Answer:just come up with somthing
Explanation:
Answer:
Air inside causes this
Explanation:
When it is not open the air is still compressed in it while when it is opened, the air has escaped
scientists have discovered a pill that, if taken once a day, can reduce chest pains. what would a reviewing committee MOST LIKELY do before approving this pill for public use?
A) The committee would require no further explanation or experimentation
B) The committee would conduct many trials using actual patients to determine the drug's success rate.
C) The committee would conduct a few trials with actual patients and then evaluate the drug's success rate.
D) Not wanting to risk patients, the committee would conduct other types of research on the drug and then make a decision .
A reviewing committee would conduct extensive clinical trials involving actual patients to ensure the new pill's safety and effectiveness before it can be approved for public use. The FDA requires this rigorous testing process to establish the drug's success rate compared to a control group.
Explanation:Before approving a pill for public use that claims to reduce chest pains, a reviewing committee would MOST LIKELY conduct many trials using actual patients to determine the drug's success rate. This involves a series of large-scale experiments and clinical trials to ensure the drug is safe and effective. The trials would compare the outcomes of participants taking the medication against a control group that does not take the medication. Additionally, the FDA requires significant data from these trials to consider approving the drug for market.
Testing the efficacy of a drug is a thorough process that includes gathering enough data to compare experimental and control groups, assessing statistically significant differences in outcomes, and evaluating the drug's safety through careful monitoring by a pharmacovigilance system.
Final answer:
A reviewing committee would most likely conduct many clinical trials with actual patients to determine the success rate and safety of a new pill for reducing chest pains before it is approved for public use.
Explanation:
Before approving a new drug for public use, a reviewing committee would most likely opt for conducting rigorous clinical trials involving actual patients. The correct answer is B) The committee would conduct many trials using actual patients to determine the drug's success rate. The process includes closely monitoring the drug's efficacy in treating the targeted condition, its overall safety, and any potential side effects. These trials are divided into different phases, with Phase 3 clinical investigation being particularly crucial as it assesses the risk versus benefit of the new pharmaceutical on a large scale, involving hundreds to thousands of patients.
Only when there is substantial evidence supporting the new treatment's benefits, and the results can be replicated, does the committee consider the drug to be supported by evidence. The approval process is thorough and can take several years, involving not only the participation of physicians and chemists but also adherence to guidelines for testing the drug's toxicity and impact on human health.
The specific environment in which an organism lives
O
Ecosystem
O
Organism
O
Competition
O
Population
O
Resources
An ecosystem is the specific environment in which an organism lives and includes the living and non-living components that organisms interact with. It's a site of competition for limited resources, influenced by numerous environmental variables, ultimately determining which organisms can exist within that ecosystem.
Explanation:The specific environment in which an organism lives is also referred to as its ecosystem. An ecosystem is a community of living organisms interacting with each other and their non-living (abiotic) environment. This can be as small as a tide pool or as vast as the Amazon Rainforest. These ecosystems are often sites of competition for limited resources, which include organic material, sunlight, and mineral nutrients. These resources are vital for an organism's survival and growth.
Competition arises both within species (intraspecific competition) and among different species (interspecific competition). This competition is driven by the theory of natural selection, where those organisms best adapted to their environment are more likely to survive and reproduce.
Other factors affecting an organism's life within an ecosystem include the ecosystem's physical and geographic environment, such as latitude, rainfall, topography, and available species. All these collectively decide which organisms can exist within a particular habitat.
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Can 1750 mL of water dissolve 4.6 moles of Copper Sulfate CuSO4? _________ Why? / Why not?
Answer:
No, you cannot dissolve 4.6 moles of copper sulfate, CuSO₄, in 1750mL of water.Explanation:
This question is part of a Post-Lab exercise sheet.
Such sheet include the saturation concentrations for several salts.
The saturation concentration of Copper Sulfate, CuSO₄, indicated in the table is 1.380M.
That means that 1.380 moles of copper sulfate is the maximum amount that can be dissolved in one liter of solution.
Find the molar concentration for 4.6 moles of copper sulfate in 1,750 mL of water.
You need to assume that the volume of water (1750mL) is the volume of the solution. This is, that the 4.6 moles of copper sulfate have a negligible volume.
