Example: PuC2Prunium corninePrunium cornide

Name these Ionic Compounds using the “Periodic Table of Food”:
2. BPo
3. Bl2Tu
4. Cr2Sn
5. LiSr2
6. Or3Ba2

Example: PuC2Prunium CorninePrunium CornideName These Ionic Compounds Using The Periodic Table Of Food:2.

Answers

Answer 1
The "Periodic Table of Food" is not a recognized naming convention for chemical compounds. However, assuming you meant to write the chemical formulas of the compounds, their names using the conventional nomenclature are:

BPo - This is an invalid chemical formula as the element symbol "Po" does not exist. If you meant "Po" as "Poison", it is still an invalid chemical formula as "Poison" is not a recognized symbol for any element.
Bl2Tu - This is an invalid chemical formula as the element symbols "Bl" and "Tu" do not exist. If you meant "Bl" as "Blue" and "Tu" as "Tuna", it is still an invalid chemical formula as "Blue" and "Tuna" are not recognized symbols for any element.
Cr2Sn - Chromium(II) stannide
LiSr2 - Lithium strontium diide
Or3Ba2 - Oregano barium triide
Answer 2
Using the periodic table to guide you, predict the chemical formula and name of the compound formed by the following elements: (c) Al and I

Related Questions

WILL GIVE BRAINLIEST!! PLS HELP!!!

Answers

Answer:

Thermal energy is the sum of the kinetic and potential energy of all the atoms in an object or substance.

(This statement is true for ideal gases, but for solids and liquids, thermal energy also includes the energy associated with intermolecular forces.)

Carbon NMR spectroscopy produces a spectrum of Choose... The number of carbon signals in the spectrum corre only carbon-13 nuclei only carbon-12 nuclei Choose.. in the mol all carbon nuclei In most carbon NMR spectra, the carbon signals appear as Choose... in a sample Carbon NMR spectroscopy produces a spectrum of Choose.. The number of carbon signals in the spectrum corresponds to the number of ✓ Choose... in the molecule. all the carbons unique carbon environments signals appear as Choose... symmetrical carbon environments in a sample Carbon NMR spectroscopy produces a spectrum of Choose... The number of carbon signals in the spectrum corresponds to the number of Choose... in the molecule. In most carbon NMR spectra, the carbon signals appear as Choose... quartet peaks doublet peaks singlet peaks Consider the structure of toluene. CHE peaks. The methyl peak will appear The carbon NMR of toluene should have v Choose... 5 Choose... the carbon 7 3 4 Consider the structure of toluene. CH3 peaks. The methyl peak will appear The carbon NMR of toluene should have Choose... Choose... the carbons of the ring. further upfield than further downfield than in a similar location as

Answers

Carbon NMR spectroscopy is a powerful analytical tool for determining the number of unique carbons present in a molecule, as well as their respective chemical environments. By analyzing the quartet, doublet, and singlet peaks, scientists can identify unique carbon environments and the associated chemical structure of the molecule.

Carbon NMR spectroscopy produces a spectrum of signals that represent the unique chemical environment of each carbon atom in a molecule. The number of carbon signals in the spectrum corresponds to the number of carbons in the molecule, meaning all carbons will be detected in the NMR spectrum. In most carbon NMR spectra, the carbon signals appear as quartet, doublet, and singlet peaks, each of which represent different types of carbon environments.

For example, consider the structure of toluene. CH3 peaks. The methyl peak will appear further upfield than the carbons of the ring. This is because the methyl group has a more electronegative environment than the ring carbons due to the three hydrogens that are attached to the carbon, resulting in a higher electron density. As a result, the methyl peak will appear further upfield than the carbons of the ring.

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What is the mass of a 12. 56L sample of carbon dioxide?

Answers

The mass of a 12.56 L sample of carbon dioxide at STP is approximately 21.94 grams.

To determine the mass of a 12.56 L sample of carbon dioxide, we need to know the pressure and temperature of the gas. This is because the density of a gas, and therefore its mass, depends on these factors.

