Strong bases and weak acids can hydrolyze into salts, raising the pH level over 7. Ammonium chloride (NH 4 Cl) is a salt whose solution has a pH of less than 7.
The pH will be less than seven when the solution is acidic and higher than seven when the solution is basic. Because Na2CO3 is a salt comprising a strong base and a weak acid, it will produce the highest pH in water. The pH scale determines how acidic or basic water is. The range is 0 to 14, with 7 representing neutrality. Acidity is indicated by pH values below 7, whereas baseness is shown by pH values above 7. In reality, pH is a measurement of the proportion of free hydrogen and hydroxyl ions in water.
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Which of the following best describes an alkali?
A. Any substance with a pH above 7.
B. A soluble solid that forms H+ ions in a solution.
C. A soluble solid that has a pH above 7.
D. An insoluble solid that forms OH-ions in a solution.
Answer:
A. Any substance with a pH above 7.
Explanation:
On the pH scale substances whose value is greater than 7 and less than 14 are termed alkali.
Acids have a pH of less than 7 whereas neutral compounds such as water has pH of 7.
An alkali is any substance that produces excess hydroxyl ion in solutions. Water soluble bases are known as alkali. They are usually certain metallic oxides, metallic hydroxides and aqueous ammonia.Answer:
C A soluble solid that forms H+ ions in a solution
Explanation:
founders ed
2Ca+1O2 -> 2CaO
How many grams of calcium is used in this reaction, if 15.0g calcium oxide are produced
True or False: A liquid's volume does not change no matter what the shape of its container.
Answer:
true
Explanation: becuase if you add the same liquid to a small container and then add it to a big container its going to have the same liquid amount it started with
CAN SOMEONE HELP WITH THIS QUESTION?✨
The quantity of the product obtained from the reaction is generally expressed in terms of the yield of the reaction. The amount obtained actually is called the actual yield.
What is theoretical yield?The amount of the product which is predicted by the stoichiometry is called the theoretical yield. A reaction yield is reported as the percentage of the theoretical amount.
The percentage yield is the ratio of actual yield to the theoretical yield.
% yield = Actual yield / Theoretical yield × 100
a. Molar mass of PbCO₃ = 267.21 g/mol
Molar mass of PbCl₂ = 278.1 g/mol
2.871 g of PbCO₃ gives:
2.871 × 278.1 / 267.21 = 2.988 g PbCl₂
b. % yield = 2.385 / 2.988 × 100 = 79.82 %
Thus the theoretical yield is 2.988 g and the % yield is 79.82 %.
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_______data are information
that can be grouped into categories.
Answer: Categorical data
Explanation: As the name implies, are usually grouped into a category or multiple categories. Similarly, numerical data, as the name implies, deals with number variables.
Hope this helps!!! :)
Use the reaction to answer the question.
Fe2O3 + 3H2SO4
How many atoms of oxygen will be found in the product(s) of the reaction?
4
15
12
3
Answer:
The Correct answer is 15
Answer:
B). 15
Explanation:
a pictorial representation of an electronic configuration is shown. an electron configuration has an up and a down arrow in 1 s, an up and a down arrrow in 2 s, an up and a down arrow in each of three 2 p orbitals, an up and a down arrow in 3 s, and an up arrow in the first and second of three 3 p orbitals. give the full electron configuration. do not use the noble gas abbreviation. Please also give element name.
The full electron configuration for this element is: \(1s^{2}\)\(2s^{2} 2p^{3s} 3p^{2}\) ,this corresponds to the element aluminum (Al).
An electronic configuration is a description of how electrons are distributed among the energy levels and sublevels of an atom or ion. It indicates the number of electrons in each sublevel of an atom, starting with the lowest energy level (1s) and moving up in energy through each subsequent level and sublevel.
For example, the electronic configuration of hydrogen is 1s^1, indicating that there is one electron in the 1s sublevel of the first energy level. The electronic configuration of oxygen is 1s^2 2s^2 2p^4, indicating that there are two electrons in the 1s sublevel, two electrons in the 2s sublevel, and four electrons in the 2p sublevel of the second energy level.
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Compound is pure substances of two or more lenient combined by heat
How many moles in 68 grams of so2? ( please show the work please)
Answer: 1.06 moles
Explanation: To determine the number of moles of a compound present in a given mass, we can use the formula:
moles = mass / molar mass
where molar mass is the mass of one mole of the compound and is measured in g/mol.
