Answer: 67.5
Explanation:
Brainliest pls
What's the mass in grams of 0.442 moles of calcium bromide, CaBr2? The atomic
weight of Ca is 40.1 and the atomic weight of Br is 79.9.
A) 452.3 g
B) 53.04 g
C) 44.2 g
D) 88.4 g
Answer:
Below
Explanation:
Let n be the quantity of matter in the Calcium Bromide
● n = m/ M
M is the atomic weight and m is the mass
M of CaBr2 is the sum of the atomic wieght of its components (2 Bromes atoms and 1 calcium atom)
M = 40.1 + 2×79.9
● 0.422 = m/ (40.1+2×79.9)
●0.422 = m/ 199.9
● m = 0.422 × 199.9
● m = 84.35 g wich is 88.4 g approximatively
88.4 g approximatively is the mass in grams of 0.442 moles of calcium bromide, CaBr2 ,therefore option (d) is correct.
What do you mean by mass ?Mass is the amount of matter that a body possesses. Mass is usually measured in grams (g) or kilograms (kg) .
To calculate mass in grams of 0.442 moles of calcium bromide, CaBr2,
Let n be the quantity of matter in the Calcium Bromide
M is the atomic weight and m is the mass
n = m/ MM of CaBr2 is the sum of the atomic weight of its components
Mass of Ca = 40.1 , Mass of Br = 79.9
M = 40.1 + 2×79.9
0.422 = m/ (40.1+2×79.9)
0.422 = m/ 199.9
m = 0.422 × 199.9
m = 84.35 g which is 88.4 g approximatively .
Thus ,88.4 g approximatively is the mass in grams of 0.442 moles of calcium bromide, CaBr2 , hence option (d) is correct .
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100 POINTS & BRAINLIEST !!!! PLEASE HELP three qualitative and three quantitative observations, and one inference
Answer: 3 qualitative: the word pharmacology is written in blue, the stairs are gray, the tile on the first floor is yellow. 3 quantitative: there are four people wearing yellow, there are Four pink boxes, there are two floors.
Inference: there are many people performing experiments so it’s a lab.
Explanation:
Answer:
Qualitive - The bars are yellow, The floor is green, and the floor has pharmacology on it.
Quantitative - There are 8 support bars, There is 3 gray coats, and there is 27 pills that I can see on that picture.
Inference - There are many people doing experiments because the word pharmacology is on the floor.
Explanation:
This picture tells you that pharmacology is a form of study of medicine and drugs.
A soccer ball filled with air has an internal pressure of 1.85 atm and a volume of 1.95 liters. If the ball is exposed to conditions where the pressure is 2.60 atm and there is no change in temperature, what will be the new volume of the soccer ball?
If there is no change in temperature and the pressure is adjusted to 2.60 atm, the soccer ball's new capacity is 1.39 litres.
How Can You Check the Air Pressure in Your Football?An air pressure gauge is the fastest and most precise tool for measuring football pressure. Turn the valve while inserting the gauge's pin into the inflation hole. Regardless of whether you're using an analogue or digital gauge, you should get an accurate reading nearly immediately.
The combined gas law, which links the starting and final pressure, volume, and temperature of a gas, can be used to address this issue:
(P1V1) / T1 = (P2V2) / T2
(P1V1) / T1 = (P2V2) / T2
(1.85 atm)(1.95 L) / T = (2.60 atm)(V2) / T
Simplifying and solving for V2, we get:
V2 = (P1V1)(P2) / (P2V1)
V2 = (1.85 atm)(1.95 L) / (2.60 atm)
V2 = 1.39 L
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he decomposition of NaClo3 is a first order reaction. A sample of NaClo3 was 90% decomposed in 48 minutes. How long would it take for a sample NaclO3 to be 50% decomposed
The time taken for 50% to be decomposed is the half life and this is 14.4 mins.
What is the time taken?We know that a first order reaction would have a half life that can be obtained from the formula;
N/No = (1/2)^ t/\(t_{\frac{1}{2} }\)
N = Number of atoms at time t
No = Number of atoms initially present
t = time taken
\(t_{\frac{1}{2} }\) = Half life of the reaction
Thus;
We have that the substance is 90% decomposed so only 10% of the original sample remains.
Now;
0.1No/No = (1/2)^48/\(t_{\frac{1}{2} }\)
0.1 = (0.5)^48/\(t_{\frac{1}{2} }\)
ln (0.1) = 48/\(t_{\frac{1}{2} }\) ln(0.5)
-2.3 = 48/\(t_{\frac{1}{2} }\) (-0.69)
48/\(t_{\frac{1}{2} }\) =-2.3/-0.69
\(t_{\frac{1}{2} }\) = 14.4 min
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N2+3H2 → 2NH3
A) How many grams of NH3 can be produced from the reaction of 28g of N2 and 25g of H2?
