Which row shows correct statements about the speed at which a gas diffuses?
effect of temperature
diffusion is faster at higher temperatures
diffusion is faster at lower temperatures
diffusion is faster at higher temperatures
diffusion is faster at lower temperatures
ABCD
А
В
с
effect of molecular mass
higher molecular mass diffuses faster
higher molecular mass diffuses faster
lower molecular mass diffuses faster
lower molecular mass diffuses faster

Answers

Answer 1

The speed of diffusion of gases is faster at a higher temperature and when the molecular mass of the gas is lower.

Transport that is done passively is called diffusion. Unless the concentration is uniform throughout a space, a single material goes from an area of high concentration to one of low concentration.

Because thermal energy is a function of temperature, molecules move randomly and continuously based on their mass, their surroundings, and their internal energy. This motion takes into consideration the diffusion of molecules across the medium in which they are situated. A material moves into any place that is open to it until it fills the entire area equally.

Molecules will continue to move about in a region after a material has entirely diffused across it, eliminating the gradient of concentration. However, there will not be any net molecule movement from one location to another. We refer to this absence of a gradient of concentration where there is no net movement of the material as dynamic equilibrium. Although diffusion will continue when a substance's concentration gradient is present, a number of things influence the diffusion rate:

(i) Molecular mass: Since heavier molecules travel more slowly, they diffuse more slowly as a result. For lighter molecules, diffusion occurs quicker.

(ii) Temperature: Higher temperatures boost energy, which in turn causes molecules to move more quickly and speed up the diffusion process. Lower temperatures reduce the energy of the molecules, which lowers the diffusion rate.

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Related Questions

onsider the structure. a carbon is bonded to two three carbon chains and a branched alkane. the branched alkane is a 2 carbon chain with a methyl on carbon 1. select the correct name for the given structure.

Answers

If we consider a structure in which a carbon is bonded to two three carbon chains and a branched alkane then the branched alkane is a 2 carbon chain with a  ethyl on Carbon 1 then the correct name of the structure is 4-(isopropyl)heptane.

The two three carbon chains bonded to the carbon atom will form the parent chain of this structure and this chain will have 7 carbon atoms in it.

Since this chain is that of an alkane and it has no functional group attached so the root name will be heptane.

Now, we have to add a prefix by naming the branched alkyl chain. The branched chain has 3 carbon atoms in it with a methyl group on carbon 1.

So, this name of this group will be propyl.

The position of this propyl group is 4th on the parent chain so the full name of the structure will be 4-(isopropyl)heptane.

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444 joules into calories

Answers

106.119 small calories

hope this helps!

Answer:

106.119 calories

Explanation:

Hope this helps! If you need a step-by-step explanation feel free to ask and I'd be happy to give it to you <33

when the group of fatty acids reacts in a dehydration synthesis reaction with the group of glycerol, fats or oils are formed.

Answers

Fats or oils are created when the hydroxide group of glycerol combines in a dehydration synthesis process with the carboxyl group of fatty acids.

What are fatty acids?

The building blocks of fat in our bodies and the food we eat are called fatty acids. During digestion, the body transforms lipids into fatty acids so they may be absorbed into the bloodstream. A molecule known as a triglyceride is created when three fatty acid molecules are linked together.

Saturated, monounsaturated, and polyunsaturated fatty acids are all present in dietary fats. Even while meals include all three forms of fatty acids, they are frequently grouped according to the prevalent type.

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A baseball’s resultant velocity is 17.23 m/s, at 26.02° from the level ground. Determine the horizontal component of the baseball’s velocity.

Answers

A baseball’s resultant velocity is 17.23 m/s, at 26.02° from the level ground then the  horizontal component of the baseball’s velocity is 15.4835m/s

Velocity means the direction of the movement of the body or the object here given data is velocity =17.23 m/s, at angle= 26.02° and we have to find  horizontal component of the baseball’s velocity=?

So, Horizontal distance can be expressed as x=V × t

Cos26.02°=x/17.23 for vector component, this means that the

17.23cos26.02°= x horizontal component is the hypotenuse length

x=15.4835m/s is the horizontal component of the baseball’s velocity

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A solution made from 35 ml of ethanol and 75 ml of water has what volume percentage of ethanol?

