Which of the following pollutants could be reduced through proper maintenance and area ventilation to improve human health?
Asbestos
Chimney soot
Formaldehyde
Natural pesticides

Answers

Answer 1

Answer:

Chimney soot

Explanation:

The periodicity of chimney used in homes is very highly harmful to human health. If proper maintenance and cleanliness and ventilation are taken care of on such organic compounds, it can also control human health. Carbon compounds form chimneys are highly harmful to human health if timber or coal-fired black chimney soot can be disposed of from time to time and with constant maintenance we can control pollution.

Related Questions

Which of the following is an example of ionization of an acid?
O NH3(g) + H2O(1)
→ NH4+(aq) + OH (aq)
None are correct
NaCl(aq) + AgNO3(aq)
→ AgCl(s) + NaN Na(aq)
HF(aq) + H2O(1)
→ H3O+(aq) + F (aq)
Au(NO3)3(aq) + Cu(s)
→ Au(s) + Cu(NO3)2(aq)

Answers

Answer:

NH3(g) + H2O(1) → NH4+(aq) + OH (aq)

HF(aq) + H2O(1) → H3O+(aq) + F (aq)

Explanation:

Acid-base reactions are chemical reactions involving acids and bases. Acids tend to ionize/dissociate in water, a property which determines their strength. Ionization of an acid refers to the acid losing its hydrogen ion (H+) in water solution. An acid ionizes or dissociates to form a conjugate base.

A strong acid is so because it ionizes completely in water i.e. loses all its hydrogen ion (H+) while a weak acid partially ionizes in water.

In the chemical reactions;

1) NH3(g) + H2O(1) → NH4+(aq) + OH (aq)

H20 loses its hydrogen ion (H+) in this reaction to form an anion (OH-). Hence, water (H20) is an acid in this case which ionizes to form a conjugate base (OH-). This is an example of ionization of acid.

2) HF(aq) + H2O(1) → H3O+(aq) + F (aq)

Hydrogen fluoride (HF) loses its hydrogen ion (H+) in the presence of water to form anion (F-). The HF is the acid while F- is it's conjugate base. Thus, an example of ionization of acid

which of the following shows how rate depends on concentrations of reactants?

Answers

Answer:

option c

Explanation:

Rate = k(A)¹(B)²

Answer:

c

Explanation:

a p e xxxxxxxxx

If an atom of rubidium (Rb) were to ionize, it would ______ ______ electron(s).

Answers

Pretty sure it would lose electrons.

If an atom of rubidium (R b) were to ionize, it would loose electron(s).

What do you mean by ionization of atom ?

Ionization is the process by which an atom or a molecule acquires a negative or positive charge by gaining or losing electrons,.

Ionization is when a neutral atom or molecule can be converted into electrically charged atoms by gaining or losing a free electron.

Ionization happens during the process of a chemical reaction. To ionize an atom or a molecule, either loses or gains electrons―the electron which is either gained or lost forms an ion. 

Therefore ,if an atom of rubidium (R b) were to ionize, it would loose electron(s).

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substitution reaction always produce two products. The first is organic and the other is (________). ​

Answers

Answer:

nucleophilic

Explanation:

Answer:

I think its nucleophilic.

Explanation:

can you help me understand this ? I completely dont understand it ​. i know the tire will burst.

Answers

Answer:

There is only one formula to use and we should assume ideal gas. This equation is: PV=nRT. For the following questions manipulate this equation to get the answer.

1. n = PV/RT = (249*1000 Pa)(15.6 L)(1 m^3/1000 L)/(8.314 Pa-m^3/mol-K))(21+273) = 1.59 mol

2. P = nRT/V = (1.59)(8.314)(51+273)/(15.6/1000)(1000) = 274.55 kPa

3. Since the answer in #2 is more than 269 kPa, then the tires will likely burst. 4. Reduce pressure way below the limit 269 kPa.

Explanation:

Answer:

There is only one formula to use and we should assume ideal gas. This equation is: PV=nRT. For the following questions manipulate this equation to get the answer.

1. n = PV/RT = (249*1000 Pa)(15.6 L)(1 m^3/1000 L)/(8.314 Pa-m^3/mol-K))(21+273) = 1.59 mol

2. P = nRT/V = (1.59)(8.314)(51+273)/(15.6/1000)(1000) = 274.55 kPa

3. Since the answer in #2 is more than 269 kPa, then the tires will likely burst. 4. Reduce pressure way below the limit 269 kPa.

Explanation:

Why is warm honey easier to pour than cold honey?

A) Increasing the temperature breaks the molecules down into atoms, which are smaller.

