Where does water pollution come from

Answers

Answer 1
The water pollution comes from trash
Answer 2

Answer:Water pollution can come from a variety of sources. Pollution can enter water directly, through both legal and illegal discharges from factories, for example, or imperfect water treatment plants. Spills and leaks from oil pipelines or hydraulic fracturing (fracking) operations can degrade water supplies.

Explanation:


Related Questions

Name the reaction & mechanism of the following reactions:

Answers

Answer:

double displacement reaction

Answer:

DECOMPOSITION REACTIONDOUBLE DISPLACEMENT REACTIONDISPLACEMENT REACTION

Explanation:

SEE THE IMAGE FOR SOLUTION

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a cyclist starts at rest and accelerates at 4m/s^2 south for 30s what is the cyclist final velocity?

Answers

Answer:

120

Explanation:

Convert 355 km/s into m/ns.

Answers

Answer:

3.55e-7

Explanation:

4(a) Why doesn't the water flow out when the hand that presses the cardboard is removed? *

1. water inside glass is lighter
2. there is much water inside the glass
3. cardboard is supported by air pressure
4.
cardboard is strong enough to hold the water

Answers

Air pressure is the weight of a column of air pushing down on an area. ... Because of the air pressure pushing up on the card, the card will stay on the glass and the water will not spill out.

Ribbon diagrams show secondary structures and appear less detailed than other model types. In one to two sentences, give a reason that chemists would use ribbon diagrams. What type of information do they provide? (SHORT ANSWER)

Answers

Chemists prefer ribbon diagrams because they make the tertiary structure of the protein molecule easier to trace.

A protein molecule can be represented using several kinds of models. The ball and stick models which are common representations for other molecules can also be applied in the case of protein molecules.

However, the ribbon diagrams are preferred by chemists because they make the  tertiary structure of the protein molecule easier to trace. Also, the ribbon diagram shows the overall path and organization of the protein backbone in the protein molecule.

This kind of structure was first introduced by  Jane S. Richardson  around 1981.

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Answer:

Ribbon diagrams look like the name they hold- ribbons. Therefore, they would be a good option if one were to trace or copy the diagram onto another document, etc. Also, they depict protein very well so if a chemist were studying different types of protein he/she would utilize a ribbon diagram.

Explanation:

Question 25 of 30
Several dyes were mixed together and dissolved in water. You need to
determine which dyes are in the solution, but not separate the entire mixture.
How can you separate out a small sample of the dyes for identification
purposes, but not separate the entire mixture?
A. By distilling the dyes
B. By filtering the dyes
C. By using oils to distill the dyes
D. By using chromatography
SUBMIT

Answers

Answer: D, by using chromatography.

We can separate out a small sample of the dyes for identification purposes, but not separate the entire mixture by using chromatography.

What is Chromatography?

Chromatography is a technique of separation of mixtures of liquids according to the nature of those liquids.

To get the process started, the mixture is dissolved in a substance called the mobile phase, which carries it through a second substance called the stationary phase.

The different components of the mixture travel through the stationary phase at different speeds, causing them to separate from one another. The nature of the specific mobile and stationary phases determines which substances travel more quickly or slowly, and is how they are separated. These different travel times are termed retention time.

Therefore, We can separate out a small sample of the dyes for identification purposes, but not separate the entire mixture by using chromatography.

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7 f Find the volume in dm3 and in mole of 0.505m of NaoH required to react with 40ml of 0.505m
of H₂SO4 Solution​

Answers

The volume of NaOH required is 0.08 dm³

To solve this question, we'll begin by writing the balanced equation for the reaction between H₂SO₄ and NaOH. This is illustrated below:

H₂SO₄ + 2NaOH —> Na₂SO₄ + 2H₂O

From the balanced equation above,

Mole ratio of the acid, H₂SO₄ [tex](n_{A}) = 1[/tex]

Mole ratio of the base, NaOH [tex](n_{B}) = 2[/tex]

Next, we shall determine the volume of NaOH required to react with H₂SO₄. This can be obtained as follow:

Molarity of the base, NaOH [tex](M_{B}) = 0.505 M[/tex]

Volume of the acid, H₂SO₄ [tex](V_{A}) = 40 mL[/tex]

Molarity of the acid, H₂SO₄ [tex](M_{A}) = 0.505 M[/tex]

Volume of the base, NaOH [tex](V_{B})[/tex] =?

