The aqueous solutions that have the highest boiling point is glucose.
A solution with the highest point at standard pressure is the one with the most particles or ions, according to the van't Hoff factor (the measurement of the solute's collinear characteristics influence (boiling point, freezing point depression).
ΔTb=i x kb x m = Elevation in boiling point
i = Van'T Hoff factor
m = molality
The ratio between the initial concentration of the solution's atoms at the time of dissolution and the concentration of the solution taken from its mass is known as the van't Hoff factor.
glucose has the highest boiling point.
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ip the electron in a hydrogen atom with an energy of -0.544 ev is in a subshell with 18 states. part a what is the principal quantum number, n, for this atom?
The principle quantum number(n) for this atom is 5
The position in an atom's shells and the size of an electron orbital are described by the primary quantum number, which is the most significant. The quantum number connected to the angular momentum of an atomic electron is called the azimuthal quantum number.
The energy of the electron in a hydrogen atom [tex]E_{n} = -0.544eV[/tex]
For hydrogen, Z = 1
The principal quantum number for [tex]n[/tex] for this atom is calculated by for this atom is determined using Bohr's atomic model,
So that [tex]E_{n} = \frac{-13.6(Z)^{2}}{n^{2}}eVatom^{-1}[/tex]
Where [tex]n[/tex] is the principal quantum number, [tex]E[/tex] is the energy, and [tex]Z[/tex] is the atomic number The values are substituted,
=> [tex]-0.544eV = -\frac{13.6(1)^{2}}{n^{2}} eVatom^{-1}[/tex]
[tex]n^{2} = -\frac{13.6}{-0.544} \\n^{2} = 25\\n = 5[/tex]
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what are the correct coefficients if the law of conservation of mass is applied to the decomposition of solid ammonium nitrite to nitrogen gas and liquid water?
Ammonium nitrite, NH4NO2, will decompose to yield nitrogen gas and water Vapor by the following equation:
NH4NO2(s)--->2H2O(g)+N2(g)
A decomposition reaction can be defined as a chemical reaction in which one reactant breaks down into two or more products. As per law of conservation of mass, the mass of your initial substances (reactants) will be the same as the mass of the substances that you get after the reaction has occurred (products). The mass will stay the same because the number of each kind of atom stays the same. The mass will increase because a new kind of molecule is formed. The principle is that the mass of matter, in a closed system, will always be the same no matter what type of change happens to the matter. Whether it's a change in state, or dissolving, or a chemical reaction, or any combination of these, the amount of mass will not change.
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how would you prepare 1 l of a 0.0500 m phosphate buffer at ph 7.50 using crystalline na2hpo4 and a solution of 1.0 m hcl?
The molarity of HCl is 1.0 M. the volume of HCl is calculated as follows:
The volume of HCl = Number of moles/Molarity
0.017 mol/1.0 mol/L
= 0.017 L
=17 mL
Since the total volume of the buffer solution is 1 L. The volume of water is calculated as:
The volume of water = 1 - Volume of HCI
= 1-0.017
= 0.983 L
Hence, to prepare a phosphate buffer, 7.1 g of Na, HPO4, 17 mL of HCl, and 0.983 L of water are mixed together.
Phosphate-buffered saline is a commonly used buffer in biological research. This is an aqueous saline solution containing disodium hydrogen phosphate, sodium chloride, and in some formulations potassium chloride and potassium dihydrogen phosphate. Buffers help maintain a constant pH.
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Which group of elements shares characteristics with both metals and nonmetals?
a. salts
b. metalloids
c. halogens
d. lanthanides
Answer:
The correct answer is Metalloids
select true or false: more energy is required to break a bond with an order of 3/2 than is required to break a bond of order 2.
Answer: The answer is false
Explanation:
a mixture of gaseous reactants is put into a cylinder, where a chemical reaction turns them into gaseous products. the cylinder has a piston that moves in or out, as necessary, to keep a constant pressure on the mixture of . the cylinder is also submerged in a large insulated water bath. (see sketch at right.) the temperature of the water bath is monitored, and it is determined from this data that of heat flows into the system during the reaction. the position of the piston is also monitored, and it is determined from this data that the system does of work on the piston during the reaction. is the reaction exothermic or endothermic?
