place these hydrocarbons in order of decreasing boiling point (from highest to lowest boiling point).a) paraffinb) propanec) pentaned) 2, 2-dimethylpropanee) nonadecane

Answers

Answer 1

The order of decreasing boiling point is: Nonadecane > Paraffin > Pentane > 2,2-dimethylpropane > Propane.

The boiling point of hydrocarbons depends on their molecular size and shape, as well as intermolecular forces, such as Van der Waals forces. Larger molecules and molecules with more branching tend to have weaker intermolecular forces, resulting in lower boiling points.

So, the order of decreasing boiling point of the given hydrocarbons is:

Nonadecane: This is the largest molecule among the given hydrocarbons, and it has the strongest intermolecular forces due to its size. It has the highest boiling point among the given options.

Paraffin: Paraffin is a general term for straight-chain alkanes, such as methane, ethane, propane, and butane. Among these, propane has the lowest molecular weight and boiling point, while butane has a higher boiling point due to its larger size. However, the exact boiling point of paraffin depends on the specific molecule, so we cannot say for sure where it falls in this list.

Pentane: Pentane is a branched-chain alkane, which means it has weaker intermolecular forces than a straight-chain alkane of the same size. However, it still has a higher boiling point than propane due to its larger size.

2,2-dimethylpropane: This molecule is highly branched, which means it has very weak intermolecular forces. It has the lowest boiling point among the given options.

So, the order of decreasing boiling point is: Nonadecane > Paraffin > Pentane > 2,2-dimethylpropane > Propane.

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Related Questions

name given to atoms that have either gained or lost electrons is

Answers

An atom that has gained or lost electrons is considered to have experienced an ion if it now has a net charge.

What is the process of losing or gaining an electron known as?

Reduction is the process of gaining electrons, whereas oxidation is the process of losing electrons. Oxidizing agents are any substances that make other substances lose electrons (become oxidized).

Why do atoms pick up or drop off electrons?

Since it makes them more stable and requires less energy to sustain, atoms become ions by shedding or gaining electrons. An atom is in its most stable state when its outermost energy level is packed with as many electrons as is physically possible.

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weather balloon has a volume of 4,500 L at STP. What volume, in L, will it have at 18,000 feet where the temperature is -45°C and the pressure is 0.485 atm?

Answers

The volume of the weather balloon at 18,000 feet will be 2,567 L.

What is volume?

In physics and chemistry, volume refers to the amount of space that a substance or object occupies in three dimensions. It is typically measured in units such as liters (L) or cubic meters (m³), depending on the size and scale of the object being measured.

To solve this problem, we can use the combined gas law, which relates the pressure, temperature, and volume of a gas:

(P1V1)/T1 = (P2V2)/T2

where P1, V1, and T1 are the initial pressure, volume, and temperature (STP), and P2, V2, and T2 are the final pressure, volume, and temperature.

At STP, the temperature is 0°C or 273 K and the pressure is 1 atm. We can use these values to find the initial volume:

(P1V1)/T1 = (P2V2)/T2

(1 atm)(4,500 L)/(273 K) = (P2)(V2)/(228 K)

V2 = (P2)(4,500 L)(228 K)/(1 atm)(273 K)

Now we need to convert the temperature and pressure at 18,000 feet to Kelvin and atmospheres, respectively. To convert -45°C to Kelvin, we add 273 to get 228 K. To convert 0.485 atm to atmospheres, we divide by 1 atm to get:

P2 = 0.485 atm / 1 atm = 0.485

Now we can substitute these values into the equation to find the final volume:

V2 = (0.485)(4,500 L)(228 K)/(1 atm)(273 K)

V2 = 2,567 L

Therefore, the volume of the weather balloon at 18,000 feet will be 2,567 L.

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Electronegativity values for elements in Group 1A are much lower than the values for elements in Group 7A. What type of bond forms if an element from Group 1A bonds with an element from Group 7A?
a. ionic bond
b. hydrogen bond
c. polar covalent bond
d. nonpolar covalent bond

Answers

An ionic bond forms if an element from Group 1A bonds with an element from Group 7A. Option a is correct choice.

