You are riding a bike. If you apply force of 150N, and you and the bike have a combined mass of 90KG, what will be the forward acceleration of the bike?

Answers

Answer 1
The Force(F) = 150N, and then the Mass(m) = 90kg.
We have to find the acceleration, and we know F= m×a.
150= 90 x a
a= 150/90.
a= 5/3= 1.67m/s2.
I hope this helps!

Answer 2

The acceleration of the bike can be obtained as 1.67 m/s^2.

What is the acceleration ?

By the use of the formula that we get from the Newton second law we can be able to connect the force that has been exerted on the bike to the acceleration of the bike and that is what we are going to do in the problem that we want to solve.

Given that;

F = ma

m = mass of the bike

a = acceleration of the bike

F = force applied

Then we have;

a = 150 N/90Kg

a = 1.67 m/s^2

The bike is going to have an acceleration of 1.67 m/s^2.

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Related Questions

Photoelectron spectroscopy of the CsHs anion allows us to determine the energies of its MOs. Analysis shows that the π MOs each have one of the following energies:-0.53 Ry,-0.10 Ry or 1.18 Ry Sort the MOs according to their energies. 0.53 Ry -0.10 Ry +1.18 Ry Consider the effect of adding another electron to CsHs, making CsHs then choose whether each of these statements is true or false. TRUE FALSE C5H5 is diamagnetic CsH5 is paramagnetic C552 is diamagnetic C5H5 is paramagnetic CsHs2 has more bonding electrons than CsHs CsHs2 has more antibonding electrons than CsHs the average C-C bond order is greater for Cs2 the average C-C bond length is greater for CsH6

Answers

The Photoelectron spectroscopy of different anions are as follows:

What is Photoelectron spectroscopy?

Photoelectron spectroscopy (PES) is an analytical technique used to determine the electronic structure of a molecule by measuring the kinetic energy and angular distribution of electrons emitted from the sample upon photoexcitation. The electrons are typically ejected from the valence shell of the atoms in the molecule, and the kinetic energy of the electrons is a measure of the binding energy of the electrons in the initial state.

Sorting the MOs according to their energies:

-0.53 Ry, -0.10 Ry, 1.18 Ry

Adding another electron to CsHs:

C5H5 is diamagnetic: True (C5H5 is a molecule with an even number of electrons and no unpaired electrons, thus it is diamagnetic)C5H5 is paramagnetic: False (C5H5 is a molecule with an even number of electrons and no unpaired electrons, thus it is diamagnetic)C5H5 is diamagnetic: True (C5H5 is a molecule with an even number of electrons and no unpaired electrons, thus it is diamagnetic)C5H5 is paramagnetic: False (C5H5 is a molecule with an even number of electrons and no unpaired electrons, thus it is diamagnetic)CsHs2 has more bonding electrons than CsHs: False (CsHs2 is a molecule with an even number of electrons and no unpaired electrons, thus it is diamagnetic)CsHs2 has more antibonding electrons than CsHs: False (CsHs2 is a molecule with an even number of electrons and no unpaired electrons, thus it is diamagnetic)the average C-C bond order is greater for Cs2: False (Cs2 is a molecule with an even number of electrons and no unpaired electrons, thus it is diamagnetic)the average C-C bond length is greater for CsH6: Not enough information provided to determine if this statement is true or false.

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On the IR spectrum of Adipic Acid, which you took in lab, indicate where each of the following significant bonds stretches appear on the IR and submit this IR with your report. Carboxylic acids: Co, C-o. o-H Alkyl group/chain: sp'c-H

Answers

The IR spectrum of Adipic Acid will show the following absorption bands for the specified bonds:

Carboxylic acids: The C=O bond (carbonyl) stretch will appear at around 1700-1710 cm⁻¹. The C-O stretch will appear at around 1300-1350 cm⁻¹.

o-H: The O-H stretch will appear at around 3400-3500 cm⁻¹.

