a plot of PV/RT against Pext gives a lower value than the ideal at moderate pressures and a higher value than the ideal at very high pressures for most gases. select all the statements that correctly account for this behavior
-at low pressures gas particles repel each other
-at very high pressures the molecular volume of the gas particles is significant
-at low temps, the gas particles are moving at slower velocities
-at moderately high pressures there are significant intermolecular attractions

Answers

Answer 1

At very high pressures, the molecular volume of the gas particles is significant. At moderately high pressures there are significant intermolecular attractions is the statements that correctly account for this given behavior.

PV = nRT is an equation of states.

There are three variables P, V, and T. They are variables because they give information on a gas's pressure, volume, temperature, and other physical properties in a specific circumstance.

The number of moles (n) can be kept constant while the ideal gas constant (R) can be discovered in chemical literature.

The following is how Moles (n) can be set to PV / RT as follows n = PV / RT. Because pressure (P), which depends on the T/V ratio and is inversely proportional to both T and V, becomes crucial.

Volume (V) is a function of T/P, where T and P are both inversely proportional to V. Temperature (T) requires PV as a prerequisite, which is directly proportional to variations in both P and V.

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Related Questions

Arrange the following gases in order of increasing density (highest density at the bottom of the list) under the conditions given. Assume that the volume of the container is not fixed. 1 Place these in the proper order. Helium at 1 atm and 273 K Neon at 2 atm and 73 K Neon at 1 atm and 273 K Neon at 2 atm and 273 K Do you know the answer?

Answers

The order of increasing density is 1) Neon at 2 atm and 273 K, 2) Neon at 2 atm and 73 K, 3) Neon at 1 atm and 273 K, 4) Helium at 1 atm and 273 K.

The density of a gas is a measure of how much mass is present in a given volume. It is determined by the pressure, temperature, and molar mass of the gas. The ideal gas law, PV = nRT, relates these variables, where

P is the pressureV is the volumen is the number of molesR is the ideal gas constantT is the temperature in Kelvins.

Under the conditions given, the pressure and temperature of the gases are different. The pressure of a gas is directly proportional to its density, which means that at higher pressure, the density of the gas will be greater. Temperature, on the other hand, is inversely proportional to density, which means that at lower temperatures, the density of gas will be greater. Therefore, when comparing the densities of gases at different pressures and temperatures, we must consider both factors.

Neon at 2 atm and 273 K: This gas has a pressure of 2 atm and a temperature of 273 K. Since the pressure is the same for all the other gases, this gas will have the highest density among them.

Neon at 2 atm and 73 K: This gas has a pressure of 2 atm and a temperature of 73 K. Since it has the same pressure as the first gas and a lower temperature, it will have a higher density than the other gases with a different temperature.

Neon at 1 atm and 273 K: This gas has a pressure of 1 atm and a temperature of 273 K. The pressure is lower than the first two, therefore it will have a lower density.

Helium at 1 atm and 273 K: This gas has a pressure of 1 atm and a temperature of 273 K. The pressure is the same as the last gas but it is a different gas, therefore the density of helium is lower than the last gas.

In summary, in order to determine the density of a gas, one must consider both the pressure and temperature of the gas and compare them to the pressure and temperature of other gases. The gases with the highest pressure and/or lowest temperature will have the highest densities.

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predict what would happen to a neuron's resting membrane potential if the number of sodium ion channels increased.

Answers

If indeed the frequency of sodium ion channel increased, the membrane potential will indeed become rather more negative to something like a neuron's resting potential.

What is an easy way to define an ion?

An ion is any atom or group of atoms that has one or more electrical charges that are both beneficial and harmful. Ions have either a positive or negative charge, called cations or anions.

Where do ions come from?

Ions are produced when an atom's both electrons and protons are not balanced. As a result, an atom with an either positive or negative voltage that has already accumulated or lost three maybe more elements is referred to as an ion. Ionization is the process of protons moving between molecules and atoms.