1. Volume in liters:
V = 1,750 mL × 1 liter / 1,000 mL = 1.75 liter2. Molar concentration, molarity, M:
M = number of moles of solute / volume of solution in litersM = 4.6 moles / 1.75 liter = 2.6 MSince the solution is saturated at 1.380M, you cannot reach the 2.6M concentration, meaning that you cannot dissolve 4.6 moles of copper sulfate, CuSO₄ in 1750mL of water.
Adding solute to the saturated solution. will leave solids at the bottom of the container, without changing the concentration of the solution.
4.6 moles of Copper Sulfate cannot be dissolved in 1,750 mL of water. The reason why is because 4.6 moles of more than the 2.263 moles of Copper Sulfate that can be dissolved in 1,750 mL of water.Reasons:
The maximum solubility of copper sulfate, CuSO₄ in water at 20°C is 20.7 grams in 100 g of water;
Density of water, ρ = 997 kg/m³
[tex]\displaystyle \ The \ volume \ 100 \ g \ of \ water = \frac{0.1 \, kg}{997 \, kg/m^3} \approx 1.003 \times 10^{-4} \ m^3 = 100.3 \, ml[/tex]
The number of moles, n, of CuSO₄ in 20.7 grams is given as follows;
[tex]\displaystyle n = \frac{20.7 \, g}{159.609 \, g/mol} \approx 0.1296919 \, moles[/tex]
0.1296919 moles can be dissolved in 100.3 mL of water
Therefore;
[tex]1750 \, mL \ of \ water \ an \ dissolve\ \displaystyle \frac{0.1296919 \ moles}{100.3 \, mL} \times 1750 \, mL \approx 2.263 \ moles[/tex]
The maximum amount of copper sulfate that can be dissolved in 1,750 mL of water at 20°C is 2.263 moles.
Therefore;
1,750 mL of water cannot dissolve up to 4.6 moles of Copper Sulfate CuSO₄ at 20°This is so because the solubility of copper sulfate in 1750 mL of water is approximately 2.263 moles, which is less than the given 4.6 moles.
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Eva pumps up her bicycle tire until it has a gauge pressure of 413 kilopascals. If the surrounding air is at standard pressure, what is the absolute pressure in the bicycle tire?
A.33.9 kPa
B.49.7 kPa
C.312 kPa
D.514 kPa
Top guy is wrong↑
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the string of a bow and arrow is pulled tight
Answer:
I'm not sure that is the full question can you show a picture or something?
the string of a bow and arrow is pulled tight with Elastic
The correct option is (c).
When the string of a bow and arrow is pulled tight, the energy stored in the string is primarily due to its deformation, which is a characteristic of elastic potential energy.
c. Elastic potential energy arises from the deformation of an object, such as stretching a spring or pulling a rubber band. When the string of the bow and arrow is pulled tight, it undergoes deformation, storing potential energy in the form of elastic potential energy. This energy is then released when the string is released, propelling the arrow forward.
a. Gravitational potential energy refers to the energy associated with an object's position in a gravitational field. While gravity does play a role in the bow and arrow system (as it affects the trajectory of the arrow), the energy stored in the string itself is not primarily gravitational potential energy.
b. Chemical potential energy refers to the energy stored in chemical bonds, which is released during a chemical reaction. The action of pulling the string tight does not involve any chemical reactions, so it is not chemical potential energy.
d. Electric potential energy refers to the energy stored in an electric field due to the position of charged particles. The energy stored in the string of a bow and arrow is not related to electric potential energy.
complete question given below:
The string of a bow and arrow is pulled tight with?
a.Gravitational
b.Chemical
c.Elastic
d.Electric
Which vessels have a larger space inside the blood vessel?
veins
arteries
capillaries
venules
Answer:
Arteries have a larger space inside blood vessels
Prepare a 0.50 L of a 1.0 M solution of potassium sulfate. Determine the amount of potassium sulfate needed in correct significant figures.
A) 68 g
B) 87 g
C) 270 g
D) 349 g
I can't figure out the answer.
Answer:
B) 87g
Explanation:
Usatestprep said it
Final answer:
To prepare 0.50 L of a 1.0 M solution of potassium sulfate, 87 g of the solute is needed. So the correct option is B.
Explanation:
To prepare a 0.50 L of a 1.0 M solution of potassium sulfate (K₂SO₄), first, we need to calculate the number of moles of the solute needed using the molarity equation, M = moles/L. For a 1.0 M solution, we need 1.0 mole of K₂SO₄ per liter. However, since we're preparing only 0.50 L, we need 0.50 moles of K₂SO₄.
