how many ions would you expect mgbr2 to break down into in water?

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Answer 1

Number of ions which I would expect on breaking of MgBr₂ in water is 3.Ions can be positive or negative.

An ion  is an atom or particle with a net electrical charge.The charge of an electron is viewed as negative by show and this charge is equivalent and inverse to the charge of a proton, which is viewed as certain by show. The net charge of a particle isn't zero on the grounds that its absolute number of electrons is inconsistent to its all out number of protons.

A cation is a decidedly accused particle of less electrons than protons while an anion is an adversely accused particle of additional electrons than protons. Inverse electric charges are pulled towards each other by electrostatic power, so cations and anions draw in one another and promptly structure ionic mixtures.

MgBr₂ is a compound that separates into its ions in water. the Br-particles don't remain together in water so you get 2 Br-particles Br₂ without help from anyone else is possibly composed when you are alluding to bromine as a diatomic component, not as particles in arrangement

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Related Questions

The second step in the Gram staining procedure involves flooding the slide for one minute with ____
A. a decolorizing agent. B. iodine. C. safranin.

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The second step in the Gram staining procedure involves the flooding of the slide for the one minute is with iodine . The correct option is B. iodine.

There are the four fundamental steps in the Gram stain process , the first is to apply a base color that is the crystal violet. In second step  adding the Gram's iodine as the mordant. In the third step, the Rapid decolorization with the acetone, the ethanol, or the combination of the two and in the four step,  Using the safranin as the counterstain.

Thus, the iodine will be used in the second step in the Gram staining process that involves the flooding in the slide for one minute.

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What is the order of the solvents from most to least polar?

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The position in extremity from most to least is water, ethanol, ethyl acetic acid derivation, CH3)2CO, 2-butanone, diethyl ether, hexane, and benzene.

From these solvents, ethanol will be totally miscible in water because of its more modest carbon fasten and it's capacity to frame hydrogen bonds.

Water is a polar dissolvable; other polar solvents incorporate CH3)2CO, acetonitrile, dimethylformamide (DMF), dimethylsulfoxide (DMSO), isopropanol, and methanol.

One way you could really work out a dissolvable's extremity is by utilizing its dielectric consistency, which is utilized to quantify how well the dissolvable can part of the way drop the field strength of the electric field of a molecule added to it. The higher the worth of a dissolvable's dielectric consistent, the more polar it will be.

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Select all that apply Select all the statements that correctly describe organometallic reagents. a) Organometallic reagents are good nucleophiles and strong bases. b) Organometallic reagents are ionic since they contain a bond between a metal and a nonmetal. c) Organometallic reagents are a source of electrophilic carbon. d) These reagents contain a polar carbon-metal bond.

Answers

The statements that correctly describe organometallic reagents are:

a) Organometallic reagents are good nucleophiles and strong bases.

c) Organometallic reagents are a source of electrophilic carbon.

d) These reagents contain a polar carbon-metal bond.

Statement b is incorrect as organometallic reagents are typically covalent rather than ionic, despite containing both metal and nonmetal atoms.

Compounds with at least one covalent bond between a carbon atom and a metal atom are known as organometallic reagents. These reagents are extremely reactive and flexible, with numerous applications in organic chemistry. One of the most important properties of organometallic reagents is their nucleophilic and basic nature, which allows them to be used in a wide range of processes.

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This is the actual answer

Answers

Answer: it is red

Explanation: it is getting hotter

under what conditions are gases most likely to behave ideally?

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At higher temperature and lower pressure, gases most likely to behave ideally.

An ideal gas is a hypothetical gas made out of many haphazardly moving point particles that are not expose to interparticle interactions. The ideal gas idea is valuable since it complies with the best gas regulation, a worked on condition of state, and is managable to investigation under factual mechanics. The necessity of zero communication can frequently be loose if, for instance, the connection is totally flexible or viewed as point-like crashes.

