Using the reagents below, list in order (by letter, no period) those necessary to prepare trans-1,2-dibromocyclopentane from cyclopentane.
Note: Not all spaces provided may be needed. Type "na" in any space where you have no reagent. (There are 3 spaces)
a. Br2, heat, light
b. HBr
c. Br2
d. H2O
e. HBr, HOOH
f. EtOH
g. NaOEt, EtOH, heat

Answers

Answer 1

a. Br2, heat, light, g. NaOEt, EtOH, heat, c. Br2 . Three separate processes are necessary to transform the stability cyclopentane into the dibromocyclopentane trans isomer.

What is the purpose of a cyclopentane?

The polyurethane foams used to insulate freezers and refrigerators use cyclopentane as a blowing agent.Cyclopentane does not include hydro-fluorocarbons, in contrast to several other materials used to insulation refrigerators (HFCs).

Where can you find cyclopentane?

The offering a wide variety ring is present in many valuable medications and other natural compounds.Prostaglandins, most steroids, and a few lipids are examples.

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Related Questions

Which structural level do each of the following descriptions belong to? Write the structural level name and not the number.1. Even a slight change in this can alter tertiary structure2. Amino acid sequence3. Final Functional three-dimensional shape4. Not present in all proteins5. Level of structure that is held together by peptide bonds 6. Alpha helix and pleated sheet7. This level occurs in proteins with more than one protein strand

Answers

Tertiary Structure, Primary Structure, Tertiary Structure, Secondary Structure, Primary Structure, Secondary Structure, Quaternary Structure.

The structural levels of proteins describe the different levels of organization that proteins can have.

Tertiary Structure: This refers to the final three-dimensional shape of a protein. Even a small change in this level can alter the function of the protein.

Primary Structure: This refers to the linear sequence of amino acids that make up a protein. It is held together by peptide bonds and is the basic building block of a protein.

Secondary Structure: This level is characterized by the way the protein chains fold into regular shapes, such as alpha helices and beta sheets. These shapes are stabilized by hydrogen bonds between the peptide bonds.

Quaternary Structure: This refers to the organization of multiple protein chains into a functional unit. Not all proteins have a quaternary structure.

Primary Structure: This refers to the linear sequence of amino acids that make up a protein. It is held together by peptide bonds and is the basic building block of a protein.

Secondary Structure: This level is characterized by the way the protein chains fold into regular shapes, such as alpha helices and beta sheets. These shapes are stabilized by hydrogen bonds between the peptide bonds.

Quaternary Structure: This refers to the organization of multiple protein chains into a functional unit. This level of structure occurs in proteins that are made up of more than one protein chain.

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Be sure to answer all parts. Identify the more stable stereoisomer in the following pair; and choose the reason that explains your choice. A: The more stable stereoisomer is: This is because: O Two methyl groups are axial and one is equatorial in its most stable conformation. O Two methyl groups are equatorial and one is axial in its most stable conformation.O All methyl groups are equatorial in its most stable conformation. O All methyl groups are axial in its most stable conformation

Answers

We know the equatorial position is more stable than axial, so in the structure A there are three methyl at equatorial and in B only one methyl at equatorial, so structure A is more stable.

Equatorial angle definition?

Axial bonds with non-ring atoms are defined as those that make an angle of approximately 90° or more with the ring plane, whereas equatorial bonds with non-ring atoms are defined as those that only make a modest angle with the ring plane.

Why is an equatorial location better?

As was said in the preceding section, the equilibrium favours the much more stable conformer because the chair conformation, where the substituent is equatorial, lowers steric repulsion.

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the single atom you would choose to remove from living organisms in order to remove the highest percentage of atoms would be.

Answers

The single atom you would choose to remove from living organisms in order to remove the highest percentage of atoms would be hydrogen.

Hydrogen is the most abundant element in living organisms, making up nearly two-thirds of their total mass. Therefore, removing hydrogen would result in the removal of the highest percentage of atoms in living organisms.

Hydrogen atoms are found in water molecules, proteins, carbohydrates, and nucleic acids, among other organic compounds. The removal of hydrogen would result in the degradation of these compounds, and the organism would not be able to survive.

