Which of the following shows both the correct formula and correct name of an acid?

Answers

Answer 1

Answer:

Hydrochloric acid (HCl)

Answer 2

Answer: C

Explanation:


Related Questions

PLEASE HELP!!
Which of the following is true about the mass of an object?
It is equal to its weight.
It is proportional to its weight.
It is always more than its weight
It changes at different locations.​

Answers

Answer:

It is proportional to its weight.

Explanation:

Answer:

The correct answer is "It is proportional to its weight."

Explanation:

Mass is the amount of matter that a body contains. Weight is the action exerted by the force of gravity on the body.

The mass of an object will always be the same, regardless of where it is located, because the amount of matter does not vary. Instead, the weight of the object will vary according to the force of gravity acting on it.

The mass is measured in kilograms (kg) and the weight is measured in newtons (N).

The weight is equal to the product of the object's mass and the value of the local gravitational acceleration:

P = m * g

It can be seen that the weight is proportional to the mass of the object.

in a reaction that occurs in a solution, the volume will not change. What happens to the concentration of the reactants? What happens to the reaction rate as the reaction continues?

Answers

Answer:

Concentration of the reactants decreases;

Rate of a reaction decreases

Explanation:

Since volume is held constant in a solution, the concentration of the reactants will decrease.

Simply speaking, concentration is the ratio between moles and volume. Volume is constant here. Over time, the number of moles of the reactants will decrease, as they react to produce products and they are disappearing. Since moles are directly proportional to concentration, this implies that concentration will also decrease, while the concentration of the products will increase, as they're formed.

The rate of a reaction decreases as the reaction continues, as we have lower and lower amounts of the reactants remaining in the solution as time progresses. Therefore, the probability of a successful collision leading to products decreases.

Which solution is the most concentrated?
2.0 mL of 10 M H2SO4, where H2SO4 has a molar mass of 98 g/mol
5.0 mL of 1.0 M PbSO4, where PbSO4 has a molar mass of 303 g/mol
2.0 mL of 10.5 M H2O2, where H2O2 has a molar mass of 34 g/mol
100 mL of 10 M NaCl, where NaCl has a molar mass of 58 g/mol

Answers

Answer:

2.0 mL of 10.5 M H2O2, where H2O2 has a molar mass of 34 g/mol.

Explanation:

It is most concentrated because it contains 10.5 M of Hydrogen peroxide.

Answer:100 mL of 10 M NaCl, where NaCl has a molar mass of 58 g/mol

Explanation:

Concentration refers to the amount of substance in moles present in a solution. Number of moles is obtained from; number of moles= concentration*volume

For our chosen answer, 100/1000 * 10=1 mole. If we follow this procedure to calculate the amount of other solutions stated in the question, we will realize that 100ml of 10M NaCl has the highest number of moles present. Since concentration has to do with the number of moles present in a solution, this is the most concentrated solution.

How is "food" produced in ecosystems without sunlight?
Question 14 options:


A. by chemosynthesis


B. by photosynthesis


C. by phytoplankton


D. by autosynthesis

Answers

The answer would be A. By chemosynthesis

Final answer:

Food in ecosystems without sunlight is produced through chemosynthesis, a process where chemoautotrophs convert inorganic compounds into organic matter, supporting various deep-sea organisms.

Explanation:

The production of food in ecosystems without sunlight is primarily achieved through a process known as chemosynthesis. Chemosynthesis is the biological conversion of one or more carbon-containing molecules (usually carbon dioxide or methane) and nutrients into organic matter using the oxidation of inorganic compounds (such as hydrogen sulfide or ammonia) as a source of energy, rather than sunlight, as in photosynthesis. This process is utilized by a specialized group of bacteria, known as chemoautotrophs. Option A

Chemoautotrophs are commonly found in extreme environments, such as hydrothermal vents on the ocean floor. Here, they synthesize organic compounds by harnessing the energy from chemical reactions involving inorganic molecules, which are abundant in these regions. This in turn supports a diverse ecosystem, with organisms like tubeworms, crustaceans, and octopuses that rely on these bacteria for their own energy needs.

