This is closely related to pi bonds in double and triple bonds prevent these bonds from rotating.
This rigidity has an effect on the physical structure of compounds and can influence chemical reactivity. Here double bonds contain pie orbitals, they are not free to rotate.
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consider the ground state electron configurations of the following atoms and ions: a. n b. s c. ni d. cl- e. ti3 c. which atom or ion has the most valence electrons? e. which atom or ion has the fewest valence electrons? a. which atom or ion has the most unpaired electrons? d. which atom or ion has the fewest unpaired electrons?
The most valence electron is present in Cl. The fewest valence electrons are present in Ni and Ti. The most unpaired electrons are present in N. The fewest unpaired electrons are present in Cl.
What are valence electrons?
Valence electrons are the electrons present in the outermost shell of an atom that participate in formation of a chemical bond. For example, oxygen atom has total of six valence electrons. out of those 2 electrons are in the 2s subshell and 4 electrons are present in the 2p subshell. So the electronic configuration of oxygen atom can be written as 1s2 2s2 2p4.
Cl has 7 valence electrons in it. Ni and Ti have 2 valence electrons in them which is the least among the following. There are 3 unpaired electrons present in N atom which is the highest among the following atoms and Cl has 1 unpaired electron which is the lowest among the following atoms.
Therefore, the most valence electron is present in Cl. The fewest valence electrons are present in Ni and Ti. The most unpaired electrons are present in N. The fewest unpaired electrons are present in Cl among the following atoms.
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what pairs would form covalent bonds?
Answer:
Covalent bonds usually occur between nonmetals.
Explanation:
viral symmetry that is both icosahedral and helical and possibly other symmetry is collectively referred to as
viral symmetry that is both icosahedral and helical and possibly other symmetry is collectively referred as complex.
what is symmetry?
Chemistry terms like "molecular symmetry" refer to the symmetry that exists in molecules as well as how they are categorised. As it may be used to predict or explain many of a molecule's chemical characteristics, including its dipole moment and its permitted spectroscopic transitions, molecular symmetry is a key concept in chemistry.
An action that results in an object's appearance remaining unchanged is known as a symmetry operation. For instance, a water molecule will retain its original appearance if it is rotated by 180 degrees around an axis that runs through the centre O atom (located in the middle of the two H atoms). Each symmetry operation has a corresponding symmetry element, which can be an axis, a plane (2 dimensions), a line (1 dimensions), or a point (0 dimensions), with regard to which the symmetry operation is performed
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difference between volume and time.
Answer:
Volume is defined as the space occupied within the boundaries of an object in three-dimensional space. It is also known as the capacity of the object.
Time is the continued sequence of existence and events that occurs in an apparently irreversible succession from the past, through the present, into the future.
every chemical reaction proceeds through a high-energy unstable species as reactants are converted to products and bonds are in the process of being formed and/or broken. this unstable species is called a(n) complex or state.
The unstable species is called as transition state.
Transition state in a chemical reaction is a point in the chemical reaction with highest potential or highest energy. This state is said to be the most unstable stage of any chemical reaction and this unstable stage exists between the substrate and the products.
When any chemical reaction takes place the energy of the reaction or the potential of the reaction gradually starts increasing as new bonds are about to form and the old bonds are ready to break. Once the reaction reaches a highest potential point we can see that at this point partial bond braking and partial bond is happening, this is called as the transition state.
As this is the unstable state the reaction starts to loose energy as the product is formed.
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2. based on your observations, what is the function of propylene glycol and methyl oleate in a hand cream?
The function of propylene glycol and methyl oleate in a hand cream is as a thickening agent and as an emulsifier and skin softener used in cosmetics.
ExplanationPropylene Glycol
Propylene glycol is a petroleum derivative product that has no odor and is colorless. This product is one of the products used as a raw material for making cosmetics. The function of propylene glycol is as a thickener for cosmetics such as facial moisturizers, facial cleansers, and other cosmetics that are liquid.
