Using hypothetical scenario: the appropriate container for the reaction between copper(II) chloride dihydrate and aluminum wire would be a test tube.
What is the laboratory work about?In the given scenario, a pre-weighed sample of copper(II) chloride dihydrate is being used, which implies that the quantity of the sample is likely to be small. A test tube is, therefore, an appropriate container for the reaction as it can hold the sample and reactant (aluminum wire) without being too large or cumbersome to handle.
A test tube is a small, cylindrical-shaped container made of glass or plastic that is commonly used in laboratory experiments. Test tubes are designed to hold small quantities of chemicals and are ideal for mixing, heating, and observing chemical reactions. They are also easy to handle and can be easily capped or stoppered to prevent spills or contamination.
Therefore, in this scenario, a test tube would be the appropriate container for the reaction between copper(II) chloride dihydrate and aluminum wire.
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Question: What volume of 4.50 M HCI can be
made by mixing 5.65 M HCI with 250.0 mL of
3.55 M HCI?
Approximately 0.157 liters or 157 milliliters of the 4.50 M HCl solution can be made by mixing the given solutions.
To determine the volume of 4.50 M HCl that can be made by mixing the given solutions, we can use the concept of the concentration-volume relationship:
C1V1 = C2V2
Where:
C1 = concentration of the first solution
V1 = volume of the first solution
C2 = concentration of the second solution
V2 = volume of the second solution
Let's assign the variables as follows:
C1 = 5.65 M
V1 = unknown volume (we'll solve for this)
C2 = 3.55 M
V2 = 250.0 mL = 0.250 L (since the volume is given in milliliters)
Now we can plug in the values into the equation and solve for V1:
(5.65 M)(V1) = (3.55 M)(0.250 L)
Dividing both sides of the equation by 5.65 M:
V1 = (3.55 M)(0.250 L) / 5.65 M
V1 ≈ 0.157 L
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Solid sodium carbonate reacts with nitric acid according to the following equation:Na2CO3 (s) + 2 HNO3 (aq) --> NaNO3 (aq) + H₂O (1) + CO2 (9)Suppose that 350. mL of 0.330 M HNO3 reacts with excess Na2CO3. What mass of CO2 will be produced?
Answer:
2.55 g of CO2.
Explanation:
What is given?
Volume of HNO3 solution = 350 mL = 0.350 L.
Molarity of HNO3 solution = 0.330 M.
Molar mass of CO2 = 44 g/mol.
Step-by-step solution:
To find how mass of CO2 will be produced based on the volume and molarity of a solution with a excess reactant (Na2CO3), we have to find the number of moles of the substance in the solution, i.e., the number of moles of HNO3. To do this, we use the molarity formula, which is the following:
\(Molartiy\text{ \lparen M\rparen=}\frac{mole\text{s of solute}}{liter\text{s of solution}}=\frac{mol}{L}.\)The molarity of the HNO3 solution is 0.330 M, and the volume in liters would be 0.350 L (remember that 1 L equals 1000 mL, so 350 mL = 0.350 L). Let's solve for 'moles of solute' and replace the data that we have, like this:
\(\begin{gathered} moles\text{ of solute=Molarity}\cdot liters\text{ of solution,} \\ moles\text{ of solute=0.330 M }\cdot0.350\text{ L,} \\ moles\text{ of solute=0.116 moles.} \end{gathered}\)We have 0.116 moles of HNO3 reacting with excess Na2CO3. You can see in the chemical equation that 2 moles of HNO3 reacted produces 1 mol of CO2, so let's see how many moles of CO2 can be produced by 0.116 moles of HNO3:
\(0.116\text{ moles HNO}_3\cdot\frac{1\text{ mol CO}_2}{2\text{ moles HNO}_3}=0.058\text{ moles CO}_2.\)We're producing 0.058 moles of CO2.
The final step is to convert from 0.058 moles of CO2 to grams using the molar mass of CO2, as follows:
\(0.058\text{ moles CO}_2\cdot\frac{44\text{ g CO}_2}{1\text{ mol CO}_2}=2.55\text{ g CO}_2.\)The answer would be that we're producing 2.55 g of CO2.
What is the mass, in grams, of 0.680 moles of SbFs?
Answer:
26,654,082.
Explanation:
Identify the limiting reactant in the reaction of methane (CH4) and carbon tetrachloride to form CH2Cl2, if 2.96 g of CH4 and 32.0 g of CCl4 are combined. Determine the amount (in grams) of excess reactant that remains after the reaction is complete.