Answers

A solution made from 35 ml of ethanol and 75 ml of water has volume percentage of ethanol is 35%.

What is a solution?

Solution, in chemistry, homogenous mixture of two or more substances in relative amounts that can be varied continuously up to what is called the limit of solubility. The term solution is commonly applied to liquid state of matter, but solutions of gases and solids are possible. Air, for example, is a solution consisting chiefly of oxygen and the nitrogen with trace amounts of several other gases, and brass is a solution composed of copper and zinc.

Life processes depend in the large part on solutions. Oxygen from lungs goes into solution in the blood plasma, unites chemically with the hemoglobin in the red blood cells, and is released to the body tissues. The products of digestion also are carried in solution to different parts of the body. The ability of liquids to dissolve the other fluids or solids has many practical applications. Chemists take advantage of the differences in solubility to separate and purify materials and to carry out chemical analysis. Most chemical reactions occur in the solution and are influenced by the solubilities of the reagents. Materials for chemical manufacturing equipment are selected to resist solvent action of their contents.

Percentage of ethanol = 35/100=35%

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What is the product of the following reaction?
(a) cyclohexane
(b) cyclohexene
(c) cyclohexanol
(d) 1,2-cyclohexanediol

Answers

The correct option is cyclohexane.

What is cyclohexane used for?The majority of cyclohexane is used to make nylon intermediates, which are used to make thermoplastics and a variety of popular items including apparel, tents, and carpets. Additionally employed as a solvent in industrial and chemical processes, cyclohexane has recently replaced benzene in several applications.Remove the person from the exposure if they experience irritation and burns, as well as burns on their nose and throat that cause them to cough and wheeze. Eyes should be thoroughly rinsed with water for at least 15 minutes. If wearing contacts, take them out. Look for medical help.The main distinction between cyclohexane and benzene is that the former has six carbon atoms and two hydrogen atoms bonded to each of its six carbon atoms, whereas the latter has six hydrogen atoms bonded to each of its six carbon atoms.

What is the product of the following reaction? Cyclohexane.

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How does the energy required to ionize a muonic hydrogen atom compare to that required to ionize a regular hydrogen atom?

Answers

The energy required to ionize a muonic hydrogen atom compare to that required to ionize a regular hydrogen atom:

What is muonic hydrogen atom?

Muonic hydrogen is an exotic hydrogen atom, where a muon (instead of an electron) orbits proton. Because muon is 200 times heavier than the electron, the muon's orbit is 200 times closer to the proton in muonic hydrogen than that of the electron in regular hydrogen.

The extremely precise extraction of proton radius obtained by Pohl et al. from measured energy difference between the 2P and 2S states of muonic hydrogen disagrees significantly with that extracted from electronic hydrogen or elastic–proton scattering. This discrepancy is proton radius puzzle.

In muonic hydrogen electron is replaced by muon, μ which is 200 times heavier than electron

ΔE= En - Ei

for hydrogen like atom,

ΔE= 13.6(Z square /n square) - (-13.6Z square/1 square)

For, Z=1 and n=x (for ionization)

I.E.=13.6eV for electron

I.E.∝ mass (as binding energy proportional to mass)

I.E.=13.6eV*200

    =2720eV

    =2.720keV

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What is the name given to the smallest group of atoms, ions, or molecules that form the building block of a mineral?.

Answers

The name given to the smallest group of atoms, ions, or molecules that form the building block of a mineral is called unit cell.

What is unit cell?

A unit cell is the smallest part of a crystal lattice that exhibits the three-dimensional structure of the entire crystal. The identical unit cell can be thought of as being duplicated in three dimensions in a crystal.

An atom is what?

Atoms, which are minuscule bits of matter, are what distinguish each chemical element from the others. A negatively charged core nucleus and one or more orbiting electrons make up an atom. There may be the positively charged, somewhat massive protons and neutrons that make up the nucleus.

