The density of a gas is 1.96 g/L at STP. What is its molar mass?
A) 65.2 g/mol
B) 58.9 g/mol
C) 11.4 g/mol
D) 22.4 g/mol
E) 43.9 g/mol

Answers

Answer 1

The density of a gas is 1.96 g/L at STP.

Its molar mass can be calculated as follows.

Solution:

The density of a gas is 1.96 g/L at STP.

What is its molar mass?

Molar mass (M) is calculated as:

density = mass/volume

1.96 g/L = mass/volume

Let's assume the volume to be one mole of the gas.

In other words,

the gas has the same volume as one mole of any gas at STP (22.4 L). Hence,

Mass will be equal to its molar mass.

Molar mass (M) = mass/volume= 1.96 g/22.4 L= 0.0875 g/L

The unit of molar mass is g/mol.

Hence,

The result can be converted to g/mol.

First,

let's convert the unit of density from g/L to kg/m³.

The conversion factor is

1000.1.96 g/L x 1000 g/kg = 1960 g/m³

Molar mass (M) = density x molar volume= 1960 g/m³ x 0.0224 m³/mol= 43.9 g/mol

Therefore,

The molar mass of the gas is 43.9 g/mol.

The correct option is E) ,43.9 g/mol.

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Related Questions

True
False
Unlike gases, solids cannot
be compressed to a smaller
volume

Similar to the structure of
solids, atoms within a liquid
are in a fixed or locked
position

Both solids and liquids have
a fixed (unchanging) physical
shape
Both solids and liquids have
a fixed (unchanging) volume

Gases have a fixed
(unchanging) volume, shape,
and structure

Answers

Answer: True

Explanation:

Convert this mass to SI Unit: 2000g

Answers

Answer: 2 kg

Explanation:

fill in the blank. the___is the organelle that is formed when an endosome, containing hydrolytic enzymes necessary for the digestion of the materials, reaches a low ph of approximately 4.5.

Answers

The lysosome is the organelle that is formed when an endosome, containing hydrolytic enzymes necessary for the digestion of the materials, reaches a low pH of approximately 4.5.

Lysosomes are sac-like vesicles with single membranes that enclose hydrolytic enzymes that can break down biomolecules. Lysosomal enzymes work best in acidic environments and thus the pH of the lysosome is around 4.5, which is slightly acidic. The formation of lysosomes begins with the formation of endosomes.

Endosomes form through the process of endocytosis. In endocytosis, the cell membrane invaginates and surrounds a portion of the extracellular fluid, thereby forming a small vesicle, called a primary endosome. Primary endosomes mature into late endosomes by fusing with other primary endosomes or with other vesicles.

Late endosomes then mature into lysosomes by undergoing changes in the structure of their membranes that facilitate the mixing of hydrolytic enzymes with the material to be digested. In summary, lysosomes are organelles that contain hydrolytic enzymes that can break down biomolecules.

They form when endosomes reach a low pH of approximately 4.5. The formation of lysosomes begins with the formation of endosomes that mature into late endosomes and then into lysosomes. The pH of lysosomes is acidic, around 4.5.

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Two intermetallic compounds, A3B and AB3, ex- ist for elements A and B. If the compositions for A3B and AB3 are 91. 0 wt% A–9. 0 wt% B and 53. 0 wt% A–47. 0 wt% B, respectively, and element A is zirconium, identify element B

Answers

The compositions of the intermetallic compounds A3B and AB3 are given as percentages of element A and element B, respectively.

Another approach to identifying element B would be to perform chemical analysis on small samples of the compounds. This would involve determining the elemental composition of the samples using techniques such as X-ray fluorescence (XRF) or inductively coupled plasma mass spectrometry (ICP-MS). From the elemental composition, element B could be identified based on its position in the periodic table and its known properties. However, the compositions do not provide enough information to determine the identity of element B.