Molar mass of K2SO4 = 2(K) + S + 4(O) = 2(39.10) + 32.07 + 4(16.00) = 174.27 g/mol.
Mass of K2SO4 needed = moles × molar mass = 0.50 moles × 174.27 g/mol = 87.135 g.
Using the correct significant figures, the mass of the solute needed is 87 g, which corresponds to option B.
What is a talent?
O
A. A natural ability to do something well
O
B. An acquired ability resulting from hard work
O
c. An unrefined ability that cannot be relied upon
O
D. An area of creative genius
SUBM
Talent is an acquired ability resulting from hard work. The correct option is B.
What is hard work?
The most important factor in achieving success is hard work. It is impossible to achieve success without putting in the effort.
A person who sits and waits for a better opportunity will never gain anything. A person who works hard can achieve success and happiness in life.
Hard work is the practice and preparation you put in to hone and improve your natural abilities and skills.
As a result, hard work gets you to the finish line ahead of the competition. Here's another example of how hard work outperforms talent.
The term talent refers to a person's innate and unique ability to do something. A skill is knowledge that a person gains through learning.
Thus, the correct option is B.
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A talent is a natural ability to do something well, although it often requires further development through practice. In acting, talent comprises intuitive skills like character understanding and captivating an audience, but like in all disciplines, this natural aptitude must be nurtured to achieve mastery and is complemented by creativity.
Explanation:A talent is commonly understood as a natural ability to do something well. It is an inherent aptitude that gives individuals a certain edge in specific tasks or skills without needing extensive training from the outset. However, it is important to recognize that while talent provides a foundation, the development and refinement of any skill, including those in the creative arts like acting, require practice and dedication. Within the context of acting, elements of talent might include an intuitive understanding of character, emotional depth, timing, and the ability to captivate an audience. Yet, these innate abilities must be honed through persistent effort and engagement with the craft. In relation to creativity, it is a form of intelligence that can be manifested in various disciplines and areas of life, not just limited to the arts. It involves bringing into existence new ideas, solutions, or methods, and a person's creativity can enhance their natural talents, be it in acting, design, direction, or any other artistic endeavor.
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Which substances are most likely acids? Check all that apply.
O CHA
OHI
NH3
HNO3
O
NaCl
Answer:
HNO3 is nitric acid. NH3 is ammonia, NaCl is common salt. O is an atom of oxygen. No idea about remaining.
Answer:
HI and HNO3 are acids
Explanation:
The reaction of C4H8 and Br2 to yield C4H2Br2 represents
Answer:
A Synthesis Reaction
Explanation:
A + B --> AB
Answer:
addition.
Explanation:
A sound wave with a wavelength of 2.5 m travels 660 m in 2 s. Calculate the frequency of the
wave.
265
Explanation:
660 divided by 2.5 equals 265. The frequency is 265.
Answer:
132Hz
Explanation:
the explanation is in the picture
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During absorption, light and UV energy get transformed into ______ energy and radiates in the form of _______.
Question 3 options:
thermal, heat
electromagnetic, nuclear
potential, kinetic
electrical, heat
3. A student constructs a coffee cup calorimeter and places 50.0 mL of water into it. After a brief period of stabilization, the temperature of the water in calorimeter is determined to be 19.1 °C. To this is added 50.0 mL of water that was originally a temperature of 54.9 °C. A careful plot of the recorded temperature established T0 as 31.3 °C. What is the calorimeter constant (J/°C)?
The calorimeter constant is 816.800 J/degree.
Explanation:
Data given:
volume of cold water = 50 ml
initial temperature of the cold water t1 = 19.1 degrees
volume of hot water = 50 ml
temperature of hot water t2 = 54.9 degrees
change in temperature t3= 31.3 degrees
calorimeter constant = ?
