The empirical formula of a compound composed of 25.9 g of potassium (K) and 5.30 g of oxygen (O) is K2O. To calculate the empirical formula, we need to convert the given mass of the elements into moles. The molar mass of potassium is 39.09 g/mol and the molar mass of oxygen is 16.00 g/mol. Thus, 25.9 g of potassium is equivalent to 0.66 mol, and 5.30 g of oxygen is equivalent to 0.33 mol. To find the empirical formula, divide the moles of each element by the smallest number of moles, which is 0.33 mol in this case. This yields the ratio of 2:1 for potassium and oxygen, thus the empirical formula is K2O.
Explanation: The empirical formula of a compound composed of 25.9 g of potassium (K) and 5.30 g of oxygen (O) is K2O. Empirical formula is defined as the simplest formula of a compound that shows the ratio of atoms present in the compound. It can be determined by finding the lowest whole number ratio of atoms in the compound.
To determine the empirical formula of the compound containing potassium and oxygen, the following steps can be followed:
1. Convert the given mass of each element into moles by using the molar mass of each element:
Molar mass of K = 39.10 g/mol
Molar mass of O = 16.00 g/mol
Number of moles of K = 25.9 g / 39.10 g/mol = 0.662 moles
Number of moles of O = 5.30 g / 16.00 g/mol = 0.331 moles
2. Find the mole ratio of the two elements by dividing each value by the smaller number of moles:
Mole ratio of K : O = 0.662/0.331 = 2 : 1
3. Write the empirical formula using the mole ratio as subscripts:
Empirical formula = K2O
Therefore, the empirical formula of the compound composed of 25.9 g of potassium (K) and 5.30 g of oxygen (O) is K2O.
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balance the following chemical equations
Answer:
2N2 + O2 ⇒ 2N2O
Explanation:
Since I cannot see the product's of the second chemical equation I will only solve the first one.
In order to balance a chemical equation you need to make sure that the atoms on both sides are equal.
In this case we have...
N2 + O2 = N2O
N = 2
O = 2
N = 2
O = 2
Change the coefficient:
N2O = 2N20
2 × 2 = 4
1 × 2 = 2
2N2 + O2 ⇒ 2N2O
Hope this helps.
Calculate the mass of ammonium sulfide (NH4)2S in 3.00 L of a 0.0200 M solution.
The mass of (NH4) 2S in the solution is : Mass = 0.0600 mol × 60.08 g/mol = 3.60 g.
The given molarity and volume of the solution can be used to calculate the number of moles of ammonium sulfide (NH4)2S.Then, the number of moles can be converted to mass using the molar mass of (NH4)2S.Mass of ammonium sulfide (NH4)2S in 3.00 L of a 0.0200 M solution is given by : Mass = moles × molar mass.The number of moles of (NH4)2S can be found using the equation:Molarity = Number of moles / Volume.Rearranging this equation, we get:Number of moles = Molarity × Volume Number of moles of (NH4)2S = 0.0200 M × 3.00 L.Number of moles of (NH4)2S = 0.0600 mol.The molar mass of (NH4)2S can be calculated by summing the molar masses of ammonium (NH4) and sulfide (S) ions.Molar mass of (NH4)2S = (2 × Molar mass of NH4) + Molar mass of S= (2 × 14.01 g/mol) + 32.06 g/mol= 60.08 g/mol.
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Calcium and Hydroxide combine to produce:
Electron Dot Formula of compound
Compound formula
Compound name
Calcium hydroxide is created when calcium and oxygen mix.
Calcium Hydroxide in the Electron Dot formula:
Ca is a compound (OH)
Name of second compound is Calcium Hydroxide.
The Lewis structure is what?A Lewis structure is a very condensed representation of the electrons in the valence shell of a molecule. It is used to show the electron arrangements around specific atoms in compounds. The electrons are shown as "dots" or as a line when two atoms are bound together. To reach the "ideal" electron configuration, the octet rule and formal charges must be met.
