Which class of molecules functions as chemical signals? hormones water carbohydrates proteins

Answers

Answer 1

Answer:

hormones - the first choice

Answer 2

Answer:

hormones

Explanation:

Hormones are chemical signals secreted by the endocrine glands. Each cell has receptors for the hormone molecule. Hormone secreted in the blood binds to its specific receptor on the cell surface. After binding to its receptors hormones transfer signal to the interior of the cell. Hormones are responsible for the transduction of cell signal. A very common example of hormone is insulin.


Related Questions

What did Bohr’s model of the atom do that Rutherford’s model did not?


It established that electrons move around the nucleus.

It identified the charge of the nucleus.

It established that a large volume of space surrounds the atomic nucleus.

It focused on the location and energy of electrons.

Answers

Answer:

The last option

Explanation:

The Bohr model was an attempt to explain atomic hydrogen's spectrum. This was done by establishing energy levels of separate electron orbits in the atom.Thos model was followed by the Schrödinger model.

Final answer:

Bohr's model built upon Rutherford's by establishing that electrons move around the nucleus in certain paths or 'shells', and focusing more on the location and energy of electrons, a crucial component in understanding atomic structure and behavior.

Explanation:

Bohr’s model added new elements to Rutherford’s model, demonstrating a better understanding of the atom's structure and behavior. One of the key differentiating factors was Bohr's idea that electrons orbit around the nucleus in set paths (or energy levels).

While Rutherford's model did identify the nucleus as positively charged and indicated that a large volume of space surrounds it, it didn't provide a specific path for the electrons' movement. The Bohr model, in contrast, presented the concept of quantized energy levels. According to this model, electrons could occupy specific energy levels and could jump between these levels by absorbing or emitting discrete amounts of energy.

So, to answer your question, Bohr's model, unlike Rutherford’s, established that electrons move around the nucleus in certain paths or 'shells', and it focused more on the location and energy of electrons, which was key to understanding atomic structure and behavior.

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When comparing two solutions with the same volume, you may say that one is dilute and the other is concentrated. What does this mean?

A.
The dilute solution contains more solute than the concentrated solution.
B.
The dilute solution contains less solute than the concentrated solution.
C.
The two solutions are the same.
D.
The concentrated solution contains less solute than the dilute solution.

Answers

Answer:

B. The dilute solution contains less solute than the concentrated solution.

Explanation:

A diluted solution is a solution that has less solute (what is being dissolved) dissolved in the solvent (what is dissolving). A concentrated solution is the opposite, it has more solute than dissolved by the solvent.

A simple example is when you make iced tea (with powder). If you want a strong taste, you add more iced tea powder (solute) to the water (solvent) so it is more concentrated. If you want less, you add more water to dilute it.  

which best explains the effect of chemicals on the environment ?

Answers

The correct option is D.

Chemicals can have both beneficial and harmful effects on the environment, depending on their type, use, and context.

The effect of chemicals on the environment is a complex and multifaceted issue, and it cannot be simplified into a single option. Instead, the most accurate explanation is that:

Chemicals can be helpful or harmful to the environment.

Here's a detailed breakdown of this answer:

1. Harmful Effects of Chemicals:

Many chemicals, such as industrial pollutants, pesticides, and certain heavy metals, can have detrimental impacts on the environment. These substances can contaminate air, soil, and water, leading to pollution, ecosystem disruption, and harm to wildlife.Some chemicals can bioaccumulate in organisms, leading to adverse health effects for both wildlife and humans when they enter the food chain.

2. Beneficial Effects of Chemicals:

Not all chemicals are harmful to the environment. Some chemicals are essential for various natural processes and are used in agriculture, water treatment, and other industries to improve living conditions.For example, fertilizers and plant nutrients help enhance crop production, and certain chemicals are used in wastewater treatment to purify water before it is released back into the environment.

3. Context Matters:

The impact of chemicals on the environment depends on the specific chemical, its concentration, how it's used, and the environmental conditions.Regulatory agencies and environmental scientists work to assess and manage the risks associated with various chemicals to minimize their harmful effects.

In conclusion, chemicals can have a range of effects on the environment, and their impact can be both beneficial and harmful. It's essential to consider the specific chemical and its application within a broader environmental context to make informed decisions about their use and regulation.

The complete question is here:

Which best explains the effect of chemicals on the environment?

A. Chemicals are only harmful to the environment.

B. Chemicals do not affect the environment.

C. Chemicals are only helpful to the environment.

D. Chemicals can be helpful or harmful to the environment.

Which statement best describes the oxidation numbers of the atoms found in magnesium chloride?