Answer:
d
Explanation:
yes
Identify the oxidizing and reducing agents in the following: H2S(aq) + Cl2(g) -> S(s) + 2HCI (aq)
The oxidizing and reducing agent in the above redox reaction are hydrogen sulphide (H2S) and Chlorine (Cl) respectively.
What is an oxidizing and reducing agent?An oxidizing agent is any substance that oxidizes, or receives electrons from another substance and as a result, becoming reduced.
On the other hand, a reducing agent is any substance that reduces or donates electrons to another and as a result becomes oxidized.
According to this reaction; H2S(aq) + Cl2(g) -> S(s) + 2HCI (aq)
H2S accepts electrons from Cl2 and becomes reduced to SCl2 donates electrons to H2S and becomes oxidized to HClTherefore, the oxidizing and reducing agent in the above redox reaction are hydrogen sulphide (H2S) and Chlorine (Cl) respectively.
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How many liters are in 35 g of CO2?
Answer - 0.657 liters
Answer:
0.657 liters
Explanation:
i just know
Nazeeh conducted an experiment to demonstrate the law of conservation of matter. He burned a strip of magnesium that had a beginning mass of 5.0 g over an open flame. The magnesium gave off a bright white light and smoke as it was being burned. The white ash that was left over had a mass of 4.5 g. Nazeeh concluded that his experiment did not uphold the law of conservation of matter.
What did Nazeeh NOT take into consideration when drawing his conclusion?
A
that some of the mass was lost to the air as light
B
that mass has absolutely no relationship to matter
C
that some of the mass was lost to the air as smoke
D
that ash has a lower mass than the strip of magnesium
Answer:
C
that some of the mass was lost to the air as smoke
Answer:
C
Explanation:
A: Light isn´t part of the mass of magnesium, light is energy, it doesn´t occupate space.
B: Mass clearly have a relationship with matter, if you increase the amout of mass, you will increase the amout of matter, one way or another.
C: It is correct, some of the mass was lost because hot gases tend to go up.
D: Yes, the ash has a lower mass than magnesium, but it is not because ash is lighter or something like that. It is because some of the ash was lost due to the air.
Nitrogen moves continuously between the atmosphere and soil in what is called the ______.
nitrification
weathering
nitrogen cycle
photosynthesis
Explanation:
weathering is correct answer thanks
Answer:
Your answer would be:
C.) Nitrogen Cycle
Nitrogen moves continuously between the atmosphere and soil in what is called the nitrogen cycle.
Explanation:
The nitrogen cycle is the biogeochemical cycle describing how nitrogen moves through the biosphere and atmosphere. The nitrogen cycle is a lot like the carbon and water cycle. Rainstorms contribute atmospheric nitrogen through raindrops that reach the soil. Plants, such as soybeans, alfalfa, and clovers, are plants that can convert atmospheric nitrogen into plant-usable nitrogen.
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6.Which of the following is NOT true about the lens?
The following statement which is NOT true about the lens is:
A. It sends light to the optic nerveThe lens is a piece of glass which is used for the dispersal or refraction of light and is used to focus light onto the retina of the eye.
As a result of this, the lens is responsible for refracting of light, focusing of light and it is transparent. However, it does not send light to the optic nerve.
Therefore, the correct answer is option A
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the table shows the pH levels of four common items. If a student tests a sample of each item, which will turn a strip of red litmus paper blue?
a-lemon juice
b- vinegar
c-coffee
d-hand soap
please answer and have an explanation.
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The element that is in the same family as element C (gas) is likely to have which properties. 2 valence electrons, solid, metal 6 valence electrons, gas, nonmetal, 6 valence electrons, solid, nonmetal, 2 valence electrons, solid, nonmetal
Answer:
that element is likely to be a non metaland a gas
the heat of vaporization of water is 40.7 kj/mol. at what temperature is the vapor pressure 145 torr
From the calculations and the data provided in the question, the required temperature is 380 K.
What is the Clasius - Clapeyron equation?The Clasius Clapeyron equation is used to obtain the vapor pressure of a substance at two different temperatures.
Hence;
lnP2/P1 = -ΔHvap/R(1/T2 - 1/T1)
ln(145/1) = -40.7 * 10^3/8.314(1/T2 - 1/273)
4.977 = -(4811)(1/T2 - 1/273)
4.977/-(4811) = (1/T2 - 1/273)
-0.00103 = 1/T2 - 1/273
-0.00103 + 1/273 = 1/T2
0.002633 =1/T2
T2 = 380 K
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A sealed container can hold 6.28 L CO2 at 1.00 atm and 293 K. How many moles of CO2 fill the container?