[tex]\frac{M_{A} * V_{A}}{M_{B} * V_{B}} = \frac{n_{A}}{n_{B}}\\\\\frac{0.505 * 40}{0.505 *V_{B}} = \frac{1}{2}\\\\\frac{20.2}{0.505 *V_{B}} = \frac{1}{2}[/tex]

Cross multiply

[tex]0.505 * V_{B} = 20.2 * 2\\0.505 * V_{B} = 40.4[/tex]

Divide both side by 0.505

[tex]V_{B} = \frac{40.4}{0.505}\\\\V_{B} = 80 mL[/tex]

Finally, we shall convert 80 mL to dm³. This can be obtained as follow:

[tex]1000 mL = 1 dm^{3}\\\\Therefore,\\\\80 mL = \frac{80 mL * 1dm^{3}}{1000 mL}\\\\80 mL = 0.08dm^{3}[/tex]

Therefore, the volume of NaOH required is 0.08 dm³

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1. Based on the following balanced equation:
2 H2 + O2 + 2H2O
a. How many moles of O2 are required to react completely with 2.00 moles of H2?
1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50 5.00
b. How many moles of H2O are produced after complete reaction of 2.00 moles of H2?
1.00 1.50
2.00 2.50 3.00 3.50 4.00 4.50 5.00

Answers

Answer:

a. 1 mole O2

b. 2 moles H2O

Explanation:

a. 2 moles H2 x [tex]\frac{1 mole O2}{2 moles H2}[/tex] = 1 mole O2

B. 2 moles H2 x [tex]\frac{2 moles H2O}{2 moles H2}[/tex] = 2 moles H20

Axon diameters of cortico-cortical fibres in the human brain range from 0.16 um to 9 um in
length. Convert the length, 0.16 um, into meters using scientific notation. (Use the following
format: a x 10^b using the correct number of significant figures).
Type your answer and submit
1.6x10^-7
Х

Answers

Conversion from one unit to another requires the use of a conversion factor.

We are required in the problem to express our result in the form; a x 10^b

To convert from μm to m, the conversion factor to use is [tex]1 * 10^-6[/tex]

So;

1 μm = [tex]1 * 10^-6[/tex] m

0.16 μm =  0.16 μm * [tex]1 * 10^-6[/tex] m/1 μm

= [tex]1.60 * 10^-7[/tex] m

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2. An Isotope of technetium, mixed with sulphur and colloidally dispersed in water, is frequentyused in diagnosing various medical conditions because it is readily taken up by various tissues Prior to excretion. Explain why this important
mixture is not a true solution.

Answers

Answer:

This is not a true solution because the colloidal dispersion is not completely homogeneous, and it does not have uniform properties throughout.

Explanation:

hope i helped

e. How many grams of chlorophenol are there in 1.00 litre of a 47.0 mM solution? Show your calculations
in full.
(6 marks)

Answers

The mass of the chlorophenol  is obtained from the number of moles and the volume of the solution.

Recal that;

Number of moles = concentration of solution * volume of solution

Concentration = 47.0 mM  or 47.0 * 10^-3 M

Volume = 1.00 litre

Number of moles = 47.0 * 10^-3 M * 1.00 litre

Number of moles = 47.0 * 10^-3 moles

Also;

Number of moles = mass/molar mass

mass = Number of moles * molar mass

Mass = 47.0 * 10^-3 moles * 128.6 g/mol

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Mass = 6.0442 g

Is the covalent bond BH2CL a polar nonpolar or ionic compound

Answers

BH2Cl is a polar compound because the molecule is non-symmetrical.

An ionic bond is usually formed between atoms having a high magnitude of electronegativity difference between them while covalent molecules tend to have a narrower range of electronegativity difference between atoms in the molecule.

In-between the two extremes are the polar covalent bonds which result from a significant electronegativity difference but less than that required for an ionic bond.

The B-Cl bond in BH2Cl is polar and the entire molecule is non-symmetrical hence the BH2Cl is a polar compound.

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write the chemical formula of the following compounds sodium sulfate magnesium chloride aluminum nitrate ammonium sulfate​

Answers

Explanation:

Magnesium chloride = MgCl₂

aluminum nitrate= Al(NO₃)₃

ammonium sulfate=( NH₄)₂SO₄

Please help thank you (20 points)

Answers

Answer:

Answer is b gravity only

Please help due today

Answers

Answer:

OPTION B .

AS THEY WILL PRODUCE CO,CO2 WHICH WILL MAKE AIR POLLUED AS WELL AS RISE THE TEMPERATURE

Which substance is a binary acid?
hydrochloric acid
phosphoric acid
nitrous acid
sulfuric acid

Answers

Answer:

phosphoric

Explanation:

pls mark me as brainliest

Answer:

hydrochloric acid is a substance that is a binary acid .

marke a brainlist

Shakespeare's A Midsummer Night's
Dream contains dialogue that is
meant to be performed. In what
narrative genre does this story fit?
A. historical fiction
B. mystery
C. play

Answers

Play

because it is structured as a script and therefore is meant to be performed (this makes it a play)

Please help thank you (15 points)

Answers

Answer:

C.

Explanation:

The arrows represent the Earth spinning on its own axis in this picture.