Electronegativity is a measure of an atom's ability to attract electrons towards itself in a covalent bond. Elements in Group 1A have low electronegativity values because they have one valence electron that is far away from the nucleus, making it easier to lose that electron. In contrast, elements in Group 7A have high electronegativity values because they have seven valence electrons that are close to the nucleus, making it easier to gain an electron.

When an element from Group 1A, such as sodium (Na), bonds with an element from Group 7A, such as chlorine (Cl), the electronegativity difference between the two atoms is significant. Sodium has a low electronegativity value, so it readily loses its valence electron to form a positively charged ion, Na+. Chlorine, on the other hand, has a high electronegativity value, so it readily gains an electron to form a negatively charged ion, Cl-.  Therefore, the correct answer is (a) ionic bond.

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group the electronic configurations of neutral elements in sets according to those you would expect to show similar chemical properties. note that as long as the configurations are grouped correctly with regard to each other, it does not matter which set you assign to each group.

Answers

A and D are the two elements that frequently exhibit the same chemical characteristics.

The placement of electrons around the nucleus of a specific atom or molecule is known as its electronic configuration. Protons, neutrons, and electrons are the minuscule components that make up an atom. There are the same number of protons and electrons in a neutral atom.

The chemical characteristics of the elements in the same group tend to be similar. The element with the same number of valence electrons belongs to the same group based on the electrical configuration.

The valence electrons in the given configurations are:

a. 1s^22s^22p^63s^23p^3 = 5

b. 1s^22s^22p^63s^23p^63d^104s^24p^5 =7

c. 1s^22s^22p^63s^23p^6 =8

d. 1s^22s^22p^3 = 5

The number of valence electrons in the elements a and d tends to be equal. As a result, both elements will exhibit the same chemical characteristics.

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The complete question is

Group the following electronic configurations of neutral elements in sets according to those you would expect to show similar chemical properties.

a. 1s^22s^22p^63s^23p^3

b. 1s^22s^22p^63s^23p^63d^104s^24p^5

c. 1s^22s^22p^63s^23p^6

d. 1s^22s^22p^3

How do you find the molar mass of CH3OH?

Answers

The molar mass of CH30H is 32u. METHANOL is another name for CH3OH. To calculate the molar mass:

Carbon is an element with an atomic mass of 12u and an atomic number of 6. Atomic masses of Hydrogen is 1u, Oxygen has is 16u and an atomic number of 8.

CH3OH/Methanol,

12+3×1+16+1

15 + 17

= 32u.

A methyl group joined to a polar hydroxyl group makes up methanol. It is produced in excess of 20 million tons annually and acts as a precursor to formaldehyde, acetic acid, methyl tert-butyl ether, methyl benzoate, anisole, and other regular chemicals in addition to many more specialized ones.

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Which combination of factors would result in the SLOWEST reaction rate?
1.0 M nitric acid at 30 degrees C with silver ribbon
2.0 M nitric acid at 20 degrees C with silver ribbon
1.0 M nitric acid at 20 degrees C with silver ribbon

Answers

The rate of a reaction generally depends on the reactant concentration and temperature. Here 1.0 M nitric acid at 20 degrees C with silver ribbon is found to has slowest reaction rate. The correct option is C.

What is rate of the reaction?

The rate of a chemical reaction is defined as the rate of decrease of concentration of a reactant or the rate of increase of concentration of a product.

The rate of a reaction increases with the increase in the concentration of the reactants and when temperature increases, the kinetic energy of molecules increases which in turn increases the collision between them. Hence the reaction rate increases.

Thus the correct option is C.

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Which one of the following represents the reduced forms of the two major electron carriers? A. NADH and FAD B. NADH and FADH2 C. NAD+ and FAD

Answers

The two main electron carriers' reduced forms are represented by NADH and FADH2 in the list.

What are the names of the two main electron carriers in their reduced forms?