The term "molar volume" (Vm) of an ideal gas refers to this amount. (STP) as 293 kelvin (K) of temperature and 1 atmosphere of pressure (P = 1 atm, which is also equal to 760 torr). Any ideal gas has a 22.4 L molar volume at STP.
How can I calculate the molar volume?The volume occupied through one mole of the a chemical element or chemical compound at a standard temperature and pressure (STP) is known as the molar volume (Vm). By dividing the mass density () by the molar mass (M), it can be computed.
Are moles and molar volume the same thing?One mole of any gas has the same volume when it is present at the same temperature and pressure. The volume that one mole of any gas occupies at standard pressure and temperature is known as the molar volume. 24 dm3 is equivalent to the molar volume (24,000 cm 3). In cases where it is necessary, this volume is provided.
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The scientists involved in this research are specialists in
Answer:
Sep 23, 2019 — It's in everyone's benefit if physicians participate in research. By Mukesh K. Jain, Tadataka Yamada and Robert Lefkowitz. Drs. Jain, Yamada ...
Explanation:
Is it A,B,C,D please explain why you choosed that?
Answer:
C.
Explanation:
The hand was touching the pan, which was hot, so the human reacted to it by putting the hand away from the pan.
Nuclear reactions
A. Involve electrons
B. Can form compounds
C. Can form different elements
D. Depend on chemical combination
Answer: C
Explanation:
Nuclear reactions involve a change in an atom's nucleus, usually producing a different element. Chemical reactions, on the other hand, involve only a rearrangement of electrons and do not involve changes in the nuclei.
Research some ways in which scientists and engineers have harnessed and currently use the energy in fossil fuels to benefit society. Think about how these methods involve a chemical reaction, and explain how energy is conserved. Describe one method of using fossil fuels for energy, and state one advantage and disadvantage about this method. In your replies to others' comments, state whether you agree or disagree with the advantages and disadvantages they list and explain your reasoning.
Hint: Consider what happens to fossil fuels (such as coal, natural gas, and petroleum) when they are burned.
Answer:
Explanation:
Fossil fuels are fuels that are formed by naturally processes leading to the formation of crude oil, coal and natural gas.
Scientists and engineers have used the energy from these fossil fuels to benefit the society by converting these fuels into consumable products for engines which are used for various daily life routine, such as transport (as in the case of the combustible engines in cars, trains, airplanes and ships), power generation (as in the case of gas turbines for power generation, petroleum or diesel for the engines of power generators) and even for home use in food processing (as in the case of cooking gas).
The chemical reaction mostly involved in this process especially in the case of engines is combustion reaction. Combustion reaction is an exothermic reaction in which an organic substance is burnt in excess oxygen to produce carbon dioxide. The energy conserved in this reaction (combustion reaction) is from stored potential energy (in the form of chemical energy) to thermal energy (which is the heat released when the hydrocarbon is burnt).
As mentioned earlier, one of the methods of using fossil fuels for energy is it's use in power generation by power generating sets (generators) and gas turbines. One advantage of using fossil fuel products for power generation is that it is cheaper than it's alternatives (such as solar power generation). However, one disadvantage of using fossil fuel products for power generation is that they release toxic gases/chemicals (such as carbon monoxide, CO, nitrogen oxides, NO and NO₂) into the atmosphere.
How many atoms are in 90.43 moles of copper
Mole measure the number of elementary entities of a given substance that are present in a given sample. Therefore, 8.12×10²³ atoms are in 90.43 mole of copper.
What is mole?
The SI unit of amount of substance in chemistry is mole. The mole is used to measure the quantity of amount of substance. It measure the number of elementary entities of a given substance that are present in a given sample. There are so many formula for calculating mole.
we know one mole of any element contains 6.022×10²³ atoms which is also called Avogadro number
number of atoms/molecules=number of moles × 6.022×10²³(Avogadro number)
number of moles of copper=90.43 moles
Substituting all the given values in the above equation, we get
number of atoms/molecules= 90.43 × 6.022×10²³
number of atoms/molecules=8.12×10²³ molecules
Therefore, 8.12×10²³ atoms are in 90.43 mole of copper.
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(Question) : What is the specific gravity of liquid sample with a mass
of 35.0 g and a volume of. 14.00 mL ?
Answer:
48.0g is the specific gravity of liquid sample with a mass of 35.0g and a volume of 14.00 mL
What mass of NaCl is needed to produce a 26.4 mol/L with a 1.7 L volume?
we would need 2625.13 grams (or 2.62513 kilograms) of NaCl.