Methyl Oleate
Methyl Oleate is a long-chain saturated fatty acid found naturally in various animal and plant fats. Methyl oleate is solid and white in color, and has a mild aroma and is sometimes crystalline. The content contained in this product is often used as raw material for cosmetic products. The function of methyl oleate is as an emulsifier and lubricant that can soften the skin, and help keep cosmetic products from separating. One important function of methyl oleate in cosmetic products is to create a moist, slippery and unbreakable texture.
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pre-lab calculation suppose that 0.483 g of an unknown monoprotic weak acid (ha) is dissolved in water. if titration of this sample required 42.0 ml of 0.250 m naoh (aq) to reach the stoichiometric point, calculate the molar mass of this acid.
so, to calculate the molar of the monoprotic weak acid ;
first, we write the reactions
HA +NaOH → NaH +H20
42.0ml NaOH ( 1l NaOH / 1000 ml NaoH ) (0.250 m/ 1l NaOH) (1 mol HA/ 1 mol NaOH)
0.0105 moles HA
now, we calculate the molar mass
molar mass= mass/ moles
= 0.483 grams/ 0.0105 moles
= 46 grams/moles
the molar mass of the monoprotic weak acid is 46grams/moles
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which statements collectively explain why radical bromination of 2-methylpentane selectively gives the product shown? select all that apply.
The statements that collectively explain why radical bromination of 2-methyl pentane is
the rate-determining step is endothermic, and so the most stable alkyl radical forms fastest.The product shown arises from the most stable radical intermediateThe rate-determining step in the reaction is abstraction of a hydrogen atom from 2-methylpentaneSo the correct option are A, C, and D.
What is radical bromination?Radical Bromination is described as a process in which a free-radical chain mechanism introduces bromine into a molecule.
The bromine radical removes a hydrogen atom from the methane and because the hydrogen atom only needs to bring one electron with it to form a new bond to the bromine, and so one electron is left behind on the carbon atom.
In the creation of radicals, if bromine (Br2) is treated with light (hν) it comes to hemolytic cleavage of the Br-Br bond.
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Complete question:
Which statements collectively explain why radical bromination of 2-methylpentane selectively gives the product shown? select all that apply.
a. the rate-determining step is endothermic, and so the most stable alkyl radical forms fastest.
b. the rate-determining step is exothermic, and so the least stable alkyl radical forms fastest.
c. The product shown arises from the most stable radical intermediate
d. The rate-determining step in the reaction is abstraction of a hydrogen atom from 2-methylpentane
e. The rate-determining step in the reaction is addition of a hydrogen atom from 2-methylpentane
what molecules does mgso4 remove from the viodiesel, what chemical interactions are occuring that allow this to work
The MgSO₄ (magnesium sulfate) remove water molecules entrapped in biodiesel. Ion dipole are the interactions that allow this to work.
Diesel fuel can be replaced by domestically produced, clean-burning biodiesel. The use of biodiesel as a vehicle fuel increases energy security, benefits the environment and the air we breathe, and enhances safety. Animal fats, used cooking oils, yellow grease, and vegetable oils can all be used to make biodiesel. The process of transesterification, which turns fats and oils into biodiesel and glycerin, produces the fuel. The electrostatic attraction between an ion and a dipole-containing neutral molecule produces an attractive force known as the ion-dipole force. typically located in solutions. important in particular for ionic compound solutions in polar liquids.
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how many valence electrons does each of these four elements have? how do you know? a) aluminum (al), b) fluorine (f), c) sodium (na), and d) calcium (ca)
. in an analysis of interhalogen reactivity, 0.500 mol of icl was placed in a 2.00 - l flask, where it decomposed at a high t: 2 icl(g) i 2 (g) cl 2 (g) calculate the equilibrium concentration of icl (k c
The equilibrium concentration of ICl is 17.97M
Equilibrium concentration is when both reactant and product are in concentration which does not change with time any more
Here given data is
Volume = 2.00L
Number of moles of ICl = 0.440 moles
Kc = 0.110
Balanced chemical equation
2ICl ⇄ I₂ + Cl₂
We have to calculate equilibrium concentration of icl = ?
