Identify the color absorbed by a solution that appears the color given Green Orange BlueRed

Answers

Answer 1

Orange = Blue, Green = Red, Blue = Orange, and Red = Green in a solution that takes on the appearance of the hue provided. Orange Green Blue Red

Is color reflected or absorbed?

The wavelengths that are reflected or transmitted create the colors we perceive. For instance, a red garment appears red because the fabric's dye molecules have absorbed light waves from the violet/blue end of the spectrum.

Which shade is absorbent?

Since light is energy, the more light the thing takes in, the more heat is taken in. Black is the color that absorbs the greatest heat, if color is a thing. All light's wavelengths are absorbed and none are reflected by a dark object. White objects, on the other hand, reflect all light wavelengths and hence absorb the least heat.

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Related Questions

What is the Lewis symbol for O 2 −?

Answers

The Lewis symbol consists of two dots representing electrons surrounding the chemical symbol for oxygen (O). This represents the distribution of electrons in the O2- ion, where oxygen has gained two electrons to form a negative ion.

The Lewis symbol for O2- would be:

O

. .

What is lewis symbol ?

Lewis symbol is a simple representation of the electron configuration of an atom. It is named after the chemist Gilbert N. Lewis who first introduced this notation in 1916.

Lewis symbol consists of the chemical symbol for the element surrounded by dots representing the valence electrons of the atom. The number of dots is equal to the number of valence electrons in the neutral atom.

These dots are arranged in pairs to represent the electrons in the chemical bonds between atoms. By convention, the dots are placed on the side of the symbol that corresponds to the side of the bond that the electron is approaching.

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what traits developed before shearing teeth? select all that apply
a. four limbs
b. amniotic egg
c. fur
d. retractable claws

Answers

Before shearing teeth, four limbs, an amniotic egg, and fur evolved. Claws that retract after shearing teeth have been produced.

What led to the initial evolution of teeth?

According to the "inside-out" idea, teeth first developed from endoderm as pharyngeal teeth in jawless vertebrates and then travelled anteriorly into the oral cavity as jaws developed.

Why did cats develop claws that retract?

These are technically the "roaring cats," which include tigers, lions, jaguars, and leopards. They all have fully retractable claws, just like domestic or pet cats. This adaptation or trait makes sure that when their claws are not being utilized to seize prey, climb, scratch, or give traction, they are covered by a sheath of skin and are not visible.

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The nuclei of large atoms, such as uranium, with 92 protons, can be modeled as spherically symmetric spheres of charge. The radius of the uranium nucleus is approximately 7.4 x 10^-15 metersWhat is the electric field this nucleus produces just outside its surface?Express your answer using two significant figures._________?????____N/C

Answers

The magnitude of the electric field is 2.4 X 10^21 N/C.

Large atoms' nuclei, like that of uranium, which has 92 protons, can be represented as spherically symmetric spheres of charge. Around 7.4 10 15 meters, or 7.4 10 15 meters, is the uranium nucleus' radius.

What is an Electric field?

The physical field that surrounds electrically charged particles and exerts a force on all other charged particles in the field, either attracting or repelling them, is known as an electric field (or E-field). It can also refer to a system of charged particles' physical field.

The magnitude of the electric field is 2.4 X 10^21 N/C.

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Kidney stones can form in the human body if too much soda is consumed. Phosphoric acid can
react with calcium nitrate to form a painful solid. How many moles of phosphoric acid are needed to react with 85 grams of calcium nitrate?

Answers

The number of moles of phosphoric acid is  0.35 moles

What is a kidney stone?

A kidney stone is a hard, solid mass that forms in the kidneys or urinary tract. Kidney stones are made up of minerals and salts that are normally found in the urine, but when they become concentrated, they can form solid crystals that can grow in size.

Kidney stones can vary in size and shape, and can be as small as a grain of sand or as large as a golf ball. They can be located anywhere in the urinary tract, from the kidneys to the bladder, and can cause significant pain and discomfort as they pass through the ureters and urethra.

The reaction equation is;

3Ca(NO3)2 + 2H3PO4 → Ca3(PO4)2 + 6HNO3

Number of moles of calcium nitrate = 85 g/164 g/mol

= 0.52 moles

If 3 moles of Ca(NO3)2 reacts with 2 moles of H3PO4

0.52 moles of Ca(NO3)2 reacts with 0.52 * 2/3

= 0.35 moles

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If di water was used to calibrate the spectrometer instead of iron (iii) chloride solution, how would this have affected the reported absorbance of the solutions (increased, decreased, or unaffected)? briefly explain.

