What would happen if we didn't have mercury (the element)

Answers

Answer 1
Nothing much but We would definitely become the second planet in the solar system
Answer 2
The element mercury is often used for various devices such as, (fluorescent) lamps, barometers, and dental fillings. So I’d we didn’t have that element I suppose there would be less of that.

Related Questions

Latent heat of vaporization of a substance, if 100 J converts 6 g of the substance from liquid to gaseous state, would be

Answers

We could use the following equation in order to solve this problem:

Replacing our values, we obtain:

The answer is 16.7J/g.

___CU(s) + ___HBr(s) -------> ?

Answers

Answer: This reaction will not occur, therefore it cannot be balanced.

Only certain metals reactive enough are able to replace a hydrogen on an acid. This only occurs if the metal is higher on the activity series than hydrogen. In this case Copper is not higher than Hydrogen on the activity series, thus it cannot replace the hydrogen. Meaning No Reaction.

Sort the Physical Properties of Metals, Nonmetals, and Metalloids I will mark the brainiest

Answers

Answer:

Metals: Malleable, Conductor, Ductile, Luster
Nonmetals: Insulator, Brittle, Dull

Metalloids: Properties of BOTH Metals & Nonmetals

a metal and nonmetal that have a large difference in electronegativity values will experience what type of bond?

Answers

Answer:

Explanation:

In a diatomic molecule with two identical atoms, there is no difference in electronegativity, so the bond is nonpolar or pure covalent. When the electronegativity difference is very large, as is the case between metals and nonmetals, the bonding is characterized as ionic.

Answer:

ionic

Explanation:

When the electronegativity difference is very large, as is the case between metals and nonmetals, the bonding is characterized as ionic.

Why is downward displacement of water
unsuitable for collecting a gas that dissolves in
water?

Answers

Answer:

Answer Down below

Explanation:

Question answered: Why is downward displacement of water unsuitable for collecting a gas that dissolves in water?

: The reason why downward displacement of water unsuitable is bc  downward displacement of water as it is less denser than water. meaning it comes out of the surface water, that means it is insoluble in water so it does not dissolve in water.

Hope this helps

~~Wdfads~~

The answer is down below

the half-life of radium-225 is 14.9 years. what is the annual decay rate? express the result to four decimal places.

Answers

The annual decay rate for the radium-225 having a half life of 14.9 years is 0.0465 year⁻¹

How do i determine the decay rate?

We know that half life is the time taken for half of a substance to decay.

The half life of a substance is related to the decay rate according to the following formula:

Decay rate (λ) = 0.693 / Half life (t½)

λ = 0.693 / t½

With the above formula, we can obtain the decay rate as illustrated below:

Half-life radium-225 (t½) = 14.9 yearsDecay rate (λ) =?

Decay rate (λ) = 0.693 / Half life (t½)

Decay rate (λ) = 0.693 / 14.9 years

Decay rate = 0.0465 year⁻¹

Thus, we can conclude that the decay rate is 0.0465 year⁻¹

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The difference between Ionic bond and Covalent bond.

Answers

The difference between an ionic bond and a covalent bond is that ionic bod are made regardless if atoms are metal or nonmetal, while covalent bonds always are generated between non-metals atoms.

What is a covalent bond?

A covalent bond is a chemical bond between two atoms that are non-metals such as between hydrogen and oxygen atoms, while ionic bonds involve metals and non-metal atoms one example of this type of bond is the NaCl sodium chloride.

Therefore, with this information, we can conclude that ionic and covalent bonds are distinct due to the atoms that form the chemical bond.

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What is the formula for ethanol according to this illustration?



Question 10 options:

A.C2OH6
B.COH2
C.C2O
D.C2OH

Answers

Answer:

[tex]{ \sf{C _{2} H_{6} O}}[/tex]

what are some importance of density?

Answers

Answer:

allows us to determine what substances will float and what substances will sink when placed in a liquid

Explanation:

Generally, substances float so long as their density is less than the density of the liquid they are placed in.

Why is the atomic radius trend related to the electronegativity trend?

Answers

Here is the Answer I Hope this Helps:-

The closer the electrons are to the nucleus, the more tightly they are bound, thus increasing the electronegativity of the atom.

suppose 15.00 ml of a solution of a monoprotic strong acid of unknown concentration requires 12.80 ml of a solution of 0.250 m naoh to reach the end point. what is the molarity of the strong acid?

Answers

The molarity of the strong acid is 0.21 M.

What is a strong acid?

