How does the presence of kelp influence water oxygen levels?

Answers

Answer 1
Kelp biomass is concentrated near the surface in the canopy region, so an increase in kelp photosynthesis can further elevate dissolved oxygen and pH in deface waters relative to depose water

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when should lab participants look at the safety data sheet (sds) of a substance? select one: only if the substance is perceived to be dangerous before using the substance after completing work with the substance while working with the substance in lab

Answers

Lab participants should always look at the safety data sheet (SDS) of a substance before using the substance.

The correct option is B.

What is a safety data sheet (SDS) of substances?

The safety data sheet (SDS) contains details about the physical, physiological, and environmental dangers of each chemical, as well as information about how to handle, store, and transport each chemical safely.

The information in a safety data sheet is for:

Identification of the supplier and the product.Physical (fire and reactivity) and health risks are present.Actions you can do to ensure your safety at work, to lessen or prevent exposure, or in an emergency.Response: suitable reactions in various circumstances (e.g., first-aid, fire, accidental release).

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you need 3.6 x 1024 molecules of oxalic acid (h2c2o4). how many grams of the acid should you weigh out in the laboratory?

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you need 3.6 x 10 to the power 24 molecules of oxalic acid (h2c2o4). Grams of the acid should you weigh out in the laboratory,

3.6 * 10 to the power 24 molecules----->1 mol / 6.022 * 10 to the power 23 molecules -----> 90.04 g H2C2O4 / 1 mol = 540g =5.4 * 10 to the power 2 g

We are informed that we possess 3.6 x 10–24 molecules of oxalic acid, and we are afterwards asked how many grammes of the acid we should weigh out. Okay, then we'll multiply that by the inverse of Gag Avogadro's number, which we'll write a little bit larger, to find the number of molecules in a mole, and then we'll multiply that by the molar mass of oxalic acid, which we calculated before. That would be 540 grams according to the calculation I just did: 3.6 times 10 to the 24 times 90.03 divided by 6.022 times 10 to the twenty-third.

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In general, real gases behave most ideally at ____ pressures and ____ temperatures.

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In general, real gases behave most ideally at high pressures and low temperatures.

The characteristics and rules that the gas's molecules follow determine how the molecules behave. In comparison to the distribution of molecules in liquids and solids, the distribution of molecules in gases is extremely different. The behavior of gas molecules is governed by three gas laws.

According to Boyle's Law, gas volume grows as pressure lowers. According to Charles' Law, a gas expands in volume as its temperature rises. Additionally, Avogadro's Law states that as gas concentration rises, so does its volume.

At higher temperatures and lower pressures, a gas often behaves more like an ideal gas because the intermolecular potential energy (P.E.) becomes less relevant in comparison to the particle kinetic energy.

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The chemical formula which represents the actual number of atoms of each element present in a molecule is known as :
A empirical formula
B atomic formula
C molecular formula
D none of the above

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The molecular formula is the chemical formula that indicates the precise amount of atoms of each element that make up a molecule.

The number of atoms of each element really present in a molecule is indicated by the molecular formula. It is used to determine the type of molecule and offers the precise makeup of a molecule. The molecular formula, which takes into account all of the atoms in the molecule and not simply the smallest whole-number ratio of atoms, is the most precise and accurate approach to describe the structure of a molecule. The empirical formula, on the other hand, gives the simplest whole-number ratio of atoms in a molecule but does not always indicate the precise number of atoms present. On the other hand, the atomic formula specifies how many atoms of each element are included in a single atom.

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if the hydrogenation of the compound gave n-octane, what is the structure of the unknown compound?

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If the hydrogenation of an unknown compound gave n-octane, it can be inferred that the structure of the unknown compound was an alkene or a conjugated diene.

The hydrogenation of a compound refers to the addition of hydrogen atoms to a molecule, typically catalyzed by a metal catalyst. The product of this reaction is typically a more reduced form of the original compound.

If the hydrogenation of an unknown compound gave n-octane, it can be inferred that the structure of the unknown compound was an alkene or a conjugated diene. Alkenes and conjugated dienes can undergo hydrogenation reactions to give primary and secondary alkanes, respectively.

The structure of the unknown compound cannot be determined with certainty based on this information alone, as it depends on the specific alkene or diene that was hydrogenated. Further analysis and characterization would be needed to determine the structure of the unknown compound with certainty.

It is important to note that hydrogenation reactions are often selective and can produce mixtures of products, depending on the conditions used. The structure of the unknown compound would also be influenced by the choice of catalyst and reaction conditions used.