Calculations for initial concentration
ICl = 0.440 moles/ 2.00L = 0.22M
I₂ = 0M
Cl₂ = 0M
Concentration of equilibrium
ICl = (0.22M - 2x)M
I₂ = xM
Cl₂ = xM
Calculation for Kc
Kc = 0.110 = [I₂][Cl₂]/[ICl]
0.110 = x²/ (0.22M-2x)²
0.332 = x(0.22M-2x)
x = 0.332×(0.22M-2x)
x = 0.0730 - 0.664x
0.664x = 0.0730
x = 0.664/0.0730
x = 9.095
The equilibrium concentration will
[I₂] = [Cl₂] = 9.095M
[ICl] = 0.22M - 2(9.095)
[ICl] = 17.97M
Equilibrium concentration of ICl is 17.97M
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convert 4.6 x 10^23 molecules of sucrose to moles of sucrose
Answer:
0.76moles of sucrose
Explanation:
1 mol = 6.022 x 10^23 molecules
4.6 x 10^23 molecules = X x 6.022 x 10^23
X = 0.7639
X = 0.76moles
How did analyzing the chemical composition of the murder victim's bone help the detective identify the region of the world from which the victim came?
Please just answer in some educated way it doesnt have to be 100% correct
Each region has a different environment which can change the chemical composition of the body.
What information provides by studying the bones?Many of the skeletons have related to age, sex, ancestry, and cause of death. The remains of an individual with biological information are especially valuable. Forensic anthropologists have used skeletons to develop standards for identifying the sex, age, and ancestry of unknown remains of the body. Analyzing the chemical composition of the murder victim's bone, can help to identify the region of the world from which the victim came because each region has a different environment that can change the chemical composition of the body.
So we can conclude that analyzing the chemical composition of the murder victim's bone helps the researcher to identify the victim due to the environment in which the person was exposed.
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given the rate at which human activity is increasing atmospheric carbon dioxide levels, why can't we expect the natural carbon dioxide cycle to prevent global warming?
the human activities like coal tar minings, foctory out let releasing the carbon gases out with out filtering, air polluting activities, over using personal vehicles for unnecessary activities, and many other reasons that are briefly explained below
what is global warming?
a steady rise in atmospheric temperature often attributed to the greenhouse effect brought on by higher quantities of carbon dioxide, chlorofluorocarbons, and other pollutants.
The quantity of carbon dioxide emitted by human activity each year is at least 60 times greater than that produced by volcanoes. Large, ferocious eruptions may, for a few hours, match the pace of human emissions, but they are too uncommon and brief to come close to the yearly emissions of humans. In fact, the annual carbon dioxide emissions from a few specific U.S. states exceed those of the planet's entire active volcanoes.
In 2015, around 40 billion metric tonnes of carbon dioxide were released into the atmosphere as a result of human activity, mostly the burning of coal and other fossil fuels, but also cement manufacture, deforestation, and other landscape changes. The Global Carbon Project estimates that since the beginning of the Industrial Revolution, human activities have contributed more than 2,000 billion metric tonnes of carbon dioxide to the atmosphere.
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nitric oxide (30.01 g/mol) can be produced from ammonia (17.04 g/mol) and oxygen (32.00 g/mol). identify the limiting reactant if 75 g nh3 and 150 g o2 react. assuming a 100% yield, determine the limiting reactant and calculate the mass of excess reactant left over.
Answer:
NH3 is the limiting reactant; 51 g of excess reactant left over.
Explanation:
First, create the chemical equation for this reaction and balance it:
4NH3 + 5O2 ---> 4NO + 6H2O
Then, find the limiting reactant, but in this case using NH3:
75 g NH3 * 1mol NH3/17.04 g NH3 * 5 mol O2/4 mol NH3 * 18.02 g 02/ 1 mol O2 = 99.14 g O2 needed
Since 99.14 g of O2 is needed to react with 75 g of NH3, this means O2 is the excess reactant, since we have 150 g of O2 which is more than needed. This means that NH3 is the limiting reactant.