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The container seems to have about 650 mL of copper(II) sulfate
solution in volume. Convert this volume to liters (L) of
solution.

Answers

The volume of copper (II) sulfate in a container is equivalent to 0.650L.

How to convert units of volume?

Volume is the three-dimensional measure of space that comprises a length, a width and a height. It is measured in units of cubic centimeters (cm³) in metric, cubic inches or cubic feet in English measurement.

According to this question, a container seems to have about 650 mL of copper(II) sulfate solution in volume. The volume can be converted to litres as follows:

1 millilitre = 0.001 litre

650 millilitres = 0.650 litres

Therefore, 0.650L is the volume of copper II sulfate in litres.

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which of the following statements best describes energy? view available hint(s)for part a which of the following statements best describes energy? energy is the food we eat. energy can be created and destroyed. energy is the capacity to change the position, physical composition, or temperature of matter. entropy is another name for energy.

Answers

It is true that energy is the capacity to change the position, physical composition or temperature of matter.

In physics, energy is the ability to perform work. It may exist in different forms, including potential, kinetic, thermal, electrical, chemical, radioactive, and more. In addition, energy is transferred from one body to another through effort and heat. Energy is always identified in accordance with its nature after being transferred. Thus, heat transfer may result in the creation of thermal energy, whereas work performed may result in the generation of mechanical energy. Motion is a property of all types of energy.

It is only possible to modify the form of energy; it cannot be created or destroyed. The first law of thermodynamics or the concept of energy conservation is what is meant by this.

Joules are the unit of measurement for energy in the International System of Units (SI). The work carried out by a one-newton force operating over a one-meter distance is equivalent to one joule.

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Chemists have determined that elements with atomic numbers greater than 92 are all
radioactive. In general, their half-lives are much shorter than the age of the universe. This
means that they no longer exist in nature and have all been artificially produced by
scientists in nuclear reactions.
Elements 93 through 105 in the periodic table have been created and named, and
scientists have claimed discovery of elements 106 and 107. The transuranium elements,
as they are called, become less stable as the atomic number and mass increase. For
example, element number 93, neptunium, has a half-life of two million years, while
element number 104, kurchatovium, has a half-life of 70 seconds.
The transuranium elements are the heaviest elements that exist and are readily
fissionable when subjected to nuclear bombardment. Chemists studying these elements
and the periodic table predict that stable elements may be found around atomic numbers
114 or 126.
According to the passage, what can we predict about the half-life of element number 105?
It is:
A. greater than 2 million years
B. incalculable (not capable of being determined)
C. measured in days or weeks
D. greater than the other transuranium elements
E. less than 70 seconds

Answers

Elements that have an atomic number greater than 92 are called transuranium elements. Common properties of transuranium elements are that they are all synthetic, all of them are unstable, and that they are all radioactive.

What exactly are transuranium elements?

Chemical elements with atomic numbers higher than 92, which is the number of uranium, are known as transuranium elements.

These substances all undergo radioactive decay into other substances.

Neptunium and plutonium are the only two that don't naturally occur on Earth; the others are all manmade materials.

any of the periodic table's chemical elements with atomic numbers greater than 92.

Of these elements, twenty-six have been found and given names, while another twenty-six are pending confirmation.

atomic number larger than 92, which is the atomic number of uranium, are referred to as heavy elements.

It is particularly helpful for managing and evaluating the thickness of a variety of industrial materials, as well as for detecting smoke and diagnosing thyroid disorders.

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Find the volume of methane measured at 298 K
and 1.64 atm
required to convert 0.510 L
of water at 298 K
to water vapor at 373 K
.

Answers

Answer:

0.938 L.

Explanation:

The ideal gas law states that the product of pressure and volume is equal to the product of moles, the ideal gas constant and the temperature.

