During a flame test, a lithium salt produces a characteristic red flame. This red color is produced when electrons in excited lithium atoms
1. are lost by the atoms
2. are gained by the atoms
3. return to lower energy states within the atoms
4. move to higher energy states

Answers

Answer 1
During a flame test, a lithium salt produces a characteristic red flame. This red color is produced when electrons in excited lithium atoms return to lower energy states within the atoms.

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Answer 2

The red color in a lithium salt flame test is due to electrons returning to lower energy states, emitting light at specific wavelengths. This is part of the atomic emission spectrum of lithium, with each metal displaying a unique flame color when heated.

The red color produced in a flame test when a lithium salt is subjected to heat is due to the electrons in the excited lithium atoms returning to lower energy states within the atoms. This phenomenon is a part of the atomic emission spectrum of lithium. When the lithium atoms in the flame are heated, their electrons are excited to higher energy levels. As the electrons fall back down to their original energy states, they emit light of specific wavelengths. The characteristic red color observed is due to this emission corresponding to the particular energy gap between the excited and ground states of the lithium electron.

Flame tests are commonly used to identify the presence of certain metal ions in compounds. Each metal emits a distinct color when burned, as the emission spectrum of each element is unique. For instance, sodium produces a bright yellow flame, and potassium produces a lilac color. In the context of lithium, the emission results in a bright, crimson flame, which is indicative of lithium's presence in the sample tested.


Related Questions

In a combustion reaction, which of the answer choices represents one of the reactants?

Select one:
a. A Metal
b. Oxygen
c. Methane
d. Sulfur

Answers

The answer is C

Hope this helps you!

The _____ carries no electrical charge in the atom. electron proton gluon neutron

Answers

The proton has a positive charge and the election balances out the proton by being negatively charged. The neutral charge, meaning it is neither positively or negatively charged. A good way to remember is to think that the neutron is neutral.

The answer would be neutron. This is 100% correct, because I got it right on my lesson.

Organic compounds with two oh groups per molecule are called

Answers

glycol
Hope this helps!

Lewis atomic model proposed that electrons were arranged around the nucleus in what

Answers

Lewis had proposed that the valence electrons of any substance were arranged around its atoms in a cubic configuration. Later on, this was modified when it was learned that the electrons actually orbit the nucleus, similar to the planets orbiting the sun. Moreover, it is now deduced that the electrons are found in regions, known as electron clouds, and their specific, discrete location at a given point in time can not be determined.
Final answer:

The Lewis atomic model proposed that electrons are arranged around the nucleus in specific energy levels, which was further detailed by Niels Bohr to include allowed circular orbits. Bohr's model introduced the concept that these orbits, or energy levels, are quantized and designated with the quantum number 'n'. Lewis diagrams also show valence electrons around an atom's symbol, helping to visualize bonding.

Explanation:

The Lewis atomic model suggests that electrons are arranged around the nucleus in specific energy levels, represented as rings or shells. This model of atomic structure was expanded upon by Niels Bohr in 1913. Bohr's model for the hydrogen atom incorporated quantum concepts and classical mechanics to propose that electrons move in fixed orbits, or quantized energy levels, around the nucleus. Each orbit represents a different energy level and is denoted by the principal quantum number 'n'. Bohr's model of the atom was a significant step forward from previous models, like the cubic model and the Saturnian model, and it introduced the idea that electrons could only exist in certain allowed energy states.

Notably, in Bohr's model, an electron in a hydrogen atom moves around the nucleus in circular orbits centered at the nucleus. The orbits are allowed to have only certain radii, which are in specific energy levels or shells designated by a number and the symbol 'n'. This concept also applies to more complex atoms, where electrons occupy regions of space, known as orbitals, around the nucleus based on their energy levels. This model was pivotal in explaining phenomena such as the discrete emission spectra of hydrogen.

Lewis diagrams, also known as Lewis electron dot diagrams, are a representation that shows the valence electrons as dots around the chemical symbol of an atom, thus giving us a visual representation of the valence electron arrangement in atoms and aiding in the understanding of chemical bonding and molecule formation.