I need the steps to the answer 34g
B) How much of the excess reagent is left over?
I need steps to the answer 19 g
Explanation:
N2 (g) + H2 (g) gives out NH3 (g)
Now balance it. You have two reactants with compositions involving a single element, which makes it very easy to keep track of how much is on each side. I would balance the nitrogens, and then the hydrogens.
Now balance it. You have two reactants with compositions involving a single element, which makes it very easy to keep track of how much is on each side. I would balance the nitrogens, and then the hydrogens.(If you balance the hydrogen reactant with a whole number first, I can guarantee you that you will have to give NH3 a new stoichiometric coefficient.)
N2 (g) + 3H2 (g) gives out 2NH3 (g)
The stoichiometric coefficients tell you that if we can somehow treat every component in the reaction as the same (like on a per-mol basis, hinthint), then one "[molar] equivalent" of nitrogen yields two [molar] equivalents of ammonia.
Luckily, one mol of anything is equal in quantity to one mol of anything else because the comparison is made in the units of mols.
So what do we do? Convert to
mols (remember the hint?).
28g N2 × 1 mol N2/ 2 × 14.007) g N2
= 0.9995 mol N2
At this point you don't even need to calculate the number of mols of H2 . Why? Because H2 is about 2 g/mol, which means we have over 10 mols of H2. We have 1 mol N2, and we need three times as many mols of H2 as we have
N2.
After doing the actual calculation you should realize that we have about 4 times as much H2 as we need. Therefore the limiting reagent is clearly N2.
Thus, we should yield 2×0.9995=1.9990 mols of NH3 (refer back to the reaction). So this is the second and last calculation we need to do:
1.9990 mol NH3 × 17.0307 g NH3/ 1 mol NH3
= 34.0444 g NH3
Hope it helpz~
34grams of NH₃ can be produced from the reaction of 28g of N₂ and 25g of H₂ and 19g of the excess reagent is left over.
What is Mole?The mole is an amount unit similar to familiar units like pair, dozen, gross, etc. It provides a specific measure of the number of atoms or molecules in a bulk sample of matter.
A mole is defined as the amount of substance containing the same number of atoms, molecules, ions, etc. as the number of atoms in a sample of pure 12C weighing exactly 12 g.
Given,
Mass of N₂ = 28g
Mass of H₂ = 25g
Moles of N₂ = mass / molar mass
= 28 / 28
= 1 mole
Moles of H₂ = 25 / 2
= 12.5 moles
Since the number of moles of N₂ is lesser, the amount of products formed depends on the moles of N₂.
From the reaction,
1 mole of N₂ gives 2 moles of NH₃
So, Mass of NH₃ in 2 moles = 2 × 17
= 34g
B) From the reaction,
1 mole of N₂ reacts with 3 moles of H₂.
The number of Moles of H₂ left = 12.5 - 3
= 9.5 moles
Mass of excess reagent left = moles left × molar mass of H₂
= 9.5 × 2
= 19g
Therefore, 34grams of NH₃ can be produced from the reaction of 28g of N₂ and 25g of H₂ and 19g of the excess reagent is left over.
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What amount of heat (in kJ) is required to convert 13.7 g of an unknown liquid (MM = 83.21 g/mol) at 19.2 °C to a gas at 93.5 °C? (specific heat capacity of liquid = 1.58 J/g・ °C; specific heat capacity of gas = 0.932 J/g・ °C; ∆Hvap = 22.5 kJ/mol; normal boiling point, Tb = 57.3 °C)
Why does ear escape from a tire when a tire valve is opened
Air escape from a tire when tire valve is opened because the pressure from the weight of the car is forcing the already pressurized air out .
Why does air escape from tire when tire valve is opened?When air is filled in tires, it get into more compact area than the outer atmosphere, therefore particles in tire are close to each other and exert pressure continuously on tire walls to get out of it. Thus, material of the tire need to be pressure resistant as much possible.
After opening the tire valve, air starts leaving with huge sound as strain outside the tire is weaker than that inside the tire. Molecules strike with the same force on larger area and pressure starts diminishing.
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Note: The question given on the portal is incomplete. Here is the complete question.
Question: Air leaves a tire when the tire valve is opened because
A. the pressure outside the tire is lower than the pressure inside the tire.
B. the pressure outside the tire is greater than the pressure inside the tire.
C. the temperature is higher outside the tire than inside the tire.
D. there are more gas particles outside the tire than inside the tire.
If the chemical reaction AB + CD to AD + BC releases heat, what is true of the stored bond energy of the reactants and products?
