Answer: 4.32g
Explanation:
MM of H2 = 1 x 2 = 2g/mol
2g of H2 contains 6.02x10^23 atoms.
Therefore Xg of H2 will contain 1.3 x 1024 atoms i.e
Xg of H2 = (2 x 1.3 x 1024) / 6.02x10^23 = 4.32g
How many molecules is 0.360 mole of water?
Answer: 2.17 x 10^23 molecules
Explanation:
1mole of H2O contains 6.02x10^23 molecules.
Therefore 0.360mole of H2O will contain = 0.36 x 6.02x10^23 = 2.17 x 10^23 molecules
There are approximately 2.16792 × 10^{23} water molecules in 0.360 mole of water, calculated by multiplying the moles by Avogadro's number.
we need to use Avogadro's number, which is 6.022 × 10^{23} molecules per mole. We multiply the number of moles by Avogadro's number to find the total number of molecules.
Calculation:
Multiply the number of moles (0.360) by Avogadro's number.0.360 mole ×6.022 ×10^{23} molecules/mole = 2.16792 × 10^{23} molecules.Therefore, 0.360 mole of water contains approximately 2.16792× 10^{23} water molecules.
Which feature is most likely found at a divergent boundary?
V
O fold
O plateau
O fault-block mountain
O anticline or syncline
Answer:
fault-block mountain
Explanation:
A sample of a compound is analyzed and found to contain 0.90 g of calcium and 1.60 g of chlorine.
The sample has a mass of 2.50 g. Find the percent composition of the compound.
Answer:
% age Composition of Calcium = 36 %
% age Composition of Chlorine = 64 %
Explanation:
Percent composition can be defined as the relative amounts of each element in a compound. It is calculated as,
% age Composition = Mass of element / Mass of compound × 100
Given Data:
Mass of Calcium = 0.90 g
Mass of Chlorine = 1.60 g
Mass of Compound = 2.50 g
Calculating %age composition of Calcium:
% age Composition = Mass of Calcium / Mass of compound × 100
% age Composition = 0.90 g / 2.50 g × 100
% age Composition = 36 %
Calculating %age composition of Chlorine:
% age Composition = Mass of Chlorine / Mass of compound × 100
% age Composition = 1.60 g / 2.50 g × 100
% age Composition = 64 %
Which law is described by the equation P.V. = P,V, ?
Answer: Boyle's law
Explanation: Boyle's law states that the volume of a mixed mass of gas is inversely proportional to the pressure provided the temperature remains constant. This can be stated mathematically as
P1 V1 = P2 V2
If an object is not moving its kinetic energy is zero.
True
False
Answer: This is true because kinetic energy depends on speed. If there's no speed, then there is no kinetic energy.
1. what type of ion is chlorine ?
2. what type of ion is oxygen?
3. what type of ion is
magnesium?
4. what type of ion is silicone?
5. what type of ion is carbonate?
6. what type of ion is nitrate?
Answer:
1. Univalent negative ion (Cl-)
2. Divalent negative ion (O2-)
3. Divalent positive ion (Mg2+)
4. Divalent negative ion (S2-)
5. Divalent negative ion (CO3)^2-
6. Univalent negative ion (NO3) ^-
calculate answers to the following problems to the correct number of significant figures.
30.07g/0.106mL=
Answer:
d = 283.68 g/mL
Explanation:
Here the unit given are gram/ milliliter. The given data shows that its density, because,
density = mass/ volume
d = m/v
d = 30.07 g/ 0.106 mL
d = 283.68 g/mL
Density:
Density is equal to the mass of substance divided by its volume.
Units:
SI unit of density is Kg/m3.
Other units are given below,
g/cm3, g/mL , kg/L
Formula:
D=m/v
D= density
m=mass
V=volume
Symbol:
The symbol used for density is called rho. It is represented by ρ. However letter D can also be used to represen t the density.
What I need to know to answer this question? and what the answer
Answer: A
Explanation:
The price increased over time, because the numbers underneath the Y Axis Points increase as times goes on.
Which of the statements accurately describes compounds?
They contain two visibly distinct parts.
They can be broken down by chemical means.
They cannot contain more than two different components.
They are pure substances.
They have different properties than the components that make them.
Answer:
True statements are 2, 4, 5
Explanation:
They can be broken down by chemical means because we need to break chemical bonds between two (or more) atoms.
They are pure substance because one can't separate them by physical means.
When one separate compounds on two (or more) substances, there are two (or more) different species and they all act differently.