The electron carrier is reduced to NADH, which is then changed into NAD+. The electron carrier becomes oxidized as a result of this reaction's first half. Lactic acid is produced during this process from pyruvate.

Which electron carriers are reduced?

Reduced electron carriers FADH2 and NADH carry electrons into complexes I and II, respectively, of the electron transport chain. They undergo oxidation during the process, generating NAD+ and FAD. Flavoproteins, iron-sulfur clusters, quinones, and cytochromes are additional electron carriers in the electron transport chain.

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which is more likely to dissolve in an acidic solution, silver sulfide or silver chloride? why?

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In acidic solutions, both silver sulfide (Ag2S) and silver chloride (AgCl) can dissolve to some extent, but silver chloride is more likely to dissolve than silver sulfide.

What is acidic solutions?

Acidic solutions are solutions that have a pH value less than 7. A solution with a pH of 7 is considered neutral, while solutions with a pH below 7 are acidic. The pH scale ranges from 0 to 14, with lower values indicating greater acidity, higher values indicating greater basicity, and a pH of 7 representing neutrality.

Acidic solutions contain a higher concentration of hydrogen ions (H+) than hydroxide ions (OH-). When an acid is added to water, it donates hydrogen ions to the water molecules, which increases the concentration of H+ ions in the solution. Some common examples of acidic solutions include lemon juice, vinegar, and hydrochloric acid.

In acidic solutions, both silver sulfide (Ag2S) and silver chloride (AgCl) can dissolve to some extent, but silver chloride is more likely to dissolve than silver sulfide.

The solubility of these compounds in an acidic solution depends on their respective solubility product constants (Ksp) and the concentration of H+ ions in the solution. The solubility product constant is a measure of the equilibrium concentration of the dissolved ions in a saturated solution of a salt.

The Ksp value of AgCl (1.8 × 10^-10) is lower than that of Ag2S (1.6 × 10^-49), indicating that AgCl is more soluble in water than Ag2S. In acidic solutions, the concentration of H+ ions is high, which can react with the anions in the salts (S2- or Cl-) to form the corresponding acids (H2S or HCl).

In the case of AgCl, the reaction with H+ ions forms HCl, which is a soluble compound, and therefore, more AgCl dissolves to maintain equilibrium. In contrast, the reaction of Ag2S with H+ ions forms H2S, which is a weak acid and not very soluble, and hence, the solubility of Ag2S is low in acidic solutions.

Therefore, silver chloride is more likely to dissolve in an acidic solution than silver sulfide due to its lower solubility product constant and the formation of a soluble acid upon reaction with H+ ions.

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The Vsepr theory predicts the 3d shape of the molecule. What are the shape of a 3 the molecule?

Answers

The VSEPR (Valence Shell Electron Pair Repulsion) theory predicts the 3D shape of a molecule based on the arrangement of the valence electrons around the central atom.If the central atom has one bonding pair and two lone pairs, the molecule will have a linear shape with bond angles of 180 degrees.

In the case of a molecule with three atoms, the shape is determined by the bonding electrons and lone pairs around the central atom.

If the central atom has three bonding pairs and no lone pairs, the molecule will have a trigonal planar shape with 120-degree bond angles. Examples of such molecules include boron trifluoride (BF3) and ozone (O3).

If the central atom has two bonding pairs and one lone pair, the molecule will have a bent or V-shape with bond angles less than 120 degrees. Examples include sulfur dioxide (SO2) and water (H2O).

If the central atom has one bonding pair and two lone pairs, the molecule will have a linear shape with bond angles of 180 degrees. Examples of such molecules include carbon dioxide (CO2) and formaldehyde (H2CO).

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Transition metal elements have atoms or ions with partially filled ________.
s subshells
p subshells
d subshells
f subshells
g subshells

Answers

Elements with partially filled outer electrons are referred to as allotropes (also called as transition metals). According to IUPAC, a transition element is an element with a partially filled d subshell.

Which is the voltage of an electron?