Which element is the reducing agent in a redox reaction?
O
A. The reactant that has the atom that gets oxidized
O
B. The product that has the atom that was oxidized
C. The reactant that has the atom that gets reduced
O
D. The product that has the atom that was reduced
SUBMI

Answers

Answer:

The reactant that has the atom that gets oxidized

Explanation:

A redox reaction is a reaction in which one substance is oxidized and one is reduced. The easiest way to remember the patterns of any redox reaction is to follow a simple abbreviation: OILRIG.

This acronym stands for: oxidation is loss, reduction is gain (of electrons). Therefore, if a substance is oxidized, then it loses electrons. If a substance is reduced, it gains electrons.

Let's take a look at the following example:

[tex]Cu (s) + 2 Ag^+ (aq)\rightarrow Cu^{2+} (aq) + 2 Ag (s)[/tex]

Notice that copper loses two electrons, as it becomes positively charged:

[tex]Cu (s)\rightarrow Cu^{2+} (aq) + 2e^-[/tex]

Since electrons are on the right-hand side, it means we produce them (they are lost). Hence, copper in this equation is oxidized. Similarly:

[tex]Ag^+(aq)+e^-\rightarrow Ag(s)[/tex]

Now, silver cation gains electrons to become solid silver, neutrally charged, meaning it is reduced.

In terms of an oxidizing/reducing agents, the thought process is opposite: in an oxidation process, we have a reducing agent, hence, Cu (s) is our reducing agent. In a reduction process, we have an oxidizing agent, hence, silver cation is our oxidizing agent.

Both reducing and oxidizing agents are reactants.

Therefore, reducing agent is a reactant that has the atom that gets oxidized.

Answer: A

Explanation:

a p e x

Which characteristic of a protein may change during a DNA mutation?

ill give brainliest to the first person with correct answer
btw its science

Answers

Answer:

Amino acid sequence.

Explanation:A Mutation is a change in a DNA sequence brought about either by a mistake made when the DNA is copied or through chemical damage or can by activity of any microbe. Regions of the genome, typically called genes, mutation effect these genes and protein, which perform most of the important jobs in cells. The sequence of letters in a gene determines the sequence of amino acids in the protein it encodes, a point mutation can change the amino acid sequence of the resulting protein. Sometimes a change in the protein's amino acid sequence can have severe results. Some DNA mutations are silent and have no effect, but others affect protein, essential molecules for life, that regulate whether the gene is active or not, make more or less protein or change protein synthesis altogether.

Result: Amino acid sequence get changed in DNA mutation.

Answer:

Shape

Explanation:

I got it right on the tests.

Hope it helps.

The enthalpies of formation of the compounds in the combustion of methane, , are CH4 (g): Hf = –74.6 kJ/mol; CO2 (g): Hf = –393.5 kJ/mol; and H2 O(g): Hf = –241.82 kJ/mol. How much heat is released by the combustion of 2 mol of methane? Use . 80.3 kJ 802.5 kJ 1,605.1 kJ 6,420.3 kJ

Answers

Answer:

ΔH°c = - 1605.1 KJ

Explanation:

CH4(g) + 2O2(g) → CO2(g) + 2H2O(g)

∴ ΔHf CH4(g) = - 74.6 KJ/mol

∴ ΔHf CO2(g) = - 393.5bKJ/mol

∴ ΔHfH2O(g) = - 241.82 KJ/mol

standard enthalpy of combustion (ΔH°c):

⇒ ΔH°c = (2)(ΔHf H2O) + ΔHfCO2 - ΔHfCH4

⇒ ΔH°c = (2)(- 241.82) + ( - 393.5 ) - ( - 74.6 )

⇒ ΔH°c = - 802.54 KJ/mol

⇒ ΔH°c = ( - 802.54 KJ/mol )(  2 mol CH4 )

⇒ ΔH°c = - 1605.08 KJ

Answer:

C on Edge

Explanation:

The neutron was not discovered until 1932, more than thre
of the electron. Which of the following best explains why e
deduce the existence of the neutron?
ed until 1932, more than three decades aller
ng best explains why earlier scientists were unable to
A
The heavy mass of the nucleus meant that it was difficult to quantity
B
The neutron is a tiny, massless particle that is difficult to observe.
C
Atoms contain varying numbers of neutrons, therefore an average had to be
calculated.
D
The neutron has a neutral charge, which made it impossible to discover using
previous experiments with positive and negative charges.