Answers

The reported absorbance of the solutions would have been decreased if deionized water was used to calibrate the spectrometer instead of iron (III) chloride solution.

A spectrometer measures the amount of light absorbed by a solution at a specific wavelength. The absorbance of a solution is proportional to its concentration. When the spectrometer is calibrated with a standard solution, the instrument is adjusted so that the measured absorbance of the standard is equal to a known value.

If the spectrometer is calibrated with deionized water instead of iron (III) chloride solution, the measured absorbance of the solutions would be lower because deionized water has a lower absorbance than iron (III) chloride. The lower absorbance would result in a decrease in the reported absorbance of the solutions.

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What is average kinetic energy of 1 mole of so at 300 K?
4578J/mol
4672J/mol
3452J/mol
2289J/mol

Answers

3452 J/mol is the average kinetic energy of 1 mole of so at 300 K. So, option C. 3452 J/mol is correct choice.

One mole of gas has an average kinetic energy of, which can be calculated using the formula below:

[tex]KE_{avg} = (3/2) \times R \times T[/tex]

where

[tex]KE_{avg}[/tex] is the average kinetic energy,

R is the gas constant,

T is the temperature in Kelvin.

We must convert from mass-based units to mole-based units for SO gas (sulfur monoxide) using the molar mass of SO. SO has a molar mass of around 64 g/mol.

Therefore, 1 mole of SO gas has a mass of nearly 64 grams.

When we enter the values into the formula, we obtain:

[tex]KE_{avg} = (3/2) \times R \times T[/tex]

[tex]= (3/2) \times 8.314 J/(mol \:K) \times 300 K[/tex]

= 3742 J/mol

Hence, 1 mole of SO gas has an average kinetic energy of around 3742 J/mol at 300 K.

The closest solution from the offered possibilities is 3452 J/mol.

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What factors determine the direction and rate of a chemical reaction?

Answers

The factors that determine the direction and rate of a chemical reaction are:

The change in free energy will determine the direction of the reaction.Catalysts influence the rate of a chemical reaction.Thermodynamics governs the direction of a reaction but not the rate of a reaction.

What is rate of a chemical reaction?

The rate of a chemical reaction is calculated by dividing the rate of change in a reactant's or product's concentration by the coefficient from the equation's balanced state.

The term "rate of a reaction" refers to how quickly a reaction occurs. For instance, because it happens quickly, wood burning has a high reaction rate, whereas iron rusting has a low reaction rate because it happens gradually.

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A steel cylinder has a volume of 246 cm3 and a density of 7. 93 g/cm3. What is its mass in kilograms?.

Answers

The mass of the steel cylinder is 1.939 kilograms. The mass of an object can be calculated by multiplying its volume by its density.

The volume of the steel cylinder is 246 cm3 and its density is 7.93 g/cm3, so its mass can be calculated as follows:

mass = volume x density = 246 cm3 x 7.93 g/cm3 = 1,939.38 g

Since 1 kilogram is equal to 1000 grams, we can divide the mass in grams by 1000 to get the mass in kilograms:

mass (kg) = mass (g) / 1000 = 1,939.38 g / 1000 = 1.939 kg

So, the mass of the steel cylinder is 1.939 kilograms.

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because biomass decreases by about 90% at each trophic level moving up.

Answers

The reason why biomass decreases by about 90% at each trophic level moving up is due to the inefficiency of energy transfer between trophic levels.

At each trophic level, organisms consume other organisms to obtain the energy they need to survive. However, as energy is transferred from one organism to another, some of it is lost as heat or used for metabolic processes like respiration, leaving less energy available for growth and reproduction.

The decrease in available energy is reflected in the decrease in biomass, which is the total amount of living matter in an ecosystem. As a result, there is less biomass at each successive trophic level. This pattern is sometimes referred to as the "pyramid of biomass."

In general, only about 10% of the energy available at one trophic level is passed on to the next trophic level, resulting in the 90% decrease in biomass at each level. This inefficiency of energy transfer is a fundamental characteristic of ecosystems and has important implications for the structure and function of ecological communities.