Assuming standard temperature and pressure (STP), which is 0°C (273.15 K) and 1 atm (101.3 kPa), we can use the ideal gas law to calculate the mass of the carbon dioxide:

PV = nRT

where:

P = pressure = 1 atm

V = volume = 12.56 L

n = number of moles of gas

R = gas constant = 0.08206 L·atm/mol·K

T = temperature = 273.15 K

Solving for n, we get:

n = PV/RT = (1 atm)(12.56 L)/(0.08206 L·atm/mol·K)(273.15 K) = 0.499 mol

The molar mass of carbon dioxide (CO2) is 44.01 g/mol, so the mass of 0.499 mol of CO2 is:

mass = n × molar mass = 0.499 mol × 44.01 g/mol

= 21.94 g

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18. n 1869, Russian chemist Dimitri Mendeleev proposed arranging the known elements by
atomic weights and properties in 17 columns with two partial periods of seven elements
each followed by two nearly complete periods. Rayleigh and Ramsey improved the
periodic table by discovering the inert gases. In 1911, Henry Moseley subjected elements
to x-rays and was able to derive the relationship between x-ray frequency and number of
protons. When Moseley arranged the elements according to increasing atomic numbers
and not atomic masses, some inconsistencies associated with Mendeleev's table were
eliminated. The modern periodic table is based on Moseley's Periodic Law.
How do the scientists Mendeleev and Moseley differ on their arrangement for the periodic
table? (1 point)
O Their periodic table was arranged the same.
Moseley arranged the elements based on atomic masses while Mendeleev arranged
the elements based on atomic number.
Moseley arranged the elements based on the number of protons while Mendeleev
arranged the elements based on x-ray frequency.
Moseley arranged the elements based on atomic numbers while Mendeleev arranged
the elements based on atomic masses.

Answers

Answer:

Explanation:

The molar mass of copper (II) nitrate is 187.5 g/mol.

Question 4

How many oxygen atoms are in the compound Sr(OH)2


Question 4


3

1

4

2


Question 5

How many sulfur atoms are in the compound - Cr2(SO4)3


Question 5


12

3

4

2

Answers

There are 2 oxygen atoms in the compound Sr(OH)₂, and 9 sulfur atoms are in the compound Cr₂(SO₄)₃.

In the compound Sr(OH)₂, there is one strontium ion (Sr₂⁺) and two hydroxide ions (OH⁻). The formula for hydroxide ion is OH⁻, which means it contains one oxygen atom and one hydrogen atom. Therefore, there are a total of 2 oxygen atoms in the two hydroxide ions present in the compound.

In the compound Cr₂(SO₄)₃, there are two chromium ions (Cr₃⁺) and three sulfate ions (SO₄²⁻). The formula for sulfate ion is SO₄²⁻, which means it contains one sulfur atom and four oxygen atoms. Therefore, there are a total of 3 x 1 = 3 sulfur atoms present in each sulfate ion. Since there are three sulfate ions present in the compound, the total number of sulfur atoms is 3 x 3 = 9.

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

"How many oxygen atoms are in the compound Sr(OH)₂ and How many sulfur atoms are in the compound - Cr₂(SO₄)₃"--

How useful are the company's claims?

Answers

The allegations are unfounded and perhaps pseudoscientific. Because to the fact that Jewels only come into contact with the skin's surface, they are not extremely beneficial. The ions cannot enter the human body.

What significance do product promises have?

In other words, product claims might highlight practical advantages, point out emotional connections, foster trust, or even draw parallels with rival products on the market. These are a few illustrations of various product claims: manufactured using fresh produce and fruits. 100% natural.

How can Ions absorbed through our human skins?

We discovered that human skin is permeable to ions such as magnesium, calcium, sulphate, and nitrate in vitro at amounts seen in the atmospheric fallout in two separate polluted regions of Poland.