A. Magnesium has a 2- oxidation number and chlorine has a 1+ oxidation number.
B. Magnesium has a 2- oxidation number and chlorine has a 2+ oxidation number.
C. Magnesium has a 2+ oxidation number and chlorine has a 1- oxidation number.
D. Magnesium has a 1+ oxidation number and chlorine has a 1- oxidation number.

Answers

Answer- The correct choice of answer out of all would be option C.

Explanation

The given substance magnesium chloride made out of combination of chlorine and magnesium is a compound. Where magnesium has two positive ions and chlorine has two negative ions which trigger the reaction.

Hence the oxidation of the 2 positive ions of Magnesium takes place  and reduction of the Negative Ion chlorine has to offer attract and stabilize each other by forming the compound .

13. A covalent bond between two atoms is likely to be polar if:
a. One of the atoms is much more electronegative than the other.
b. The two atoms are equally electronegative.
c. The two atoms are of the same element.
d. The bond is part of a tetrahedrally shaped molecule.
e. One atom is an anion.

Answers

Final answer:

A covalent bond between two atoms is likely to be polar if one atom is more electronegative than the other. This happens because the more electronegative atom pulls the shared electrons closer to itself, resulting in a polar covalent bond.

Explanation:

A covalent bond between two atoms is likely to be polar if one of the atoms is much more electronegative than the other. A covalent bond is formed when two atoms share electrons. However, when one atom is significantly more electronegative, it pulls the shared electrons closer to itself, creating a partial negative charge. The other atom then has a partial positive charge, creating a polar covalent bond.

For example, in a water molecule (H2O), the oxygen atom is more electronegative than the hydrogen atoms, resulting in a polar covalent bond. The other options given (b, c, d, e) are either special conditions of a covalent bond or not related to the polarity of a bond at all.

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What is an example of a physical property?

Answers

Answer:

Malleability

Explanation:

2. Which balanced equation represents an oxidation-reduction reaction?
A) H3PO4 + 3KOH →K3PO4 + 3H20
B) NH3(g) + HCl(g) →NH4Cl(s)
C) Fe(s) + S(s) →FeS(s)
D) Ba(NO3)2 + Na2SO4 →BaSO4 + 2NaNO3

Answers

Answer:

C) Fe(s) + S(s) →FeS(s)

Explanation:

In any engineering design problem, the first step is to understand the problem and identify one or more possible solutions. In this task, you’ll analyze the problems you face as the chemical engineer challenged with setting up the ammonia-making process. Recall the chemical equation for producing ammonia:

N2 + 3H2 ⇌ 2NH3 + energy

How can you change the chemical equilibrium to benefit the company? What benefits will be realized?

Answers

Answer:

rising pressure and decreasing temperature

Explanation:

Reversible reactions have a bit practical interest, but in some cases the technological benefit or profitability of production requires a shift in the equilibrium of a reversible reaction.

Increasing pressure

With increasing pressure on this system, the concentration of substances increases. In this case, the balance will shift towards smaller volumes. On the left side of the equation, two volumes of nitrogen react with one volume of hydrogen. On the right side of the equation there are two volumes of ammonia, i.e. the number of volumes on the right side of the equilibrium reaction is less than on the left and, therefore, with increasing pressure, the reaction equilibrium will shift to the right.

Decreasing temperature

When the temperature rises, the equilibrium shifts towards the endothermic reaction, and when the temperature decreases, towards the exothermic reaction and the reaction given above is the exothermic.

Final answer:

To optimize the yield of ammonia in the Haber process, increasing system pressure shifts the chemical equilibrium towards producing more NH3. This results in a higher production rate and economic efficiency, aligning with industrial goals.

Explanation:

In the context of chemical engineering, changing the chemical equilibrium in the production of ammonia (NH3) from nitrogen (N2) and hydrogen (H2) gases can highly benefit a chemical company. The Haber process is grounded in the reaction: N2 + 3H2 ⇌ 2NH3 + energy. By adjusting conditions such as pressure and temperature, the yield of ammonia can be increased according to Le Chatelier's Principle.

To shift the equilibrium towards the formation of more NH3, increasing the pressure of the system is effective because the reaction results in a decrease in the number of gas particles. According to the balanced chemical equation, we start with 1 mole of nitrogen and 3 moles of hydrogen to get 2 moles of ammonia. Since the reaction produces fewer gas particles as products, an increase in pressure will favor the production of ammonia, thus potentially increasing the yield and efficiency of the process.