Alkyl group/chain: The sp3-C-H stretch will appear at around 2900-3000 cm⁻¹.

IR spectrum of Adipic Acid

The IR spectra of a compound can be used to identify the functional groups present in the compound by looking for specific absorption bands that correspond to the vibrations of the bonds in those functional groups.

The C=O bond stretch, also called carbonyl, is a characteristic absorption of carboxylic acids and it appears at around 1700-1710 cm⁻¹.

The C-O stretch is also a characteristic absorption of carboxylic acids and it appears at around 1300-1350 cm⁻¹.

The O-H stretch is a characteristic absorption of hydroxyl groups, it appears at around 3400-3500 cm⁻¹.

The sp3-C-H stretch is a characteristic absorption of alkyl groups and it appears at around 2900-3000 cm⁻¹.

To confirm the presence of these functional groups, we can compare the IR spectrum of the compound with known spectra of compounds that contain these functional groups. Additionally, the chemical shifts and relative intensities of the peaks can also be used to confirm the presence of these functional groups.

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Carbon Hydrogen Oxygen

Use the interactive to explore the three-dimensional structure of maltose.

Identify the functional groups in maltose.

O carboxylic acid
O aldehyde
O ether
O ester
O alcohol

Answers

Maltose is a disaccharide composed of two glucose molecules linked by a glycosidic bond. it contain two functional groups: a hydroxyl group (-OH) and an aldehyde group (-CHO).

The hydroxyl group is a functional group that consists of an oxygen atom bonded to a hydrogen atom. They are found in the glucose molecules and are responsible for the solubility of maltose in water. The aldehyde group is a functional group that consists of a carbonyl group (-C=O) with an hydroxyl group attached to it. It is found in the reducing end of the glucose molecules and is responsible for the reducing hydroxyl group properties of maltose.

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Why did different drops have different charges? View Available Hint(s) O Because the drops were different sizes. O Because some drops contained more atoms than others. O Because some drops had picked up more electrons than others.

Answers

Different drops have different charges because some drops had picked up more electrons than others.

In nature, electrons are distributed in an uneven manner among the atoms, molecules, and ions, leading to the formation of electric charges. The amount of electrons an atom or molecule has can change due to various reactions or interactions with other atoms and molecules. This can lead to some drops having a surplus of electrons and having a negative charge, while others may have a deficit of electrons and having a positive charge. The size of the drops or the number of atoms in the drops do not affect the charge of the drops.

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When an element like Na ( sodium) loses its single valence electron from the energy leve what element is its outer valence electron configuration like?

Answers

Answer:  Ne

Explanation: because when it loses an electron it will be the previous staple gas

The element Na have 11 electrons out of which 1 is valence electrons. If it remove this electrons its valence shell configuration is alike that of neon.

What is sodium ?

Sodium is 11th element in periodic table. It is an alkali metal in the in the first group. Sodium contains 11 electrons in which 10 are inner electrons and one is valence electron.

According to octet rule, the element which have 8 electrons in valence shell becomes stable. Hence, each element which does not have octet in their valence shell will lose or gain electrons.

When sodium losses its single valence electrons, its electronic configuration becomes similar to the 10th element neon. Hence, sodium achieve octet by losing one electron.

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3-methyl-1-butanol (also called isoamyl alcohol or isopentyl alcohol) was mixed with an excess of acetic acid (ethanoic acid is its systematic name) and a trace of sulfuric acid (which serves as a catalyst). This reaction is an equilibrium reaction, so it is expected that not all the starting materials will be consumed. The equilibrium should lie quite far to the right due to the excess of acetic acid used, but not completely.
After an appropriate length of time, isolation of the desired product from the reaction mixture was begun by adding a volume of 5% aqueous sodium bicarbonate (NaHCO3 has an effective pKa of 7) roughly equal to the volume of the reaction mixture. Bubbling occurred and a mixture consisting of two layers resulted—a basic aqueous layer and an organic layer.
The layers were separated, and the aqueous layer was removed.
The addition of aqueous sodium bicarbonate to the layer of organic materials and separation of the layers was repeated twice. Each time the predominantly aqueous layers were removed, they were combined in the same collection flask.
The organic layer that remained after the three bicarbonate extractions were dried and then subjected to distillation to obtain a pure sample of 3-methylbutyl ethanoate (isoamyl acetate).
List all the chemical species likely to be present at the end of the reaction but before adding aqueous NaHCO3. Note that the H2SO4 was not consumed (since it is a catalyst).