In order to identify element B, additional information is needed. One possible way to identify element B is to compare the known properties of the compounds formed by A and B. For example, if A forms a cubic structure and B forms a tetragonal structure, then element B is likely zirconium (Zr). However, without additional information, it is not possible to definitively identify element B using only the given compositions of A3B and AB3.  

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A chemist needs to make 500.0 mL of a 2.5 M solution of sulfuric acid. Looking on the shelves, she finds a bottle of 10.0 M sulfuric acid. How can the desired solution be made?

I get 125mL but the book tells me it’s 130mL. Who is correct?

Answers

The volume of sulfuric acid required to make desired solution is 125 mL

It is given that

Initial volume of sulfuric acid V1 = 500.0 mL

Initial molarity M1 = 2.5 M

Final volume of sulfuric acid V2 = ?

Final molarity M2 = 10.0 M

Volume is the amount of space taken up by an object, while capacity is the measure of an object's ability to hold a substance, like a solid, a liquid or a gas.

We can find by using formula

M1V1 = M2V2

2.5 M x 500.0 ml = 10.0 M x V2

V2 = 125 mL

Hence, volume of sulfuric acid required to make desired solution is 125 mL

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Which of the following is NOT a sign of a chemical change? (HINT: only 2 answers, the rest are chemical change)

1. tarnished is formed
2. gas is produced
3. weight change
4. Temperature change
5. color change
6. nothing changes
7. forms a precipitate
8. energy is released

Need this done today please!!

Answers

Answer:

3 and 6 (weight change and nothing changes)

Explanation:

Hi there!

A chemical change is a change when matter changes into a new substance and has a new chemical property.

The signs that a chemical change is taking place are:

1. change in color

2. change in smell

3. change in energy (for example, there is a change in temperature (thermal energy))

4. a gas is formed (fizzing/bubbling/foaming are signs of this!)

5. formation of a solid (a precipitate)

A physical change is any change to the size, shape, or state of a substance. The substance still has the same chemical property.

these are your eight options:

1. tarnished is formed (a sign of a chemical change; a change in color)

2. gas is produced (a sign of a chemical change)

3. weight change (NOT a sign of a chemical change. Even though the weight changed, the substance still has the same chemical composition and therefore, there wasn't any change to its chemical identity)

4. Temperature change (a sign of a chemical change; a change in energy)

5. color change (a sign of a chemical change)

6. nothing changes (NOT a sign of a chemical change. If nothing happens, the substance is still the same as it was originally and there was no change to its chemical identity.)

7. forms a precipitate (a sign of a chemical change)

8. energy is released (a sign of a chemical change)

therefore the two options that are NOT a sign of a chemical change are 3 and 6 (weight change and nothing changes)

Hope this helps! :)

SCIENCE ASAP PLSSS
no _____ is necessary
for most plants to grow that
may not be found on
volcanic rock.

SCIENCE ASAP PLSSSno _____ is necessaryfor most plants to grow thatmay not be found onvolcanic rock.

Answers

To be honest I good in science

Answer:

soil

Explanation:

Determine the empirical formula of a compound containing 63.50 % silver, 8.25 % nitrogen, and the remainder oxygen.

Answers

Answe AgNO₃

1:1:3 ratio

what will happen to the atoms or molecules of a substance when it boils​

Answers

Answer: It will change to gas

Explanation: It will change to gas because of evaporation. When the heat intensifies it will happen.

if covalent bonding occurs because an atom wants to achieve an octet and therefore fill empty spaces in its orbital, how many covalent bonds would you think are formed by each of the atoms in

Answers

The number of covalent bonds generated by each atom in C, H, O, Cl, N, S, and P is as follows:

Carbon (C) has 4 valence electrons and needs to form 4 covalent bonds to achieve an octet.Hydrogen (H) has 1 valence electron and needs to form 1 covalent bond to achieve a duet.Oxygen (O) has 6 valence electrons and needs to form 2 covalent bonds to achieve an octet.Chlorine (Cl) has 7 valence electrons and needs to form 1 covalent bond to achieve an octet.Nitrogen (N) has 5 valence electrons and needs to form 3 covalent bonds to achieve an octet.Sulfur (S) has 6 valence electrons and needs to form 2 covalent bonds to achieve an octet.Phosphorus (P) has 5 valence electrons and needs to form 3 covalent bonds to achieve an octet.