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Why packaging lemons in cans might not be a good idea?
in the chemical reaction below, 3.27 games of zn are reacted with 3.30 grams of hcl which component will limit the reaction
In the given chemical reaction between 3.27 grams of Zn and 3.30 grams of HCl, the component that will limit the reaction is HCl.
To determine the limiting reagent, we need to compare the number of moles of Zn and HCl in the reaction. First, we convert the given masses of Zn and HCl into moles using their respective molar masses. The molar mass of Zn is 65.38 g/mol, and the molar mass of HCl is 36.46 g/mol.
Moles of Zn = Mass of Zn / Molar mass of Zn
= 3.27 g / 65.38 g/mol
≈ 0.05 mol
Moles of HCl = Mass of HCl / Molar mass of HCl
= 3.30 g / 36.46 g/mol
≈ 0.09 mol
From the balanced chemical equation, we can see that the stoichiometric ratio between Zn and HCl is 1:2. This means that for every 1 mole of Zn, 2 moles of HCl are required. Comparing the moles of Zn and HCl, we see that there are fewer moles of Zn (0.05 mol) compared to HCl (0.09 mol).
Since the reaction requires twice the amount of moles of HCl than Zn, the HCl will be the limiting reagent. This means that all the Zn will be consumed in the reaction, but there will be an excess of HCl remaining. The limiting reagent determines the maximum amount of product that can be formed in the reaction, which in this case will be determined by the amount of Zn available.
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A 50.0 mL Volumetric flask filled with aqueous solution of hydrogen peroxide has a total mass of 88.5 g. The mass of the volumetric flask is 16.5 g. What is the density of the aqueous solution of hydrogen peroxide ?
Answer:
1.44 g/mL
Explanation:
From the question given above, the following data were obtained:
Volume (V) of H2O2 = 50 mL.
Mass of flask + H2O2 = 88.5 g.
Mass of flask = 16.5 g.
Density (D) =?
Next, we shall determine the mass of the hydrogen peroxide (H2O2).
This can be obtained as follow:
Mass of flask + H2O2 = 88.5 g.
Mass of flask = 16.5 g.
Mass of H2O2 =?
Mass of H2O2 = (Mass of flask + H2O2) – (Mass of flask)
Mass of H2O2 = 88.5 – 16.5
Mass of H2O2 = 72 g
Finally, we shall determine the density of the hydrogen peroxide (H2O2) as follow:
Volume (V) of H2O2 = 50 mL.
Mass (m) of H2O2 = 72 g.
Density (D) =?
Density (D) = mass (m) /volume (V)
D = m/V
D = 72 g / 50 mL
D = 1.44 g/mL
Therefore, the density of the hydrogen peroxide (H2O2) is 1.44 g/mL.
bromine, atomic number 35, belongs to group 17. how many electrons does bromine have in its outermost energy level?
The halogen family of elements includes bromine. Iodine, fluorine, and chlorine are some of its buddies. Bromine is very reactive and, like the other halogens, contains seven electrons in its outer shell.
What is the bromine atomic group number, which is 35)? It it a member of a group?group 17 ,A p-block element with an atomic number of 35 is bromine. Halogen group 17 has bromine as a member.Seven electrons make up the outer shell of the Group 7 elements, which include fluorine (F), chlorine (Cl), bromine (Br), iodine (I), and astatine (At).The outermost electrons of potassium, calcium, and bromine are located in the fourth energy level because they are in the fourth row or period.The halogen family of elements includes bromine. Iodine, fluorine, and chlorine are some of its buddies. Bromine is very reactive and, like the other halogens, contains seven electrons in its outer shell.To learn more about electrons refer to:
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What is the molarity of a solution of 12. 9 G fructose C6H12O6
and 31. 0g water
The molarity of a solution of 12.9 g fructose and 31.0 g water is 1.26 M.
Molarity is the number of moles of solute dissolved in one liter of a solution. The formula to calculate molarity is:
Molarity (M) = moles of solute / liters of solution
To find the molarity of the given solution, we first need to determine the number of moles of fructose present. We can do this using the molar mass of fructose.