B) Increasing the temperature increases the kinetic energy of the molecules, which makes it easier to overcome the attractive forces between molecules.

C) Increasing the temperature converts the sugars into water, which flows easier.

D) Increasing the temperature makes the honey more viscous.

Answers

C

Explanation:

Warm honey is easier to pour because the molecules or what we call as atoms are tightly packed in solids and when solids convert into liquid they flow easily.I HOPE YOU MIGHT FIND THIS VERY HELPFULLWITH LOVE FAULTYDEVILLOVE YA......

warm honey easier to pour than cold honey due to Increasing the temperature converts the sugars into water, which flows easier.

What are the components of honey ?

Honey contains sugar,  water  and other ingredients, where Sugar gives  gives sweetness, water maintain fluidity, and other components are present in a least amount and the differences are the color, aroma and taste.

Three types of sugar such as fructose (41%), grape sugar  or glucose about 34%  and sucrose contain 1 and 2%, other components include  minerals, proteins, acids and undetermined matter.

Minerals constitute 3.68%, increase the value of honey for human consumption and the most common minerals are potassium, chlorine, sulfur, calcium, sodium, phosphorus, magnesium, silicon, iron, manganese and copper.

Proteins are collected from nectar and pollen  which is the integral parts of plants, acids are also the component,  vitamn C and some B complex vitamins  such as riboflavin, pantothenic acid, pyridoxine, biotin, nicotinic acid are present.

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To what volume will a 2.33 L sample of gas expand if it is heated from 10.0°C to 100.0°C? Group of answer choices 0.233 L 4.41 L 23.3 L 3.76 L 3.07 L

Answers

Answer:

3.07 L

Explanation:

This question describes Charles law, which shows the direct relationship of the absolute temperature to its volume when the pressure is kept constant. The Charles' law equation is:

V1/T1 = V2/T2

Where; V1 is the volume of the gas at an initial state

V2 is the volume of the gas at a final state

T1 is the absolute temperature of the gas at an initial state

T2 is the absolute temperature of the gas at a final state.

According to the question, V1 = 2.33L, V2 = ?, T1 = 10°C, T2 = 100°C

The absolute temperature unit, which is Kelvin, need to be used. Hence, we convert °C to Kelvin using:

T(K) = T(°C) + 273.15

T1 (K) = 10°C + 273.15 = 283.15K

T2 (K) = 100°C + 273.15 = 373.15K

To solve for V2 in the above Charles law equation, we make V2 the subject of the formula by saying:

V2 = V1 × T2 / T1

V2 = 2.33 × 373.15 / 283.15

V2 = 869.4395/ 283.15

V2 = 3.0705

Hence, the gas will be expanded to a volume of 3.07L when heated from 10.0°C to 100.0°C.

Which atomic model shows the atom as a positively charged sphere with negatively charged electrons spread throughout
it?
A. Dalton's model
B. Thompson's model
C. Bohr's model
D. None of these

Answers

Answer:

B) Thomson's Model

Explanation:

Dalton's Model simply consisted of small spheres that represented atoms, and Bohr's model had a nucleus in the center with electrons orbiting in strict orbits, not randomly spread throughout. Thomson's plum pudding model, however, had an overall positively charged atom with many electrons spread throughout. If you search up "Plum Pudding Model" you can visually understand this.

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+
For the reaction Pb(NO3)2 + 2KI Pbl2 + 2KNO3, how many moles of lead iodide are
produced from 237.1 g of potassium iodide?
Select one:
O a. 0.714
Ob. 5.47e4
O c. 1.54
Od 1.54

Answers

Answer: 0.714 moles of [tex]PbI_2[/tex] will be produced from 237.1 g of potassium iodide

Explanation:

To calculate the moles :

[tex]\text{Moles of solute}=\frac{\text{given mass}}{\text{Molar Mass}}[/tex]    

[tex]\text{Moles of potassium iodide}=\frac{237.1g}{166g/mol}=1.428moles[/tex]

The balanced chemical reaction is:

[tex]Pb(NO_3)_2+2KI\rightarrow PbI_2+2KNO_3[/tex]

According to stoichiometry :

2 moles of [tex]KI[/tex] produce =  1 mole of [tex]PbI_2[/tex]

Thus moles of [tex]KI[/tex] will require=[tex]\frac{1}{2}\times 1.428=0.714moles[/tex]  of [tex]PbI_2[/tex]

Thus 0.714 moles of [tex]PbI_2[/tex] will be produced from 237.1 g of potassium iodide

The correct awnser is A- 0.174


What is a common misconception about not following food regulations?