Which of the following statements about tornadoes is false?
A). most tornadoes form during the afternoon.
B).most tornadoes have funnels taller than 105 m (344ft).
C).most tornadoes form during the spring and summer months.
D).most tornadoes have wind speeds greater than 105kph (65mph).

Answers

The answer is A because the time wouldn't affect the weather that much depending on the circumstances.


A chemist uses 4.0 L of sulfuric acid solution to produce 3.2 gram of product. How much of the same sulfuric acid solution is needed to produce 8.0 gram of product?

6.4 L

15 L

7.8 L

10 L

Answers

The concept that can be used in order to determine the answer to this item is that of ratio and proportion. The ratio of the mass of the product to the sulfuric acid solution used in the first set should be proportional to that of the second. If we let x be the volume of the acid then, the equation that can be used is,

      3.2 g / 4 L = 8 g / x L

The value of x from the equation is 10. 

ANSWER: 10 L

a quantity of 18.68 mL of KOH solution is needed to neutralize 0.4218 g of KHP. What is the concentration (in molarity) of the KOH solution?

Answers

Final answer:

The concentration (in molarity) of the KOH solution needed to neutralize the given quantity of KHP is calculated to be 0.1104 M.

Explanation:

To determine the concentration of the KOH solution, we first need to know the stoichiometry of the neutralization reaction taking place. Potassium hydrogen phthalate (KHP) is a monoprotic acid, meaning it donates one proton (H+) per molecule to be neutralized by one molecule of KOH (which provides one OH-).

Firstly, convert the mass of KHP into moles using its molar mass (approximately 204.22 g/mol):
0.4218 g KHP * (1 mol KHP / 204.22 g KHP) = 0.002064 mol KHP.

Since the stoichiometry of the reaction is 1:1, the moles of KOH used is 0.002064 moles. The volume of the KOH solution used is 18.68 mL or 0.01868 L. Hence, the concentration of the KOH solution in molarity (M), which is defined as moles/Liter, can be calculated as follows:
0.002064 mol KOH / 0.01868 L = 0.1104 M.

Therefore, the molarity of the KOH solution is 0.1104 M.

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Final answer:

To find the concentration (in molarity) of the KOH solution, you first calculate the number of moles of KHP, then use the balanced equation to determine the mole ratio between KHP and KOH, and finally calculate the concentration of the KOH solution.

Explanation:

To find the concentration (in molarity) of the KOH solution, we can use the equation:

KHP (aq) + KOH (aq) → K2HPO4 (aq) + H2O (l)

First, we need to calculate the number of moles of KHP:

Moles of KHP = mass / molar mass = 0.4218 g / 204.22 g/mol = 0.002063 mol

Next, we can use the balanced equation to determine the mole ratio between KHP and KOH. From the equation, we can see that 1 mole of KHP reacts with 1 mole of KOH:

Moles of KOH = moles of KHP = 0.002063 mol

Finally, we can calculate the concentration of the KOH solution:

Concentration (in Molarity) = moles / volume

Molarity = 0.002063 mol / 0.01868 L = 0.1105 M

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Which observation about methane (ch4) can be explained using the orbital hybridization theory?

Answers

All 4 C-H bonds are identical.

Hybridisation or hybridization is the idea of blending atomic orbitals into new hybrid orbitals, with various energies, shapes, and so on, than the component atomic orbitals, appropriate for the matching of electrons to make chemical bonds in valence bond theory.

Calculate the percentage composition of barium nitrate (ba(no3)2). choose the correct percentages for ba, n, and o.

Answers

The molar masses of each element are:

Ba =137.3 g/mol 
N = 14 g/mol 
O = 16 g/mol

Calculating the total mass by multiplying with number of moles:

Ba = 137.3 g/mol * 1 mol = 137.3 g

N = 14 g/mol * 2 mol = 28 g

O = 16 g/mol * 6 mol = 96 g

Total 261.3g 

Ba: 137.3/261.3 = 52.55% 
N: 96/261.3 = 36.73% 
O: 24/261.3 = 10.72% 

Answer:

52.55% Ba, 10.72% N, 36.73% O

The correct percentage composition for barium nitrate (Ba(NO3)2) is 56.54% Ba, 12.54% N, and 30.92% O, as calculated based on the molar masses of each element in the compound. This matches option e.