Molar mass of fructose = (6 x 12.01 g/mol) + (12 x 1.01 g/mol) + (6 x 16.00 g/mol)= 180.18 g/mol
The number of moles of fructose present in 12.9 g can be calculated as:
Number of moles of fructose = mass of fructose / molar mass of fructose= 12.9 g / 180.18 g/mol= 0.0716 mol
Number of moles of water = mass of water / molar mass of water= 31.0 g / 18.02 g/mol= 1.722 mol
Now, we can calculate the total volume of the solution.
Total mass of the solution = mass of fructose + mass of water= 12.9 g + 31.0 g= 43.9 g
We can convert this to liters using the density of water.
Density of water = 1 g/mL= 1000 g/L43.9 g = 0.0439 L (volume of solution)
Now that we know the number of moles of fructose and water and the volume of the solution, we can calculate the molarity:
Molarity (M) = moles of solute / liters of solution= 0.0716 mol / 0.0439 L= 1.26 M
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the electron-domain geometry of a species is the arrangement of electron around the central atom, whereas the molecular geometry is the arrangement of bonded____ . two species with the same electron-domain geometry may have different molecular geometries.
The electron-domain geometry of a species is the arrangement of electron around the central atom, whereas the molecular geometry is the arrangement of bonded atoms.
Electron-domain geometry refers to the arrangement of the electron pairs (both bonding and non-bonding) around the central atom in a molecule. It is also called the molecular geometry or the electron-pair geometry.
This geometry determines the spatial arrangement of the atoms in a molecule and influences the overall shape of the molecule. The electron-domain geometry is determined by the number of electron pairs around the central atom and the arrangement that minimizes the repulsion between these electron pairs.
Common electron-domain geometries will include linear, octahedral, tetrahedral, trigonal bipyramidal, and trigonal planar.
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would decreasing the volume of the container for each of the following reactions cause the equilibrium to shift in the direction of the products, the reactants, or not change?
This leads to the decreasing the volume will shift equilibrium in the direction of products.
Chemical equilibrium is the condition in which the reactants and products are both present in concentrations that have no further tendency to change over time, preventing any discernible change in the system's properties. In a state of neutral equilibrium, when an external force is applied, the line connecting the earth's centre and the centre of gravity falls within the base of the body.
A product is anything that can be provided to a market in order to satiate a customer's need or desire. It can be an item, a system, or a service that is made accessible for consumer usage in response to consumer demand. An insurance policy is an example of an intangible product because it can only be understood through indirect perception.
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Se encuentra en los animales marinos, es un gas incloro de olor desagradable muy parecido al del pescado podrido
Answer:
Metilaminas
Explanation:
Las metilaminas a menudo están presentes en los tejidos corporales de organismos marinos como crustáceos, moluscos y en todos los peces marinos como N-óxido de trimetilamina, donde actúan para estabilizar la proteína que se desestabiliza por la presión y también se cree que actúa como un depresor del punto de congelación. en peces polares
Las metilaminas tienen olor a pescado podrido, basura o huevos podridos, de modo que una acumulación de metilamina en el cuerpo da como resultado la liberación de un olor a pescado en la amplitud, el sudor y la orina de un individuo
which of the following accurately describes the ph scale? which of the following accurately describes the ph scale? the ph scale runs from 0 (neutral) to 14 (most acidic), with 7 as an average acidity level. the ph scale runs from 0 (most acidic) to 14 (neutral), with 7 as an average acidity level. the ph scale runs from 0 (most basic) to 14 (most acidic), with 7 as a neutral. the ph scale runs from 0 (most acidic) to 14 (most basic), with 7 as a neutral.
Answer:
The pH scale measures acidity of a substance. known as potential of hydrogen, it varies from 0 to 14 with 7 being the pH value of a neutral solution. Below 7 shows the substance is acidic in nature and above 7 is alkaline in nature. pH 0-3 are considered strong acids while pH 4-6 are weak acids. pH 8-10 are weak alkalines and pH 11-14 are strong alkalines. This is a general trend and there may be exeptions especially if the substance has a negative pH. However, it would not be covered likely unless you are doing university chemistry.
What is the graph that represents the relation between durability of titanium and temperature ?