The molar mass of sulfur dioxide (SO2) is 64.06 g/mol.
So to find the number of moles of SO2 present in 68 grams, we can plug in the values into the formula:
moles = mass / molar mass
moles = 68 g / 64.06 g/mol
moles = 1.06 moles
Therefore, there are 1.06 moles of SO2 present in 68 grams of this compound.
How many kL does a 9.51 ´ 109 cL sample contain?
Answer:
9.51 × 10⁴ kL
Explanation:
Step 1: Given data
Volume of the sample (V): 9.51 × 10⁹ cL
Step 2: Convert "V" to liters
We will use the conversion factor 1 L = 100 cL.
9.51 × 10⁹ cL × (1 L / 100 cL) = 9.51 × 10⁷ L
Step 3: Convert "V" to kL
We will use the conversion factor 1 kL = 1000 L.
9.51 × 10⁷ L × (1 kL / 1000 L) = 9.51 × 10⁴ kL
9.51 × 10⁹ cL is equal to 9.51 × 10⁴ kL.
3. Beta decay is when a proton and ______ are emitted from a neutron.
a. an electron
b. another proton
c. a neutron
d. positron
Answer:
d. positron
that's the answer brainly tells me I need to write at least 20 characters and that's d u m b.
A gas has an initial volume o 5.32L at 371K. The same gas now has a volume of 4.90 Lat 273
K and 1.03 atm. What was the original pressure of the gas?
Type your answer...
Answer:1.29atm
Explanation: We are given P2,V1,V2,T1, and T2. We are looking for P1.
We can plug it into the combined gas laws formula.
\(\frac{(P1)(V1)}{T1} =\frac{(P2)(V2)}{T2}\) \(P1=\frac{(P2)(T1)(V2)}{(T2)(V1)}\)P1 = ?
V1 = 5.31 L
T1 = 371 K
P2 = 1.03 atm
V2 = 4.90 L
T2 = 273 K
\(P1 = \frac{(1.03)(371)(4.90)}{(273)(5.31)} \\\)
P1 = 1.29 atm
Use the worked example above to help you solve this problem. An electrical heater is operated by applying a potential difference of 49.4 V to nichrome wire of total resistance 8.04 Ω. (a) Find the current carried by the wire and the power rating of the heater. I = 6.14 Correct: Your answer is correct. A P = 303.5 Correct: Your answer is correct. W (b) Using this heater, how long would it take to heat 2.10 103 moles of diatomic gas (e.g., a mixture of oxygen and nitrogen, or air) from a chilly 10°C to 25°C? Take the molar specific heat at constant volume of air to be 5 2 R. s (c) How many kilowatt-hours of electricity are used during the time calculated in part (b) and at what cost, at $0.14 per kilowatt-hour? U = kWh cost $ EXERCISEHINTS: GETTING STARTED | I'M STUCK! (a) A hot-water heater is rated at 4.69 103 W and operates at 2.40 102 V. Find the resistance in the heating element and the current. R = Ω I = A (b) How long does it take to heat 125 L of water from 25.6°C to 54.0°C, neglecting conduction and other losses? (The specific heat of water is 4.186 J/g · K.) s (c) How much does it cost at $0.14/kWh? $
Answer:
Part A:
a) Current = 6.14 A; Power = 303.5 W
b) time = 0.6 hours
c) cost = $ 0.025
Part 2:
a) Resistance = 12.28 ohms; Current = 19.54 A
b) time = 0.88 hours
c) cost = $0.578
Explanation:
The explanation is found in the attachments below:
Elements with atomic numbers of 104 and greater are known as super-heavy elements. None of these elements have been found in nature but instead have been made in a laboratory. They are very difficult and expensive to create, and they break down into other elements quickly. There currently are no practical applications for any of these elements. However, some scientists believe that, with further work, they may discover some isotopes and super-heavy elements that are move stable and that could possibly have practical implications. Do you think that scientists should continue to try and create super-heavy elements and expand the periodic table? explain why or why not
The goals of scientific research are to further knowledge and address pressing issues. This assisted us in comprehending the state of the art.
What is super-heavy elements?Chemical elements with an atomic number greater than 103 are referred to as superheavy elements, transactinide elements, transactinides, or super-heavy elements. The periodic table's superheavy elements are the ones that follow the actinides; lawrencium is the final actinide.