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URGENT "What is the density of H202 gas at 15 °C and 160. 20 kPa?" I need to know how to work this out and i have limited time maybe an hour

Answers

The density of H2O2 gas at 15 °C and 160. 20 kPa is given by formula PV=nRT is 236.40 g/L.

Density is defined as the mass per unit volume of a material under certain temperature and pressure conditions. The gas's density is equal to its mass divided by its volume. If the density of the gas is known, the molar mass of the material may be calculated. Temperature and pressure affect density.

we have,

Temperature = 15 = 15 + 273 = 288 K

And pressure = 160.2 KPa.

PV = nRT

PV = m/mwt x RT

pxmwt/RT = m/V

we know m/v = density

density = 160.20 x 34 / 0.08 x 288

d = 236.40 g/L

Therefore, density of H2O2 gas is 236.40 g/L.

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The Lewis dot diagram for an unidentified element is shown below.
Which element could X represent?
A. iron
B. chlorine
C. silicon
D. oxygen

Answers

Answer:

D. Oxygen.

Explanation:

What is Lewis dot diagram?

Lewis dot diagram also known as electron -dot diagram represents the number of valence electron of atoms within a molecule.

Gilbert Lewis is the creator of the Lewis dot structure.

Lewis proposed a model for the role of electrons, particularly valence electrons, in 1916. This included the creation of electron dot diagrams or Lewis structures.

Electronic configuration of oxygen is [tex]\rm \underline{ 1s^2 \: 2s^2 \: 2p^4}[/tex]

Since oxygen has six valence electrons so, six electrons are drawn around oxygen atom.

In the given question there are also 6 electrons around the element X.

Therefore, The required answer will be Oxygen.

The compound iron oxide can exist with either iron(II) ions or iron(III) ions. Conduct Internet research to learn about the differences between iron(II) oxide and iron(III) oxide. Give the chemical formula for each compound. Describe their appearance and uses. Based on your findings, are these two forms of the same compound, or are they two completely different compounds?

Answers

Chemical fοrmula οf Irοn(II) οxide is FeO and Irοn(III) οxide is Fe2O3.(FeO) is a black οr brοwn pοwder that is used as a catalyst, reducing agent, and pigment.

What are cοmpοund?

A cοmpοund is a substance made οf twο οr mοre elements that are chemically bοnded tοgether. Cοmpοunds are fοrmed when atοms οf different elements share electrοns, fοrming chemical bοnds.

It is alsο used in the manufacturing οf ferrοus allοys, steel, and glass. Irοn(III) οxide (Fe₂O₃) is alsο a black οr red pοwder, but with a different chemical cοmpοsitiοn. It is used as a pigment and abrasive in paints and cοatings, a catalyst in the synthesis οf ammοnia, and a cοlοring agent in ceramics and plastics.

These twο fοrms οf irοn οxide are nοt the same cοmpοund, as they have different chemical fοrmulas and uses.

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Compare the density values for the liquid in Part I. The actual density of our liquid is 1.50 g/mL.
Are the density measurements of the liquid precise? Explain your answer.
Are the density measurements of the liquid accurate? Explain your answer.

Answers

Comparing the density values for the liquid in Part whose actual density is 1.50 g/mL:

the density measurements of the liquid are precise because the values are close to each other.the density measurements of the liquid are not accurate as they are not close to the actual value of the density of the liquid.

What are precision and accuracy in measurements?

Precision and accuracy are two important concepts in the field of measurement.

Precision refers to how consistent or reproducible a set of measurements is under the same conditions. In other words, precision describes the degree to which repeated measurements of the same quantity give similar results.

Accuracy, on the other hand, refers to how close a measured value is to the true or accepted value of the quantity being measured. In other words, accuracy describes the degree to which a measurement is free from systematic errors or biases.

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Complete question:

The density values for the liquid in Part I are found in the table in the attached picture.

the reaction between glucose, c6h12o6, and oxygen produces carbon dioxide and water. write a balanced equation for the reaction and use it to calculate the maxium mass of water that can be produced in a reaction between 1 mol of each reactant.