Answers

Answer:

Correct option is D) The neutron has a neutral charge, which made it impossible to discover using  previous experiments with positive and negative charges.

Explanation:

The protons are the positively charged particles of an atom. The electrons are the negatively charged particles of an atom. As both the particles carry some kind of charge i.e either positive or negative, hence their discovery was easier.

The neutrons are the part of an atom which are neutral and do not carry any charge. Hence, their discovery took a more longer time as compared to the discovery of electrons and protons.

NEED THE ANSWER !!! NOW i have like an hour
Which chemical reaction model is flawed?

A.

4 C2 + S8 → 4 CS2

B.

2 Fe + 3 Cl2 → 2 FeCl3

C.

2 Na + Cl2 → 2 NaCl

D.

P4O10 + 6 H2O → 4 H3PO4

Part 2


Which best explains the correct answer to Part 1?

A.

The products side of the equation should include water.

B.

The model shows an unbalanced number of carbon atoms.

C.

The coefficients on the reactants and products sides of the equation do not match.

D.

The same elements are on both the reactants and products sides of the equation.

Answers

Answer No 1:

The chemical model that is flawed is:

4 C2 + S8 → 4 CS2

In this reaction, there are more number of carbon atoms in the reactants but lesser number of cabon atoms in the products. For a reaction to be balanced, there should be the same number  of atoms in the reactants and products. Hence, option A does not represent a balanced equation.

Answer No 2:

The correct option is B) The model shows an unbalanced number of carbon atoms.

Consider the equation:

4 C2 + S8 → 4 CS2

In the reactants side of the equation, there are 8 atoms of carbon. In the products side there are only four carbon atoms. This shows that this equation in not balanced because of the carbon atoms.

The number of sulfur atoms remains same before the reaction and after the reaction. There are eight sulfur atoms in the reactants as well as products.

How do you convert Pa*mm^2 to Pa*m^2?

Answers

Answer:

[tex]1 Pa\times mm^{2} =10^{-6}Pa\times m^{2}[/tex]

Explanation:

Pascal(Pa) : It is the SI unit of pressure.It is equal to 1 Newton per meter square(Pa =[tex]N/m^{2}[/tex])

[tex]Pa\times mm^{2}[/tex] is the Unit of Force(Newton=N)

Calculation,

It is required to convert [tex]mm^{2}[/tex] to [tex]m^{2}[/tex] only, Pa is same in both so no need to alter Pa.

1 m = 1000 mm (see the image)

And,

1 mm = 0.001 m

[tex]1 mm^{2} = 0.001\times 0.001 m^{2}[/tex] (Squaring both side)

[tex]1 mm^{2} = 0.000001 m^{2}[/tex]

[tex]1 mm^{2} = 10^{-6}m^{2}[/tex]

So,

[tex]1 Pa\times mm^{2} =10^{-6}Pa\times m^{2}[/tex]

Determine the equilibrium concentration when 1.00 mole of I2 and 1.00 mole of H2 are put into a 5 liter container. At the reaction temperature, the Keq is 64.0

H2 (g) + I2 (g) 2HI (g)

Answers

Answer:

The equilibrium concentration are :

[tex]{H_{2}}[/tex] =  0.04 M

[tex]{I_{2}}[/tex] = 0.04 M

[tex]{HI}[/tex] = 0.16 M

Explanation:

[tex]{H_{2}} + {I_{2}} \rightleftharpoons 2 HI[/tex]

it means 1 mole of iodine and hydrogen produce 2 mole of HI

Concentration(C) : Moles per unit volume.It is expressed in Molarity

(M=mol/L )

[tex]concentration = \frac{moles}{volume}[/tex]

Initial moles :

[tex]{H_{2}}[/tex] = 1.00

So, [tex]C = \frac{1}{V}[/tex]

[tex]{I_{2}}[/tex] = 1.00

[tex]C = \frac{1}{V}[/tex]

[tex]{HI}[/tex] = 0

[tex]C = \frac{0}{V}[/tex]

let during the reaction x moles of both [tex]{H_{2}}[/tex] and [tex]{I_{2}}[/tex] get dissociated , then

At equilibrium ,

[tex]{H_{2}}[/tex] = 1.00 - x

[tex]C = \frac{1-x}{V}[/tex]