The downward slope represents the relation between durability of titanium and temperature because with increase temperature, strength of titanium decreases.
Can titanium withstand temperatures?Titanium alloys have high tensile strength to weight ratio, good toughness and an ability to bear extreme temperatures of more than 600 °Celsius. This shows that if temperature increase from more than 600 °Celsius, the strength of the titanium tends to decrease because it can not withstand to it so the graph comes to downward when the temperature exceeds to 600°C.
So we can conclude that the downward slope represents the relation between durability of titanium and temperature because with increase temperature, strength of titanium decreases.
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A 41.0 g ball of copper has a net charge of 1.90 μC. What fraction of the copper’s electrons has been removed? (Each copper atom has 29 protons, and copper has an atomic mass of 63.5.)
The fraction of the copper's electrons that has been removed is 3.00 × 10^-5 Let us first calculate the number of electrons in a copper ball:The atomic mass of copper is 63.5. Therefore, the number of atoms present in the copper ball can be calculated as follows:Number of atoms = mass of ball/atomic mass= 41.0 g/63.5 g mol⁻¹= 0.647 mol
Now, we can calculate the number of electrons in these atoms:Number of electrons = number of atoms × number of electrons per atom= 0.647 mol × 6.022 × 10²³ mol⁻¹ × 29= 1.10 × 10²⁴ electronsWe know that the net charge on the ball is 1.90 μC.
Therefore, we can calculate the total charge on the electrons:Charge on electrons = Net charge on ball = 1.90 μC= 1.90 × 10⁻⁶ CWe know that the charge on a single electron is -1.60 × 10^-19 C. Therefore, the total number of electrons that have been removed can be calculated as follows:Total number of electrons removed = Charge on electrons/Charge on a single electron= 1.90 × 10⁻⁶ C/1.60 × 10⁻¹⁹ C= 1.19 × 10¹³ electronsNow, we can calculate the fraction of electrons that have been removed:Fraction of electrons removed = Total number of electrons removed/Total number of electrons= 1.19 × 10¹³ electrons/1.10 × 10²⁴ electrons= 3.00 × 10^-5
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How many carbon Atoms does NaCI2 have
Answer:
Molecular formula is CaCl2 i.e. 1 atom of Ca and 2 atoms of Cl . Hence, molecular weight = 1 x 40 + 2 x 35.5 = 40 + 71 = 111 g / mol . But if you look at the weight online, it says 110.98 g / mol , which is close to 111
Explanation:
Hope this helped :)
Question 5
Calculate the wavelength (in nm) of a neutron traveling at a speed of 85.0 m/s. The mass of a neutron is 1.67493 × 10–24 g.
1 point
4.65 nm
8.58 nm
4.96 × 10–3 nm
5.78 × 10–3 nm
The wavelength of the neutron is 4.65 n. Wavelength is typically measured in units of meters (m), centimeters (cm), or nanometers (nm).
What is Wavelength?
Wavelength is the distance between successive crests, troughs, or any other equivalent points in a wave. It is usually denoted by the Greek letter lambda (λ) and is commonly used to describe electromagnetic waves, such as light, as well as other types of waves, including sound and water waves.
Since the wavelength of a neutron is given by λ = h/p, where h is Planck's constant and p is the momentum of the neutron, we can calculate the wavelength using the equation λ = h/mv, where m is the mass of the neutron, v is its velocity, and h is Planck's constant.
First, we need to convert the velocity from m/s to cm/s, since the units of h are cm^2 g/s:
85.0 m/s × (100 cm/1 m) = 8500 cm/s
Next, we can plug in the values for m, v, and h:
λ = h/mv = (6.626 × 10^-27 cm^2 g/s)/(1.67493 × 10^-24 g × 8500 cm/s)
λ = 4.65 nm
Therefore, the wavelength of the neutron is 4.65 nm.