Since the pressure and temperature are constant and we know the volume of water vapor is 0.510 L, we can use that information to find the moles of water vapor.

n = PV/RT

The ideal gas constant R = 8.314 Latm/molK

n = 0.510 L * 1.64 atm / (8.314 Latm/molK * 373 K) = 0.001085 mol

Now we know the moles of water vapor at 373 K and 1.64 atm.

The reaction that takes place is:

CH4(g) + 2H2O(l) --> CO2(g) + 4H2(g)

This is a balanced equation, with the number of moles of each substance on both sides of the equation being equal.

So, the number of moles of methane required to convert 0.510 L of water to water vapor is 0.001085 mol/2 = 0.0005425 mol

Now we can use the ideal gas law to find the volume of methane measured at 298 K and 1.64 atm required to convert 0.510 L of water to water vapor at 373 K

V = nRT/P

V = 0.0005425 mol * 8.314 Latm/molK * 298 K / 1.64 atm = 0.938 L

Therefore, the volume of methane measured at 298 K and 1.64 atm required to convert 0.510 L of water to water vapor at 373 K is 0.938 L.

The answer is 0.938 L.

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Two different atoms have four protons each and the same mass. However, one has a positive charge while the other is neutral. Describe what each atomic structure could be, listing the possible number and location of all subatomic particles.

Answers

Stable electronic configuration? Not to sure but I believe. Pls don’t report if I’m wrong.

TNT, or trinitrotoluene, Was originally developed and produced as a yellow dye. This compound was later found to have explosive properties. molecules of TNT contains atoms of hydrogen and of the second row elements in groups 14, 15, and 16. Identify these three elements by sorting them according to the group numbers. (All items must be placed in a box, and each box could contain more than one item.)

Answers

TNT stands for trinitrotolueneJulius Wilbrand, a German chemist is credited with being the first person to successfully manufacture TNT in 1863. TNT was initially employed as a yellow dye.

It took thirty years for anyone to realize that it had the potential to be used as an explosive, primarily because it was too difficult to detonate due to the fact that it was less sensitive than other options.

Carl Haussermann, another German chemist, was the one who made the initial discovery of its explosive capabilities in the year 1891. [7] Because TNT is so insensitive, in 1910 it was exempted from the UK's Explosives Act 1875 and was not regarded as an explosive for the purposes of manufacture and storage. This was because TNT can be safely placed into shell cases when it is in a liquid state.

Group 14 = C

Group 15 = N

Group 16 = O

Not present = Cl, F, P, S

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sort the following numbers according to whether they should be rounded up or down when rounding to the nearest tenth (the first digit after the decimal). drag the appropriate items to their appropriate bins.

Answers

The numbers that will be rounded up are 124.77, 7.077, 19.45 and 3.179  and the numbers which will be rounded down are 4.318, 8878.2403, 66.9106 and 5.84.

To round off the decimal numbers to their nearest tenths, we look at the  number on the hundredth place. If that particular number is greater than 5, we add 1 to the tenth value. If the number is less than 5, we leave the tenth place value as it is, and we also remove all the numbers which are present after the tenth’s place.

The numbers which will be rounded up are 124.77, 7.077, 19.45 and 3.179 since the digit on the hundredth place are greater than 5. The numbers which will be rounded down are 4.318, 8878.2403, 66.9106 and 5.84 since the digit on the hundredth place is lower than 5.

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The air pressure inside a submarine is 0.62 atm. What would be the height of a column of mercury balanced by this pressure?

Answers

The height of a column of mercury balanced by 0.62 atm pressure is 471.2 mmHg.

What is pressure ?

Pressure is defined as the force applied perpendicular to an object's surface per unit area over which that force is distributed. Gauge pressure is the pressure in relation to the surrounding atmosphere. Pressure is expressed using a variety of units.

The standard air pressure in a mercury-containing vessel keeps the mercury level grown up to 760 mm higher

It is relatively similar to the force from the weight of that column in the vessel.