Superheavy elements are transuranium elements by definition, meaning they have atomic numbers higher than uranium (92). Lawrencium could also be added to conclude the 6d series, in accordance with the definition of 3 groups that the authors use. The goals of scientific research are to further knowledge and address pressing issues. This assisted us in comprehending the state of the art.
Therefore, the goals of scientific research are to further knowledge and address pressing issues. This assisted us in comprehending the state of the art.
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please help!!
which oneeeee
Calculate the relative molecular mass of hydrated Copper (II) tetraoxosulphate (VI) CuSO4.5H₂O (Cu = 64 S = 32 H = 1 0 = 16).
The relative molecular mass of hydrated Copper (II) tetraoxosulphate (VI) CuSO4.5H₂O is 249.
What is molecular mass?Molecular mass is a measure of the total mass of one mole of a substance, which is defined as the mass of the substance divided by the number of molecules it contains. It is typically expressed in g/mol and is also known as molar mass. Molecular mass is determined by the types and number of atoms that compose a molecule, and is an important factor in understanding the properties of a substance.
This is calculated by adding the atomic masses of all the atoms present in the compound.
The atomic mass of copper is 64, sulphur is 32, oxygen is 16, and hydrogen is 1.
So, the relative molecular mass of hydrated Copper (II) tetraoxosulphate (VI) CuSO4.5H₂O is 64 + 32 + (16*4.5) + (1*5) = 249.
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How many grams of NaCl
You would recover 36.525g of NaCl after evaporating all of the water.
How to find the how many grams of NaCl that would be recover when all water is evaporated off of this solution?To find the grams of NaCl that would be recovered after evaporating all the water, we can use the following formula:
mass = moles * molar mass
Where:
Moles = Molarity * Volume
Molarity = 0.250 M
Volume = 2500.0 mL = 2.5 L
Molar mass of NaCl = 58.44 g/mol
mass = 0.250 M * 2.5 L * 58.44 g/mol
mass = 36.525 g
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The total number of molecules in 34.0 grams of NH3 is equal to
A)
2.00 ~ 6.02 x 1023
B)
1.00 6.02 x 1023
C)
1.00 x 22.4
D)
2.00 ~ 22.4
Answer:
A
Explanation:
Sana makatulong tong answer ko
The total number of molecules in 34.0 g of ammonia is equal to 12.044×10\(^23\) molecules according to the concept of Avogadro's number.
What is Avogadro's number?
Avogadro's number is defined as a proportionality factor which relates number of constituent particles with the amount of substance which is present in the sample.
It has a SI unit of reciprocal mole whose numeric value is expressed in reciprocal mole which is a dimensionless number and is called as Avogadro's constant.It relates the volume of a substance with it's average volume occupied by one of it's particles .
According to the definitions, Avogadro's number depend on determined value of mass of one atom of those elements.It bridges the gap between macroscopic and microscopic world by relating amount of substance with number of particles.
Number of atoms can be calculated using Avogadro's number as follows: mass/molar mass×Avogadro's number.
In the given example,number of molecules is determined as follows,
17 g ammonia has 6.022×10²³ molecules
So,34 g ammonia has, 34×6.022×10²³/17=12.044×10²³ molecules.
Hence, the total number of molecules in 34 g of ammonia is 12.044×10²³ molecules.
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Your question is incomplete, but the most probable answer is 12.044×10²³ molecules.
3. What are the three states of matter? Name at least three phase changes.
Answer:
The 3 states of matter are Solid, Liquid, and Gas.
Explanation:
Some phases changes include
condensationvaporizationfreezingmeltingdeposition sublimation
What is the numerical value of Kc
for the following reaction if the equilibrium mixture contains 0.032 M
N2O4 and 0.24 M NO2?
N2O4(g)⇌2NO2(g)
10 things you should never do while making a measurement in chemistry
Answer:
Measure at the top of the meniscus
Hold the container (it is unsteady)
Explanation:
I'm really, really, sorry. I took chemistry in 6th grade and I'm in 8th, and I don't remember the entire list. This is all I could think of.
Starting with 0.3500 mol CO(g) and 0.05500 mol COCl2(g) in a 3.050 L flask at 668 K, how many moles of CI2(g) will be present at equilibrium?
