FeCl3, CH4, [tex]F_2[/tex], and CuO are compounds. Thus option A, F, G, H are the answers.
A compound is a substance made up of two or more different elements that are chemically bonded together. The chemical formula for a compound represents the ratio of the elements present in the compound.
a) FeCl3 is a compound, which is made up of Iron and Chlorine elements chemically bonded together. The chemical formula for FeCl3 is FeCl3, representing the ratio of Iron and Chlorine in the compound.
f) CH4 is a compound, which is made up of Carbon and Hydrogen elements chemically bonded together. The chemical formula for CH4 is CH4, representing the ratio of Carbon and Hydrogen in the compound.
g) F2 is a compound, which is made up of Fluorine element chemically bonded together. The chemical formula for F2 is F2, representing the ratio of Fluorine in the compound.
h) CuO is a compound, which is made up of Copper and Oxygen elements chemically bonded together. The chemical formula for CuO is CuO, representing the ratio of Copper and Oxygen in the compound.
On the other hand, b) Mg is an element, not a compound. It represents Magnesium, which is a single element and not made up of two or more different elements. Similarly, c) P8 is not a chemical formula, so it is not a compound. It represents an unknown compound. d) Fe is an element, not a compound. It represents Iron, which is a single element. e) N2O5 is a molecule, not a compound. It represents Dinitrogen pentoxide, which is made up of Nitrogen and Oxygen elements but not chemically bonded together.
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Consider the combustion of ethylene:
C2H4(g)+3O2(g)→2CO2(g)+2H2O(g)
If the concentration of C2H4 is decreasing at the rate of 3.8×10−2 M/s, what is the rate of change in the concentration of CO2? What is the rate of change in the concentration of H2O?
The rate of change in the concentration of H2O is 0.076 M/s
What is rate of change?Rate of change is used to mathematically describe the percentage change in value over a defined period of time, and it represents the momentum of a variable.
The rate of a reaction aA + bB → cC + dD can be calculated by:
r = -(1/a)x(Δ[A]/Δt) = -(1/b)x(Δ[B]/Δt) = (1/c)x(Δ[C]/Δt) = (1/d)x(Δ[D]/Δt)
Therefore the reaction C2H4(g)+3O2(g)→2CO2(g)+2H2O(g) will be calculated same.
The minus signal for the reactants is because they are disappearing, so Δ{A] and Δ[B] will be negative.
Therefore we have for the same time, r is proportional to the coefficients: where r is
r = (1/2) Δ[CO₂]/Δt
Δ[CO₂]/Δt = 2x3.8x10⁻²
Δ[CO₂]/Δt = 0.076 M/s
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which of the following chemical equations are balanced when solid calcium carbonate decomposes into solid calcium oxide and gaseous carbon dioxide.
put the following elements in order from lowest to highest first ionization energy and explain why: al, ar, cs, na.
The order of the elements from lowest to highest first ionization energy is: Cs, Na, Al, Ar
The first ionization energy is the amount of energy required to remove the most loosely held electron from an atom or a positive ion. It is a measure of the atom's atomic stability.Cs has the lowest first ionization energy because it is the furthest element from the left of the periodic table and has the largest atomic radius. The outermost electron is farther away from the positively charged nucleus and is held less tightly than the electrons of the other atoms listed. Therefore, it requires less energy to remove an electron from Cs than from other elements.Na has a relatively lower first ionization energy than Al and Ar, as it is located in Group 1 of the periodic table, which makes it a metal and it has only one valence electron, which is farther away from the positively charged nucleus and is held less tightly than the electrons of Al and Ar. Al, is located in Group 13 of the periodic table, which makes it a metal, but it has three valence electrons and is farther away from the left side of the periodic table than Na and Cs, therefore it requires more energy to remove the outermost electron.
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A student collects a sample of the blue dye from the column in a cuvette. Which of the following is least useful to determine the concentration of the sample using a spectrophotometer set at 640nm?
A. The volume of a sample
B. The path length of the cuvette
C. The absorbance of the dye at 640nm
D. The solar absorptivity of the dye at 640nm
The sample's volume is the least useful consideration when determining the concentration of a sample using a spectrophotometer set to 640nm.
