To calculate the atoms of an element in a given molecule, we need to multiply stoichiometry by the number that is written on the foot of that element. Therefore, the balanced equation is
CH[tex]_4[/tex]+4S[tex]\rightarrow[/tex]CS[tex]_2[/tex]+2H[tex]_2[/tex]S
What is Balanced equation?Balanced equation is the one in which the total number of atoms of a species on reactant side is equal to the total number of atoms on product side. The mass of the overall reaction should be conserved. There are so many types of chemical reaction reaction like combination reaction, displacement reaction.
The skeletal equation is
CH[tex]_4[/tex]+S[tex]\rightarrow[/tex]CS[tex]_2[/tex]+H[tex]_2[/tex]S
The number of carbon atoms on reactant and product side is 1, so C is balanced.
The number of hydrogen atoms on reactant side is 4 while on product side it is 2, so to balance we need to multiply H[tex]_2[/tex]S by 2.
CH[tex]_4[/tex]+S[tex]\rightarrow[/tex]CS[tex]_2[/tex]+2H[tex]_2[/tex]S
The number of sulfur atoms on reactant side is 1 while on product side it is 4, so to balance we need to multiply S by 4.
CH[tex]_4[/tex]+4S[tex]\rightarrow[/tex]CS[tex]_2[/tex]+2H[tex]_2[/tex]S
Therefore, the balanced equation is
CH[tex]_4[/tex]+4S[tex]\rightarrow[/tex]CS[tex]_2[/tex]+2H[tex]_2[/tex]S
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Hi, can someone please help me find out what the compound names are for each of these.. thank you!! kindly appreciate it (:
The organic nomenclature of the condensed structural compound is 1. Octane.
1. Octane
2. But - 2- ene
3. ethylene
4. Penatne
5. But - 2 - yne
6. hept 1 - yne
7. Hexx-2 - ene
8. But -1 - yne
In chemical nomenclature, the IUPAC nomenclature of organic chemistry is a method of naming natural chemical compounds as recommended by using the global Union of natural and applied Chemistry. it is posted inside the Nomenclature of Organic Chemistry.
The name of the organic compound is written out with the substituents in alphabetical order observed via the bottom call (derived from the wide variety of carbons in the discern chain). Commas are used among numbers and dashes are used between letters and numbers. There are no spaces inside the call.
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The bond enthalpy of F2(g) is 156.9 kJ/mol. Calculate ΔH o f for F(g).
The bond enthalpy of F2(g) is 156.9 kJ/mole. The ΔH o f for F(g) is 78.5 kJ/ mole.
What is bond enthalpy?Bond enthalpy is defined as the amount of energy needed to dissolve one mole of a certain type of bond between two gaseous atoms. In general, the amount of energy acquired or lost during a reaction is comparable to the process's change in enthalpy.
Given the bond enthalpy of F2 = 156.9 kJ/ mole
The ΔH can be calculated as
ΔH = bond enthalpy of F2 / 2
ΔH = 156.9 kJ/mole / 2
ΔH = 78.5 kJ/mole
Thus, the bond enthalpy of F2(g) is 156.9 kJ/mole. The ΔH o f for F(g) is 78.5 kJ/ mole.
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The sun, moon, and planets of the solar system are shown with their orbits.
The loops in Ptolemy’s model, and those shown on the video, are called motion.
This phenomenon is caused by Earth’s orbit than those of other planets.
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Answer: 1 one is B 2 one is C 3 one is A
The sun, moon, and planets of the solar system are shown with their orbits.
The loops in Ptolemy’s
1 one
A retrograde
B geocentric
C retrograde
model, and those shown on the video, are called
2 one
A heliocentric
B geocentric
C retrograde
motion.
This phenomenon is caused by Earth’s
3 one
A faster
B slower
C larger
orbit than those of other planets.
Can a chain reaction occur with only one radioactive nucleus? Explain why or why not
Yes, a chain reaction can only be carried out using just one atom.