The reaction would be endothermic since heat flowed INTO the system
The temperature of the water bath would down since heat left the water and entered the system
The piston would move in since it is doing work ON the system.
The reaction would absorb energy since both heat and work are being done ON the system
∆E = q + w = 270. kJ + 365. kJ = 635 kJ of energy absorbed by the reaction
How hot or cold something is can be expressed numerically using the physical concept of temperature. Temperature is measured with a thermometer.
Different temperature scales, which traditionally established various reference points and thermometric materials, are used to calibrate thermometers. The most widely used scales are the Kelvin scale (K), which is mostly used in science, the Fahrenheit scale (°F), and the Celsius scale, also referred to as centigrade and denoted by the unit symbol °C. The kelvin is one of the seven base units in the International System of Units (SI).
The complete question is:
A mixture of gaseous reactants is put into a cylinder, where a chemical reaction turns them into gaseous products. The cylinder has a piston that moves in or out, as necessary, to keep a constant pressure on the mixture of 1atm. The cylinder is also submerged in a large insulated water bath.
The temperature of the water bath is monitored, and it is determined from this data that 270.kJ of heat flows into the system during the reaction. The position of the piston is also monitored, and it is determined from this data that the piston does 365.kJ of work on the system during the reaction.
a) Is the reaction endo- or exo- thermic?
b) Does the temp. of the water bath go up or down?
c) Does the piston move in or out?
d) Does the reaction absorb or release energy?
e) How much energy does the reaction absorb or release? Be sure your answer has the correct number of significant digits.
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what is the total random kinetic energy of all the molecules in one mole of hydrogen at a temperature of 300 k? (b) with what speed would a mole of hydrogen have to move so that the kinetic energy of the mass as a whole would be equal to the total random kinetic energy of its molecules?
3741.3 J is the total random kinetic energy of all the molecules in one mole of hydrogen at a temperature of 300 k.7482.6 m/s is the speed of a mole of hydrogen have to move so that the kinetic energy of the mass as a whole would be equal to the total random kinetic energy of its molecules
At 300 K, the total random kinetic energy of all the molecules in one mole of hydrogen is 3741.3 J. The speed at which a mole of hydrogen must move in order for its kinetic energy to equal the total random kinetic energy of its molecules is 7482.6 m/s. The average kinetic energy of gas molecules is determined by absolute temperature, according to kinetic theory. At a specific temperature, all gases share the same average kinetic energy". Kinetic energy = 3/2 * RT = 3/2 8.314 * 300 = 3741.3 J,KE = 1/2 m v2,v2 = 2 KE/m = 2* 3741.3/1.
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Use the diagram to answer the question that follows.
Two different samples of matter are measured in each of these glass containers. Both of
the containers show the same measure for both samples of matter. The samples MOST
likely have which of these in common
If two different samples of matter are measured in each of these glass containers and Both of the containers show the same measure for both samples of matter. They would have same volume in common
What is volume?The space occupied inside an object's borders in three dimensions is referred to as its volume. It is sometimes referred to as the object's capacity.
The capacity of a thing is measured by its volume. For instance, a cup's capacity is stated to be 100 ml if it can hold 100 ml of water in its brim.
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Complete question unfound
calculate the standard gibbs free energy associated with the formation of ammonia from nitrogen and hydrogen at 25 c and 500 c
-23.4kj is the standard gibbs free energy associated with the formation of ammonia from nitrogen and hydrogen at 25 c and 500 c
-
The temperature is 25 deg C or 298 K.
ΔGo =−RTlnK=−8.314×298×ln1.3×104 =−23469J=−23.4kJ
Hence, the standard free energy change is -23.4 kJ
Gibbs free energy, thermodynamics The word "free energy" refers to a thermal potential that can be utilized to determine the maximal amount of work that a thermodynamically closed system can perform at constant pressure and temperature. The change in limitless energy that occurs when a chemical is created from its components in their most thermodynamically states under appropriate conditions is referred to as the free basic energy of formation. Ammonia is a colourless gas that has a strong suffocating odour. It easily dissolves in the water, forming an ammonium hypochlorite that can cause discomfort and burns. Under pressure, ammonia gas compresses easily and formation a clear, colourless liquid.
