Describe the structure and makeup of DNA.

Answers

Answer 1

Answer:

The explanation is where the answer is. You may copy word for word if you need to.

Explanation:

DNA is 2 linked strands that twist around each other. Imagine scwiggle lines intertwining with each other but seperated with an horitonzal line. The shape is also known as a double helix. Each strand as something called the backbone. The backbone is made of alternating sugar (deoxyribose) is the scientific word for it, and the backbone is also made of phosphate groups. The backbone is attached to 4 diffrent figures. The are represented with letters. (A) = Adenine.  (C) = Cytosine.  (G) = Guanine. Or (T) Thymine (T).


Related Questions

the chemical formula for lithium hydride is . a chemist measured the amount of lithium hydride produced during an experiment. she finds that of lithium hydride is produced. calculate the number of moles of lithium hydride produced. be sure your answer has the correct number of significant digits.

Answers

The chemical formula for lithium hydride is LiH. A chemist measured the amount of lithium hydride produced during an experiment. she finds that of 64.9 g lithium hydride is produced. The number of moles of lithium hydride produced is 8.21 moles

The moles of lithium hydride can be calculate as follows:

first we should calculate the mass molar oF LiH

mass molar LiH = atomic mass Li + atomic mass H

mass molar LiH  6.9 g/mol + 1 g/ mol = 7.9 g/mol

moles = mass / mass molar

moles of LiH = mass LiH / mass molar LiH

moles of LiH =  64.9/ 7.9 g/mol

moles of LiH = 8.21 moles

Therefore, the number of moles of lithium hydride produced is 8.21 moles

Your question is incomplete but most probably your full question was

The chemical formula for lithium hydride is LiH. A chemist measured the amount of lithium hydride produced during an experiment. she finds that of 64.9 g lithium hydride is produced. Calculate the number of moles of lithium hydride produced.  Be sure your answer has the correct number of 3significant digits

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which condition is caused by nitrogen bubbles and requires the use of a decompression chamber? Decompression sickness (DCS) occurs when dissolved gasses (usually nitrogen or helium, used in mixed gas diving) exit solution and form bubbles inside the body on depressurization.

Answers

The condition is caused by nitrogen bubbles and requires the use of a decompression chamber is called Decompression sickness (DCS) or "the bends."

DCs is caused by the presence of nitrogen bubbles in the bloodstream. Under normal conditions, the pressure of the air we breathe causes nitrogen to dissolve in our bloodstream. However, when the pressure is decreased rapidly, such as during a rapid ascent from a dive, the nitrogen comes out of solution and forms bubbles in the bloodstream. These bubbles can cause blockages in blood vessels, leading to a variety of symptoms such as joint pain, skin rashes, and difficulty breathing. In severe cases, it can also lead to paralysis or even death. A decompression chamber is a pressurized chamber that simulates the conditions of the surface and allows the nitrogen bubbles to safely come out of solution. It is used to treat DCS by gradually reducing the pressure on the body and allowing the nitrogen bubbles to dissipate. The patient is placed inside the chamber, and the pressure inside the chamber is gradually reduced to simulate the ascent to the surface. This allows the nitrogen bubbles to safely come out of solution and prevents further damage to the body.

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How many moles of CO2 is produced by combustion of 8g of methane?

Answers

The volume of CO2 produced when 8 g CH4 is burnt is 11.2 L.

When methane burns, it produces carbon dioxide and water. This can be written as:

CH4​ + 2O2 → CO2​ + 2H2O

Given enough oxygen, methane burns to produce carbon dioxide (CO2) and water (H2O). It is very useful as a fuel because it produces a lot of heat when burned. In methane combustion, molecular oxygen is the oxidant and methane is the reductant.

Molar mass of CH4  = 16g/mol

Lets convert gram of CO2 and CH4 to moles such that

1 mole of methane is 16 grams.

Let x be the amount of CO2 produced during combustion.

Ratio proportion :

[tex]8gCH4/16gCH4 = x CO2/22.4L CO2\\[/tex]

or  x/22.4 = 8/16

x = 22.4/2 = 11.2 L

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How are changes in the number of electrons related to oxidized and reduced atoms molecules?

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The changes in the number of electrons related to oxidized and reduced atoms molecules as the number of the electron decreases the species oxidized and electrons decreases the species reduced.