What is a chain reaction?We know that a chain reaction has to do with the type of reaction in which there is a a continuous self sustaining reaction. In this kind of reaction, there is one radioactive material that is bombarded by a particle such as a neutron. The bombardment of the particle would make the a cycle of reactions to begin which is able to sustain itself.
Given the fact that we only need to have a single radioactive atom that is bombarded for the process of radioactivity to occur tell us that it is a process that requires just one atom.
Take for instance, all we need is one Uranium fuel that would be bombarded with neutrons in order to have a chain reaction that involves uranium.
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What is the common use of minerals?
Answer:
Make Li-Ion batteries.
Produce commercial electric vehicles.
Create underwater subsea electrification.
Power telecommunication devices.
Explanation:
Minerals are essential raw materials in our daily lives, and are vital for economic, social and technological development. For example, in the following:
Agriculture: Phosphate rock, potash and lime are used in agricultural fertilisers and other mineral products are used to improve soil. The water you drink uses minerals to make it clean.
Construction: About 60 tonnes of aggregate are used to build an average house in the UK. If we include the associated infrastructure, this can be as high as 400 tonnes.
Minerals are used in building houses, schools, libraries, hospitals, offices and shops. Buildings use a wide range of minerals:
iron (as steel) in the framework of large building,
clay in bricks and roofing tiles,
slate for roofing tiles,
limestone, clay, shale and gypsum in cement,
gypsum in plaster,
silica sand in window glass,
sand and gravel and crushed rock as aggregates for fill and in concrete,
copper for plumbing and wiring,
clays for bathroom fixtures and fittings and tiles,
paint may include pigments, extenders and fillers from mineral sources.
Answer: toothpaste
Explanation:
A sample of grape juice has a hydroxide ion concentration of 1.4 × 10-10 M. Is the grape juice more or less acidic than a sample of orange juice that has a hydronium ion concentration of 1.8 × 10-4 M? To compare the acidity of the orange juice and grape juice, compare the hydronium ion concentrations and/or pH values of the two solutions. How does the acidity of a solution vary with hydronium ion concentration and pH?
For the grape juice, we get that the hydroxyl ion concentration is 1.4 ×10-10M.
Hence, pOH will be = -log[1.4*10⁻¹⁰] which is approximately 9.6.
Now the value of pH will be = 14-pOH = 14 - 9.6 = 4.4.
For the orange juice, we know that the H+ or hydronium ion concentration is 1.8 × 10-4 M.
Then, the value of the pH will be= -log[1.8*10⁻⁴]=3.7.
Thus from the above result, it is clear that the range juice has lower pH, hence it will be more acidic. While the grape juice will be less acidic.
The pH can either go up or down depending on the change in hydronium concentration. If the hydronium concentration increases, the pH decreases, causing the solution to become more acidic. This happens when an acid is introduced. As H+ ions dissociate from the acid and bond with water, they form hydronium ions, thus increasing the hydronium concentration of the solution. If the hydronium concentration decreases, the pH increases, resulting in a solution that is less acidic and more basic. This is caused by the OH^- ions that dissociate from bases
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The tarnish that forms on objects made of silver is solid silver sulfide; it can be removed by reacting it with aluminum metal to produce silver metal and solid aluminum sulfide according to the reaction,
3Ag2S(s) + 2Al(s) --> 6Ag(s) + Al2S3(s)
How many moles of aluminum are required to remove 0.253 mol of silver sulfide from a silver bowl? Include a road map that shows how you planned the solution.
0.506 moles of aluminum are required to remove 0.253 mol of silver sulfide from a silver bowl.
3Ag2S(s) + 2Al(s) --> 6Ag(s) + Al2S3(s)
2 moles of Al required to make 1 mole Al2S3
1 moles Al2S3= 2 moles Al
0.253 moles Al2S3 = 0.506 moles Al
The mole idea facilitates the measurement of a material's amount. When interacting with particles at the atomic (or molecular) level, it is acknowledged that even a single gram of a pure element has a significant number of atoms. The mole theory is widely used in this context. The most often used unit of measurement is the "mole," which is a count of many particles.