Increasing the pressure is also practical considering industrial production constraints. The benefits of manipulating the chemical equilibrium in this manner include increased production rates and improved economic efficiency, as higher yields of ammonia mean more effective use of feedstock gases, which contributes to cost savings for the company.

10pt if given the correct answer I will mark you as brainliest
An ordered list of chemical substances is shown.
Chemical Substances

1 Al

2 O2

3 H2O

4 SO2

5 Al2O3



Which substances in the list can be used to write a complete combustion reaction?

A- 1, 2, and 3

B- 1, 4, and 5

C-1, 2, and 5

Answers

Answer:

C

Explanation:

4(Al)+3(O2)==2(Al2O3)

Also, i'm in sixth grade just took a leson on a text book so may be wrong but i'm prety sure it's the correct nswer because x(Al)+y(O2) can not make hydregen for the h2o and for b, al+so2 = al2O3 makes sense but where did the sulfer go?

Answer:

C- 1, 2 and 5

Explanation:

There are many reactions that occur in the world, and one of the more important ones are known as combustion reactions. These reactions always involve the reaction between oxygen and another element/molecule/compound. So automatically, option 2 needs to be correct, so any answer that does not have option 2 in it (B) is incorrect.

Another important factor of combustion reactions is that they give off heat, because they are exothermic reactions, however since there is no indication of energy levels, so the answer in this question cannot be determined through that method.

One important law in all reactions is the conservation of matter, so whatever atoms enter the chemical reaction, have to exit the chemical reaction (no atoms can suddenly appear without having been there originally. For example, if only oxygen and hydrogen enter a reaction, only a product with oxygen and hydrogen can exit the reaction, it is impossible to have a product containing chlorine, if no chlorine was part of the reactants). By this logic, it is impossible to have water (H₂O) as a product, if the reactants are 1 and 2 (Al and O₂), hence option A is incorrect.

The only other option left is option C, and this option is correct because the overall balanced reaction would look like such:

4Al + 3O₂ --> 2Al₂O₃

This reaction obeys the law of conservation of matter, hence, Option C is correct.

The atoms in a ____ have a definite volume, but move quickly enough to overcome the forces of attraction between them.
A. Solid
B.Liquid
C.Gas

Answers

Answer:

liquid

Explanation:

The atoms in a liquid have a definite volume, but move quickly enough to overcome the forces of attraction between them.

What is atoms ?

The smallest component of ordinary stuff that makes up a chemical element is very much an atom.

What is liquid?

A liquid would be an incompressible flow fluid which thus takes on the shape of the container while maintaining an even volume regardless of pressure.

Therefore, the atoms in a liquid have a definite volume, but move quickly enough to overcome the forces of attraction between them.

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Which of the following particles has a negative charge?

neutrino
positron
gamma ray
all of the above
none of the above

Answers

Answer:

gamma ray

Explanation:

Answer:

None of the above.

Explanation:

We have to find the  particle which have negative charge.

1.Neutrino

It has no negative charge.The charge on neutrino particle is zero.Therefore,It is neutral particle.

Hence,option A is false.

2.Positron

It has no negative charge.The charge on the particle is +1 e.Therefore, it is false.

3.Gamma ray

It is a from of electromagnetic radiation.It has charge 0.Therefore, it has no negative charge.

Hence, option 3 is false.

Answer:None of the above.

What type of radiation is emitted when polonium-212 forms lead-208?

Answers

Answer:

Alpha radiation

Explanation:

Polonium-212 decays to lead-208 by emission of an alpha particle according to the following equation.

²¹²₈₄ Po →²⁰⁸₈₂ Pb +⁴₂ He + Energy.

Te alpha particle is a helium particle. It has 2 protons and 2 neutrons.

An object of mass 10.0 KG and volume 1000 ML and density 10 G/ML sinks in water who’s density is 1.0 G/ML. What is the mass of the water which has been displaced in kilograms

Answers

Answer:

1000 grams or 1 kg

Explanation:

All that matters for this question is the volume of the object (1000 mL) and that the density of the object is more than the density of water.

Since the density of water is 1 gm/ mL and 1000 mL have been displaced, the answer is 1000 grams or 1 kg. You can actually calculate this from a formula.

density = mass / volume

density = 1 gram/ml

Volume = 1000 mL

mass = ?

mass = volume * density.

mass = 1000 mL * 1 gram / mL

mass = 1000 grams

Notice how you are focusing on the volume of the object and the mass of the water.

55. Streptomycin is a derivative of a
a. peptides
b. Carbohydrates
d. Terenes
c.Purines​

Answers

Answer:

I believe it's B.