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part 3: cis-trans isomers (geometric isomers) identify each of the following alkenes or cycloalkanes as either cis, trans, or neither. briefly explain each choice to receive credit.

Answers

Cis-trans isomers, also known as geometric isomers, are a type of stereoisomer where the arrangement of the atoms in space differs.

Here's a brief explanation of each choice:

Cis: In a cis isomer, the groups attached to the double bond are on the same side of the molecule.

Trans: In a trans isomer, the groups attached to the double bond are on opposite sides of the molecule.

Neither: If a compound is a cycloalkane, it does not have a double bond and therefore cannot have cis-trans isomers.

For example:

1,2-dichloroethylene can be either cis or trans:

The cis isomer will have the chlorine atoms on the same side of the molecule.

The trans isomer will have the chlorine atoms on opposite sides of the molecule.

Cyclohexane, on the other hand, is a cycloalkane and does not have a double bond, so it cannot be a cis or trans isomer.

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What does it mean when a material can reflect light?
A. Light bends when it passes from one material to another
B. Light bounces off the material and travels back
C. the material refracts light
D. Light may split when it passes through the material

Answers

Answer:

Specular reflection

Explanation:

Reflection is when light bounces off an object. If the surface is smooth and shiny, like glass, water or polished metal, the light will reflect at the same angle as it hit the surface. This is called specular reflection. Light reflects from a smooth surface at the same angle as it hits the surface

Answer:

B

Explanation:

Since the reflection of light (and other forms of electromagnetic radiation) occurs when the waves encounter a surface or other boundary that does not absorb the energy of the radiation and bounces the waves away from the surface. A material that relects light is bouncing it

state what happens to the average kinetic energy of the gas molecules if the cabin temperature descreases

Answers

The average kinetic energy of the gas molecules is decrease if the cabin temperature decreases.

The average kinetic energy of the gas molecules also falls with a drop in temperature. This indicates that in order for the pressure to remain constant, the volume must decrease in order to make up for the molecules' decreased average kinetic energy.

The average kinetic energy of the molecules in a body is measured by its temperature. The average kinetic energy of the molecules increases when a body's temperature rises. Similarly to this, lowering the temperature lowers the molecules' average kinetic energy.

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how many milligrams of gas are formed if 10.0mL of 3.00% hydrogen peroxide solution decomposes? the density of the solution is 1.00g/mL. show work using dimensional analysis.

Answers

Answer

So, you that your hydrogen peroxide solution had a volume of 5 mL. The density of this solution was listed at

1.02 g/mL.

The weight by volume percent concentration,

%w/v, for a hydrogen peroxide solution that has that density is listed at 6.6%.

pigment granules are composed of which of the following: pigment granules are composed of which of the following: fibrin actin myosin melanin

Answers

Pigment granules are composed of Melanin. Melanin is a pigment that is found in the pigment granules of many organisms.

It is responsible for providing color to skin, hair, and eyes. There are two main types of melanin: eumelanin, which is dark brown to black, and pheomelanin, which is yellow to reddish-brown. The amount and type of melanin present in an organism is determined by genetic factors, and it plays a crucial role in protecting the skin from the harmful effects of UV radiation. Melanin is produced by specialized cells called melanocytes, and it is transferred to surrounding keratinocytes, which are the cells that make up the majority of the epidermis. The presence of melanin in pigment granules helps to absorb and scatter harmful light, reducing the damage that it causes to cells and DNA.

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when cations and anions meet they form electrolytes. form cells. form a 3-d structure. form covalent bonds. repel.

Answers

When the cation and the anion meet they form electrolytes which form a 3-d (3 dimensional structure).

Covalent compounds are always formed when there is sharing of electrons taking place between non metals. Ionic compounds are usually formed by transferring of electrons between the metals and non metals.

For the process of the formation of a neutral ionic compound, the charges on cation and anion must be always balanced. The cation is formed by loss of electrons by metals and anions are formed by gain of electrons by non metals. When an acid and a base undergo a process of the neutralization reaction then it results in the formation of an ionic compound known as a salt.