Given:

0.62 atm air pressure  - inside a submarine,

mercury level at 1 atm = 760 mmHg

The height of the column of mercury balanced by this pressure is as follows:  

= 0.62 × 760 mmHg

= 471.2 mmHg

Thus, the height of a column of mercury balanced by 0.62 atm pressure - 471.2 mmHg

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A 50 mL sample of NaOH is titrated with H2SO4. The titration requires 35 mL of 5M H2SO4 to reach the end point. What is the concentration of the NaOH?
A: 7.0 M
B: 4.2 M
C: 1.8 M
D: 3.5 M

Answers

Answer:

c)3,5 M

Explanation:

A pool is 55.9 m long and 34.4 m wide. If the average depth of water is 7.60 ft, what is the mass (in kg) of water in the pool? Enter your answer in scientific notation. The density of water is 1.0 g/mL

Answers

The mass of water in the pool is approximately 83.91386 kg.

The volume of water in the pool can be calculated by multiplying the length, width, and average depth of the pool. The volume is:

V = 55.9 m * 34.4 m * 7.60 ft

To convert this volume to metric units, we need to convert the feet to meters. We can use the conversion factor of 1 ft = 0.3048 m.

V = 55.9 m * 34.4 m * (7.60 ft * 0.3048 m/ft)

The volume of water in the pool is approximately:

V = 83,913.8608 m³

To find the mass of water, we can use the density of water which is 1.0 g/mL and convert it to kg/m³.

m = V * ρ

m = 83913.8608 m³ * (1 kg/1000g) * (1000/m³)

m = 83.91386 kg

The mass of water in the pool is approximately 83.91386 kg in scientific notation.

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Can someone please help me

Answers

If 3.20 litres of ammonia gas are reacted, the number of litres of oxygen gas consumed is 4.00L of O₂ (option A).

How to calculate volume using stoichiometry?

Stoichiometry is the study and calculation of quantitative (measurable) relationships of the reactants and products in chemical reactions (chemical equations).

According to this question, ammonia reacts with oxygen gas to produce nitrogen oxide and water as follows:

4NH₃ + 5O₂ → 4NO + 6H₂O

Based on the above equation, 4 moles of ammonia gas reacts with 5 moles of oxygen gas.

3.20 litres of ammonia gas will react with 3.2 × ⁵/4 = 4 litres of oxygen gas.

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If the amount of reactant increases, the rate of the forward/reverse reaction will increase to reach a new equilibrium.
What is the answer? Is anyone able to explain it a bit as well?

Answers

The given statement that, " If the amount of reactant increases, the rate of the forward/reverse reaction will increase to reach a new equilibrium " is false.

How an the amount of reactant change the reaction ?

If the amount of reactant increases in a chemical reaction, the rate of the forward reaction will increase, which will cause the concentration of the reactants to decrease and the concentration of the products to increase. This will shift the equilibrium towards the products side.

In a closed system, an increase in the amount of reactant will also cause an increase in the rate of the reverse reaction, as the product's concentration will be increased as well.

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Options for this question are:

True False

Acetone is a common solvent that has a density of 0.7899 g/mL.
What volume of acetone, in milliliters, has a mass of 41.3 g
?

Answers

The volume of a substance is its mass divided by density. The volume of acetone with a mass of 41.3 g and density of 0.7899 g/ml is 52.2 ml.

What is density ?

Density of a substance is the measure of its mass per unit volume. It describes how closely its particles are packed.  Density of a substances depends on the bond type, temperature and pressure.

Density is an intensive property thus does not change with the change in amount of the substance and remains constant. The units of density are g/ml, g/cm³ etc.

Given the mass of the solvent = 41.3 g

density = 0.7899 g/ml

then volume  = mass/density

v = 41.3 g/0.78899 g/ml  = 52.2 ml.

Therefore, the volume of the solvent acetone is 52.2 ml.

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identify the product of the following reaction: H2CO3-H2O+CO2

Answers

The product of the given chemical reaction H₂CO₃ ---> H₂O + CO₂ is H₂O and CO₂.

