Which number represents the water table?

1
2
3
4

Which Number Represents The Water Table?1234

Answers

Answer 1

Answer:

2

Explanation:

the level below which the ground is saturated with water.

Answer 2

2

What is the water table zone?

The water table zone is right on the top of the saturated zone,  and it's below the land surface. The depth of the water table variates going from near the surface or hundreds of meters below the land surface

Water Table Examples:

Aquifers. Three examples of water table aquifers are the Ogallala aquifer in the United States of America, the Great Artesian Basin in Australia, and the Lotikipi Basin Aquifer in Kenya

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Related Questions

Give two ways a globe is like the earth and two ways a globe is not like the earth.
Its a homework question and I'm to lazy to think HELP PLEASE

Answers

Answer:

A glove is like the earth because...

A globe is like the earth in that it is a three-dimensional representation of the earth's features, such as countries, oceans, and landmasses.

A globe is also like the earth in that it can rotate on its axis, which allows the viewer to see different parts of the earth depending on the angle of rotation.

A globe is not like the earth because...

A globe is not like the earth in that it is typically much smaller than the earth.

A globe is also not like the earth in that it does not depict the earth's relief features, such as mountains and valleys, in their true proportion to the rest of the earth's surface.

Final answer:

A globe is like the earth in that it is a scaled-down, spherical model of the earth's surface, representing physical features accurately. However, a globe is not like the earth because it is much smaller and does not rotate or revolve.

Explanation:

The globe and the earth are similar in two main ways. First, a globe is a scaled-down model of the earth, showing an accurate representation of the earth's surface. This includes physical features such as continents, oceans, and countries, which are mapped out precisely. Second, a globe is spherical, just like the earth.

However, there are differences between a globe and the earth. One key difference is the scale: the earth is far larger than any globe. The most obvious point of difference is the size: while a globe is small enough to be held in your hands or placed on a desk, the earth has a diameter of approximately 7,917.5 miles. Also, the globe is a static object, it does not rotate on its axis or revolve around the sun like the earth does.

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PROBLEM 1.22 Give the hybridization state of each carbon in the following

compounds:

(a) Carbon dioxide (0 = C = O)

(d) Propene (C*H_{3}*CH = C*H_{2})

(b) Formaldehyde (H_{2}*C = O)

(e) Acetone [(CH 3 ) 2 C = OI

(c) Ketene (H_{2}*C = C = O)

(f) Acrylonitrile ( C*H_{2} =CHC equiv N)

SAMPLE SOLUTION

(a) Carbon in C*O_{2} is directly bonded to two other atoms. It

is sp-hybridized.

Answers

To solve this we must be knowing each and every concept related to hybridisation. Therefore, the hybridisation of the given molecule can be given as below.

What is hybridisation?

Only during bond formation does hybridization occur, not in an individual gaseous atom. If the bonding of a molecule is known, the geometry of the molecule may be predicted.

compound                                                              hybridisation

Carbon dioxide (0 = C = O)                                       sp

Propene (CH[tex]_3[/tex]CH = CH[tex]_2[/tex])                                            sp³, sp²,sp²

Formaldehyde (H[tex]_2[/tex]C = O)                                             sp²

Acetone [(CH[tex]_3[/tex] )[tex]_2[/tex] C = O                                                 sp³, sp²,      sp³

Ketene (H[tex]_2[/tex]C = C = O)                                                  sp²,    sp

Therefore, the hybridisation of the given molecule can be given as above.

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9)
Which solution will have the highest concentration of solute particles?
A) 0.50 M NaCl
B) 1,00 M CaCl2
C) 2.00 M sodium ions
D) 2.50 M C6H1206

Answers

Answer: The answer is B) 1.00 M CaCl2

Explanation: I just did it on usatestprep and it said it was correct .

If 14.7 g of NO2 are reacted, what mass of H2O is reacted with it?

Answers

Answer:

no se englesh

ajajajaja

A sample of AgCl is treated with 5mL of 2M Na2CO3 solution to produce Ag2CO3. The remaining solution contained 0.003gm of Cl per litre. Calculate solubility product of AgCl.(Ksp of Ag2CO3=8.2×10^-12)​

Answers

Answer: The solubility product of AgCl is [tex]10.73 \times 10^{-9}[/tex].