Recall that a strong acid is an acid that is able to ionize completely in solution. So we now know that If we have an acid that can be able to break up in solution to give us the hydrogen ions and the hydroxide ions then what we have is a strong acid. On the other hand, a weak acid is an acid that is unable to ionize completely when it is in solution.

Having gotten our definitions right, we know that;

CA = molarity of the acid

CB = molarity of the base

VA = volume of the acid

VB = volume of the base

NA = number of moles of the acid

NB = number of moles of the base.

Given what we now have here;

CAVA/CBVB = NA/NB

CAVANB = CBVBNA

CA = CBVBNA/VANB

CA = 0.250 * 12.80 * 1/ 15.00 * 1

CA = 0.21 M

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Which can be excluded from a list of objects in the solar system?(1 point)


planet


constellation


asteroid belt

sun

Answers

Answer:

The answer is a constellation

An electrical drill has 100 J of chemical energy. Of the 100 J, 45 J are transformed into kinetic energy and 20 J are transformed into sound. The remaining energy is given off as thermal energy.


What is the thermal energy of the drill?

J

Answers

As per law of conservation of energy, the thermal energy of the drill is 35J.

Total energy = Kinetic energy + Sound energy+ Thermal energy

100 = 45+20+ Thermal energy

Thermal energy = 35J

The law of conservation of energy states that energy can neither be created nor destroyed -only converted from one shape of power to any other. because of this a system continually has the same amount of energy, until it's introduced from the out of doors.

The longer we go without making large modifications, the greater the chance of global warming and weather exchange grow to be in our daily lives. whilst we burn fossil fuels, they invent a terrific quantity of greenhouse gasoline emissions.

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Answer:

The answer above is correct! It's 35J :)

Explanation:

Just did it on Edge!

Hope this helped - brainliest would be very much appreciated!

Have a great day :D

Why do Alkaline batteries eventually stop working & why cant they be recharged?

Answers

Answer:

Alkaline do not conduct electricity so they can't be recharged

Explanation:

base don't conduct electricity

Consider the following reaction at eqilibrium. What effect will removing H2O have on the system?

2 H2S+3 O2---> 2 H2O+ 2 SO2

a.The reaction will shift to the left
b. No change will be observed
c. The equilibrium constant will decrease
d. The equilibrium constant will increase
e. The reaction will shift in the direction of the products

Answers

The correct answer is option e, which says, The reaction will shift in the direction of the products on removing H₂O from the system.

According Le Chatelier's principle,

If the equilibrium of a chemical reaction system is disturbed by changing any property of the system, then the reaction will shift itself towards a that side which will reestablish the equilibrium of the system.

So, in the reaction,

2H₂S + 3O₂ → 2H₂O + 2SO₂

If we remove H₂O from the system, then the concentration of the product side will become less and the equilibrium of the reaction will get disturbed.

To compensate for the loss of the concentration of the product, the system will need more amount of H₂O to establish the equilibrium.

So, to make more products, more reactants would react with each other to form more amount of H₂O.

It means the reaction will shift towards right or we can say the reaction will shift towards the products side.

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(20) SEP Engage in Argument Of all the noble gases, helium and neon, are completely
inert, as they do not form any chemical compounds. However, some of the heavier
noble gases, such as Kr, Xe, and Rn, are capable of forming a few chemical
compounds. Using periodic properties and electron configurations, explain how
this can occur moving down this group of elements.

Answers

Answer:

As you move down the periodic table, atomic radii increase (more shells in the electron configuration), and the first ionization energy decreases. Electrons of the outermost shell of the atom are further away, and their attraction to the nucleus, therefore, decreases, making it easier for elements with high electronegativity such as Fluorine to form compounds with them.

Which Sl unit is most appropriate for measuring density

Answers

Answer:

g/cm^3

Explanation:

kg/m^3 is not most used for measuring density

1.) what is the name of NaF formula

Answers

Answer:

[tex]\text{Sodium Fluoride}[/tex]

Explanation:

Here, we want to get the name for the given chemical formula

Looking at the formula, we look at the names of the element

The names are sodium and fluorine

We write the name of the metal element first, then the non-metal atom

Thus, we have it as

[tex]\text{Sodium Fluoride}[/tex]

For sn1 solvolysis of t-butyl chloride, rank the solvents from fastest reaction to slowest reaction.

Answers

Fastest: water.

Slowest: Acetic acid

What is sn1 reaction?