When the number of the electrons decreases the species gets reduced. When the number of the electrons increases the species get oxidized. The example is given as :

4Al  +  3O₂   ----->  2Al₂O₃

The oxidation number of the aluminum , Al increases from the 0 to +3. The Aluminum is oxidized. It is called oxidation. The oxidation number of the oxygen decreases from the 0 to -2. The oxygen is reduced. It is called reduction.

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There are how many hydrogen atoms in 3C₂H5OH?

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Answer:So the formula C2H5OH makes it very clear that there are 2 carbon atoms, 5 hydrogen atoms, 1 oxygen atom (if there is no numerical subscript you can assume the value is 1) and 1 further H atom.

What is a catonic energy

Answers

Answer:

Low Energy

Hope it helps

It’s is A low frequency of energy

How do you find the 1.00 mole of H2?

Answers

The 1 mole of the H₂ can be determine by dividing the mass to the molar mass of the H₂. The mass will be 2.0 g.

The number of the moles of the substance can be determine by the following formula is :

The number of the moles = mass / molar mass

The mass = moles × molar mass

The mass molar mass = 2 g/mol

The mass =  moles × molar mass

The mass = 1 × 2

The mass = 2 g

Thus, the moles is equals to the mass divided by molar mass . The mass is 2 g.

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How many bonds does CH4 have?

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There are four covalent bonds in CH4. In this, four electrons of carbon binds with the four hydrogen atoms to form 4 covalent bond.

In Methane, total four electrons are present in the valence shell of the carbon. The carbon can lose four electrons or gain its four electrons to obtain its stability. Due to high energy requirements the carbon cannot lose or gain electrons to form ions. So it forms a covalent bond with the atoms by sharing its four electrons with the four other atoms. The covalent bond is formed by the sharing of electrons between the atoms to form the compound. Energy released when bonds formed. The system becomes more stable. If carbon forms 4 bonds rather than 2, twice as much energy is released and so the resulting molecule becomes even more stable.

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valium is commonly used to treat anxiety, panic attacks, and other medical conditions. the molecule has 8 double bonds and 3 rings. how many hydrogen atoms would be in valium's formula, c16h?cln2o?'

Answers

A benzodiazepine is Valium (diazepam). Diazepam alters brain chemicals that may be out of balance in anxiety sufferers. Valium can be used to treat muscle spasms, anxiety disorders, and alcohol withdrawal symptoms.

What are the properties of valium molecule?

A fast-acting medicine called valium can help you feel less anxious. To seek assistance for your anxiety, click the button below. The medication diazepam (Valium) is safe for usage by those over the age of 18.

However, you should discuss the best way to take the prescription with your doctor before taking it.

Therefore, The diazepam molecule has a total of 33 atoms, including 13 hydrogen atoms, 16 carbon atoms, 2 nitrogen atoms, 1 oxygen atom, and 1 chlorine atom (s).

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Balance the following combustion reaction with the fuel methane (natural gas): Ch4 + O2 > CO2 + H2O

Answers

Balanced chemical equation is: CH4+2O2→CO2+2H2O.

What is a Balanced chemical equation?

A balanced chemical equation has the same number of atoms of each element on the reactant and product sides of the equation.

The law of conservation of mass states that when a chemical reaction takes place, the mass of the products should be equal to the mass of the reactants. As a result, during the chemical reaction, the number of atoms in each element stays the same. As a result, the chemical equation must be balanced.

A chemical equation is a symbolic representation of a chemical reaction using symbols and chemical formulas.

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If 100.0 g of aluminum phosphide pellets are placed in a well-sealed closet and the air in the closet contains 50.0 g of water vapour, what is the percent yield of phosphine. if 23.8 g of it was collected after the reaction?

Answers

23.8 g ÷ 100.0 g x 100 = 23.8% yield of phosphine.

If following the reaction, 23.8 g of it were collected?The percent yield of phosphine is the ratio of the amount of phosphine collected after the reaction to the theoretical amount of phosphine that could have been produced.In this case, the reaction is between aluminum phosphide pellets and water vapour in a closed closet.The percent yield of phosphine is 23.8 g/24.2 g x 100% = 98.7%. This means that 98.7% of the theoretical amount of phosphine was produced in the reaction.This is a very high yield and suggests that the reaction was very efficient.The percent yield of phosphine gas produced from the reaction of 100.0 g of aluminum phosphide pellets with 50.0 g of water vapor in a well-sealed closet can be determined by calculating the ratio of the amount of phosphine produced to the amount of aluminum phosphide pellets used.The percent yield can then be calculated using this ratio. In this case, the percent yield is 23.8/100, or 23.8%. This means that, of the 100.0 g of aluminum phosphide pellets used, only 23.8 g of phosphine gas was produced. This indicates that the reaction was not very efficient. Factors such as temperature, pressure, and reactant ratio can all affect the efficiency of the reaction and should be taken into account in order to maximize the percent yield.