Final answer:
A compound is a pure substance that consists of two or more elements in a fixed proportion, with properties distinct from the elements that compose it. Examples include water and table salt. Compounds can be chemically separated into simpler substances, unlike mixtures, where components retain their original properties.
Explanation:
When discussing compounds, there are key characteristics that define them. Compounds are pure substances with unique and consistent compositions that can be broken down by chemical means. Unlike a mixture, where the substances involved retain their individual properties, a compound has distinct properties that are different from those of the elements that make it up. For instance, when sodium (a soft, shiny metal) combines with chlorine (a pungent green gas), they form sodium chloride (table salt), which is a white, crystalline solid vastly different from either element.
A compound contains two or more elements chemically combined in a fixed proportion. An example of a compound is water (H₂O), consisting of two hydrogen atoms and one oxygen atom bonded together. A compound is not a mixture because it has a fixed composition throughout, and the attributes of its components blend to create entirely new properties.
how many ML are equal to 4.567 x 10^4mL?
Answer:
4.567x10^-5ML
The ML [tex]4.567[/tex] × [tex]10^4mL[/tex] equals the [tex]4.567[/tex] × [tex]10^-5 ML[/tex]
Given that,
[tex]4.567[/tex] × [tex]10^4mL[/tex]
To find,
Number of [tex]ML[/tex] in [tex]4.567[/tex] × [tex]10^4mL[/tex] = ?
Procedure:
As we know,
[tex]mL[/tex] is characterized as a fraction unit of volume
[tex]ML[/tex] is volume's manifold unit.
[tex]mL = 10^-3 L[/tex]
[tex]ML = 10^6 L[/tex]
Therefore,
[tex]1 L = 1000 mL[/tex] & [tex]1 ML = 1000000L[/tex]
Using this formula,
[tex]4.567[/tex] × [tex]10^4mL[/tex] into [tex]ML[/tex]
= [tex]4.567[/tex] × [tex]10^4mL[/tex] × [tex]1L/1000mL[/tex] × [tex]1ML/1000000L[/tex]
= [tex]4.567[/tex] × [tex]10^-5 ML[/tex]
Thus, [tex]4.567[/tex] × [tex]10^4mL[/tex] equals the [tex]4.567[/tex] × [tex]10^-5 ML[/tex].
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Calculate the amount of heat energy, in units of kilojoules, required to convert 50.0 g of liquid ethanol, CH3CH2OH, at 25.5°C to gaseous ethanol at 92.0°C. (Cethanol liquid = 2.44 J/g°C; Cethanol gas = 1.42 J/g°C; molar heat of vaporization of liquid ethanol = 3.86 × 104 J/mol. The boiling point of ethanol is 78.4°C.)
Answer:
42.1 kj
Explanation:
Given data:
Molar heat of vaporization = 3.86×10⁴ j/mol
Mass of ethanol = 50 g
Amount of heat required to convert into gaseous form = ?
Solution:
First of all we will calculate the number of moles of ethanol.
Number of moles = mass/ molar mass
Number of moles = 50.0 g/ 46.07 g/mol
Number of moles = 1.09 mol
H(vap) = number of moles × molar heat of vaporization
H(vap) = 1.09 mol × 3.86×10⁴ j/mol
H(vap) = 4.21×10⁴ j
In Kj:
4.21×10⁴ / 1000 = 42.1 kj
How many atoms of ^6Li are there in 12.3 g of ^6Li?
The number of ⁶Li atoms present is 1.23 × 10²⁴ atoms
StoichiometryFrom the question, we are to determine the number of ⁶Li atoms present.
First, we will determine the number of moles of ⁶Li present.
Using the formula,
[tex]Number\ of\ moles = \frac{Mass}{Molar\ mass}[/tex]
Mass of ⁶Li = 12.3 g
Molar mass of ⁶Li = 6 g/mole
Number of moles of ⁶Li present = [tex]\frac{12.3}{6}[/tex]
Number of moles of ⁶Li present = 2.05 moles
Now, for the number of atoms
Using the formula,
Number of atoms = Number of moles × Avogadro's constant
Then
Number of atoms of ⁶Li = 2.05 × 6.022×10²³
Number of atoms of ⁶Li = 1.23451 × 10²⁴ atoms
Number of atoms of ⁶Li ≅ 1.23 × 10²⁴ atoms
Hence, the number of ⁶Li atoms present is 1.23 × 10²⁴ atoms
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A substance is matter that has a definite composition.
TRUE or FALSE?
Answer:
FALSE!!
Explanation: some substances like gas or liquid do not have a definite composition/shape
The statement is true. A substance is matter that has a definite composition.