Under different states of temperature and tension, many genuine gases act subjectively like an ideal gas where the gas particles (or iotas for monatomic gas) assume the part of the best particles. Many gases, for example, nitrogen, oxygen, hydrogen, noble gases, a few heavier gases like carbon dioxide and combinations like air, can be treated as ideal gases inside sensible tolerances over an extensive boundary range around standard temperature and tension.

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Describe how you think rock outcrops and exposures in southwestern U.S.A would look in comparison with rocks in northeastern U.S.A.​

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Answer:

Generally speaking, rocks in the southwestern U.S.A tend to be much older and more eroded than those found in the northeast. The rock outcrops and exposures in this region will likely consist of sedimentary layers that have been exposed due to erosion over time, as well as some ancient igneous intrusions such as granite or basalt. In comparison, the northeastern U.S.A tends to contain younger rocks with fewer signs of weathering and erosion; these outcrops and exposures may include a variety of metamorphic rocks such as slate or gneiss along with granites from nearby mountain ranges like the Appalachians or Adirondacks.

in a dynamic equilibrium between the liquid state and the gas state, what is true about the rate of evaporation?

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The rate of evaporation and condensation are equal at a state of dynamic equilibrium between the liquid and gas states.

This means that molecules of the liquid are continuously evaporating into the gas phase, while molecules of the gas are continuously condensing back into the liquid phase. At equilibrium, the number of molecules in the gas phase and the number of molecules in the liquid phase remain constant.

The rate of evaporation depends on factors such as the temperature of the liquid, the surface area of the liquid, and the strength of the intermolecular forces in the liquid. A larger surface area also increases the rate of evaporation, as more molecules are exposed to the gas phase.

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What is the freezing point of a liquid?

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The certain temperature at which a liquid transforms into a solid is understood as its Freezing Point. Like the melting point, the freezing point also increases when there is an upsurge in pressure.

A better accurate explanation of a freezing point is the temperature at which liquid and solid phases coexist in equilibrium. Or the freezing point of a substance may be specified as the temperature at which the vapor pressure of a solid is identical to the vapor pressure of the liquid. As we talked about freezing is the process where a substance transitions its state from liquid to solid, we comprehend that in this process a substance is changing from one state of matter into another.

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K¹² Honors Biology 2.21 Unit Assessment: The Chemistry of Life

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The chemistry of life refers to the chemical processes and reactions that occur within living organisms, including the complex molecules and compounds that make up the cells, tissues, and organs of all living things.

The major classes of compounds that make up the chemistry of life include carbohydrates, lipids, nucleic acids, and proteins. Carbohydrates are composed of simple sugars and play a key role in energy storage and metabolism. Lipids, including fats and oils, are important for energy storage and as building blocks for cell membranes.

The chemical reactions that occur within living organisms are mediated by enzymes, which are specialized proteins that catalyze specific chemical reactions. Enzymes play a critical role in maintaining the chemical balance and energy balance within cells, as well as in the breakdown and synthesis of complex molecules.

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URGENTTTT
if S contributes a charge of -4, then what is the charge of the gold in AuS2?

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The charge of the gold ion in AuS₂ is +4.

How to find a charge on a compound?

The charge of the gold in AuS₂ can be determined by balancing the charges of the individual components. In this case, the sulfide (S) ion has a charge of -2, and there are two sulfide ions in AuS₂, so the total charge from the sulfide ions is -4. To balance this charge, the gold ion must have a charge of +4.

Therefore, the charge of the gold ion in AuS₂ is +4. This information can be used to write the balanced chemical equation for the formation of AuS₂, which would be represented as:

Au⁺⁴ + 2S⁻² → AuS₂

This equation shows that two sulfide ions with a charge of -2 are combining with a single gold ion with a charge of +4 to form the compound AuS₂.

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what is the ph of a solution that contains 11.7g of nacl for every 200 ml of solution?

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The pH of the solution that contains 11.7g of NaCl for the every 200 mL of the solution is 7.