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difference in energy between reactants and products

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For exothermic reactions, the H is negative and the products have less energy than the reactants. With regard to an endothermic process, the reverse is true.

To put it another way, the bond-breaking process absorbs more heat than the bond-forming process; the products have greater energies than the reactants; and H is a positive number.

The energy involved in chemical processes are the subject of energetics. There are two different kinds of energies: the first is related to thermodynamics and is the energy that is released or absorbed when the reactants transform into the products, and the second is related to the kinetics of the reaction and is the energy that the reacting molecules must have in order to pass the energy barrier for converting to the products.

The reactants' energy level is shown by the beginning point. Keep in mind that each substance contains an inherent energy that is expressed as temperature. The inherent energy of the molecules causes them to move about and collide with other molecules.

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What should you expect when looking at a 1h nmr spectrum of a mixture of compounds?

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When looking at a ¹H NMR spectrum of a mixture of compounds, we might expect the minor component to show up as smaller peaks in the spectrum. There are usually fewer protons to absorb in the spectrum when there are fewer molecules present.

The ¹H NMR spectra show that oxadiazines 4b-d exist as mixtures of two diastereomers in a CDCl3 solution (cis and trans isomers).

Understanding the fundamentals of NMR theory prepares us to move on to the most important and practical part of this section, which is elucidating the structure of a compound from ¹H NMR spectrum information. Let's start with a real-world ¹H NMR spectrum.

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How many ionic bonds can oxygen form?

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Usually oxygen forms  2  ionic bond and hence, termed as divalent molecule.

What is an ionic bond?

The major interaction among ionic compounds is ionic bonding, which is a type of chemical bonding which involves the electrostatic attraction between two atoms or ions with dramatically differing electronegativities.

Divalent Molecule:

Divalent molecules are those molecules whose atoms have two covalent bonds .Hence oxygen having two ionic bond is known as divalent molecule. Molecules like nitrogen is trivalent which means having three covalent bonds and carbon is a tetravalent molecule which means it has 4 or more covalent bonds.

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M+ is an unknown metal cation with a +1 charge. A student dissolves the chloride of the unknown metal, MCl, in enough water to make 100.0 mL of solution. The student then mixes the solution with excess AgNO3 solution, causing AgCl to precipitate. The student collects the precipitate by filtration, dries it, and records the data shown below. (The molar mass of AgCl is 143 g/mol.)

Mass of unknown chloride - MCl 0.74 g
Mass of filter paper - 0.80 g
Mass of filter paper plus AgCl precipitate - 2.23 g

Which of the following diagrams best represents the AgNO3 solution before the reaction occurs? Note: water molecules are represented by the symbol

Answers

The amount of matter in a thing is measured by its mass. Ordinarily, mass is expressed in grammes (g) or kilogrammes (kg).

What is the simple definition of mass?

It appears that one of the response options is missing. The right response to this question would be KCl, and it is on my practise test for AP Chemistry.

AgCl mass is equal to 2.23 - 0.80 = 1.43g AgCl.

1.43g AgCl / 143g/mol AgCl = 0.01 moles AgCl

- AgCl has a mole ratio of 1:1, meaning that:

moles Since Ag+ = moles Cl-, Ag+ has 0.01 moles, while Cl- has 0.01 moles.

- The ration of MCl is also 1:1.

Mole Cl- = Mole M +

1.01 moles of M+ and Cl-

0.01 Cl- = x/35.45 = 0.3545g Cl-

MCl = 0.74g in mass.

0.74g MCl – 0.3545g Cl– = 0.3955g M+

0.010 mol M+ at 0.3955 g M+/x

x= 39.55g M+

K+'s molar mass is about 39.10.

Therefore, the answer is KCI.

The complete question is:

M+ is an unknown metal cation with a +1 charge. A student dissolves the chloride of the unknown metal, MCl, in enough water to make 100.0 mL of solution. The student then mixes the solution with excess AgNO3 solution, causing AgCl to precipitate. The student collects the precipitate by filtration, dries, it and records the data shown below. (The molar mass of AgCl is 143 g/mol.) Mass of unknown chloride, MCl Mass of filter paper Mass of filter paper plus AgCl ppt 0.42 g 1.00 g 2.43 g Find the identity of metal chloride.