Electron charge. A negative charge particle is an electron. The magnitude of the electrostatic repulsion is 1.602 10-19 coulomb. An electron has 1/1837 the weight of a proton. Electron mass. An electron weighs 9.10938356 kilograms, or 10-31 pounds. As comparison to the weight of the proton, the mass of a e is extremely small.

Are electrons devoid of mass?

As a result, compared to a proton or neutron, an electron is thought to be almost massless, and its matter is not taken into account when determining an atom's mass number. The electron possesses a negative electric charge, which has been understood by scientists that since late 19th century. The cost of this fee was first calculated...

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If you dissolve 0. 3 moles of hbr in 1 l of water, what do you expect to be present in the beaker after the compounds have had time to react?

a. H2Br, OH^-, and H2O

b. H3O^+, Br^-, and H2O

c. BrOH and H3O^+

d. HBr, H3O^+, Br^-, and H2O

Answers

After the chemicals had a chance to react, the components HBr, H₃O⁺, Br⁻, & H₂O will anticipate being present in the beaker. Hence, the correct choice is option D.

Generally, water and the diatomic molecule hydrogen bromide (HBr) combines together to form the caustic acid also known as hydrobromic acid. The pH of HBr is usually 0.21. Generally a very acidic environment with corrosive liquid (HBr) are produced when an extremely poisonous and miscible in water gets compressed gases bromine is dissolved into the water.

Generally, HBr is soluble in water because of its ability to form interparticle hydrogen bonds with water. In HBr, usually a dipole forms because of the disparity in electron density between H and Br. Hence, option D is correct.

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what test is used to identify the presence of hydrogen gas

Answers

Answer: A characteristic test for hydrogen (H2) gas can be performed by bringing a burning candle near the source of hydrogen. On doing so, hydrogen gas burns with a squeaky pop sound. Hydrogen gas is recognized by the 'pop' when it burns. The 'pop' is the sound of a small explosion.

Explanation:

1. How many moles of oxygen are needed to produce 3.0 moles of water?
H₂ + O₂ → H₂O (must show all conversions and correct units)

Answers

We would need  1.5 moles of oxygen

What is the mole?

The mole is a unit of measurement used in chemistry to express the amount of a substance. One mole is defined as the amount of a substance that contains the same number of particles (such as atoms, molecules, or ions) as there are atoms in exactly 12 grams of carbon-12. This number of particles is known as Avogadro's number, which is approximately 6.022 x 10^23 particles per mole.

We have the correct reaction equation as;

2H₂ + O₂ →2 H₂O

If 1 mole of oxygen makes 2 moles of water

x moles of oxygen makes 3 moles of water

x = 1.5 moles

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The Arrhenius equation is k = Ae^-E_a/RT. The slope of a plot of lnk vs. 1/T is equal to ____A. -k B. k C. E_a D. -Ea/R E. A

Answers

The Arrhenius equation gives the relationship between the activation energy and rate of the reaction. In the plot of lnK vs 1/T, the slope is equal to - Eₐ/R. The correct option is D.

What is Arrhenius equation?

According to Arrhenius equation, lower the activation energy of a reaction, the higher is the rate of the reaction. The equation can be represented as:

[tex]k = A. e^{-}^{E_{a} } / RT[/tex]

Here 'T' is the temperature in Kelvin, 'k' is the rate constant, 'A' is the frequency factor or pre-exponential factor and it is the characteristic constant for a particular reaction. Eₐ is the activation energy and R is the gas constant.

The slope of lnk vs 1/T is - Eₐ / R.

Thus the correct option is D.

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what are properties of ionic compounds? select all that apply. soft and malleable conduct electricity as solids crystal lattice structure high melting and boiling points

Answers

High melting points are properties of ionic compounds. An electrically neutral substance made up of positive and negative ions is known as an ionic compound.

A chemical molecule known as an ionic compound in chemistry is one that contains ions held together by the electrostatic forces known as ionic bonding. Despite having both positively and negatively charged ions, or cations and anions, the compound is generally neutral. These can be polyatomic species like the ammonium and carbonate ions in ammonium carbonate or straightforward ions like the sodium and chloride  ions in sodium chloride. Since individual ions in an ionic compound typically have more than one closest neighbor, they are not thought of as belonging to molecules but rather as components of an ongoing three-dimensional network. When solid, ionic substances typically have crystalline structures.