The statement 'A substance is matter that has a definite composition' is TRUE.
In Chemistry, a substance is defined as matter that has a specific and definite composition. This means that a substance is made up of specific types and amounts of atoms or molecules. Examples of substances include water (H2O), salt (NaCl), and oxygen (O2).
Understanding the concept of substances is important in Chemistry because it helps us classify and identify different types of matter based on their composition.
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Which compound has the greatest percentage by mass of nitrogen atoms?
a) N2H4
b) NH3
c) N2O4
d) NaNO3
please explain your answer
The compound with the greatest percentage by mass of nitrogen atoms is (d) NaNO3.
Which compound is with the greatest percentage?To determine the compound with the highest percentage by mass of nitrogen atoms, we need to calculate the molar mass and nitrogen content of each compound.
N2H4 (Hydrazine): It has a molar mass of 32 g/mol and contains 2 nitrogen atoms. Therefore, the percentage of nitrogen by mass is (2 × 14 g/mol / 32 g/mol) × 100% = 87.5%.
NH3 (Ammonia): It has a molar mass of 17 g/mol and contains 1 nitrogen atom. So, the percentage of nitrogen by mass is (1 × 14 g/mol / 17 g/mol) × 100% = 82.4%.
N2O4 (Dinitrogen tetroxide): It has a molar mass of 92 g/mol and contains 2 nitrogen atoms. The percentage of nitrogen by mass is (2 × 14 g/mol / 92 g/mol) × 100% = 30.4%.
NaNO3 (Sodium nitrate): It has a molar mass of 85 g/mol and contains 1 nitrogen atom. The percentage of nitrogen by mass is (1 × 14 g/mol / 85 g/mol) × 100% = 16.5%.
Among the given compounds, NaNO3 has the lowest percentage of nitrogen by mass, making it the compound with the greatest percentage by mass of nitrogen atoms.
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The correct answer is option a). The compound with the greatest percentage by mass of nitrogen atoms is [tex]\( {\text{N2H4}} \)[/tex] (hydrazine), with approximately 87.5% nitrogen by mass.
Let's calculate the percentage by mass of nitrogen for each compound:
Molecular Formulas:
a) N2H4 (hydrazine)
b) NH3 (ammonia)
c) N2O4 (dinitrogen tetroxide)
d) NaNO3 (sodium nitrate)
Calculation Steps:
1. Calculate the molar mass of each compound:
N2H4 (hydrazine):Molar mass = 2(N) + 4(H) = 2(14.01) + 4(1.01) = 32.05 g/mol
NH3 (ammonia):Molar mass = 1(N) + 3(H) = 1(14.01) + 3(1.01) = 17.03 g/mol
N2O4 (dinitrogen tetroxide):Molar mass = 2(N) + 4(O) = 2(14.01) + 4(16.00) = 92.02 g/mol
NaNO3 (sodium nitrate):Molar mass = 1(Na) + 1(N) + 3(O) = 1(22.99) + 1(14.01) + 3(16.00) = 84.99 g/mol
2. Calculate the percentage by mass of nitrogen in each compound:
For N2H4:[tex]\[ \text{Percentage by mass of N} = \frac{2 \times 14.01}{32.05} \times 100\% = \frac{28.02}{32.05} \times 100\% \approx 87.5\% \][/tex]
For NH3:[tex]\[ \text{Percentage by mass of N} = \frac{14.01}{17.03} \times 100\% \approx 82.3\% \][/tex]
For N2O4:[tex]\[ \text{Percentage by mass of N} = \frac{2 \times 14.01}{92.02} \times 100\% \approx 30.5\% \][/tex]
For NaNO3:
[tex]\[ \text{Percentage by mass of N} = \frac{14.01}{84.99} \times 100\% \approx 16.5\% \][/tex]
Which of the following choices is an example of gathering evidence?
O
A. Writing a paper
O
B. Taking pictures
C. Making memories
O
D. Talking on the phone
SUBMIT
Gathering evidence is best exemplified by taking pictures from the given choices. This action collects objective, verifiable visuals to support a claim, argument, or observation.
Explanation:Out of the listed options, the best example of gathering evidence is option B:
Taking Pictures
. Gathering evidence refers to the collection of objective information, data, or proofs to support a claim or thesis. For instance, a nature photographer illustrating the impact of climate change might gather evidence by
taking pictures
of receding glaciers or drought-stricken areas. Therefore, in the context of creating arguments or conducting research, taking pictures can represent factual visuals that substantiate a position or perspective.