For iodine

[tex]{I_{2}}[/tex] = 1.00 - x

[tex]C = \frac{1-x}{V}[/tex]

1.00 - x mole of hydrogen will produce 2x of HI

[tex]{HI}[/tex] = 2x

[tex]C = \frac{2x}{V}[/tex]

[tex]K_{eq} = \frac{[products]^{coefficient}}{[reactants]^{coefficient}}[/tex]

On solving for x , (look at the image)

[tex]{H_{2}}[/tex] =  0.04 M

[tex]{I_{2}}[/tex] = 0.04 M

[tex]{HI}[/tex] = 0.16 M

Final answer:

To find the equilibrium concentrations of H₂, I₂, and HI in the reaction H₂(g) + I₂(g) → 2HI(g), we must solve a quadratic equation using the given Keq of 64.0 and the initial concentrations calculated from the amounts and volume of the container.

Explanation:

Equilibrium Concentrations Calculation

To determine the equilibrium concentration of species in a reaction mixture, we can use the equilibrium constant (Keq) and the initial concentrations. For the reaction H₂(g) + I₂(g) → 2HI(g), we're given that the initial amounts are 1.00 mole of H₂ and 1.00 mole of I₂ placed into a 5-liter container. The equilibrium constant (Keq) at the reaction temperature is 64.0.

First, we calculate the initial concentrations:
Initial concentration of H₂ = (1.00 mole) / (5.00 L) = 0.20 M
Initial concentration of I₂ = (1.00 mole) / (5.00 L) = 0.20 M
Initially, the concentration of HI is zero since the reaction hasn't started.

At equilibrium, we'll have changed concentrations as follows, assuming x moles of H₂ react:
[H₂] = [I₂] = 0.20 M - x
[HI] = 0 + 2x

From the equilibrium expression,
Keq = [HI]^2 / ([H₂][I₂])
64.0 = (2x)^2 / ((0.20 - x)(0.20 - x))
We solve this quadratic equation for x to find the equilibrium concentrations.

After finding the value of x, we can determine the concentrations at equilibrium:
[H₂] = [I₂] = 0.20 M - x
[HI] = 2x

Um...idk...would it be D?

Answers

Answer:

yes it would be D. because passive prostheses are lightweight and don't have active movement

Explanation:

Yes the answer would be D

A solid sample of a compound and a liquid sample of the same compound are each tested for electrical conductivity. Which test conclusion indicates that the
compound is ionic?
A
Both the solid and the liquid are good conductors.
B
Both the solid and the liquid are poor conductors.
The solid is a good conductor, and the liquid is a poor conductor.
The solid is a poor conductor, and the liquid is a good conductor.

Answers

Answer: Choice D, The solid is a poor conductor and the liquid is a good conductor

Explanation:

Final answer:

The indication that a compound is ionic is that its solid form is a poor conductor of electricity, while its liquid (molten) form is a good conductor due to the free movement of ions.

Explanation:

The test conclusion that indicates that the compound is ionic would be that the solid is a poor conductor, and the liquid is a good conductor. This is because in solid ionic compounds, the strong ionic bonds hold the ions in place, preventing them from moving freely and conducting electricity. However, when the ionic compound is melted or dissolved in water, the ions are free to move about, which allows the liquid form to conduct electricity. Therefore, the correct option is that the solid is a poor conductor, and the liquid is a good conductor.

The symbol Ca-40 denotes that

A. a calcium atom contains 40 protons
B. a calcium atom contains 40 electrons
C. a calcium atom contains 40 neutrons
D. a calcium atom has a mass number of 40

Answers

D. A calcium atom has mass of 40
Final answer:

The Ca-40 notation indicates that this calcium isotope has a mass number of 40, which is made up of 20 protons and 20 neutrons.

Explanation:

The symbol Ca-40 represents a calcium isotope and indicates the mass number of this particular atom. The mass number is the sum of the number of protons and neutrons in an atom's nucleus. Calcium's atomic number, which is the number of protons, is 20. To find the number of neutrons, we subtract the atomic number from the mass number. Hence, the number of neutrons in Ca-40 is 40 - 20 = 20 neutrons. From the provided options, the correct statement is D. A calcium atom has a mass number of 40.