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(50 points)
Diurnal temperature range is the difference between ________ and ________ temperature each _________.
high, low, hour
high, low, day
beginning, ending, hour
beginning, ending, day
Answer: Diurnal temperature range is the difference between __maximum______ and ____minimum____ temperature each ___1 day______.
Explanation:
how many o atoms are in ammonium acetate? how many o atoms are in ammonium acetate? 5 2 1 3 none of the above
There are 2 O atoms are in Ammonium acetate ( CH₃COONH₄ ).
Ammonium ( NH₄⁺ ) comes from Ammonia ( NH₃ ) :
NH₃ + H⁺ → NH₄⁺ ( Ammonium ion )
Acetate ( CH₃COO⁻ ) comes from Acetic acid ( CH₃COOH ) :
CH₃COOH → CH₃COO⁻ + H⁺
Ammonium acetate :
NH₄⁺ + CH₃COO⁻ = CH₃COONH₄
Here, Ammonium ion does not have any O atom and acetate have 2 o atoms,
0-O + 2-O = Total number of atom O
Total number of atom O = 2
So, the right option is B. 2, there are 2 O atoms are in Ammonium acetate ( CH₃COONH₄ ).
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What is the mass of 2.0 moles of the element titanium is titanium molar mass is 47.9g/mol?
Answer:
The answer is 95.8 grams.
Explanation:
To solve this problem we need to use dimensional analysis. We have the amount in moles and want to find the mass in grams, so we need a conversion factor. This conversion factor is also given to us and allows us to "convert" between grams and moles. The dimensional analysis is modeled below:
2.0 mol * (47.9 g/1 mol) = 95.8 g
Notice how since we have the unit of moles in the numerator and the denominator, these will cancel out, yielding an answer expressed in grams.
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the solubility of caf2 is measured to be 0.017 g/l. based on this information, what is ksp for caf2? the molar mass of caf2 is 78.075 g/mol.
The molar mass of caf2 is 78.075 g/mol is 4.14 x 10^ -11.
CaF2 (s) <----> Ca2+ (aq) + 2F- (aq)
At equilibrium [Ca2+] = S , [F-] = 2S , where S is amount of CaF2 dissolved i.e solubility.
The molar mass of a chemical compound is determined by dividing its mass by the quantity of that compound, expressed as the number of moles in the sample, measured in moles. The molar mass of a material is a bulk attribute rather than a molecular one.
given S = 1.7 x 10^ -2 g/L = 0.017 g/L
we can convert g/L to mol/L by dividing S with Molar mass of CaF2
S in mol / L = (S in g/L) / ( CaF2 molar mass) = ( 0.017g/L) / ( 78.07g/mol) = 0.000218 mol /L
[F-] = 2S = 2 x ( 0.000218) = 0.000436 mol/L
now Ksp = [Ca2+] [F-]^2
= ( 0.000218 ) (0.000436 )^2
= 4.14 x 10^ -11
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What volume in ml of 0.175 m na2so4 solution is necessary to completely react with 35.0 ml of 0.112 m agno3?
The volume of 0.175M sodium sulfate solution that is necessary to completely react with 35.0 mL of 0.112M silver nitrate is 22.4mL.
How to calculate volume?Molarity is the concentration of a substance in solution, expressed as the number moles of solute per litre of solution.
The volume of a solution can be calculated using the following expression:
CaVa = CbVb
Where;
Ca = initial concentrationVa = initial volume Cb = final concentrationVb = final volumeAccording to this question, 0.175M sodium sulfate solution completely reacts with 35.0 mL of 0.112M silver nitrate. The volume required for this reaction to occur can be calculated as follows:
0.175 × Va = 35 × 0.112
0.175Va = 3.92
Va = 3.92/0.175
Va = 22.4mL
Therefore, 22.4mL is the volume of the sodium sulfate needed.