The mass of the NaCl = 11.7 g

The molar mass of the NaCl = 58.44 g/mol

The moles of the NaCl = mass / molar mass

The moles of the NaCl = 11.7 / 58.44

The moles of the NaCl = 0.200 mol

pH = - log[H⁺]

pH = 7

The NaCl will completely dissociates in the water to give Na⁺ and the Cl⁻, it will neither of which is hydrolyzes. In the aqueous of NaCl, the H₃O⁺ and OH⁻ ions that result in the completely form the autoionization of the water. The NaCl is neutral and does not affect the pH.

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It is illegal to improperly dispose of antifreeze.yesno

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Waste antifreeze should never be dumped into storm drains or surface waters as it can seriously injure wildlife, pets, and people. This is prohibited and can result in fines of up to $25,000. yes this statement is correct.

What is an antifreeze?An chemical called antifreeze lowers the freezing point of a water-based liquid. In order to lower the freezing point in cold conditions and raise the boiling point to allow for higher coolant temperatures, an antifreeze combination is utilized. Science discovered the solution in 1926 in the form of the chemical substance ethylene glycol, which is obtained from petroleum. This antifreeze additive, which is still commonly used today, has the chemical formula C2H6O2. Thus, ethylene glycol is chemically made up of two carbon atoms, six hydrogen atoms, and two oxygen atoms. Water and either ethylene glycol (EGW) or propylene glycol are combined to create the most popular water-based antifreeze solutions used in electronics cooling (PGW). Ethylene glycol has been used for a longer period of time, particularly in the automobile sector.

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What are the activities of series of metals?

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The metal activity series is an empirical tool used to predict the reactivity of products in substitution reactions and metals in substitution and ore mining reactions with water and acids.

The active series of metals is a table listing metals in order of decreasing reactivity of the elements. Generally, the more reactive metal is, the metal which is more strongly reacts with other metallic elements. The faster reaction, can lose electrons with faster rate to form positive charges or positive ions. Due to containment of reactivity order it is called the reactivity series. A series of activities determines the ability to displace hydrogen ions from water and other solutions such as acidic or ionic solutions. For example, sodium metal can displace hydrogen ions out of solution, so it is considered more reactive than elemental hydrogen. It helps determine the nature of the reaction and which element displaces another element in a chemical reaction.

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Please answer asap please

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Answer:

A

Explanation:

A is closest to the sun. It follows from Kepler's second law that Earth moves the fastest when it is closest to the Sun.

What are the 7 electrolytes?

Answers

The 7 electrolytes are sodium, calcium, potassium, chloride, phosphate, bicarbonates and magnesium.

Electrolytes are minerals and salts that are necessary for the body to function properly. They help regulate the body's water balance, pH, and nerve and muscle function. The seven most important electrolytes are sodium, calcium, potassium, chloride, phosphate and magnesium.

1) Sodium:

mineral mandatory necessary for regulating body fluids.

2) Calcium:

mineral element important for bone and teeth health.

3) Potassium:

mineral necessary useful for regulating heart rate and blood pressure.

4) Chloride:

electrolyte essential for regulating fluid balance in the body.

5) Phosphate:

mineral element important for energy production and cell membrane structure.

6) Magnesium:

mineral element useful for many metabolic processes in the body.

7) Bicarbonates:

are salts of carbonic acid, containing the anion [tex]HCO_{3}[/tex] - or its equivalent.

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When placing test tubes in the centrifuge, what are the best practices? A)Carefully stopper the test tubes to ensure the liquids do not spill out. B)Place test tubes containing approximately equal volumes in opposite positions on the rotor. C)Wait until all positions on the rotor contain a test tube before activating the centrifuge. D)Never put stoppers or other items in the centrifuge with your tubes.

Answers

When placing the test tubes in the centrifuge , the best practices are the correct option is : B)Place test tubes containing approximately equal volumes in opposite positions on the rotor. D)Never put stoppers or other items in the centrifuge with your tubes.

The centrifuge is the device that uses the centrifugal force to separate the various components of the fluid. The best practices for placing the test tubes are to Place test tubes containing the approximately equal volumes in the opposite positions on the rotor. Never put the stoppers or the other items in the centrifuge with  the tubes.

This will help to prevent the any of the samples from the spilling during the centrifugation process and the potentially damaging the centrifuge.