Answers

Explanation:

Most Americans have encountered some bacteria at some point in their lives, whether it was acquired from restaurant food or a grocery store, which caused them to claim they later had food poisoning. There are multiple nasty bacteria that can cause this, and there are many misconceptions about how they end up in our food, and what the best ways to avoid them are. To be forewarned is to be forearmed, so here are several misconceptions about food safety and the practices involved that can leave us satisfied, or ruin our day with stomach churning nastiness.

Answer:it decreases customer satisfaction

Explanation:

Which factor influences the mass movement of particles?

O wind blowing across a body of water

O addition of vegetation to a slope

O large rocks and debris on a slope

O puddle of water resting on flat land​

Answers

Answer: large rocks and debris on a slope

Explanation: Mass movement can simply be explained as the flow of earth materials down a slope. Movement of these materials such as rock particles , debris and soils are aid by the steepness of the slope or topography, wind or water moving down a slope at high speed and gravitational influence causing these particles to move down slope in the form of creep, landslide, slump or mudflow. When the slopes are covered with large rocks and debris, the occurrence of mass movement becomes imminent as these particles becomes unstable at slopes. Other influencing factor may include the movement of heavy wind or water down a slope or hill.

C large rocks and debris on a slope

what is ionic and covalent

Answers

Answer:

The two most basic types of bonds are characterized as either ionic or covalent. In ionic bonding, atoms transfer electrons to each other. ... In short, atoms with the same electronegativity share electrons in covalent bonds, because neither atom preferentially attracts or repels the shared electrons.

Hope this helps.....

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An ionic bond is the strong electrostatic force of attraction between two oppositely charged ions of elements with significantly different electronegativities. This usually occurs between a metal and a non metal, although some ionic substances can have covalent character (polar covalent bonds) due to the high polarising power of the cation/the high polarisability of the anion (e.g. a large anion such as I- whose electron cloud is easily distorted) causing a pair of electrons to be drawn away from the anion and towards the middle of the cation and the anion, making the bond stronger.

A covalent bond is the strong electrostatic force of attraction between two positively charged nuclei and the shared pair of electrons between them. This usually occurs between two non metal atoms (of similar electronegativities).

Covalent bonds require more energy to break down, and are therefore stronger than ionic bonds.

Consider the following intermediate chemical equations.
2
C(s)+102(g) → CO(g)
CO(g) + 2O2(g) –> C0,00)
How will oxygen appear in the final chemical equation?
O O2(g)
as a product
O2(g)
as a reactant
O(g) as a product
20 (9) as a reactant​

Answers

Answer:

O2(g) as a product

Explanation:

took the test

The substances which appear on the left hand side of the chemical equation are called the reactants and the products are on the right hand side. Here oxygen appears as a reactant in the final equation. The correct option is B.

What is a balanced equation?

A chemical equation in which the number of atoms of reactants and products on both sides of the equation are equal is defined as the balanced chemical equation. A balanced equation obey the law of conservation of mass.

Here the given two equations are:

C (s) + 1/2 O₂(g) → CO (g)

CO (g) + 1/2 O₂(g) → CO₂ (g)

On adding the above two equations:

C (s) + O₂(g) → CO₂ (g)

So in the final chemical equation, oxygen appears on the reactant side. So oxygen is a reactant.

Thus the correct option is B.

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The given question is incomplete, most probably your full question was:

Consider the following intermediate chemical equations.

C (s) + 1/2 O₂(g) → CO (g)

CO (g) + 1/2 O₂(g) → CO₂ (g)

How will oxygen appear in the final chemical equation?

A. as a product

B. as a reactant

C. as a salt

D. as a mixture

Which of the following is one of the ending compounds during cellular respiration?

Answers

Answer:good luck!

Explanation:

Oxygen, water and ATP

Why does increasing the concentration of reactants increase the reaction rate? A. Some of the reactants are likely to act as catalysts. B. The temperature increases with higher concentrations. C. Collisions of the right energy are more likely. D. Increasing the concentration changes the rate constant

Answers

Answer:

C. Collisions of the right energy are more likely.

Explanation:

By increasing the concentration of reactants, a higher number of reacting molecules or ions are present in the reaction. This increases the chances of collisions occurring to increase the reaction rate.

Answer: C

Explanation:

collisions of the right energy are more likely

Which of the following is most difficult to reduce?
O A. Cu2+
O B. Aut
C. Ni2+
D. Na+

Answers

Answer:

D Na+

Explanation:

due to shielding effect

The answer is D. Na+

Calculate the number of g of KCN that will react with 1.06 mol of HCl.

Answers

Answer:

68.9 g of KCN.