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For the following reaction, 3.50 grams of water are mixed with excess silicon tetrafluoride. The reaction yields 6.88 grams of hydrofluoric acid.

silicon tetrafluoride (s) + water (l) = hydrofluoric acid (aq) + silicon dioxide (s)

What is the theoretical yield of hydrofluoric acid ?
What is the percent yield of hydrofluoric acid ?

Answers

part a.

The theoretical yield of hydrofluoric acid is 7.97 grams.

part b.

The percent yield of hydrofluoric acid is 86.2%.

How do we calculate?

The number of moles of HF produced is calculated as :

moles of HF = 0.194 mol × (4 mol HF / 2 mol H2O)

moles of HF = 0.388 mol

The theoretical yield of HF is given as =

moles of HF × molar mass of HF

theoretical yield of HF = 0.388 mol × 20.01 g/mol

theoretical yield of HF = 7.97 grams

We will  compare the actual yield (6.88 g) to the theoretical yield (7.97 grams) in order to  calculate the percent yield:

percent yield = (actual yield / theoretical yield) × 100%

percent yield = (6.88 g / 7.97 g) × 100%

percent yield = 86.2%

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During one cycle, the sodium potassium pump binds and moves?

Answers

During one cycle, the sodium potassium pump binds and moves 3 Na⁺ out of and 2K⁺ into the cell. Option B is correct.

The sodium-potassium pump is an essential membrane protein that helps to maintain the electrochemical gradient across the cell membrane of all animal cells. In each cycle of the pump, three sodium ions (Na+) are pumped out of the cell, while two potassium ions (K+) are pumped into the cell.

This movement of the ions will requires energy in the form of ATP hydrolysis. The resulting electrochemical gradient is important for various cellular processes, including nerve impulse transmission, muscle contraction, and osmoregulation.

Hence, B. 3 Na⁺ out of and 2K⁺ into the cell is the correct option.

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--The given question is incomplete, the complete question is

"During one cycle, the sodium potassium pump binds and moves; a) 2 Na⁺ into and 2 K⁺ out of the cell b)3 Na⁺ out of and 2K⁺ into the cell c)2 Na⁺ out of and 3 K⁺ into the cell d) 1 Na⁺ into and 2 K⁺ out of the cell e) 3 Na⁺ into and 3 K⁺ out of the cell"--

The crystallization step of recrystallization removes which category of impurities?
The washing step of recrystallization removes which category of impurities?

Answers

The crystallization step of recrystallization removes the impurities present within the crystal lattice.

The washing step of recrystallization removes the impurities present on the surface of solid.

The solute crystallizes out when the solvent cools and the solution gets saturated with the solute (reforms a solid). Impurities are eliminated from the crystal lattice as the crystal grows, concluding the purification procedure. After that, the crystals can be gathered, cleaned, and dried.

Because the impurities won't crystallize quite yet and instead remain in the solution, the impure substance will crystallize in a purer form. The more pure crystals must now be separated using a filtration procedure. It is possible to repeat the process.

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how many moles are there in 5.5x10^24 atoms of iron

Answers

Answer: 95.8 I hope this helps U :)

Explanation: Therefore 0.552 moles will have 0.552 moles X 6.022 X10 23 atoms/mole... are present in 1.52 mol of sulfur dioxide a) 2.29 x 10^23 b) 1.83 x 10^24 c) ... Mass of 1 H atom: 1.008 amu x 1.661 x10-24 g/amu = 1.674 x10-24 g. Mass of 1 mole of H ... many iron atoms are present in a piece of iron weighing 95.8 g?

Why do atoms typically bond with others?

Answers

Answer:

Opposite charges attract both within the same atom and between atoms.

Explanation:

Hope this helps :)

How many grams of sodium metal was needed to react completely with 15.8 liters of
chlorine gas at 303 Kelvin and 1.60 atmospheres?
2Na(s) + C12(g) → 2NaCl(s)

(Points: 40)

Answers

Taking into account the reaction stoichiometry and the definition of ideal gas law, 46.782 grams of Na was needed to react completely with 15.8 liters of chlorine gas at 303 Kelvin and 1.60 atmospheres

Reaction stoichiometry

In first place, the balanced reaction is:

2 Na + Cl₂ → 2 NaCl

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

Na: 2 molesCl₂: 1 moleNaCl: 2 moles

The molar mass of the compounds is:

Na: 23 g/moleCl₂: 70.9 g/moleNaCl: 58.45 g/mole

By reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

Na: 2 moles ×23 g/mole= 46 gramsCl₂: 1 mole ×70.9 g/mole= 70.9 gramsNaCl: 2 moles ×58.45 g/mole= 116.9 grams

Ideal gas law

An ideal gas is a theoretical gas composed of a set of point particles with random displacement, which do not interact with each other.