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ammonium ion (nh4 ) is an acid that can dissociate to form ammonia (nh3) and h in aqueous solution. the pka for this reaction is 9.25. when total ammonium ion is 50% dissociated, what is the ph?
When total ammonium ion is 50% dissociated, The pH is 9.25.
Given, the pKₐ of ammonium ion (NH₄⁺) is 9.25.
The dissociation of NH₄⁺ to ammonia (NH₃) and H⁺ in aqueous solution is represented below.
It is stated that the ammonium ion is 50% dissociated in the solution. Therefore the concentration of each species at that instant [if started with 1M conc. of NH4+ (aq)] is summarized as follows:
NH4+ (aq) ⇌ NH3 (aq) + H+ (aq)
Initial conc. (in M) 1 - -
At 50% dissociation 1-0.5, i.e., 0.5 0.5 0.5
The given value of pKₐ immediately reminds us of the form of Henderson-Hasselbalch equation containing pKₐ , i.e.,
pH = pKₐ + log₁₀ [tex]\frac{[salt]}{[acid]}[/tex] _ _ _(i)
But, NH₄⁺ (aq) exists as the conjugate acid form, as well as the salt (ionized) form. Hence, we cannot use equation. (i) for our calculations.
Therefore, we need to convert the above value of Kₐ to the equivalent Kb (for NH₃), corresponding to the reverse equilibrium.
This is achieved by using the relation
Kb = [tex]\frac{Kw}{Ka}[/tex]
or, -log₁₀ Kb = -log₁₀ Kw + log₁₀ Ka
or, pKb = pKw - pKa = 14 - 9.25 = 4.75
where, pKw = 1 x 10⁻¹⁴ (at 298 K).
Therefore, pKb of ammonia (NH₃) = 4.75
Now, we need to use the form of Henderson-Hasselbalch equation which uses Kb; which is in fact
pOH = pKb + log₁₀ [tex]\frac{[salt]}{[base]}[/tex] _ _ _(ii)
where the salt is NH₄⁺, and the base is NH₃. Further, we know that
Kw = [H⁺][OH⁻] or, pOH + pH = pKw = 14 or, pOH = 14 - pH
Substituting this relation in eq. (ii) gives
14 - pH = pKb + log₁₀ [tex]\frac{[NH4+]}{[NH3]}[/tex]
or, pH = 14 - pKb — log₁₀ [tex]\frac{[NH4+]}{[NH3]}[/tex]
As calculated, pKb = 4.75, [NH₄⁺] = 0.50 M, while [NH₃] = 0.50 M, assuming we start with a conc. of 1M NH₄⁺. Hence,
pH = 14 – 4.75 – log₁₀ [tex]\frac{0.50}{0.50}[/tex]
= 9.25 - log₁₀ ( 1 )
= 9.25 - 0
pH = 9.25
Hence, the pH of a solution consisting of 50% NH₃ and 50% NH₄⁺ will be equal to 9.25.
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Which scientist help developed the current model of the atom which states that electrons are located in regions known as orbitals or electron clouds?
Erwin Schrodinger is the scientist who created the present theory of the atom, which states that electrons are found in areas known as orbitals or electron clouds.
He proposed the treatment of electrons as matter waves in the quantum mechanical model of the atom. In 1926, Erwin Schrodinger created the "Electron Cloud Model." It was made up of an electron cloud with many different orbital levels surrounding a dense nucleus. He determined areas around the nucleus that are most likely to contain electrons based on his estimates. He referred to these areas as orbitals. "Lobes" are a term used to describe the likelihood of finding electrons in orbitals. This atomic model is a representation of an atom that has a small, massive nucleus that is encircled by a cloud of electrons that are travelling quickly.
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If the density of solid chromium is 7.15 g/cm3 , what is the packing efficiency of Cr if it adopts a body‑centered cubic unit cell? The molar mass of Cr is 51.996 g/mol .
The packing efficiency of Chromium atom is 68.8 %.
What is the volume of the Chromium atom?
The volume of the chromium atom is calculated by applying the following equation.