The bonds do not have energy, the atoms release heat.
change: unmarried alternative AB + C → AC + B
exchange: Double alternative AB + CD → ad + CB
mixture (Synthesis) A + B → AB
Decomposition AB → A + B
A chemical reaction is a method that ends in the chemical transformation of one set of chemical substances to some other.
A procedure that includes rearrangement of the molecular or ionic shape of a substance, in preference to a exchange in bodily form or a nuclear reaction.
A chemical response is a technique in reactants react chemically and convert into products via chemical transformation. as an example, breathing – we inhale oxygen which reacts with glucose and produces carbon dioxide, water and strength. The response is given below. C6H12O6 + 6O2 → 6CO2 + 6H2O + power.
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please explain energy flow from producer to consumer.
and please explain energy flow from consumer to consumer.
Answer:
1-Ecologists call this one-way flow of matter and energy from a producer to a primary, then to secondary, and perhaps to a tertiary consumer, a food chain. The food web shows all the organisms at each feeding level or trophic level.
2-Energy flows through an ecosystem in one direction: from producer to primary consumer to secondary consumer to higher consumers. A biomass pyramid provides a picture of the feeding and energy relationships within a food web and the direction of the flow of energy.
Answer:
food
Explanation:
How many atoms of N (nitrogen) are there in 1 mole of NH4Cl?
Answer:
In one mole of NH₄Cl 6.022 × 10²³ atoms of N are present.
Explanation:
Given data:
Number of atoms of N = ?
Number of moles of NH₄Cl = 1 mol
Solution:
First we have to calculate the number of atoms in NH₄Cl .
There is only 1 mole of N in 1 mole of NH₄Cl .
Now we will calculate the number of atoms of nitrogen in one mole of N by using Avogadro number.
It is the number of atoms , ions and molecules in one gram atom of element, one gram molecules of compound and one gram ions of a substance.
The number 6.022 × 10²³ is called Avogadro number.
1 mole of N = 6.022 × 10²³ atoms of N
Thus in one mole of NH₄Cl 6.022 × 10²³ atoms of N are present.
Which molecule has a dipole moment?
A. Cl2 (linear geometry)
B. H2S (bent geometry)
C. CCIA (tetrahedral geometry)
D. CO2 (linear geometry)
B. I think im probly wrong
Use the Debye–Hückel equation to calculate the activity coefficient (
Answer:
log = ( - 0.51 z 2) / ( 1 + ( / 305)
Explanation:
Calculate the emf of the following concentration cell: Au(s) | Au3+ (0.10 M) || Au3+ (0.50 M) | Au(s)
The emf of the cell as written is calculated to be 0.014 V.
Using the Nernst equation;
Ecell = E°cell - 0.0592/n log Q
We must note that E°cell = 0 because the anode and cathode are composed of the same type of metal.
Now;
Substituting values, we have;
Ecell = 0 - 0.0592/3 log (0.50 M)/(0.10 M)
Ecell = 0.014 V
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Explain how the perfect gas equation of state arises by combination of Boyle’s law, Charles’s law, and Avogadro’s principle.
The perfect gas equation of state is a fundamental law in thermodynamics that describes the relationship between the pressure, volume, and temperature of a gas. It is given by the equation:
PV = nRT
where P is the pressure of the gas, V is its volume, n is the number of moles of the gas, R is the universal gas constant, and T is the temperature of the gas in kelvin.
The perfect gas equation of state can be derived by combining three laws:
Boyle's law: This law states that the pressure of a gas is inversely proportional to its volume at a constant temperature. Mathematically, it can be expressed as:
P1V1 = P2V2
where P1 and V1 are the initial pressure and volume of the gas, and P2 and V2 are the final pressure and volume.
Charles's law: This law states that the volume of a gas is directly proportional to its absolute temperature at constant pressure. Mathematically, it can be expressed as:
V1/T1 = V2/T2
where V1 and T1 are the initial volume and temperature of the gas, and V2 and T2 are the final volume and temperature.