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how does the presence of kelp influence water carbon dioxide levels

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Kelp, also known as seaweed, is a type of marine algae that plays a role in regulating carbon dioxide levels in the water.

Kelp absorbs carbon dioxide through photosynthesis, which is the process by which plants convert carbon dioxide and water into glucose and oxygen using energy from sunlight. As kelp absorbs carbon dioxide from the water, it helps to reduce the levels of dissolved carbon dioxide in the surrounding environment. Additionally, kelp also releases oxygen into the water as a byproduct of photosynthesis, which can help to increase the levels of dissolved oxygen in the water and support the growth of other marine organisms. This process of carbon dioxide removal by kelp has a positive impact on the surrounding water and helps to maintain a balance of dissolved gases, which is important for the overall health of the aquatic ecosystem.

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introduction of chemical, physical, or biological agents into water

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The introduction of  physical, chemical, or biological agents into water is known as water pollution.

Water pollution refers to the contamination of water bodies, such as lakes, rivers, oceans, and groundwater, with harmful substances, waste, or pathogens that can cause harm to the environment, wildlife, and human health.

There are various types of water pollution, including chemical pollution, physical pollution, and biological pollution. Chemical pollution can come from a wide range of sources, including industrial discharge, agricultural runoff, and household waste. It can contain harmful substances such as toxic heavy metals, pesticides, and fertilizers that can have negative impacts on the environment and human health.

Physical pollution, on the other hand, can come from sources such as litter and debris, which can harm marine life and birds, and act as a carrier for chemical pollutants. Biological pollution can include pathogens such as bacteria and viruses that can cause waterborne diseases in humans and animals.

"

Complete question

introduction of chemical, physical, or biological agents into water is known as __________.

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How many atoms of hydrogen are in C6H18O3

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there are 18 atoms in H^18

The average atmospheric pressure on Mount Everest is 33.7 kilopascals. Express this pressure in millimeters mercury and atmospheres?

Answers

Answer: To convert pressure from kilopascals to millimeters mercury, we can use the conversion factor 1 kilopascal = 7.5 mmHg.

So, 33.7 kilopascals = 33.7 * 7.5 mmHg = 251.75 mmHg

To convert pressure from kilopascals to atmospheres, we can use the conversion factor 1 kilopascal = 0.00986923 atm.

So, 33.7 kilopascals = 33.7 * 0.00986923 atm = 0.3316 atm

Therefore, the atmospheric pressure on Mount Everest is 251.75 mmHg = 0.3316 atm.

Explanation:

Sarah and Maria were making solutions in science class. They dissolved some sugar in warm water.
"We can get the sugar back," said Sarah.
The girls boiled the solution and sure enough, the water evaporated and the sugar was left behind in the beaker. The girls continued to heat the sugar until it
tumed brown and finally black Water drops collected on the sides of the beaker.
"Let's try to get the sugar back again!" said Maria
What would you tell the girls?
A They have to add some water to the black substance and stir it until it dissolves again.
B They must collect all the water on the sides of the beaker and mix it with the black substance.
C Sugar is carbon, hydrogen, and oxygen. They must mix the three things together.
DThe black substance is carbon. The sugar has changed into something new.

Answers

D) The black substance is carbon. The sugar has changed into something new.

What is meant by solution in chemistry?

In chemistry, solution is special type of homogeneous mixture composed of two / more substances. In such mixture, solute is a substance dissolved in another substance which known as a solvent.

Solution is a homogenous mixture of two or more substances in relative amounts that can be varied continuously up to what is called limit of solubility. Common examples are of solutions are: sugar in water and salt in water solutions, soda water. In solution, all the components appear as a single phase.

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determine the fraction of the total mass of an atom for protons, neutrons, and electrons

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Protons, neutrons, and electrons make up around 0.999 of an atom's total mass for protons and neutrons, and 0.0005 of an atom's total mass for electrons.

Protons, neutrons, and electrons make up an atom's total mass. These particles' relative atomic masses may be used to determine what percentage of an atom's total mass corresponds to each one of them. A proton's relative atomic mass is one atomic mass unit (amu), a neutron's relative atomic mass is roughly one amu, and an electron's relative atomic mass is around 0.0005 amu. For instance, in a hydrogen atom with one proton and one electron, the proton's mass fraction would be around 99.999% of the total mass while the electron's mass fraction would be roughly 0.0001%.

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how many grams of al2s3 are formed when 5.00 grams of al is heated with 10.0 grams s?