What is a chemical reaction?

A chemical reaction takes place when two or more molecules meet in the proper direction and with enough force to create a new product.

In a chemical reaction, the molecules that collide to form a new substance are known as reactants.

The molecules that are formed as a result of the collision of the reactants are called products.

Considering the given equation of reaction:

H₂CO₃ ---> H₂O + CO₂

The molecules of H₂CO₃ collide to produce the new substances, H₂O + CO₂.

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The chemical equations and equilibrium expressions for two reactions at the same temperature are given above. Based on the information, which of the following expressions can be used to calculate the value of K3 for reaction 3 at the same temperature?
answer choices
K3 = (-K1) + (-K2)
K3 = (-K1) - (-K2)
K3 = K1 x K2
K3 = 1/K1 x 1/K2

Answers

the expression can be used to calculate the value of K3 for reaction 3 at the same temperature is K3 = 1/K1 x 1/K2

Thus, the correct answer is D.

Equilibrium is а condition thаt occurs when а chemicаl reаction is reversible, аnd the forwаrd аnd reverse reаctions occur simultаneously, аt the sаme rаte. Chemicаl reаctions cаn be clаssified into one of two broаd cаtegories: those reаctions thаt “go to completion” аnd those reаctions thаt estаblish ”equilibrium”.

We are given:

CO (g) + 3 [tex]H_{2}[/tex] (g) ⇔ [tex]CH_{4}[/tex] (g) + [tex]H_{2}O[/tex] as term of K1

[tex]CO_{2}[/tex] (g) + [tex]H_{2}[/tex] (g) ⇔  CO (g) + [tex]H_{2}O[/tex] as term of K2

The equilibrium expression written for а reаction written in the reverse direction is the reciprocаl of the one for the forwаrd reаction.

K' = 1/K

K' is the constаnt for the reverse reаction аnd K is thаt of the forwаrd reаction.

[tex]CH_{4}[/tex] (g) + [tex]H_{2}O[/tex] ⇔ CO (g) + 3 [tex]H_{2}[/tex] (g) ⇒ 1/K1

CO (g) + [tex]H_{2}O[/tex]   ⇔ [tex]CO_{2}[/tex] (g) + [tex]H_{2}[/tex] (g)    ⇒ 1/K2

-------------------------------------------------

[tex]CH_{4}[/tex] (g) + 2 [tex]H_{2}O[/tex] ⇔ 4 [tex]H_{2}[/tex] (g) +  [tex]CO_{2}[/tex] (g)

Thus, K3 = 1/K1 + 1/K2

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draw the structures of fluorene and 9-fluorenone. circle the functional groups present. predict which one is more polar and explain why.

Answers

Out of fluorene and 9-fluorenone, 9-fluorenone is more polar due to heteroatom Oxygen, fluorene no oxygen is present and symmetricity so less polar than 9-fluorenone. (Structure drawing is in the picture)

Why is 9-Fluorenone more polar than fluorene?

The fluorene is first eluted with hexane, which makes it easier to elute 9-fluorone with dichloromethane. 9-fluorenone will be slower because it is attracted to alumina. The stationary phase is non-polar and the mobile phase is polar. Most polar eluted first and least polar eluted second.

Fluorenone is more polar than fluorene because of its C=O. establish closeness. The triple flask should only contain Fluorenone, but it shows contamination of other compounds\

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rank the following compounds in decreasing order of reactivity towards a nucleophilic addition reaction

Answers

Option E  I>III>II>IV>V is the correct decreasing order of the reactivity towards a nucleophilic addition reaction

In a nucleophilic addition reaction, a nucleophile with a lone pair of electrons reacts with an electrophile, leading to the formation of a new bond and a compound with an increased number of atoms.