Covalent bonding occurs when atoms share electrons to achieve a more stable electron configuration. In general, elements that are close to each other on the periodic table tend to form covalent bonds, while elements that are far apart tend to form ionic bonds. Atoms can share one, two, or three pairs of electrons to form single, double, or triple covalent bonds, respectively. The number of electrons shared is determined by the number of electrons needed to achieve a stable configuration.

The number of covalent bonds formed by each of the atoms in C, H, O, Cl, N, S, and P depends on the number of valence electrons each atom has and the number of electrons needed to achieve a stable octet. These numbers are based on the octet rule, which states that atoms will bond in such a way as to achieve a stable electron configuration with a full valence shell of 8 electrons (or 2 electrons for hydrogen). Covalent bonding occurs when atoms share electrons to achieve this stable configuration.

The complete question is

If covalent bonding occurs because an atom wants to achieve an octet and therefore fill empty spaces in its orbital, how many covalent bonds would you think are formed by each of the atoms in C, H, O, Cl, N, S, and P?

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Which element would be the most suitable to make a spoon that will melt in
your hot drinks?
A) aluminium
melting point: 660°C
boiling point: 2470°C

B) argon
melting point: -189°C
boiling point:-186°C

C) bromine
melting point: -7°C
boiling point: 59°C

D) gallium
melting point: 30°C
boiling point: 2400°C

E) lithium
melting point: 180°C
boiling point: 1330°C

F)mercury
melting point: -39°C
boiling point:357°C​

Answers

Answer:

it's A) or E)

others are not suitable cuz their melting point is weak.

Answer:

Gallium

Explanation:

Because the melting point is low and the drinks are usually around 60-70 degrees Celsius so it wil melt

56.75mL of 0.256 HI M reacts with 10.00mL sample of NaOH, what is the molarity of sodium hydroxide?​

Answers

Answer: 1.45M

Explanation:

The definition of molarity is moles/liter.  The neutralization of NaOH with HI is:

HI + NaOH = NaI  + H2O

One mole of HI reacts with 1 mole of NaOH.  We'll assume this is a titration reaction and that the 10.00ml sample of NaOH contains the same number of moles as the 56.75ml of 0.256M HI.

Moles HI:  (0.256 moles/liter)*(0.05675 L) = 0.01453 moles HI

That means we muct have 0.01453 moles NaOH in 10.0ml of NaOH solution.

(0.01453 moles NaOH)/(0.010L) = 1.45 M

==

Another approach is to use the relationship M1V1 = M2V2, which is useful for titrations (M is concentration and V is volume):

We want M2, so rearrange:  M2 = M1V1/V2

M2 = (0.256M)*(56.75ml)/(10.0ml)

M2 = 1.45M

What is the density of a cylinder with a mass of 65.34g, a height of 15.60 cm and a radius of 1.34 cm?

Answers

Answer:

d = 0.743 g/cm³

Explanation:

Given data:

Mass of cylinder = 65.34 g

Height = 15.60 cm

Radius = 1.34 cm

Density of cylinder = ?

Solution:

Volume of cylinder:

V = πr²h   (π = 22/7)

V = 88 cm³

Density of cylinder:

d  = m/v

d = 65.34 g / 88 cm³

d = 0.743 g/cm³

16. Students in a chemistry course were asked the following question on a unit exam: "Draw a dia-
gram representing an element using circles as atoms."
a. The following diagrams represent two typical answers given by students. Which drawing is
the best representation of an element? Explain.
b. Imagine that the atom in Drawing B had been removed by physical separation from one
of the substances in Model 1. What substances could have been the source of the atom in
Drawing B?

16. Students in a chemistry course were asked the following question on a unit exam: "Draw a dia-gram

Answers

If the atom in Drawing B had been removed by physical separation from one of the substances in Model 1, the substance that could have been the source of the atom in Drawing B is an element.