The number 6.02214076*1023, also known as the Avogadro constant, is frequently denoted by the letter "NA". One of the most fundamental entities that may be represented in moles are atoms, molecules, monoatomic and polyatomic ions, as well as other particles (such as electrons).
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This graph shows the displacements and times for the winner of
a horse race.
What was the average speed of the horse that won the race?
O 0.05 m/s
O 20 m/s
O 45 m/s
How many grams of a 12.5 % sugar solution contain 56.0 g of sugar?
Considering the definition of percentage by mass, 448 grams of a 12.5 % sugar solution contain 56.0 g of sugar
Percentage by massThe percentage by mass expresses the concentration and is defined as the ratio of the mass of the solute to the mass of the solution, expressed as a percentage.
The percentage by mass is calculated as the mass of the solute divided by the mass of the solution, the result of which is multiplied by 100 to give a percentage:
percent by mass= (mass of solute÷ mass of solution)×100%
Mass of sugar solutionIn this case, you know:
percent by mass= 12.5%mass of sugar= 56 gmass of solution= ?Replacing in the definition of percent by mass:
12.5%= (56 g÷ mass of solution)×100%
Solving:
12.5%÷ 100%= 56 g÷ mass of solution
12.5%÷ 100%= 56 g÷ mass of solution
0.125= 56 g÷ mass of solution
0.125× mass of solution= 56 g
mass of solution= 56 g÷ 0.125
mass of solution= 448 g
Finally, the mass of solution is 448 grams.
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A 32.00 mL sample of an unknown H3PO4 solution is titrated with a 0.140 M NaOH solution. The equivalence point is reached when 25.24 mL of NaOH solution is added.
The neutralization reaction is
H3PO4(aq)+3NaOH(aq)→3H2O(l)+Na3PO4(aq)
What is the concentration of the unknown H3PO4 solution?
Express the molarity to three significant figures.
The concentration of the unknown [tex]H_3PO_4[/tex] solution would be 0.0368 M
Stoichiometric problemThe equation of the reaction is as follows:
[tex]H3PO_4(aq)+3NaOH(aq)--- > 3H_2O(l)+Na_3PO_4(aq)[/tex]
The mole ratio of the [tex]H_3PO_4[/tex] solution to the NaOH solution is 1:3.
But 0.140 M, 25.24 mL of NaOH was used.
Recall that: mole = molarity x volume (in Liters)
Mole of 0.140 M, 25.24 mL of NaOH = 0.140 x 25.24/1000
= 0.0035336 mol
Following the mole ratio, the equivalent mole of [tex]H_3PO_4[/tex] would be:
0.0035336 /3 = 0.00117786666
Recall that: molarity = mol/volume (in Liters)
Molarity of 0.00117786666 mol, 32.00 mL [tex]H_3PO_4[/tex] = 0.00117786666/0.032
= 0.0368 M
In other words, the molarity of the [tex]H_3PO_4[/tex] solution to 3 significant figures is 0.0368 M.
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I need help with question 10 please
Answer:
Na,Ba,Ti on the same base placement on the periodic table.
Answer:
O,S,Se
Explanation:
Because they lose electrons and become an anion to become ionicly bonded and they are in the same period
Which element would be expected to have properties similar to antimony
Answer:
N, P, As, Bi, Mc
Explanation:
Similar chemical properties are usually found within the same column of the periodic table.
Antimony is Sb, which is in column 15.
Therefore all the elements in column 15, including N, P, As, Bi, Mc, should have similar chemical properties
Magnesium acts similar to sodium when forming an ionic bond in terms of losing or gaining electrons.
What is the most likely way in which an atom of magnesium (Mg) will satisfy the octet rule when it forms bonds?