energy gained by cold water = energy lost by hot water
q hot water = 50 x 4.184 x (54.9-31.3)
q hot water = 50 x 4.184 x 23.6
= 4937.9 cal/degree
q cold water = 50 x 4.184 x (31.3-19.1)
q cold water = 2552.24 cal/deg
FINAL ENERGY = qhot water - q cold water
final energy = 4937.9 - 2552.24
final energy = 2385.66 cal/deg
calorimeter constant = [tex]\frac{final energy}{t3-t1}[/tex]
putting the values:
calorimeter constant = [tex]\frac{2385.66}{12.2}[/tex]
CALORIMETER CONSTANT = 195.22 J/deg
to convert in joules/degree multiply the value with 4.184
= 195.22 x 4.184
= 816.800 J/deg
23 ml of oxygen collected over water and has a pressure of 636 mmhg at 23 c.what is the pressure of the dry gas at stp
Answer : The pressure of the dry gas at stp is, 0.602 mmHg
Explanation :
Combined gas law is the combination of Boyle's law, Charles's law and Gay-Lussac's law.
The combined gas equation is,
[tex]\frac{P_1V_1}{T_1}=\frac{P_2V_2}{T_2}[/tex]
where,
[tex]P_1[/tex] = initial pressure of gas = 636 mmHg
[tex]P_2[/tex] = final pressure of gas = ?
[tex]V_1[/tex] = initial volume of gas = 23 mL = 0.023 L
[tex]V_2[/tex] = final volume of gas at STP = 22.4 L
[tex]T_1[/tex] = initial temperature of gas = [tex]23^oC=273+23=296K[/tex]
[tex]T_2[/tex] = final temperature of gas at STP = [tex]0^oC=273+0=273K[/tex]
Now put all the given values in the above equation, we get:
[tex]\frac{636mmHg\times 0.023L}{296K}=\frac{P_2\times 22.4L}{273K}[/tex]
[tex]P_2=0.602mmHg[/tex]
Therefore, the pressure of the dry gas at stp is, 0.602 mmHg
Small children are occasionally injured when they try to inhale helium from
a compressed helium tank. If a small child tries to transfer the contents of
a 50 L tank of helium at a pressure of 125 atm and a temperature of 20°
C into its lungs, how many moles of gas will it inhale?
Answer:
260 moles of Helium
Explanation:
V = 50L
T = 20°C = (20 + 273.15)K = 293.15K
P = 125 atm
R = 0.082 L.atm / mol. K
n = ?
From ideal gas equation,
PV = nRT
P = pressure of a given gas
V = volume it occupies
n = number of moles
R = ideal gas constant
T = temperature of the gas
PV = nRT
n = PV / RT
n = (125 * 50) / (0.082 * 293.15)
n = 6250 / 24.0383
n = 260.00 moles
The child inhaled 260 moles of Helium
Both bacteria and rocks split to give rise to more of their kind. Why are bacteria said to reproduce, but rocks are not?
A.
Bacteria can move on their own, but rocks cannot.
B.
Bacteria do not need an external force to help them reproduce, but rocks must be broken apart.
C.
Bacteria form identical cells, but rocks form new rocks of different sizes and shapes.
D.
Bacteria pass down genetic material to new bacterial cells, but rocks do not.
Answer:
b
Explanation:
Compare hydroelectric pumped storage to standard hydroelectric. The process of pumping water to a higher elevation, is equivalent to what
process in nature?
please help me
Pumped storage hydropower is a form of hydroelectric storage and they are used for electric power systems for load balancing.
Explanation:
It is a type of hydroelectric energy storage that contains two water reservoirs at different elevations which generates power in the water moves down through turbine and it takes the power as it pumps water to upper reservoir.
The altitude may diminish the pump's performance based on the principles of specific gravity, atmospheric pressure and oxygen deprivation.
The specific gravity and pressure based on altitudes suggests that water can be pumped up to 26 feet down when operating a pump at sea level because of atmospheric pressure. The depth shows that altitude increases because of decreasing atmospheric pressure. The pump operators are server to locate their pump close to the source of water you are pumping. The elevation impacts to suction lift.
Which of the following individual actions would do the
most to reduce atmospheric methane?
The top individual action to curb atmospheric methane is reducing consumption of meat and dairy, as these industries are primary contributors to methane production. Also, minimising waste production can help, as waste decomposition in landfills generates considerable methane.
Explanation:The most effective individual action to reduce atmospheric methane is to reduce consumption of meat and dairy products. Methane is produced by digestive processes in ruminant livestock, such as cows, sheep, and goats. These animals are typically raised for meat and dairy production, so by reducing our intake, we can help decrease the number of these animals, and thus decrease the amount of methane produced. This also has the effect of reducing the amount of grain required for livestock feed, since less livestock would be raised. This grain could then be used more efficiently to feed humans directly. Additionally, reducing waste production can also help mitigate methane production, because waste decomposition in landfills is another major source of atmospheric methane.