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How many grams of Fe(NO3)3 · 9 H2O are required to prepare 300.0 mL of a 0.333 M solution of Fe(NO3)3 · 9 H2O?

Answers

40.34 grams of Fe(NO3)3 · 9 H2O are required to prepare 300.0 mL of a 0.333 M solution of Fe(NO3)3 · 9 H2O.

What is molar mass ?

The term molar mass is defined as the mass in grams of one mole of a substance. The units of molar mass are grams per mole, abbreviated as g/mol.

The molar mass of Fe(NO3)3 · 9 H2O is 403.9g/mol

Therefore, the moles of Fe(NO3)3 · 9 H2O present in 300ml of 0.333 M Solution = molarity × volume

=0.333 mol / L × 300ml × 10^-3 L/ml

=0.0999 moles

=0.0999 mol × 403.9g/mol

= 40.34 grams

40.34 grams of Fe(NO3)3 · 9 H2O are required.

Thus, 40.34 grams of Fe(NO3)3 · 9 H2O are required to prepare 300.0 mL of a 0.333 M solution of Fe(NO3)3 · 9 H2O.

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5. From the two examples provided, would you expect the formula Sg to represent a compound to an element?

Answers

From the two examples provided, the chemical formula Sg represents an element.

What is an element?

It is defined as a substance which cannot be broken down further into any other substance. Each element is made up of its own type of atom. Due to this reason all elements are different from one another.

Elements can be classified as metals and non-metals. Metals are shiny and conduct electricity and are all solids at room temperature except mercury. Non-metals do not conduct electricity and are mostly gases at room temperature except carbon and sulfur.

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which of the following cation names is incorrect?group of answer choicescopper (ii) ioncopper (i) iongold (iii) ionpotassium (i) ion

Answers

Copper is not a valid name for a cation in the options of the question. Hence option (I) copper is the correct option..

Describe copper.

The chemical element copper (Cu) is a reddish, incredibly ductile metal belonging to Periodic Group 11 (Ib) that has an exceptional ability to conduct heat and electricity. Copper occurs naturally in its pure metallic state.

You require the mineral copper to maintain good health.

Copper is used by the body for a variety of vital processes, including the synthesis of connective tissues, blood vessels, and energy. Additionally, copper stimulates genes and supports the immunological and nervous systems. For the growth of the brain, the body also needs copper.

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fill in the blank. a(n)___style sheet includes the style sheet within the opening and closing tags of the html document; this type is used when you want to create styles for a single webpage that are different from the rest of the website.

Answers

An inline style sheet includes the style sheet within the opening and closing tags of the HTML document; this type is used when you want to create styles for a single webpage that are different from the rest of the website.

Inline styling in HTML is the process of adding CSS styles directly to an HTML element. This allows you to specify the exact styling of an element without having to create a separate style sheet.

Inline styles are added directly to the HTML element using the style attribute. For example, if you wanted to make a paragraph red and bold, you would use the following code:

<p style="color: red; font-weight: bold;">This is a bold, red paragraph.</p>

Inline styles are generally used for small changes or for styling a single element. For larger changes, or for styling multiple elements, an external style sheet should be used.

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You wish to prepare a pitcher of iced tea by mixing some amount of ice at -10°C with 400 g of hot tea at 80°C. You want your final pitcher of iced tea to be at 10°C. Determine the mass of ice you should use.

Answers

The mass of ice you should use is 295.27 grams.