To calculate the percentage composition of each element in barium nitrate (Ba(NO3)2), we need to find the molar masses of each element and then use them to determine the percentage of each element in the compound.

1. **Calculate the molar mass of Ba(NO3)2:**

  \[ \text{Molar mass of Ba(NO3)2} = \text{Molar mass of Ba} + 2 \times \text{Molar mass of N} + 6 \times \text{Molar mass of O} \]

2. **Calculate the percentage composition of each element:**

  \[ \text{Percentage of Ba} = \left( \frac{\text{Molar mass of Ba}}{\text{Molar mass of Ba(NO3)2}} \right) \times 100 \]

  \[ \text{Percentage of N} = \left( \frac{2 \times \text{Molar mass of N}}{\text{Molar mass of Ba(NO3)2}} \right) \times 100 \]

  \[ \text{Percentage of O} = \left( \frac{6 \times \text{Molar mass of O}}{\text{Molar mass of Ba(NO3)2}} \right) \times 100 \]

Now, compare the calculated percentages with the options:

a. 52.55% Ba, 10.72% N, 36.73% O (Not correct)

b. 11.11% Ba, 22.22% N, 66.67% O (Not correct)

c. 10.72% Ba, 52.55% N, 36.73% O (Not correct)

d. 50.00% Ba, 10.00% N, 40.00% O (Not correct)

e. 56.54% Ba, 12.54% N, 30.92% O (Correct)

So, the correct answer is option e.

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The probable question may be:

Calculate the percentage composition of each element in barium nitrate, Ba(NO3)2. choose the correct percentages for ba, n, and o.

a. 52.55% Ba, 10.72% N, 36.73% O

b. 11.11% Ba, 22.22% N, 66.67% O

c. 10.72% Ba, 52.55% N, 36.73% O

d. 50.00% Ba, 10.00% N, 40.00% O

e. 56.54% Ba, 12.54% N, 30.92% O

Which of the following represents an ion?
Ca
Na^+
Mg
^4He

Answers

The correct option Na⁺.
Na⁺ is an ion because it has a charge. An atom or molecule with a charge of either positive or negative is an ion. there are two types of ions: Cations that are positively charged ions and they get positive charge as a result of losing electrons, and the second type is anion that are negatively charged ions and they negative charge as a result of gaining electrons.
Final answer:

An ion is an atom or molecule with a net electrical charge due to the loss or gain of electrons. Out of the options provided (Ca, Na^+, Mg, ^4He), only Na^+ is an ion, representing a sodium atom which has lost one electron.

Explanation:

An ion is an atom or molecule that has gained or lost one or more electrons, giving it a net electrical charge. From the provided options, only Na^+ is an ion. It represents a sodium atom that has lost one electron, resulting in a positive charge.

Ca is the symbol for Calcium, a metal located in group 2 of the periodic table. It is a neutral atom, not an ion.Mg is the symbol for Magnesium, a metal located in group 2 of the periodic table. It is also a neutral atom, not an ion.^4He is the symbol for Helium-4, an isotope of the element Helium. It is a neutral atom, not an ion.

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If a concentration of E. coli exceeding 200 colonies per 100 mL of water is unsafe for swimming, tubing, or rafting, on which of the following collection days and at which of the 2 sites would it have been unsafe to swim, tube, or raft?

Answers

 two elements are both Boron and Oxygen.
Final answer:

The question does not provide specific data for different sites or collection days to determine where swimming would be unsafe. However, if E. coli concentration exceeds 200 colonies per 100 mL water, it's unsafe. Regular sampling and testing is crucial to ensure water safety for recreational activities.