The symbol Ca-40 denotes a calcium atom which has a mass number of 40. The mass number is the sum of the protons and the neutrons in an atom. To find the number of neutrons, we subtract the number of protons from the mass number. Therefore, the correct answer is D. a calcium atom has a mass number of 40.

A liquid is matter that has a fixed volume and a fixed shape.
True
False​

Answers

The answer is false because liquid does not have a fixed shap

Using the reaction given above, how many moles of sodium bicarbonate are needed to produce 24 L of
sodium citrate (NazC,H,O,)? (Density of sodium citrate is 1.7 g/mL)

Answers

Answer:

474.3 mol

Explanation:

The reaction between sodium bicarbonate and citric acid may be represented by:

[tex]3 NaHCO_3 (aq) + H_3C_6H_5O_7 (aq)\rightarrow Na_3C_6H_5O_7 (aq) + 3 H_2O (l) + 3 CO_2 (g)[/tex]

According to the equation, 3 moles of sodium bicarbonate are required to produce 1 mole of sodium citrate. Let's find the number of moles of sodium citrate as our next step. We'll need its mass and its molar mass.

To find the mass of sodium citrate, we may multiply the density by the volume of the product:

[tex]m_{product} = 1.7 g/ml\cdot \frac{1000 mL}{1 L}\cdot 24 L = 40800 g[/tex]

Dividing this by the molar mass of sodium citrate will produce the number of moles:

[tex]n_{product} = \frac{40800 g}{258.06 g/mol} = 158.1 mol[/tex]

From the stoichiometry of the given equation, we already know that the number of moles of sodium bicarbonate can be found by multiplying the moles of sodium citrate by 3:

[tex]n_{NaHCO_3} = 3\cdot 158.1 mol = 474.3 mol[/tex]

how many moles are in 4.99x1032 molecules of H2o

Answers

Answer:

n≈8,29×10⁸ moles

Explanation:

Nᴀ=6.02×10²³ (constant)

n=N/Nᴀ=

[tex] = \frac{ {4.99 \times 10}^{32} }{6.02 \times 10 ^{23} } = 828903654 [/tex]

≈8,29×10⁸ moles

Which of these is associated with the kinetic energy of electricity?
A.waves in fluids
B.moving electrons
C.the position of magnets
D.vibration of ions

Answers

Answer:

B.

Explanation: hoped i helped =O

Put these different types of radiation in order from MOST to LEAST penetrating.
A) Alpha > Beta > Gamma
B) Gamma > Alpha > Beta
C) Gamma > Beta > Alpha
D) Beta > Gamma > Alpha

Answers

Answer:

C. Gamma > beta > alpha

Explanation:

Alpha rays : These are positively charged  and have mass 4u. These contain high energy Helium nucleus with 2 proton and 2 neutron.

These are heavier and maximum charged than beta and gamma particles.They have low velocity,least penetration power (can't travel more than 10-18 cm).

Beta rays : They are negatively charged and have negligible mass.

On emmission of beta particle, neutron is divided into proton and electron. They have less mass and very high velocity, so their penetrating power is more than alpha particles.

Gamma rays: These are parts of electromagnetic spectrum and travel with the speed of light (maximum velocity).Gamma rays do not have mass have maximum penetrating power.

A process through which an entire room could be warm by turning on the oven and opening the oven door is


A. Radiation
B. Conduction
C. Convection
D. Brownian motion

If you could answer and explain why that is the answer that would be great, if not it’s fine :)

Answers

Radiation is the answer

Final answer:

The warming of a room by an oven is because of convection, which is the movement of warm air that distributes heat throughout the space. Conduction occurs during direct contact with the heat source, while radiation happens when heat travels through a vacuum or air without the necessity for a medium. So the correct option is C.

Explanation:

The process through which an entire room could be warmed by turning on the oven and opening the oven door is convection. This is because convection is the heat transfer by the macroscopic movement of a fluid, which in this case, is the air in the room. As the oven heats the air close to it, this warm air rises and cooler air moves in to take its place, setting up a circulation pattern that distributes the heat throughout the room.

Latent heat is transferred into the air by none of the above options, as latent heat is associated with phase changes, such as water evaporating or condensing, not directly with convection, conduction, or radiation.

Heat transfer by circulation of a fluid is called convection. In the case of heat transfer from a fire or the Sun, where there is no material medium, radiation is the form of heat transfer. Lastly, when there is direct contact between the source and an animal, the method of heat exchange that occurs is conduction.