(A) lithium chloride

(B) sodium chloride

(C) magnesium chloride

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as you read your etext, the menu options at the left of your screen will help you to easily navigate the etext and customize the content and your reading experience to help you succeed in your course.

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Text processing is the automated process of analyzing and sorting unstructured text data to gain valuable insights.

Unstructured text data can be automatically analyzed and sorted by text processing to produce insightful results. Text processing systems can automatically comprehend human language and extract value from text data by utilizing natural language processing (NLP), a branch of artificial intelligence, and machine learning.

Companies must first organize, sort, and measure textual data in order to obtain the insights and views contained in this unstructured data regarding various topics, goods, and services.

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The question is wrong/Incomplete, The possible question would be

What Is Text Processing?

So they are asking how human activities in nature will affect the availability in synthetic materials

Answers

Dickey created the first artificial materials with memory for a template in 1949 using a silica gel matrix.

What are synthetic material?

By using colors as templates and acid precipitating aqueous sodium silicate solution, imprinted silica materials were created (e.g., methyl orange).

The study of imprinted silicates and metal oxide sol-gel continued in the years that followed, and simple amorphous silicates could be imprinted for various colors, N-heterocycle aromatics, proteins, and for resolution of enantiomers.

The gel structure and surface chemistry of these materials, both of which are controlled by a wide range of variables, including catalysts, pH, solvents, age, and the composition of precursors, determine their recognition properties.

Therefore, Dickey created the first artificial materials with memory for a template in 1949 using a silica gel matrix.

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a glass of cold milk sometimes forms a coat of water on the outside of the glass (often referred to as 'sweat'). how does most of the water get there?

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Answer: A glass of cold milk sometimes forms a coat of water on the outside of the glass (Often referred to as 'sweat'). How does most of the water get there? Water evaporates from the milk and condenses on the outside of the glass. The glass acts like a semi-permeable membrane and allows the water to pass, but not the milk.

Explanation: Hope this helps

i need help with this problem please

Answers

Assuming complete combustion, 1.10 mols of CO2 must have been created by the combustion of 0.55 mols of acetylene (C2H2). The solution is 26*0.55 ≈ 14.3 grams since acetylene has a molar mass of 26.

Who or what uses acetylene?

Acetylene, the sole fuel gas that is suitable for welding, has numerous significant applications in the fabrication sector. In addition, it is perfect for many other processes like thermal spraying, brazing, cutting, fire gouging, spot warming, hardening, and texturing.

How come acetylene is so explosive?

Acetylene can become exceedingly unstable in a variety of situations, including those involving heat, high pressure, and other factors, due to its rapid combustion rate. When the permitted pressure surpasses 15 psi, acetylene can potentially be explosive.

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What chemical test can be used to confirm that the gas produced in a chemical reaction is carbon dioxide?

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Lime water test can be used to confirm that the gas produced in a chemical reaction is carbon dioxide.

The gas being tested is bubbled through limewater in lime water test. Lime water is a mixture of water and calcium hydroxide. If the limewater turns a milky color the gas bubbled through it is may be carbon dioxide. The milky substance generated is calcium carbonate. It is the soluble compound. The gas Carbon dioxide is a chemical compound made up of molecules of one carbon atom covalently double bonded to two oxygen atoms. [tex]CO_{2}[/tex] is found in the gas state at room temperature. carbon dioxide is transparent to visible light in the air. It absorbs infrared radiation. It acts as a greenhouse gas.

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How much energy does it take to boil 100 mL of water? (Refer to table of
constants for water.)
A. 100 mL x 1g
1 mL
OB. 100 mL x
C. 100 mL x
OD. 100 mL x
1 g
1 mL
1 g
1 mL
1g
1 mL
X
X
X
X
1 mol
18.02 g
1 mol
18.02 g
1 mol
18.02 g
1 mol
18.02 g
x (-285.83 kJ)/mol = -1586 kJ
x 6.03 kJ/mol = 33.5 kJ
x 4.186 kJ/mol = 23.2 kJ
x 40.65 kJ/mol = 226 kJ

Answers

So 100ml of water has a mass of 100 grams. The change in temperature is (100°C - 27°C) = 73°C. Since the specific heat of water is 4.18J/g/°C we can calculate the amount of energy needed by the expression below. Energy required = 4.18 J/g/°C X 100g X 73°C = 30.514KJ.