Ionic substances have the qualities listed below:

1. They are brittle and crystalline crystals.

2. Both their melting and boiling temperatures are high.

3. Water can dissolve them.

4. Both in their molten and solution forms, they conduct electricity.

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a sample of hydrate of chromium (iii) chloride with mass of 10.716 g was heated until all the water content was lost. the mass of the anhydrous salt left was 7.989 g. determine the formula of the hydrate.

Answers

The mass of water attached in the sample is 2.727 g which is equal to 0.15 moles of water. Number of moles of chromium chloride is 0.050 moles. Then the formula of the hydrate is CrCl₃. 3H₂O.

What are hydrates ?

Hydrates are compounds capable of absorbing water molecules into their crystal lattice with a definite proportion. They can be dehydrated by evaporating water and give  their anhydrous form.

Here the total mass of the hydrate = 10.716 g

mass of anhydrous salt = 7.989 g

then mass of water = 10.716 - 7.989 = 2.727 g

molar mass of water = 18 g/mol.

no.of moles in 2.727 g = 2.727 /18 = 0.15  moles.

molar mass of chromium chloride  = 158.36 g

no.of moles in 7.989 g = 7.989 /158.36 = 0.050 moles.

thus the ratio of the salt to water is 0.050 :0.15. divide both by 0.050 and convert to whole number we get the ratio of 1 :3.

Therefore, the formula of the hydrate is CrCl₃. 3H₂O.

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How do mineral nanoparticles in sunscreens protect from UV radiation? Multiple Choice A) The particles scatter incoming UV light B) The particles absorb incoming UV light C) The particles dissolve with incoming UV light D) None of these choices are correct

Answers

Mineral nanoparticles in sunscreens protect from UV radiation by scattering incoming UV light and the correct option is option A.

What are nanoparticles?

A nanoparticle is a small particle that ranges between 1 to 100 nanometres in size. Undetectable by the human eye, nanoparticles can exhibit significantly different physical and chemical properties to their larger material counterparts.

Nanoparticles have a very large surface area to volume ratio when compared to bulk material, such as powders, plate and sheet.

This feature enables nanoparticles to possess unexpected optical, physical and chemical properties, as they are small enough to confine their electrons and produce quantum effects.

Protective properties of sunscreens work on the basis of absorption and scattering of incident radiation by their ingredients (UV filters). These chemical and physical compounds are organic molecules that absorb UV light and mineral nanoparticles that exhibit absorbing and scattering properties, respectively.

Therefore, mineral nanoparticles in sunscreens protect from UV radiation by scattering incoming UV light and the correct option is option A.

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Identify 10 different organisms in your community and classify them as prokaryotes and eukaryotes​

Answers

Here are some examples of common organisms and their classifications:

Bacteria - prokaryote

Archaea - prokaryote

Amoeba - eukaryote

Paramecium - eukaryote

Yeast - eukaryote

Mushroom - eukaryote

Fern - eukaryote

Pine tree - eukaryote

Earthworm - eukaryote

Human - eukaryote

Hope this helps!

Answer:

Here are some examples of common organisms and their classification

Explanation:

Bacteria - prokaryote

Archaea - prokaryote

Amoeba - eukaryote

Paramecium - eukaryote

Yeast - eukaryote

Mushroom - eukaryote

Fern - eukaryote

Pine tree - eukaryote

Earthworm - eukaryote

Human - eukaryote

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Which acid is commonly responsible for the dissolution of limestone? Carbonic Sulfuric Nitric Hydrochloric

Answers

Answer: A: Carbonic

Explanation: Quizlet confirmed

select the statements that are true regarding the nature of sodium hydroxide and the safety precautions that should be used when handling it in the laboratory. (select all that apply) If sodium hydroxide is spilled on skin or clothing, the contaminated clothing should be removed immediately and the affected area should be drenched with plenty of water. Medical attention should be sought if a large area is affected, or if blistering occurs. Sodium hydroxide solutions are particularly dangerous to the eyes Sodium hydroxide solutions with high concentration can cause severe burns If sodium hydroxide is introduced to the eyes, flush the affected eye continuously with water for at least 15 minutes. Get medical attention immediately. Eye protection should be worn at all times when handling any form of sodium hydroxide

Answers

All the Options (A), (B), (C), (D) and (E) are correct. Sodium Hydroxide is substance that causes severe burns. Safety precautions should be taken while handling it in the laboratory.