To calculate the mass of NaCl required to produce a 26.4 mol/L solution with a 1.7 L volume, we need to use the formula that relates the mass of solute, moles of solute, and molarity:Molarity (M) = moles of solute / liters of solution Rearranging this formula, we get:moles of solute = Molarity (M) x liters of solutionWe can use this formula to find the moles of NaCl needed:moles of NaCl = 26.4 mol/L x 1.7 L = 44.88 molNow, we can use the molar mass of NaCl to convert from moles to grams. The molar mass of NaCl is 58.44 g/mol:mass of NaCl = moles of NaCl x molar mass of NaClmass of NaCl = 44.88 mol x 58.44 g/mol = 2625.13 gTo produce a 26.4 mol/L solution with a 1.7 L volume.
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Calculate the specific heat in J/(g·ºC) of an unknown substance if a 2.50-g sample releases 12.0 cal as its temperature changes from 25.0ºC to 20.0ºC. _________J/(g·°C)
Answer:
\(\fbox{c = - 4.01 \: joule/g°C}\)
Step by step explanation:
Given:
Mass of given sample (m) = 2.50 g
Initial temperature (T1) = 25°C
Final temperature (T2) = 20°C
Heat Energy Q = 12 cal
To find:
\(Specific \: Heat \: c = \: ?\)
Solution:
We know that,
Specific heat of any substance is directly proportional to the mass and change in temperature.
Represented by equation,
\(Q = mc \triangle T\)
Where,
Q = Heat Energy
m = mass of given sample
c = specific heat
∆T = change in temperature
Substituting corresponding values,
\(Q = mc \triangle T \\ 12 = 2.5\times c \times (20-25) \\ c = \frac{12}{2.5 \times ( - 5)} \\ c = - 0.96 \: cal/g°C \\ \)
We also know that,
\(1 \: cal = 4.184 \: joules\)
multiplying above answer by 4.184,
\(c = - 0.96 \times 4.184 \\ \fbox{c = - 4.01 \: joule/g°C}\)
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To what temperature should you heat a sample of air initially at 315K to increase its volume by 25% ?
The sample of air should be heated to 252 Kelvin (K) to increase its volume by 25%.
It is possible to determine the temperature to which the sample of air should be heated by using the concept of the ideal gas law. PV = nRT is the ideal gas law, and it relates the pressure (P), volume (V), number of moles (n), temperature (T), and gas constant (R). we can focus on the relationship between volume and temperature since the number of moles and pressure are assumed to be constant.
By showing the increase in volume as a percentage (25%), we can make the equation (V+0.25V)/T = V/T, where V represents the initial volume of the air.
On making the equation simple, we find Tfinal / Tinitial = 1.25.
To solve for Tfianal, the final temperature,
Tfinal = Tinitail / 1.25
On substituting the initial temperature value of 315K into the equation, we will be getting;
Tfinal = 315K / 1.25
Tfinal = 252K
Hence, the sample of air should be heated to 252 Kelvin (K) in order to increase its volume by 25%.
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Suppose a solution has a pOH of 5.3. What is the concentration of hydronium ion, H3O+, in the solution?
The concentration of hydronium ion, H3O+, in the solution with pOH of 5.3 is 1.99 × 10-⁹M.
HOW TO CALCULATE HYDROGEN CONCENTRATION:
The pOH of a solution is given as 5.3. The pH of this solution can be calculated as follows:pOH + pH =145.3 + pH = 14pH = 14 - 5.3 = 8.7pH = 8.7.The hydrogen ion concentration can be calculated by using the following expression:[H+] = 10-pH[H+] = 10-⁸.⁷[H+] = 1.99 × 10-⁹MTherefore, the concentration of hydronium ion, H3O+, in the solution with pOH of 5.3 is 1.99 × 10-⁹M.
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Option B, where [OH-] is 1.0 x 10-13 mol dm-³3, is the only one that can be considered basic. Therefore, Option B is the correct answer.
To determine whether a solution is basic or acidic at 25 °C, we can compare the concentration of hydroxide ions ([OH-]) with the concentration of hydronium ions ([\(H_3O\)+]). In a neutral solution, the concentrations of [\(H_3O\)+] and [OH-] are equal, resulting in a pH of 7.
Option A states that the concentration of [\(H_3O\)+] is 1.0 x 10-3 mol dm-3. Since [\(H_3O\)+] represents the concentration of hydronium ions, this solution would be acidic because the concentration of [\(H_3O\)+] is higher than [OH-], indicating an excess of hydronium ions.
Option B states that the concentration of [OH-] is 1.0 x 10-13 mol dm-³3. In this case, [OH-] is higher than [\(H_3O\)+], indicating an excess of hydroxide ions. Therefore, this solution would be considered basic.