CO(g) + Cl2(g)》COCl2(g)
Kc= 1.2 x 10^3 at 668 K
At equilibrium, the number of moles of \(Cl_2\) (g) will be 0.2025 mol.
1: Write the balanced chemical equation:
\(C_O\)(g) + \(Cl_2\)(g) ⟶ \(C_OCl_2\)(g)
2: Set up an ICE table to track the changes in moles of the substances involved in the reaction.
Initial:
\(C_O\)(g) = 0.3500 mol
\(Cl_2\)(g) = 0.05500 mol
\(C_OCl_2\)(g) = 0 mol
Change:
\(C_O\)(g) = -x
\(Cl_2\)(g) = -x
\(C_OCl_2\)(g) = +x
Equilibrium:
\(C_O\)(g) = 0.3500 - x mol
\(Cl_2\)(g) = 0.05500 - x mol
\(C_OCl_2\)(g) = x mol
3: Write the expression for the equilibrium constant (Kc) using the concentrations of the species involved:
Kc = [\(C_OCl_2\)(g)] / [\(C_O\)(g)] * [\(Cl_2\)(g)]
4: Substitute the given equilibrium constant (Kc) value into the expression:
1.2 x \(10^3\) = x / (0.3500 - x) * (0.05500 - x)
5: Solve the equation for x. Rearrange the equation to obtain a quadratic equation:
1.2 x \(10^3\) * (0.3500 - x) * (0.05500 - x) = x
6: Simplify and solve the quadratic equation. This can be done by multiplying out the terms, rearranging the equation to standard quadratic form, and then using the quadratic formula.
7: After solving the quadratic equation, you will find two possible values for x. However, since the number of moles cannot be negative, we discard the negative solution.
8: The positive value of x represents the number of moles of \(Cl_2\)(g) at equilibrium. Substitute the value of x into the expression for \(Cl_2\)(g):
\(Cl_2\)(g) = 0.05500 - x
9: Calculate the value of \(Cl_2\)(g) at equilibrium:
\(Cl_2\)(g) = 0.05500 - x
\(Cl_2\)(g) = 0.05500 - (positive value of x)
10: Calculate the final value of \(Cl_2\) (g) at equilibrium to get the answer.
Therefore, at equilibrium, the number of moles of \(Cl_2\) (g) will be 0.2025 mol.
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PLEASEEEEEEE HELPPPP
Answer:
Magma in earths crust
Explanation:
from kinatic point of view explain the change from solid to liquied based on the effect of change of tempreture.
Answer:
Temperature affects the kinetic energy in a gas the most, followed by a comparable liquid, and then a comparable solid. The higher the temperature, the higher the average kinetic energy, but the magnitude of this difference depends on the amount of motion intrinsically present within these phases.
Explanation:
Liquids have more kinetic energy than solids. When a substance increases in temperature, heat is being added, and its particles are gaining kinetic energy. Because of their close proximity to one another, liquid and solid particles experience intermolecular forces. These forces keep particles close together.
Why doesn't the red line showing the IR spectrum emitted from the earth's surface match the blue line showing the expected IR spectrum from a 300˚C object?
-Some of the light emitted is used to heat building.
-Molecules in the atmosphere such as CO2 and H2O absorb the radiation.
-Contrails from airplanes absorb the radiation cause the dip at 14 micrometers.
-IR radiation at 14 micrometers is not actually emitted by the earth's surface.
The red line showing the IR spectrum emitted from the earth's surface does not match the blue line showing the expected IR spectrum from a 300˚C object because:
Molecules in the atmosphere such as CO₂ and H₂O absorb the radiation; option B.What is IR spectroscopy?IR spectroscopy studies Infrared (IR) light in the electromagnetic spectrum.
Sensors are used by thermal detection systems, also known as infrared detection systems, to detect radiation in the infrared region of the electromagnetic spectrum.
In order to create an electronic signal, an infrared camera must first detect the thermal energy or heat, that the scene being seen emits. After processing this signal, an image is created.
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how may liters are in 0.8291moles of hexane (c6h14)?
In 0.8291 moles of hexane (\(C_6H_1_4\)) there are 20.8 liters in 0.8291 moles of hexane at room temperature and atmospheric pressure.