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strontium salts are also used in highway safety flares. when an electron from strontium relaxes from its prevalent excited state, a photon with a wavelength of 660 nm is emitted. approximately how much energy is released upon emission?

Answers

The energy is released upon emission is E =  1.7 x 10⁵ J/mol.

The formula of energy is

      E = hv

Here,

      v = c / λ

c = speed of light

  = 3 × 10^8

λ = 660 nm

  = 660 × 10^-9

       v = c / λ

          = 3 × 10^8 / 660 × 10^-9

       v = 4.5 × 10^14

Value of h = 6.626 x 10^-34 Js

      E = hv

      E = 6.626 × 10^-34 Js ×  4.5 × 10^14

      E = 2.9 × 10^-19 J/ photon

The amount of energy we receive is one photon's worth. To find the solution to this question, we must thus multiply this result by Avogadro's number.

E = 2.9  x 10 ⁻¹⁹ J/ photon x 6.022 x 10 ²³photon/mol

E =  1.7 x 10⁵ J/mol

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You place 0.45 mg of salicylic acid (sa, 138.12 g/mol) into water to make 87.3 ml of solution. what is the concentration of the sa?

Answers

The concentration of making 87.3 ml of salicylic acid solution with 0.45 mg is 3.73x10⁻⁵ M

To solve this problem, the formulas and the procedures that we have to use are:

M = n(solute)/v(solution) Ln = m / MW

Where:

M= molarityn = molesm = massv = volumeMW = molecular weight

Information about the problem:

m = 0.45 mgv = 87.3 mLMW = 138.12 g/molM = ?

Converting the volume units from (ml) to (L) we have:

v(solution) = 87.3 mL * (1 L/1000 ml)

v(solution) = 0.0873 L

Converting the mass units from (mg) to (g) we have:

m =  0.45 mg * (1 g/1000 mg)

m = 0.00045 g

Having the MW we calculate the moles of salicylic acid:

n(salicylic acid) = m(salicylic acid) / MW(salicylic acid)

n(salicylic acid) = 0.00045 g / 138.12 g/mol

n(salicylic acid) = 3.258x10⁻⁶ mol

Applying the molarity formula, we get:

M = n(solute)/v(solution) L

M = 3.258x10⁻⁶ mol / 0.0873 L

M = 3.73x10⁻⁵ M

What is a solution?

In chemistry a solution is known as a homogeneous mixture of two or more components called:

SolventSolute

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using the henderson-hasselbalch equation, calculate the mass of sodium acetate (dry) and volumes of glacial acetic acid (liquid) and dh2o you would need to prepare 50 ml of 0.2 m acetate buffer, ph 4.5.

Answers

Using henderson-hasselbach equation, the mass of sodium acetate(dry) is 0.2g and volumes of glacial acetic acid and dH₂O needed to prepare 50 mL of 0.2 M acetate buffer of pH 4.5 are  9.125 mL and 15. 875 mL

The Henderson-Hasselbach equation is :

             pH = pKₐ + log [A ⁻]

                                       [HA]

We have a pH 4.5 solution of acetic acid and sodium acetate. pKₐ of acetic acid is 4.75. Taking ratio of weak acid to conjugate base:

    4.5 = 4.75 + log [sodium acetate]

                                   [acetic acid]

 [Sodium acetate]   = 0.5623

    [acetic acid]

Now, number of moles of each component to be calculated.                                    

If total concentration is- 0.10 M, then:

            [HA] + 0.5754[HA] = 0       .10 M

            [HA] =           0.10            

                        1.0000 + 0.5754

             [A⁻] = 0.0365 M    

Total volume given is - 50 mL(50 mL= 0.050 L), so the moles of each component :

            nₐ₋ = 0.0365 mol   x 0.050 L = 0.001825 mol

                              L

            nhₐ =  0.0635 mol x 0.050 L = 0.003175 mol

                              L

Let the starting concentration were 0.20M, then we can find volume they both start with:

            Vₐ₋ =         1L           x 0.001825 mols A⁻ = 0.009125 L

                       0.20 mols A⁻

                   = 9.125 mL

            Vhₐ =          1L           x 0.003175 mols HA = 0.015875 L

                       0.20 mols HA

                   = 15.875 mL

To calculate mass of sodium acetate , using the equation:

pKₐ = -log Kₐ = -log 1.8 x 10⁻⁵ = 4.74 (kₐ of acetic acid is 1.8 x 10⁻⁵)

4.5 = 4.74 + log [acetate] / [acetic acid]

log[acetate] / [acetic acid] = -0.24

[acetate] / [acetic acid] = 0.182

x/0.2=0.182

x = [acetate] = 0.0364 M

0.0364 mol/L x 0.050 L x 136.08 g/mol = 0.247 g

Since the molarity is given to only one significant figure, answer can be reported as 0.2 g

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In what ways are roller coaster rides similar to and different from training simulations in a NASA plane?

Answers

The similarities and differences between roller coaster rides and NASA plane training sims.

The forces are not sustained, as James Sebastian indicated, although being of approximately equal magnitude. This is what makes all the difference. The most physically taxing component of my high-performance aircraft flying is holding a turn at 6-8re or a G suit, you can quickly experience GLOC (G Induced LossG for anywhere between 10 and 20 seconds. Without the "hick" maneuver of Consciousness), which feels like your brain is being drained of blood. Consider that you will likely weigh as much as a small family automobile during those 20 seconds as well. We typically feel fatigued after a roller coaster flight since it is challenging and exhausting to move our limbs.

PS: Flying has destroyed skydiving and roller coasters.

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How much heat is absorbed when of C(s) reacts in
the presence of to produce CS2(1) and CO(g)
according to the following chemical equation?
5 C(s) + 2 SO₂(g) → CS₂(1) +4 0(g) AH = 239.9 kJ

Answers

120 KJ of heat is absorbed in this reaction.

As we know

Where W is the provided mass of carbon, which is 30g, n=W/M

M is the carbon molar mass. 30 / 12 = 2.5 moles at 12g/mol.

As a result, the heat absorbed by 2.5 moles of carbon is equal to 120 kJ, or half the heat absorbed by 5 moles of carbon, or 239.9 kJ.

The heat evolved (either emitted or absorbed) during a process that runs at constant pressure is equivalent to the change in enthalpy. The internal energy (U) and pressure-volume product (PV), are both supplied by the equation:

H=U+PV

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A carbon atom has 6 electrons however, its valence is 4. this is because the carbon atom ___.

Answers

Since carbon has four valence electrons, it can create four covalent bonds to reach the entire outer energy level.

What are valence electrons?

The electrons in an atom's outermost shell, or energy level, are called valence electrons. For instance, the valence electrons of oxygen are six, with two in the 2s subshell and four in the 2p subshell.

For neutral atoms, the number of valence electrons is equal to the number of the atom's primary group. The main group number of an element in the periodic table can be found by looking at its column. For instance, the group 4 member carbon contains four valence electrons. Oxygen, a group six member, has six valence electrons.

Chlorine, fluorine, iodine, and astatine are members of the halogen family of elements, which are those containing seven electrons in the valence shell.

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the resultant pressure force acting on a body completely or partially submerged in a liquid is the ______________________________.

Answers

The resultant pressure force acting on a body completely or partially submerged in a liquid is the

When a body is completely or partially submerged in a liquid, the resultant pressure force acting on the body is called the buoyant force.

What is buoyant force?

A fluid's uoyancy, also known as an upthrust, is an upward force that works against the weight of an item that is partially or completely submerged in the fluid. Because of the weight of the fluid on top, pressure in a fluid column rises with depth.

Accordingly, a fluid column's bottom has a higher pressure than its top. Similar to this, when an object is submerged in a liquid, the pressure at the bottom of the object is higher than at the top. The net force on the object is upward due to the pressure difference. According to Archimedes' principle, the force's strength is proportional to the difference in pressure and is equal to the weight of the fluid that would otherwise occupy the space.

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gold is fcc and has a lattice constant of 0.40788 nm. calculate a value for the atomic radius of a gold atom in nanometers.