Explanation:

Hope my answer has helped you!

Given [OH-] = 5.5 x 10-10M Find: [H3O+] and pH Is this acidic, basic or neutral?

Answers

Answer:

Explanation:

The hydroxyl ion concentration of the solution [OH⁻] is 5.5 x 10⁻¹⁰M

Problem:

To find [H₃O⁺] and the pH of the solution:

We know that the ionic product of water has been experimentally determined and it is given for a pure water as 1.0 x 10⁻¹⁴mol²dm⁻⁶ at 25°C.

So : [H₃O⁺][OH⁻]= 10⁻¹⁴mol²dm⁻⁶ at 25°C

To find the concentration of the hydroxonium ions:

                         [H₃O⁺] = [10⁻¹⁴] / [OH⁻]

                          [H₃O⁺] = 10⁻¹⁴ / 5.5 x 10⁻¹⁰ = 1.8 x 10⁻⁵M

To find the pH of the solution, we know that ;

      pH = -log[H₃O⁺] = -log  1.8 x 10⁻⁵ = 4.74

The solution is acidic

what does it mean for something to be dissolved in water

A- it is submerged in water molecules

B-it is stirred in the water molecules

C- it is surrounded by water molecules

D-it has water molecules added to it

Answers

Dissolved in water, has been defined as the solute surrounded by the water molecules. Thus, option C is correct.

Dissolution has been defined as the process of the formation of solution with the addition of solute molecules in the solvent molecules.

What does dissolve in water means?

The dissolution has been achieved with the addition of the solute molecules in the water. The water molecules tend to act the absorbent and surrounds around the solute particles.

There has been a formation of micelle like structure that has been mediated in the dissolution of the compound in water.

Thus, dissolved in water has been defined as the solute surrounded by the water molecules. Thus, option C is correct.

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Answer:

It is surrounded by water molecules.

Explanation:

Js did it ^v^

You have 100ml of a 12m solution of HCI, and you need to dilute it to 1.5m for an experiment. How many liters will your new solution be? Show your work

Please answer asap!!!

Answers

Answer:

0.8 liters.

Explanation:

By proportion  the volume of the new solution will be (12/1.5) * 100 ML

= 800 ml = 0.8 liters.

What will most likely happen when two bromine atoms bond together?

Answers

They would form a single covalent bond and become Br2.

They would become a covalent bond and become Br2.  

What does the energy hill represent on an energy diagram?

Answers

Answer:

A

Explanation:

Explain how cells use digested food in your own words

Answers

Answer:

The digestive system uses mechanical and chemical methods to break food down into nutrient molecules that can be absorbed into the blood. ... Some animals use intracellular digestion, where food is taken into cells by phagocytosis with digestive enzymes being secreted into the phagocytic vesicles.

Explanation:

Digestion is crucial for breaking down meals into vitamins, which the frame uses for energy, growth, and cellular repair. food and drink need to be modified into smaller molecules of vitamins before the blood absorbs them and incorporates them into cells all through the frame.

What takes place in the digested meals?

The small gut absorbs the maximum of the vitamins in your food, and your circulatory system passes them on to different components of your body to keep or use. Special cells help absorb vitamins across the intestinal lining into your bloodstream.

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a propane torch is lit inside a hot air balloon during preflight preparations to inflate the balloon. which condition of the gas remains constant

Answers

Answer:

The pressure remains constant

Explanation:

this is an example in charles law where as the temperature increases so does the volume.

Answer:

The correct answer is "Pressure".

Explanation:

As the propane torch is ignited inside the hot air balloon, the volume of the gas increases and the temperature of the gas also increases. This causes the density of the gas to decrease, keeping the pressure constant throughout the balloon, regardless of the small amount of gas lost through the balloon hole.

Have a nice day!

at 450 mm Hg a gas has a volume of 760 L, what is its volume at standard pressure​

Answers

Answer:

450.0 L.

Explanation:

We can use the general law of ideal gas: PV = nRT.

where, P is the pressure of the gas in atm.

V is the volume of the gas in L.

n is the no. of moles of the gas in mol.

is the general gas constant,

T is the temperature of the gas in K.

If n and T are constant, and have different values of P and V:

(P₁V₁) = (P₂V₂).

V₁ = 760.0 L, P₁ = 450.0 mm Hg,

V₂ = ??? L, ​P₂ = 760.0 mm Hg (standard pressure = 1.0 atm = 760 mm Hg).

∴ V₂ = (P₁V₁)/(P₂) = (760.0 L)(450.0 mm Hg)/(760.0 mm Hg) = 450.0 L.

