound. The actual formula is an integral multiple of the empirical formula.

If the empirical formula is CH₂O, the actual formula is

(CH₂O)n or CnH2nOn

where n = 1, 2, 3, …

The empirical formula mass of CH₂O is 30.03 u. The molecular mass of 180.18 u must be some multiple of this number, n = (180.18 u/30.03 u)

n = 6.000 ≈ 6

∴ The molecular formula = C₆H₁₂O₆.

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What is the density of gold if 97.3 cm^3 has a mass of 1880 grams?

Answers

Answer:

Explanation:

the equation is d=m/v

convert cm to m

97.3*100=9730m^3

d=1880g/9730cm^3

d=0.19g/m^3

provide the structure(s) of the expected major organic product from the following reaction:

Answers

The correct response is e) binding energy. The nucleons in a nucleus are bound together by the binding energy, this is indicated by the nucleon.

The minimal amount of energy needed in physics and chemistry to separate a particle from a system of particles or to break a system of particles down into its component pieces is known as the binding energy. While the word separation energy is used in nuclear physics, the former meaning is more common in condensed matter physics, atomic physics, and chemistry. The energy level of a bound system is often lower than that of its unbound components. Relativity theory states that a drop in a system's total energy of E leads to a corresponding decrease in its total mass of m, where mc2 = E. In particle physics, the term "binding energy" describes the energy an atom receives from electromagnetic interaction as well as the quantity of energy needed to break an atom down into free nucleons.

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two metals of equal mass but with differing specific heat capacities are subjected to the same amount of heat. which metal will undergo the smallest change in temperature if neither metal changes phase?

Answers

The metal having the greater capacity for specific heat. A metal with a higher heat capacity will take more energy to raise its temperature by one temperature unit.

Can the amount of heat in two things made of the same material at the same temperature differ?

As a result, the heat capacity of two objects constructed of the same material but of different masses will vary. This is so because while specific heat is a property of every object constructed of the same material, heat capacity is a property of an object.

Which metal will see the smallest temperature increase?

The metal with the highest specific heat will see the smallest temperature change.

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benzaldehyde ir spectrum

Answers

At ~1700 cm-1 you get the characteristic C=O. stretching vibrations of the carbonyl group. Between wavenumbers 1440 and 1625 cm-1 you get several absorption bands between due to C=C vibrations in the benzene ring.

IR spectrum works by shining infrared light through the organic compound we want to identify; some of the frequencies are absorbed by the compound, and if we monitor the light that makes it through, the exact frequencies of the absorptions can be used to identify specific groups of atoms within the molecules.

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isopentyl acetate ir spectrum

Answers

What is the IR spectrum of isopentyl acetate?

The IR spectrum has a wavelength between 4000 and 600 cm-1. The numerous peaks on the spectra can be used to identify the molecule. This lab's goal was to esterify acetic acid with isopentyl alcohol to produce isopentyl acetate.

What color is isopentyl acetate?

It is a white liquid that is very soluble in most organic solvents but just marginally soluble in water.

What functional groups are in isopentyl acetate?

Carboxylic Acid Esters are a family to which isopentyl acetate belongs. These are derivatives of carboxylic acids in which an oxygen atom connects the carbon atom from the carbonyl group to an alkyl or aryl moiety (forming an ester group).

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you have decided to ascend to the summit of mount everest, where the partial pressure of oxygen in the atmosphere has been estimated to be about 54 mmhg. recall that when this air arrives in the alveoli, the partial pressure of oxygen drops even lower because of displacement by the partial pressure of carbon dioxide and water vapor. the arterial concentration of oxygen at the pulmonary capillaries is measured and found to be 25 mmhg. what is the percent saturation of hemoglobin at this partial pressure?

Answers

The percentage saturation of the Hemoglobin will be 45%. Hemoglobin saturation will eventually diminish quickly as the PO2 drops.