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Numbering the Steps for Balancing Equations Number the steps for balancing equations: Use coefficients to increase the atoms on each side. Check to make sure you have the same number of each type of atom on each side. Count the atoms on each side. Identify the atoms on each side. Intro Done​

Answers

In order to balance a chemical equation steps to be followed are : Identify  atoms on each side.Count  atoms on each side.Numbering  steps for balancing Equations in  sequential order.Use coefficients to increase  atoms on each side.Check to make sure you have  same number of each type of atom on each side.

What is chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

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Your question is is incomplete, the complete question will be:

Numbering the Steps for Balancing Equations in a sequential order:

Use coefficients to increase the atoms on each side.

Check to make sure you have the same number of each type of atom on each side.

Count the atoms on each side.

Identify the atoms on each side.

What volume, in liters, does 128 grams of O2 occupy at STP?
a.89.6 L
b.22.4 L
c.67.2 L
d.44.8 L

Answers

The Ideal Gas Law

There are some important equations that we must know:

[tex]PV=nRT[/tex]

P = pressureV = volumen = molesR = Universal Gas Constant (8.31)T = temperature

[tex]n=\dfrac{m}{M}[/tex]

m = massM = molar mass

Solving the Question

We're given:

molar mass of O2 = 32.00 g/molmass of O2 = 128 gT = 273 K (STP)P = 101.3 kPa (STP)

First, solve for n:

[tex]n=\dfrac{m}{M}[/tex]

[tex]n=\dfrac{128}{32.00}\\\\n=4[/tex]

Now, solve using the Ideal Gas Law:

[tex]PV=nRT[/tex]

⇒ Isolate V:

[tex]V=\dfrac{nRT}{P}[/tex]

⇒ Plug in given values:

[tex]V=\dfrac{4*8.31*273}{101.3}\\\\V =89.6[/tex]

Answer

a. 89.6 L

True or False:To maintain beer quality it is important to maintain consistent calcium and pH levels in the water, wort and beer. The average pH for wort is higher than the average pH for beer.

Answers

True, To maintain beer quality, it is important to maintain consistent calcium and pH levels in the water, wort, and beer. Calcium is important for yeast health and stability, while pH affects enzyme activity and flavor stability.

What is pH?

It is defined as the negative logarithm (base 10) of the concentration of hydrogen ions  in a solution. pH values range from 0 to 14, with a pH of 7 considered neutral. Solutions with a pH less than 7 are acidic, while those with a pH greater than 7 are basic.

For example, a solution with a pH of 3 has a higher concentration of hydrogen ions (and therefore more acidic) than a solution with a pH of 5. A change of 1 pH unit represents a ten-fold change in the concentration of hydrogen ions, so a solution with a pH of 2 is ten times more acidic than a solution with a pH of 3. pH is an important parameter in many chemical and biological processes and is routinely measured in laboratories and in many industries.

The average pH for wort is typically higher than the average pH for beer. During the brewing process, enzymes in the malt break down starches into fermentable sugars, which lowers the pH of the wort. During fermentation, yeast consume the sugars and produce alcohol and carbon dioxide, which raises the pH of the beer. As a result, the pH of the final beer is usually lower than the pH of the wort.

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What is the clf3 molecular geometry?

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The molecular geometry of clf3 is trigonal bipyramidal with a T-shaped geometry due to the repulsion between lone pairs.

The sub-atomic calculation of clf3, or chlorine trifluoride, is three-sided bipyramidal. It has a focal chlorine iota that is clung to three fluorine particles and has two solitary sets of electrons. The three fluorine iotas are organized around the chlorine particle in a three-sided planar math, while the two solitary matches possess the pivotal situations above and underneath the plane. The particle has a T-molded math because of the repugnance between the solitary matches and the bond sets of electrons. Chlorine trifluoride is a profoundly responsive and poisonous gas utilized in the assembling of semiconductors and other electronic parts, as well as in rocket charges.

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In the term trace element, the adjective trace means thatthe element is required in very small amounts.

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The given statement “In the term trace element, the adjective trace means that the element is required in very small amounts” is true because trace elements are required in minute amounts for the proper functioning of the human body and other living organisms.