V = M / ρ
where;
M is the molar mass of the Chromium atomρ is the density of the Chromium atomV = ( 51.996 g ) / ( 7.15 g/cm³)
V = 7.27 cm³
The radius of the atom for a body‑centered cubic unit cell is calculated as follows;
V = (2) x (4/3 πr³)
V = (8πr³)/3
8πr³ = 3V
r³ = 3V / 8π
r = (3V / 8π)^¹/₃
r = (3 x 7.27 / 8π)^¹/₃
r = 0.95 cm
The volume of the unit cell is calculated as;
Vc = (4r/√3)³
Vc = (4 x 0.95 / √3)³
Vc = 10.56 cm³
The packing efficiency of Chromium atom is calculated as;
= volume of the atom / volume of unit cell x 100%
= (7.27 cm³ / 10.56 cm³) x 100%
= 68.8 %
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Which of the following concentration measures will change in value as the temperature of a solution changes?
1. mass percent
2.mole fraction
3. molality
4. molarity
5. all of these
The concentration measures will change in value as the temperature of a solution changes is molarity. The correct option is 4.
What is molarity?The molarity of a substance refers to how much of it is present in a given volume of solution (M). Molarity is the measure of how many moles of a solute are present per liter of a solution. Molarity is also referred to as a solution's molar concentration.
To find the equation for molarity, divide the volume of solvent used to dissolve the given solute by the number of moles of that solute. M = n V
Since the volume of the solution rises as the temperature rises, molarity decreases. Therefore, molarity is normally affected when therefore is a change in temperature of a solution either when it increases or decreases.
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During chemistry class, carl performed several lab tests on two white solids. The results of three tests are seen in the data table. Based on this data, carl has concluded that substance b must have ____________ bonds.
During chemistry class, carl performed several lab tests on two white solids. The results of three tests are seen in the data table. Based on this data, carl has concluded that substance b must have ionic bonds.
How are ions bound together?The complete transfer of certain electrons from one atom to another results in the formation of an ionic connection. A negatively charged ion known as a cation results from an atom losing one or more electrons. An anion, or negatively charged ion, is created when an atom gains one or more electrons.
How are ionic bonds recognized?If the electronegativity of the two atoms differs by enough to allow one to totally draw an electron away from the other, the connection is ionic. Compounds that mix elements from the left-hand side of the periodic table frequently encounter such circumstance (sodium, potassium, calcium, etc.)
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How many liters (L) of water need to be added to prepare 1000mL of
0.3M NaCI from a 5M NaCI stock solution?
The amount, in liters, of water needed to be added to prepare 1000 mL of 0.3 M NaCl from a 5 M NaCl stock solution would be 0.94 L.
Dilution problemAccording to the dilution principle, the number of moles of solutes before dilution must be equal to the number of moles of solutes after dilution. This is mathematically expressed as:
[tex]m_1v_1[/tex] = [tex]m_2v_2[/tex]
Where [tex]m_1[/tex] and [tex]m_2[/tex] are molarities before and after dilution, and [tex]v_1[/tex] and [tex]v_2[/tex] are volumes before and after dilution.
In this case, [tex]m_1[/tex] = 5 M, [tex]m_2[/tex] = 0.3 M, [tex]v_2[/tex] = 1000 mL.
Let's find [tex]v_1[/tex]:
[tex]v_1[/tex] = [tex]m_2v_2[/tex] /[tex]m_1[/tex]
= 0.3x1000/5
= 60 mL
In other words, the volume of the stock solution to be taken is 60 mL. This volume has to be diluted by water to the 1000 mL mark. Thus, the amount of water to be added would be:
1000 - 60 = 940 mL
940 mL = 0.94 L
In summary, 0.94 L of water will be required to prepare the solution.
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lactic acid has a pka equal to 3.86. what fraction of total lactic acid will be dissociated to lactate at ph 7.00?