To find the mass of excess reactant left over, subtract the mass of O2 needed (99.14 g) from the mass used in the reaction (150 g).
150 g - 99.14 g = 50.858 g
Round to the appropriate number of sig figs:
50.858 g --> 51 g
A compound of hydrogen, chlorine, and carbon has a simplest formula of CCIH₂. If in one of its molecules there are two carbon atoms, find its molar mass.
Answer:
99 g/mol
Explanation:
2 carbon atoms in one molecule means double all the other atoms
(12*2)+(35.5*2)+(1*4)=99g/mol
Sodium can combine with element "X" so that
the chemical formula is Na2X. What element
could element "X" be?
Answer:
An element in Group 16 (oxygen, sulfur, selenium, etc.)
Explanation:
Sodium (Na) typically forms the cation Na⁺ during ionic bonding. If the overall charge of the compound is neutral (0), and there are two Na⁺ ions present (+1 + (+1) = +2), the element serving as the anion must have a -2 charge (+2 + (-2) = 0). Elements in group/column 16 have a -2 charge when ionized.
explain why the water strider is able to land on the surface of the water. use your knowledge of intermolecular forces and draw a particle diagram to justify your explanation
Water striders use the high surface tension of water and long, hydrophobic legs to help them stay above water.
Surface tension:
The tension of the surface film of a liquid is caused by the attraction of the particles in the surface layer by the bulk of the liquid, which tends to minimize surface area.
The force responsible for surface tension is the cohesive force that is present between the molecules of the liquid, the surface tension of water is high this is just because there is a hydrogen bond present between the molecules of water.
As we know that the legs of a water strider are long and slender, allowing the weight of the water strider's body to be distributed over a larger surface area.
Therefore the water strider can land on the surface of the water because of the surface tension of the water.
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How large a net force is required to accelerate a 2000-kg suv from rest with an acceleration of 0. 14 m/s2?.
A large net force of 280N is required to accelerate a 2000 kg suv from rest with an acceleration of 0.14m/s2 .
According to Newton’s 2nd law of motion, force is equal to the change in momentum per change in time.Acceleration of an object depends on the mass of the object and the amount of force applied.
Force=mass* acceleration
Here, mass is equal to 2000 kg and acceleration is equals to 0.14m/s/s.putting these values,
F= ma
F= 2000kg * 0.14 m/s2
= 280 kg m/s2
=280N
So, 280N of force is required.
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a ripening apple gives off ethylene, which causes nearby apples to begin ripening. those apples then give off ethylene gas, which continues the chain reaction by causing additional apples to ripen. this is an example of
This is an example of positive feedback regulation.
What is positive feedback regulation?A change in a particular direction causes an additional change in the same direction. For example, if the concentration of a substance increases, a feedback of continuously increasing concentration will occur.
A positive feedback loop occurs in nature when a product of a reaction leads to an increase in that reaction. Considering a system in homeostasis, a positive feedback loop pushes the system away from the goal of equilibrium.
Example of Positive Feedback Loops
Fruit Ripening.Childbirth.Blood Clotting.The feedback loop possess two major forms: (1) positive feedback and (2) negative feedback. They work simultaneously to maintain body equilibrium under different conditions.
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heat is added to an ideal gas, and the gas expands in the process. is it possible for the temperature to remain constant in this situation?
If the work done by the expanding gas equals the heat added, despite the constant energy of the system of the gas, the temperature can stay constant.
What is considered a ideal gas?An ideal gas is one where there were no inter - molecular attraction forces and all collisions involving atoms and molecules are entirely elastic. It can be seen as a group of perfectly nearly spherical that collide but do not otherwise interact with one another.
Why does temperature affect an ideal gas?Temperature doesn't vary, but pressure and volume do. The energy content will not change throughout this procedure because there is no exchange of labor or heat with the environment. As a result, a perfect gas's internal energy depends solely on its temperature.
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it is quite possible to have a positive reaction in a glucose carbohydrate broth and yet a negative reaction in a glucose use methyl red test. this is due to:
This is due to the methyl-requiring acid produced.