In organic chemistry, the SN1 reaction is a substitution reaction. Its name comes from the Hughes-Ingold symbol that shows how the reaction works. "SN" stands for "nucleophilic substitution," and "1" means that the step that controls the rate is unimolecular.

What is solvolysis?

Solvolysis is a chemical reaction in which the solvent, such as water or alcohol, is one of the reagents and is present in excessive amounts.

Hence, the Fastest: water formic acid methanol ethanol acetone

Slowest: Acetic acid

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Which statement best describes the effect of low ionization energies and low electronegativities on metallic bonding?

Answers

The  statement best describes the effect of low ionization energies and low electronegativities on metallic bonding is : Delocalization of the valence electrons is simple.

What is  ionization energy ?

Ionization energy, also known as ionization potential, is the amount of energy needed to remove an electron from an isolated atom or molecule in physics and chemistry.

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how many moles of aluminum are necessary to generate 4.88 moles of aluminum oxide, according to the following equation:

4Al+3O2→2Al2O3

Answers

9.76 mol  moles of aluminum are necessary to generate 4.88 moles of aluminum oxide.

4.88 moles Al2O3 (4 moles Al / 2 moles Al2O3) = 9.76 moles Al

1 mol = 6.02214 ×[tex]10^{23}[/tex] particles

The mole is the amount of stuff in a system that includes the same number of atoms as there are in 0.012 kilogrammes of carbon 12; it is represented by the symbol "mol".

The Avogadro constant's numerical value is fixed to be precisely 6.022 141 29 1023 when it is expressed in the SI unit mol-1. The mole, symbol mol, is the SI unit of substance for an elementary entity that is specified, which may be an atom, molecule, ion, electron, any other particle, or a specified group of such particle.

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what is the change in internal energy (in j) of a system that absorbs 0.335 kj of heat from its surroundings and has 0.966 kcal of work done on it? give your answer in scientific notation.

Answers

The change in the internal energy is 4.395 kj

What is internal energy?

Rising temperature and changes in state as well as phase from solid state to liquid as well as liquid to gas cause an increase in internal energy. Planetary bodies could be viewed as a fusion of heat engines and heat reservoirs. Internal energy E is stored in the heat reservoirs, and some of it is converted into different kinds of mechanical, electrical, and chemical energies by the heat engines. The sum of the kinetic energy brought on by the molecule's movement and the potential energy brought on by the vibrational motion as well as electric energy of atoms inside of molecules makes up the internal energy U of the a system or a body with clearly defined boundaries. The energy contained in every chemical bond is also referred to as internal energy.

Given;

Q = +0.335 kj

W = - 0.966 kcal = -966 cal = - 4.04kj

del E int = +0.355 - [-4.04]

= 4.395 > 0

{Increase in internal energy}

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PLEASE HELP PLEASE PLEASE
Solid Strontium hydroxide reacts with Acetic acid to form…?

Follow these steps:
a. Identify the type of reaction
b. Predict products for formula
c.balance the equation

Answers

In aqueous solution:

CH3COOH + Ba(OH)2 —-> 2 CH3COO- + Ba2+ + 2 H2O

The product is barium acetate.

in a second trail, the student accidentally added more naoh(aq) to the flask than was needed to reach the end point, and then recorded the final volume. would this error increase, decrease, or have no effect on the calculated acid concentration for the second trial? justify your answer.

Answers

Error increase on the calculated acid concentration for the second trial.

What is titration?

By comparing an unknown solution to one with known concentration, a titration can be used to determine the concentration of the unknown solution. The titrant (the known solution) is normally added from a burette to a known volume of the analyte until the reaction is complete (the unknown solution).

If a little more NaOH solution was added, the color of the solution in the flask would become noticeably darker. Due to its sudden appearance, the endpoint must be avoided at all costs. A final volume is read from the burette once the titration reaches the endpoint. A final volume is read from the burette once the titration reaches the endpoint.

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in what year and location did direct measurements begin to be taken of earth's atmospheric carbon dioxide? has co2 been increasing or decreasing since then?

Answers

C. David Keeling of the Scripps Institution of Oceanography started monitoring at a NOAA weather station in March 1958. In May 1974, NOAA began conducting its own separate and supplementary CO2 measurements.

In 1950, why did CO2 levels rise?

Then, in the 1950s, a sharp rise in the burning of fossil fuels—coal for power and steel production, oil for transportation, and natural gas for heating—dramatically boosted the rate of CO2 emissions into the atmosphere.