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6.1 Raunak took 5 moles of carbon atoms in a containe má Krish also took 5
moles of sodium atoms in another container of the same weight
(a) Whose container is heavier?
(b) Whose container has more number of atoms?
a. Krish's container is heavier than Raunak's container.
b. Both container have the same number of atoms.
Explanation:
The molar mass of any element is equivalent to one mole of that substance.
weight of 1 mole of carbon atom is 12 g and weight of 1 mole of sodium atoms is 23 g.
So, the mass of 5 moles of carbon atoms
12 x 5 = 60 g
In this same way,
the mass of 5 moles of sodium atoms
23 x 5 = 115g
From this, we can say that Krishna’s container is heavier.
b. One mole of a carbon atom has 6.022 x 10^23 atoms and one mole of sodium also has 6.022 x 10^23 atoms.
So, 5 moles of carbon and sodium contains the same number atoms which are
5 x 6.022 x 10^23
= 3.011 x 10^24 atoms.
Particles in 2.15 moles of gold
Answer: 1.29 x 10^24 Particles
Explanation: 1mole of gold contains 6.02x10^23 Particles
Therefore, 2.15 moles of gold will contain = 2.15 x 6.02x10^23 = 1.29 x 10^24 Particles
What is a mole? List everything you know about the mole.
How many atoms are present in 3.8 moles of sodium hydroxide, NaOH?
Calculate the molar mass for Ca(OH)2.
Answer:
1. A mole is the amount which contains as many elementary particles as there are atoms in 12 grams of carbon-12. It is also the unit used in measuring the amount of matter. A mole also refers to the Avogadro's number of particles present in any substance.
2. 1mole of NaOH contains 6.02x10^23 atoms.
Therefore, 3.8 moles of NaOH will contain = 3.8 x 6.02x10^23 = 2.288 x 10^24 atoms
3. Molar Mass of Ca(OH)2 = 40 + 2(16+1) = 40 2(17) = 40 + 34 = 74g/mol
Explanation:
Salts are the result of
two bases combined
two acids combined
an acid and a base
two elements with a pH lower than 7
At STP, how many moles of sulfur hexafluorine gas are contained in 7.9 L?
Answer: 0.35 mole SF6
Explanation: Use ideal gas equation
Solution Attached.
At STP
Pressure = 1 atm
Temperature = 1°C + 273 = 273 K
PV= nRT derive to find n
n= PV / RT
= 1 atm x 7.9 L / 0.08205 L.atm
/mol K x 273 K
= 0.35 mole SF6
Edward works for a company that makes paint. Which field of science would
be most closely related to Edward's work?
O
O
O
A. Space science
B. Life science
C. Marine science
D. Physical science
SUBMIT
Answer:
D
Explanation:
A would be. space ship
Answer:
D.Physical science
Explanation:
The speed of a chemical reaction
a. is constant no matter what the temperature is.
b. is independent of the amount of contact surface of a solid involved.
c. between gases should in all cases be extremely rapid because the average kinetic energy of the
molecules is great.
d. between ions in aqueous solution is extremely rapid because there are no bonds that need to be
broken.
1
Answer Option c. between gases should in all cases be extremely rapid because the average kinetic energy of the molecules is great.
strontium combines with bromine to form strontium bromide.What happens to the electrons in the outer levels when strontium atoms and bromine atoms combine to make strontium bromide??
Plz help me...50 points
Answer:
Im bad at these questions but i think the answer is SrBr2
Explanation:
The modern periodic table of elements contains 18_____
Answer:
groups
Explanation:
periods are left and right groups are up and down
Answer: Groups
Explanation:
Is Copper (II) Sulphate soluble in water? Please explain your answer. Thank youuuu
Answer: Copper (II) Sulphate is soluble in water.
Explanation: CuSO4 is an ionic salt that is attracted to polar molecules such as water. So it makes it dissolve in water but it takes more time so increasing the temperature of water increases the dissociation process.
in short yes copper is soluable
The steepness of a line is measured by finding its what?
The steepness of a line is measured by finding its absolute value of slope.
What is absolute value?Absolute value is defined as to ignore any minus sign before an integer and consider all numbers positive (or zero). One way to think about a number's absolute value is as its distance from zero. The difference between two numerical numbers, whether positive or negative. Therefore, the absolute difference doesn't reveal anything about relative magnitude.
The steepness, incline, or grade of a line can be measured using the slope's absolute value. A slope with a larger absolute value denotes a steeper line. There are four possible directions for a line: up, down, horizontal, or vertical. If a line is horizontal, it has no slope.
Thus, the steepness of a line is measured by finding its absolute value of slope.