Answers

The maximum mass of water that can be produced in a reaction between 1 mol of glucose and 1 mol of oxygen is 18.015 g

Let's find out step-by-step:

The balanced equation for the reaction between glucose (C₆H₁₂O₆) and oxygen (O₂) to produce carbon dioxide (CO₂) and water (H₂O) is:

C₆H₁₂O₆ + 6O₂ → 6CO₂ + 6H₂O

We first need to identify the limiting reagent to calculate the maximum mass of water produced in a reaction between 1 mol of each reactant. Since there is 1 mol of glucose and 1 mol of oxygen, we can calculate how many moles of oxygen are required for 1 mol of glucose:

1 mol C₆H₁₂O₆ × (6 mol O₂ / 1 mol C₆H₁₂O₆) = 6 mol O₂

Since we only have 1 mol of oxygen available, oxygen is the limiting reagent in this reaction. Now, we can calculate the moles of water produced based on the stoichiometry of the balanced equation:

1 mol O₂ × (6 mol H₂O / 6 mol O₂) = 1 mol H₂O

Finally, we can calculate the maximum mass of water produced by multiplying the moles of water by its molar mass (18.015 g/mol):

1 mol H₂O × 18.015 g/mol = 18.015 g

So, the maximum mass of water produced in a reaction between 1 mol of glucose and 1 mol of oxygen is 18.015 g.

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A weather forecast shows that the humidity will increase to 100% in the next couple of days. How might this affect the weather?

The air pressure will decrease. The air temperature will increase. The moisture will cause more water to evaporate. The moisture will condense into precipitation

Answers

When the humidity reaches 100%, it can lead to the moisture will condense into precipitation. Option D is correct.

When the humidity level reaches 100%, it means that the air is holding as much moisture as it can, and the air is saturated. As a result, any additional moisture that enters the air will cause condensation, which could lead to precipitation such as rain, snow, or fog.

High humidity can also make the air feel warmer than it actually is because it hinders the body's ability to cool down through sweating. Therefore, even if the air temperature does not increase, high humidity can make it feel more uncomfortable.

As for air pressure, humidity and air pressure are not directly related. However, changes in humidity can cause changes in air pressure. When water vapor condenses, it releases heat, which can cause air to rise and create low-pressure zones.

On the other hand, when water evaporates, it absorbs heat, which can cause air to sink and create high-pressure zones. Therefore, if there is enough moisture in the air to cause precipitation, it could lead to changes in air pressure.

Hence, D. The moisture will condense into precipitation is the correct option.

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

"A weather forecast shows that the humidity will increase to 100% in the next couple of days. How might this affect the weather? A) The air pressure will decrease. B) The air temperature will increase. C) The moisture will cause more water to evaporate. D) The moisture will condense into precipitation."--

How pure do you think the water that you use every day is? Explain.

Answers

Both direct and indirect uses of water are possible.While bathing, drinking, & cooking are examples of direct uses of water, indirect uses include the production of steel for automobiles and the processing of wood to manufacture paper.

What role does water play in our daily lives, in your opinion?

It's critical to drink enough water each day for your health.By staying hydrated, you can avoid being dehydrated, a condition that really can impair your memory, alter your mood, cause your system to overheat, & result in constipation & kidney stones.

What function does water serve in your day-to-day life?

Water is a crucial element of the majority all biological processes because it acts as a solvent.Using water as a solvent, food is absorbed by our bodies as solutions.Furthermore, perspiration and urine are used to eliminate several wastes as solutions.

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What is the name of the formula NI3 PO4?​

Nickel (I) phosphate
Nickel (III) Phosphate ​

Answers

Answer:

Nickel (I) Phosphate

Explanation:

PO4 is a -3 ion it will need 3 Ni(I) ion, which is -1 ion. Therefore it is Ni3PO4.

How many moles of NH3 can be produced if 1.14 moles of H2 reacts completely with nitrogen?