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The grams of the Al₂S₃ are formed when the 5.00 grams of the Al is heated with the 10 g of the S is 13.5 g.

The balance chemical reaction is as follows :

2Al  +  3S --->  Al₂S₃

The mass of the Al = 5 g

The moles of the Al = mass / molar mass

                                 = 5 / 26.9

                                 = 0.18 mol

The mass of the S = 10 g

The moles of the S = 10 / 32

                                = 0.31 mol

2 mol of Al react with 3 mol of S

Moles of S = 3/2 × 0.18

                  = 0.27 mol

The Al is the limiting reactant .

2 mole of the Al = 1 mol of the Al₂S₃

Moles of the Al₂S₃ = (1/2 ) × 0.18

                               = 0.09 mol

The mass of the  Al₂S₃ = moles × molar mass

                                      = 0.09 × 150

                                     = 13.5 g

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what is the name of the chemical bond between amino acids?

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A peptide bond also called a eupeptide bond is a chemical bond by joining the carboxyl group of one amino acid to the amino group of another.

what is the name of the chemical bond between amino acids?

Peptide bonds are chemical covalent bonds joining one amino acid to the other, Within a protein, multiple amino acids are related together by peptide bonds, thereby forming a long chain. Peptide bonds are devised by a biochemical reaction that takes out a water molecule as it joins the amino group of one amino acid to the carboxyl group of a neighboring amino acid.

An Introduction to Chemical Bonds and Protein form cysteine is the sole amino acid whose side chain can form covalent bonds, a chemical bond by linking the carboxyl group of one amino acid to the amino group of another.

So we can conclude that A chemical bond is a lasting appeal between atoms or ions that authorized the formation of molecules and crystals.

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consider a weak polyprotic acid, h2a, with respective dissociation constants ka1 and ka2. what is the equilibrium constant of the following reaction:

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The equilibrium constant of the reaction is Ka2, the second dissociation constant of the weak polyprotic acid H2A.

H2A(aq) + H2O(l) ⇌ H3O+(aq) + A–(aq)

This is because the reaction is the second dissociation of H2A, which is represented by Ka2. The equilibrium constant is a measure of the relative concentrations of reactants and products at equilibrium, and for this reaction, the products are H3O+ and A–, and the reactant is H2A.The other species, H2O and H3O+, are spectator ions and do not affect the equilibrium.A weak polyprotic acid is an acid that has more than one proton that can be released. Examples of weak polyprotic acids include sulfuric acid (H2SO4), phosphoric acid (H3PO4), and carbonic acid (H2CO3).

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is nh4cn acidic or basic

Answers

Answer:

I believe it to be acidic

Explanation:

i believe this because NH4 is an aicd on its own so NH4CN is acidic as well

NH4CN is a salt of weak acid HCN (Ka=6.2×10−10) and a weak base NH4OH(Kb=1.8×10−5).

What is acidic and basic ?

Many compounds we use on a daily basis have chemical properties that are described by the phrases acid and base. Acidic foods have a sour flavour. Things that are alkaline or basic taste soapy. Strong bases are caustic, while strong acids are corrosive; both can result in serious skin injury that feels like a burn.

Acids provide the H+ ion; bases provide the OH- ion, these ions combine to form water. Acid and bases that ionize completely giving larger hydrogen or hydroxide ions in solutions are called strong acids and bases. HCl, HNO3, H2SO4, HCIO4, etc., are examples of strong acids and NaOH, KOH, (CH3)4NOH are strong bases.

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Interpret the following equation in terms of relative numbers of representative particles, number of moles, and masses of reactants and products.
2K(s)+2H2O(l)â2KOH(aq)+H2(g)

Answers

The following equation in terms of relative numbers of representative particles, number of moles, and masses of atoms and products is

78.2g K + 36.0 g [tex]H_2O[/tex] [tex]\rightarrow[/tex]  112.2 g KOH + 2.0 g [tex]H_2[/tex].

The atom is the smallest piece of stuff that can be divided without producing charged particles. Additionally, it is the tiniest material with characteristics similar to chemical elements. As a result, the atom serves as the fundamental component of chemistry. Examine different electron arrangements in the electron shells that protect an atom's atomic nucleus. An atom is primarily made of space. The rest is made up of a positively charged nucleus made up of protons and neutrons that is surrounded by a cloud of negatively charged electrons. The nucleus is small and dense in comparison to electrons, which are the lightest charged particles in nature. Electrons are pulled to any positive charge due to the electric forces that bind them to the nucleus of atoms.

