How many gallons of water in lake lewisville?

Answers

Answer 1
1.422 × 10^11 us liquid gallons
Answer 2
Final answer:

Lake Lewisville typically contains more than 142 billion gallons of water at its normal elevation, calculated by multiplying its storage volume of approximately 436,000 acre-feet by the gallons-per-acre-foot conversion factor.

Explanation:

The student has asked about the volume of water in Lake Lewisville. Unfortunately, the exact amount of water in Lake Lewisville can vary due to several factors, including seasonal rainfall, water usage, and conservation efforts. However, it's known that the lake has a normal storage volume of approximately 436,000 acre-feet at its normal elevation of 522 feet above mean sea level according to official data. Since one acre-foot is equal to about 325,851 gallons of water, by multiplying the acre-feet by this conversion factor, it can be estimated that Lake Lewisville typically holds more than 142 billion gallons of water when at normal levels.


Related Questions

A student is given two clear solutions. One solution contained lead ions, Pb2+ and the other solution contains chloride ions, Cl-. When the two solutions are mixed, a clear solution with white powder at the bottom results. What has happen to cause this change?

Answers

A chemical change has occurred creating a precipitate. 
Just had that question on a quiz. XP

Hope I helped :)

Answer: A chemical change has occurred.

Explanation: A chemical change is a change which results when there is a change in the chemical composition of the atoms.

Chemical changes are accompanied by:

a) Change in color

b) Absorption or release of heat

c) formation of precipitates

d) production of gas

[tex]Pb^{2+]+2Cl^-\rightarrow PbCl_2(s)[/tex]

The white powder is precipitates of lead chloride [tex]PbCl_2(s)[/tex] which do not dissolve.


According to the law of conservation of mass, when sodium, hydrogen, and oxygen react to form a compound, the mass of the compound will be ____ the sum of the masses of the individual elements.

Answers

The mass of the compound will be equal to the sum of the masses of the individual elements.

According to the law of conservation of mass, the mass of the reactants in a chemical reaction must equal the mass of the products.

When sodium (Na), hydrogen (H), and oxygen (O) react to form a compound, such as sodium hydroxide (NaOH), the total mass of the compound produced will be equal to the combined masses of the individual elements that reacted.

This principle is fundamental in chemistry and ensures that mass is neither created nor destroyed during a chemical reaction.

Therefore, if you start with a certain amount of sodium, hydrogen, and oxygen, the total mass of these elements before the reaction will be exactly the same as the mass of the sodium hydroxide produced after the reaction.

Thus, the mass of the compound will be 'equal to' the sum of the masses of the individual elements.

The law of definite composition states that every compound has a definite composition by mass. What does that mean?

Answers

Final answer:

The law of definite composition states that a chemical compound always consists of the same elements in a fixed ratio by mass, regardless of how or where it's formed. For example, water always contains hydrogen and oxygen in a 1:8 mass ratio. This law is crucial for understanding chemical reactions and the conservation of mass.

Explanation:

The law of definite composition, also known as the law of definite proportions, is a fundamental concept in chemistry. This law states that a chemical compound, no matter how it is formed or where it is found, will always consist of the same elements in a fixed ratio by mass. For example, water (H2O) is always composed of hydrogen and oxygen in a 1:8 mass ratio, meaning that there are always 8 grams of oxygen for every 1 gram of hydrogen.

This law has significant implications for chemical reactions. Because compounds always have a definite composition, the mass of the reactants in a chemical reaction always equals the mass of the products. This reflects the principle of conservation of mass.

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The law of definite composition, also known as the law of constant composition, is a fundamental concept in Chemistry. This law states that any given chemical compound will always contain the same elements in the exact same proportions by mass, regardless of the sample's origin or quantity.

Definition and Origin: The law of definite composition was formulated by Joseph Proust in the late 18th century. His experiments showed that chemical compounds contain elements in a fixed ratio by mass.

Fixed Ratios: For example, water (H₂O) is always composed of two hydrogen atoms and one oxygen atom. This 2:1 ratio in the number of atoms translates to a consistent mass ratio because each element has a specific atomic mass.