The pressure, P, the temperature, T, and the volume, V, of an ideal gas, are related by the ideal gas law:

P×V = n×R×T

Where:

P is the gas pressure.V is the volume that occupies.T is its temperature.R is the ideal gas constant. The universal constant of ideal gases R has the same value for all gaseous substances.n is the number of moles of the gas.

Number of moles of Cl₂ reacting

In this case, you know:

P= 1.6 atmV= 15.8 Ln= ?R= 0.082 (atmL)÷(molK)T= 303 K

Replacing in the ideal gas law:

1.6 atm×15.8 L = n×0.082 (atmL)÷(molK)× 303 K

Solving:

[1.6 atm×15.8 L]÷ [0.082 (atmL)÷(molK)× 303 K]= n

1.017 moles= n

1.017 moles of Cl₂ react.

Mass of Na required

The following rule of three can be applied: If by reaction stoichiometry 1 mole of Cl₂ reacts with 46 grams of Na, 1.017 moles of Cl₂ reacts with how much mass of Na?

mass of Na=

mass of Na= (1.017 moles of Cl₂× 46 grams of Na)÷1 moles of Cl₂

mass of Na= 46.782 grams

Finally, 46.782 grams of Na are required.

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Part D
Calculate the following for test tube 1 and for test tube 2, and record the results in the table:

the number of moles of copper(II) sulfate used (Use 159.60 grams/mole as the molar mass of copper(II) sulfate.)
the heat absorbed by the water, in joules (Use Q = mCΔT, where 10.0 milliliters of water has a mass of 10.0 grams. Use 4.186 joules/gram degree Celsius as water’s specific heat capacity.)
the change in internal energy of the copper(II) sulfate (Assume that the energy released by the copper(II) sulfate is absorbed by the water.)
the reaction enthalpy, in joules/mole

Answers

The heat absorbed by the water is 351.96 joules.

What is specific heat capacity?

The heat required to raise the temperature of the unit mass of a given substance by a given amount (usually one degree) is called specific heat capacity.

Given is to find the heat absorbed by the water, in joules.

We can write the heat absorbed as -

Q = mCΔT

Q = 10 x 4.186 x 8.4

Q = 41.9 x 8.4

Q = 351.96 joules

Therefore, the heat absorbed by the water is 351.96 joules.

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What is the atomic mass of neon ?

Answers

Neon (Ne) has an atomic mass of 20.180 u, where "u" stands for atomic mass units. This number is a weighted average of the masses of all naturally occurring neon isotopes.

Since neon has three stable isotopes, it does not degrade over time. They are neon-20 (with a 90.92% abundance), neon-21 (with a 0.26% abundance), and neon-22 (8.82% abundance). An isotope's atomic mass is the sum of the number of protons and neutrons in its nucleus.

Neon-20 has ten protons and ten neutrons, neon-21 contains ten protons and eleven neutrons, and neon-22 contains ten protons and twelve neutrons. To compute the atomic mass of neon, we use the weighted average of its isotopes' atomic masses while accounting for their respective abundances.

We may compute the atomic mass of neon using isotopic abundances and atomic masses as follows:

(0.9092 x 20.000 u) + (0.0026 x 20.000 u) + (0.0882 x 22.000 u) = (20.180 u)

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Which do scientists study to determine air temperature at the time it was formed? Select the two correct answers.
Fossilized pollen
air bubbles trapped in ice
tree rings
chemical isotopes in foraminifera shells

Answers

Scientist study determines air bubbles trapped in ice and tree rings air temperature at the time it was formed.

Option B and C are correct.

Climate climatology is the study of how climate changes over time. The atmospheric factors that influence weather patterns and temperature variations over time are better understood thanks to this research.

Why is the foraminifera fossil record important to oil exploration?