The lactic acid has a pka equal to 3.86. the fraction of total lactic acid will be dissociated to lactate at pH 7.0 is 1.3 × 10³.
given that :
pH = 7.0
the pka value for the lactic acid = 3.86
according to the Henderson hasselbalch we get :
pH = pka + log [ H] / [HA]
substituting all the values ,we get
pH = pka + log [ H] / [HA]
7 = 3.86 + log [ H] / [HA]
log [ H] / [HA] = 3.14
[ H] / [HA] = 10 ^ 3.14
[ H] / [HA] = 1380.3
[lactate]/ [lactic acid] = 1.3 × 10³
thus, the ratio of the [lactate]/ [lactic acid] = 1.3 × 10³
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based on their structures, rank phenol, benzene, benzaldehyde, and benzoic acid in terms of lowest to highest boiling point. explain your reasoning.
Increasing order of boiling point of the given molecules is
Benzene< Benzaldehyde<Phenol<Benzoic acid.
Boiling point is directly proportional to intermolecular forces.
The intermolecular forces present in the given molecules are.
so, as benzene is nonpolar , only weak london dispersion force is present. Hence boiling point of benzene is least among the given molecules. Benzaldehyde is polar, so dipole -dipole force is also present. But no H-bonding is present. Hence, boiling point of benzaldehyde is less than that of phenol and benzoic acid. Now, both phenol and benzoic acid is polar as well as they can form H-bonding. But phenol can only form intermolecular hydrogen bonding, but benzoic acid can form both intermolecular as well as intramolecular H bonding. So it can exist as dimer. The presence of dimer further strengthen the vander Waals dispersion forces , that increases the boiling point of Benzoic acid.
Hence increasing order of boiling point of the given molecules is
Benzene< Benzaldehyde<Phenol<Benzoic acid.
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If someone weighs 711 N on Earth, what is that person's
mass?
A. 71.1 kg
B. 70.0 kg
C. 72.6 kg
D. 73.5 kg
Answer:
c.
Explanation:
the closest would be C.
1N = 0.10197 kg
1 kg = 9.81 N
9.81×72.5=711.225
methylhydrazine (ch6n2) is commonly used as a liquid rocket fuel. when 4.00 g of methylhydrazine is combusted in a bomb calorimeter, the temperature of the calorimeter increases from 25.00 oc to 39.05 oc. in a separate experiment the heat capacity of the calorimeter is measured to be 7.794 kj/oc. what is the heat of reaction for the combustion of a mole of ch6n2 in this calorimeter?
The heat of reaction for the combustion of a mole of C₆NH₂ in this calorimeter is - 1.30 × 10³ kJ/mol.
The reaction is given as :
2CH6N2(l) + 5O2(g) ----> 2N2(g) + 2CO2(g) + 6H2O(l)
given that :
initial temperature = 25 °C
final temperature = 39.05 °C
heat capacity of the calorimeter = 7.794 kJ/°C
mass of methylhydrazine = 4 g
molar mass of methylhydrazine = 46.1 g/mol
the heat of reaction Q = - C ΔT
= - 7.794 × ( 39.05 - 25)
= - 113.0 kJ
the heat of reaction of a mole = - (113.0 kJ / 4) × 46.1
= - 1.30 × 10³ kJ/mol
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You are approached by a neighboring group of human survivors and they are wanting to know what you are shooting at the alien craft so you can see them at night. Choose the right explanation for this effect.
a Chemicals in the paint absorb light energy in a process called phosphorescence, radioactive elements keep the glow going.
b Key element is sulfur and the sulfur creates light after being heated in a process called sulfunescense
c Chlorine is the reason why the alien vessels glow.
d Calcium make the light when the craft comes into contact with water
Atoms of different element can not have same atomic number because only same type of atoms combine to form element. Atoms belonging to different element can have different atomic number. Therefore, the correct option is option A.
What is element?Element generally consist of atoms or we can atoms combine to form element. Atoms of an element is always same, means all the properties of all atoms of one type of element is same.
Two or more than two atoms with different physical or chemical properties can not combine together to form an element. Chemicals in the paint absorb light energy in a process called phosphorescence, radioactive elements keep the glow going.
Therefore, the correct option is option A.