Mass Proportions: To illustrate with masses, the atomic mass of hydrogen is approximately 1 amu (atomic mass unit) and that of oxygen is about 16 amu. Therefore, in a water molecule, the mass ratio of hydrogen to oxygen is roughly 2 (from 2 hydrogen atoms) to 16, or simplified to 1:8.

Consistency Across Samples: No matter where you find a sample of water, whether from a river or distilled in a lab, its composition by mass will always be around 88.8% oxygen and 11.2% hydrogen.

Implications: This law helps in predicting and understanding chemical reactions because knowing the fixed ratios allows chemists to determine the quantities of reactants needed to produce a certain amount of a compound.

Express in scientific notation. Remember, M must be a number 1 ≤ M < 10. 0.000543 =

Answers

The correct answer would be 5.43 x 10^-4

Answer : The given number in scientific notation will be, [tex]5.43\times 10^{-4}[/tex]

Explanation :

Scientific notation : It is the representation of expressing the numbers that are too big or too small and are represented in the decimal form with one digit before the decimal point times 10 raise to the power.

For example :

5000 is written as [tex]5.0\times 10^3[/tex]

889.9 is written as [tex]8.899\times 10^{-2}[/tex]

As we are given that the number is, 0.000543

This number is written in scientific notation as :

[tex]5.43\times 10^{-4}[/tex]

Hence, the given number in scientific notation will be, [tex]5.43\times 10^{-4}[/tex]

what physical properties are used when making a cup of tea by boiling a tea bag in hot water?

Answers

The physical properties that are used when making a cup of tea include: color change, solubility, odour and diffusion.
When hot water is added to a tea bag, the tea particles gains energy and begin to move at a faster rate than before. This movement leads to the diffusion of the tea particles out of the tea bag into the water in the tea cup through the semi permeable membrane of the tea bag. This process makes one to perceive the smell of the tea. The outward diffusion of the tea particles add color to the boiling water that was pour into the cup. The boiling water also speed up the rate at which the added sugar dissolves.

Physical properties can be perceived or observed without changing the structure of matter. These are used to detect and describe matter. Physical properties comprise: appearance, texture, color, odor, boiling point, melting point, density, solubility, and polarity  just to name a few.


In this case, the physical process used is boiling, which causes water to evaporate and the contents in the tea bag to become more soluble and can make the color to change. Also, the physical property of solubility relates to some of the components of the tea.

What mole ratio would you use to calculate how many mole of oxygen gas would be?

Answers

The mole ratio one would need to calculate will be the ratio of grams of O2 are in one mole; that's the atomic mass of oxygen from the periodic table.

Oxygen has an atomic mass of 15.998 (most of the time, rounding to 16 is fine). But remember, oxygen always exists in nature as a diatomic molecule (two atoms covalently bonded together) as O2...so (32 grams O2/1 mole O2)

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Calculate the theoretical atom economy for each reaction.
a. 2 cuo (s) + c (s) → 2 cu (s) + co2 (g)

Answers

100% find the gfm of both sides then divide 

We call the elements in the blocks of periods 4-7 and groups 3-12 the

Arsenic is a metalloid, and it has _________ electron shells and _________ valence electrons.


Answers

The elements in the blocks of period 4-7 and group 3-12 in the periodic table are in the d-block and d-block elements  are known as transition metals or transition elements.
Arsenic is a metalloid and it has four electron shells and five valence electrons.
the s and p orbital of Arsenic have 2 and 3 electrons respectively and which makes five valence electrons.



How is each measurement represented using scientific notation?
48,000,000,000 g =

Answers

48,000,000,000 g = 4.8 * 10^(10)  g .
_____________________________________

Answer : The scientific notation of the given number is, [tex]4.8\times 10^{10}[/tex]

Explanation :

Scientific notation : It is defined as the way or representation of expressing the number that are too big or too small that is written in the decimal form. This means that, it always written in the form of power of 10.

For example : The number 200 is written as, [tex]2\times 10^2[/tex]

The given number is, 48,000,000,000 g

This number is written in scientific notation as :

[tex]48,000,000,000g=4.8\times 10^{10}g[/tex]

Therefore, the scientific notation of the given number is, [tex]4.8\times 10^{10}[/tex]

Gold has density of 19.3 g/cm3; how many grams of gold are in a 16.0 cm3 gold bar?