Spectrophotometry, an analytical technique, is used to assess how much light is absorbed or transmitted by a solution when a light beam of a particular wavelength is passed across it. In spectrophotometry, a solution's absorptivity and concentration are negatively correlated. This implies that as a solution gets more concentrated, more light is absorbed by it. Important factors in establishing a solution's concentration include the route length of the cuvette, the dye's absorbance at a particular wavelength, and the solution's solar absorptivity.
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for atoms aluminum and boron, explain which would have the lowest third ionization energy and why one is lower than the other as they both ahve three valence electrons
For atoms aluminum and boron, it has highest third ionization energy.
What is ionization energy?
Ionization energy, also known as ionization potential, is the amount of energy needed to remove an electron from a single atom or molecule in chemistry and physics.
What is valence electrons ?
For instance, oxygen contains six valence electrons, two of which are in the 2s subshell and four of which are in the 2p subshell. The oxygen valence electron configuration is 2s22p4.
The ionization potential of boron, the smallest of the IIIA group elements, is the highest. The increase in atomic radius is the reason why there is a substantial drop in ionization energy from boron to aluminum.
Therefore, for atoms aluminum and boron, it has highest third ionization energy.
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A sample of helium gas is in a closed system with a movable piston. The volume of the gas sample is changed when both the temperature and the pressure of the sample are increased. The table below shows the initial temperature, pressure, and volume of the gas sample, as well as the final temperature and pressure of the sample.In the space in your answer booklet, show a correct numerical setup for calculating the final volume of the helium gas sample.
Final volume of the helium gas is 2.67 L.
What is helium gas?Helium gas is an odorless, colorless, tasteless, non-toxic, and non-flammable gas. It is the second most abundant element in the universe and makes up about 24% of the elemental mass of the universe. Helium is a noble gas and is not known to form any compounds. It is most commonly used in cryogenics and as a pressurizing gas in airships, weather balloons, and diving bells. It is also used in gas lasers, welding, and other industrial applications. Helium gas is also used in medical applications such as MRI scans, and in scientific research such as spectroscopy and nuclear magnetic resonance spectroscopy.
Initial Conditions: T1 = 300 K, P1 = 0.5 atm, V1 = 2.0 L
Final Conditions: T2 = 400 K, P2 = 1.0 atm
Numerical Setup:
V2 = ?
P1V1/T1 = P2V2/T2
V2 = P1V1T2/P2T1
V2 = (0.5 atm)(2.0 L)(400 K)/(1.0 atm)(300 K)
V2 = 2.67 L
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At pH 7 which of the following peptides will bind to concentration of NaCl for elution? anion-exchange column and require the lowest
The Answer is HIPAGEATEKALRGD.
What are Anionic Peptides?
Since their first description in the early 1980s, anionic antimicrobial peptides/proteins (AAMPs) have established themselves as key components of the innate immune system of vertebrates, invertebrates, and plants. These peptides are effective against pests such as bacteria, fungi, viruses, and insects.
The answer is that anionic peptides bind to anion exchange columns. The overall charge of the peptide depicts the strength of binding. Of the options given, only C has a net negative charge. Peptide C has a net charge of -5, whereas peptide D elutes at a lower salt concentration than peptide D. This is due to the need to understand the design of anion exchange experiments and the role of elution in their design in order to determine the adequacy of the technique.
Hence, the solution.
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Which of the following molecules would have a higher boiling point? How do you know? i. CS or CO2? ii. Ozor Hz? ili. SiH, or SnH? 11. Based on the information in the following table, which of the molecules presented has the weakest intermolecular forces? Which has the strongest? Substance Boiling point (°C) -78 142 CH 3F CHCI СН Br CH! CCIA 4 42 לול
i. CS2, because it has stronger London dispersion forces, due to its larger molecular weight.
ii. Ozor Hz, because it has stronger dipole-dipole forces.
iii. SiH4, because it also has stronger London dispersion forces than SnH4.
The CH3F molecule has the weakest intermolecular forces, and the CHCl3 molecule has the strongest intermolecular forces.
What is dispersion forces?
Dispersion forces, also known as London forces, are a type of intermolecular force that is caused by the temporary dipole moments that result from the fluctuating distribution of electrons in molecules and other particles. They are the weakest intermolecular force, and are responsible for phenomena such as surface tension and viscosity.