Avogadro's principle: This principle states that equal volumes of gases at the same temperature and pressure contain equal numbers of molecules. Mathematically, it can be expressed as:
V1/n1 = V2/n2
By combining these three laws, we can derive the perfect gas equation of state. First, we can rearrange Boyle's law to express pressure in terms of volume:
P = P1V1/V
Next, we can substitute this expression for P into Charles's law:
V1/T1 = V2/T2
V1/T1 = V1(P1V1)/(T2V)
T2 = (P1V1T1)/(V)
Similarly, we can rearrange Avogadro's principle to express volume in terms of the number of moles:
V = nRT/P
Substituting this expression for V into the equation we obtained from Charles's law, we get:
T2 = (P1V1T1)/(n1R)
Finally, we can rearrange this equation to isolate the pressure term, which gives us the perfect gas equation of state:
PV = nRT
Thus, by combining Boyle's law, Charles's law, and Avogadro's principle, we can derive the perfect gas equation of state, which is a fundamental law in thermodynamics that describes the behavior of ideal gases.
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What is the best way to measure the pH of a natural solution while out in a forest?
The best way to measure the pH of a natural solution while out in a forest is to use a portable pH meter or pH test strips specifically designed for field use. These instruments provide accurate and reliable pH measurements and are convenient for outdoor applications.
1. Prepare the necessary equipment: Before heading out to the forest, gather the required tools. You will need a portable pH meter or pH test strips, as well as the necessary reagents or calibration solutions if using a pH meter.
2. Collect the sample: Locate the natural solution you want to measure the pH of, such as a stream, pond, or soil. Use a clean container to collect a representative sample of the solution.
3. Calibrate the pH meter (if applicable): If you are using a portable pH meter, it is essential to calibrate it before taking measurements. Follow the manufacturer's instructions to calibrate the meter using the provided calibration solutions.
4. Conduct the measurement: For pH meters, immerse the electrode into the collected sample. Allow some time for the reading to stabilize, and then record the pH value indicated on the meter's display.
5. Using pH test strips: If you are using pH test strips, dip the strip into the collected sample for the recommended amount of time. Remove the strip and compare the color change with the provided color chart. Determine the corresponding pH value from the chart.
6. Repeat for accuracy: To ensure reliability, repeat the measurement process at least once and compare the results. This step helps confirm the accuracy of your measurements.
7. Record and analyze the data: Note down the pH values obtained and any relevant observations. Analyze the data as needed for your research or monitoring purposes.
By following these steps and using the appropriate equipment, you can effectively measure the pH of a natural solution while in a forest setting.
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PLEASE HELP WILL MARK BRAINLEST!!!!
Answer: c????????
Explanation:
A sample of gas occupies 7.80 liters at 425°C? What will be the volume of the gas at 35°C if the pressure does not change?
Answer:
How do amoeba respire.
how do plants respire.
Calculate the volume of 0.250 M H2SO4 that contains 0.00255 mol H2SO4.
Answer:
0.0102 L or 10.2 mL
Explanation:
From the question given above, the following data were obtained:
Molarity = 0.250 M
Mole = 0.00255 mole
Volume =?
Molarity is simply defined as the mole of solute per unit litre of the solution. Mathematically, it is expressed as:
Molarity = mole / Volume
With the above formula, we can obtain the volume as follow:
Molarity = 0.250 M
Mole = 0.00255 mole
Volume =?
Molarity = mole / Volume
0.250 = 0.00255 / volume
Cross multiply
0.250 × volume = 0.00255
Divide both side by 0.250
Volume = 0.00255 / 0.250
Volume = 0.0102 L
Covert 0.0102 L to mL.
1 L = 1000 mL
Therefore,
0.0102 L = 0.0102 L × 1000 / 1 L
0.0102 L = 10.2 mL
Thus, the volume is 0.0102 L or 10.2 mL
Watch the video above and write a short summary of some of the major steps.
Make sure to use the following words in your summary:
mandrel
graphite or carbon fiber
flag
blank
epoxy
emery powder
guides
seat
wrap
and anything else you found interesting.
Answer:
Explanation:
5568 is c
Answer:
the carbon fiber hood on the drift car guided eyes to the car and the driver in the seat blankly stairs
What two regions make up all atoms
Answer:
nucleus and electron clouds
Explanation:
20 points!
Which two structures produce energy that cells can
use?
A and B
B and C
C and D
D and A
Answer:
c and d
Explanation:
mitochondria and vacoule
Answer:
It is actually D and A
Explanation:
I took this assignment before on edge and the guy who said C and D is wrong
what is the volume (ML) of water
Answer:
hello :)
One milliliter (1 mL) of water has a volume of 1 cubic centimeter (1cm3).
PLEASE BROO if the controlled substances, which schedule of drugs is the average person most likely to have in their homes? How are the controlled substances in this group different from those in the other schedule levels?
Answer:
The average person is most likely to have Schedule V controlled substances in their homes. These drugs have a low potential for abuse and limited dependence liability compared to other schedule levels. They are often used for medical purposes and include cough syrups containing codeine, anti-diarrhea medications, and some prescription pain medications.