Answers

To determine the mass of gold, we simply multiply the density and volume. Density is a value for mass, such as kg, divided by a value for volume, such as m3. Density is a physical property of a substance that represents the mass of that substance per unit volume. We do as follows:

mass = density x volume
mass = 19.3 g/cm^3 ( 16.0 cm^3 )
mass = 308.8 g

Using what you know about the compressibility of gases explain why the oxygen in is a SCUBA tank is compressed

Answers

The answer is It is compressed so the diver will be able to use the tank for a longer period of time. 





The concept of compressibility enables SCUBA tanks to contain a large amount of compressed air, which divers can use for breathing underwater despite the limited size of the tanks.

The principle of compressibility explains why the oxygen in a SCUBA tank is compressed. Gases are compressible, which means they can be packed into a smaller volume under higher pressure. This property is utilized in scuba diving to supply a diver with sufficient breathing gas underwater.

Because gases expand to fill their containers, at sea level (1 atm pressure), the air fills the available space. However, when pressure is applied, the air's volume decreases significantly, allowing more air to be packed into the same container.

For example, if the air in a typical scuba tank, which might have a volume of 13.2 liters and be pressurized to 153 atm, was transferred to a container at the standard 1 atm pressure, it would occupy about 2500 liters of volume. The high pressure in the tank therefore ensures that the diver has enough air to breathe while underwater for extended periods of time.

An ion with an atomic number of 34 and 36 electrons has a __________ charge

Answers

negative charge. The atomic number of 34 tells you immediately that the ion has 34 protons. Since it also has 36 electrons, it has 2 more electrons than needed to be neutral. So the ion will have a negative charge since electrons have a negative charge.

Final answer:

A Selenium ion (Se) with an atomic number of 34 and 36 electrons has a charge of -2, making it a negatively charged ion, Se²⁻.

Explanation:

An ion with an atomic number of 34 and 36 electrons has a negative two charge. An atomic number of 34 corresponds to the element Selenium (Se). Normally, selenium has 34 electrons, equal to its number of protons, making it neutral. However, when it gains 2 additional electrons to have a total of 36, it becomes an anion (a negatively charged ion) with a charge of -2, denoted as Se²⁻. This gain in electrons increases its negative charge relative to its positive charge, leading to its overall negative charge.

What is the mass of 5.80 × 1023 atoms of silver (Ag)?

Answers

1) Divide the no. of atoms by Avogadros's no.
2) You will get no. Of moles . Now multiply the no. Of moles with the molar or molecular mass of Ag
3)The mass of Ag will be found ..
Final answer:

The mass of 5.80 × 10^23 atoms of silver (Ag) can be found by first determining the number of moles of Ag this represents using Avogadro's number, then using the atomic mass of Ag to calculate the mass.

Explanation:

To find the mass of 5.80 × 1023 atoms of silver (Ag), we use Avogadro's number, which states there are 6.022 × 1023 atoms in one mole of any substance. First, we find the number of moles in 5.80 × 1023 atoms of Ag by dividing the given number of atoms by Avogadro's number.

Moles of Ag = (5.80 × 1023) / (6.022 × 1023)

Next, we calculate the mass of these moles of Ag using atomic mass of silver (107.87 g/mol).

Mass of Ag = Moles of Ag x Atomic mass of Ag

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On a mission to a newly discovered planet, an astronaut finds gallium abundances of 60.11 % for 69ga and 39.89 % for 71ga. what is the atomic mass of gallium for this location? the mass of 69ga is 68.7200 amu . the mass of 71ga is 70.9200 amu .

Answers

Final answer:

The atomic mass of gallium on the newly discovered planet is calculated to be 69.65704 amu, based on the given abundances and masses of its isotopes 69ga and 71ga.

Explanation:

To calculate the atomic mass of gallium based on the given abundances and masses of its isotopes,  we can use the formula: Atomic mass = (% abundance of isotope 1 × mass of isotope 1) + (% abundance of isotope 2 × mass of isotope 2), where percentages are converted into decimal form. Given, 69ga has an abundance of 60.11% (or 0.6011) and a mass of 68.7200 amu, and 71ga has an abundance of 39.89% (or 0.3989) and a mass of 70.9200 amu.