Explanation:

We'll begin by writing the balanced equation for the reaction. This is given below:

KCN + HCl → KCl + HCN

From the balanced equation above,

1 mole of KCN reacted with 1 mole of HCl.

Next, determination of the number of mole of KCN needed to react with 1.06 moles HCl.

This is illustrated below:

From the balanced equation above,

1 mole of KCN reacted with 1 mole of HCl.

Therefore, 1.06 moles of KCN will also react with 1.06 moles of HCl.

Finally, we shall convert 1.06 moles of KCN to grams.

This can be obtained as follow:

Molar mass of KCN = 39 + 12 + 14 = 65 g/mol.

Mole of KCN = 1.06 moles

Mass of KCN =...?

Mole = mass /Molar mass

1.06 = mass of KCN / 65

Cross multiply

Mass of KCN = 1.06 x 65

Mass of KCN = 68.9 g

Therefore, 68.9 g of KCN is needed to react with 1.06 moles of HCl.

When the equation below is balanced with the lowest possible whole number coefficients, what is the sum of the coefficients? Ca(s) + HCl(g) → CaCl2(s) + H2(g)

Answers

Answer:

ca(s)+hcj(g)cacI 2 (s)+H2(g)

Explanation:

The equation below is balanced with the lowest possible whole-number coefficients, the sum of the coefficients Ca(s) + HCl(g) → CaCl2(s) + H2(g) is

ca(s)+hcj(g)cacI 2 (s)+H2(g).

What is the sum of the coefficients when the equation for the combustion of ammonia is balanced using the smallest possible whole numbers?

The sum of the coefficients is 2+3+4+3=12.

What type of reaction is Ca 2hcl → CaCl2 H2?

Type of Chemical Reaction: For this reaction, we have a single displacement reaction. Balancing Strategies: In this reaction Calcium (Ca) metal is reacting with Hydrochloric acid (HCl). the Ca replaces the H in HCl and we end up with CaCl2 and H2.

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Convert the pressure 525.4 torr to kPa.
Select one:
O a. 70.0
Ob. 3940
Oc. 9.90
O d. 525

Answers

Answer:

A. 70.0 kpa

Explanation:

Given

Pressure = 525.4 torr

Required

Convert to kPa

From standard unit of conversion;

[tex]1\ torr = 0.133\ kPa[/tex]

Multiply both sides by 525.4

[tex]525.4 * 1\ torr = 525.4 * 0.133\ kpa[/tex]

[tex]525.4\ torr = 70.047572\ kpa[/tex]

[tex]525.4\ torr = 70.0\ kpa[/tex] (Approximated)

From the list of given options, option A is the closest answer after 525.4 torr is converted to its kpa equivalent

the answer is 70.0kPa

how many molecules of water are present in a 5.65 mole sample of water

Answers

Answer:

5.65

Explanation:

What causes hydrogen bonding?


bonding of a covalently bonded hydrogen atom with an unshared electron pair


motion of electrons


attraction between ions


sharing of electron pairs between two adjacent hydrogen atoms

Answers

Answer:

the tendency of some atoms in molecules to attract electrons more than their accompanying atom.

Explanation:

bonding of a covalent my bonded hydrogen atom with an unshared electron pair

Determine which reaction has the highest activation energy

Answers

Answer:

        we need to look at what actually happens to reactant molecules during a chemical. in order for the reaction to take place , some or all of the chemical bonds in the reactants must be broken so that the new bonds, those of the products , can form.

Answer:

Graph 3

Explanation:

got it right.

use the crossover method to find the chemical formula of a calcium oxide

Answers

Answer:

CaO

how:

since its an iconic compound (metal(Ca)+non-metal(O)=iconic(CaO) we have to take account the charges

so;

[tex]Ca^{+2}[/tex] [tex]O^{-2}[/tex]

now we will cross them

[tex]Ca_{2} O_{2}[/tex]

since both the values are same will cross it out.

hence: CaO

The atomic number of manganese (Mn) is 25. What's the electron configuration for manganese?
A. [Ar] 3s5 4p2
B. [Ne] 3d7
C. [Ne] 452 3p5
D. [Ar] 3d5 4s2

Answers

Answer:

[tex]\boxed{\sf D. \ [Ar] \ 3d5 \ 4s2}[/tex]

Explanation:

Manganese is a group 7 transition metal with an electronic configuration of [Ar] 3d5 4s2.

The atomic number of manganese (Mn) is 25. The electron configuration for manganese is  [Ar] [tex]\rm 3d^5 4s^2[/tex]. Therefore, the correct option is option D.