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Reducing livestock agriculture, implementing sustainable grazing practices, and feeding livestock supplements to lower methane production are key actions for reducing atmospheric methane. Additionally, transitioning to clean energy and planting trees can contribute to lowering greenhouse gas concentrations.
Explanation:To reduce atmospheric methane, the most effective individual action would be decreasing livestock agriculture. Livestock, particularly ruminants like cows and goats, have microbiomes that produce methane during digestion. Additionally, implementing sustainable grazing practices and improving pasture management can mitigate carbon sequestration and offset methane emissions. Feed supplement programs that reduce methane production in livestock can also have significant impacts in reducing this potent greenhouse gas emission.
Another approach is to reduce activities that create anaerobic conditions conducive to methanogen growth, such as rice cultivation in flooded fields. Switching to clean energy sources like wind, solar, and hydropower, which do not emit methane, is also an effective strategy to combat global warming. Lastly, planting more trees can help absorb carbon dioxide, another greenhouse gas that works in tandem with methane to increase global temperatures.
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a sample of nitrogen gas is at a temperature of 50.0 *C and at a pressure of 2.00 atm. if the volume of the sample remains constant and the pressure increases to 3.20 atm, what is the new temperature of the nitrogen gas?
Answer:
516.8 K or 243.8 C
Explanation:
- First figure out which gas law to use. In this case we need to use Gay-Lussac's law. This is P1/T1 = P2/T2.
- Next, we need to rearrange this to fit our problem. We should do...
T2 = T1P2/P1
- Now, we need to find our variables. For example...
T1 = 323 K
P1 = 2.00 atm
P2 = 3.20 atm
Next, fill in these numbers to fit our equation. For example...
T2 = 323 x 3.20 / 2.00 = 516.8 K
Note, you did not specify whether you wanted final answer in K or C, so I will put both. I suggest using K if nothing is stated for what they want.
- Hope this helps! If you need a more in-depth explanation please let me know.
Answer:244
Explanation:
How many moles of CO2 will be produced from 79.0 g of C3H8
Final answer:
To find the number of moles of CO₂ produced from 79.0 g of C₃H₈, convert the mass of C₃H₈ to moles and then use the mole ratio from the balanced combustion equation to find the moles of CO₂produced, which is approximately 5.37 moles.
Explanation:
To calculate the number of moles of CO₂ produced from 79.0 g of C₃H₈ (propane), you need the balanced chemical equation for the combustion of propane, which is:
C₃H₈ + 5O₂ → 3CO₂ + 4H₂O
According to this equation, one mole of propane produces three moles of CO₂. First, we need to determine the number of moles of C₃H₈ present in 79.0 g. The molar mass of propane (C₃H₈) is 44.1 g/mol.
To find the moles of propane, we use the formula:
moles of propane = mass (g) / molar mass (g/mol)
moles of propane = 79.0 g / 44.1 g/mol ≈ 1.79 mol
Now, to find the moles of CO₂ produced from the combustion of 1.79 mol of propane:
moles of CO₂ = moles of C3H8 x (3 moles CO₂ / 1 mole C₃H₈)
moles of CO₂= 1.79 mol x 3 ≈ 5.37 mol
Therefore, the combustion of 79.0 g of C₃H₈ will produce approximately 5.37 moles of CO₂.
Please help me I really need help
Answer:20 million years ago
Explanation:
Which of the following forms of matter can be classified as being
heterogeneous?
O
Suspensions
O
Solutions
Compounds
O
Elements
EnEDIL
Select all the correct locations on the image.
Which elements are diatonic?
mg
n
s
f
he
ar
I
Answer:
I think the correct answer is f
what is the correct definition of density
Answer: Density is defined as the ratio between mass and volume or mass per unit volume.
Explanation:
With some help from google, i got you an answer.
The density, of a substance is its mass per unit volume. The symbol most often used for density is ρ, although the Latin letter D can also be used. Mathematically, density is defined as mass divided by volume: where ρ is the density, m is the mass, and V is the volume.
what does the stonefish eat
Answer: reef fishes, small invertebrates and other marine animals
Explanation: Stonefish prey on reef fishes, small invertebrates and other marine animals which also make their home among the reefs. They're adept ambush predators, relying on their camouflage to lie in wait for their prey, before striking with their huge, powerful jaws, and swallowing their catch whole.