The hemoglobin's % saturation as a function of oxygen partial pressure is plotted on the oxygen-hemoglobin dissociation curve (PO2). Hemoglobin will be 100% saturable with oxygen, or all four heme groups will be bound, at a PO2 of 100 mmHg. 1.34 mL of oxygen may be carried by every gram of hemoglobin. Oxygen is soluble in plasma at a solubility coefficient of 0.003. This coefficient shows the volume of oxygen in mL that will dissolve in 100mL of plasma for each 1 mmHg spike in the PO2. The oxygen content is then determined using a formula, so that

Oxygen Content = (0.003 × PO2) + (1.34 × Hemoglobin × Oxygen Saturation).

This formula illustrates that dissolved oxygen is a sufficiently tiny fraction of total oxygen in the blood; consequently, the oxygen content of blood can be deemed equivalent to the oxyhemoglobin levels.

Alveolar gas in the lungs has a PO2 of 100 mmHg. However, even at a PO2 of 60 mmHg, oxygen saturation will still be high because of the high affinity for the fourth oxygen molecule. Hemoglobin saturation will eventually diminish quickly as the PO2 drops; at a PO2 of 40 mmHg, hemoglobin is 75% saturated. In the meantime, hemoglobin is 50% saturated at a PO2 of 25 mmHg. When 50% of each hemoglobin's heme groups are oxygenated, this condition is known as P50.

The nature of the oxygen saturation becomes increasingly important in light of the effects of right and left shifts. A variety of the factors can cause these shifts.

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select the correct common and/or iupac name(s) for the following structure:

Answers

The IUPAC designation for the following structure is It is CH3-CH2-CH=CH2. However, 1 ene

The parent alkene is picked because it has the longest carbon chain with the double bond between carbon atoms.The suffix "ane" of the alkane is transformed to "ene."Depending on whether a double bond appears twice or three times in the parent chain, an alkene is referred to as a diene or triene.the positions of double bonds or side chains, indicated by the numerals 1, 2, 3, etc.Because it is the longest chain and is numbered from that end, the carbon atom in the double bond, which is written just before the suffix "ene," has the lowest number.The chain is being formed if both sides of a double bond receive the same number.The carbon chain is numbered so that the substituent obtains the lowest number if both sides of a double bond receive the same number as the chain is being numbered.In accordance with

the aforementioned criterion, the structure CH3-CH2-CH=CH2 is referred to as but - 1 - ene.

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the average speeds v and molecular diameters d of five ideal gases are given below. the number of molecules per unit volume is the same for all of them. for which is the collision rate the greatest?

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The average speeds v and molecular diameters d of five ideal gases are given below. the number of molecules per unit volume is the same for all of them. the collision rate the greatest for d) v = vo and d = 2do.

The ideal gas equation is given as :

P V = n R T

the collision is directly proportional to the molecular diameter and is inversely proportional to the velocity. the collision frequency depends on the temperature and concentration. the rate of collision is given as :

mean free path :

λ = (Rt )/ √2πd²Na P)

average velocity :

v = √8kT/ πm

v = λ / t

1/t = v /λ = (√8kT/ πm) /  (Rt )/ √2πd²Na P)

thus, the rate of collision depends on the temperature , pressure size ans mass of molecule.

The question is incomplete, the complete question is :

The average speeds v and molecular diameters d of five ideal gases are given below. The number of molecules per unit volume is the same for all of them. For which is the collision rate the

greatest?

A. v = v0 and d = d0

B. v = 2v0 and d = d0/2

C. v = 3v0 and d = d0

D. v = v0 and d = 2d0

E. v = 4v0 and d = d0/2

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the inventory of phonemes used in spanish is nearly identical to that used in english. t or f

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The given statement, "The inventory of phonemes used in Spanish is nearly identical to that used in English" is true.

The number of phonemes and letters that is used to represent them can vary between languages and dialects, therefore these numbers are not fixed numbers. A phoneme is defined as the smallest unit of speech in linguistics that distinguishes one word (or word element) from another.

For example, the letter p is used to distinguish the word "tap" from terms like "tab," "tag," and "tan." Based on the spoken language, the symbols of the International Phonetic Alphabet are used to represent phonemes. While some linguists are used to extend the definition of "phoneme" beyond vowels and consonants to include phonologically significant variations in pitch, stress, and rhythm, most linguists stick to this restriction.

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