How would an inorganic chemist work to address concerns about air pollution?

Answers

Answer 1
 The analytical chemistry of natural and waste waters requires subtle correlation
Answer 2
Final answer:

An inorganic chemist can tackle air pollution via technological innovation like automobile catalytic converters, understanding the chemical behaviors of pollutants, and participate in policy-making to balance environmental and economic concerns.

Explanation:

An inorganic chemist could address concerns about air pollution in various ways, primarily through technological and chemical advancements. For instance, they research and develop devices to reduce air pollution, such as automobile catalytic converters. These devices reduce toxic emissions by using a specially selected blend of catalytically active metals, promoting complete combustion of all carbon-containing compounds to carbon dioxide and reducing nitrogen oxides' output. This process involves both adding and removing oxygen at different stages.

Additionally, they can work to understand the chemical behaviors and effects of pollutants. An example would be how sulfur dioxide interacts with calcium carbonate in a polluted environment, causing it to degenerate rapidly. The understanding of such interactions helps in the development of effective abatement strategies.

Finally, inorganic chemists may also contribute to policy-making by determining the environmental social costs of pollution, helping strike a balance between production and environmental quality. They can work on formulating market-oriented strategies for pollution control as a more flexible and economical alternative to government-imposed emission restrictions.

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Related Questions

Which best explains why collective bargaining increases the bargaining power of workers?

Answers

In the above question, options are not given so the answer has been generalized.

Collective bargaining power gives rights to the workers to put their demands in front of employer in a better way. It puts the workers and employers on the same level.
Collective bargaining increases the power of bargaining of workers. If the workers and employers have agreed on a collective bargaining on mandatory subjects then it is unfair for the employer to refuse. 

The answer to this question is It's difficult for employers to replace their entire work force.

Sodium, a group 1 element with an electron configuration of 1s22s23s1, will form a _____ ion in a chemical bond ?

Answers

Sodium loses an electron, so it forms a positive ion

In the water cycle, which state of matter has the particles closest together? solid liquid gas plasma

Answers

The state of matter in which particles are closest together is a solid. This is most easily described by thinking of it in terms of the solid being formed into a particular fixed shape, made possible by the fact the particles are packed tightly, whereas say, a liquid, has loosely packed particles and is free to flow and move (even looser in the case of gases and plasmas)

Answer:

solid

Explanation:

A student has two substances at a lab table. One substance is iron pyrite (fool's gold) and the other is real gold. After placing a 20.0-gram sample of iron pyrite into 40.0 mL of water in a graduated cylinder, it displaces 4.0 mL of water. The density of real gold is almost 4 times larger than iron pyrite. If a 20.0-gram sample of real gold is placed into the same amount of water, approximately how much water will be displaced?
A) 1 mL
B) 4 mL
C) 16 mL
D) 20 mL

Answers

The answer is A) 1 mL 

Answer:The correct answer is option A.

Explanation

Mass of the iron pyrite= 20 grams

Volume water displaced by the iron pyrite = 4 mL

Density of iron pyrite=[tex]d_i=\frac{Mass}{Volume}=\frac{20 g}{4 mL}=5 g/mL[/tex]

[tex]d_g=4\times d_i[/tex](Given)

[tex]d_g=4\times 5 g/mL=20 g/mL[/tex]

Mass of gold = 20 g

Volume of water displaced by the 20 grams of water = V

[tex]D_g=20 g/mL=\frac{20 g}{V}[/tex]

V = 1 mL

20 grams of gold will displace 1 ml of water.So, the correct answer is option A.

Light travels in _______.
A.
circles
B.
waves
C.
electricity
D.
opaque objects

Answers

should be C. I think

When preparing dilute solutions of an acid, carefully pour -
a. both liquids at once
b. the acid into the container
c. the acid into the water
d. water into the acid?

Answers

When preparing dilute solutions of an acid water is poured into the acid.

Thus the answer is D.

When preparing dilute solutions of acid, carefully pour the acid into the water.

Explanation:

Acid is a chemical substance that gives hydronium ions in their aqueous solution.

[tex]HA(s)+H_2O(l)\rightarrow H_3O^+(aq)+A^-(aq)[/tex]

Their aqueous solution tastes sour.They are used to neutralize the alkali solution. Like hydrochloric acid neutralizes sodium hydroxide to give sodium chloride and water as a product.The acid solution with a larger amount of acid in its solution is considered a concentrated acid solution.The acid solution with a smaller amount of acid in its solution is considered a dilute acid solution.The concentrated acid solution can be changed into a dilute acid solution by adding the concentrated acid solution in water slowly and with constant stirring.Do not add water in concentrated acid solution as water and acid reacts vigorously which can cause water to boil and acid to splash.