The most likely way in which an atom of magnesium (Mg) will satisfy the octet rule when it forms bonds is by losing two electrons.
What is the octet rule?The octet rule is described as a chemical rule of thumb that reflects the theory that main-group elements tend to bond in such a way that each atom has eight electrons in its valence shell, giving it the same electronic configuration as a noble gas.
The octet rule is held responsible for the relative inertness of the noble gases and the chemical behavior of certain other elements.
Magnesium (Mg) will satisfy the octet rule when it forms bonds is by losing two electrons.
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Answer:
by losing two electrons
Explanation:
I got it right on edge 2023
good luck
Write the balanced NET ionic equation for the
reaction when AICIs and NaOH are mixed in
aqueous solution. If no reaction occurs, simply write
only NR. Be sure to include the proper phases for all
species within the reaction.
The balanced NET ionic equation is
Al(OH)3 ----> Al3+(aq) + 3OH(aq) (s)
When AICI and NaOH are combined in an aqueous solution, the following balanced NET ionic equation describes the reaction:
Al(OH)3 -----> Al3+(aq) + 3OH(aq) (s)
An exchange reaction occurs when AICI and NaOH are combined.
Al(OH)3(s) + 3NaCl(aq) -----> AlCl3(aq) + 3NaOH(aq) (1)
In this reaction, the ions Al+3 and Na+ exchange Cl- and OH- ions.
The total ionic equation must first be written in order to create the NET ionic equation:
AI(OH)3(s) + 3Na+(aq) + 3Cl(aq) + Al3+(aq) + 3Cl(aq) + 3Na+(aq) + 3OH (aq) (2)
Since the Al(OH), precipitates, we are unable to describe it as an ion because the aqueous solution does not allow for its dissociation.
The following is the net ionic equation for reaction
Al3+(aq) plus 3OH-(aq) leads to Al(OH)3(s)
The net ionic equation excludes all repeating ions from reactants and products. We eliminated the Na+ and Cl- ions from the net ionic equation because of this
The balanced net ionic equation is as follows:
Al(OH)3 ----> Al3+(aq) + 3OH(aq) (s)
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Just answer 11 and i will mark brainlest
A compound is formed by the combination of two or more different atoms. The white dot and black dot in the image are two different elements which combines together to form the compound AB.
What are compounds?Atoms are the basic units of every substances. Atoms combines to form molecules and molecules combines to form compounds. Thus compounds are chemical substances formed by the combination of different atoms.
For instance two oxygen atoms combines to form O₂ molecule similarly H₂, N₂ etc. can be formed from their respective atoms. When atoms of two different elements combines together they form compounds such as H₂O CO₂ etc.
These compounds can be formed through a specific type of chemical bonding such as ionic bonding, covalent bonding etc. The bond type depends on the nature of bonding atoms.
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What is the specific heat of a 95.01 g piece of an unknown metal that exhibits a 45.2°C temperature change upon absorbing 1870 J of heat?
The specific heat of a 95.01 g piece of an unknown metal that exhibits a 45.2°C temperature change upon absorbing 1870 J of heat is 0.44J/g°C.
How to calculate specific heat?The specific heat capacity of a metal can be calculated using the following:
Q = mc∆T
Where;
Q = quantity of heat absorbed or released (J)m = mass of substance (g)c = specific heat capacity∆T = change in temperature (°C)According to this question, a 95.01 g piece of an unknown metal exhibits a 45.2°C temperature change upon absorbing 1870 J of heat. The specific heat capacity can be calculated as follows:
1870 = 95.01 × c × 45.2
1870 = 4294.452c
c = 0.44J/g°C
Therefore, 0.44J/g°C is the specific heat capacity of the metal.
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To what volume should you dilute 35 mL of a 12 M stock HCl solution to obtain a 0.500 M
HCl solution?