Sodium hydroxide is known as caustic soda or lye. Caustic soda is a common ingredient in cleaners and soaps. Sodium hydroxide is a white, odorless solid at room temperature. Liquid sodium hydroxide is colorless and has no odor at room temperature. It reacts violently with strong acids and with water. It is corrosive. This can cause a fire if it is near flammable materials. It is useful for its ability to alter fats. This is used to make soap and as a main ingredient in household products such as liquid drain cleaners. It is a potentially dangerous substance.  It can hurt you if it touches your skin and if you drink it or if you breathe it. Breathing it can cause severe irritation of the upper respiratory tract with coughing and burns and difficulty breathing. We should follow the lab safety rules while handling it in the laboratory.

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The complete question is,

Select the statements that are true regarding the nature of sodium hydroxide and the safety precautions that should be used when handling it in the laboratory. (select all that apply)

A. If sodium hydroxide is spilled on skin or clothing, the contaminated clothing should be removed immediately and the affected area should be drenched with plenty of water. Medical attention should be sought if a large area is affected, or if blistering occurs.

B. Sodium hydroxide solutions are particularly dangerous to the eyes C. C. Sodium hydroxide solutions with high concentration can cause severe burns

D. If sodium hydroxide is introduced to the eyes, flush the affected eye continuously with water for at least 15 minutes. Get medical attention immediately.

E. Eye protection should be worn at all times when handling any form of sodium hydroxide

the part of a synapse to which the contents of synaptic vesicles bind is called the

Answers

The part of a synapse to which the contents of synaptic vesicles bind is called the "postsynaptic receptor".

The neurotransmitters diffuse across the synaptic cleft and bind to specific receptor proteins on the postsynaptic neuron, located on the postsynaptic membrane of the synapse. The binding of the neurotransmitters to the receptor proteins triggers a response in the postsynaptic neuron, which can lead to the generation of an action potential and the transmission of the signal to the next neuron in the neural circuit.

The postsynaptic receptors are specific to different neurotransmitters, and the binding of a neurotransmitter to its corresponding receptor can have either an excitatory or inhibitory effect on the postsynaptic neuron, depending on the receptor type and the characteristics of the neurotransmitter. The postsynaptic receptors are an important component of neural communication, and their function is critical for the proper functioning of the nervous system.

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Help needed plsssssss

Answers

The mass of the water vapor is 13.73 g.

What is the law of conservation of mass?

The law of conservation of mass is a fundamental principle in physics and chemistry that states that the total mass of a closed system remains constant during a chemical reaction or physical change. This means that the mass of the reactants in a chemical reaction must equal the mass of the products that are formed.

In other words, the mass of the products that are formed in a chemical reaction cannot be created or destroyed, but only converted from one form to another.

Knowing that;

Total mass of the reactants = Total mass of the products

5 + 10 = 1.27 + x

x is the amount of the water vapor

x = 15 - 1.27

= 13.73 g

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what is na2co3 molar mass?

Answers

The molar mass of Na₂CO₃ (sodium carbonate) is 105.99 g/mol.

Molar mass is the mass of one mole of a substance, expressed in grams per mole. In the case of Na₂CO₃, the molar mass is calculated by adding the atomic masses of the constituent elements (two sodium atoms, one carbon atom, and three oxygen atoms) in the compound.