What is the source of the atom?

An atom is the smallest part of a substance that can take part in a chemical reaction. We know that elements are composed of atoms. The atoms of an element are discretely arranged. Thus, in an element, there are so many atoms of the substance.

In the image that has been shown in the question, the source of the atom as it has been show is an element. Thus, if the atom in Drawing B had been removed by physical separation from one of the substances in Model 1, the substance that could have been the source of the atom in Drawing B is an element.

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how can i find wavelength in a wave?

Answers

Wavelength (L) is calculated using: L = gT²/2π, here g=9.8 m/s2 and T is wave period in seconds.

What is wavelength?

Wavelength of a wave describes how long the wave is and the distance from the "crest" (top) of one wave to the crest of next wave is called wavelength. We can also measure from the "trough" (bottom) of one wave to trough of next wave and get the same value for the wavelength.

We measure wavelength in following ways:

Use photometer to measure the energy of wave.

Convert energy into joules (J).

Divide energy by Planck's constant, 6.626 x 10⁻³⁴, to get the frequency of  wave.

Divide speed of light, ~300,000,000 m/s, by frequency to get wavelength.

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What is a neutralization reaction?
O A. A reaction in which the product is either acidic or basic
O B. A reaction that involves neutral reactants
O c. A reaction in which the reactants are a salt and water
O D. A reaction that removes essentially all Ht and OH

Answers

The answer is D. A reaction that removes essentially all H+ and OH-

Answer:

D or A your choice

Explanation:

uhhh didnt u- nvm

A neutralization reaction is when an acid and a base react to form water and a salt and involves the combination of H+ ions and OH- ions to generate wate

Which is a longitudinal wave that requires a medium to move? a. sound wave b. seismic s–wave c. lightwave d. radio wave e. microwave

Answers

The longitudinal wave that requires a medium to move is a. sound wave. Sound waves are mechanical waves that propagate through a material medium, such as air, water, or solids.

They consist of compressions and rarefactions, where particles in the medium move back and forth in the same direction as the wave. This movement requires a medium to transfer the energy from one particle to another. Seismic S-waves, also known as secondary waves, are also longitudinal waves that require a medium to move. However, they are specifically associated with earthquakes and propagate through the Earth's interior. Light waves, radio waves, and microwaves, on the other hand, are examples of transverse waves that do not require a medium to travel and can propagate through a vacuum.

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Justify why sound cannot travel through space.

Answers

Answer:

Sound does not travel at all in space. The vacuum of outer space has essentially zero air. Because sound is just vibrating air, space has no air to vibrate and therefore no sound.

rate brainliest!

The nucleus of a 125 Xe atom (an isotope of the element xenon with mass 125 u) is 6.0 fm in diameter. It has 54 protons and charge q=+54e (1 fm = 1 femtometer = 1× 10 −15 m .) Hint: Treat the spherical nucleus as a point charge. Part A What is the electric force on a proton 3.0 fm from the surface of the nucleus? Express your answer in newtons. F nucleusonproton F n u c l e u s o n p r o t o n = nothing N SubmitRequest Answer Part B What is the proton's acceleration?

Answers

The proton's acceleration is 6.23 × 10² m/s². The electric force between the nucleus and the proton can be calculated by Coulomb’s law.

The formula for Coulomb’s law is:F = k(q₁q₂/r²)wherek is Coulomb's constant (k=9 × 10^9 N m²/C²)q₁ and q₂ are the magnitudes of the charges, r is the distance between the centers of the charges.Let's calculate the electric force on a proton 3.0 fm from the surface of the nucleus.