N2 + 3 H2 --> 2 NH3

Answers

Explanation:

The balanced equation for the reaction is:

N2 + 3 H2 → 2 NH3

From the equation, we can see that 3 moles of H2 are needed to produce 2 moles of NH3.

Therefore, if 1.14 moles of H2 reacts completely, we can calculate the moles of NH3 produced as follows:

1.14 moles H2 × (2 moles NH3 / 3 moles H2) = 0.76 moles NH3

Therefore, 0.76 moles of NH3 can be produced if 1.14 moles of H2 reacts completely with nitrogen.

suppose you have a cache of radium, which has a half-life of approximately 1590 years. how long would you have to wait for 1/5 of it to disappear? you would have to wait years for 1/5 of the radium to disappear.

Answers

You would have to wait approximately 3,180 years for 1/5 of the radium to disappear. This is because the half-life of radium is approximately 805.4 years.

Suppose you have a cache of radium, which has a half-life of approximately 1590 years.

To determine how long you would have to wait for 1/5 of the radium to disappear, you need to use the formula for radioactive decay:

A=A₀(1/2)^(t/T)

where:

A₀ = initial amount of radium

A = amount of radium remaining after t years

T = half-life of radium

Firstly, note that 1/5 of the radium has disappeared, meaning that you have 4/5 of the radium remaining.

Therefore, A=4/5 A₀

We want to find t, the time it takes for 1/5 of the radium to disappear. This means that we need to find the time it takes for A to be reduced to 1/5

A₀ (or 2/5 A).2/5 A₀=A₀(1/2)^(t/T)2/5=(1/2)^(t/1590)

Taking the logarithm of both sides, we get:

t/1590=log(2/5)/log(1/2)

Solving for t, we get:

t = 805.4 years

Therefore, you would have to wait approximately 805.4 years for 1/5 of the radium to disappear.

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A double-blind study is one in which neither the researchers nor the subjects know whether the subject is receiving the real treatment or the placebo. What is the value of this kind of study?

Answers

A kind of clinical experiment where neither the research team nor the subjects are aware of the treatment they are getting until the trial is over. As a result, the study's findings are less likely to be skewed.

Describe single-blind research. How do double-blind studies work?

Single-blind research typically involves keeping the research subject's treatment assignment a secret. In a double-blind study, the participant in the research, the investigator, the study coordinator or nurse, the study sponsor, and occasionally the data analyst are kept in the dark regarding the treatment allocation.

What is protected by a double-blind study?

As doctors assess the results of their patients, bias is avoided by double blind investigations. As a result, clinical trial outcomes have increased reliability. Your doctor may "unblind" you if you experience health issues during a trial, such as a potential drug reaction, to reveal the treatment you are receiving.

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you put 14.0 g of sodium chloride into a beaker and fill it to the 200 ml mark with deionized water. you then pour in 100.0 ml of 2.0 m silver nitrate. what mass (g) of precipitate will be produced if the reaction runs to completion?

Answers

34.21 g mass (g) of precipitate will be produced if the reaction runs to completion.

The chemical equation for the reaction between sodium chloride and silver nitrate is

[tex]NaCl + AgNO_3[/tex]→[tex]AgCl + NaNO_3[/tex]

The given amount of sodium chloride is 14.0 g

The volume of deionized water added is 200 ml

The volume of silver nitrate is 100 ml

The molarity of silver nitrate is 2.0 M

Let us first calculate the number of moles of silver nitrate that is used:2.0 M = 2.0 mol/L

Number of moles of silver nitrate used = 2.0 mol/L x 100/1000 L= 0.20 mol

Now, we can use mole-to-mole ratios to find the amount of precipitate (AgCl) that will be produced from the given amount of NaCl.