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Read the Safety Data Sheet (SDS) (click the SDS icon below) of hydrogen peroxide to identify the type of eye protection recommended when handling this substance. SDS Select one: Safety glasses Tightly fitting safety goggles O Eyeglasses with safety shields O Any of the choices listed are adequate eye protection,
Any of the choices listed are adequate eye protection, depending on the situation. The SDS for hydrogen peroxide recommends safety glasses, tightly fitting safety goggles, or eyeglasses with safety shields.
What is the hydrogen peroxide?
Hydrogen peroxide is a colorless liquid that is a strong oxidizing agent. It is composed of two hydrogen atoms and two oxygen atoms, and it is usually found as a pale blue liquid. It is used as a disinfectant and bleaching agent, as well as in rocket fuel and in the production of various chemicals. Hydrogen peroxide is a powerful oxidizer and can cause damage to living cells if used improperly. It breaks down into water and oxygen when it is exposed to light or certain enzymes, making it a safe and effective disinfectant. It is also used in hair bleaching, teeth whitening, and stain removal.
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Why does this data not represent a direct relationship? Time (s) 0 5 10 15 Temperature (°C) 4 10 18 22 A. they both increase B. the products of each variable does not equal a constant C. the quotients of each variable does not equal a constant D. it is an inverse relationship
C. the quotients of each variable does not equal a constant
A direct relationship is a linear relationship where the quotient of the two variables (the slope of the line) is always the same. In this case, the temperature increases by 6°C every 5 seconds. The quotient of the temperature and time does not remain constant, so this data does not represent a direct relationship.
If a person practicing yoga for one hour burns 285 kilocalories (kcal),
how many joules (J) of energy have they burned?
The amount of energy a person has burned while practicing yoga for one hour can be calculated by converting kilocalories (kcal) to joules (J).
How many joules (J) of energy have they burned?One kcal is equal to 4184 J. Therefore, if a person has burned 285 kcal, they have burned 285 x 4184 = 1197140 J of energy.When the body burns energy, it does so by releasing heat. This heat is measured in joules. Any form of physical activity, such as yoga, can cause the body to burn energy, and thus release heat. The amount of energy burned during a physical activity is determined by the intensity and duration of the activity.The energy burned during yoga depends on the type of poses and exercises done, as well as the individual's level of fitness. Generally, more strenuous poses and exercises will burn more energy than gentler ones. The more intense the activity, the more energy the body will burn.When the body burns energy, it is converted into fuel for the muscles. This fuel helps maintain the body's temperature, power muscle contractions, and provide energy for cells. The energy burned during yoga is converted into ATP, which is used to provide energy to cells.In conclusion, if a person practicing yoga for one hour burns 285 kcal, they have burned 1197140 J of energy. This energy is used to power muscle contractions, maintain body temperature, and provide energy for cells.1 kcal = 4184 JTherefore, the person has burned 1189340 J of energy.To learn more about energy conversion refer to:
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choose the compound below that contains at least one polar covalent bond, but is nonpolar. group of answer choices pocl3 pclbr4 pcl5 po2cl both b and c are nonpolar and contain a polar covalent bond.
CF4 is nonpolar as geometry of CF4 is tetrahedral; due to mutual cancellation of dipole moment. Thus option B is correct.
What are the compound that contains least polar covalent bond?A non polar molecule is one in which there is no separation of charge and the electrons are shared equally between the atoms.Out of the options given, only PCL5 contains at least one polar covalent bond but is nonpolar.POCL3 has a polar covalent bond between the oxygen atom and the chlorine atoms but is polar in nature.PCLBr4 and PO2Cl both contain polar covalent bonds but are polar in nature.In PCL5, the five chlorine atoms are symmetrically arranged around the central phosphorus atom, which cancels out any net dipole moment and results in a non polar molecule.To summarize, PCL5 is the compound that contains at least one polar covalent bond but is non polar.To learn more about covalent bonds refer:
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Complete question:
HELPPP PLEASEE w/ all
The covalent bond is present in the compound C₃H₈. The reactant C is 3, product C is 6, reactant H is 8, product H is 10, Reactant O is 2, product O is 9.
What is covalent bond ?
Atoms share electron pair between them in covalent bonds. H-H or C-H are examples of nonpolar covalent bonds between atoms with similar or identical electronegativity, whereas polar covalent bonds are formed when unequal electronegativity is shared between atoms (e.g., H–O).
What is reactant ?
Raw materials known as reactants combine to create products. When the right factors, such as temperature, time, or pressure, come into play, the chemical bonds between the reactants are broken, allowing the atoms to form new bonds that lead to various combinations.