The atomic masses can be found in the periodic table of elements and are expressed in atomic mass units (amu). The molar mass of Na₂CO₃,

2 x (sodium atomic mass) + 1 x (carbon atomic mass) + 3 x (oxygen atomic mass) = 2 x 22.99 g/mol + 1 x 12.01 g/mol + 3 x 16.00 g/mol = 105.99 g/mol

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A solubility curve tells you the minimum temperature needed to dissolve an amount of solute.


True


False

Answers

False . A solubility curve is a graphical representation of the solubility of a solute in a solvent at various temperatures.

The curving line on the graph that depicts the relationship between temperature and a substance's solubility at various temperatures is known as the solubility curve. The solubility curve represents the graphical connection between solubility and temperature. It displays the most solute that can be dissolved in a certain amount of solvent at a certain temperature. The greatest quantity of solute that can be dissolved at a given temperature is what is indicated by the curve rather than the minimum temperature required to dissolve a given amount of solute. The graph illustrates how the quantity of solute that can dissolve changes as a function of temperature. Unsaturated stable area, supersaturated metastable region, and supersaturated labile region are the three solubility zones of a solution.

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When trimyristin is treated with NaOH and aqueous ethanol. the products formed are:
a. myristic acid and sodium chloride
b. sodium myristate, glycerol, and sodium chloride
c. sodium myristate and glycerol
d. myristic acid, gylcerol, and sodium chloride
e. sodium myristate only

Answers

When trimyristin is treated with NaOH and aqueous ethanol. the products formed are sodium myristate and glycerol. Thus, c is the correct option.

Triglycerides are tri-esters formed by the combination of a glycerol molecule with three molecules of fatty acids. It is an example of fat or lipid present in the human body and a good source of energy. 3 moles of myristic acid can be produced from one (1) mole of trimyristin.

Trimyristyin can be isolated from nutmeg by extraction, it is a triglyceride, it belongs to the organic compounds known as esters and it can be base hydrolyzed to produce fatty acid salts.

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One of the ways james has learned to modle chemical reasctions is by using lewis dot structure which of the follwoing lewis dot structure is the correct modle for the compound formed in this reation?

Answers

The covalent bonding in molecules is mainly explained on the basis of Lewis structures. The concept of covalent bond is explained by the scientist G.N. Lewis.

What is Lewis structure?

In Lewis structures, dots are used to represent the electrons. The Lewis structures are also called the Lewis dot structure. They provide a picture of bonding in molecules in terms of the shared pairs of electrons and the octet rule.

The number of bonds present in CaBr₂ is two. Here 'Ca' is a metal and 'Br' is a non-metal. So calcium shares its electrons with 'Br' and thereby complete the octet.

The Lewis structure is given below:

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Your question is incomplete but most probably your question was:

One of the ways james has learned to modle chemical reasctions is by using lewis dot structure what is the correct Lewis dot structure is the for the compound calcium bromide.

what is na2so4 molar mass

Answers

The molar mass of Na₂SO₄, or sodium sulfate, is 142.04 g/mol that can be calculated by adding the atomic masses of each element in the compound.

Na₂SO₄ contains two sodium atoms, one sulfur atom, and four oxygen atoms. The atomic mass of sodium is 22.99 g/mol, sulfur is 32.06 g/mol, and oxygen is 16.00 g/mol. Therefore, the molar mass of Na₂SO₄ can be calculated as follows:

(2 x 22.99 g/mol) + (1 x 32.06 g/mol) + (4 x 16.00 g/mol) = 142.04 g/mol

So the molar mass of Na₂SO₄ is 142.04 g/mol.

The molar mass is an important concept in chemistry because it allows us to convert between the mass of a substance and the number of moles of that substance. One mole of a substance contains Avogadro's number of particles, which is approximately 6.02 x 10²³. Therefore, the molar mass of a substance in grams is equal to the mass of one mole of that substance.

In the case of Na₂SO₄ the molar mass of 142.04 g/mol means that one mole of Na₂SO₄ weighs 142.04 grams. This can be useful in chemical reactions where the reactants and products are measured in moles. For example, if we wanted to react one mole of Na₂SO₄ with another substance, we would need 142.04 grams of Na₂SO₄.