Number of moles of NaCl = 14.0 g / 58.44 g/mol = 0.239 mol

From the balanced chemical equation, we see that 1 mole of NaCl reacts with 1 mole of [tex]AgNO_3[/tex] to produce 1 mole of AgCl

Number of moles of AgCl produced = 0.239 mol

Therefore, the mass of AgCl produced is:

Mass of AgCl = 0.239 mol x 143.32 g/mol = 34.21 g

Hence, the mass of precipitate produced is 34.21 g.

Therefore, the mass of precipitate that will be produced when 14.0 g of sodium chloride is reacted with 100.0 mL of 2.0 M silver nitrate in 200 mL of deionized water is 34.21g.

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A solution is prepared by dissolving 0. 23 mol of nitrous acid and 0. 27 mol of sodium nitrite in water sufficient to yield 1. 00 L of solution. The addition of 0. 05 mol of HCl to this buffer solution causes the pH to drop slightly. The pH does not decrease drastically because the HCl reacts with the __________ present in the buffer solution. The Ka of nitrous acid is 1. 36 × 10-3. A) H2OB) H3O+C) nitrite ionD) nitrous acidE) This is a buffer solution: the pH does not change upon addition of acid or base

Answers

The pH does not decrease drastically because the HCl reacts with the  nitrite ion present in the buffer solution is: C) nitrite ion.

What is  nitrous acid (HNO2)  used for?

In this case, nitrous acid (HNO2) and sodium nitrite (NaNO2) are used to prepare the buffer solution. The nitrous acid is a weak acid, and the nitrite ion (NO2-) is its conjugate base. The presence of both the weak acid and its conjugate base makes this solution a buffer solution.

When a small amount of HCl is added to the buffer solution, it reacts with the nitrite ion present in the solution according to the following equation:

HCl + NO2- -> HNO2 + Cl-

The HCl donates a proton to the nitrite ion, forming nitrous acid and chloride ion. This reaction consumes some of the added HCl, which prevents the pH from decreasing drastically.

Therefore, the correct answer is option C) nitrite ion.

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In this equation, 2mg + o2 arrow 2mgo, what is the subscript of the oxygen molecule?

Answers

The subscript of the oxygen molecule in the equation 2Mg + O2 → 2MgO is 2.

This means that two oxygen molecules (O2) are involved in the reaction, and they combine with two magnesium atoms (2Mg) to form two magnesium oxide molecules (2MgO). The subscript "2" in front of MgO indicates that two MgO molecules are formed as a result of the reaction. The equation 2Mg + O2 → 2MgO represents a combustion reaction in which magnesium (Mg) reacts with oxygen (O2) to produce magnesium oxide (MgO). This is an example of an exothermic reaction, which releases energy in the form of heat and light.

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freshly mixed concrete is not a liquid but a slurry, a semistable mixture of solids suspended in liquid. care must be taken to prevent the material from segregating, creating nonuniform and generally unsatisfactory properties. which of the following will not cause segregation to occur?

Answers

Following things will not cause segregation to occur - By adding water slowly and evenly, controlling the slump of the concrete mixture, and limiting the travel distance from the mixing plant to the job site.

Freshly mixed concrete is not a liquid but a slurry, a semistable mixture of solids suspended in liquid. Care must be taken to prevent the material from segregating, creating nonuniform and generally unsatisfactory properties.

Adding water slowly and evenly ensures that the water does not seep away to one end of the concrete, resulting in the concrete drying in patches. A high water to cement ratio increases the slump of the concrete mixture, making it flow freely.

This makes it easier for the water to spread out evenly throughout the mix, eliminating the risk of segregation. Limiting the travel distance from the mixing plant to the job site reduces the time the concrete is exposed to wind, rain, and other external factors which can cause the water to settle unevenly, resulting in segregation.