Therefore, covalent bond is present in the compound C₃H₈. The reactant C is 3, product C is 6, reactant H is 8, product H is 10, Reactant O is 2, product O is 9.
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Which of the following should be done when handling a corrosive? (More than 1 answer can be correct.) - know the location of eyewash stations & safety showers -wear long sleeved shirts, long pants,& liquid shedding close toed shoes -discard gloves after contamination or taking off -If exposed wash off skin immediately -use in the fume hood if the corrosive is an inhalant hazard -wear goggles, lab coat & gloves -use concentrated solutions whenever possible -carry bottles in secondary containers
The correct options are 1,2,3,4,5,6,8.
What are Corrosive Substances?
Corrosive substances are highly reactive substances that damage living tissue. They act directly by chemically destroying (oxidizing) the part or indirectly by igniting it. Acids and bases are common corrosives.
Option 1: Correct; Before handling corrosive materials, it is necessary to know the locations of eye washes and safety showers .
Option 2: Correct; we must wear long-sleeved shirts, long pants and water-shedding shoes so as to minimise the chances of coming in contact with the corrosive material.
Option 3: Correct; the gloves have to be discarded.
Option 4: Correct; If the skin gets exposed to the corrosive it immediately needs to be flushed with cold water for 10-15 minutes.
Option 5: Correct; if the corrosive substance is an inhalant hazard then we must wear a fume hood before handling it.
Option 6: Correct; goggles, lab coat and gloves are a must in order to ensure safety.
Option 7: Incorrect; this is wrong because it is unsafe to use concentrated solutions more as the chances of coming in contact with these and getting harmed are more. Also, additional safety measures have to be taken while dealing with concentrated solutions like acids.
Option 8: Correct; the corrosive needs to be carried in secondary bottles made of non-corrosion-resistant materials.
Hence, the solution.
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when halogens are bonded to other nonmetals, the element with the higher_________ is assigned the negative number.
when halogens are bonded to other nonmetals, the element with the higher Electronegativity is assigned the negative number. Electronegativity rises from bottom to top in groups.
Electronegativity and from left to right through time. As a result, fluorine is the most electronegative element, whereas francium is one of the least. Elements having a high electronegativity are usually nonmetals or electrical insulators that function as oxidants in chemical processes. Elements having a low electronegativity, on the other hand, are often metals and strong electrical conductors that operate as reductants in chemical processes. The nucleus' positively charged protons attract the negatively charged electrons. The electronegativity or attraction rises as the number of protons in the nucleus increases. As a result, in a row of the periodic table, electronegativity rises from left to right.
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which of the following describe how water mixes in a thermohaline current? select the two correct answers.
Cold water is submerged beneath warm water. Less salty water is submerged beneath saltier water. The two correct answers are as follows: explain how water combines in a thermohaline current.
The density of seawater increases as it grows saltier, and it begins to sink. Surface water is pulled in to replenish sinking water, which cools and salts sufficiently to sink. This initiates the deep-ocean currents that drive the global conveyer belt. Variations in water density generate deep currents, also known as thermohaline current circulation. As cold, dense water falls to the poles, these currents form. Over a 1000-year period, surface water flows to replenish sinking water, creating a conveyor belt-like effect of water round the planet. Cold water is submerged beneath warm water. Less salty water seeps beneath the surface.
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the atomic mass unit . multiple select question. is based on the mass of an electron is based on the mass of an atom of c612 is often abbreviated as amu has units of grams is based on the mass of a hydrogen atom, which contains only 1 proton
The atomic mass unit is often abbreviated as amu, is based on the mass of an atom of C612C612.
What is meant by mass?
It is the most fundamental characteristic of matter and one of the fundamental quantities in physics.Mass is a term used to describe how much matter is there in a body. The kilogram is the SI unit of mass (kg).The amount of matter in a particle or object is represented by the dimensionless quantity mass (symbolized m).The kilogram is the International System's (SI) preferred unit of mass (kg).A three-dimensional object's volume is the area it takes up, and it is expressed in cubic units.Cm3 and in3 are two examples of cubic units. The amount of matter in an item can be determined by its mass, on the other hand. How much something weighs is frequently used to determine mass.To learn more about mass refer to
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Chemistry final
HELP!!!!
The inorganic compound copper(II) sulfate, also referred to as copper sulphate, has the molecular formula CuSO4. Copper sulphate's aqueous solution has an acidic pH.