The radius of the nucleus (r) is given as 6.0 fm. The distance between the nucleus and the proton is d = 6.0 + 3.0 = 9.0 fm.q₁ = charge on the proton = +e = +1.6 × 10^-19 Cq₂ = charge on the nucleus = +54e = +54 × 1.6 × 10^-19 Cq₁q₂ = +1.6 × 10^-19 × 54 × 1.6 × 10^-19 C²q₁q₂ = 1.741 × 10^-36 C²r = 9.0 fm = 9.0 × 10^-15 m

Now substituting these values in Coulomb’s law, we get:F = 9 × 10^9 × 1.741 × 10^-36/(9 × 10^-15)²F = 1.04 × 10^-25 NThus, the electric force on a proton 3.0 fm from the surface of the nucleus is 1.04 × 10^-25 N.Part BThe acceleration of the proton can be calculated using Newton's second law of motion, F = ma, where F is the force, m is the mass of the particle, and a is its acceleration.

In this case, we know the force acting on the proton (1.04 × 10^-25 N) and the mass of the proton (1.67 × 10^-27 kg).F = ma1.04 × 10^-25 = (1.67 × 10^-27)a∴ a = 6.23 × 10² N/kgThus, the proton's acceleration is 6.23 × 10² m/s².

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can you pls help with q1 and q3

can you pls help with q1 and q3

Answers

Answer:

1.

A covalent bond forms when two atoms Share a pair of Electrons.

Atoms form covalent bonds to get a full Outer (Also Called Valence) shell of electrons.

3.

See Attached Image for Dot structure and Lewis Structure (2D).

can you pls help with q1 and q3

The science department keeps two acid solutions on hand. One is 14% acid and the
other is 46% acid. How much 14% acid solution and how much 46% acid solution need to be mixed to
make 100 gallons of 35.8% acid solution?

Answers

34.3gallon of  14% acid solution and 65.7gallon of  46% acid solution need to be mixed to make 100 gallons of 35.8% acid solution.

What is gallon?

A gallon is the standard unit of volume indicated by the letter "gal," and it is primarily used to measure liquid quantity inside the customary systems of the United States as well as the Imperial System of measuring of the United Kingdom.

Following the 11th Conference on Measures and Weights in 1960, some countries approved an International System of Units (SI). As a result, this volume measurement unit is replaced by "litre."

0.14×x + 0.46×(100-x)= 0.35×100

0.14x + 46-0.46x=35

-0.32x=35 -46

-0.32x =-11

x=11/ 0.32=34.3gallon

100-34.3=65.7gallon

Therefore, 34.3gallon of  14% acid solution and 65.7gallon of  46% acid solution need to be mixed to make 100 gallons of 35.8% acid solution.

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What mass of ag2co3 could you produce from 12.7 g agno3 assuming that it is the limiting reagent?

Answers

10.3 g of  \(Ag_{2} CO_{3}\) will produce from 12.7 g \(AgNO_{3}\).

In simple terms, a limiting reagent is a reactant that is completely used up in the reaction. 

It is also referred to as a limiting reactant or limiting agent.

Now, according to the question,

Since it is a limiting reagent, it will react fully. 

The mass of \(AgCO_{3}\) that will be produced will be:-

Equivalent mole of \(AgNO_{3}\) = Equivalent weight of \(Ag_{2} CO_{3}\) = 12.7/169.97 = x*2/274x = 10.3 g. 

Hence, 10.3 g of \(Ag_{2} CO_{3}\) will be produced.

It is used to restrict the reaction.

It tells you the estimated amount of compound to be used.

It brings quantitative understanding to chemical reactions.

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how to prove that a given colorless liquid is an acid​

Answers

Answer:

Explanation:

by using litmus papaer it will turn into red if solutions is acidic

and into blue if it's basic

by using Magnesium ribbon. Magnesium do not react with bases so hydrogen gas will produce when Magnesium is dipped in an acidic solution

Answer:

1. Using Litmus papers. Litmus paper will turn blue if solution is acidic or it will turn blue if it is basic. ... If pH is below 7 or reddish then the given solution is acidic and if pH is higher than 7 or bluish then the solution is basic.