Determine the percent water in CuSO4∙5H2O to three significant figures

Answers

Answer:  36.1%

Explanation:  The molar mass of the complete molecule, CuSO4*5H2O is 249.6 g/mole.  The molar mass of just the water (5H20) is 90 g/mole.  Assume 1 mole of CuSO4*5H2O, the percent water would be:

90g H2O/249.6g CuSO4*5H2O = 0.361 or 36.1%

What kind of chemical do we release when we help others?

Answers

Answer:

oxytocin is the answer

Explanation:

oxytocin

Oxytocin.

When we help other people out, a chemical in our brain Called oxytocin releases.

specific gravity of a vegetable oil is 0.85. What is its density?

Answers

I think its density is 850kg/m^3

Why is the half-life of a radioisotope important for radioactive dating?
A. The half-life forms a type of clock used to calculate time passed.
B. The half-life of a radioisotope tells how long ago the element was
formed.
C. The age of an object is equal to the radioisotope with the longest
half-life in it.
D. The half-life gives the period over which the radioisotope doesn't
change.

Answers

Answer:Dating Using Radioactive Decay

The best-known techniques for radioactive dating are radiocarbon dating, potassium-argon dating and uranium-lead dating.

After one half-life has elapsed, one half of the atoms of the nuclide in question will have decayed into a “daughter” nuclide.

Explanation:d

Which functional group does the molecule below have?
A. Ether
B. Amino
C. Carbonyl
D. Hydroxyl
SUBV

Answers

Answer:

Ether is the correct answer

Explanation:

It is based.

If squares represent carbon and spheres represent chlorine make a representation of liquid CCl4

Answers

Answer:

Look in explanation

Explanation:

I have shown the Lewis diagram as well as the square and sphere representation.

2. Using diagrams, briefly explain the following; i. Solvus ii. Eutectic iii. Eutectoid iv. Peritectic

Answers

Answer:

Solvus: A solvus is a line or surface on a phase diagram which separates a homogeneous solid solution from a field of several phases which may form by exsolution or incongruent melting.

Eutectic: Relating to or denoting a mixture of substances that melts and freezes at a single temperature that is lower than the melting points of the separate constituents or of any other mixture of them.

Eutectoid: relating to or denoting an alloy which has a minimum transformation temperature between a solid solution and a simple mixture of metals.

Peritectic: A peritectic reaction is a reaction where a solid phase and liquid phase will together form a second solid phase at a particular temperature and composition.

Thank you, if you find this helpful please comment.

How does the carbonyl group increase the reactivity of carboxylic acids?

Answers

Answer:

The relative reactivity of carboxylic acid derivatives toward nucleophile substitutions is related to the electronegative leaving group's ability to activate the carbonyl. The more electronegative leaving groups withdraw electron density from the carbonyl, thereby increasing its electrophilicity.

Hope it helps you.

5.
5.555 x 1014 ounces = ? millipounds

Answers

3.5678 is your answer

explain what happens in terms of heat diffusion

Answers

Answer:

here is the answer

Explanation:

Diffusion is a process of passive transport in which molecules move from an area of higher concentration to one of lower concentration.

what is the chemical formula of ( Rust ) ??​

Answers

Answer:

[tex]Fe_2O_3[/tex]

Explanation:

The formula of Rust is Fe2O3 and also known as ferric oxide or iron oxide

------------------------

OAmalOHopeO

------------------------

Write a balanced equation for the ionization of hydrochloric acid in water. Assume that hydronium ion is formed. (Use the lowest possible coefficients. Be sure to specify states such as (aq) or (s). If a box is not needed, leave it blank.)

Answers

Answer:

HCl(g) + H₂O(l) -> Cl⁻(aq) + H₃O⁺(aq)

Explanation:

Usually when we have HCl in a lab, it's already dissolved in water. It's just HCl(aq). If we want to look at adding pure HCl, that'll be a gas. We should note that HCl is a strong acid that will break apart completely. One might not say that this is a chemical reaction so much as a dissociation. Strong acids are proton donors and form hydronium cations in aqueous solution.

The balanced equation for the ionization of hydrochloric acid (HCl) in water, forming hydronium ions (H₃O⁺) and chloride ions (Cl⁻) is:

HCl(aq) + H₂O(l) → H₃O+(aq) + Cl⁻(aq). The symbol for hydrochloric acid is HCl. H₂O stands for water. The hydronium ion, or H₃O+, is created when the acid HCl gives a proton (H+) to a water molecule.

The chloride ion, which is what's left of the HCl molecule after it's been ionized, is denoted by the symbol Cl-.

The reaction can move both in the forward (ionization) and backward (recombination) directions, according to the double arrow ().

Thus, The balanced equation for the ionization of hydrochloric acid (HCl) in water, forming hydronium ions (H₃O⁺) and chloride ions (Cl⁻).

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