They make it possible to connect rocks from different places, which is important when making geological maps, looking for oil or gas, and building big civil engineering projects. The fossils' ages revealed when the ocean was extremely cold. By finding cold-water foraminifera of the same age in other seas, scientists can create maps that show where cold water was at various points in Earth's history.

Incomplete question :

Which do scientists study to determine air temperature at the time it was formed? Select the two correct answers.

A.Fossilized pollen

B.air bubbles trapped in ice

C.tree rings

D.chemical isotopes in foraminifera shells

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A cool water sample absorbed 4,510 J of
energy from hot metal. The temperature
of the 45.0 g piece of metal changed
from 241 °C to 32.0 °C. What is the
specific heat of the metal?
9₁H₂0 = 4, 510 J
Cmetal = [?]
gic
remember q,metal = -q,H₂O

Answers

The temperature of the 45.0 g piece of metal changed from 241 °C to 32.0 °C. is 0.48 j/ 9°C.

What is temperature in chemistry simple?

Temperature is a measure of the average kinetic energy of the atoms or molecules in the system. The zeroth law of thermodynamics says that no heat is transferred between two objects in thermal equilibrium; therefore, they are the same temperature.

What is temperature and its formula?

In other words, Temperature is the measure of hotness or coldness of a body measured using Celsius, Kelvin, and Fahrenheit scales. The change in temperature is based on the amount of heat released or absorbed. The S.I unit of temperature is Kelvin. The Temperature formula is given by, Δ T = Q / mc.

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what is universal solvent definition?

Answers

Generally, water is known as the universal solvent.

Water is known as the universal solvent because basically at the molecular level, salt basically dissolves in water due to electrical charges and due to the fact that both water and salt are the compounds which are polar, and with positive and negative charges on opposite sides in the molecule. It is true that universal solvent does not exist. Water is basically known as the universal solvent because it dissolves more chemicals than any other solvent. However, water is the solvent that only dissolves with other polar molecules.

This property of water usually allows the water molecule to become attracted to many other different types of molecules and it behaves as a solvent for every solute.

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How do I draw the model

Answers

The models of the isotopes are shown below.

How do I draw a model of the isotope of an element?

To draw a model of an isotope, you can represent the nucleus of an atom as a sphere and use colored balls to represent the protons, neutrons, and electrons.

Here are the steps to draw a model of the isotope of an element:

Determine the number of protons, neutrons, and electrons in the isotope. You can find this information from a periodic table or an atomic database.

Draw a sphere to represent the nucleus of the atom.

Use red balls to represent the protons and place them inside the sphere. The number of protons is equal to the atomic number of the element and determines the element's identity.

Use blue balls to represent the neutrons and place them inside the sphere. The number of neutrons can vary in isotopes of the same element.

Use electron shells to represent the electron clouds surrounding the nucleus. Electrons are represented by small, dark spheres and are placed in shells at a certain distance from the nucleus.

Label the isotope with the atomic number, atomic mass, and the number of neutrons.

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How many moles of nitrogen (N2) are required to produce 32.4 grams of NH3 ?

Answers

Answer: B

Explanation: Took the test

An object's position in a given coordinate system is described by the vector r = t2 i - (3t + 3) j. Assume the object moves without air resistance.

Answers

The object's displacement for the given time period exists 8i - 6j.

What is meant by resistance?

A circuit's opposition to current flow is measured by its resistance. The Greek letter omega  (Ω) stands for ohms, which are used to measure resistance.

The given parameter be

[tex]$$\begin{aligned}& r=t^2 i-(3 t+3) j \\& \mathrm{t}_1=1 \mathrm{~s} \\& \mathrm{t}_2=3 \mathrm{~s}\end{aligned}$$[/tex]

When the time is 1 s, the object's position is determined as follows:

[tex]$$\begin{aligned}& r_1=(1)^2 i-(3 \times 1+3) j \\& r_1=i-(6) j \\& r_1=i-6 j\end{aligned}$$[/tex]

When the time is 3 s, the object's position is determined as follows:

[tex]$$\begin{aligned}& r_2=(3)^2 i-(3 \times 3+3) j \\& r_2=9 i-(9+3) j \\& r_2=9 i-12 j\end{aligned}$$[/tex]

The displacement of the object exists estimated as;

Δr = [tex]$$r_2-r_1[/tex]

substitute the values in the above equation, we get

Δr = 4i - 9j - (i - 6j)

simplifying the equation, we get

Δr = 9i - 12j - i + 6j

Δr = (9i - i) + (-12j + 6j)

Δr = 8i - 6j

Therefore, the object's displacement for the given time period is 8i - 6j.