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a chemist adds of a zinc nitrate solution to a reaction flask. calculate the millimoles of zinc nitrate the chemist has added to the flask. round your answer to significant digits.
992 millimoles of zinc nitrate the chemist has added to the reaction flask.
Zinc nitrate is an inorganic compound with the formula Zn(NO₃)₂. This colorless, crystalline salt is extremely hydrophilic. it's generally encountered as a hexahydrate Zn(NO₃)₂·6H₂O. it's soluble in each water and alcohol. Zn Nitrate may be a colorless or white, odorless, crystalline (sand- like) solid or flake. it's used as a catalyst and a mordant for dyes, and in liquid plant food.
Chemists and materials scientists study substances at the atomic and molecular levels and analyze the ways that within which the substances move with each other. They use their information to develop new and improved product and to check the standard of factory-made product.
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A chemist adds 435.0mL of a 2.28 M zinc nitrate ZnNO32 solution to a reaction flask. Calculate the millimoles of zinc nitrate the chemist has added to the flask. Round your answer to 3 significant digits.
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any area that has been treated with talcum powder or skin lotion must be rubbed with ________ to remove the residue and facilitate the adherence of the leads.
Any area that has been treated with talcum powder or skin lotion must be rubbed with alcohol to remove the residue and facilitate the adherence of the leads.
What is Alcohol?This is referred to as a substance which is derived from the fermentation of sugar under anaerobic conditions and it usually has an intoxicating effect.
However, it is also used for other purposes such as skin care and is usually applied after it has been treated with talcum powder or skin lotion so as to remove the residue and facilitate the adherence of the leads thereby making alcohol the correct choice in this scenario.
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explain the difference in behavior between water and the buffer with addition of acid or base. are your results as expected? why or why?
The adding of an acid or base to a buffer seems to have no effect on the pH of the buffer. In contrast, going to add acid or base to unbuffered water drastically changes the pH.
Any hydrogen-containing substance skilled of making a donation a proton (hydrogen ion) to that other substance is defined as an acid. A base is a compound or ion that really can accept an acid's hydrogen ion. The sour flavours of weak acids is generally described by the contaminant that emits hydrogen ions in water and formation salts by incorporating with these metals. Acids have a bitter aftertaste and cause certain dyes to turn red. buffer is an aqueous solution that withstands adjustments in pH upon on the addition of either an acid or a base". Furthermore, adding water to a buffer or going to allow it to evaporate from of the buffer has no significant effect just on pH of the buffer.
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Bonus question: Your pendulum can be used to calculate acceleration due to gravity (g). Measure the length of the pendulum (L) in meters and use your average period (T) to calculate acceleration due to gravity on Earth.
Answer:
To calculate acceleration due to gravity using a pendulum, you need to measure the length of the pendulum in meters and the average period of the pendulum's swing in seconds. Once you have these measurements, you can use the following formula to calculate acceleration due to gravity:
g = 4π^2L/T^2
where g is the acceleration due to gravity, L is the length of the pendulum in meters, and T is the average period of the pendulum's swing in seconds.
For example, if the length of the pendulum is 1 meter and the average period of the pendulum's swing is 2 seconds, the acceleration due to gravity would be calculated as follows:
g = 4π^2(1)/(2)^2 = 4π^2/4 = π^2 = 9.87 m/s^2
Therefore, the acceleration due to gravity on Earth would be approximately 9.87 meters per second squared.
the density of an unknown gas is 2.00 grams per liter at 3.00 atmosphere pressure and 127oc. what is the molar mass of this gas?
The density of an unknown gas is 2.00 grams per liter at 3.00 atmosphere pressure and 127oc.the molar mass of this gas is 21.87 g/mol.
given that :
density , d = 2 g/L
pressure P = 3 atm
temperature , T = 127 °C
the ideal gas equation is given as :
P V = nR T
and d = m / V
where,
m = mass
V = volume
Molar mass M = m/n
now the equation becomes :
P V / m = n R T / m
P / d = R T / M
M = d R T / P
M = ( 2 g/L × 0.082 L atm / mol K × 400.15 K ) / 3 atm
M = 21.87 g / mol
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