To determine the number of liters in 0.8291 moles of hexane (C6H14), we need to use the ideal gas law equation:
PV = nRT
where:
P = pressure (atm)
V = volume (L)
n = moles of gas
R = gas constant (0.0821 L*atm/mol*K)
T = temperature (K)
We need to rearrange this equation to solve for V:
V = nRT/P
First, we need to calculate the number of moles of hexane:
n = mass/molar mass
The molar mass of hexane (C6H14) is:
6(12.01 g/mol) + 14(1.01 g/mol) = 86.18 g/mol
n = 0.8291 moles
Next, we need to convert the temperature to Kelvin. Assuming room temperature (25°C or 298 K):
T = 298 K
Finally, we need to assume a pressure value. Let's assume atmospheric pressure (1 atm).
P = 1 atm
Now we can plug in the values and solve for V:
V = (0.8291 mol)(0.0821 L*atm/mol*K)(298 K)/(1 atm)
V = 20.8 L
Therefore, there are 20.8 liters in 0.8291 moles of hexane at room temperature and atmospheric pressure.
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What is the molarity of a solution that contains 4.53 moles of lithium nitrate (LiNO3) in 2.85 liters of solution
Answer:
M= ml - 45301 - 11.59M.
Explanation:
the question in the picture, I really a correct answer, no cheap answers
Answer:
94.325 g
Explanation:
We'll begin by converting 350 mL to L. This can be obtained as follow:
1000 mL = 1 L
Therefore,
350 mL = 350 mL × 1 L /1000 mL
350 mL = 0.35 L
Next, we shall determine the number of mole of KC₂H₃O₂ in the solution. This can be obtained as follow:
Volume = 0.35 L
Molarity of KC₂H₃O₂ = 2.75 M
Mole of KC₂H₃O₂ =?
Molarity = mole /Volume
2.75 = Mole of KC₂H₃O₂ / 0.35
Cross multiply
Mole of KC₂H₃O₂ = 2.75 × 0.35
Mole of KC₂H₃O₂ = 0.9625 mole
Finally, we shall determine the mass of KC₂H₃O₂ needed to prepare the solution. This can be obtained as illustrated below:
Mole of KC₂H₃O₂ = 0.9625 mole
Molar mass of KC₂H₃O₂ = 39 + (12×2) +(3×1) + (16×2)
= 39 + 24 + 3 + 32
= 98 g/mol
Mass of KC₂H₃O₂ =?
Mass = mole × molar mass
Mass of KC₂H₃O₂ = 0.9625 × 98
Mass of KC₂H₃O₂ = 94.325 g
Thus, the mass of KC₂H₃O₂ needed to prepare the solution is 94.325 g
Use of diamonds based on chemical properties
It is incorporated with audio equipment to enhance sound quality. Diamonds are hard and easily vibrate at fast speeds, which results in high-quality sound. High-end recorders and DJ equipment both use it. Nanodiamonds have potential health benefits.
The carbon atoms in diamond are organised in a diamond cubic crystal lattice, making it an allotrope of carbon. Diamond is the material with the highest heat conductivity and hardness among all naturally occurring substances. Diamond is a particularly important component of industrial cutting and polishing equipment due to its unique qualities.
These days, diamond exfoliators and face products are accessible. Diamond dust is now being used in cosmetics, thus the price will undoubtedly be exorbitant. Diamond is used in beauty products to minimize wrinkles, etc.
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What is the molar mass
MgCrO4
The molar mass of MgCrO4 is approximately 140.30 g/mol.
To determine the molar mass of MgCrO4 (magnesium chromate), we need to calculate the sum of the atomic masses of each individual element in the compound.
The chemical formula MgCrO4 indicates that the compound consists of one magnesium atom (Mg), one chromium atom (Cr), and four oxygen atoms (O).
The atomic masses of the elements can be found on the periodic table:
Magnesium (Mg) has an atomic mass of approximately 24.31 g/mol.
Chromium (Cr) has an atomic mass of around 51.99 g/mol.
Oxygen (O) has an atomic mass of about 16.00 g/mol.
Now, we can calculate the molar mass of MgCrO4 by summing up the atomic masses of each element, considering the respective subscripts:
Molar mass = (Atomic mass of Mg) + (Atomic mass of Cr) + 4 × (Atomic mass of O)
Molar mass = (24.31 g/mol) + (51.99 g/mol) + 4 × (16.00 g/mol)
Molar mass = 24.31 g/mol + 51.99 g/mol + 64.00 g/mol
Molar mass ≈ 140.30 g/mol
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