The accepted value for the molar volume of a gas is
22.4 liters. In a laboratory experiment, a student
determines the value to be 24.8 liters. What is the
percent error of the student's measurement?
A) 0.120%
B) 0.107%
C) 10.7%
D) 12.0%

Answers

Answer:

C)10.7%

Explanation:

24.8-22.4=2.4

22.4→100%

2.4→X%

X=2.4×100/22.4=10.7%

Final answer:

The percent error of the student's measurement, using the correct calculations, is approximately 10.7%.

Explanation:

The percent error is calculated using the formula: percent error = |(experimental value - accepted value)| / accepted value x 100%.

In this case, the accepted value of the molar volume of a gas is 22.4 liters (accepted value), and the student determined the value to be 24.8 liters (experimental value).

Thus, the percent error would be |(24.8 - 22.4)| / 22.4 x 100%, which results in approximately 10.7%. Therefore, the correct answer would be C) 10.7%.

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1. According to the fossil record, the first LAND plants were most likely pine trees. moss and ferns. flowering plants. 2. Scientists have found fossils of pine cones, seeds, and leaves with veins. More than likely scientists would also find fossilized remains of fish. dinosaurs. mammals 3. Lots of shell fossils and no plant fossils tell us that Earth probably mostly covered with oceans and little dry land. true

Answers

Answer:

It is true that earth was once covered with oceans and little dry land.

Explanation:

Over the course of around four billion years, the Earth's oceans have lost about a quarter of their original mass. Today the atmosphere is rich in oxygen, which reacts with both hydrogen and deuterium to recreate water, which falls back to the Earth's surface. So the vast bulk of the water on Earth is held in a closed system that prevents the planet from gradually drying out. According to the researchers,  the continents emerged relatively suddenly from an ocean that covered 95 percent of the Earth's surface. The appearance of large masses of dry land would have caused more extreme weather, changes in ocean currents and the emergence of proper seasons. In turn, these environmental changes may have led to rise in atmospheric oxygen that enabled the explosion of new life forms around 500 million years ago.

Answer:

Explanation:

`1. Moss and ferns

2.  Mammals

3. True

How many grams of zinc are needed to produce 25.0 g ZnCl2

Answers

To solve this question, you would first need to write the reaction and then be able to convert one unit to another the critical unit of moles and then be able to convert it back into grams.

Zn + Cl2 -> ZnCl2.

Final answer:

The grams of zinc needed are 11.98 g.

Explanation:

To determine how many grams of zinc are needed to produce 25.0 g of [tex]ZnCl2[/tex], we first need to calculate the molar mass of [tex]ZnCl2[/tex] which is (65.39 g/mol for Zn + 2 × 35.45 g/mol for Cl) = 136.29 g/mol.

Next, using stoichiometry, we use the molar mass of [tex]ZnCl2[/tex] to find out how many moles 25.0 g of [tex]ZnCl2[/tex] is, and subsequently, using the molar mass of Zn (65.39 g/mol), we find out the mass of Zn that would produce that number of moles of [tex]ZnCl2[/tex]

The calculation goes as follows:

Calculate moles of [tex]ZnCl2[/tex]: 25.0 g ZnCl2 ÷ 136.29 g/mol = 0.1833 mol [tex]ZnCl2[/tex]

Since the stoichiometry between Zn and ZnCl2 is 1:1, we have the same number of moles of Zn.

Calculate mass of Zn needed: 0.1833 mol Zn × 65.39 g/mol = 11.98 g Zn

Therefore, 11.98 g of zinc are needed to produce 25.0 g of [tex]ZnCl2[/tex]

NEED HELP ASAP!!! What is the density of each of the following gases at STP? Show your work.
A. C3H3
B. Ne
C. NO2

Answers

Answer:

A. 1.63g/dm^3 (3 s.f.)

B. 0.833g/dm^3 (3 s.f.)

C. 1.92g/dm^3 (3 s.f.)

Explanation:

Please see attached picture for full solution.

Final answer:

The density of gases at STP can be calculated using the molar mass and molar volume. C3H3 has a density of 1.74 g/L, Ne has a density of 0.90 g/L, and NO2 has a density of 2.06 g/L at STP.