Answers

Gold is fcc and has a lattice constant of 0.40788 nm . The value for the atomic radius of a gold atom in nanometers is 0.14421 nm. .

A gold atom touches another along the diagonal on each face of the unit cell of a fcc lattice, which has right angles. Typically, the diagonal is shown as extending from the center of one atom to the center of a second atom and to the center of a third atom. As a result, one can construct a right triangle whose hypotenuse is 4r, where r is the radius of a gold atom, and whose legs both have lengths of a = 0.40788 nm. By applying the Pythagorean theorem,

a^2 +  a^2  = ( 4r )^2,

2 a^2 + = (16r^2) ,

and r = (21/2/4)a,

where an is the stated covalent atomic radius of gold and r is 0.14421 nm.

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an fcc metal is known to have a lattice parameter of 0.45 nm and an atomic weight of 96.4 g/mol. calculate its theoretical density in g/cm3. (answer format x.xx)

Answers

The density of an element with a lattice perimeter of 0.45 nm and an atomic weight of 96.4 g/mol is 7.05 g/cm^3.

Based on the position of atoms in a solid, they are divided into many categories like simple cubic, face-centered cubic(fcc), body-centered cubic(bcc), etc.

In face centered cubic type of solid, the atoms are present at the corners and face center,  the effective number of atoms(Z) is 4.

The formula for the density of a solid is

Density = M x Z/ NA x a^3

Here M is the atomic weight of the metal= 96.4 g/mol

Z is the  number of atoms = 4

NA is the Avogadro number = 6.022 x 10^23

a is the lattice perimeter = 0.45 nm

Putting the given values in the equation,

Density = 7.05 g/cm^3.

Hence, the density of an element with a lattice perimeter of 0.45 nm and an atomic weight of 96.4 g/mol is 7.05 g/cm^3.

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1 points ebookprintreferencescheck my workcheck my work button is now disableditem 3 what is the molality of a solution prepared by dissolving 84.7 g of kmno4 in 165 g of water?

Answers

The molality of a solution prepared by dissolving 84.7 g of kmno4 in 165 g of water is 3.25m

What is molality?

Molality is a measure of number of the moles of solute in a solution corresponding to 1 kg or 1000 g of solvent. This contrasts with definition of the molarity which is based on a specified volume of solution.

The term molality is formed in analogy to the molarity which is molar concentration of a solution. The earliest known use of intensive property molality and of its adjectival unit, now-deprecated molal, appears to have been published by G. N. Lewis and M. Randall in the 1923 publication of Thermodynamics and Free Energies of Chemical Substances. Though two terms are subject to being confused with the one another, the molality and molarity of a dilute aqueous solution are nearly same, as one kilogram of water (solvent) occupies volume of 1 liter at room temperature and a small amount of solute has little effect on the volume.

Therefore,

molality = moles of solute / kg solvent, "m"

             =0.535mol/0.165kg

             =3.25m

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What factor affects the rate of a chemical reaction?
a) collision frequency
b) fraction of collisions with sufficient energy
c) orientation of molecules
d) all of these

Answers

Answer:

d. all of these

Explanation:

i had this same question so hope this helps

At ph 7.0, converting an aspartic acid to beta-carboxyl aspartate, will have what effect on the overall charge of the protein containing it?

Answers

At ph 7.0, converting an aspartic acid to beta-carboxyl aspartate, will have Charge will remain same.

What is beta-carboxyl aspartate?

An -amino acid used in the biosynthesis of proteins is aspartic acid (symbol Asp or D; the ionic form is called aspartate) (also known as aspartic acid or aspartate). It includes an amino group and a carboxylic acid, just like every other amino acid does. The protonated form of the -NH+ contains its -amino group.

While its '-carboxylic acid group is deprotonated to 'COO' under physiological conditions, it forms 3 in the absence of those conditions. Aspartic acid has an acidic side chain (CH2COOH) that interacts with other amino acids, enzymes, and proteins in the body. Under physiological conditions (pH 7.4), the side chain typically appears in proteins as the negatively charged aspartate form, or COO. Aspartic acid is a non-essential amino acid in humans, meaning the body can synthesize it as needed. By the codons GAU, it is encoded.