Trace elements are a group of minerals that are required in very small amounts for the proper functioning of the human body and other living organisms.

They are essential for the growth, development, and maintenance of cells and tissues. These elements are required in trace amounts because they are involved in the regulation of enzyme activities and metabolic processes.

The term “trace element” originates from the fact that they are required in very small amounts. This is because they are not found in large enough concentrations to be measured with traditional laboratory techniques. As such, they are only detectable using advanced analytical methods.

Trace elements are also essential for the production of hormones, vitamins, and other important compounds. They are also involved in the absorption of other minerals, such as calcium and magnesium, and in the production of energy. Without trace elements, the body’s functioning would be severely impaired.

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In the term trace element, the adjective trace means that the element is required in very small amounts. True or False.

What is the Lewis structure for SO3 2?

Answers

The lewis structure of the SO₃²⁻ is as follows :

                     ..      ..

         : O :  = S - : O :⁻

                     |

                  : O :⁻

                    °°

In the lewis structure of SO₃²⁻, the Central atom of theSO₃²⁻ion is the sulfur atom. Around the sulfur atom, there are the four bonds and the  single lone pair in the lewis structure of the  SO₃²⁻ion. Therefore, the five electron pair groups are around the central atom of the SO₃²⁻ion.

The total number of the valence electrons in the SO₃²⁻ is the 26 electrons. The sulfur is the less electronegative than the oxygen. Therefore the sulfur is the central atom.

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If your water heater can supply 40 kbtu/h, how long will it take to heat this water?.

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If my heater can supply 40Kbtu/h,then it will take  one hour to heat the water.

With the increase in temperature, particles or atoms' vibrations increment. These vibrations are then moved starting with one piece of the body then onto the next. The proportion of energy with which the particles vibrate in a framework is named as intensity put away in that item.

According to the meaning of heat, it is characterized as the progression of energy from a warm to a cooler article. The heading of stream of the intensity energy takes from the substance of higher temperature to the substance of lower temperature. This is on the grounds that the atoms are vibrating quicker and move their energy to the particles vibrating more slow. The vibrational energy is additionally named as its intensity content. The heat content in the body makes it hot or cold. More prominent the intensity content, the more sizzling the body will be.

A substance might retain heat without an expansion in temperature by changing starting with one actual state then onto the next. During the time spent liquefying, the substance is changed from strong to fluid. In the sublimation cycle, the strong is changed over into a fume state. During the time spent heating up, the fluid is changed over completely to fume. Heat is a type of energy that can be changed over into work. How much energy is communicated in units of work. It is communicated in joules, foot-pounds, kilowatt-hours, or calories

This is because 1 kBtu is equivalent to 1,000 BTUs, and 40 kBtu/h is equivalent to 40,000BTU/s

Now,in 1hr =60 minutes,and in 1 minute=60sec.

So,in 1sec ,it will take =(60/40000)×40000=60minutes or 1 hr.

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A flask filled with carbon dioxide is heated from 10. °C to 40. °C. The starting pressure was 98 kPa, what is the final pressure?

Answers

Considering the Gay-Lussac's law, if a flask filled with carbon dioxide is heated from 10. °C to 40. °C and he starting pressure was 98 kPa, the final pressure is 108.39 kPa.

Definition of Gay-Lussac's law

Gay-Lussac's law establishes the relationship between the temperature and the pressure of a gas when the volume is constant: If the temperature increases, the pressure will increase and if the temperature decreases, the pressure will decrease.

That is, the pressure of the gas is directly proportional to its temperature and is expressed mathematically as:

P÷T=k

where:

P is the pressure.T is the temperature.k is a constant.

Analyzing an initial state 1 and a final state 2, it is fulfilled:

P₁÷T₁=P₂÷T₂

Final pressure in this case

In this case, you know:

P₁= 98 kPaT₁= 10 C= 283 K (being O C= 273 K)P₂= ?T₂= 40 C= 313 K

Replacing in Gay-Lussac's law:

98 kPa÷ 283 K=P₂÷ 313 K

Solving:

(98 kPa÷ 283 K)× 313 K=P₂

108.39 kPa= P₂

Finally, the final pressure is 108.39 kPa.