Volume should you dilute 35 mL of a 12 M stock HCl solution to obtain a 0.500 M is 840 mL,
Given that :
Molarity of the solution M1 = 12 M
volume of the solution V1 = 35 mL
Molarity of the solution after the dilution M2 = 0.500 M
volume of the solution after the dilution V2 = ?
the dilution law states that :
M1 V1 = M2 V2
12 × 35 = 0.500 × V2
V2 = 840 mL
Thus, Volume should you dilute 35 mL of a 12 M stock HCl solution to obtain a 0.500 M is 840 mL.
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Why might a chemist add a buffer to a solution?
The buffer can keep the pH stable when small amounts of acid or base are added.
The buffer can magnify the changes to pH caused by adding small amounts of acid or base.
The buffer changes color to indicate the pH of the solution.
The buffer reacts with the acid or base in solution to form a useful product.
A chemist adds a buffer to a solution because the buffer can keep the pH stable when small amounts of acid or base are added. Thus, Option A is correct.
Buffer is a solution that resists the change in pH when acid or alkali is added in a small amount. Buffer is made up of weak acid and its conjugate base or a weak base and its conjugate acid. It absorbs H+ and OH- ions when strong acid or alkali is added so that the pH remains the same and neutralizes the added acid or alkali. While maintaining the pH of the solution, the pH of the buffer changes in a small amount.
Thus, a chemist adds a buffer to a solution to keep the pH constant when strong acid or base is added.
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This process combines the analytical techniques of both the mass spectrometer
and the gas chromatograph to separate chemical components of a sample
mixture, detect their presence or absence and then identify the compound.
Gas chromatography-mass spectrometry (GC-MS) is an analytical method that combines both the mass spectrometer and the gas chromatograph to separate the chemical components of a sample mixture to detect the presence and then identify the compound.
What is Gas chromatography-mass spectrometry?Gas chromatography-mass spectrometry (GC-MS) can be described as an analytical method that combines the characteristics of gas chromatography and mass spectrometry to identify various substances within a test sample.
Applications of GC-MS include fire investigation, drug detection, environmental analysis, and identification of unknown samples, including that material samples.
The GC-MS is made of two major blocks: the gas chromatograph and the mass spectrometer. The gas chromatograph uses a capillary column whose features regarding molecule separation depend on the column's dimensions as well as the phase properties.
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Consider a transition of the electron in the hydrogen atom from n=4 to n=7. Determine the wavelength of light that is associated with this transition.
The wavelength that is associated with the transition is 2145 nm.
What is the wavelength?We know that the wavelength can be obtained from the use of the Rydberg equation and we know that the Bohr's mode lets us know that an electron can move from from a higher to a lower energy level.
Let us write;
1/λ = RH(1/[tex]n_{2} ^2[/tex] - 1/[tex]n_{1} ^2[/tex])
λ = wavelength
RH = Rydberg constant
[tex]n_{1}[/tex] = initial level
[tex]n_{2}[/tex] = final level
Then;
1/λ = 1.097 * 10^7 (1/4^2 - 1/7^2)
1/λ = 1.097 * 10^7 ( 0.0625 - 0.020)
λ = 2145 nm
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Avogadro's constant is the same as the number of
a. magnesium atoms in 24g of magnesium
b. nitrogen molecules in 14g of nitrogen
c. copper II sulfate formula units in 160g of copper II sulfate
Avogadro's constant is the same as the number of copper II sulfate formula units in 160g of copper II sulfate; option C.
What is Avogadro's constant?Avogadro's constant is a number that describes the number of particles in 1 mole of a substance.
The value of the Avogadro constant is 6.02 * 10²³.
The carbon-12 isotope is used as the standard to define the mole of a substance.
12 grams of the carbon-12 isotope contains the Avogadro number of particles which is equal to 6.02 * 10²³.
Hence, 1 mole of a substance is defined as the amount of a substance that contains as many elementary particles as there are in 12 grams of carbo-12.