Answers

At the end of the reaction before adding aqueous [tex]NaHCO_3[/tex], the following chemical species are likely to be present:

3-methyl-1-butanol (isoamyl alcohol or isopentyl alcohol).Acetic acid (ethanoic acid).3-methylbutyl ethanoate (isoamyl acetate).Water.Sulfuric acid (catalyst).

A Lewis structure, also known as a Lewis dot diagram, is a way to represent the chemical bonding in a molecule. It uses dots (also called electron dots or Lewis dots) to show the valence electrons on an atom, and lines to show the bonds between atoms. The goal of drawing a Lewis structure is to use the valence electrons of the atoms in a molecule to form the most stable arrangement of atoms, that is to say, to achieve the octet rule where each atom has 8 valence electrons in its outermost shell.

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addition of br2 to (e)-hex-3-ene produces ________. A. meso dibromide B.mixture of enantiomeric dibromides which is optically active C.a mixture of enantiomeric dibromides which is optically inactive D..の3,4-dibromo-3.hexene e e E.-3,4-dibromo-3-hexene

Answers

Option (a) is correct. Addition of br2 to (E)- Hex- 3-ene produces a meso dibromide.

The addition of Br of an alkene involves the formation of an intermediate cyclic bromonium ion, followed by the anti-addition of a bromide ion to form the product. The rigidity of the ring controls the stereochemistry of the reaction. This means that the addition of Br of a trans alkene gives a meso dibromide.  the addition of hex-3-ene gives meso-2,3-dibromohexane as the product. Addition of Br2 to (E)-hex-3-ene produces a meso dibromide, a mixture of enantiomeric dibromides which is optically active and a mixture of enantiomeric dibromides which is optically inactive.

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What volume (ml) of 0. 105 m hclo4 solution is required to neutralize 50. 00 ml of 0. 0805 m ca(oh)2 ?.

Answers

The volume of the 0.105 M HClO₄ solution is required to neutralize 50 mL of 0.0805 M Ca(OH)₂ is 76.1 L.

The reaction is given as :

2HClO₄  +  Ca(OH)₂   ---->  Ca(ClO₄)₂    +   2H₂O

number of moles of the Ca(OH)₂ = molarity × volumes

                                                      = 0.0805 × 0.05

                                                      = 0.0040 mol

2 moles of the HClO₄  react with 1 mole of  Ca(OH)₂ , we get

moles of the HClO₄ = 2 × 0.0040

                                  = 0.008 mol

volume of  HClO₄ = moles / molarity

                              = 0.008 / 0.105

                              = 0.0761 L

                              = 76.1 mL

Thus, the volume of the  HClO₄ in mL is 76.1 mL.

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Draw The Lewis Structure For CH2CO.

Answers

Nitrogen––three bonds, one lone pair; trigonal pyramidal. carbon (CH2)—four bonds, no lone pairs; tetrahedral.

What is the Lewis structure for ch2?

A Lewis structure is a diagram that shows how electrons are distributed around atoms. To forecast the quantity and type of bonds that might form around an atom, Lewis structures must be drawn. The geometry of a molecule can also be predicted using a Lewis structure.

The models frequently baffle chemistry students, but if the right measures are taken, drawing Lewis structures can be a simple task. Be aware that there are various methods for building Lewis constructions. These guidelines describe how to draw Lewis structures for compounds using the Kelter method.