The reaction commonly involves the nucleophile attacking a carbonyl group (C=O) in organic compounds. When it comes to aldehydes and ketones, aldehydes tend to be more reactive than ketones. Among aldehydes, the one with fewer carbon atoms is more reactive, so 'I' is more reactive than 'III'.

For ketones, the ones with less carbon or less steric crowding are more reactive, with the order being 'II>IV>V'. So the overall order of reactivity is 'I>III>II>IV>V'.

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the complete question is :

Sort the following compounds in decreasing order of their reactivity to a nucleophilic addition reaction.

A. I>II > III > IV>V

B. II>IV>V > III>I

C. I>IIIII>IV>V

D. III>I>V> IV > II

E. I>III>II>IV>V

The following molecule contains which functional group? O thiolate O sulfide O sulfoxide O disulfide O thiol O sulfone

Answers

The given molecule has functional group thiolate.

Alcohols are comparable to thiols, commonly known as mercaptans. Similar to alcohols, they are given names with the suffix -thiol instead of -ol. The -SH group is referred to as a mercapto group on its own.

In an SN2 reaction with alkyl halides, thiols are often produced by employing the hydrosulfide anion (-SH) as a neucleophile.

Sulfides are ether analogues of sulphur. Sulfides behave chemically differently from ethers in a number of significant ways. We expect and discover that thiols are stronger acids than similar amounts of alcohol and phenol because hydrogen sulphide (H2S) is a significantly stronger acid than water (by a factor of more than 10 million). The SN2 reactions of alkyl halides and tosylates have shown that thiolate conjugate bases are excellent nucleophiles and are readily produced.

Any derivative of a thiol in which a metal atom substitutes the hydrogen linked to sulphur is referred to as a thiolate (plural thiolates).

RS-M+ = RSH

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The given molecule has functional group thiolate. Alcohols are comparable to thiols, commonly known as mercaptans. Similar to alcohols, they are given names with the suffix -thiol instead of -ol. The -SH group is referred to as a mercapto group on its own.

In an SN2 reaction with alkyl halides, thiols are often produced by employing the hydrosulfide anion (-SH) as a neucleophile. Sulfides are ether analogues of sulphur. Sulfides behave chemically differently from ethers in a number of significant ways. We expect and discover that thiols are stronger acids than similar amounts of alcohol and phenol because hydrogen sulphide (H2S) is a significantly stronger acid than water (by a factor of more than 10 million). The SN2 reactions of alkyl halides and tosylates have shown that thiolate conjugate bases are excellent nucleophiles and are readily produced. Any derivative of a thiol in which a metal atom substitutes the hydrogen linked to sulphur is referred to as a thiolate (plural thiolates). RS-M+ = RSH

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12. Emission of light from an atom occurs when an electron
falls into the nucleus
A. Falls into the nucleus
B.Jumps from a lower to a higher energy level
C. Drops from a higher to a lower
energy level
D. Moves within it's atomic orbital

Answers

Emission of light from an atom occurs when an electron drops from a higher to a lower energy level and is therefore denoted as option C.

What is an Electron?

This is referred to as a stable subatomic particle with a charge of negative electricity and it is actively involved in the chemical reactions which occurs to produce new substances.

The electron absorbs the energy and jumps to a higher energy level. In the reverse process, emission, the electron returns to the ground state by releasing the extra energy it absorbed which is therefore the reason why option C was chosen as the correct choice in this scenario.

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Splicing occurs during transcription. O before capping. before transcription. O after addition of the poly-A tail. O only after transcription is complete.

Answers

Splicing occurs during transcription only after transcription is complete.

In molecular biology, RNA splicing is the process by which a pre-mRNA transcript is converted into a functional mRNA (mRNA). The process is effective because it involves splicing together exons after introns (non-coding sections of RNA) have been removed (coding regions). When a gene is encoded in the nucleus, splicing happens in the nucleus either simultaneously with or shortly after transcription. Splicing is required for the production of an mRNA molecule that can be translated into protein from the introns present in the genes of most eukaryotic organisms.