Explanation:

The information provided does not include specific data on the concentration of E. coli colonies at different sites or at different collection days, which makes it impossible to identify the days or sites where it would have been unsafe to swim, tube, or raft. However, the concept of unsafe concentrations of E. coli in water can be discussed. The U.S. Environmental Protection Agency (EPA) sets enforceable concentration values for primary contaminants, and these are known as Maximum Contaminant Levels (MCLs). For E. coli, a concentration exceeding 200 colonies per 100 mL is deemed unsafe.

Water sampling and testing for the presence of E. coli is a common microbial testing procedure. In a simplified process, the sample is diluted in lactose broth tubes at different volumes and then incubated. If E. coli is present, it ferments the lactose, causing a color change in the broth. This method helps to estimate the probable number of bacteria per 100 mL of water.

Maintaining good personal hygiene and avoiding untreated water in developing nations is crucial to preventing E. coli infections. Ensuring the safety of recreational water activities involves continuous monitoring and testing of water samples to prevent potential health hazards related to excessive E. coli concentration in the water. In the absence of monitoring and testing, any water body could potentially be unsafe for swimming, tubing, and rafting.

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Application of boyle's law a 12-liter tank contains helium gas pressurized to 160 atm. part b what size tank would be needed to contain this same amount of helium at atmospheric pressure (1 atm)? express the size in liters to three significant figures.

Answers

According to Mendeleyev-Klapeyron’s equation pV = nRT, where p = 160 atm V = 12 R -constant 0.0821 & T = 298 in Kelvin Using given data, we can determine the amount of Helium gas: n = pV/RT = (160â™12)/(0,0821â™298) = 78,48 (mol) For atmospheric pressure (1 atm) and the same amount we can calculate the volume of tank, using previous equation: V = nRT/p = (78,48â™0,0821â™298)/1 = 1920 (liters) V = 1920 liters Thus Answer is 1920 liters
Final answer:

Using Boyle's Law, which states that the pressure and volume of a gas at constant temperature are inversely proportional, we can calculate that a tank of about 1920 liters would be needed to contain the same amount of helium at atmospheric pressure.

Explanation:

The application of Boyle's law, which describes the inverse relationship between the pressure and volume of a gas at a constant temperature, can assist in determining the size of the tank needed to contain the same amount of helium at atmospheric pressure. This relationship is expressed by the formula P₁V₁ = P₂V₂, where P₁ and V₁ are the initial pressure and volume, and P₂ and V₂ are the final pressure and volume.

Here, the initial pressure (P₁) is 160 atm, the initial volume (V₁) is 12 L, and we want to find the final volume (V₂) at atmospheric pressure (P₂) of 1 atm. By substituting these values into the formula, we have 160 atm * 12 L = 1 atm * V₂. The calculation leads to V₂ = 1920 L.

So, a tank of approximately 1920 liters would be needed to contain the same amount of helium at atmospheric pressure according to Boyle's Law.

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Why is mercury not “destroyed” when coal containing mercury impurities is burned?

Answers

Many toxic manufacturing compounds are securely disposed of through the means of high-temperature combustion. However mercury is not "annihilated" when coal comprising mercury impurities is scorched. This is happening because when the mercury in the carbon (coal Hg) is burned it changes into a gas which is emitted into the atmosphere.

How many milliliters of a 9.0 m h2so4 solution are needed to make 0.25 l of a 3.5 m h2so4 solution?

Answers

The rule that we will use to solve this problem is:
M2*V1 = M2*V2 where:
M1 is the initial concentration = 3.5 m
V1 is the initial volume = 0.25 l = 250 ml
M2 is the final concentration = 9 m
V2 is the final volume that we need to find

Substitute with the givens in the above equation to get V2 as follows:
3.5*250 = 9*V2
V2 = 97.2223 ml

The scientific study of the behavior of matter near 0 K is called _____. cryogenics pyrogenics celciographics absolute zero

Answers

The scientific study of the behavior near 0K is called Cryogenics.

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Hello!

The scientific study of the behavior of matter near 0K is called cryogenics

Why?