So, from this, we conclude that when preparing dilute solutions of acid, carefully pour the acid into the water.

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How many orbitals are possible in the third energy level?

Answers

There are 9 orbitals in the third energy level. 

In the reaction B + KL + H, if an additional B is added, the result will be _____.

more K will be produced
more L will be required
the reaction will slow down
more L and H will be produced

Answers

The answer is D.
more L and H will be produced

Answer is: more L and H will be produced.

Balanced chemical reaction: B + K → L + H.

According to Le Chatelier's Principle, the position of equilibrium moves to counteract the change.

The position of equilibrium will move so that the concentration of B decreases again, by reacting more and produce L and H, reaction is going to be more in forward direction.

What is a double bond?

Question 4 options:

two covalent bonds between adjacent molecules

a total of two covalent bonds in a molecule

two covalent bonds between adjacent atoms in a molecule

a total of two covalent bonds between molecules

Answers



If we look at a Lewis structure of ethane, we can see that it looks like this

H H
I I
C = C
I I
H H

Now this is 1 molecule of ethene, but it has multiple bonds that total more than 2. So, this dispels options answers 2 and 4. When we look at bonds, we rarely look in terms of totals.

Now, it can’t be answer 1, because molecules don’t bond together. They can stick together and pack themselves in more densely, but they NEVER bond. At that point you’re creating a brand new molecule.

The answer, then, is 3, because looking at this Lewis structure, we can see 1 double bond between the two atoms of Carbon.

The answer is A

Two covalent bonds between adjacent molecules

Hope it helps you

Use the periodic table to answer this question: are the properties of rubidium (rb) more similar to cesium (cs) or those of strontium (sr)

Answers

cesium
they are in the same group

What did Dmitri Mendeleev contribute to science

Answers

Mendeleev created the Periodic Table of the Elements, one of the most fundamental parts of science. 

He arranged the first periodic table?

How do the names of covalent compounds differ from the names of ionic compounds?

Answers

Covalent bonds are named by using prefixes that give the number of atoms of each element in the compound. Ionic compounds are named by replacing the ending of the nonmetal with ate or ite. 6.

plz brain list me 5 star me thank me but thank you

The names of ionic compounds have special endings for the second element or ion while the name of covalent compounds depends on the subscript of each of the elements in the compound.

Ionic compounds are usually made up of a cation and an anion. There is no special ending in the name of the cation but certain suffixes are used for the second element or ion in an ionic compound.

For instance, the second element in most ionic compounds have the ending "-ide". Typical examples are sodium oxide, magnesium nitride and calcium phosphide.

In naming covalent molecules, we need to be sure that the subscripts of the molecules are duly indicated. For instance, N2O5 is dinitrogen pentaoxide.

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List the sub-atomic particles in the order in which they were discovered and tell who discovered each one.

Answers

Photons were the first sub-atomic particles detected, but not quite discovered as they could not be explained. Photons were first detected by Johann Wilhelm Ritter, Victor Schumann, and Winhelm Rontgen. The next, and first sub-atomic particle discovered, was the electron. The electron was discovered by J. J. Thompson in the late 1800s. The next two sub-atomic particle discoveries were the alpha particle and photon, discovered by Ernest Rutherford and Paul Villard respectively. Rutherford also discovered the proton and in 1932, James Chadwick discovered the neutron.

The wavelength of the characteristic, bright yellow-orange flame test color of sodium is 590 nm. Calculate the average energy (ΔE) associated with this atomic emission line.

Answers

The energy associated with the 590nm atomic emission line is 3.369 x 10^49 Joules. This can be determined by multiplying Plank’s constant (6.626 x 10^34 Js) by the speed of light (3x 10^8 m/s), and then dividing the result by the wavelength (590 x 10^-9 m).

Final answer:

The average energy associated with the atomic emission line of sodium with a wavelength of 590 nm is calculated using Planck's equation, resulting in an energy of approximately 3.37×10-19 Joules per photon.

Explanation:

The question asks for the calculation of the average energy (ΔE) associated with the atomic emission line of sodium, which has a wavelength of 590 nm. To calculate this, we use the Planck's equation ΔE = h⋅c / λ, where h is Planck's constant (6.626×10-34 J⋅s), c is the speed of light in a vacuum (3.00×108 m/s), and λ is the wavelength in meters.

To convert the wavelength from nanometers to meters, we use the conversion 590 nm = 590 × 10-9 m. Substituting the values into the equation gives us ΔE = (6.626×10-34 J⋅s) ⋅ (3.00×108 m/s) / (590×10-9 m), which calculates to an energy of about 3.37×10-19 Joules per photon.