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For atoms in the ground state, electrons begin filling the 3d sublevels starting with 1. Sr and ending with Cd 2. Sc and ending with Cd 3. Sr and ending with Cu 4. Sc and ending with Cu
Final answer:
In the ground state of atoms, the filling of 3d sublevels begins with scandium (Sc) and ends with copper (Cu), making the correct answer 4. SC and ending with Cu.
Explanation:
The question asks about the process of electron filling in the 3d sublevels within transition metals. In the ground state of atoms, this process begins with scandium (Sc) and ends with copper (Cu). So the correct answer to the student's question is 4. Sc and ending with Cu. Scandium, with atomic number 21, is where the 3d subshell begins to fill, and it continues to fill until the 3d subshell is complete with copper (Cu). Following this, electrons will then fill the 4p subshell.
The provided materials clarify that the 3d subshell is capable of holding up to 10 electrons, which correlates with there being 5 distinct d orbitals. Moreover, the principles of electron configuration suggest that half-filled and fully filled subshells, such as those observed in chromium (Cr) and copper (Cu), have enhanced stability due to electron distribution.
The unusual filling order of electron subshells, particularly after the 3p subshell is complete, leads to the 4s sublevel filling before the 3d sublevel. This is why the 3d sublevel does not start filling immediately after Argon (Ar), but rather after the 4s is filled, beginning with scandium (Sc).
HBr + Mg(OH)2 —> MgBr2 + H2O
Please balance this equation
Answer:
2HBr + Mg(OH)2 => MgBr2 + 2 H2O
Explanation:
To balance the equation HBr + Mg(OH)2 -> MgBr2 + H2O, we need to ensure that the number of atoms of each element is the same on both sides of the equation.
2HBr + Mg(OH)2 -> MgBr2 + 2H2O
How to balance the equationThe balanced equation for the reaction between hydrobromic acid (HBr) and magnesium hydroxide (Mg(OH)2) to form magnesium bromide (MgBr2) and water (H2O) is 2HBr + Mg(OH)2 -> MgBr2 + 2H2O.
This equation shows that two moles of HBr react with one mole of Mg(OH)2 to produce one mole of MgBr2 and two moles of H2O. The equation is balanced by adjusting the coefficients to ensure an equal number of atoms of each element on both sides of the equation.
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4. How many moles of silver are in a ring that contains 3.50 grams of silver?
Answer:
3.5g/{molar mass of silver}
3.5g/(107.86g/mol)
now we have 0.03244mol of silver
The statement of the moles of silver is "0.0324 mol."
What is mole?The mole is a SI unit of measurement that is used to determine the amount of any substance that need to be given in mol. The mole is the amount of substance in a system that has the same number of fundamental entities as atoms in 0.012 kilogramme of carbon 12.
In order to determine the moles, divide the mass of the substance by its molar mass to convert grams into moles.
Grams to moles conversion factor,
[tex]Grams\;.\;\frac{1\;mol}{grams}\;=\;Moles[/tex]
Moles of silver comes out to be,
[tex]=\frac{Grams}{molar\;mass} \\= 3.50\;g\;.\;\frac{1\;mol}{107.86\;g} \\= 0.0324\;mol[/tex]
Hence the correct answer is 0.0324 g of Ag.
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A sample of gas at 47°C and 1.03 atm occupies a volume of 2.20 mL. What would this gas occupy at 107°C and 0.789 atm
Answer: 3.41 mL
Explanation: Solution:
Use Combine gas law to solve this problem.
P1V1 / T1 = P2V2 / T2
First convert temperature to K
T1 = 47 °C + 273 = 320 K
T2= 107°C + 273 = 380 K
Derive to find V2:
V2 = P1 V1 T2 / T1 P2
Substitute the values:
V2= 1.03 atm x 2.20 mL x 380 K /
320 K x 0.789 atm
= 3.41 mL
Cancel out the units of atm and K so the remaining unit is in mL.
Using the combined gas law equation, we can find the new volume of a gas given its initial volume, temperature, and pressure.
Explanation:To solve this problem, we can use the combined gas law equation: PV/T = constant. Since the volume, pressure, and temperature of the gas change, we can set up the equation as follows: (1.03 atm)(2.20 mL)/(47°C) = (0.789 atm)(V2)/(107°C). We can then solve for V2 to find the new volume of the gas.
Using this equation, we can rearrange it to:
V2 = (1.03 atm)(2.20 mL)(107°C)/(0.789 atm)(47°C)
Calculating the values, we find that V2 is approximately 4.61 mL.
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