For many eukaryotic introns, splicing is a multi-step process mediated by the spliceosome, a collection of tiny nuclear ribonucleoproteins (snRNPs). Self-splicing introns, also known as ribozymes, are capable of catalyzing their own excision from the parent RNA molecule. The core postulate of molecular biology is that genes are expressed through the processes of transcription, splicing, and translation.

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What type of government does Botswana have?
How does the solubility of a gas change with increasing temperature?

Answers

Botswana is a multiparty, republican democracy with a constitution. Its constitution provides for indirect presidential election and popular election of a National Assembly.

Why does the solubility of gas decreases with temperature?

The solubility of gas decreases at higher temperatures, gas molecules have higher kinetic energy and can escape solution phase more easily.

The solubility of a gas decreases as temperature rises. Henry's law describes the relationship between a gas's pressure and solubility.

The solubility of gases in liquids decreases as temperature rises. Adding heat to the solution, on the other hand, provides thermal energy that overcomes the attractive forces between the gas and the solvent molecules, lowering the gas's solubility.

Thus, Botswana is a multiparty, republican democracy with a constitution.

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Given the following equation: Cu + 2 AgNO, - > Cu(NO32 + 2 Ag
How many moles of Cu are needed to react with 3.00 moles of AgNOs?

Answers

The ratio of moles of Cu and AgNO3 is 1:2 . So 1 mole of Cu are needed to react with 2 moles of AgNO3. For 3 moles of AgNO3 , 1.5 moles of Cu are needed .

I think the answer is 1.5 mol

QUESTION #1:


A fertilizer is a type of chemical that is added to plants to make the plants grow faster. A commercial for Super-Gro, a new type of fertilizer, claims that Super-Gro “makes plants grow faster than ever!”. As a scientist, you would like to test this claim to see if it is true..


Your task: Design an experiment that might be conducted to show whether SuperGro works to speed up plant growth. Describe this experiment below, using as much detail and science vocabulary as possible.

Need to use.. We need a control setup BECAUSE…

We need a large sample size BECAUSE…

We need to keep these factors constant BECAUSE…

We need to quantify our data BECAUSE…

The limitations of the experiment are…because…

Answers?

Answers

To test the claim that Super-Gro "makes plants grow faster than ever," we can design an experiment that compares the growth of plants fertilized with Super-Gro to the growth of plants that are not fertilized.

We need a control setup because it allows us to compare the growth of the plants treated with Super-Gro to the growth of plants that are not treated with any fertilizer, in order to see if there is a significant difference in growth.

We need a large sample size because it increases the statistical power of the experiment and makes the results more reliable. A sample size of at least 30 plants per group is recommended.

We need to keep these factors constant because any variation in factors such as temperature, light, and water can affect plant growth. We need to control these variables in order to ensure that any differences in growth between the control and experimental groups are due to the fertilizer and not other factors.

We need to quantify our data in order to be able to compare the growth of the plants treated with Super-Gro to the growth of the control plants. We can quantify the data by measuring the height and width of the plants at regular intervals, such as every day or every week, and then calculating the average growth rate for each group.

The limitations of the experiment are that it may not take into account the different growing conditions of different types of plants, and it may not take into account any long-term effects of the fertilizer on plant growth.

What is the fertilizer  about?

A fertilizer is a substance that is added to soil or plants to provide essential nutrients for growth. Fertilizers can be organic or inorganic, and they can contain a variety of different nutrients, including nitrogen, phosphorus, and potassium.

These three elements are known as macronutrients and are required in large amounts by plants. Some fertilizers also contain micronutrients, such as iron, zinc, and copper, which are needed in smaller amounts.

Therefore, Super-Gro is a brand of fertilizer that claims to make plants grow faster than ever. It is likely that the fertilizer contains a combination of macronutrients and possibly micronutrients to aid in plant growth.

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HELP!