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what includes the carbon dioxide and carbon monoxide in the atmosphere, produced by business processes and systems?

Answers

Carbon emissions includes the carbon dioxide and carbon monoxide in the atmosphere, produced by business processes and systems.

What does carbon emission mean?

Carbon dioxide emissions or CO2 emissions are emissions stemming by the burning of fossil fuels and the manufacture of cement; they contain carbon dioxide produced during consumption of solid, liquid, and gas fuels also as gas flaring.

How does carbon emission work?

A drive to figure , a flip of a light-weight switch and a flight out of town all rely on the combustion of fossil fuels like oil, coal and gas. When fossil fuels burn, they emit greenhouse gases like CO2 that contribute to heating . Ninety-eight percent of atmospheric CO2 comes from the combustion of fossil fuels.

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3. If Lithium and oxygen were placed together - predict what most of it would form (choose one) and explain why the compound you chose would form: Li O (Lithium monoxide) Li2 O (Lithium Oxide) or Li2O2 *(Lithium peroxide)

Answers

The compound that would be formed if lithium and oxygen were placed together is Li₂O (lithium oxide), which is option B.

What is a chemical reaction?

A chemical reaction is a process, typically involving the breaking or making of interatomic bonds, in which one or more substances are changed into others.

When a metal and nonmetal reacts, the charge of the metal becomes the subscript of the nonmetal and vice versa.

According to this question, lithium metal reacts with oxygen nonmetal. Lithium is an element with a charge of +1 while oxygen has a charge of -1.

This suggests that the compound that will be formed if lithium and oxygen were placed together is Li₂O (lithium oxide).

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A+chemist+wants+to+mix+an+8%+salt+solution+with+a+20%+salt+solution+to+obtain+12+liters+of+an+18%+salt+solution.+how+much+of+the+20%+solution+should+she+use?

Answers

She will use 10 L of the 20% solution.

What is a mixture ?

A mixture is a substance made up of two or more dissimilar chemical compounds that are not chemically linked in chemistry. When two or more substances are physically combined, their identities are maintained, and the mixture takes the shape of solutions, suspensions, or colloids.

Let

x = amount of 8% solution

y = amount of 20% solution

The chemist wants to end up with a 12-L mixture, so

x + y = 12

0.8x L of salt is present in an 8% solution, while 0.2y L is present in a 20% solution. When blended, the mixture should have an 18% salt concentration, or 18% of 12 L = 2.16 L of salt, so

0.08x + 0.2y = 2.16

Solve for y :

x = 12 - y

0.08 (12 - y) + 0.2y = 2.16

0.96 - 0.08y + 0.2y = 2.16

0.12y = 1.2

y = 10

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The image shows energy flowing from coal, to a coal-fired power plant, to a power
tower, and finally to a radio. Match the types of energy as they are converted from
one type to the other in each stage of the process. HELPP PLS

Answers

The types of energy are correctly matched below:

Thermal energy: Coal-fire power plant

Electrical energy: power plant

Sound energy: Radio

Chemical/potential energy:Coal

What is energy conversion?

Energy conversion is also known as energy transformation whereby a type of energy changes to another form of energy.

There are various types of energy which includes:

Thermal energy: A typical example of thermal energy is the coal-fire power plant which generates heat energy upon its performance and usage.

Electrical energy: A typical example of the electrical energy is the power plant which has the ability to generate electricity.

Sound energy: A typical example of the sound energy is the radio device which has the ability to generate sounds.

Chemical/potential energy: A typical example of chemical energy is the coal.

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i need the answers pleaseee! this is acids and bases for chemistry

Answers

- Cleaning solutions are a good example of basic solutions

- Acidic solutions corrode metals

- True, both acids and bases conduct electricity

one possible drawback to moist-heat cookery is that may leach out and be lost in the liquid.

Answers

One possible drawback to moist-heat cookery is that color, flavor, vitamins and minerals may leach out and be lost in the liquid.

What is cooking with moist heat?