What happens when CuSO4 reacts?The following chemical equation describes the reaction between a CuSO4 solution as well as an iron nail. CuSO4+Fe→FeSO4+Cu. (a) Describe the reduction reaction that is occurring. (a) Explain why Cu was pushed out of the CuSO4 solution by Fe.
CuSO4 turns blue litmus red; why?Water dissolves CuSO4 to produce Cu+2 and SO42. Since H+ ions are produced in this condition, this solution was slightly acidic, which causes its blue litmus paper to turn red.
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A glass vessel contains 4 g of helium gas. Assuming ideal behavior, which of the processes listed below would double the pressure exerted on the walls of the vessel? (Select all that apply.) A) Adding 40 g of argon gas. B) Raising the temperature of the container from -73 °C to 127 °C. C) Raising the temperature of the container from 30. °C to 60. °C. D) Adding 4 g of argon gas. E) Adding enough mercury to fill one-half the container.
Raising the temperature of the container from -73 °C to 127 °C.
What is temperature?
Thermometers are calibrated in different temperature scales, which have historically relied on different reference points and thermometric substances for definition.The most common scales are the Celsius scale with the unit symbol °C (formerly called Celsius), the Fahrenheit scale (°F), and the Kelvin scale (K), the latter being used mostly for scientific purposes. Kelvin is the seven base units in the International System of Units (SI).To know more about temperature, click the link given below:
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In forming a molecular structure, each atom should have ________ electrons around it unless there is some specific reason why this cannot be achieved.
a. 4
b. 6
c. 8
d. 2
In forming a molecular structure, each atom should have 8 electrons around it (c. 8) unless there is some specific reason why this cannot be achieved.
The octet rule is a basic principle of chemical bonding that states that atoms tend to gain or lose electrons in order to achieve a full outermost electron shell (the valence shell) of 8 electrons. This is a general trend in chemical bonding and it is based on the principle that atoms tend to be most stable when they have a full valence shell.This is because atoms with a full valence shell are less likely to participate in chemical reactions, and thus they are less reactive. The octet rule applies to most elements in the periodic table except for hydrogen and helium which are an exception to this rule. So the electrons around the atom are important for the stability of the molecule, and atoms tend to gain, lose or share electrons in order to achieve a full outermost electron shell of 8 electrons.
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Select the most polar bond a) C-F b) N-F c) O-F d) B-F e) none are polar
The most polar bond is C-F. The difference in electronegativity between the two elements, carbon and fluorine, is very high.
What is polar bond?A polar bond is a type of chemical bond between two atoms in which the electrons are shared, but not evenly. One atom will have a slightly negative charge, while the other atom will have a slightly positive charge. This is due to the difference in the electronegativity of the two atoms. Common examples of polar bonds are water molecules, since oxygen has a higher electronegativity than hydrogen.
Fluorine has an electronegativity of 4.0, whereas carbon has an electronegativity of 2.5. This large difference creates a polar covalent bond, with the fluorine end of the bond having a partial negative charge, and the carbon end having a partial positive charge. This makes the C-F bond the most polar of the choices given.
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Fill in the information missing from this table.
The nuclides are;
1) 133 Cs 55
2) 93 Nb 41
3) 28 Si 14
What is the mass number?We know that the mass number is the sum of the number of the protons and the number of the neutrons in an atom. The protons and the neutrons both compose the nucleus of the atom.
We now have that;
1) Mass number = 133
Atomic number = 55
Protons = 55
Neutrons = 133 - 55 = 78
Nuclide = 133 Cs 55
2) Mass number = 41 + 52 = 93
Atomic number = 41
Nuclide = 93 Nb 41
3) Protons = 14
Neutrons = 28 - 14 = 14
Atomic number = 14
Mass number = 28
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A number 4 in the blue quadrant of the NFPA 704 system indicate that there is _______________________ risk in this category from the chemical involved.
A number 4 in the blue quadrant of the NFPA 704 system indicate that there is cause death or major injury risk in this category from the chemical involved.
What does 4 mean on NFPA?OSHA's Classification System and NFPA Rating 0-4 0-least dangerous 4th most dangerous 1-most serious hazard 4-least serious hazard • Hazard category numbers are not required on labels but must be included on SDSs in Section 2.