Explanation:

The reaction equation is as follows.

[tex]Ag_{2}CO_{3} \rightleftharpoons 2Ag^{+} + CO^{2-}_{3}[/tex]

Let us assume the concentration of [tex]2Ag^{+}[/tex] is 2S and concentration of [tex]CO^{2-}_{3}[/tex] is S. Hence, the expression for [tex]K_{sp}[/tex] of this reaction is as follows.

[tex]K_{sp} = [Ag^{+}]^{2}[CO^{2-}_{3}]\\8.2 \times 10^{-12} = (2S)^{2}(S)\\8.2 \times 10^{-2} = 4S^{3}\\S = 1.27 \times 10^{-4}[/tex]

This means that [tex][Ag^{+}][/tex] is [tex]1.27 \times 10^{-4}[/tex]. Now, the concentration of [tex]Cl^{-}[/tex] is calculated as follows.

[tex][Cl^{-}] = \frac{mass}{molar mass}\\= \frac{0.003 g}{35.5 g/mol}\\= 8.45 \times 10^{-5} M[/tex]

Hence,  [tex]K_{sp}[/tex] for AgCl is calculated as follows.

[tex]K_{sp} = [Ag^{+}] \times [Cl^{-}]\\= 1.27 \times 10^{-4} \times 8.45 \times 10^{-5}\\= 10.73 \times 10^{-9}[/tex]

Thus, we can conclude that solubility product of AgCl is [tex]10.73 \times 10^{-9}[/tex].

The amount of water (density 1.00 g mL-1) in grams that must be added to 26.2 g of
MgCl2 in the preparation of a 1.5 % by mass solution is:​

Answers

Answer:

1720.8g water are necessaries

Explanation:

Mass percent is defined as the mass of solute (In this case, MgCl2) in 100g of solution (Mass MgCl2 + Mass water). To solve this question we must find the mass of solution that we need to produce th 1.5% by mass solution. Thus, we can find the mass of water that we need as follows:

Mass solution:

26.2g MgCl2 * (100g Solution / 1.5g MgCl2) = 1747g solution

Mass water:

1747g solution - 26.2g MgCl2 = 1720.8g water are necessaries

How many short columns are on the periodic table?

Answers

Answer:

They are 4 short column on the periodic table

5. 16.3 g of NaCl is dissolved in water to make 1.75 L of solution. What is the molarity of this solution? A 0.159 M B 0.278 M C 9.31 M D 33.4 M​

Answers

Answer: The molarity of this solution is 0.159 M.

Explanation:

Given: Mass of solute = 16.3 g

Volume = 1.75 L

Number of moles is defined as the mass of substance divided by its molar mass.

Hence, moles of NaCl (molar mass = 58.44 g/mol) ar calculated as follows.

[tex]Moles = \frac{mass}{molar mass}\\= \frac{16.3 g}{58.44 g/mol}\\= 0.278 mol[/tex]

Molarity is the number of moles of a substance present in a liter of solution.

So, molarity of the given solution is calculated as follows.

[tex]Molarity = \frac{no. of moles}{Volume (in L)}\\= \frac{0.278 mol}{1.75}\\= 0.159 M[/tex]

Thus, we can conclude that the molarity of this solution is 0.159 M.

Separating mixtures into their components depends on the differences in the components'
A. phases
B. states of matter
C. physical properties
D. chemical properties

Answers

Answer:

D

Explanation:

chemical properties

I'm not sure abt it but hope that helps

I think the answer is D

A reservoir is filled with 4 billion cubic feet of polluted water that initially contains 0.4% pollutant. Every day 400 million cubic feet of pure water enters the reservoir and the well-mixed solution flows out at the same rate. When will the pollutant concentration in the lake be reduced to 0.2%

Answers

Answer:

Thus, the pollutant concentration in lake will be reduced to 0.2% after 6.931471 days

Explanation:

From the information given:

A(t) = amount of pollutant for time (t)

A 4 billion cubic ft is the same as 4000 million cubic ft:

The Initial amount of pollutant is [tex]A_o = (\dfrac{0.4}{100})\times 4000[/tex]

[tex]A_o = 16 \ million \ cubic \ feet[/tex]

However;

the pollutant rate (input) = 400 × 0 = 0

the pollutant rate (output) = [tex]400( \dfrac{A(t)} {4000})[/tex]