What is energy?Scientists define energy as the ability to do work. Modern civilization is possible because people have learned how to change energy from one form to another and then use it to do work. People use energy to walk and bicycle, to move cars along roads and boats through water, to cook food on stoves, to make ice in freezers, to light our homes and offices, to manufacture products, and to send astronauts into space.Energy can be converted from one form to another. For example, the food you eat contains chemical energy, and your body stores this energy until you use it as kinetic energy during work or play. The stored chemical energy in coal or natural gas and the kinetic energy of water flowing in rivers can be converted to electrical energy, which can be converted to light and heat.

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Answer:1 00 mL x 1g/1 mL x 40.65 kJ/mol = 226 kJ

Explanation:

What is the empirical formula of a compound that contains 40% carbon, 6.7% hydrogen, and 53.3% oxygen?

Answers

The empirical formula of the compound is CH2O that can be calculated using the given percentages of the atoms.

In summary, empirical formula is derived from experimentally measured detail loads via way of means of: Deriving the wide variety of moles of every detail from its mass. Dividing every detail's molar quantity via way of means of the smallest molar quantity to yield subscripts for a tentative empirical components. The molecular components is maximum beneficial while you desire to recognize what number of atoms of the factors are gift withinside the compound.

In 100 g of the compound, mass of carbon = 40 g, that of hydrogen = 6.67 g and mass of oxygen = 53.33 g.

Ratio of number of atoms, C : H : O = 40/12 : 6.67/1.008 : 53.33/16 = 3.33 : 6.66 : 3.33 = 1 : 2 : 1.

So, the empirical formula of the compound is CH2O.

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31. calculation of pka an unknown compound, x, is thought to have a carboxyl group with a pka of 2.0 and another ionizable group with a pka between 5 and 8. when 75 ml of 0.1 m naoh is added to 100 ml of a 0.1 m solution of x at ph 2.0, the ph increases to 6.72. calculate the pka of the second ionizable group of x.

Answers

The pka of the second ionizable group of x 6.72.

Calculate the initial concentration of X at pH 2.0

The initial concentration of X can be calculated using the Henderson-Hasselbalch equation:

pH = pKa + log([X-]/[XH])

Rearranging this equation, we get:

[X-]/[XH] = 10^(pH - pKa)

Therefore, at pH 2.0, the ratio of X- to XH is 10^(2.0 - 2.0) = 1.

Calculate the concentration of X after 75 ml of 0.1 M NaOH is added.The concentration of X after 75 ml of 0.1 M NaOH is added can be calculated by using the following equation:

[X-] = [X] + [OH-]

Where [X] is the initial concentration of X, and [OH-] is the concentration of OH- ions from the added NaOH.Therefore, the concentration of X after 75 ml of 0.1 M NaOH is added is 0.1 + 0.1 = 0.2 M

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What is the molarity when 40 grams of hf is added to water to make a 500 ml solution?

Answers

Answer:

3.998 M

or, if considering significant figures,

4 M

Explanation:

Molarity is a unit of concentration used to express the concentration of a solution in terms of moles of solute per liter of solution. To calculate the molarity of a solution, we need to know the number of moles of solute present in the solution and the volume of the solution in liters.

We can use the formula:

Molarity = moles of solute / liters of solution

We are given the mass of the solute: 40 grams of HF. The molar mass of HF is 20.01 g/mol. By dividing the mass of HF by the molar mass of HF, we can obtain the number of moles of HF: (40 grams HF) / (20.01 grams HF/moles HF) = 1.999 moles HF.

The volume of the solution is given as 500 mL, which is equivalent to 0.5 L.

Now we can use the formula to calculate the molarity:

Molarity = moles of solute / liters of solution = 1.999 moles HF / 0.5 L = 3.998 M HF.

Therefore, the molarity of the solution when 40 grams of HF are added to water to make a 500-mL solution is 3.998 M.

Note that all numerical quantities in the question are given to one significant figure. So, if you must also consider significant figures, the molarity of the solution would be 4 M. Since it is not entirely clear whether you are to disregard significant figures for this question, I will provide you with both representations.

fungus that contains the psychedelic compounds psilocybin and psilocin; been used for thousands of years as a hallucinogen. True Or False

Answers

Fungus that contains the psychedelic compounds psilocybin and psilocin; been used for thousands of years as a hallucinogen. This statement is true.

What is psilocybin known for ?

Psilocybin is also called as magic mushrooms. They are naturally occurring, and they are consumed for their hallucinogenic effects.

They are used as psychedelic drugs, that means they can affect all the senses, converting a person's thinking, sense of time and emotions.