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For each reaction below:
a) Complete the reaction
b) Balance the equation
c) Include all states of matter
d) Determine the reaction type
1) __Mg(s) + __Pb(NO3)4(aq) -> __Mg(NO3)2 () + __Pb ()
a) 2Mg + Pb(N\(O_{3}\)\()_{4}\) → 2Mg(N\(O_{3}\)\()_{2}\) + Pb
b) 2Mg + Pb(N\(O_{3}\)\()_{4}\) → 2Mg(N\(O_{3}\)\()_{2}\) + Pb
c) 2Mg (s) + Pb(N\(O_{3}\)\()_{4}\) (aq) → 2Mg(N\(O_{3}\)\()_{2}\) (s) + Pb (s)
d) This type of reaction is called displacement reaction.
What is displacement reaction?
In a displacement reaction, a portion of one reactant is exchanged out for another reactant. A displacement reaction is often referred to as a metathesis reaction or a replacement reaction.
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MnO4- is a tetrahedral complex that is intensely purple. How many d orbital electrons does this complex have
A complex is a compound that is composed of a central metal atom/ion and then ligands. MnO4- is a d^0 specie hence it has no d electron.
What is a complex?A complex is a compound that is composed of a central metal atom/ion and then ligands. These ligands may lead to the color of the complex. However, the color of complexes more commonly result from the d-orbital transition in the metal atom/ion.
Now we know that the neutral electron configuration of Mn is [Ar]. 3d5. 4s2. It then follows that MnO4- is a d^0 specie hence it has no d electron.
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Given the reaction at equilibrium:
CO32–(aq) + H2O(l) HCO3–(aq) + OH (aq)
Which statement is always true?
A)
[CO32–] is less than [OH–].
B)
[CO32–] is less than [HCO3–].
C)
The rate of the forward reaction is less than the rate of the reverse reaction.
D)
The rate of the forward reaction equals the rate of the reverse reaction.
Answer:
4
Explanation:
Equilibrium is a dynamic state in which the forward and reverse reaction rates are equal; the quantities of the reactants and products are not necessarily equal.
(You got this keep up the good work). :)
The rate of the forward reaction equals the rate of the reverse reaction in the equilibrium reaction.
What is equilibrium?A state of balance between opposing forces or actions.
Equilibrium is when the rate of the forward reaction equals the rate of the reverse reaction.
All reactant and product concentrations are constant at equilibrium.
Equilibrium is a dynamic state in which the forward and reverse reaction rates are equal; the quantities of the reactants and products are not necessarily equal.
Hence, option D is correct.
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No links no bots please
which element is most likely to react with Br
Sr
Ar
K
O
There are two types of chemical compound one is covalent compound and another is ionic compound in chemistry. In ionic bonds, electrons are completely transferred. The correct option is option C.
What is chemical Compound?Chemical Compound is a combination of molecule, Molecule forms by combination of element and element forms by combination of atoms in fixed proportion.
Covalent compounds are formed by covalent bond and ionic compounds are formed by ionic bond. Covalent bond is formed by sharing of electron and ionic bond are formed by complete transfer of electron. Ionic bonds are stronger than covalent bonds. The melting and boiling points are higher in ionic compounds.
Ionic bonds are formed by elements whose electronegativity difference is very large. Since K has high electronegativity among all given elements so K is most likely to react with Br.
Therefore, the correct option is option C.
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magnesium phosphate has the chemical formula mg3(po4)2 and has a formula mass of 262.9 g/mol. how many atoms of the element phosphorus are in 125 g mg3(po4)2?
Find the number of moles, we divide the given mass (125 g) by the formula mass (262.9 g/mol): 125 g / 262.9 g/mol = 0.475 mol, However, we need to multiply this by the number of phosphorus atoms in one formula unit of magnesium phosphate.
In one formula unit of mg3(po4)2, there are 2 atoms of phosphorus.
Therefore, the total number of phosphorus atoms in 125 g of magnesium phosphate can be calculated as: 0.475 mol x 2 atoms/mol = 0.950 atoms .