Step 1: Find the Total Number of Valence Electrons. ...

Step 2: Find the Number of Electrons Needed to Make the Atoms "Happy"

Step 4: Choose a Central Atom. ...

Step 5: Draw a Skeletal Structure. ...

Step 6: Place Electrons Around Outside Atoms. ...

Step 7: Place Remaining Electrons Around the Central Atom.

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How many miles are equal to 5.21 x 10 24 power molecules CO2

Answers

Answer:8.6mol

Explanation:

number of molecules=5.21*10 power24

Na=6.022*10power 23

since, number of molecules=avagadro number*number of moles

therefore,

number of moles=number of molecules/Avagadro number

n=8.6mol

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Ca(HCO3)2 as a ratio

Answers

Answer:

Can(HCO 3)2=CaCO +CO2 +H2O

The exotoxin that functions by destroying cell membranes is called __________.
a. an enterotoxin
b. an A-B toxin
c. a cytolytic toxin
d. a superantigen toxin

Answers

The exotoxin that functions by destroying cell membranes is called a cytolytic toxin.

A poison produced by bacteria is known as an exotoxin.An exotoxin can harm the host by killing cells or interfering with regular cellular metabolism. They have a great deal of power and can seriously harm the host.The term "cytolysin" refers to a chemical that is released by bacteria, plants, or animals and is especially harmful to individual cells, frequently leading to the lysis of those cells. Cytolysins are called for the cells in which they function specifically. For instance, hemolysins are the cytolysins that break down red blood cells to release hemoglobins, among other things. Cytolysins may have a role in both venoms and immunity.

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The heat of combustion of liquid toluene (C7H8) is -3910.3 kJ/mol at 1 atm and 298 K.
a) What is the energy of combustion at 1 atm and 298 K?
The heat of combustion of liquid toluene (C7H8) isEcomb = kJ/mol
b) What is the heat of formation of toluene?
The heat of combustion of liquid toluene (C7H8) isHf = kJ/mol

Answers

The heat of formation of toluene is -103.6 kJ/mol. The heat of formation of a given compound is the energy released or absorbed when one mole of a given compound is formed from its elements in their most stable form. The energy released or absorbed is the heat of formation.

The heat of combustion of a given compound is defined as the energy released when one mole of a given compound is completely oxidized to form its products. The energy released is the heat of combustion.

The heat of formation of a given compound is the energy released or absorbed when one mole of a given compound is formed from its elements in their most stable form. The energy released or absorbed is the heat of formation.

The heat of formation of toluene is -103.6 kJ/mol.

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The pressure of a fixed mass of gas is halved while its volume is quadrupled. The temperature will:
a) stay the same
b) double
c) quadruple
d) decrease by a factor of four
e) none of the choices provided

Answers

B) double

P1*V1/T1 = P2*V2/T2

esters and amides are most easily made by nucleophilic acyl substitution reactions on ________? A.on alcohols. B.acid anhydrides. C.carboxylates. D.carboxylic acids. E.acid chlorides.

Answers

Esters and amides are most easily made by Nucleophilic acyl substitution reaction on Alcohols.

The reaction that involves in the bond formation of acyl group is called Nucleophilic substitution reaction. The Nucleophilic acyl substitution reaction is a reaction where a nucleophile forms a new bond with the carbonyl carbon of an acyl group with accompanying breakage of a bond between the carbonyl carbon and a leaving group. This reaction is called as a substitution reaction because the forming and breaking a bond on the same carbon occurs. The functional groups which undergo nucleophilic acyl substitutions are called carboxylic acid derivatives. these include carboxylic acids themselves carboxylates, amides, esters, thioesters, and acyl phosphates. Esters and amides are made by nucleophilic acyl substitution reaction.