[tex]2 \times6.02 \times 10^{23}[/tex] atoms K + [tex]6.02 \times 10^{23}[/tex] atoms [tex]H_2O[/tex] [tex]\rightarrow[/tex] [tex]2 \times 6.02 \times 10^{23}[/tex] atoms KOH + [tex]6.02 \times 10^{23}[/tex] atoms [tex]H_2[/tex]

2 mol K + 2 mol [tex]H_2[/tex] [tex]\rightarrow[/tex] 2 mole KOH + 1 mol [tex]H_2[/tex]

78.2g K + 36.0 g [tex]H_2O[/tex] [tex]\rightarrow[/tex]  112.2 g KOH + 2.0 g [tex]H_2[/tex]

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what is the diffusion constant of water

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Diffusion constant of water is a measure of how quickly molecules of water move randomly and spread apart from each other.

Diffusion is a natural process in which molecules of a substance (in this case, water) move from an area of high concentration to an area of low concentration, until the concentration is even throughout the whole space. This movement occurs randomly and as a result of the thermal energy of the molecules.

The diffusion constant of water, also known as the diffusion coefficient, is a measure of how quickly this process of diffusion occurs. It is expressed in units of square meters per second (m^2/s) and represents the rate at which the diffusion of water molecules occurs. The larger the diffusion constant, the faster the water molecules move and spread apart from each other.

The diffusion constant of water is important in many scientific and engineering applications, such as in biology, where it is used to study the movement of molecules and ions in cells and tissues, and in environmental science, where it is used to understand the transport of pollutants in water.

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If 0. 700 moles Ag is reacted with 10. 0 g S, is sulfur or aluminum the limiting reactant?

Answers

If 0. 700 moles Ag is reacted with 10. 0 g S. The limiting reactant is Sulphur.

To know the limiting reactant first we should calculate the moles of each reactant.

Moles = Mass/ Mass molar

Moles S = 10 gram / 32 g/ mole

Moles S = 0.3125 moles

the balance reaction will be

2 Ag + s ⇒ Ag₂S

According to the stoichiometry from the reaction 1 moles of sulphur need to react with 2 moles of Ag to produce Ag₂S

Thus 0.3125 moles of S will require= 2/1 x0.3125 = 0.625 moles Ag

so, the Ag excess and the limiting reactant will be Sulphur.

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What mass of uranium contains the same number of atoms as 25. 0 g of potassium (can you the work please)

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The number of atoms in a given mass of a substance is determined by its atomic mass, which is the average mass of an atom of that element relative to 1/12 the mass of a carbon-12 atom.

Potassium has an atomic mass of 39.098 g/mol, so 25.0 g of potassium contains 25.0 g / 39.098 g/mol = 639.0 mol of potassium atoms.

Uranium has an atomic mass of 238.0 g/mol, so the mass of uranium that contains the same number of atoms as 25.0 g of potassium is 639.0 mol x 238.0 g/mol = 152,062 g of uranium.

What is the most common isotope of uranium found in nature?

The most common isotope of uranium found in nature is uranium-238. It makes up over 99% of naturally occurring uranium and has a half-life of over 4 billion years. It is primarily used as a fuel in nuclear reactors.

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An ionic bond is an attraction between oppositely charged.a. Trueb. False

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TRUE: opposing charges attract each other, and this force of attraction is known as the ionic bond. 16. In the diagram, a sodium ion is attracted by a link to one chloride ion and by forces to three other chloride ions.

The main interaction in ionic compounds is ionic bonding, a type of chemical bonding that involves the electrostatic attraction between two atoms or ions with dramatically differing electronegativities.

In a compound, atoms with opposing charges are held together by an electrostatic force called an ionic bond. A metal can create several cations with various charges if it is in the d, f, or lower p-block. Two cations can combine to produce a compound through an ionic connection.

The electrostatic attraction between a negatively charged non-metal ion and a positively charged metal ion is known as an ionic bond. Metals lose electrons to become stable, which causes them to create positive ions.

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What's More Activity 3: Approach me!
Directions: identify the approach that is referred to each statement

1. Coastal fishing fleets often stay at sea for days or weeks. Long-range fishing vessels may remain at sea
for months.

2. To breathe, a whale surfaces in a forward rolling motion. For two seconds, it blows out and breathes in as much as twenty-one hundred quarts of air.