You add 9.6 g of iron to 23.60 mL of water and observe that the volume of iron and water together is 24.82 mL. Calculate the density of iron.

Express you’re answer to two significant figures with the appropriate units.

Answer I need is Value and the Units

Answers

When you add 9.6 g of iron to 23.60 mL of water and observe that the volume of iron and water together is 24.82 mL, the density of iron is 7.87 g/mL.

What is density?

Density is the mass of a material substance per unit volume. Density is defined as d = M/V, where d is density, M is mass, and V is volume. Density is commonly measured in grams per cubic centimetre. The density of something describes how compact or concentrated it is. Let's say you have two boxes, one large and one small. They both, however, weigh the same. That means the small box is denser than the large box. The density of something also indicates how concentrated or crowded it is.

Here,

mass=9.6 g

net volume=24.82-23.60

=1.22 ml

density=mass/volume

=9.6/1.22

=7.87 g/ml

The density of iron is 7.87 g/ml when you add 9.6 g of iron to 23.60 mL of water and observe that the volume of iron and water together is 24.82 mL.

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The Lewis structure of HCN (H bonded to C) shows that __________ has __________ nonbonding electron pairs.?

Answers

The Lewis structure of HCN (H bonded to C) N has one nonbonding electron pairs.

The lewis structure of the compound is :

                 H - C ≡ N :

Valence electrons = H (1) + C (4) + N (5)

                                = 10

In the nitrogen it contains the 7 protons in the nucleus are balanced by the electrons in the triple bond, the 2 electrons that on lone pai of the electron is present. The nitrogen is formally neutral. The carbon forms the single bond with the hydrogen atom and the triple bond with the nitrogen atom in the lewis structure.

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What is a physical property Of a solid used to describe its surface

Answers

Answer:

A physical property of a solid used to describe its surface is surface roughness. Surface roughness refers to small, irregular deviations on the surface of a solid that affect its appearance, performance, and ability to interact with other surfaces or materials. It is typically measured in terms of the average height of the surface deviations, known as the root mean square (RMS) height, or the maximum height of the deviations, known as the peak-to-valley height. Surface roughness can be caused by a variety of factors, such as manufacturing processes, wear and tear, and exposure to the environment. Some common ways to measure surface roughness are profilometry, stylus instrument and optical profiler.

when a metal plate is given a positive charge, which of the following is taking place? protons (positive charges) are transferred to the plate from another object. it depends on whether the object conveying the charge is a conductor or an insulator. electrons (negative charges) are transferred from the plate from another object. electrons (negative charges) are transferred to the plate from another object, and protons (positive charges) are also transferred to the plate from another object.

Answers

When a metal plate is the given a positive charge, then electrons (negative charges) are transferred from the plate to another object.

A metal plate is the good conductor of heat and the electricity. A metal has the free electrons in its structure which have mobility and in under the external electric field. The electrons will move from the negative to the positive charge and the current flows in the opposite direction. The electrons will flows towards the positive charge means that the free electrons can be on the metal surface and gets attached to a the positively charged object.

Thus, the correct option is Electrons (negative charges) are transferred from the plate to another object.

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Guys I need your help!! it's due tomorrow! I would be very grateful if you could help me!

Answers

The reaction's chemically balanced equation is as follows:3CCl4 + 3N2 + 6H2 = 3CH4 + 3 N2Cl4

What is a balanced chemical equation?

The reaction's chemically balanced equation is as follows:

3CCl4 + 3N2 + 6H2 = 3CH4 + 3 N2Cl4

A chemical reaction that has the same number of moles in the reactant and product sides is said to have a balanced chemical equation.

The missing image, which is included below, shows what the picture represents:

The side that reacts:

Three molecules each of CH4 and N2Cl4

The component side:

6 molecules of H2, 3 molecules each of CCl4, N2, and 3.

Consequently, the following is the reaction's balanced chemical equation:

3CCl4 + 3N2 + 6H2 = 3CH4 + 3 N2Cl4

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