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Students set up a controlled experiment. They put five
crickets in each of three identical containers. They set one
container to 15°C, one to 20°C, and one to 25°C. Then they
count the number of cricket chirps in each container during
1 hour.
What are two constants in this experiment?
A. The temperature of each container
B. The number of crickets in each container
C. The number of cricket chirps
D. The kind of containers used

Answers

Explanation:

Constants do not vary ..... they stay 'constant'

so  

A .....no ...different temps

B.....constant

C ......no  the # chirps vary

D.....constant

The dehydration of an alcohol is an elimination reaction. The alcohol is first protonated to give a good leaving group, then the elimination occurs. Note that the reaction is reversible and the reverse reaction is hydration of an alkene. Love Lom - Dehydration of tertiary alcohols occur the fastest, followed by secondary and primary alcohols. H con L +4,0 Select the tertiary alcohol. OH ot OD OH OH HCC CH Ondere CH OH F HOCH CH Incorrect Select the correct name for the compound, using the 1993 IUPAC naming conversion. Include the correct (E) or (2) designatio where appropriate. Use hyphens (-) not endashes (-). H3C-CH2 H H3C CH3 The name of the alkene is: SPECIAL GREEK ALPHABET

Answers

The correct name for the compound is 2-methylprop-2-ene, or 2-methylpropene. This alkene has a (E) configuration, meaning the two groups with the highest priority (the methyl group and the hydrogen atom) are on opposite sides of the double bond. The 1993 IUPAC naming convention requires the use of hyphens (-) rather than endashes (-) when specifying the location of the substituents on an alkene.



Dehydration of alcohols is an elimination reaction where a proton from the alcohol is added and a leaving group is removed. This type of reaction is reversible and the reverse reaction is hydration of an alkene. Tertiary alcohols typically undergo dehydration the fastest, followed by secondary and primary alcohols.



Overall, dehydration of alcohols is an elimination reaction which is reversible and the reverse reaction is hydration of an alkene. Tertiary alcohols typically undergo dehydration the fastest, followed by secondary and primary alcohols. The alkene product is more stable than the original alcohol due to the presence of the double bond and its ability to create a resonance structure.

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Can someone please help with this chemistry question

Answers

To calculate the molar mass of Pb(NO3)2, you need to add up the atomic masses of all the atoms in the compound, taking into account the number of each atom in the molecule.

The molecular formula of Pb(NO3)2 indicates that there is one lead atom (Pb), two nitrogen atoms (N), and six oxygen atoms (O) in the compound.

The atomic mass of lead (Pb) is 207.2 g/mol. The atomic mass of nitrogen (N) is 14.0 g/mol, and the atomic mass of oxygen (O) is 16.0 g/mol.

Therefore, the molar mass of Pb(NO3)2 can be calculated as:

Molar mass of Pb(NO3)2 = (1 x 207.2 g/mol) + (2 x 14.0 g/mol) + (6 x 16.0 g/mol)

= 207.2 g/mol + 28.0 g/mol + 96.0 g/mol

= 331.2 g/mol

Therefore, the molar mass of Pb(NO3)2 is 331.2 g/mol.

PLEASE HELP Balance this equation Fe + O2 ---> Fe2O3

Answers

Answer:

4 Fe + 3 O2 → 2 Fe2O3

Explanation:

Left side: 4 Fe, 3 o2=3x2=6 O ==> 4 Fe, 6 O

Right side: 2xFe2= 4 Fe, 2x3 o2 = 6 O ==> 4 Fe, 6 O

which statement is true of the solubility of a gas in a liquid? group of answer choices the solubility of the gas in the liquid always decreases as pressure increases. the solubility of the gas in the liquid always increases as pressure increases. the solubility of the gas in the liquid usually decreases as pressure increases. the solubility of the gas in the liquid usually increases as pressure increases.

Answers

The statement that is true of the solubility of a gas in a liquid is that "the solubility of the gas in the liquid usually increases as pressure increases".

The solubility of a gas in a liquid is the amount of gas that dissolves in a given volume of a liquid at a particular temperature and pressure. The solubility of a gas in a liquid is affected by changes in temperature, pressure, and the nature of the solvent and the solute. The solubility of a gas in a liquid is directly proportional to the partial pressure of the gas over the liquid.