The drugs in other schedule levels, such as Schedule I, II, III, and IV, have a higher potential for abuse and dependence and are considered to be more dangerous and addictive. These schedules include drugs such as cocaine, methamphetamine, fentanyl, and other highly regulated substances.
Explanation:
Diamond and graphite are two crystalline forms of carbon. At 1 atm and 25°C, diamond changes to graphite so slowly that the enthalpy change of the process must be obtained indirectly. Determine ΔHrxn for
C(diamond) → C(graphite)
with equations from the following list:
(1) C(diamond) + O2(g) → CO2(g) ΔH = −395.4 kJ
(2) 2 CO2(g) → 2 CO(g) + O2(g) ΔH = 566.0 kJ
(3) C(graphite) + O2(g) → CO2(g) ΔH = −393.5 kJ
(4) 2 CO(g) → C(graphite) + CO2(g) ΔH = −172.5 kJ
The enthalpy change of the reaction C(diamond) → C(graphite) is -2.9 kJ.
The given information is ΔHrxn for the reaction C(diamond) → C(graphite) can be calculated with the given equations:Equations: C(diamond) + O2(g) → CO2(g) ΔH = −395.4 kJ 2 CO2(g) → 2 CO(g) + O2(g) ΔH = 566.0 kJ C(graphite) + O2(g) → CO2(g) ΔH = −393.5 kJ 2 CO(g) → C(graphite) + CO2(g) ΔH = −172.5 kJThe required reaction can be obtained by adding the equations (1) and (4), as follows:C(diamond) + O2(g) + 2CO(g) → C(graphite) + 3CO2(g)Addition of the two equations (1) and (4) results in a reaction whose products are C(graphite) and CO2.
To get the final equation that involves only the required reactants and products, the equation (2) should be added, which consumes CO2 and produces O2, as shown below:C(diamond) + O2(g) → CO2(g) ΔH = −395.4 kJ [eq. (1)] 2 CO(g) → C(graphite) + CO2(g) ΔH = −172.5 kJ [eq. (4)] 2 CO2(g) → 2 CO(g) + O2(g) ΔH = 566.0 kJ [eq. (2)] C(diamond) + O2(g) + 2CO(g) → C(graphite) + 3CO2(g) ΔHrxn=ΣΔHf(products)−ΣΔHf(reactants) ΔHrxn=[(3 mol CO2)(-393.5 kJ/mol) + (1 mol C(graphite))(0 kJ/mol)] − [(1 mol C(diamond))(0 kJ/mol) + (1 mol O2)(0 kJ/mol) + (2 mol CO(g))(−172.5 kJ/mol)] − [(2 mol CO2)(566.0 kJ/mol)] ΔHrxn=−2.9 kJ.
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A runner competed in a 5-mile run. How many yards did she run?
a-8800 yards
b-8800 miles
с-8657 yards
Select the correct answer. What type of relationship exists between the length of a wire and the resistance, if all other factors remain the same? A. Resistance is directly related to length. B. Resistance is directly related to the square of the length. C. Resistance is inversely related to the length. D. Resistance is inversely related to the square of the length.
Answer:
A
Explanation:
\(\rm{\textcolor{lime}{Question:}}\) Explain the concept of electronegativity and its significance in chemical bonding.
Answer:
Electronegativity is a measure of the tendency of an atom to attract electrons (or electron density) towards itself. It determines how the shared electrons are distributed between the two atoms in a bond. The more strongly an atom attracts the electrons in its bonds, the larger its electronegativity.
Explanation:
if it helped uh please mark me a BRAINLIEST :))Part A
Which claim is supported by evidence in the passage?
Lewis's father was strict.
Lewis's family's troupe was successful.
Lewis was too young to remember his lines.
Lewis did not want to perform because patrons threw eggs.
Hamilton explained the choice on the On Purpose show, admitting that the pair's work connection from karting to F1 had placed a burden on an otherwise strong friendship.
Why did Lewis have a falling out with his father?Lewis Hamilton now has a close connection with his father Anthony, but this was not always the case during his Formula One tenure. Anthony had a significant influence on his son's career, notably working multiple jobs to finance Hamilton's early foray into racing until he was signed by McLaren at the age of 11.
However, his earnings outside of Formula One rose from $8 million in 2021 to $12 million in 2022. Hamilton was the highest-paid Formula One racer. He has profitable agreements with companies such as Monster energy drinks.
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What is always true about lenses?
Answer: They all bend light.
i don't know much about lenses so i hope this helps! :)
what is the name of ch3cooc2h5
Answer:
ethyl ethanoate
Explanation:
it helps you