Thus, Fungus that contains the psychedelic compounds psilocybin and psilocin; been used for thousands of years as a hallucinogen. This statement is true.

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How does oxidation and reduction change oxidation numbers?

Answers

The oxidation and reduction change oxidation numbers as the loss of the electron is oxidation and it increases the oxidation number. The gain of the electrons is the reduction and it decreases the oxidation number.

The loss of the electrons is called  as the  oxidation . The gain  of the electrons is called as the reduction. When the loss of the electron occur , the oxidation number increases and is called as the oxidation. When  the gain of the electrons occurs it decreases the oxidation number and is called as reduction.

The oxidation number relates to the oxidation and reduction. The oxidation - reduction is called as the redox reaction.

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At 300 K, the pressure inside a gas-filled container is 500 kPa.


If the pressure inside decreases to 250 kPa, but the volume remains the same, what is the final temperature of the gas?



150 K


250 K


300 K


600 K

Answers

At 300 K, pressure inside the gas-filled container is the 500 kPa. If the pressure inside will decreases to 250 kPa, the final temperature of the gas is 150.6 K.

Give that :

The pressure P1 = 500 kpa

The temperature T1 = 300 K

The pressure P2 = 250 kpa

The temperature , T2 = ?

The temperature and the pressure relation at constant volume is given as :

P1 / T1 = P2 / T2

500 / 300 = 250 / T2

1.66 = 250 / T2

T2 = 250 / 1.66

T2 = 150.6 K

Thus, the final temperature is 15.6 K.

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compound a can be converted to compound b according to the following reaction: if the reaction is at equilibrium, what is the correct expression for the equilibrium constant k?

Answers

The correct expression for the equilibrium constant k is K = [B]/[A], where [A] and [B] are the concentrations of compounds A and B respectively.

What is the correct expression for the equilibrium constant k?

Compound A + Compound B <--> Compound C

K = [Compound C] / [Compound A] x [Compound B]

The equilibrium constant, denoted by k, is an expression that gives the ratio of the concentrations of products and reactants at equilibrium.In the reaction between compounds a and b, the equilibrium constant can be expressed as k = [b]/[a], where [b] and [a] denote the concentrations of compound b and compound a, respectively.The value of the equilibrium constant is determined by the reaction conditions, such as temperature, pressure, and concentrations of reactants and products.At equilibrium, the reaction rate of the forward and reverse reactions is equal, and the concentrations of reactants and products remain constant.Therefore, the equilibrium constant can be used to predict the proportions of reactants and products at equilibrium.

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The mass of the sun is approximately 1,990,000,000,000,000,000,000,000,000,000,000 grams
Mass of a proton in scientific notation.

Answers

The mass of a proton is expressed in scientific notation as 1.67 x 10⁻²⁴ grams.

This notation makes it simpler to express very small or very large numbers since it represents a value that is stated as a number multiplied by a power of 10.

What is a Proton?The nucleus of an atom contains the subatomic particle known as a proton.Together with neutrons, it has a positive charge and forms the nucleus of an atom, which establishes the atomic number and subsequently the element.In scientific notation, the mass of a proton is roughly 1.67 x 10-24 grams, and it is frequently written in kilograms or atomic mass units (amu) (kg). The mass of a proton is substantially more than that of the electrons that orbit the nucleus, despite the proton's relatively modest size.The makeup of atoms and the characteristics of elements depend heavily on protons.The chemical characteristics of an element and its reactivity are determined by their electromagnetic interactions with electrons.

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what change would you expect on the rate of the sn2 reaction of 1-iodo-2-methylbutane with cyanide ion if the nucleophile concentration is unchanged and the alkyl halide concentration is doubled ? what change would you expect on the rate of the reaction of ethanol with 2-iodo-2-methylbutane if the nucleophile concentration is unchanged and the alkyl halide concentration is doubled ?

Answers

If the nucleophile concentration is unchanged and the alkyl halide concentration is doubled; the rate of reaction remains the same, it is unchanged.

The rate of reaction of tertiary alkyl halides with a nucleophile is independent of the concentration of the nucleopohile but depends only on the initial concentration of the alkyl halide, because tertiary alkyl halides reacts via SN1 mechanism.

For an SN2 reaction, the rate of reaction depends both on the alkyl halide concentration and the nucleophile concentration. If we unchange the concentration of the nucleophile and double the concentration of the alkyl halide, the rate of reaction just remains the same because the reaction is bimolecular.

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