Explanation:

What thermoplastic has really good insulation properties?​

Answers

Acrylic has good impact and chemical resistance. It can withstand high stresses for short periods and is one of the most scratch-resistant thermoplastics.
What thermoplastic has really good insulation properties?

for the reaction of copper with silver nitrate (use cu2 ), how many grams of silver can be produced from 1.40 g silver nitrate and excess copper?

Answers

1.78 grams of silver can be produced from 1.40 g silver nitrate and excess copper. The balanced chemical equation for the reaction of copper with silver nitrate (use cu2) is as follows: Cu + 2AgNO₃ → Cu(NO₃)₂ + 2Ag

To determine how many grams of silver can be produced from 1.40 g of silver nitrate and excess copper, we first need to calculate the limiting reactant.

The stoichiometry of the reaction is such that 2 moles of silver nitrate react with 1 mole of copper to produce 2 moles of silver. The molar mass of silver nitrate is 169.87 g/mol while that of copper is 63.55 g/mol,

therefore, the number of moles of silver nitrate present in 1.40 g can be calculated as follows:Number of moles of silver nitrate = mass/molar mass= 1.40/169.87= 0.008240 molSimilarly, the number of moles of copper required to react with this quantity of silver nitrate is 0.004120 mol (half of the number of moles of silver nitrate).

Since there is an excess of copper, it will not limit the reaction and hence the limiting reactant is silver nitrate.To calculate the mass of silver produced, we use the molar mass of silver, which is 107.87 g/mol.Mass of silver produced = number of moles of silver x molar mass= 0.01648 x 107.87= 1.78 g

Therefore, 1.78 grams of silver can be produced from 1.40 g silver nitrate and excess copper.

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how do isotopes create electricity?

Answers

Answer:

There is at least 2 ways. First, the isotopes are allowed to heat water into steam, and the steam turns a generator. 2nd, the isotopes are allowed to heat one end of a "thermopile", and the thermopile powers electronics

Hope this helped you!

will an electron and a proton attract or repel one another? how about two electrons?

Answers

Electron and proton attract each other.

Two electrons will repel each other.

An electron is a negatively charged subatomic particle that can be either sure to an atom or free (no longer certain). An electron this is certain to an atom is one of the three primary varieties of particles inside the atom -- the other  are protons and neutrons. collectively, electrons, protons and neutrons shape an atom's nucleus.

A proton is a subatomic particle observed inside the nucleus of each atom. The particle has a positive electric price, same and opposite to that of the electron. If remoted, a single proton could have a mass of best 1.673 ? 10-27 kilogram, simply barely much less than the mass of a neutron.

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which property of water allows it to dissolve many substances?

Answers

The property of water that allows it to dissolve many substances is its polarity.

What is polarity?

Polarity refers to the distribution of electrical charge in a molecule. A polar molecule has an uneven distribution of electrons, resulting in a partial positive charge on one end of the molecule and a partial negative charge on the other end. This creates a dipole moment in the molecule.

Water molecules are polar, meaning that the electrons in the molecule are not distributed evenly, resulting in a partial positive charge on one end of the molecule and a partial negative charge on the other end.

This polarity allows water molecules to form hydrogen bonds with other polar or charged molecules, such as ions and polar compounds. This type of bonding allows many substances, such as salt and sugar, to dissolve in water.

Additionally, the polarity of water molecules also allows them to interact with nonpolar substances through London Dispersion Forces, which also allows some nonpolar substances to be dissolved in water.

Hence, the polarity of water allows it to dissolve many substances.

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which one of the following is not a mixture?Air,mercury ,milk,cement​

Answers

mercury is not a mixture it is a element

Answer:

mercury

Explanation:

I need a quick answer 50 points!!


There are 1.2 x 1024 atoms of carbon
in a sample of aluminum acetate,
AI(C₂H3O2)3. How many moles of Al
are in the sample?
[?] moles Al

I need a quick answer 50 points!!There are 1.2 x 1024 atoms of carbonin a sample of aluminum acetate,AI(CH3O2)3.

Answers

3

Explanation:

the 1.2cm simplofys to 7 and cab then go to 3

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