When we mix two materials with different temperatures, the object with a higher temperature will release its heat energy while the object with a lower temperature will absorb heat energy so that the temperature of the two materials becomes the same. According to Black's principle

Q absorb = - Q release

Heat energy due to temperature change Q = m × c × ΔT

Heat energy due to melting or freezing events Q = m × L

Q = heat energy (cal)m = mass (grams)c = specific heat
c of water = 1 cal/g °C
c of ice = 0.503 cal/g °C ΔT = temperature change (°C)L = latent heat of fusion
L of ice or water = 79.8 cal/g

The higher temperature is hot tea

The temperature of hot tea will decrease from 80°C to 10°C.
ΔT = 10°C - 80°C = - 70°Cm = 400 gramsQ = m × c × ΔT
Q = 400 × 1 × - 70
Q = - 28,000 cal

The lower temperature is an ice

The temperature of ice - 10°C increases to 10°C. The maximum temperature for ice is 0°C so ice will be melted The ice will have three processIce from - 10°C to 0°C
ΔT = 0 - (- 10) = 10°C
Q = m × c × ΔT
Q₁ = m × 0.503 × 10
Q₁ = 5.03m calMelting ice
Q = m × L
Q₂ = m × 79.8
Q₂ = 79.8m calIce already become water and the temperature increasing from 0°C to 10°C
ΔT = 10 - 0 = 10°C
Q = m × c × ΔT
Q₃ = m × 1 × 10
Q₃ = 10m cal

Q absorb = - Q release

Q₁ + Q₂ + Q₃ = - Q

5.03m + 79.8m + 10m = - (- 28,000)

94.83m = 28,000

m = 28,000 ÷ 94.83

m = 295.27 grams

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What is the frequency of the photons emitted by hydrogen atoms when they undergo transitions from n = 5 to n = 3?

Answers

The frequency of the photons emitted by hydrogen atoms when they undergo transitions from n = 5 to n = 3 is 656.3 x 10⁹ Hz.

The hydrogen atom is an example of a simple atomic system where the electrons are in quantized energy levels. Photons are emitted or absorbed by the hydrogen atom when its electrons undergo transitions between these energy levels.

The frequency of the photons emitted or absorbed is determined by the difference in energy between the initial and final energy levels. The relationship between the frequency and the energy levels is given by the Rydberg equation, where the frequency is proportional to the inverse of the square of the energy level numbers:

f = R_H (1/n1² - 1/n2²)

where R_H is the Rydberg constant (R_H = 1.097 x 10⁷ m⁻¹) and n1 and n2 are the initial and final energy levels, respectively.

So, for the transition from n = 5 to n = 3, the frequency would be:

f = 1.097 x 10⁷ (1/5² - 1/3²)

f = 656.3 x 10⁹ Hz

which is approximately equal to 656.3 x 10⁹ Hz.

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on a piece of paper, write a balanced total and net ionic equation for the reaction between aqueous solutions of acetic acid and potassium hydroxide. 1. input the sum of the coefficients for the net ionic equation here, e.g. 0, 1, 2, 3, 4 etc 2. name the salt that was formed, e.g. sodium chloride

Answers

Making the ionic equation HC2H3O2aq + K+ + OH- C2H3O2 - aq + K+ + H2O, the proton from acetic acid should be transferred to the hydroxide ion. Simply removing the K+ spectator ions will convert this into a net ionic equation.

What is the balanced reaction between acetic acid and potassium hydroxide in water?

KOH results from their interaction (aq.) A salt is produced as a result of the interaction between potassium hydroxide and acetic acid. Potassium acetate + water = potassium hydroxide + acetic acid. Acid is CH3COOH, while base is KOH.

What is the net ionic equation for the reaction of nitric acid in water and sodium hydroxide in water?

The neutralization reaction HNO3 + NaOH produces NaNO3 and H2O. (also a double displacement reaction). Strong base (HNO3) and acid (HNO3) react to form salt (NaNO3) and water (H2O).

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a proton is released at point a on the top plate with zero velocity. find the velocity v(x) of the proton at distance x from the top plate (at point b).

Answers

The velocity of a proton released at point a on the top plate can be found using the concept of electrostatic potential.

The electric potential difference between two points is defined as the work done per unit charge in moving a small test charge from one point to the other. The velocity of a proton released with zero velocity can be found by calculating the electric potential difference between points a and b, and using the formula for kinetic energy:

K = qV,

where q is the charge of the proton, and V is the electric potential difference between points a and b. The velocity of the proton can then be found using the formula for kinetic energy:

v = √(2K/m),

where m is the mass of the proton.