Methyl red test is considered positive when the culture medium turns red after the addition of methyl red, because of a pH at or below 4.4 from the fermentation of glucose.
methyl red test is considered negative when the culture medium gives yellow colour after the addition of methyl red.
when the bacteria are grown in a broth medium containing glucose .if the bacteria has the ability to utilise glucose with the production of a stable acid,
the colour of methyl red changes from yellow to red when added to broth culture.
In glucose carbohydrate broth 4 mol of acids,1 mole of ethanol, and 1 mol of CO2 are produced. the large quantity of acid produced causes a significant decrease in pH which gives red colour as a result.
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The compound xanthophyll is a yellow compound found in bird feathers and flowers. xanthophyll contains atoms of carbon, hydrogen, and oxygen in the ratio 20:28:1. its molecules each have six oxygen atoms. write the molecular formula of xanthophyll
Molecular formula of xanthophyll is C₄₀ H₅₆O₂ .
In the question given that
Compund xanthophyll is yellow in color and found in bird feathers and flowers.
It contains carbon , hydrogen and oxygen in ratio 20:28:1 .
Molecular formula : Μultiply each index of the molecular formula by n to get the molecular formula, as denoted by the general empirical formula AxBy: (AxBy)n= AₙₓBₙᵧ
from the given ration of composition of elements in compund we can drive empirical formula of xanthophyll.
empirical formula is C₂₀H₂₈O
Now , time to drive molecular formula for xanthophyll.
Molar mass of xanthophyll = 659g/mol
empirical formula mass = 12×20+1× 28+2× 16 = 300 g/mol
n formula per unit = molar mass of compound / empirical formula mass
=> n = 659/ 300 = 2.1 ~ 2
So , Molecular formula of xanthophyll is (C₂₀H₂₈O)2 = C₄₀H₅₆O₂
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if the reaction between nitrogen gas and oxygen gas to produce nitric oxide has a 92% yield, what is the actual yield (in mg) when 5.0 g of nitrogen gas is completely consumed?
The actual yield is 9.9, which is 92 percent of the theoretical yield of 10.7. As a result, since the reaction only produces 92 gas because it is only 92 percent efficient, obtain 9.9 gas of the product instead of 10.7 milligrams.
How can I get my body to produce more nitric oxide?You can increase your body's natural release of nitric oxide by eating a diet rich in nitrate-rich foods and antioxidants, taking supplements like L-arginine or L-citrulline, or both. Other effective methods include reducing mouthwash use and engaging in regular exercise.
What results from excessive nitric oxide levels?Methemoglobinemia can be quickly and powerfully induced by nitric oxide. In addition to pulmonary edema, pneumothorax, bronchitis, bronchial asthma, emphysema, and perhaps methemoglobinemia, radiation to nitrogen oxides can alter the pulmonary system. After some time, a cough, hyperpnea, and distress may be observed.
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how long did your addition of the acid mixture take? how much ethanol did you use for the recrystallization? what did your nitroacetanilide crystals look like? how long did you dry the final solid before taking the mass and melting point?
Recrystallization ; 25 mL of solvent are needed at 100 oC to dissolve 100 mg of the chemical. 75 mg of the chemical will precipitate at 0 oC while 25 mg will remain in solution.
what did your nitroacetanilide crystals look like? how long did you dry the final solid before taking the mass and melting point?The chemical compound para nitroacetanilide, commonly known as 4-nitroacetanilide, is a nitroacetanilide derivative made from acetanilide and a nitrating combination. A trace of ortho product also forms along with the para product.
Through nitration, the chemical molecule p-nitroacetanilide is created from acetanilide. P-nitroacetanilide is created when acetanilide is treated with a nitrating mixture, which is a combination of nitric acid and sulfuric acid. O-nitroacetanilide is also generated as a small byproduct along with p-nitroacetanilide. It is quite simple to separate p-nitroacetanilide through crystallization since o-nitroacetanilide is highly soluble in alcohol.