Liquid or steam is used in moist heat cooking to deliver heat to the food. Poaching, steaming, and braising are three common methods. Each os the moist heat cooking method uses heat in the form of liquid or vapor to slowly cook food and loosen connective tissue.

Numerous nutrients, including vitamins and minerals, are lost when food is cooked using moist heat because these nutrients stay in the liquid that they were originally cooked in. Taste is lost when food is boiled since it also stays in the liquid.

Question:

One possible drawback to moist-heat cookery is that _______ may leach out and be lost in the liquid.

a.color

b.flavor

c.vitamins

d.minerals

e.all the above

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the second law of thermodynamics states that disorder in a system is always increasing. in simple terms, one can think about dropping nacl crystals into a glass of water. the solvation and diffusion of ions is favored by there is an increase in: group of answer choices

Answers

Then  there is an increase in Entropy.

What is entropy?

A state of disorder, unpredictability, or uncertainty are frequently related with the scientific concept of entropy, which is also a quantifiable physical characteristic. The notion and the phrase are employed in a variety of disciplines, including classical thermodynamics, where they were initially identified, statistical physics, which describes nature at the molecular level, and information theory. It has wide-ranging uses in physics and chemistry, biological systems and how they relate to life, cosmology, economics, sociology, weather science, and information systems, particularly the transfer of information through telecommunication.

The amount of different configurations that the atoms in a system can take depends on its entropy. Entropy can be thought of as a gauge of uncertainty or unpredictability.

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How many molecules of nh4br are in 3.166 g of nh4br? show the conversions required to solve this problem and calculate the molecules of nh4br.

Answers

0.19264 × 10^23 molecules of NH4Br are there in 3.166g of NH4Br.

Given

Mass = 3.166g

Molecular mass of NH4Br = 97.94

Moles = Given mass / molar mass

Moles = 3.166 / 97.94

Moles = 0.032

To get number of molecules

Molecules = Moles × 6.02 × 10^23

                = 0.032 × 6.02 × 10^23

Molecules = 0.19264 × 10^23

Depending on the context, the term may or may not include ions that fit this condition. A molecule is a collection of two or more atoms held together by the attractive forces known as chemical bonds.

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crystals are made using supersaturated solutions of solids in water. these solutions hold more of the solute than they would at room temperature. how are these solutions made?

Answers

crystals are made using supersaturated solutions of solids in water. these solutions hold more of the solute than they would at room temperature.

An appropriate solution might be that the water might want to be heated to a better temperature, which might provide molecules and ions extra  kinetic energy, growing solubility.

What are supersaturated solutions?

A solution that has extra solute dissolved in it in comparison to a saturated solution is referred to as a supersaturated solution. It may be organized with the aid of using including extra solute to an solution this is already saturated with the technique of heating in order that the solute may be effortlessly dissolved. These solutions are in a non-equilibrium state.

Supersaturated solutions maintain extra of the solute at better temperatures than they might at room temperature. Hence, an appropriate solution might be that the water might want to be heated to a better temperature, which might provide molecules and ions extra  kinetic energy, growing solubility.

Generally, solubility will increase with boom in temperature. At better temperature, the kinetic energy of molecules in answer boom. Consequently, extra of the molecules/ions of solutes collide extra with every different and dissolve. At decrease temperature, the molecules of the solutes crystalize out in answer.

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Does a reaction occur when aqueous solutions of potassium carbonate and nickel(ii) nitrate are combined?

Answers

Does a reaction occur when aqueous solutions of potassium carbonate and nickel(II) chloride are combined yes no If a reaction does occur.

What is potassium carbonate ?

The inorganic substance K2CO3 is known as potassium carbonate. It is a soluble in water white salt. It is ethereal and frequently takes the form of a moist or damp solid. To make soap and glass, potassium carbonate is mostly employed.

The main component of potash, as well as the more refined pearl ash or tartar salts, is potassium carbonate. In the past, potash was baked to eliminate impurities and produced as pearl ash. It was the pearl ash that was left behind, a fine, white powder. Samuel Hopkins received the first patent ever granted by the United States Patent Office in 1790 for a better way to make potash and pearl ash.

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