[tex]= 1( \dfrac{A(t)} {10})[/tex]

The net rate = [tex]A'(t) = 0 - 1( \dfrac{A(t)} {10})[/tex]

[tex]\implies A'(t) = - 1( \dfrac{A(t)} {10})[/tex]

[tex]\implies \dfrac{1}{A(t)}A'(t) = -(\dfrac{1}{10})[/tex]

[tex]\implies \int (\dfrac{1}{A(t)}A'(t) ) dt = \int -(\dfrac{1}{10}) dt[/tex]

[tex]\implies In (A(t)) = -(\dfrac{1}{10})t + c[/tex]

[tex]\implies A(t) = e^{-(\dfrac{1}{10})t+c}[/tex]

[tex]\implies A(t) = Ce^{-\dfrac{1}{10}^t}[/tex]

A(0) =  16

[tex]\implies Ce^{ -(1/20)^0} = 16 \\ \\ C = 16[/tex]

[tex]\implies A(t) = 16e^{(-1/10)t}[/tex]

[tex]0.2\% \ pollutant = (\dfrac{0.2}{100})*4000 =8 \ million \ cubic \ feet[/tex]

A(t) = 8

[tex]\implies 16e^{(-1/10)t}= 8 \\ \\ \implies e^{1/10)t} = 2 \\ \\ (\dfrac{1}{10} )^t = In(2) \\ \\ t = 10\ In(2) \\ \\ \mathbf{ t = 6.931471}[/tex]

No links!! Round two decimal places please

Answers

Answer:

255.46 grams NO3

Explanation:

The molar mass of NO3 is 62.0049 g/mol.

To get grams from moles, multiply the moles by the molar mass.

4.12*62.0049 = 255.4602 = 255.46 grams NO3

Compressing a spring increases its

a.kinetic energy
b.potential energy
c.electrical energy
d.chemical energy

Answers

Answer:

B. potential energy

Explanation:

Potential energy ( Mechanical in this case ) is energy stored by force. so If you are compressing a spring you are increasing more potential to it by force.

Which statement is true about a reversible reaction? (5 points)
The forward and reverse reactions stop.
The product is a salt and the reactant is an acid.
The products react to re-form the original reactants.
The forward reaction continues but reverse reaction stops.

Answers

Answer:

C: The products react to re-form the original reactants.

Explanation:

A reversible reaction is one where the conversion of reactants to products as well as the conversion of products to reactants happen at the same time.

What this means is that the products of the reaction could react to reform the initial reactants.

Thus, option C is the correct answer.

Answer:

C

Explanation:

The products react to re-form the original reactants.


How many grams of chromium are in 2.0 x 1024 atoms

Answers

Answer: 173 g ( 0.17 kg in right accuracy)

Explanation: Amount in moles is n = N/Na =  2.0·10^24 / 6.022·10^23 (1/mol).

n = 3.32116 mol. M(Cr) = 52.00 g/mol and  mass m = nM = 172.7 g

What is an Alkanoate?​

Answers

Answer: Alkanoate (plural alkanoates) (organic chemistry) Any salt or ester formed from the reaction of an alkaloic acid and alkaloids

Explanation: I looked in my dictionary and found this. I hope this helped

5 lollipops = 6 gumballs

8 gumballs = 6 lemonheads

14 lemonheads = 11

Answers

Explanation:

5 lollipops = 6 gumballs

8 gumballs = 6 lemonheads

14 lemonheads = 11 lollipops

It is in chain rule form.

Answer:

야만적 인 사랑은 누군가가 천사처럼 보이지만 야만적 인 사랑은 당신의 마음을 부러 뜨리게했다너무 귀엽다

Explanation:

난 천사야 네가 무슨 뜻인지 말해줘나는 모든 것을 가지고 나는 그것을 다시 포기하지 않을 것이다

The table shows the thickness, top density, and bottom
density of the different layers of the Earth.
Which statement is supported by the information in the
table?
Thickness
(km)
Density
(g/cm)
Top Bottom
Types of Rock
Found
As depth increases, the density of the layers increases.
As depth increases, the density of the layers decreases.
As depth increases, the thickness of the layers
increases.
As depth increases, the thickness of the layers
decreases.
Crust
30
2.2
2.9
Silicic rocks
720
3.4
4.4
Upper
mantle
Peridotite
2,171
4.4
Lower
mantle
5.6
Magnesium and
silicon oxides
Outer
2,259
9.9
12.2
Iron+oxygen
core
1,221
12.8
13.1
Inner
core
Iron+oxygen
Se

Answers

[tex]\huge{\textbf{\textsf{{\color{pink}{An}}{\red{sw}}{\orange{er}} {\color{yellow}{:}}}}}[/tex]

As depth increases, the density of the layers decreases.