The word "cryogenics" comes from the greek kyros (cold) and geneia (generation). It describes the techniques used to reach very low temperatures to study the behavior of matter.

The ways to achieve these low temperatures are various, but here are the most common:

Liquid Nitrogen: It has a boiling point of -195,79 °C (-320 °F or 77 K). It can cool objects between 66 K (Freezing point) and 77 K (Boiling point). Liquid Helium: It is liquid at -270 °C (-452,2 °F or 4K).Magnetic Refrigeration: It is a technique based on the magnetocaloric effect, it can reach temperatures as low as 0.25 K.

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What statement best describes a closed system? Matter and energy can be exchanged freely between the system and surroundings. Matter can be exchanged between the system and surroundings, but energy cannot. Energy can be exchanged between the system and surroundings, but matter cannot. Neither energy nor matter can be exchanged between the system and surroundings

Answers

I believe the answer is as follows. Energy can be exchanged between system and surroundings, but matter cannot.

Answer:

Energy can be exchanged between the system and surroundings, but matter cannot.

Explanation:

In thermodynamics a closed does not allow the exchange of matter but allows the exchange of energy. Thus option C is correct and option B is incorrect.  

Open system allows both the transfer of mass and energy. Thus option A is incorrect.  

Isolated system does not allow the transfer of mass nor energy. Option D is incorrect.

What functional group of aspirin causes it to irritate the stomach?

Answers

The functional group of the aspirin in which causes this compound to cause a person’s stomach to be irritated is most likely because of the acetyl salicylic acid in which its acid portion of this drug causes the person’s stomach to feel stomach irritation.

Answer:

The acid (-COOH) functional group of aspirin causes it to irritate the stomach

Explanation:

Aspirin is acetylsalicylic acid with a molecular formula C₉H₈O₈.

It is a cyclic compound composed of a benzene ring along with 2 functional groups: the carboxylic acid (-COOH) and acetyl group (-OCOCH3)

The most common side effect of consuming aspirin is an upset stomach. This is due to the acid functional group which can irritate the stomach lining.

Which chemical change causes a cake to rise?

formation of a precipitate
production of a gas
change in state
change in color

Answers

the production of gas

Answer:

production of a gas

Explanation:

What makes the cake grow is the action caused by yeast. When added in the dough the yeast undergoes a chemical transformation releasing carbon dioxide, for example from the reaction between sodium bicarbonate and monoacid phosphate. It is the carbon dioxide that makes the cake grow, making the dough light and soft. This reaction is favored by heating, so the use of frozen ingredients in the preparation of the dough can harm the end result.

If you cannot get a chair to move across the floor, it is because ___ friction opposes your push.

Answers

if you cannot get a chair to move across the floor, it is because STATIC friction opposes your push.

Answer:

If you cannot get a chair to move across the floor, it is because ___ friction opposes your push.

Static friction.

Explanation:

Fluid friction is the resistance an object encounters in the water surface so in our case it's incorrect because we can't see any water in our scenario.

Rolling friction is the friction a wheel or sphere finds as resistance in the surface. In our scenario, we are talking about a wheelchair or a chair with small wheels like the office ones. So it is incorrect.

Sliding friction is the friction that an object encounters when it is pushed to move in a surface that slides against the direction of the object. Or that opposes gravitational resistance against the object direction because it is in a certain degree of elevation. Meaning that the surface is perpendicularly pointing the sky.

Static friction is the type of resistance an object finds when it is moved after being static. And this is our answer because the chair was static without wheels.

What is a major drawback of using fossil fuels?

Answers

Fossil fuels release carbon dioxide when they burn, which adds to the greenhouse effect and increases global warming. Of the three fossil fuels, for a given amount of energy released, coal produces the most carbon dioxide and natural gas produces the least.

Drawback of Fossil fuel :-

1)  Big Role in Global Warming :-  Fossil fuel create so much Carbon that's why it is more responsible in Global warming .

2) Non Renewable :-  fossil fuel take million of years to create .