Explanation:

A. C3H3 (Propyne):

To calculate the density, we need to know the molar mass of the gas. The molar mass of C3H3 is 39.05 g/mol. At STP (Standard Temperature and Pressure), the molar volume of a gas is 22.4 L/mol. Therefore, the density of C3H3 at STP is:

Density = molar mass / molar volume

Density = 39.05 g/mol / 22.4 L/mol

Density = 1.74 g/L

B. Ne (Neon):

The molar mass of Neon is 20.18 g/mol. Using the same formula as above, we can calculate the density of Neon at STP:

Density = 20.18 g/mol / 22.4 L/mol

Density = 0.90 g/L

C. NO2 (Nitrogen Dioxide):

The molar mass of NO2 is 46.01 g/mol. Again, using the formula:

Density = 46.01 g/mol / 22.4 L/mol

Density = 2.06 g/L

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They escape of dissolved oxygen from the ocean into the atmosphere allowed the ozone layer to form true or false

Answers

Answer:

True

Explanation:

The formation of ozone molecules from oxygen molecules is quite a complex radical mechanism, besides, it usually involves the radicals of other gases present in the atmosphere.

Sunlight promotes the formation of these radicals and this is true that in the atmosphere, oxygen is converted into ozone by the following net reaction:

[tex]3 O_2 (g) \rightarrow 2 O_3 (g)[/tex]

The oxygen molecules present in the ocean may have enough kinetic energy to escape the surface of the ocean and reach the atmosphere. When sunlight is used, this conversion from oxygen to ozone becomes possible.

in which group does each element have a total of four electrons in the outermost principal energy level

Answers

Answer:

Group 14  

Explanation:

The elements of the Periodic Table are arranged into 18 Groups.

Among the "main group elements" — those in Groups 1, 2 and 13 to 18 — the number of valence electrons —  the number of electrons in the outermost energy level —  corresponds to the last digit of  the Group number.

Thus, Group 14 contains the elements with four valence electrons — C, Si, Ge, Sn, Pb, and Fl.

Please help!

N2 + 3H2 —> 2NH3
Suppose you have 2.0 L of nitrogen. How many liters of hydrogen do you need for a
complete reaction? (One mole of any gas occupies 22.4 L under certain conditions of
temperature and pressure. Assume those conditions for this question.)

Answers

Answer:

[tex]\large \boxed{\text{6 L}}[/tex]

Explanation:

We can use Gay-Lussac's Law of Combining Volumes to solve this problem.

Gases at the same temperature and pressure react in the same ratios as their coefficients in the balanced equation.

1. Write the chemical equation.

Ratio:  1 L     3 L

           N₂ + 3H₂ ⟶ 2NH₃  

V/L:      2

2. Calculate the volume of H₂.

According to Gay-Lussac, 3 L of H₂ react with 1 L of N₂.

Then, the conversion factor is (3 L H₂/1 L N₂).

[tex]\text{Volume of H}_{2} = \text{2 L N}_{2} \times \dfrac{ \text{3 L H}_{2} }{\text{1 L N}_{2}}= \textbf{6 L H}_{2}\\\text{You need $\large \boxed{\textbf{6 L}}$ of hydrogen,}[/tex]

Final answer:

To react completely with 2.0 L of nitrogen, you would need 6.0 L of hydrogen according to the stoichiometric ratio of the balanced chemical reaction N2 + 3 H2 → 2 NH3.

Explanation:

For a complete reaction of nitrogen (N2) to form ammonia (NH3), you need three times the volume of hydrogen (H2) as the provided volume of nitrogen. Given that the balanced equation is N2 + 3 H2 → 2 NH3, and we know that one mole of a gas occupies 22.4 L at standard conditions, you can calculate the required volume of hydrogen. If you have 2.0 L of nitrogen, using the mole ratio of nitrogen to hydrogen from the balanced equation which is 1:3, you would need 3 times the volume of hydrogen gas. Hence you would need 2.0 L * 3 = 6.0 L of hydrogen for a complete reaction with 2.0 L of nitrogen.

If Ca is the new standard of atomic mass and is assigned a value of 50.00 amu, what is the molar mass of Aluminium Acetate using this standard?​

How does one solve this?