It is important to note that in order to perform these calculations, information about the electric field and the potential difference between points a and b is needed. Without these details, it is not possible to find the velocity of the proton.

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give you a molecule and you tell me how many different signals (c and h), and splitting and integration and approximate chemical shift. see list of topics in lab manual.

Answers

C13 and H1 different signals (c and h), and splitting and integration and approximate chemical shift.

An approximate chemical shift range for different nuclei (carbon, hydrogen) based on common observations in NMR spectroscopy.

Carbon (13C):

Chemical shift range: around 0-200 ppm

Hydrogen (1H):

Chemical shift range: around 0-12 ppm

Nuclear magnetic resonance (NMR) spectroscopy is a powerful analytical tool that is used to study the structure and composition of molecules. It is based on the concept that certain nuclei in a molecule, such as hydrogen, can absorb and emit electromagnetic radiation in the radio frequency range when exposed to a magnetic field. By analyzing the patterns of absorption and emission, NMR spectroscopy can provide information about the chemical environment and connectivity of atoms within a molecule.

This information can be used to determine the molecular structure, identify the different types of atoms within a molecule, and quantify the amounts of different chemical species present in a sample. NMR spectroscopy has a wide range of applications in fields such as biochemistry, medicinal chemistry, materials science, and environmental chemistry, and is essential for the study of many complex chemical systems.

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Given 46.34 grams of Na, how many grams of N2 are used? Please look at screenshot.

Answers

As per the given balanced chemical equation  of the reaction, 2 moles or 46 g of Na needs to react with 3 moles or 84 g of N₂. Then 46.34 g of Na needs 84.6 g of N₂.

What is sodium nitride?

Sodium nitride, NaN₃ is an ionic compound formed by the donation of electron from the sodium metal to nitrogen atoms. The decomposition of sodium azide produce sodium metal and nitrogen gas.

As per the given balanced chemical equation  of the reaction, 2 moles or 46 g of Na needs to react with 3 moles or 84 g of N₂.

molar mass of N₂ = 28 g/mol

mass of 3 moles = 84 g

atomic mass of Na = 23 g/mol

mass of 2 moles = 46 g.

Then , mass of nitrogen gas required to react with 46.34 g of sodium is:

(46.34 ×84)/46 = 84.62 g.

Therefore, 84.62 g of nitrogen gas is used up in this reaction.

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which of the following statements are true of a polar covalent bond? the electrons are closer to the nucleus of the atom with lower electronegativity.

Answers

The shared electrons are closer to one nucleus than the other.

Definition of Covalent Bonds

A covalent bond is a bond formed by the sharing of an electron pair by two or more non-metallic atoms. This covalent bond was discovered by Gilbert Newton Lewis.

In a covalent bond, each electron in the shared pair is attracted by the nuclei of the two nonmetal atoms. The force of attraction of electrons to the nucleus is what binds the two atoms so that a covalent bond is formed, such as H2, I2, Cl2, O2, and so on.

It should be noted that covalent bonds in many-electron atoms only involve valence electrons. Valence electrons are electrons located in the outermost shell of an atom.

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1.04 x 1023 molecules of carbon monoxide reacts with 2.93 l of oxygen gas at stp to form how many grams of carbon dioxide from the limiting reagent.

Answers

We want 7.632 grams of carbon dioxide from the limiting reagent.

The number of moles of each reagent, which we can find using the number of molecules and the Avogadro's number.

1.04 x 10^23 molecules of CO is equal to 1.04 x 10^23 / 6.02 x 10^23 = 0.173 moles of CO.

2.93 L of O2 at STP (Standard Temperature and Pressure: 0°C and 1 atm) is equal to 2.93 x 22.4 L/mol = 65.722 moles of O2.

Since 0.173 moles of CO is less than 65.722 moles of O2, CO is the limiting reagent. This means that only 0.173 moles of CO2 will be produced.

Finally, we can convert moles to grams by multiplying the number of moles by the molar mass of CO2 (44.01 g/mol):

0.173 moles * 44.01 g/mol = 7.632 g of CO2.