3. The death of Floyd, George led to a clash between the white and the black people of
America.

4. Sivuquad, a name for St. Lawrence Island, means "squeezed dry. " The islanders believed that a giant had made the island from dried mud. ​

Answers

Each statement refers to the following approaches:

A descriptive approachA scientific approachA historical approachA cultural/mythological approachThe Explanation For Each StatementThe statement provides a description of the behavior and habits of coastal fishing fleets and long-range fishing vessels, without any analysis or evaluation of the information presented.The statement presents information about a whale's breathing process in a scientific manner, providing specific details and measurements about the behavior.The statement is referring to a historical event, the death of George Floyd, and its impact on the relations between different racial groups in America.The statement provides information about the origin and meaning of the name "Sivuquad," as well as a mythological explanation for the creation of St. Lawrence Island, providing cultural and mythological perspectives.

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Calculate the freezing point point of a solution containing 6. 0 g of naphthalene (c10h8) in 50. 0 ml of benzene. Benzene has a density of 0. 877 g/cm3 (cm3 = ml). Kf = 5. 12 oc/m for benzene normal freezing point of benzene 5. 5 oc.

Answers

The freezing point of a solution containing 6.0 g of naphthalene (C10H8) in 50.0 mL of benzene (density 0.877 g/cm3)

It can be calculated using the equation Kf x m, where Kf is the freezing point depression constant and m is the molality of the solution. The molality of the solution is equal to the number of moles of solute (naphthalene) divided by the kilogram of solvent (benzene).

In this case, the molality of the solution is equal to 0.007 m.

Using the equation Kf x m, the freezing point of the solution is equal to 5.12 oC x 0.007, which is equal to 0.0359 oC. Subtracting this value from the normal freezing point of benzene (5.5 oC) gives us a freezing point of 5.4641 oC for the solution.

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explain why the pure solvent shows a level horizontal curve as solidification occurs, but the curve for the solution slopes downward slightly.

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The pure solvent shows a level horizontal curve during solidification because its freezing point remains constant, whereas the curve for the solution slopes downward slightly because the freezing point of the solution is lower than that of the pure solvent.

The freezing point of a substance is the temperature at which it changes from a liquid to a solid. When a solvent (a substance in which a solute is dissolved) is mixed with a solute, the freezing point of the solution is lower than that of the pure solvent. This is due to the fact that the solute particles interfere with the ability of the solvent particles to pack closely together, which is required for the solvent to freeze.

In a phase diagram, the freezing point of a substance is represented by the solid-liquid equilibrium line. The pure solvent will have a horizontal line at a constant temperature representing its constant freezing point. However, the line for the solution will slope downward slightly, as the freezing point decreases with increasing solute concentration.

This decrease in freezing point is quantified by a property known as the depression of the freezing point. This phenomenon occurs because the solute particles in the solution interfere with the hydrogen bonds between the solvent molecules, making it more difficult for the solvent to freeze. The result is a decrease in the freezing point, which is proportional to the concentration of solute in the solution.

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Rank the following list of aqueous solutions and solvents according to decreasing vapor pressure. The substance with the highest vapor pressure should be placed on top.

Answers

The rank of the following list of aqueous solutions and solvents according to decreasing vapor pressure is: 0.050M urea, 0.10M glucose, 0.2M sucrose, pure water

Vapor pressure is the pressure exerted by a vapor in thermodynamic equilibrium with its condensed phases (solid or liquid) at a given temperature in a closed system. It is a measure of the tendency of a substance to change from liquid to the gaseous state at a given temperature and pressure.

Vapor pressure depends on the temperature and the nature of the substance, and it increases with temperature. For example, the vapor pressure of water at room temperature is much lower than the vapor pressure of alcohol at the same temperature.

The vapor pressure of a substance can also be affected by pressure, with an increase in pressure leading to a decrease in vapor pressure.

Therefore, The rank of the following list of aqueous solutions and solvents according to decreasing vapor pressure is: 0.050M urea, 0.10M glucose, 0.2M sucrose, pure water

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construct a thermal budget for an organism listing the principle sources and processes of heat gain and heat loss.

Answers

Constructing a thermal budget for an organism requires listing the principle sources and processes of heat gain and heat loss.

Sources of heat gain include conduction, convection, and radiation from the environment, as well as metabolic processes within the organism. Sources of heat loss include conduction, convection, and radiation to the environment. Additionally, some organisms can regulate their body temperature through sweating and other mechanisms of heat loss.

Chemical conduction is the process by which energy or materials are transferred from one substance to another through physical contact or chemical reactions. In a chemical conduction process, the energy or material being transferred can be either in the form of particles, ions, or molecules.