Considering the given substances:
a. 24g of magnesium off magnesium contains two moles of magnesium atoms.
b. 14g of nitrogen gas contains 0.5 moles of nitrogen gas molecules
c. 160g of copper (ii) sulfate contains 1 mole of copper (ii) sulfate formula units. Hence, this is equal to the Avogadro constant
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Given that the vapor pressure of water is 17.54 Torr at 20 °C, calculate the vapor-pressure lowering, AP, of an aqueous solution
that is 1.80 m in sucrose (C₁2H₂₂O₁1).And
calculate the vapor-pressure lowering, AP, of an aqueous solution that is 1.80 m in aluminum chloride. Assume 100%
dissociation for electrolytes.
The vapor-pressure lowering, AP, of an aqueous solution is 2.44Torr.
Mole = [tex]\frac{weight}{molecular weight}[/tex]
In a 1.80m (molal) solution, 1 kilogram of the solvent contains 1.80 moles of the solute (which is water in this case).
Water's molar mass is equal to 2(atomic mass of H) + [2(1)+16] (atomic mass of O).
=18g/mol
The mole of water in 1 kilogram (equivalent to 1000 grams)::
[tex]n_{H_{2} O}[/tex]= [tex]\frac{1000}{18g/mol}[/tex] = 55.56mol
The solute's mole fraction in the 1.80 m solution is as follows::
[tex]x_{solute}[/tex] = [tex]\frac{n_{solute} }{n_{H_{2}O }}[/tex]
⇒[tex]x_{solute} =[/tex] [tex]\frac{1.80}{55.56}[/tex] = 0.032
a. Sucrose is a non-electrolyte, i.e., it does not undergo dissociation in the aqueous solution.
As a result, the Van't Hoff factor for sucrose is = i = 1
The lowering in vapor pressure of the solution, which is 1.80m in sucrose:
=[tex]ix_{solute}p^{0}[/tex]
=(1)(0.032)(17.54)Torr
=(0.56)Torr
b. Aluminum chloride dissociate in water as follows:
[tex]AlCl_{3}[/tex] →[tex]Al^{3+}+ 3Cl^{-}[/tex]
As a result, an aqueous solution containing one aluminum chloride particle yields four more particles.
Thus, i=4
The lowering in vapor pressure is thus:
=[tex]ix_{solute}p^{0}[/tex]
=(4)(0.032)(17.54)Torr
=(2.24)Torr
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Explain how humans hear. Be sure to include the following terms in your response: outer ear, cochlea, eardrum, auditory nerve.
According to research, the ear is a complex organ that meets hearing, being of great importance to humans.
How humans hear?Hearing is a physiological process where sound waves, which are vibrations, enter through the outer ear and reach the middle ear, causing the eardrum to vibrate.
In this sense, the vibrations, in turn, cause the movement of small bones called stirrup, anvil and malleus, where they reach the organ of Corti, stimulating the auditory nerve and finally become nerve impulses that reach the brain.
Therefore, we can conclude that according to research, hearing is a process that implies that sound waves first impact the eardrum until finally reaching the auditory centers of our brain.
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I need help with #2 please
Answer:
Third choice
Explanation
Because reactivity of the elements decrease across the periodic table and it depends on the number of protons it has. Hence low number of protons more reactive.
Consider an atom of Sulfur. Predict one atom in the same group which is larger than a sulfur atom, and one which is smaller. Using these trends and your understanding of Coulomb's Law, analyze how forces of attraction and repulsion affect the size of an atom.
Explanation:
as the number of shell increased the size of the atom increase but the same shell with different number of valence electron, as electron number increase the attraction between nucleus and valance electron increased then the atom becomes shrinks and so the size of it decreased.
Using the table from the previous question determine which substance would sink if placed in the pan of mercury.
Iron
Copper
Lead
Gold
All of them
Any object which have less density than the mercury will float in it and which have higher density will sink on it. Here, gold has higher density than mercury. Thus it will sink on mercury.