STP stands for Standard Temperature and Pressure, which is a set of conditions that are used as a reference point in chemistry. It is defined as a temperature of 0°C (273.15 K) and a pressure of 1 atm (101.3 kPa). This standardization allows for easier comparison of chemical reactions and properties, as well as providing a way to calculate the behavior of gases under different conditions.

The use of STP also ensures that data is consistently recorded and compared in experiments, and that results are comparable across different labs. Understanding STP is important in various areas of chemistry, including thermodynamics, kinetics, and gas laws. In addition, it is also useful in engineering, environmental science, and other related fields where the properties of gases are important.

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1. How much coal will be produced in the year 2020 for each region?






2. What trend would you predict for the next ten years for each region?






3. If people keep using coal in the same way, scientists say there may be enough coal reserves to last 200 to 300 years. Does your graph show trends that match what scientists say? What kinds of factors might cause them not to match?






4. Can you think of any problems that could come from using only 15 years of data to predict trends for the next 100 years? Explain your answer. How could you prevent some of these problems?


Don't answer unless you know.

Answers

You would need a bigger graph to be able to compute these values.

How to best compute these values on your own?

Get bigger graph paper as it says "The X-axis should be years and the Y-axis should be coal production." On the X-axis (Horizontal Line) write "Years" and on the Y-Axis (Vertical Line) write "Coal Production."

Now, you are gonna start listing all the years on the X-Axis 1996 through 2011, And on the Y-Axis list all the coal productions 145 and all the numbers through 634.

Make sure you have the regions, Appalachian, Interior and Western.

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The radioactive isotope carbon-14 is used as a tracer in medical and biological research. Compute the half-life of carbon-14 given that the
decay constant k is -1.2097 x 10-4 (The units for k here are such that your half-life answer will be in years.)

Answers

Half-life can be calculated using the formula [tex]t(\frac{1}{2}) = \frac{ln(2)}{k}[/tex], where k is the decay constant. Therefore, the half-life of carbon-14 is 5730 years.

The half-life of a radioactive isotope is defined as the amount of time it takes for half of the original amount of the isotope to decay. The half-life can be calculated using the decay constant, which represents the rate at which the isotope decays. In this case, the decay constant of carbon-14 is given as -1.2097 x 10-4 (per year). To find the half-life, we need to solve the equation

[tex]t(\frac{1}{2}) = \frac{ln(2)}{k}[/tex],

Where [tex]t(\frac{1}{2})[/tex] is the half-life and k is the decay constant. Plugging in the value of the decay constant, we get:

[tex]t(\frac{1}{2}) = \frac{ln(2)}{-1.2097 * 10^{-4} }[/tex] = 5715 years

So, the half-life of carbon-14 is approximately 5715 years.

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To make 1.50 L of 0.100 M NaCl from a 2.92 M stock solution, you would need to take {blank} mL of the stock solution and add {blank} mL of water.

Answers

Consequently, add 1453 ml water to 47 ml.

In chemistry, what exactly is a water?

Water is a material that exists in gaseous, solid, and solid phases and is made up of the chemical atoms and oxygen. It is among the common and essential compounds.At normal temperature, it is a flavorless, odorless liquid with the crucial property of dissolving several other compounds.

Whose full name is H2O?

H 2 O is another name for water. Water is most frequently used for drinking purposes. M2 m of hydrogen or one mole of oxygen make up dihydrogen monoxide, which is what it is. The object is liquid and is at room temperature.

3.13 * x = 1.5 * 0.1

x = 0.047L

So take 47 ml and add 1453 ml of water

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choose a balanced chemical reaction for nab(oh)4 forming a sodium ion and a tetrahydroxyborate anion.

Answers

Answer: Hope this helps:

The balanced chemical reaction for the formation of sodium ion (Na+) and tetrahydroxyborate anion (B(OH)4-) from sodium tetrahydroxyborate (NaB(OH)4) is:

NaB(OH)4 → Na+ + B(OH)4-

This reaction represents the dissociation of sodium tetrahydroxyborate in water to form the sodium ion and tetrahydroxyborate anion, which are both strong electrolytes and therefore completely dissociate in aqueous solution.

compound a compound b compound c which of the compounds above are strong enough acids to react almost completely with a hydroxide ion (pka of h2o

Answers

Diethyl malonate, pentane-2,4-dione, and phenol are potent enough to totally react with a hydroxide ion.