Thanks.Hope it helps.

The statement, that describes the thickness, top density, and bottom density of the different layers of the Earth is "as depth increases, the density of the layers decreases."

What is density layers of Earth?

The density of the Earth's inner layers determines their order. The densest layer is the solid metal inner core, the mantle is of intermediate density, and the lithosphere, particularly the continental lithosphere, is the least dense layer.

Pressure rises as you go deeper. Mass/volume = density. As a result, as the volume drops, so does the density. Because of pressure, the strata beneath us become extremely dense. As a result, as the depth of the earth increases, so does the density.

Hence the correct answer is as depth increases, the density of the layers decreases.

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What would the Kc value be from this reaction: H2 + I2 = 2HI.
(Because of the coefficient "2" in front of HI, you will have to square the concentration
of HI to find Kc. Kc = ?

Answers

Answer: The value of [tex]K_{c}[/tex] for the given reaction is  [tex]K_{c} = \frac{[HI]^{2}}{[H_{2}][I_{2}]}[/tex] .

Explanation:

The ratio of concentration of products and reactants raised to the power of their concentration is called equilibrium constant.

It is denoted by the symbol [tex]'K_{c}'[/tex].

For example, [tex]H_{2} + I_{2} \rightarrow 2HI[/tex]

The expression for [tex]K_{c}[/tex] of this reaction is as follows.

[tex]K_{c} = \frac{[HI]^{2}}{[H_{2}][I_{2}]}[/tex]

So, by putting the respective concentrations of the species involved in the reaction it is possible to determine the value of [tex]K_{c}[/tex] for the given reaction.

Thus, we can conclude that the value of [tex]K_{c}[/tex] for the given reaction is  [tex]K_{c} = \frac{[HI]^{2}}{[H_{2}][I_{2}]}[/tex] .

As long as proper
safety precautions have been taken, why can explosives be transported long distances without exploding?

Answers

Explosives can be transported long distances without exploding as long as proper safety precautions have been taken because explosives are designed to be stable under normal conditions. They will only explode when subjected to a specific trigger, such as a spark, heat, shock, or friction. When explosives are being transported, they are usually handled and stored in a way that minimizes the risk of exposure to these triggers. For example, explosives may be stored in containers that are resistant to shock, heat, and friction, and they may be transported in vehicles that are designed to minimize the risk of accidents or incidents that could cause a spark or other ignition source. Additionally, explosives may be transported in accordance with strict safety regulations that specify how they should be handled, stored, and transported to minimize the risk of accidental detonation.

HELP!!! Please

A Probability Swim in Lake S Orbital

1. How did you determine where the lake was most likely to be?


2. Why was it important to take ten obse
swimmers were located?


3. Explain why the statement "electrons are always located close to the nucleus of an atom" is not really accurate,

Answers

We determine where the lake was mostly likely to be by first look if it clean or if containes fish or another thing by it geographic please if it help us or healthy to swim or it make a risk for our lives if we swim in it

If a dog has a mass of 17.3 kg, what is its mass in the following units? Use scientific notation in all of your answers.

Answers

Answer:

what are the following units????

Explanation:

MY DOG WAS FAT BUT HE GOES TO GYM NOW, CAN BENCH LIFT 100 LBS :D

JK

bahobilat at dakobilat​

Answers

Answer:

sorry i didn't understand your question can you explain me your question have a good day hope its helps you ☺

LOLLL dako imong bilat-

How much energy (in J) is lost when a sample of iron with a mass of 28.3 g cools from 66.0 degrees celsius to 24.0 degrees celsius.