Causes Air pollution :- burning fossil fuel emits number of pollution that are harmful for the environment.

What is the general valence-electron ground-state electron configuration for neutral alkali metals?

Answers

The ground state is the state  lowest energy and that is the state of the ordinary configurations.

Alkali metals are the group 1 of the periodic table. All the alkali metals have 1 electron in their valence shell.

The configurations of the alkali metals are:

Li: [He] 2s

Na: [Ne] 3s

K: [Ar] 4s

Rb: [Kr] 5s

Cs: [Xe] 6s

Fr: [Rn] 7s.


As you see the electron configurations of the alkaly metals is the confiuration of the previous noble gas plus one electron that occupies the next s orbital.

Which of the following samples has the greatest population density? a. 125,000 organisms in 2.5 mi2028-02-04-03-00_files/i0170000.jpg b. 13,000 organisms in 1.0 mi2028-02-04-03-00_files/i0170001.jpg c. 150,000 organisms in 4.0 mi2028-02-04-03-00_files/i0170002.jpg d. 100,000 organisms in 0.5 mi2028-02-04-03-00_files/i0170003.jpg

Answers

Answer:  the correct choice is d) 100000 organisms in 0.5 miles.

Explanation: Population density is directly proportional to the number of species(organisms) and inversely proportional to the land area.

population density = number of organisms/land area

Let's plug in the values for all the choices and see which one gives greatest population density.

a) population density = [tex]\frac{125000}{2.5}[/tex]  = 50000

b) population density = [tex]\frac{13000}{1.0}[/tex]  = 13000

c) population density = [tex]\frac{150000}{4.0}[/tex]  = 37500

d) population density = [tex]\frac{100000}{0.5}[/tex]  = 200000

From above calculations, the greatest population density(200000 organism per mile) is for the last choice.

So, the correct choice is d) 100000 organisms in 0.5 miles.

The reaction described in part a required 3.35 l of calcium chloride. what is the concentration of this calcium chloride solution

Answers

Assuming you are talking about the atomic mass of calcium chloride...
M = n/V
M = 1/3.35
M = 0.298

Suppose you have a large coffee can full of pennies. How can you estimate how much money the can contains without counting all the coins

Answers

You can estimate by finding the measure/weight of a single penny and then finding the measure/weight of an empty coffee cup. Once you have that, weigh the whole thing and then go from there to find the amount of pennies :)
Final answer:

To estimate the value of a large coffee can of pennies, draw out a sample. Count it and weigh it, obtaining an average weight per penny. Weigh the all the coins in the can, subtracting the weight of the empty can. By dividing the weight of all coins by the weight of one penny, you can estimate the total amount.

Explanation:

To estimate the amount of money a large coffee can full of pennies contains without counting all the coins, you can use a method known as sampling. Start by selecting a small, manageable number of pennies from the can. For instance, you could take out 20. Count the value of the pennies you've selected, using the knowledge that each penny, in U.S currency, is worth 1 cent. This will give you an average value. Then weigh the pennies. This will give you the average weight of 1 cent. Next, weigh the entire can and subtract the weight of the can itself. This gives you the weight of all the pennies. Divide the weight of all coins by the average weight of 1 cent. You now have an estimate of the total amount of money in the can.

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Imagine the water is leaking from a container, at a rate of 1.2 ml/hour. If this rate does not change, how many liters of water will be lost in a week?

Answers

Final answer:

At a consistent leakage rate of 1.2 mL/hour, a container will lose 0.2016 liters of water over the span of a week.

Explanation:

If water is leaking from a container at a rate of 1.2 mL/hour, we can calculate the total amount of water lost in a week by first understanding the total hours in a week and then multiplying this by the rate of leakage.

A week consists of 7 days, and each day has 24 hours, making the total hours in a week 168 hours. Given the rate of 1.2 mL/hour, we multiply this rate by the total hours to find the total volume of water lost over the week:

1.2 mL/hour * 168 hours = 201.6 mL

To convert this volume into liters, we remember that 1000 mL equals one liter. Therefore, dividing 201.6 mL by 1000 gives us the volume in liters:

201.6 mL / 1000 = 0.2016 liters

Thus, at a rate of 1.2 mL/hour, a total of 0.2016 liters of water will be lost in a week.