The electron configuration depicts how electrons are dispersed throughout an atom's energy levels and orbitals. Manganese (Mn) has an atomic number of 25, meaning that the atom contains 25 electrons. Manganese (Mn) has the following electron configuration: [tex]\rm 1s^2 2s^2 2p^6 3s^2 3p^6 4s^2 3d^5[/tex]

We can use the noble gas notation to indicate the electron configuration in a more compact form by indicating the noble gas that comes before the electron configuration. The noble gas that comes before manganese (Mn) is argon (Ar), whose electron configuration is[tex]\rm 1s^2 2s^2 2p^6 3s^2 3p^6[/tex]. The electron configuration of manganese (Mn) can be expressed as [tex][Ar] 3d^5 4s^2[/tex] using noble gas notation.

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Question 9 of 50
2 Point
When hydrogen is burned in the presence of oxygen it will form water, as
per the equation: 2H2 + O2 -> 2H20. Which types of reactions does this
fall under?
I. synthesis
II. decomposition
III. single replacement
IV. double replacement
V. combustion
O A. I and V

Answers

Answer:

V. Combustion

Explanation:

Combustion is a reaction where a substance is burned - in this case, hydrogen is burned.

the answer is combustion

The chemical equation shown represents photosynthesis. Carbon dioxide plus A plus light with a right-pointing arrow towards B plus oxygen. The arrow has an x above it. What is the role of substance A in photosynthesis? (5 points) Question 4 options: 1) It stores chemical energy for plants and animals. 2) It traps light energy and converts it into chemical energy. 3) It combines with carbon dioxide and light to form glucose. 4) It combines with carbon dioxide and light to form hydrogen.

Answers

Answer:

2

Explanation:

Which type of molecule is shown below?

Answers

Answer:

[tex]\boxed{\mathrm{Alkene}}[/tex]

Explanation:

The hydrocarbon shown has a double bond. Hydrocarbons with double bonds are known as alkenes.

Cyclic alkanes have cyclic structure.

Alkanes only have single bonds.

Alkynes have triple bonds.

Answer:

Alkene

Explanation:

A molecule having a double bond between its atoms is called an alkene.

*LAST QUESTION , PLEASE HELP* Why does the land around an once active coal mine remain barren? a.) Empty coal mines are flooded with acid rain so no life forms can survive. b.) Ozone is formed from hydrocarbons which prevents the growth of plants. c.) The ground where the coal was mined is acidic so few plants can grow there.

Answers

The land around a once active coal mine remains barren because empty coal mines are flooded with acid rain, so no life forms can survive. The correct option is a.

What is a coal mine?

Coal mines are the places where coal is extracted from. Mines are the place where abundant minerals are present. These minerals are extracted from these places to use the minerals as fuel, making other metals and things. The three types of coal mines are long wall mining, retreat mining, and room-and-pillar mining.

Mines are places that are dig or excavated to very deep, so the topsoil goes into the valleys hence no nutrients in the soil, no plants, and no life.

Thus, the correct option is a.) Empty coal mines are flooded with acid rain, so no life forms can survive.

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A reaction between ethene and oxygen is used to produce epoxyethane. When silver is combined with ethene, the reaction for producing epoxyethane occurs much faster. What role does silver play in this chemical process?
A. Silver is a catalyst in this reaction.
B. Silver is a p-type semiconductor in this reaction.
C. Silver causes hydrolysis in this reaction.
D. Silver is an n-type semiconductor in this reaction.

Answers

Answer:

A. Silver is a catalyst in this reaction.

Explanation:

The most common use of rare-earth metals is as catalysts in chemical reactions.

To solve such this we must know the concept of chemical reaction. Therefore, the correct option is option A that is  Silver is a catalyst in this reaction.

What is chemical reaction?

Chemical reaction is a process in which two or more than two molecules collide in right orientation and energy to form a new chemical compound. The mass of the overall reaction should be conserved. There are so many types of chemical reaction reaction like combination reaction, double displacement reaction.

A reaction between ethene and oxygen is used to produce epoxyethane. When silver is combined with ethene, the reaction for producing epoxyethane occurs much faster.  Silver is a catalyst in this reaction.

Therefore, the correct option is option A that is Silver is a catalyst in this reaction.

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What is the pH of a solution that has [OH-] = 4.0 x 10-'M?

Answers

Answer: 13.60

Explanation:

[tex]\frac{10^{-14} }{4.0 x 10^{-} }[/tex] = 2.5 x10^-14  this =[tex][H_{3} O^{+} ][/tex]

pH = -log[tex][H_{3}O^{+} ][/tex]

pH= -log( 2.5 x10^-14) = 13.60

The answer is 13.60! I hope this helps
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