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Select all intermolecular forces that contribute to creating a solution of KBr in H2O.a. London Dispersionb. H-bondingc. Ion-dipoled. Dipole-Dipole

Answers

Ion-dipole and hydrogen bonding are the intermolecular interactions involved in the formation of a KBr solution in water.

Hydrogen bonding is a type of attractive interaction between a hydrogen atom that is covalently bonded to an electronegative atom (such as nitrogen, oxygen, or fluorine) and an electronegative atom in another molecule or ion. This bond is much stronger than a typical van der Waals interaction and results in a higher boiling and melting point for compounds that can hydrogen bond.

While H2O is a polar molecule with a partial positive charge on the hydrogen atoms and a partial negative charge on the oxygen atom, KBr is an ionic compound made up of K+ ions and Br- ions. The negative O- atoms of H2O and the positive K+ ions form the ion-dipole force. Hydrogen bonding occurs between the hydrogen atoms of H2O and the negative Br- ions. These pressures aid in the homogenous solution formation as KBr is dissolved in water.

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What can we know from the molecular formula of a compound?

Answers

From the molecular formula, you can get the percentage of atoms present in the compound.

What is Molecular Formula?

A Molecular formula is intended to be a chemical notation used to describe the number and types of elements present in a single molecule of a compound. The constituent elements contained in the compound are represented by chemical symbols. The total number of each element present in the compound is shown as a subscript after the chemical symbol.

There are no words in the molecular formula. Contains icons only. The simplest form of molecular formula is known as the empirical formula. An empirical formula can give the proportions of each element present in a compound.

Hence, From the molecular formula, you can get the percentage of atoms present in the compound.

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Why phosphorus is a metal?

Answers

Phosphorus is not a metal; it is a non-metal element. It is a highly reactive element found in the form of white, waxy solids.

What is non-metal?

Non-metal is a type of element that does not have the properties of a metal. Non-metals are generally not malleable or ductile, they are not good conductors of electricity or heat and they are not shiny or reflective. They are usually brittle and have low melting and boiling points. Non-metals are solids at room temperature, and they can be either crystalline or non-crystalline. Examples of non-metals include carbon, nitrogen, oxygen, sulfur, phosphorus, boron, chlorine, iodine, and fluorine. Non-metals can be grouped into two categories: organic and inorganic. Organic non-metals are produced by living organisms, while inorganic non-metals are found in the environment.

Therefore, Phosphorus is not a metal; it is a non-metal element.

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calculate the grams of naoh needed to make 1.50l of a 0.250 m solution of naoh

Answers

15.0 grams of naoh  are needed .

What is molarity?

The actual number of moles of a solute per liter of a solution is known as molarity. Hence, the molar concentration of a solution is another name for molarity. Molarity (M), that  is determined by dividing the solute's mass in moles by the volume of the solution in liters, is the most widely used unit to express solution concentration: liters of solution/moles of solute equals M. One liter of a solution with exactly a 1.00 molar concentration (1.00 M) contains 1.00 moles of solute. For instance the moles of solute per liter of solution is measured as molarity. For instance, when table salt is dissolved in the water, water acts as both the solution and the solute. Sodium chloride weights 58.44 grams per mole. One molar solution, or 1M, is produced by dissolving 58.44 grams of sodium chloride in one liter of water.  Moles of solute per liter of solution is referred as molarity

Formula for molarity M=n/v

where M= molarity

           n=moles of solute

            v =liters of solution

1.50L(0.250mol/1L)(40.00g/mol)=15.0g

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in a particular experiment, 7.9 grams of sulfur trioxide are produced by the reaction of 5.0 grams of oxygen gas with 6.0 grams of sulfur. what is the percent yield of sulfur trioxide in this experiment?

Answers

Sulfur dioxide is catalytically oxidized to form sulphur trioxide in stage two. Sulfur trioxide is transformed into sulphuric acid in stage three.

What does the process involve in sulfur trioxide formation?

Vanadium oxide serves as the process' catalyst. Stage 1: Preparation and purification of sulphur dioxide. Sulfur dioxide is catalytically oxidized to form sulphur trioxide in stage two. Sulfur trioxide is transformed into sulphuric acid in stage three.

Vanadium oxide serves as the process' catalyst. Three phases make up the contact process: Stage 1: Preparation and purification of sulphur dioxide.

Therefore, 93 is the percent yield of sulfur trioxide in this experiment. In addition to being a reagent in sulfonation reactions, sulphur trioxide is employed to create sulfuric acid.

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