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The empirical formula of an artificial sweetener is c14h18n2o5. the molecular mass of the sweetener is 294.34 g/mol. what is the molecular formula of the artificial sweetener? a. c7h9no2
b. c7h9no3 c. c14h18n2o5 d. c28h36n4o10

Answers

The artificial sweetener's empirical formula and the molecular formula are C₁₄H₁₈N₂O₅. Therefore, option C is correct.

An empirical formula is a chemical formula for a compound that provides the proportions (ratios) of the elements present but not the exact number or arrangement of atoms.

The empirical formula of an artificial sweetener is given as C₁₄H₁₈N₂O₅ and the molecular mass as 294.34 g/mol.

The molecular formula is written as n×(Empirical formula) where n=(molecular mass)÷ (Empirical mass).

First, find the empirical mass,

[tex]\begin{aligned}\mathrm{Empirical\;mass\;of\;C_{14}H_{18}N_2O_5}& = 12\times14+1\times18+14\times2+16\times5\\&=\mathrm{294\;g/mol}\end{aligned}[/tex]

Then, we get the n value as follows,

n= 294.34 g/mol÷ 294g/mol

n=1

Then, the molecular formula is, 1×C₁₄H₁₈N₂O₅.

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Answer:

C

Explanation:

edge 2023

When a cation is formed from a representative element

A) electrons are lost and the ion is larger
B) the cation acquires a negative charge
C) electrons are lost and the ion is smaller
D) electrons are gained and the ion is smaller
E) electrons are gained and the ion is larger

Answers

When a cation is formed from a representative element  electrons are lost and the ion is smaller. The correct answer is C.

When one or more electrons are lost, positive ions called cations are formed. The most frequent cations of the basic elements are those in which all valence electrons have been lost. Consider the alkali metal sodium as an illustration (Na).

In a covalently bound molecule, an atom typically shares the same number of electrons with other atoms as is necessary to give it a noble gas configuration.

Molecular compounds are the kinds of compounds that use prefixes in their names, according to naming rules.The correct name for the chemical compound N₂O₃ is dinitrogen trioxide

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What is the difference between a physical vs. a chemical change? Give an
example of each

Answers

Answer:

A chemical change results from a chemical reaction, while a physical change is when matter changes forms but not chemical identity. Examples of chemical changes are burning, cooking, rusting, and rotting. Examples of physical changes are boiling, melting, freezing, and shredding.

Explanation:

I hope it's useful for you.

Thank you..

Answer:

Explanation:  For example :

Chemical change; rusting of iron, burning wood etc.

Physical change; melting of ice.

In the reaction 2 agi na2s-->ag2s 2nai, calculate the number of moles of agl needed to react with 85.0 g na2s

Answers

The number of moles of agl needed to react with 85.0 g na2s is 1.09. Given that, the reaction is 2AgI + Na₂S → Ag₂S + 2NaI.

From the equation, we can see that for every 1 mole of Na₂S that reacts, 2 moles of AgI are needed. Therefore, we can use the following formula to find the number of moles of AgI needed:

moles of AgI = moles of Na₂S * (moles of AgI / moles of Na₂S)

We can find the moles of Na₂S by using the molar mass, which is the mass of one mole of a substance. The molar mass of Na₂S is:

Molar mass of Na₂S = 2(22.98977 g/mol) + 32.066 g/mol = 78.107 g/mol

Now we can substitute the known information into the formula and solve for the number of moles of AgI:

moles of AgI = (85 g of Na₂S) / (78.107 g/mol) * (2 moles AgI/1 mole Na₂S)

The number of moles of AgI is approximately: 1.09

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In the reaction : 2AgI  +   Na₂S    ----->   Ag₂S   +   2NaI, the number of the moles needed to react with the 85 g of Na₂S  is 2.16 mol.

The reaction is given as :

2AgI  +   Na₂S    ----->   Ag₂S   +   2NaI

The mass of the Na₂S  = 85 g

The molar mass of the Na₂S  = 78 g / mol

The number of the moles = mass / molar mass

                                           = 85 / 78

                                            = 1.08 mol

2 moles of the AgI react with the 1 mole of the Na₂S

moles of the AgI = 2 × 1.08

                            = 2.16 mol

Thus, the moles of the AgI is 2.16 mol.