Calculate the number of moles of Mg3(PO4)2 in 125 g:
moles = mass / molar mass = 125 g / 262.9 g/mol = 0.475 moles
2. Determine the number of moles of phosphorus (P) in Mg3(PO4)2:
Mg3(PO4)2 has 2 moles of P per 1 mole of the compound, so 0.475 moles Mg3(PO4)2 × 2 moles P/1 mole Mg3(PO4)2 = 0.95 moles P
3. Calculate the number of atoms of phosphorus:
atoms = moles × Avogadro's number = 0.95 moles P × 6.022 x 10^23 atoms/mol = 1.43 x 10^23 atoms P.
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To answer this question, there are approximately 5.72 x 10^23 atoms of phosphorus in 125 g of magnesium phosphate.
we first need to find the molar mass of magnesium phosphate. The formula mass given in the question is 262.9 g/mol.
Now, we can use the formula mass to find the number of moles of magnesium phosphate in 125 g of the compound.
Moles of Mg3(PO4)2 = mass / molar mass
Moles of Mg3(PO4)2 = 125 g / 262.9 g/mol
Moles of Mg3(PO4)2 = 0.4754 mol
Next, we need to determine the number of moles of phosphorus in this amount of magnesium phosphate. We can use the formula of the compound to determine the ratio of magnesium to phosphorus.
There are 2 phosphorus atoms in each molecule of magnesium phosphate, so we can multiply the number of moles of Mg3(PO4)2 by 2 to get the number of moles of phosphorus.
Moles of P = 0.4754 mol Mg3(PO4)2 x 2
Moles of P = 0.9508 mol P
Finally, we can use Avogadro's number (6.022 x 10^23) to convert the number of moles of phosphorus to the number of atoms of phosphorus.
Number of P atoms = moles of P x Avogadro's number
Number of P atoms = 0.9508 mol P x 6.022 x 10^23 atoms/mol
Number of P atoms = 5.72 x 10^23 atoms
Therefore, there are approximately 5.72 x 10^23 atoms of phosphorus in 125 g of magnesium phosphate.
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Guided
Learning
ar Inequalities in One Variable - Item 7601
Pre-Quiz
Practice
from a, it will be greater than b.
Post-Quiz
Finish
If the ordered pair (a, b) satisfies the inequality y> x-4, three of these statements are
true. Which statement is NOT true?
a and b may be equal to each other.
We
The statement about the inequality that is NOT true is (A), a and b may be equal to each other.
How to determine true statements?This is because the inequality y> x-4 means that y must be greater than x-4. If a and b are equal, then y = x-4, which means that the inequality is not satisfied.
The other three statements are true because:
If 4 is subtracted from a, it will be greater than b because y> x-4 means that y must be greater than x.
If 4 is subtracted from b, it will be less than a because y> x-4 means that y must be greater than x.
If 4 is subtracted from both a and b, the inequality will still be true because y> x-4 means that y must be greater than x, even if x and b are both decreased by 4.
Therefore, the answer to the question is the statement a and b may be equal to each other.
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Complete question:
Guided Learning ar Inequalities in One Variable - Item 7601
Pre-Quiz
Practice
from a, it will be greater than b.
Post-Quiz
Finish
If the ordered pair (a, b) satisfies the inequality y> x-4, three of these statements are true. Which statement is NOT true?
a and b may be equal to each other.
If you subtract 4 from a, it will be greater than b.
If you subtract 4 from b, it will be less than a.
If you subtract 4 from both a and b, the inequality will still be true.
PLEASE HURRY!!!!!!! Which statements correctly describe the movement of water into and out of the ground?
Choose two correct answers.
Gravity helps move water into the ground.
Mountains help move water out of the ground.
Rocks on Earth’s surface help move water into the ground.
The Sun helps move water into the ground.
The roots of trees help move water out of the ground.
Answer:
Gravity helps move water into the ground.
Rutherford ued a beam of alpha particle for hi cattering experiment. What i the de Broglie wavelength of an alpha particle moving at a velocity of 1. 75 × 10⁷ meter per econd?
1.27×10^−11 m is the de Broglie wavelength of an alpha particle moving at a velocity of 1. 75 × 10⁷ meter per second.