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What type of change causes atoms to be rearranged?
A. a physical change
B a chemical change
C. a phase change
D. a nuclear change

Answers

B. a chemical change

draw the product of the lewis acid-base reaction. label the electrophile and nucleophile.

Answers

Lewis acid: a species with empty orbitals that accepts an electron pair (i.e., an electrophile). Lewis base: a species (also known as a nucleophile) that contributes an electron pair and has lone-pair electrons.

The end result of a Lewis acid-base reaction is what?

Although we don't typically use this terminology for straightforward proton-transfer reactions like the one in the preceding example, the product of a Lewis acid-base reaction is formally referred to as a "adduct" or "complex."

Is a Lewis acid a nucleophile?

Lewis bases are often referred to as nucleophiles, while Lewis's acids are sometimes referred to as electrophiles, to prevent misunderstanding between the Lewis and the Bronsted definitions of acids and bases.

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Why is EtOH the abbreviation for alcohol?

Answers

EtOH is the abbreviation for alcohol because EtOH stands for ethyl alcohol, which is the chemical name for ethanol.

Ethyl alcohol is the chemical formula for ethanol, which is the most common type of alcohol found in alcoholic beverages. The first "Et" stands for the ethyl group, which is made up of two carbon atoms and five hydrogen atoms, and the "OH" stands for the hydroxyl group, which is made up of one oxygen atom and one hydrogen atom.

Together, these two groups make up the chemical formula for ethanol, which is C₂H₅OH. Therefore, EtOH is used as an abbreviation for alcohol because it represents the chemical formula for the most common type of alcohol found in alcoholic beverages.

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How do you know which compound has a higher boiling point?

Answers

The boiling point of a substance is also called the saturation temperature. It is the temperature at which a substance shows transition from liquid to gaseous state.

What is boiling point?

The boiling point of a liquid is defined as the temperature at which its vapour pressure becomes equal to the atmospheric pressure. It is at this temperature a liquid starts to boil.

The boiling point is highly dependent on the intermolecular forces of a compound. The compounds with stronger intermolecular forces, higher masses and less branching have high boiling points.

Thus the boiling point of a compound is affected by many factors.

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Select the correct answer from each drop down menu

Answers

Answer:

Atmoic weight / mass...........

Describe the initial conditions. A beaker with 150 milliliters of solution. A tube is floating at the top of the solution. The tubing contains. The beakercontains.

Answers

The initial conditions are -The tubing contains-starch solution,lugol's solution,starch solution and lugol's solution.

In math and especially in unique frameworks, an initial condition, in certain settings called a seed value,[1]: pp. 160 is a worth of a developing variable sooner or later in time assigned as the underlying time (normally signified t = 0). For an arrangement of request k (the quantity of delays in discrete time, or the request for the biggest subordinate in consistent time) and aspect n (that is, with n different developing factors, which together can be signified by a n-layered coordinate vector), by and large nk starting circumstances are required to follow the framework's factors forward through time.

In both differential conditions in constant time and distinction conditions in discrete time, starting circumstances influence the worth of the powerful factors (state factors) at any future time. In nonstop time, the issue of tracking down a shut structure answer for the state factors as an element of time and of the underlying circumstances is known as the underlying worth issue. A comparing issue exists for discrete time circumstances. While a shut structure arrangement isn't generally imaginable to get, future upsides of a discrete time framework can be found by emphasizing forward one time span for each emphasis, however adjusting mistake might make this unrealistic over lengthy skylines.

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(Complete question) is:

Describe initial conditions of any experiment conducted in chemistry labs.

Answer: The CORRECT answer on edge is:

INITIAL conditions --

The tubing contains STARCH SOLUTION

The beaker contains LUGOL'S SOLUTION

FINAL conditions --

The tubing contains STARCH solution AND LUGOL'S solution

The beaker contains ONLY LUGOL'S solution

Explanation: I did the lab,

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