The calculation is therefore: (0.6011 × 68.7200 amu) + (0.3989 × 70.9200 amu).

This equals: 41.359532 amu + 28.297508 amu = 69.65704 amu.

Therefore, the atomic mass of gallium for this location is 69.65704 amu.

The atomic mass of gallium on the newly discovered planet is approximately 69.6077 amu.

To determine the atomic mass of gallium on the newly discovered planet, the contributions of both isotopes ⁶⁹Ga and ⁷¹Ga must be considered based on their abundances and atomic masses.

⁶⁹Ga abundance: 60.11%

⁷¹Ga abundance: 39.89%

Mass of ⁶⁹Ga: 68.7200 amu

Mass of ⁷¹Ga: 70.9200 amu

Convert abundances from percentages to decimals:

⁶⁹Ga : 60.11% = 0.6011

⁷¹Ga : 39.89% = 0.3989

Calculation of atomic mass:

Atomic mass = (fractional abundance of ⁶⁹Ga × mass of ⁶⁹Ga) + (fractional abundance of ⁷¹Ga × mass of ⁷¹Ga)

[tex]\text{Atomic mass} &= (0.6011 \times 68.7200 \, \text{amu}) + (0.3989 \times 70.9200 \, \text{amu}) \\[/tex]

Atomic mass = 41.3092 amu + 28.2985 amu

Atomic mass = 69.6077 amu

Identify three physical properties of ionic compounds that are associated with ionic bonds

Answers

exist as crystals
high melting and boiling points 
hard,rigid, and brittle
conductive when dissolved or molten

Final answer:

Three physical properties of ionic compounds associated with ionic bonds are high melting and boiling points, brittleness, and poor conductivity in the solid state.

Explanation:

Three physical properties of ionic compounds that are associated with ionic bonds are:

High melting and boiling points: Ionic compounds have strong ionic bonds which require a large amount of energy to break. Thus, they have high melting and boiling points.

Brittleness: Ionic compounds are generally hard, but when a force is applied, the layers of ions shift causing ions of the same charge to come near each other. The repulsive forces between like-charged ions cause the crystal to shatter.

Poor conductivity in the solid state: Due to the strong ionic bonds, ions are unable to move freely in the solid state, making them poor conductors of electricity.

Why is water considered a pure substance, while milk is not?

Answers

Answer : The water is made up of only one type of molecule and milk is made up of different type of molecules.

Explanation :

Pure substance : It is defined as a substance that is made by the combination of only one type of atom or only one type of molecule.

The pure substance can not be separated by simple physical methods.

Heterogeneous mixtures : It is a mixture that appears non-uniformly throughout the solution and the particle size or shapes are also different.

Homogeneous mixtures : It is a mixture that appears uniformly throughout the solution and the particle size or shapes are not different.

As water is considered as a pure substance because it is made up of only one type of molecule that means it is made up of two hydrogen atoms bonded to a single oxygen atom.

While on the other hand, milk is considered as a mixture because various substances (fats, proteins, water, lipids etc..) are present in milk. So, it is not a pure substance.

Water is considered a pure substance, while milk is not as water is made up of elements and milk is made up of mixture of compounds.

Pure substances are substances that are made up of only one kind of particle and have a fixed or constant structure.

Pure substances are further classified as elements and compounds.An element is a substance that consists of only one type or kind of atom. An element is a pure substance as it cannot be broken down or transformed into a new substance even by using some physical or chemical means. Elements are mostly metals, non-metals or metalloids.

Thus, water is considered  to be a pure substance, while milk is not as water is made up of elements and milk is made up of mixture of compounds.

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Using your own words define a scientific law

Answers

A scientific law is a statement that is universally accepted and answers the "how?" question.

Hope this helps!

Which term is best defined as a measure of the amount of space a substance occupies?

Answers

Volume is the amount of space a substance occupies, mass is the amount of matter, and Density is mass divided by volume.
Final answer:

The term 'Volume' in physics defines the measure of the amount of space that a substance occupies. It is used across various equations and calculations in the study of physical sciences. Its applicability ranges from classroom learnings to real-life situations.