What is meant by de Broglie's wavelength?De Broglie wavelengths is the wavelength () that is connected to an item in relation to its speed and mass. Typically, a particle's force is inverse to its de Broglie wavelength. Louis de Broglie demonstrated that a particle's frequency is proportional to Planck's frequency divided by its mass times its velocity.
Briefing:The de-Broglie equation can be used to determine an electron's wavelength.
λ= h/mv
= 6.626×10^−34 Js / 9.11×10 ^−31 kg× 1. 75 × 10⁷ m/s
=1.27×10^−11 m
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How do you find the unknown compound in organic chemistry?
The unknown compounds are among a restricted set of substances that are provided for you in ascending mp and bp order. Applying your experimental results to these lists will help you narrow down the list of potential chemicals.
Compounds can be recognized by two tests, including
1. Physical assessment
2. Chemical assessment
Physical assessment
This is dependent on outward manifestations and qualities including State, Color, Texture, Smell (odor), Taste, and Feel.
Physical characteristics such as solubility, crystalline or amorphous nature Refractive index, melting point, and boiling point
pH, conductivity, functional groups, and other chemical assessment criteria. utilizing analytical approaches such as spectroscopy analysis and chromatography analysis.
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give at least five insights that you learn from this lesson, as your way of recognizing the uniqueness of earth as a planet life
Answer and Explanation:
The lesson about the uniqueness of the earth allowed me to realize that the earth is the only planet that has drinking water and oxygen, thus allowing the existence of life on the planet and showing that we would not fully survive on another planet.
The lesson also shows that the earth is the only planet where rotation is capable of causing seasonal differences in different parts of the globe. This is important for several things, including food production and plant growth.
Another factor that shows the uniqueness of the land is its favorable temperature for life, allowing us to have water and to be able to live outdoors, for example. This factor is worrying, since the holes in the ozone layer have caused changes in this temperature.
I was also able to learn about the gravity of the earth, which is the only thing that allows us to do all the activities we do and allows us not to be launched into space. In addition, gravity has a strong influence on seas and agriculture.
Finally, I was able to learn about the tectonic plates, which provide the movement of our crust and influence in several geological processes.
Which two rocks are primarily composed of a mineral that bubbles with acid?
Answer:
chalk bubbles with vinegar
Common indoor air contaminants include all of the following EXCEPT:
a)formaldehyde
b)ozone
c)sulfur oxides
d)carbon monoxide
e)radon
Answer:
Formaldehyde, ozone, carbon monoxide, and radon are common indoor air contaminants. Formaldehyde can come from building materials and household products, ozone can be produced by electronic devices, carbon monoxide can be produced by gas appliances, and radon can seep into homes from the ground. Sulfur oxides, on the other hand, are more commonly found in outdoor air pollution, particularly from industrial emissions and fossil fuel combustion.
A chemist is studying an unknown substance. He can break it into its elemental components only by using chemical
means
Based on this observation, how should the unknown substance be classified?
A impure substance
B Solution
C mixture
D pure substance
Answer:
c
Explanation:
Answer:
D.) pure substance
Explanation:
edge 2021
For the reaction 2A(g)⇌B(g)+2C(g), a reaction vessel initially contains only A at a pressure of PA=240 mmHg . At equilibrium, PA=55 mmHg . Calculate the value of kp
The equilibrium constant, Kp, for the reaction cannot be determined without knowing the equilibrium pressures of gases B and C in addition to the initial and equilibrium pressure of gas A.
To calculate the value of Kp, which is the equilibrium constant in terms of partial pressures, we need to use the given equilibrium pressures and the stoichiometric coefficients of the balanced equation.The equilibrium constant expression for the reaction is Kp = (P(B) * P(C)^2) / (P(A)^2), where P(A), P(B), and P(C) are the partial pressures of gases A, B, and C, respectively.
Given that the initial pressure of A is PA = 240 mmHg and the equilibrium pressure of A is PA = 55 mmHg, we can substitute these values into the Kp expression.Kp = (P(B) * P(C)^2) / (P(A)^2) = (55 * P(B) * P(C)^2) / (240^2)
To solve for Kp, we need additional information about the equilibrium pressures of B and C. Without that information, we cannot determine the exact value of Kp.
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