To cook food, a microwave oven converts electrical energy into ________ energy. A) electromagnetic B) heat C) mechanical D) nuclear

Answers

Answer: Option (B) is the correct answer.

Explanation:

When we heat food in a microwave then the electrical energy of microwave produces microwaves which are also part of electromagnetic spectrum.

These microwaves are absorbed by food and as a result microwaves change into heat energy. Therefore, food becomes hot.

Thus, we can conclude that to cook food, a microwave oven converts electrical energy into heat energy.

Answer:

The answer is A

Explanation:

Studies involving humans or animals are conducted under strict policies and procedures. This solution addresses which limitation?

Answers

ethical concerns is the answer

Studies involving humans or animals are conducted under strict policies and procedures, and this solution addresses the ethical concerns as the animals and humans should not be harmed in such processes.

What are the ethical concerns in the scientific experiment?

In general, animals such as mice, pigs, and other animals are used in scientific experiments for clinical tests such as vaccine tests, drug tests, and so on for safety reasons, and as a result, the animals' health suffers and they may die. So there are always ethical concerns in scientific research when there is the involvement of animals and humans, and that should be replaced with safe and secure research.

Hence, studies involving humans or animals are conducted under strict policies and procedures, and this solution addresses the ethical concerns as the animals and humans should not be harmed in such processes.

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The question is incomplete, the complete question is here

Studies involving humans or animals are conducted under strict policies and procedures. This solution addresses which limitation?

A) Lack of proper equipment

B) Size of the system

C) Limited amount of time

D) Ethical Concerns

Summarize how chemical energy is formed from light energy during photosynthesis

Answers

Actually the energy of light is absorbed by the chlorophyll molecules. They then pass it to the reaction centres wherein the photon energy is utilized to split the water molecules. The H+ produced is used to generate a gradient where the enzymes employ the electrical gradient from chemiosmosis and to convert ADP into ATP. Other molecules such as NADPH are formed and are used to reduce CO2 to other organic molecules. 
Final answer:

Photosynthesis converts light energy into chemical energy through two stages: light-dependent reactions that produce ATP and NADPH, and light-independent reactions using these elements to convert carbon dioxide and water into glucose.

Explanation:

Photosynthesis is a biological process that converts light energy, primarily from the sun, into chemical energy in plants. Photosynthesis comprises two stages: the light-dependent reactions and the light-independent reactions.

During the light-dependent reactions, energy from sunlight is absorbed by pigment molecules like chlorophyll, triggering the release of electrons. This energy is used to create adenosine triphosphate (ATP) and NADPH, forms of chemical energy.

In the next phase, the light-independent reactions (also known as the Calvin cycle), the ATP and NADPH produced in the light-dependent reactions are used to convert carbon dioxide and water into glucose, an energy-storing molecule, and oxygen. Therefore, it's during these light-independent reactions that chemical energy is formally established from light energy in photosynthesis.

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According to the octet rule, which of elements will have a tendency to loss 2 electrons?

Answers

The correct option is STRONTIUM.
Strontium is a group 2 element, that means it has two electrons in its outermost shell. This element will prefer to lose these two electrons in its outermost shell in order to attain the octet form, therefore, it will form electrovalent bond with non metals which it can donate two electrons to.

Do elements of the halogen family lose one electron to become halide ions

Answers

Final answer:

Halogens in the halogen family gain one electron to become halide ions.

Explanation:

The elements of the halogen family, which includes fluorine, chlorine, bromine, iodine, and astatine, gain electrons to become halide ions. Halogens have a p5 electron configuration, meaning they have one vacancy in their outermost subshell. By accepting an extra electron, the halogens achieve a stable noble gas electron configuration and become negatively charged ions. For example, chlorine (Cl) gains one electron to become the chloride ion (Cl-).

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