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which substance is a Brønsted-Lowry conjugate acid? HClO4(aq)+H2O(l)→H3O+(aq)+ ClO4-(aq)

Answers

Answer:

Explanation:

(a) C5H5N(aq)+H2O(l)⇌C5H5NH+(aq)+OH−(aq)

why might sodium carbonate (washing soda, na2co3) be added to hard water to aid in cleaning?

Answers

Sodium carbonate (washing soda) can be added to hard water to aid in cleaning because it helps to reduce the hardness of the water.

By reducing the hardness of the water, the detergent used in cleaning is able to work more effectively, resulting in cleaner dishes and surfaces. Sodium carbonate also helps to break down dirt and grease, making it easier to remove. Additionally, it helps to reduce spotting on dishes and glassware.

Sodium carbonate (washing soda) can be added to hard water to aid in cleaning by reducing its hardness, breaking down dirt and grease, and helping to reduce spotting on dishes and glassware.

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The correct IUPAC name for the following compound is: CH-CH-CH-C CH,-CH CH2 2-bromo-4-methylenehexane 2-(2-bromopropyl)-1-butene 2-bromo-4-ethyl-1-pentene 2-bromo-4-ethyl-4-pentene 4-bromo-2-ethyl-1-pentene

Answers

4-bromo-2-ethyl-1-pentene is the IUPAC name of CH-CH-CH-C CH,-CH CH2 compound.

What is IUPAC name and how it works?

You must first know a few fundamental names before you can name chemical substances. These names are mentioned in the section on alkane naming. The base portion of the name often corresponds to the number of carbons in the parent chain that you have designated. The type(s) of functional group(s) existing on (or inside) the parent chain are indicated by the name's suffix. Substituents are other groups that are connected to the parent chain. Find and identify the carbon chain with the longest continuous length. The groups that make up this chain are named and identified. Sequentially number the chain, starting at the end nearest to a substituent group. Assign a name and corresponding number to each substituent group to denote its location.

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Which of the following processes produces 36 ATP? Select one

A hydrolysis of creatine phosphate
B glycolysis
C Krebs cycle and oxidative phosphorylation

Answers

Option C - Krebs cycle and oxidative phosphorylation are the processes produces 36 ATP .

The tricarboxylic acid (TCA) cycle, also known as the Krebs or citric acid cycle, is the main source of energy for cells and a crucial step in aerobic respiration. The cycle transforms the chemical energy of acetyl coenzyme A (acetyl CoA) into nicotinamide adenine dinucleotide's reducing force (NADH). The Krebs cycle, also known as the tricarboxylic acid cycle or the citric acid cycle, is the central component of cellular metabolism and is crucial for the production of both energy and biomolecules. In addition to completing the task of reducing sugar that was begun during glycolysis, it also fuels ATP synthesis. Cells use enzymes to oxidise nutrients and release chemical energy in the metabolic process known as oxidative phosphorylation.

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An alloy is a solution in which: Select the correct answer below: O a gas is dissolved in a solid O a liquid is dissolved in a solid O a solid is dissolved in a solid O a solid is dissolved in a liquid

Answers

Answer: a solid is dissolved in a solid

Explanation:

List all types of IMFs that would occur in each of the following a. CH_3CF_3 b. CCl_4 c. SO_2 d. BrF List the dominant type of IMF for the pure substances, then rank the strength of each compound based on IMFs within the samples. Circle all of the species below that can form a hydrogen bond in its pure form. Explain why the other species couldn't hydrogen bond. C_2H_6 CH_3NH_2 KCl CH_3CH_2CH_2OH CH_3OCH_3 Rank the following compounds from weakest intermolecular forces to strongest. Justify your answers. I_2 H_2S H_2O Which of the following will have the highest melting point a. naphthalene, C_8H_10 b. methane CH_4 c. SiO_2 d. C_2H_5OH Circle all the compounds which would be expected to form intermolecular hydrogen bonds in the liquid state: (a) CH_3OCH_3 (b) CH_4 (c) HF (d) CH_3CO_2H (e) Br_2 (f) CH_3OH What type of crystal will each of the following substances form in its solid state? Choices to consider are metallic, ionic, covalent, or molecular crystals. a. C_2H_6 b. Na_2O c. SiO_2 d. CO_2 e. N_2O_5 f. NaNO_3 g. Al h. C (diamond) i. SO_2 For the table below and on the next page, specify the predominant intermolecular force involved for each substance in the space immediately following the substance. Then in the last column indicate which member of the pair you would expect to have the higher boiling point.

Answers

Therefore, CH3CH2CH2CH3 is a nonpolar molecular compound and the only intermolecular forces are induced dipole forces.

What intermolecular forces are present between two molecules of ch3cf3?

Having a polar Br-F link, BrF is a polar covalent molecule. As a result, interparticle forces like the dispersion force and dipole-dipole force exist in BrF. The dipole-dipole force is known to be more powerful than the dispersion force.

Due to CH3CF3's polar nature, two of its molecules will interact via dipole-dipole interactions. Because dispersion forces exist between every molecule, they will also be present. The C-H bonds in CH3CH2CH3 have a relatively modest dipole moment and weak dipole-dipole forces because carbon and hydrogen have very similar electronegativities. London dispersion forces are the only intermolecular interactions present in CH4 (methane).

The two most significant intermolecular forces are dipole-dipole interactions and London dispersion forces. 

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What metal goes in gap 1? give the name not the symbol.

Answers

A metal in chemistry refers to a group of elements that have common characteristics, such as being good conductors of heat and electricity, being malleable and ductile, and having a metallic luster.

Some examples of metals include:

Iron (Fe): Iron is a common metal found in the earth's crust, and is used in many industrial and construction applications, such as in steel production and in making tools and machinery.Copper (Cu): Copper is a red-brown metal that is known for its high conductivity and is used in many electrical applications, such as in wire and cable production.Aluminum (Al): Aluminum is a lightweight metal that is known for its corrosion resistance and is used in many applications, such as packaging, transportation, and construction.Gold (Au): Gold is a yellow metal that is known for its malleability and ductility, as well as its resistance to tarnishing. It is used in many applications, such as jewelry, electronics, and in central banks as a reserve.Silver (Ag): Silver is a whitish-gray metal that is known for its high conductivity and is used in many applications such as photography, electronics, and jewelry.

The purpose of these metals depends on their physical and chemical properties as well as the specific use for which they are made. 

The answer is general since this question is incomplete and the similar one is nowhere to be found. 

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What would the IR peaks be for DEET in the insect repellent OFF? The chemical name is N,N-diethyl-m-toluamide.I'm not sure how to add a picture, so the basic structure is a benzene ring with a methyl at the 1 position and then at the 3 position is a C-(C=O)-N with two ethyl groups bonded to the Nitrogen.

Answers

The IR peaks of N,N-diethyl-m-toluamide (DEET) in the insect repellent OFF would be as follows:

• C-H stretching: 2850-3000 cm-1 • C-O stretching: 1250-1350 cm-1 • C-C stretching: 850-1000 cm-1 • C=O stretching: 1730 cm-1 • N-H stretching: 3300-3500 cm-1 • C-N stretching: 1500-1550 cm-1

Insect repellents are substances used to protect people and animals from biting or stinging insects, such as mosquitoes, ticks, and fleas. Insect repellents come in a variety of forms, including creams, sprays, lotions, and oils.