What is density?Density of a substance is the measure of its mass per volume. Thus it says about how much denser the substance is in a specific volume. The ratio of density of an object to the density of water is called specific gravity.
The density of mercury is 13.4 g/ml. Any object which is less dense than mercury will float on its surface whereas, objects which have higher density than mercury will sink on it.
The density of gold is 79.3 g/ml. All other given metals iron, lead and copper have a density less than that of mercury. Hence the substance which sink on mercury is gold. Option Dis correct.
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3. Which electromagnetic wave types have frequencies higher than microwaves but lower than
UV radiation?
X-rays and gamma rays have frequencies higher than microwaves but lower than UV radiation.
X-rays and gamma rays are both types of electromagnetic radiation. They are similar in that they are both invisible, travel at the speed of light, and can penetrate human tissue. They differ in their wavelength and energy. X-rays have a shorter wavelength and higher energy than gamma rays
Gamma rays are a type of electromagnetic radiation. They are the most energetic form of electromagnetic radiation. Gamma rays are produced by the most energetic events in the universe, such as supernova explosions and the merging of neutron stars.
X-rays are used in medicine and dentistry because they can penetrate the human body, which Gamma rays cannot.
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I need to know what’s the answer for the check point question on the picture. please help me.
In the combustion of methane the are reactants are CH₄(g) and O₂(g). The products are CO₂(g) and H₂O(g) .
Combustion is process in which the substance react with the oxygen to produce heat. In the combustion of , the methane , CH₄ is burnt in the presence of oxygen, O₂ produce carbon dioxide, CO₂ and water H₂O. it is very useful as fuel source. the chemical reaction is given as follows :
CH₄(g) + 2O₂(g) ----> CO₂(g) + 2H₂O(g) . + heat + light
Thus, In the combustion of methane the are reactants are CH₄(g) and O₂(g). The products are CO₂(g) and H₂O(g).
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C2H4O2 + 2 O2 --> 2 CO2 + 2 H2O
20.0 grams of C2H4O2 is reacted with 15.0 grams of oxygen. How many grams of carbon dioxide would be produced?
15g of CO2 will be produced from 15g of O2 as 2 moles of O2 produces 2 moles of CO2
What is moles ?
In chemistry, a mole, sometimes spelled mol, is a common scientific measurement unit for significant amounts of very small objects like atoms, molecules, or other predetermined particles.
The mole designates 6.02214076 1023 units, which is a very large number. For the International System of Units (SI), the mole is defined as this number as of May 20, 2019, according the General Conference on Weights and Measures. The number of atoms discovered through experimentation to be present in 12 grams of carbon-12 was originally used to define the mole.
C2H4O2 + 2 O2 --> 2 CO2 + 2 H2O
2 unit of O2 produces 2 unit of CO2
15g of O2 produces 15g of CO2
15g of CO2 will be produced from 15g of O2 as 2 moles of O2 produces 2 moles of CO2
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When fossil fuels, such as gasoline, are burned, they create smoke. Smoke is best described as a heterogeneous mixture of solid particles from the burning fuel dispersed in a gas – usually air. Smoke can be described more specifically as a suspension.
What will most likely happen over time to smoke in the atmosphere?
A.The solid particles will spread out and dissolve.
b.The particles will eventually come together in a cloud and produce rain.
c.Over time, the solid particles will settle on whatever is outside.
d.The particles will remain mixed in the air.
The most likely will happen to smoke in the atmosphere is over time, the solid particles will settle on whatever is outside (Option C).
What is smoke?Smoke can be defined as any group or mixture of small particles that may be present in different states of matter in the air (i.e., in the solid state, liquid state and or gas state), generally composed of burning fossil fuels or carbon.
Therefore, with this data, we can see that smoke is generally composed of carbon but it is also represented by other types of particles in suspension in the atmosphere.
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