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(big points) if anybody sees this can they help me out?


P*V = n*R*T

P = pressure
V = volume
n = number of moles
R = the universal gas constant
T = temperature in degrees Kelvin

This equation is known as the ideal gas law, and it can be used to predict the behavior of many gases at relatively low pressure.
From this equation, you can see that as the temperature of a gas increases,
Question 1 options:

either the pressure of the gas, the volume of the gas, or both, will decrease.
either the pressure of the gas, the volume of the gas, or both, will increase.
the number of moles of gas will go down.
the pressure of the gas increases.

Question 3 (1 point)
In a process called electrolysis, an electric current passed through water causes hydrogen gas and oxygen gas to be evolved. The unbalanced reaction below shows this process:

If a 0.75 mol sample of water is electrolyzed until all the liquid water is gone, what volume of oxygen gas is produced at 100°C and 1 atm?
R = 0.08206 L * atm/mol * K
Question 3 options:

A) 11.5 L
B) 3.08 L
C) 114.8 L
D) 0.375 L

According to Dalton's Law of Partial Pressures, the pressure of oxygen in dry air would be
Question 4 options:

A) 2.12 kPa
B) 21.22 kPa
C) 21.00 kPa
D) 21 kPa

Question 5 (1 point)
Curious Carl's chemistry teacher handed him a sealed flask containing two gases, oxygen and hydrogen. The pressures of the two gases are 8.00 atm and 1.00 atm, respectively.
What is the total pressure of the combined gases?
Question 5 options:

A) 1.00 atm
B) 8.00 atm
C) 7.00 atm
D) 9.00 atm

Question 6 (1 point)
Ammonia is produced at high temperatures and under great pressure in a tank by passing a mixture of nitrogen and hydrogen over an iron catalyst. The reaction is represented by this equation:


If the total pressure of nitrogen and hydrogen in the tank before the reaction is 4200 kPa, what is the partial pressure of the nitrogen gas? [Assume there would be no excess reagent if the reaction went to completion.]
Question 6 options:

A) 2100 kPa
B) 1400 kPa
C) 3150 kPa
D) 1050 kPa

Question 7 (1 point)
A compressed air tank carried by scuba divers has a volume of 8.00 L and a pressure of 141 atm at 22.0°C. What is the volume (in liters) of air in the tank at STP?

A) 993 L
B) 1224 L
C) 1280 L
D) 1044 L

Question 8 (1 point)
Piston changing volume
A 2.5 liter volume of carbon dioxide gas is held at constant temperature and at 100 kPa of pressure. Gradually the pressure is increased to 500 kPa. What is the new volume of carbon dioxide gas?

A) 12.5 liters
B) 5 liters
C) 0.5 liters
D) 4 liters

Question 9 (1 point)
At one atmosphere of pressure and 25°C, a hot air balloon has a volume of 4,000 liters. While still tied to the ground, the air in the balloon is heated to 68°C. When the balloon is untied, ready to float away, it has a new volume of

Question 9 options:

A) 4577 liters
B) 9280 liters
C) 3496 liters
D) 1088 liters

Answers



Question 1:
Either the pressure of the gas, the volume of the gas, or both, will increase.

Question 3:
C) 114.8 L

Question 4:
B) 21.22 kPa

Question 5:
D) 9.00 atm

Question 6:
A) 2100 kPa

Question 7:
B) 1224 L

Question 8:
B) 5 liters

Question 9:
A) 4577 liters

The molecular formula for the simple sugar glucose is C6H12O6. What compound represents the empirical formula for glucose?

Answers

The basic sugar glucose has the chemical formula C6H12O6. In terms of an empirical formula, CH2O represents glucose.

The empirical formula for a compound represents the simplest whole-number ratio of atoms in the compound.

As per the details provided in the above given question,

To determine the empirical formula of glucose, we need to divide the subscripts in the molecular formula by the greatest common factor (GCF) of those subscripts.

The subscripts of C6H12O6 can be divided by 6 to get the simplest whole-number ratio:

C6H12O6 ÷ 6

Further we get,

= CH2O

Therefore, the empirical formula for glucose is CH2O.