Therefore, the molar mass of Na₂SO₄ is 142.04 g/mol, which is calculated by adding the atomic masses of the elements in the compound. The concept of molar mass is important in chemistry because it allows us to convert between the mass of a substance and the number of moles of that substance.

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How many moles of C6H6 contain 4. 95 x 10^24 hydrogen atoms?

Answers

1.37 moles of C6H6.

Explanation: To determine the number of moles of C6H6 containing 4.95 x 10^24 hydrogen atoms, we need to first determine the number of moles of hydrogen atoms in C6H6 and then use this to find the number of moles of C6H6.

The molecular formula of C6H6 is made up of 6 carbon atoms and 6 hydrogen atoms, so the total number of hydrogen atoms in C6H6 is 6 x Avogadro's number (6.022 x 10^23) = 3.6132 x 10^24 hydrogen atoms.

A mixture of 4.00 g of oxygen, 17.0 g of argon, and 35.0 g of carbon dioxide exert a pressure of 3.78 atm. What is the partial pressure of the argon in the mixture?

Answers

Therefore, the partial pressure of argon in the mixture is 1.195 atm.

What is pressure?

Pressure is defined as the amount of force per unit area. It is a measure of how much force is distributed over a given surface area. Pressure can be represented by the symbol P and is typically measured in units such as Pascals (Pa), pounds per square inch (psi), or atmospheres (atm). Pressure is a fundamental concept in physics and is involved in a wide range of phenomena, from the behavior of fluids to the operation of mechanical devices. For example, when a force is applied to a gas, the gas molecules collide with the walls of the container and exert a pressure on the walls. This pressure is proportional to the number of gas molecules, the temperature of the gas, and the volume of the container.

Here,

The partial pressure of a gas in a mixture is the pressure that the gas would exert if it were the only gas present in the same volume and at the same temperature as the mixture. We can use the mole fraction of the gas to calculate its partial pressure in the mixture.

To calculate the mole fraction of argon, we need to find the total number of moles of gas in the mixture. We can do this by dividing the mass of each gas by its molar mass and then adding the results together:

moles of oxygen = 4.00 g / 32.00 g/mol = 0.125 mol

moles of argon = 17.0 g / 39.95 g/mol = 0.425 mol

moles of carbon dioxide = 35.0 g / 44.01 g/mol = 0.795 mol

total moles of gas = 0.125 mol + 0.425 mol + 0.795 mol = 1.345 mol

Next, we can calculate the mole fraction of argon:

mole fraction of argon = moles of argon / total moles of gas

mole fraction of argon = 0.425 mol / 1.345 mol = 0.316

The partial pressure of argon can now be calculated using the ideal gas law, where the partial pressure of argon (PAr) is the mole fraction of argon multiplied by the total pressure of the mixture (Ptotal):

PAr = XAr × Ptotal

where XAr is the mole fraction of argon.

Plugging in the given values, we get:

PAr = 0.316 × 3.78 atm = 1.195 atm

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What are the 10 laboratory safety rules?

Answers

Laboratory safety rules are very important to follow in order to prevent accidents, injuries, and damage to equipment.

Here are 10 laboratory safety rules that are commonly emphasized: Always wear appropriate personal protective equipment (PPE) such as lab coats, safety glasses, gloves, and closed-toe shoes.

Follow all laboratory procedures and instructions provided by your teacher or supervisor.

Read the labels and safety data sheets (SDS) for all chemicals before using them and follow the precautions and handling procedures described.

Handle and dispose of chemicals and hazardous materials safely and appropriately.

Do not eat, drink, or chew gum in the laboratory.

Keep the laboratory clean and organized, and avoid clutter and unnecessary items on your workspace.

Never work alone in the laboratory. Always have a supervisor or partner present.

Use all laboratory equipment carefully and properly. Make sure you are trained and authorized to use any equipment before attempting to do so.

Report any accidents, spills, injuries, or other safety incidents immediately to your supervisor.

Be alert and attentive in the laboratory, and use common sense to identify and avoid potential hazards.

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