Option C states that the solution has a pH of 4.00. A pH of 4.00 is below the neutral pH of 7, indicating an excess of hydronium ions and an acidic solution. Therefore, this option does not represent a basic solution.
Option D states that the concentration of [\(H_3O\)+] is 1.0 x 10-13 mol dm-3. Similar to Option A, this concentration of [\(H_3O\)+] indicates an acidic solution, not a basic one.
Option B
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Answer:
D is the correct answer
Explanation:
In order for a solution to be basic at 25 C, the H+ concentration has to be less than the OH- concentration, and given that H+ times OH- is 10^-14, we deduce that H+ must be less than 10^-7 for the solution to be acidic. Thus, A can be eliminated, and so can C. With B, we calculate an H+ concentration of 0.1M, which also fails to be less than 10^-7
Thus, D is the correct answer and we can verify that as H+ is less than 10^-7.
Note: I do not know why my previous answer was deleted for "being incorrect", and i'm not sure how the incorrect answer was "expert verified", but I am as certain that D is the correct answer as i am sure of 3*(4+5-1) being equal to 24.
Which of the following choices is NOT an example of a colligative property?A. Vapor pressure loweringB. Freezing point depressionC. Boiling point elevationD. Melting point acceleration
Explanation: Collagative properties are characteristics of a solution that is dependent on the ratio of solute particles to to solvent particles.
Answer: D) Melting point acceleration.
Help me plzzzzzzzzz
Pure metals possess few important physical and metallic properties, such as melting point, boiling point, density, specific gravity, high malleability, ductility, and heat and electrical conductivity. These properties can be modified and enhanced by alloying it with some other metal or nonmetal, according to the need.
Alloys are made to:
Enhance the hardness of a metal: An alloy is harder than its components. Pure metals are generally soft. The hardness of a metal can be enhanced by alloying it with another metal or nonmetal.
Lower the melting point: Pure metals have a high melting point. The melting point lowers when pure metals are alloyed with other metals or nonmetals. This makes the metals easily fusible. This property is utilized to make useful alloys called solders.
Enhance tensile strength: Alloy formation increases the tensile strength of the parent metal.
Enhance corrosion resistance: Alloys are more resistant to corrosion than pure metals. Metals in pure form are chemically reactive and can be easily corroded by the surrounding atmospheric gases and moisture. Alloying a metal increases the inertness of the metal, which, in turn, increases corrosion resistance.
Modify color: The color of pure metal can be modified by alloying it with other metals or nonmetals containing suitable color pigments.
Provide better castability: One of the most essential requirements of getting good castings is the expansion of the metal on solidification. Pure molten metals undergo contraction on solidification. Metals need to be alloyed to obtain good castings because alloys
True
False
Question 7 (4 points)
In thermodynamics, the universe is defined as the system plus its surroundings.
True
False
Question 8 (4 points)
The law of conservation of energy states that energy is neither created nor destroyed.
Answer:
The question 7 answer is false
the question 8 answer is true
why is a copper roof turning green a chemical change?
Answer:
Copper will start to react with the oxygen in the air to form copper oxide. The copper oxide will continue reacting to oxygen over time. As the copper oxide continues to react with carbon dioxide and water in the air it coats the surface with that iconic blue-green patina colour
Select the best answer for the question. 1. Mei is seated doing leg extensions and going through the full path of motion. What type of exercise is Mei doing? O A. Free-weight exercise B. Resistance exercise C. Machine exercise O D. Cable exercise
The correct answer is "C.
The type of exercise that Mei is doing is the "Machine exercise."
Machine exercise refers to a physical fitness training technique that allows the muscles to develop and strength through the use of machines that use hydraulic cylinders, weights, and cables to produce resistance. The machine exercises are generally performed in a seated position or lying down, and most often use a series of cables and weights that are adjusted to the user's specific body weight and desired level of resistance.Machine exercises can effectively target specific muscle groups and help strengthen them.Machine exercises can help you increase muscular endurance and improve your overall fitness level.Machine exercises are often safer and easier to perform than free-weight exercises.Machine exercises are generally easier on your joints and can help reduce the risk of injury.Machine exercises are also helpful for people with limited mobility or those recovering from an injury or surgery.For such more questions on Machine exercise
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ANSWER ASAP!
The sun provides what almost everything on Earth needs to go—energy, or heat. Heat causes liquid and frozen water to evaporate into water vapor gas, which rises high in the sky to form clouds... clouds that move over the globe and drop rain and snow. This process is a large part of the water cycle.
Answer:
whats the question so i can answer?