The blue, red, and yellow fields (health, flammability, and reactivity) all use a 0 to 4 scale. A value of zero indicates that the material poses virtually no risk; a value of four indicates extreme danger.
Thus, A number 4 in the blue quadrant of the NFPA 704 system indicate that there is cause death or major injury risk.
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2NH3(g)−→−−−−catalystN2(g)+3H2(g) On the basis of the data in the graph, which of the following best represents the rate law for the catalyzed decomposition of NH3(g)?
The best represents the rate law for the catalyzed decomposition of NH3(g) rate=k.
What is meant by catalyzed ?
acting as a catalyst to cause a chemical reaction to occur or to progress more quickly: It was once believed that cells' processes could only be catalyzed by proteins.Catalysis is the process by which the addition of a substance (the catalyst) that is not itself modified during the chemical reaction changes the rate at which chemical reactions occur.Usually, catalyzed reactions are employed to quicken the rate at which a certain chemistry develops. The catalyst's main function is to give the reaction a another, lower-energy pathway.A substance that initiates or accelerates a chemical reaction without changing itself is known as a catalyst.A circumstance, action, or someone responsible for a significant shift.To learn more about catalyzed refer to
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What is the structure of a rearranged carbocation that does not have a four-membered ring in the following acid-catalyzed dehydration of the following compound?
Carbocation formation is the result of acid-catalyzed dehydration. The stability of carbocations determines the reactivity of this reaction. The carbocation stability order would be as follows:
(Dual bond conjugation)>Tertiary>Secondary>Primary
Increasing the stability of carbocation intermediates is not the only factor that leads to molecular rearrangement. If angle strain , torsional strain or steric crowding in the reactant structure may is relieved by an alkyl or aryl shift to a carbocation site, such a rearrangement is commonly observed.
The following examples illustrate rearrangements induced by the strain in a small ring. Although a 3º-carbocation is initially formed, the angle and torsional strain of the four-membered ring is reduced by a methylene group shift resulting in ring expansion to a 2º-carbocation.
The given question is incomplete. The complete question is:
What is the structure of a rearranged carbocation that does not have a four-membered ring in the following acid-catalyzed dehydration of the following compound?
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What was it about the land between the rivers that made it so inviting to early human civilization
Answer:
General-purpose governments provide many different services while special-purpose governments provide specific services.
Explanation:
For each of the following unbalanced chemical equations, suppose 10.0 g of each reactant is taken. Show by calculation which reactant is the limiting reagent. Calculate the mass of each product that is expected.a. CO(g) + H2(g) CH3OH (l) b. Al(s) + I2(s) AlI3 (s) c. Ca(OH)2 (aq) + HBr(aq) d. CaBr2 (aq) + H2O
The following are equations in which the reactant is the limiting reagent.
What is a reactant?
A reactant is a substance that is consumed in a chemical reaction. In a balanced chemical equation, all reactants are listed on the left side of the equation and are consumed as the reaction proceeds. The reactant that is used up first in a reaction is called the limiting reactant or limiting reagent.
a. CO(g) + H2(g) -> CH3OH (l)
To find the limiting reagent, we need to compare the number of moles of each reactant. We can find the number of moles of each reactant by using the molar mass of each substance.
Molar mass of CO = 28.01 g/mol
Molar mass of H2 = 2.02 g/mol
Molar mass of CH3OH = 32.04 g/mol
10.0 g CO = 10.0 g / 28.01 g/mol = 0.357 mol CO
10.0 g H2 = 10.0 g / 2.02 g/mol = 4.95 mol H2
From the balanced equation, we know that for every one mole of CO, we need one mole of H2 to make one mole of CH3OH. Therefore, H2 is the limiting reagent.
The number of moles of CH3OH that can be produced is equal to the number of moles of H2, which is 4.95 mol.
To find the mass of CH3OH, we can use the molar mass:
4.95 mol CH3OH x 32.04 g/mol = 160 g CH3OH
b. Al(s) + I2(s) -> AlI3 (s)
Molar mass of Al = 26.98 g/mol
Molar mass of I2 = 253.8 g/mol
Molar mass of AlI3 = 380.2 g/mol
10.0 g Al = 10.0 g / 26.98 g/mol = 0.371 mol Al
10.0 g I2 = 10.0 g / 253.8 g/mol = 0.039 mol I2
From the balanced equation, we know that for every one mole of Al, we need three moles of I2 to make one mole of AlI3. So I2 is the limiting reagent.