Therefore, if the partial pressure of the gas above the liquid is increased, the solubility of the gas in the liquid also increases. If the partial pressure of the gas above the liquid is decreased, the solubility of the gas in the liquid also decreases. This phenomenon is known as Henry's law.

According to Henry's law, the solubility of a gas in a liquid is directly proportional to the pressure of the system. Therefore, as the pressure of the system increases, the solubility of the gas in the liquid decreases. Conversely, as the pressure of the system decreases, the solubility of the gas in the liquid increases.

To summarize, the solubility of a gas in a liquid usually increases as pressure increases. This is because the solubility of a gas in a liquid is directly proportional to the partial pressure of the gas over the liquid.

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mole to mass equation

Answers

Answer:

n (moles) = m (mass) / M (molar mass)

Explanation:

divide the mass by the molar mass, and you have your answer

2) Determine the molar mass of Gatorade, assuming the chemical formula for glucose is
C6H12O6

Answers

The molar mass of Gatorade cannot be determined just by knowing the chemical formula of glucose.

What is a Gatorade?

Gatorade is a complex mixture of water, sugars, electrolytes, and other ingredients.

Thus, the molar mass of Gatorade cannot be determined solely from the chemical formula for glucose.

The molar mass of Gatorade would need to be determined experimentally by analyzing the composition of the mixture in the laboratory.

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magnesium sulfate reacts with barium chloride according to the following balanced equation. how many moles of barium sulfate are formed from 0.0831 mol of magnesium sulfate?

Answers

Therefore, the number of moles of barium sulfate formed from 0.0831 mol of magnesium sulfate is equal to 0.0831 mol.

How does the body respond to magnesium sulphate?

By possibly inhibiting calcium-mediated contraction, reducing acetylcholine release from neuromuscular junctions, and decreasing histamine-induced airway spasm, magnesium sulphate (MgSO4) can calm smooth muscles.

The balanced chemical equation for the reaction between magnesium sulfate and barium chloride is:

MgSO4 + BaCl2 → BaSO4 + MgCl2

According to the equation, one mole of magnesium sulfate (MgSO4) reacts with one mole of barium chloride (BaCl2) to produce one mole of barium sulfate (BaSO4).

So, 0.0831 mol of magnesium sulfate will produce 0.0831 mol of barium sulfate.

This is because the stoichiometric ratio of magnesium sulfate to barium sulfate is 1:1, which means that for every mole of magnesium sulfate that reacts, one mole of barium sulfate is produced.

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2. Substitution reactions can require a catalyst to be feasible. The reaction represented by the

following equation is heated to maximize the percent yield.

C2H6(8) + Cl2(g) + energy c HCl(l) + HCI()

a. Should a high or low temperature be maintained?

b. Should a high or low pressure be used?

c. Should the HCl gas be allowed to escape into another container?

Answers

Substitution reactions can require a catalyst to be feasible. (a). A high temperature should be maintained in order to maximize the percent yield of the substitution reaction.; (b). A high pressure should be used in order to maximize the percent yield of the substitution reaction. ; The HCl gas should not be allowed to escape into another container

The reaction represented by the following equation is heated to maximize the percent yield.  

C2H6(8) + Cl2(g) + energy c HCl(l) + HCI()

a. To maximise the percent yield of the substitution reaction, a high temperature should be maintained. This is because increasing the temperature increases the kinetic energy of the molecules, allowing them to move faster and collide more frequently. This leads to an increased rate of reaction and a higher percent yield.

b. To maximise the percent yield of the substitution reaction, use a high pressure. This is because increasing the pressure increases the concentration of the reactants, which leads to more frequent collisions between the molecules and an increased rate of reaction.

c. Allowing the HCl gas to escape into another container is not permitted. This is because the HCl gas is a product of the reaction and removing it from the reaction vessel will decrease the yield of the reaction. Instead, the HCl gas should be kept in the same container as the reactants in order to maximize the percent yield of the substitution reaction.

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