Since observations started in 1958, the amount of carbon dioxide (CO2) in the air at the Mauna Loa observatory in Hawaii has grown by more than 25%.

The average global CO2 concentration varied during the 800,000 years for which we have records, between 170 ppm and 280 ppm. Things changed quickly as people began to consume fossil fuels throughout the industrial age. The amount has only surpassed 300 ppm during the industrial period.

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The station's average monthly carbon dioxide observations since 1960 are depicted in his graph as parts per million. (ppm).

What the body experiences from carbon dioxide?

Numerous health effects from CO2 consumption might be observed. These indications can include a coma, hypoxia, convulsions, sweating, a tingling or pins-and-needles sensation, migraines, disorientation, agitation, a tingling and fasteners feeling, and difficulty breathing.

How is carbon dioxide produced?

Carbon dioxide (CO2) is produced from both natural (such as volcanoes, animal breath, and plant degradation) as well as anthropogenic sources (primarily the burning of fossils fuels like coal, oil and natural gas to generate energy).

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What is the ratio of argon-40 to potassium-40 two half-lives
after the rock has formed?

Answers

The ratio of argon-40 to potassium-40 two half-lives after the rock has formed is 7:1.

The half-life of a radioactive compound tells us the time needed for half of the atoms of any compound to go through the radioactive decay.

We know that, half-life of potassium-40 is 1.25 billion years because this is how long it takes for half of the number of atoms which are present in the sample to decay to argon-40.

The half-life of potassium-40 which decays by the beta emission is 1.28 × 10⁹ years. The half-life of potassium-40 which decays by the positron emission is 1.19 × 10¹⁰ years.

40 K which naturally occurs decays to the stable 40 Ar which is 11.2%, It happens by the capture of electron and by positron emission. It gets decayed to stable 40 Ca (88.8%) by emission of negatrons. Half-life of 40 K 1.25 x 10⁹ years.

The dating method of potassium-argon is specifically useful in determining the Lava age.

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Most air-conditioned
rooms are set to a temperature of about 22°C.
Human body temperature is 37°C. Why don't
people in an air-conditioned room come to
thermal equilibrium with the room?

Answers

Just its "target temperature," not the temperature of the wind it blew, is what you select as the "air conditioning temperature."

When the air conditioner is set to "23°C cooling," it will blast air that is cooler than 23°C.

(For instance, no matter what temperature you set your air conditioner to, whether it is 18°C or 28°C, it must always be 13°C when cooling.) Until the temperature control determines that the current temperature is below 23°C, it won't stop operating.

When the setting is set to "23°C heating," however, the air conditioner will blow a 40°C hot breeze until the temperature control detects a temperature of 23°C, at which point it will shut off.

What you choose as the "air conditioning temperature" is just its "target temperature," not the temperature of the wind it blew.

The air conditioner will blow air that is colder than 23°C when it is set to "23°C cooling."

(For instance, your air conditioner must always be set to 13°C when cooling, regardless of whether the temperature is 18°C or 28°C.) The temperature control won't turn off unless it determines that the ambient temperature is below 23°C.

However, when the temperature control is set to "23°C heating," the air conditioner will produce a 40°C hot breeze until it registers 23°C, at which time it will turn off.

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Alkali metals are highly since they easily to form ion

Answers

It is a true statement that the alkali metals are highly reactive because they do form ions very easily.

What are alkali metals?

The alkali metals are the elements tat are found in group one. The elements in the group do not occur free in nature because they easily combine with other elements in such a way that they form compounds. This is why they have a very negative values of electrode potential. The electrode potential has to do with the ease with which an electron can be lost from a metal as manifested in the degree of negativity of the value of the electrode potential of the particular element that is under consideration.

Recall that the elements that have a very negative value of electrode potential does form an ion easily and as such they can loose or eliminate  the outermost single valence electron very much easily compared to the other elements.

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Missing parts;

Alkali metals are highly reactive since they easily form an ion.

True/false

Select 2

Which of these are extensive properties?

1.a substance has a volume of 5.4 mL

2.a substance is very malleable (it can be hammered into a shape)

3.a substance has a melting point of 40°C

4.a substance has a mass of 1.25 g

5.a substance has a density of 4.13 g/cm³

Answers

1&4
Extensive properties means that the outcome or some type of measurement in dependent on the amount of the substance/sample.
Volume is dependent on amount of substance and so is mass

What is the answer to the question???

Answers

Answer:

7 valence electrons.

would be needed

7

Fluorine and neon have seven and eights dots
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