The number of moles of AlI3 that can be produced is equal to the number of moles of I2, which is 0.039 mol.
To find the mass of AlI3, we can use the molar mass:
0.039 mol AlI3 x 380.2 g/mol = 1.495 g AlI3
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an unknown organic compound (0.315 g) containing only c, h, and o produces 0.771 of co2 and 0.105 g of h2o when it undergoes complete combustion. the approximate molar mass is 108 g/mol. which of the following compounds could be the identification of the unknown? group of answer choices
The identification of the unidentified C6H4O2 could be made using the following chemical molecules.
Given that (m) = 0.315 g, the mass of the unknown chemical compound.
The sole elements in the compound are carbon, hydrogen, and oxygen, and it completely burns.
CO2 generated mass (m1) = 0.771g
H2O generated mass (m2) = 0.105g
The organic compound (M) has a molar mass of 108g/mol.
The first thing we determine is the mass of the carbon, hydrogen, and oxygen in the supplied compounds. The chemical's empirical formula is then determined further. Using the empirical formula, we can determine the chemical from the given molar mass.
Molar mass/Molar mass of CO2 x mass of CO2 = 12/44x0.771
Mass of carbon in organic molecule (M1) = 0.2103g
The mass of hydrogen (M2) is equal to = 2/18x0.105, or= 0.012g.
oxygen mass (M3) is equal to = 0.315 - (0.2103 + 0.012) = 0.0927g.
Carbon moles equal = 0.2103/12 or 0.018.
1 mole of hydrogen is equal to = 0.012 moles.
Mole of oxygen is equal to = 0.0927/16, or 0.006.
n = Molecular formula/empirical formula = 108/54 = 2 is the resulting empirical formula.
C6H4O2 is the necessary organic molecule.
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complete question: An unknown organic compound (0.315 g) containing only c, h, and o produces 0.771 of co2 and 0.105 g of h2o when it undergoes complete combustion. the approximate molar mass is 108 g/mol. which of the following compounds could be the identification of the unknown? group of answer choices. A) Benzyl alcohol, C6H5CH2OH B) CH3C6H4OH C) 1,2-Benzoquinone, C6H4O2
three sections of the periodic table are labeled a, b, and c in the image below. a representation of the periodic table is shown. the cells of the periodic table are left blank. a zig zag section of the periodic table is shaded gray. this section is labeled b. the section on the right of this gray shaded section is labeled c and the section on the left of this gray shaded section is labeled a. which of the following statements is most likely true for an element present in section a? (5 points) it is dull and brittle. it is malleable and ductile. it is a liquid at room temperature. it is a poor conductor of electricity.
The most likely answer is that it is malleable and ductile.
What is periodic table?The periodic table is an organized arrangement of the known chemical elements. It is arranged in order of increasing atomic number (the number of protons in the nucleus of an atom). Each element is placed in a specific location because of its atomic structure. The table is organized into rows and columns, with each element represented by its atomic number, symbol, name, and atomic mass. The periodic table is used to predict the properties of elements, as well as their compounds. It is also used to identify the elements in a compound and determine the number of atoms present in a given sample.
Section A of the periodic table is made up of the alkali metals, which are generally soft and have low melting points, making them malleable and ductile. They are also solid at room temperature and poor conductors of electricity.
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Which of the following actions are likely to increase the rate of a chemical reaction? Check all that apply. A. Decreasing reactant concentration B. Decreasing reaction temperature C. Decreasing surface area of reactants D. Increasing reaction temperature E. Increasing reactant concentration F. Adding a catalyst
The following actions are likely to increase the rate of a chemical reaction,A. Decreasing reactant concentration, D. Increasing reaction temperature, E. Increasing reactant concentration, F. Adding a catalyst.
What is the temperature?
The temperature is a measure of the amount of heat energy present in a given environment. Temperature is measured in degrees, typically on the Celsius (°C) or Fahrenheit (°F) scales. Temperatures can vary greatly from one place to another and from one time of day to another.The temperature can vary greatly depending on your location and the time of day. Generally speaking, the average temperature of Earth is around 59 degrees Fahrenheit (15 degrees Celsius). However, temperatures can range from -129 degrees Fahrenheit (-89 degrees Celsius) in the coldest areas of the planet to 136 degrees Fahrenheit (58 degrees Celsius) in the hottest spots.
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