Why the atomic mass of the copper is not exactly equal to 64

Answers

Because Copper has isotopes. All Coper atoms have the same number of protons, but not all of them have the same number of neutrons. The ones with different numbers of neutrons are  also known as isotopes

Why is a neutral iron atom a different element than a neutral carbon atom?

Answers

Atomic number. In all atoms the distinct properties of that atom are a result of the number of protons that atom is composed of. A carbon atom has six protons, while an iron atom has 26.

An atom of aluminum has 13 protons and 14 neutrons. what is the atomic mass

Answers

A=P +N
A=13+14
A=27 this the answer

The atomic mass of the atom of aluminum having 13 protons and 14 neutrons is 27

How to determine the atomic mass?

Atomic mass of an atom is simply defined as the sum of the protons and neutron in the nucleus of an atom i.e

Atomic mass = proton + neutron

Now, we shall obtain the atomic mass of the atom of aluminum. Details below:

Number of protons = 13Number of neutrons = 14 Atomic mass =?

Atomic mass = proton + neutron

= 13 + 14

= 27

Thus, we can conclude that the atomic mass of the atom of aluminum is 27

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If cacl2 is dissolved in water, what can be said about the concentration of the ca2+ ion? hints if is dissolved in water, what can be said about the concentration of the ion? it has the same concentration as the cl− ion. its concentration is half that of the cl− ion. its concentration is twice that of the cl− ion. its concentration is one-third that of the cl− ion.

Answers

The answer to this question would be: its concentration is half that of the cl− ion.

When CaCl2 molecule dissolved, it will split into one Ca2+ ion and two Cl- ion. That means for every 1 CaCl2 there will be 3 ions formed. In this case, the amount of Ca2+ should be half of Cl- ion. An element with higher valence tends to have less atom in a molecule than an element with lesser valence electron.

When an atom completely gives up its valence electrons to another atom, they form a bond that is considered to be?

Answers

this is most likely to be a purely ionic bond

Answer: ions

Explanation:

Pellets of calcium chloride are spread on a sidewalk covered in water that is 36°C. Under which circumstance will the calcium chloride dissolve faster?

Answers

People walking on the sidewalk crushthe calcium chloride pellets.

Answer:

In case if the pellets of the calcium chloride gets crushed.

Explanation:

When the pellets of calcium chloride get crushed it enhances the surface area of the compound. With the increase in surface area, the number of collisions in between the molecules of reactants increases. In the given case, the reactant molecules are water molecules and calcium chloride ions. In the procedure of dissolution, the calcium chloride ions get hydrated by the water molecules dipoles. As the frequency of the collision enhances, the activation energy gets lowered in order to begin the reaction.

Gold has a molar mass of 197 g/mol. (a) how many moles of gold are in a 3.98 g sample of pure gold? (b) how many atoms are in the sample?

Answers

A.)49.4974874 moles or 49.5 moles
B.)2.980808730172671e+25 or 3e+25

Jesse travels 3.0 meters east and then turns and travels 4.0 meters north. What distance did Jesse travel? 1 m 5 m, northeast 7 m 7 m, northeast

Answers

Answer : The correct option is, 7 m

Explanation :

Distance : It is defined as the how much distance is covered by an object during the motion. It is a scalar quantity that means it does not depends on the direction.

Displacement : It is defined as the change in the position of an object. It is a vector quantity that means it has magnitude and as well as direction.

According to the question,

The distance traveled by jesse towards east = 3.0 m

The distance traveled by jesse towards north = 4.0 m

The total distance traveled by jesse = 3.0 m + 4.0 m = 7.0 m

Hence, the distance traveled by jesse is, 7 m

why does your reflection in a mirror look different from your reflection in wood

Answers

The surface of a mirror is smoothly and therefore the rays of light are reflected with the same angle they hit the surface. The surface of a piece of wood on the other hand has a lot of microscopical imperfections and hence the rays of light are reflected in multiple directions.

Final answer:

The reflection in a mirror looks different from the reflection in wood because mirrors have smooth surfaces that reflect light at specific angles, while wood and other rough surfaces diffuse and reflect light in many different directions.

Explanation:

When we look at our reflection in a mirror, we see a clear and accurate representation of ourselves because mirrors have smooth surfaces that reflect light at specific angles. On the other hand, when we look at our reflection in wood or other rough surfaces, the light gets diffused and reflected in many different directions, causing distortions and a less accurate reflection.

Calcium chloride contains calcium and chloride ions. write the ground-state electron configuration for the chlorine ion.