Answers

Answer:

848.1 g/mol

Explanation:

Data given:

Standard of atomic mass of Ca = 50 amu

molar mass of Aluminium Acetate = ?

Solution:

Relative atomic mass represented by Ar. It is ratio of actual mass with respect to the 1/12th mass of C-12 but here Ca-50 is standard.

Formula of  Aluminium Acetate = Al(CH₃COO)₃

In order to calculate Ar

first we will calculate 1/50 of Ca

As we know

         mass of 1/12 of C-12 = 1.993 x 10⁻²⁶/12 = 1.661 x 10⁻²⁷ Kg

So, for Ca-50

        mass of 1/50 of Ca-50 = 1.993 x 10⁻²⁶/50 = 3.986 x 10⁻²⁸ Kg

Now

 Relative Atomic mass for element X = rest mass of "X"/ 3.986 x 10⁻²⁸ Kg . . . . . . (1)

First we have to know the relative atomic masses of Aluminium, carbon, hydrogen, oxygen atoms involve in Aluminium Acetate formula with respect to new standard Ca-50

By using equation-1 we can calculate Ar for which we have reported rest masses of atoms as below

Rest mass of Aluminium = 4.48 x 10⁻²⁶ Kg

Rest mass of carbon = 1.993 x 10⁻²⁶ Kg

Rest mass of hydrogen = 1.608 x 10⁻²⁷ Kg

Rest mass of oxygen = 2.657x10⁻²⁶ Kg

Now put values in equation 1 for each atom

Ar for Aluminium= 4.48 x 10⁻²⁶Kg / 3.986 x 10⁻²⁸ Kg

                     Ar for Aluminium = 112.5  amu

Ar for Carbon= 1.993 x 10⁻²⁶ Kg / 3.986 x 10⁻²⁸ Kg

                     Ar for Carbon= 50 amu

Ar for Hydrogen = 1.608 x 10⁻²⁷ Kg / 3.986 x 10⁻²⁸ Kg

                     Ar for hydrogen = 4  amu

Ar for Oxygen = 2.657x10⁻²⁶ Kg / 3.986 x 10⁻²⁸ Kg

                     Ar for Oxygen = 66.6  amu

Now find the molar mass of Al(CH₃COO)₃

molar mass of Aluminium Acetate = Al(CH₃COO)₃

Al(CH₃COO)₃ = 112.5 + 3 (50 + 3(4) + 50 + 66.6 +66.6)

Al(CH₃COO)₃ = 112.5 + 3 (50 + 12 + 50 + 66.6 +66.6)

Al(CH₃COO)₃ = 112.5 + 3 (245.2)

Al(CH₃COO)₃ = 112.5 + 735.6

Al(CH₃COO)₃ = 848.1 g/mol

molar mass of Aluminium Acetate = 848.1 g/mol

a gas bbq grill usss propane gas, the propane is stored in a rigid tank. what happens to the pressure of the propane when the tank is left outside on a hot summer day & a cold winter day?

Answers

A hot summer day it could go up in flames. And on a cold day it expands.
Final answer:

The pressure in a propane tank changes based on temperature due to Gay-Lussac's Law. On a hot day, the pressure in the tank will be higher than on a cold day. It's important to take into account the air temperature when deciding to refill the tank.

Explanation:

The pressure inside a propane tank, such as one used for a BBQ grill, changes based on temperature due to Gay-Lussac's Law. In simplified terms, this principle states that the pressure of a gas is directly proportional to its temperature when the volume is held constant.

So, if a propane tank is left outside on a hot summer day, the gas inside the tank would get heated and its pressure would increase. Conversely, if the tank is left outside on a cold winter day, the temperature inside the tank would be lower and hence, its pressure would decrease.

This is why gauges that measure the pressure inside the propane tank register a higher pressure on a hot day than on a cold day. Therefore, when using gas grills, air temperature should be considered when deciding whether to refill the tank or not before the next cookout.

Learn more about Gas Laws here:

https://brainly.com/question/12669509

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Would it be C???...idk
HELP

Answers

Answer:

C.  Butanal , is the aldehyde

Explanation:

A . It is carboxylic acid : ---COOH group

B. It is Ester : ----COOR group , Here R = CH3

C. It is Aldehyde : -----CHO group

D. It is ketone : ----C=O group

See image :

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