Because ethanol is endlessly cosoluble with water and has high dissolving properties for many organics, ethanol and water mixtures are frequently utilized. Many organic compounds' solubilities can be drastically and quickly decreased by the addition of water, which can cause crystallization.
The solution may become too diluted for crystals to form if you add too much solvent. The flask needs to be gently cooled, first at room temperature and then in cold water. Impurities will be captured by a hastily formed crystal's lattice. Smaller crystals will be produced as a result.
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which is true about the two isotopes
PLEASE HELP
The statement that is true about the two isotopes is that carbon-12 has fewer neutrons (option D).
What are isotopes?Isotopes are any of two or more forms of an element where the atoms have the same number of protons, but a different number of neutrons within their nuclei.
Based on the above explanation, this means that isotopes have the same atomic number but a different mass number.
According to this question, two isotopes were given as follows:
Carbon -12Carbon -14Carbon-12 and Carbon-14 both have the same number of protons of 6, however, they contain different number of neutrons. Carbon-12 possesses 6 neutrons while Carbon-14 possesses 8 neutrons.
Therefore, it can be said that Carbon-14 has more neutrons than Carbon-12.
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Which two steps are in the wrong order for scientific method? Ask a question, make a hypothesis, test hypothesis, draw conclusions, analyze results, communicate results.
Answer:
draw conclusions and analyze results
17. in general, molecules and ions always follow the octet rule unless it is impossible. the three types of exceptions are molecules/ions with too few electrons, molecules/ions with an odd number of electrons, and molecules/ions with too many electrons. a. which atoms sometimes have fewer than 8 electrons around them? give an example. b. which atoms sometimes have more than 8 electrons around them? give some examples. c. why are odd- electron species generally very reactive and uncommon? give an example of an odd-electron molecule.
Boron and beryllium sometimes have less than 8 electrons around them, Sulphur sometimes has more than 8 electrons around it and odd electron species are reactive because of their instability and their examples ate NO, NO₂ and ClO₂.
a. The example of the atoms which sometimes have fewer than 8 electrons around them are Boron and beryllium.
b. The example of the atom with sometimes have more than 8 electrons around them is Sulphur.
c. The odd electrons species generally are very reactive and uncommon because there highly unstable.
To achieve stability the readily reacts with other compounds in order to complete their octet and achieves stability. They are very uncommon because when they are formed, they tend to break the octet rule which is not very frequently observed in the atoms. The example of odd electrons species are NO, NO₂ and ClO₂.
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For substances at the same temperature absorb equal amounts of energy the specific heat of the four substances are 1.01J/G Celsius, 1.01J/G Celsius, 0.3 AJ/G Celsius, and 0.4 4J/G Celsius what is the specific heat value of the substance I will have highest in Chrisman in temperature
The substance with the highest specific heat value will have the highest increase in temperature.
What is a chemical reaction ?
Chemical reaction, the process by which one or more substances (reactants) are transformed into one or more other substances (products). Substances are either chemical elements or compounds. Chemical reactions rearrange the constituent atoms of reactants to produce different substances as products.
Chemical reactions are part of technology, culture, life . Fuel combustion, glass and pottery making, beer , and wine and cheese making are few examples. Activities involving chemical reactions that have been around for thousands of years. Chemical reactions are abundant in a variety of complex processes occurring in the Earth's geology, atmosphere and oceans, and in all biological systems.
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ten moles of helium gas and one mole of solid argon are in thermal equilibrium with each other at 10 k. both helium and argon are monatomic, and argon is ten times as massive as helium. how do the average speeds of the atoms in these two substances compare under the conditions specified? explain/justify your answer using appropriate components of the particle model of thermal energy and/or previous models we have used
Helium moves more quickly on average than argon.
How much thermal energy does helium have compared to argon?
Helium has a lower thermal energy than argon does.
Explanation:
Due to the smaller mass of helium atoms in comparison to argon atoms, their average speed is higher under the given conditions. An atom's average speed is inversely related to its mass. While the average speed of an atom reduces as the mass of the atom grows, the opposite is true if the mass of the atom decreases.
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