Explanation:

The term that best defines the measure of the amount of space a substance occupies is Volume. Volume is a fundamental concept in physical sciences and is often used in equations and calculations. Whether the substance is a liquid, a gas, or a solid, you can calculate its volume. For instance, the volume of a solid box is calculated by length * width * height, and the volume of a liquid in a cylindrical container would be calculated with π*radius2*height. Knowledge of volume can apply to real-life situations beyond the classroom as well, like working out how much water you can fit in a pool, or how much air is in your bedroom.

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is rust forming on metal a chemical or physical change

Answers

the answer is a chemical change.
Final answer:

The formation of rust on metal is a chemical change because it involves new chemical bonds forming between iron and oxygen, resulting in the new substance, iron oxide or rust.

Explanation:

Is rust forming on metal a chemical or physical change? The formation of rust on metal is a chemical change. Rust is iron oxide, a different kind of matter than the iron, oxygen, and water present before the rust formed. The reaction that takes place is Fe + O₂ → Fe₂O₃, indicating that new chemical bonds have been formed, leading to the creation of a new substance. Color change is a common indicator of a chemical change, and in the case of rust formation, we observe the metal transitioning from its original color to an orange or red flaky substance. This transformation is due to the chemical reaction of iron with oxygen, commonly referred to as corrosion. Rusting is an expensive problem, causing significant financial impact due to the damage it causes to metal structures and items.

What would be the result of changing the number of each subatomic component on an atom?

Answers

An atom is comprised of 3 subatomic components. These include; protons, neutrons, and electrons. Changing the no. of protons will cause the atom to become another element. Changing the no. of neutrons will cause the atoms mass number to change. Lastly changing the no. of electrons will cause the atom to become a charged particle known as an ion.
Final answer:

Changing the number of protons in an atom changes its element, altering neutrons results in isotopes with the same chemical properties, and changing electrons affects the atom's charge and reactivity without altering its identity.

Explanation:

The result of changing the number of each subatomic component -- protons, neutrons, and electrons -- on an atom would have different consequences:

Changing the number of protons would change the atomic number, thereby changing the element itself. This process, known as a nuclear reaction, can result in elements with vastly different chemical properties.Adding or removing neutrons from an atom's nucleus results in isotopes of the same element. These isotopes have the same atomic number but different mass numbers due to the change in the number of neutrons. This alteration does not affect the chemical properties of the element.Altering the number of electrons in an atom changes its charge but not its identity. This can affect the chemical reactivity and bonding characteristics of the atom.

For instance, carbon will always be carbon as long as it has 6 protons, regardless of the number of neutrons (isotopes) or electrons (ions) it may have. However, the physical and chemical properties of atoms and the resulting elements can vary greatly depending on the number and arrangements of subatomic particles.

The number of which subatomic particle designates the atomic number of an element? select one:

Answers

the number of protons always equals the atomic number of an element.
The atomic number is determined by the number of protons in the atom. 

Neutrons can vary the mass of atoms of the same element; atoms of the same element with the different atomic masses are called isotopes

Electrons do not contribute a meaningful amount of mass to an atom, and only vary the charge of the atom. A charge atom is an ion.

How do you figure out the number of protons electrons and neutrons of 7Li+

Answers

For I-
protons = atomic no. = 53
neutrons = atomic mass - atomic number = (127 - 53) = 74

Since it has a negative positive charge, to find the no. of electrons, we need to add 1 to the number of protons, i.e.
electrons = (53 + 1) = 54

And,
For, Li+

protons = atomic no. = 3
neutrons = atomic mass - atomic number = (7 - 3) = 4

Since it has a positive charge, to find the no. of electrons, we need to subtract 1 form the number of protons, i.e.
electrons = (3 - 1) = 2
Final answer:

The number of protons, electrons, and neutrons in the 7Li+ ion can be determined by its atomic number and mass number. It has 3 protons, 3 electrons, and 4 neutrons.

Explanation:

Lithium-7 has three protons and four neutrons within its nucleus, making its mass number 7 and its atomic number 3. This means there are 3 protons, 3 electrons, and 4 neutrons in the 7Li+ ion.