Answers

The electron configuration of an atom of Chlorine Cl (neutral Chlorine) is:

1s2 2s2 2p6 3s2 3p5

 

Now if the Chlorine becomes an ion, it becomes Cl-. So we can see that 1 electron is added therefore the new electron configuration is:

1s2 2s2 2p6 3s2 3p6

Define and then describe the difference between a polar covalent bond, nonpolar covalent bond and ionic bond.

Answers

Polar covalent bond-  a bond where atoms are unevenly shared due to a larger difference in electronegativity of the bonded elements.

Non-polar covalent bond- These are bonds between elements with a low difference in electronegativity. Electrons are shared equally in these bonds between the elements.

Ionic bonds- have such  large difference in electronegativity that they take/give electrons to the element they are bonded to. They do not share electrons at all. Bonds between a non-metal and a metal.

Why is gunshot residue important for a forensic scientist? What are the potential complications with this type of evidence?

Answers

A residue from a gunshot is most likely gun powder, which tells you what kind of bullet was shot and the type of gun that was used to shoot the target/victim/person. Some complications may be that there is more than one gun or weapon which uses that residue, so it may be hard to pinpoint it and the bullet can't really tell you who it is unless there's DNA on the bullet, and the chemicals of the bullet may even destroy evidence.

Answer 1: A gun shot residue is the powdery discharge that release after the firing process of the firearm. The powdery discharge consists of unburnt or partially burnt primer, propellants, fragments of the projectiles, cartilage cases  and residues present inside the firearm.

It is important for the forensic scientists so as to detect the culprit as these residues are left on the clothes and hands after firing. It can be used to identify the direction and distance of firing.

Answer 2: The complications associated with gunshot residue are:

1. The particles are very small and may exhibit low density they are likely to blow by wind so they may not be found at some crime scene.

2. As the powdery discharge consists of explosive particles in small amounts but on testing can explode and can cause harm.

Do you know how to do this? if you have 4 grams of carbon-14, how much carbon 14 remains after 11,460 years? the half life is 5,730 years.

Answers

Carbon dating has given archeologists a more accurate method by which they can determine the age of ancient artifacts. The halflife of carbon 14 is 5730 ± 30 years, and the method of dating lies in trying to determine how much carbon 14 (the radioactive isotope of carbon) is present in the artifact and comparing it to levels

How many grams of h2 are needed to react with 48 grams of o2, given the reaction: 2 h2 (g) + o2 (g) --> 2 h2o (l)?

Answers

1.Calculate the number of mole of O2: 48/32=1.5 mol
2.Calculate the number of mole of H2 by mole ratio: 1.5 x 1/2=0.75 mol
3.Calculate the answer:
0.75 x 2=1.5g
Final answer:

The stoichiometric equation shows that 2 moles of H2 react with 1 mole of O2. In this scenario, 48 grams of O2 is equivalent to 1.5 moles. Therefore, 1.5 moles of O2 would react with 3 moles of H2, which is equivalent to 6 grams.

Explanation:

To solve this question, we must first understand the stoichiometric relationship that exists between H2 and O2 according to the given equation: 2 H2 (g) + O2 (g) --> 2 H2O (l). What this equation shows is that 2 moles of H2 react with 1 mole of O2.

Next, we must convert grams of O2 to moles, using its molar mass. The molar mass of O2 is 32 g/mol, so 48 grams of O2 is equivalent to 48 g / 32 g/mol = 1.5 mol.

Then we use the stoichiometric relationship to calculate the moles of H2 needed. As per the reaction, 1 mole of O2 reacts with 2 moles of H2, hence 1.5 moles of O2 would react with 2*1.5 = 3 moles of H2. Finally, convert the moles of H2 to grams, using its molar mass (2 g/mol). So, 3 mol * 2 g/mol = 6 g. Therefore, 6 grams of H2 are needed to react with 48 grams of O2.

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Nic bought 12 pens for 2$ each and 12pads of paper for 3$ each. Write two expressions for how nic could calculate his total.Write one expression in expanded form and one in factored form.

Answers

12 pens for writing chemical formulas cost
12*2=24 dollars
12 pads cost
12*3=36 dollars
1)
12*2=24
12*3=36
2)
12*2+12*3=60 dollars
3) 12*(3+5)=60 dollars

WILL MARK AS BRAINLIEST
Name the following ionic compounds.

Answers

1) Magnesium Chloride 
2) Sodium Bromide 
3) Magnesium Oxide
4) Nickel (III) Fluoride 
5) Aluminum Chloride
6) Rubidium Sulfide
7) Gallium Nitride
8) Calcium Sulfide
9) Lead (IV) Oxide
10) Cobalt (II) Oxide
11) Beryllium Sulfide
12) Cesium Nitride
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