Answers

Answer:

-533.68J

Explanation:

Using the formula as follows:

Q = m × c × ∆T

Where;

Q = amount of heat required (Joules)

m = mass of substance (g)

c = specific heat of substance (J/g°C)

∆T = change in temperature (°C)

According to the information provided in this question;

Q = ?

m = 28.3 g

c of iron = 0.449 J/g°C

∆T = 24°C - 66°C = -42°C

Using the formula, Q = m × c × ∆T

Q = 28.3 × 0.449 × (-42)

Q = -533.68

Q = -533.68J

This means that 533.68J is lost to the environment when iron of 28.3g cools from 66°C to 24°C.

The half-life of carbon-14 is 5715 years. How long would it take for 100 grams to decay to
12.5 grams

Answers

We are given:

half-life of carbon = 5715 years

Initial mass = 100 grams

Final mass = 12.5 grams

Finding the time taken:

Number of half-lives:

We know that in the relation:

[tex]\frac{Final\_mass}{Initial\_mass} = \frac{1}{2^{n}}[/tex], n is the number of half-lives taken

replacing the given values:

12.5 / 100 = 1/2ⁿ

1/8 = 1/2ⁿ

2ⁿ = 8

2ⁿ = 2³

n = 3

Hence, it took 3 half-lives to reduce the mass to 12.5 grams

Number of years:

Time taken = 3 half-lives

we know that one half-life is 5715 years, replacing that value:

Time taken = 3*(5715) years

Time taken = 17145 years

Therefore, after 17145 years, a 100 gram sample of carbon will decay and only 12.5 grams will remain

Is this line real or imaginary?

Answers

Imaginary as there is no line

Answer:

What are you talking abt

Explanation:

Every system in the body is made from atoms, molecules, cells, tissues, and organs. These building blocks all work together to allow you to grow, obtain energy, move, stay healthy, and reproduce. Each system provides a different function to support life. Which of the following is a control system in the body?
Circulatory
Reproductive
Nervous
Muscular

Answers

Answer:

THE RIGHT ONE IS THE NERVOUS SYSTEM

Explanation:

THE EXPLANATION IS THAT : The nervous system is the part of an animal's body that coordinates its behavior and transmits signals between different body areas. In vertebrates it consists of two main parts, called the central nervous system (CNS) and the peripheral nervous system (PNS). The CNS contains the brain and spinal cord.

Identify the Precipitation Reaction Below:
A) CH4(g) + 2 O2(g) → CO2(g) + 2 H2O(g)
B) H2SO4(aq) + 2 LiOH(aq) → 2 H2O(l) + Li2SO4(aq)
C) Mg(s) + Cu(NO3)2(aq) → Mg(NO3)2(aq) + Cu(s)
D) HCl(aq) + (NH4)2S(aq) → H2S(g) + 2 NH4Cl(aq)
E) NaCl(aq) + AgNO3(aq) → AgCl(s) + NaNO3(aq)

Answers

Answer:

(E)

Explanation:

When aqueous solutions are added together, one of the products is s solid.

what is van't hoff factor?
state the formulas to calculate " i " during association or dissociation.

tysm! :)​

Answers

The relationship between the calculated concentration of a material and the actual concentration of particles is known as the Van't Hoff factor.

I is the difference between a typical or theoretical colligative quality and an observable one.

What does the connection van t Hoff factor mean?

The van 't Hoff factor is the difference between the concentration of a material determined by its mass and the concentration of particles actually formed when the substance is dissolved. The van 't Hoff factor is virtually 1 for the majority of non-electrolytes dissolved in water.

What does Van t Hoff factor mean in terms of connection and dissociation?

For dissociation, association, and the non-electrolyte solute, the Van't Hoff factor value is more than one, less than one, and equal to one respectively.

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Please help ASAP!!

Explain why a pond at 18 °C has more thermal energy than a cup of boiling water at
100 °C.

Answers

Answer:

The pond has more energy because I is so much larger that the Cup of boiling water. Since that mass of the pond is so much larger, It is generating more energy than a boiling cup of water.

It is because heat energy depends on the mass of the body, the pond has more molecules than that of the cup of boiling water, hence more kinetic energy and hence more heat/thermal energy.

Explain the phenomenon of diffussion. ​

Answers

Answer:

the movement of particles from a higher consentration to a lower consentration through a mechanical support.

Explanation:

Diffusion is the net movement of molecules or atoms from a region of high concentration to a region of low concentration as a result of random motion of the molecules or atoms.
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