The most common active ingredients in insect repellents are DEET, picaridin, and lemon eucalyptus oil. These ingredients work by masking the scent of humans and animals, making them less attractive targets for biting or stinging insects. Insect repellents can be used outdoors or indoors, and should be applied in accordance with the instructions on the package.

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1) Predict the overall reaction from the following two-step mechanism:2A -> A2 (slow)A2 + B -> A2B (fast)Express your answer as a chemical equation.2) Predict the rate law from the following two-step mechanism:2A -> A2 (slow)A2 + B -> A2B (fast)Express your answer in terms of k, [A] and [B] as necessary.____________________________3) What is the rate law for the following mechanism in terms of the overall rate constant k?Step 1: A + B ⇌ C (fast)Step 2: B + C -> D (slow)Express your answer in terms of k and the necessary concentrations (e.g., k*[A]^3*[D]).4) Using the results of the Arrhenius analysis (Ea=93.1kJ/mol and A=4.36×1011M⋅s−1), predict the rate constant at 342 K .Express the rate constant in liters per mole-second to three significant figures.

Answers

rate constant = 2.63*10-3 L/mol.s

1. The reactions are:

2A  ->  A2              (slow)

A2  +  B  ->  A2B   (fast)

By adding both these equations, we get,

2A + B -----> A2B

This is the overall reaction.

2) In the two step mechanism, the rate depends on the slow step. So,

rate = k [A]2

3) In the two reactions rate will depend on slow step.

Rate = k*[B]*[C]

4) Arrhenius equation,

k = Ae-Ea/RT

A = 4.36×1011M⋅s−1

Ea = 93.1kJ/mol  = 93100 J/mol

R = gas constant = 8.314 J/mol.K

Temperature = T = 342 K

k = Ae-Ea/RT = (4.36×1011) e-93100/(8.314*342) = 2.63*10-3 L/mol.s

rate constant = 2.63*10-3 L/mol.s

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What is the electron configuration of oxygen? a. 1s 2, 2s 6, 2p 4, 3s 2 b. 1s 2 2s 2 2p 3
c. 1s 2 2s 2 2p 4 d. 1s 2, 2s 2, 2p 4, 3s 2

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1s²2s²2p⁴ is the electron configuration of oxygen.

The placement of electrons around the nucleus of a specific atom or molecule is known as its electronic configuration. The smallest parts of an atom are protons, neutrons, and electrons.

A neutral atom has an equal number of protons and electrons. That number is the element's atomic number, according to the periodic table of elements. The electronic configuration of an atom reveals the number and distribution of its electrons.

Oxygen, the eighth element, has a total of eight electrons. In the oxygen electron arrangement, the first two electrons will be in the 1s orbital. Since 1s can only hold two electrons, the next two electrons for O are put in the 2s orbital. The final four electrons will go to the 2p orbital.

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The equation of burning (the combustion of) the organic compound 8 The compound C,H,O, burns completely in O, gas forming carbon dioxide gas and water vapour. What is the coefficient of oxygen in the balanced equation of the combustion (burning) reaction ? a) 3. 5 (b) 4 d) 6​

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The chemical compound C,H,O completely burns in oxygen gas, releasing carbon dioxide and water vapour. In the balanced equation of the combustion (burning) reaction, the oxygen coefficient is 5.

Which natural gas produces carbon dioxide and water when it burns in the air and mixes with oxygen?

Natural gas is a hydrocarbon that contains methane (CH4). Any hydrocarbon will create water and carbon dioxide when burned in the presence of air (CO2) Complete combustion occurs when natural gas burns, producing a high-temperature blue flame.

Which of the following causes deforestation, burning, and cement manufacturing to naturally release CO2 into the atmosphere on Earth?

When animals breathe or decay (decompose), carbonate rocks are worn, forest fires happen, and volcanoes erupt, carbon dioxide is naturally released into the atmosphere. Human activities such as the combustion of fossil fuels, the destruction of forests, and the manufacture of cement all contribute to the atmospheric addition of carbon dioxide.

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