Phenol, a type of aromatic alcohol, can react with a hydroxide ion to form a phenolate ion. This reaction occurs through a deprotonation reaction, in which the hydroxide ion removes a proton from the phenol molecule. The reaction can be considered complete as long as a sufficient amount of hydroxide ion is present.

Pentane-2,4-dione, also known as oxopentanedione, is a type of organic compound with two ketone functional groups. It is unlikely that it will react completely with a hydroxide ion, as the ketone functional groups are not basic and therefore, do not readily react with hydroxide ions.

Diethyl malonate, on the other hand, is a type of ester that can react with a hydroxide ion to form a malonate ester. This reaction occurs through a deprotonation reaction, similar to the reaction between phenol and a hydroxide ion. However, like pentane-2,4-dione, the reaction is unlikely to be complete unless a sufficient amount of hydroxide ion is present.

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Read the statements.
I. The cell needs continuous supply of hydrogen to operate.
II. The cell is used in some cars.
III. Water is a byproduct of the redox reaction.
What type of voltaic cell is described here?
lead-acid cells
dry cells
wet cells
fuel cells

Answers

Fuel cells of voltaic cell are described here.

What are Fuel cells?

A fuel cell is an electrochemical device that uses two redox processes to transform the chemical energy of a fuel (typically hydrogen) and an oxidising agent (commonly oxygen) into electrical energy. In contrast to most batteries, fuel cells require a constant supply of fuel and oxygen (often from air) to sustain the chemical reaction. In contrast, a battery typically derives its chemical energy from materials that are already present in the battery. As long as fuel and oxygen are available, fuel cells can constantly create electricity. Sir William Grove created the first fuel cells in 1838.

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Wood has a density of 6.84 g/cm3. What is the volume of 26.4 g of wood?

The volume of the wood is? blank
unit ? blank

Answers

D = mass/volume

6.84g/cm^3 = 26.4g/x

solve for x

x = 3.86 cm^3 notice 3 sig figs

select the characteristic that most strongly influences the phase (solid, liquid, or gas) of an organic compound at a particular temperature.

Answers

The most significant factor that determines the phase of an organic compound is its intermolecular forces of attraction.

Compounds with stronger intermolecular forces, such as hydrogen bonding, will be in a solid phase at lower temperatures, while compounds with weaker forces, such as London dispersion forces, will be in a gaseous phase at the same temperature. Additionally, temperature and pressure can also play a role in the phase of a compound. For example, increasing temperature can break intermolecular forces and cause a substance to transition from a solid to a liquid or a liquid to a gas. Ultimately, the balance between intermolecular forces and the energy of the particles in a compound determines its phase at a particular temperature.

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Complete question:

Select the characteristic that most strongly influences the phase (solid, liquid, or gas) of an organic compound at a particular temperature.

A. The types of intermolecular forces present.

B. The molar mass

C. The strength of the covalent bonds

D. The shape of the compound

a teacher measures the mass of some powdered copper in an open porcelain dish. The combined mass of the dish and copper was 105g. The teacher heated the powdered copper which was exposed to the air in the room (an open system). The copper turned black and the students smelled something as the copper burned. When measured after heating, the mass is the dish was 108g.

What happened

Answers

The copper turned black and the students smelled something as the copper burned, this indicates that a chemical change took place where in copper reacted with oxygen leading to increase in mass.

What is a chemical change?

Chemical changes are defined as changes which occur when a substance combines with another substance to form a new substance.Alternatively, when a substance breaks down or decomposes to give new substances it is also considered to be a chemical change.

There are several characteristics of chemical changes like change in color, change in state , change in odor and change in composition . During chemical change there is also formation of precipitate an insoluble mass of substance or even evolution of gases.

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