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A certain reaction occurs in the following steps.(i) Cl(g) +O3(g) →ClO (g) +O2(g)Identify the reaction intermediate and write the chemical equation for overall reaction.

Answers

Since it is created in the first step and used up in the second, Clo (g) is the reaction intermediate. O 3 (g)+O (g)2O 2 is the overall reaction (g)

What is reaction intermediate?

A reaction intermediate, also known as an intermediate, is a molecular entity that is created from the reactants (or previous intermediates) in chemical reactions that take place in steps and have several elementary steps. Although they represent the end result of one elementary step's reaction, intermediates do not appear in the chemical equation for the whole chemical equation. According to the IUPAC Gold Book, an intermediate is a substance that is generated (directly or indirectly) from the reactants and undergoes additional reactions to give rise to (either directly or indirectly) the products of a chemical process. Its lifetime exceeds that of a molecular vibration.

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According to kinetic molecular theory, what happens to the movement and arrangement of molecules in a sample when they are heated from a liquid to a gas phase?
a
The particles move faster and spread out more.
b
The particles move faster and closer together.
c
The particles move slower and closer together.
d
The particles move slower and farther apart.

Answers

According to kinetic theory of gases, when samples are heated from liquid to gas phase, particles move faster and spread out more. Hence, option a is correct.

What is kinetic theory of gases ?

According to kinetic theory of gases. Gaseous substances are made of tiny particles called molecules. The molecules within a container are in a state of random chaotic motion during which they collide with  each other.

At, a particular instant, different molecules in a sample of gas may have different velocities and hence, different kinetic energies.  The kinetic energy of molecules is directly proportional to the temperature.

Hence, the the sample  when heated, the molecules acquire higher kinetic energy and they will move apart. Therefore, option a is correct according to kinetic theory.

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Mars has a thin atmosphere, no vegetation, and no source of moving water on the surface. Using the picture of Mars' surface shown above, hypothesize about weathering processes that occur on the red planet. Justify your answer.

Answers

Unlike the rocks of Earth, where many factors contribute to erosion, the main weathering agents on Mars are wind and acid fog.

Why does Mars have no surface water?

Because the atmospheric pressure on the planet's surface averages only 610 pascals (0.088 psi), it is slightly lower than the vapor pressure of water at its triple point; warming water on the Martian surface would sublime under average Martian conditions.

When you see reddish stains on rock, you are witnessing oxidation, which is the result of chemical changes caused by oxygen. When iron-containing materials like steel are oxidized, a chemical reaction occurs, causing the material to rust.

Thus, Unlike the rocks of Earth, where many factors contribute to erosion, the main weathering agents on Mars are wind and acid fog.

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Your question is incomplete, the image of mars surface is attached below:

Which one of the following gases would deviate the least from ideal gas behavior? A) CO2 B) F2C) CH3CID) Ne E) Kr

Answers

The gas that would deviate the least from ideal gas behavior is Ne (Neon).

Neon is a noble gas and has no permanent dipole-dipole interactions, making it behave most like an ideal gas.Neon is a diatomic molecule, meaning it is composed of two atoms, and its molecules are not very polar or reactive.Neon is a noble gas element with the atomic number 10 and symbol Ne. It is odorless, colorless, and gas at room temperature and pressure. It is used in a variety of applications, including electric signs, fluorescent lamps, high-voltage indicators, lightning arresters, welding, and lasers. It is also used in cryogenics and in some medical treatments.

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the major fossil fuels differ in the amount of carbon dioxide they emit into the atmosphere when burned. from worst to least, these are:________

Answers

The major fossil fuels differ in the amount of carbon dioxide they emit into the atmosphere when burned. from worst to least, these are coal, oil, and natural gas

The major fossil fuels, coal, oil, and natural gas, differ in the amount of carbon dioxide they emit into the atmosphere when burned. Coal is the worst offender, emitting the highest amount of carbon dioxide per unit of energy produced. This is because coal is a carbon-intensive fuel with a high carbon content, and when burned, it releases large amounts of carbon dioxide into the atmosphere.

Oil is the second-highest emitter, but it still emits a significant amount of carbon dioxide. Natural gas is the least emitter of the three, emitting the lowest amount of carbon dioxide per unit of energy produced. However, natural gas is not a sustainable solution for the long term, and the world needs to shift towards renewable energy sources to combat climate change.

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