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How does a solution of ph 7 compare to a solution of ph 10?

Answers

Ph is the measure of solution acidity or alkalinity. The effective strength of an acid or base in solution, or acidity, will vary with both the intrinsic strength of the acid or base itself and the amount of the acid or base which is present in the aqueous solution. It is convenient to classify aqueous solutions according to their pH. If the pH of a solution is less than 7, the solution is called acidic; if the pH is about 7, the solution is neutral; if the pH is greater than 7, the solution is alkaline. Therefore pH 10 is more alkaline than pH7

You have 1 liter of a freshly prepared 0.1 m sucrose (molecular mass 342) solution, which means

Answers

The answer is that it means there are 6.02 x 10²² molecules of sucrose are present in the solution.
Because 1 mole of solution contains Avogadro's number of molecules in a solution that is 6.02 x 10²³ molecule.
So.
0.1 m sucrose solution = 0.1 x 6.02 x 10²³ = 6.02 x 10²² molecules

Why is it impossible to contain gaseous iron in a glass container?

Answers

In its standard temperature and pressure, iron would exist as a solid. Therefore to make it into gas, we must heat it beyond its boiling point which is around 2,862°C. At that temperature, ordinary glass container would readily melt. Hence, it is impossible to contain gaseous iron in a glass container.

Which of the following will cause an increase in the weight of an object?

A: Increase in the gravitational pull
B: Decrease in the gravitational pull
C: Increase in the temperature of the object
D: Decrease in the temperature of the object

Answers

A because an increase in weight has the same effect that increasing the gravitational pull will. They both make the object drop faster. 
A I believe I searched this up so no credit

5. How does the abundance of isotopes of an element relate to its average atomic mass?

Answers

The average atomic mass of an element is the mass you see on a periodic table for that element. It is a weighted average of all the isotopes for that element based on the percentage of how much of an element is a specific isotope and the mass of each isotope. If an element has an abundance of isotopes, the isotopes with the highest and lowest masses may be more significantly different than the average atomic mass for elements with fewer isotopes.

Which of these is an acid?

Check all that apply.

A. HCl
B. H2SO4
C. NaOH
D. HNO3

Answers

A. HCl , this is the answer.

Selenous acid is diprotic it can react with sodium hydroxide in steps write equations (in molecular form) for the two steps of the reaction

Answers

The chemical formula for the selenous acid is H2SeO3. Its reaction with sodium hydroxide, which has a chemical formula of NaOH, will be a neutralization reaction forming a salt and water. This is depicted below.

             H2SeO3 + NaOH à Na2SeO3 + H2O

If we are to balance the chemical reaction then, we will have a final answer of,

        H2SeO3 + 2NaOH à Na2SeO3 + 2H2O

What are some similarities amongst elements within a group?

What are some similarities amongst elements within a period?

Answers

Elements in the same group have the same amount of electrons.

Elements in the same period have the same amount of atomic orbits.

Hope this helps!

Elements in the same group have similar valence electron configurations leading to similar chemical properties, while elements in the same period have the same number of electron shells but differing valence electrons causing changes in atomic radius and ionization energy.

Similarities Amongst Elements Within a Group

Elements within a group, also known as a column on the periodic table, share several important similarities. These elements typically have the same number of electrons in their outermost or valence shell, leading to similar chemical properties. For instance, the alkali metals in Group 1 all have one electron in their outermost shell and are very reactive, especially with water. As you move down a group, atomic size and reactivity tend to increase due to the addition of more electron shells.

Similarities Amongst Elements Within a Period

A period is a horizontal row on the periodic table. Elements in the same period have the same number of electron shells but differ in the number of electrons within the valence shell. Moving from left to right across a period, the atomic radius usually decreases, and ionization energy increases as electrons are added to the same shell and protons to the nucleus, creating a stronger pull on the electrons.

The organization of the periodic table facilitates the understanding of these trends, with elements sorted by increasing atomic number and structured in periods and groups to reflect periodic trends such as atomic size, reactivity, and ionization energy. This organization reflects the periodic recurrence of elements with similar properties and allows chemists to predict chemical behaviors based on position within the table.

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