What energy transformations occur when you are watching television?
Answer:
Electrical into sound and light
Answer:
When we turn on the television, electrical energy changes into light and sound. Even though undesirable, some amount of heat is also produced. When we move a vehicle, the engine converts the chemical energy stored in the fuel into heat, sound and kinetic energy.
Which expression is equivalent to (q Superscript 6 Baseline) squared?
q cubed
q Superscript 8
q Superscript 12
q Superscript 36
Answer:
The answer is c
Explanation:
The correct option is C). [tex]\(q^{12}\)[/tex] is equivalent to (q Superscript 6 Baseline) squared.
To find the expression equivalent to [tex]\((q^6)^2\)[/tex], we apply the exponentiation rule:
[tex]\[(q^6)^2 = q^{6 \cdot 2} = q^{12}\][/tex]
Therefore, [tex]\((q^6)^2\)[/tex] is equivalent to [tex]\(q^{12}\)[/tex].
Among the given options:
- [tex]\(q^3\)[/tex] is [tex]\(q^3\)[/tex],
- [tex]\(q^8\)[/tex] is [tex]\(q^8\)[/tex],
- [tex]\(q^{12}\)[/tex] matches [tex]\(q^{12}\)[/tex],
- [tex]\(q^{36}\)[/tex] is [tex]\(q^{36}\)[/tex].
The expression equivalent to [tex]\((q^6)^2\)[/tex] is [tex]\(q^{12}\)[/tex].
100 POINTS!
Answer all below.
List 2 examples of a solution
Provide at least 2 characteristics of a solution to
differentiate it from a suspension and colloid.
List 2 examples of a suspension
Provide at least 2 characteristics of a suspension
to differentiate it from a solution and a colloid.
List 2 examples of a colloid.
Provide at least 2 characteristics of a colloid to
differentiate it from a solution and a suspension.
Answer:
1. Soap, and Detergent.
2.Maybe Alchohol, and Oil
3.chalk and water, and flour and water.
4. Air and fog
5.Whipped cream, and jelly
6. plaster and colored glass
What is the proper way to find the Volume of an irregular shaped solid object?
A) triple beam balance
B) water displacement
C) L x B x H
D) 1/2 (height x length x width)
Answer:
B) water displacement
Explanation:
C and D are incorrect because they are formulas to find volume for specific shapes. That wouldn't work here since you have an irregularly shaped solid object.
A is incorrect because a triple beam balance is used to find mass.
Final answer:
To determine the volume of an irregular shaped solid object, the correct method is water displacement, which measures the volume of water the object displaces when submerged.
Explanation:
The proper way to find the volume of an irregular shaped solid object is B) water displacement. Unlike regular solids, which can be calculated geometrically using formulas such as Length x Width x Height for rectangular prisms, or πr²h for cylinders, irregularly shaped objects do not conform to simple mathematical formulas. The water displacement method involves submerging the object in water and measuring the volume of water displaced, which equals the volume of the object. This technique is based on Archimedes' principle, which states that the volume of the fluid displaced by an object is equal to the volume of the object itself.
If I add water to 100ml of a 0.15m potassium sulfate until the final volume is 150ml what will the molarity of the diluted solution be
Final answer:
The molarity of a 0.15m potassium sulfate solution diluted from 100ml to 150ml is calculated using the dilution equation M1 × V1 = M2 × V2, resulting in a new molarity of 0.10M.
Explanation:
When you dilute a 0.15m potassium sulfate solution from 100ml to 150ml, the molarity of the solution changes.
To calculate the new molarity after dilution, you can use the dilution equation: M1 × V1 = M2 × V2, where M1 is the initial molarity, V1 is the initial volume, M2 is the final molarity, and V2 is the final volume.
Here, M1 is 0.15M, V1 is 100ml, V2 is 150ml, and M2 is what we're trying to find.
Plugging in the values into the equation: 0.15M × 100ml = M2 × 150ml, we can solve for M2, which is the final molarity: M2 = (0.15M × 100ml) / 150ml = 0.10M.
Therefore, after dilution, the concentration of the solution becomes 0.10M.