PLEASE PLEASE PLEASE HELP WILL GIVE BRAINLIEST + 60 POINTS !!!!!
Professor Bothwell determined from the wrapper the number of calories in a candy bar. He then burned the entire candy bar and measured the amount of heat released. His experiment was most likely designed to demonstrate _________.
A the law of conservation of matter
B the law of disorder
C the law of conservation of energy
D the law of constant composition

Answers

His experiment was most likely designed to demonstrate the law of conservation of energy, which states that energy the total energy of an isolated system remains constant; it is said to be conserved over time. This law means that energy can neither be created nor destroyed; rather, it can only be transformed or transferred from one form to another. So, he was trying to demonstrate that the amount of heat energy released was equal to the number of calories (amount of energy) stated to be in the candy bar.

what type of bonding is butane​

Answers

It's worth noting that butane is also referred to as n-butane. ... Based on the diagram, butane is considered to be an alkane. It not only contains single covalent bonds, but also has carbon and hydrogen atoms present in its structure.

16. In a reaction that has reached equilibrium,
a. The forward and reverse reactions are occurring at the same rate.
b. The reactants and products are in equal concentrations.
C. The forward reaction has gone further than the reverse reaction.
d. There are equal numbers of atoms on both sides of the equation.
e. A, B, and D are correct.

Answers

Answer:

i think b

Explanation:

Answer:

None of the above.

Explanation:

a, c, and d are correct.

a. In a reaction at equilibrium, the forward and reverse reactions are occurring at the same rate.

c. If the position of equilibrium lies to the right, the forward reaction has "gone further" than the reverse reaction.

d. Even if the position of equilibrium is far to the right, the balanced equation for the equilibrium has equal numbers on each side of the equation. For example, in the equilibrium reaction 2H₂ + O₂ ⇌ 2H₂O, the position of equilibrium is far to the right but there are equal atoms on each side of the reaction.

b. is wrong. It is exceptionally rare for reactants and products to have the same concentrations at equilibrium.

Energy release is to condensation as energy input is to _________.
A. deposition
B. sublimation
C. freezing
D. dispersion

Answers

Answer:

sublimation

Explanation:

the other choices release energy

Hey mate here's your answer

Ans: B, Sublimation. This is because you must input energy in order to get a solid to go directly to a gas while the other ones release energy (and dispersion has nothing to do with these at all)

hope so the following may help you thanks

_____are charged atoms or groups of atoms. Compounds Ions Molecules Elements

Answers

Answer:

Ions

Explanation:

because they contain positive and negative charges

Answer:

The grouped atoms with charges are called ions.

Explanation:

When an atoms losses electron, then it forms positive ion or cation whereas when an atoms losses electron, then it forms negative ion or anion. The attraction between two ions leads to formation of the ionic bond.

There are many types of ions which includes monoatomic ions which contains one atoms and polyatomic ions which contains two or more atoms. When atoms are converted into ions, then the atom is undergoing ionization process.  

What separation technique would most likely be used if a solvent were saved?

Answers

Answer:

Distillation

Explanation:

If the solute is a solid or a liquid with a boiling point at least 30 °C different from that of the solvent, you can use the technique of distillation.

The solvent will boil before the solid or a higher-boiling liquid.

A liquid solute with a lower boiling point than the solvent will boil off first, and then you can distill off the solvent.

Answer:

Distillation

Explanation:

Distillation is a process known long ago and according to some authors was created by the Alchemists at a time where Chemistry was not yet recognized as Science and was closely linked to religious precepts.

Basically the distillation process is a process of physical separation and is used to separate homogeneous mixtures from heating. To separate a solid-liquid type mixture we use simple distillation and to separate liquid-liquid mixtures we use fractional distillation.

The reactants of two chemical reactions are shown.

Reaction 1: HCl and NaOH
Reaction 2: Cu and AgNO3

Which reaction is likely to be a redox reaction?
A) Reaction 1, because hydrogen and hydroxide atoms will be formed.
B) Reaction 1, because all ions formed will retain their electrostatic charges.
C) Reaction 2, because the electrostatic charge on copper ion will change.
D) Reaction 2, because the charges on each side of the equation will be unequal.

Answers

Answer:

C)

Explanation:

The first step is to write the whole reactions:

A)[tex]HCl~+~NaOH~->~H_2O~+~NaCl[/tex]

B)[tex]Cu~+~AgNO_3~->~Cu(NO_3)_2~+~Ag[/tex]

In A) reaction we will have an acid-base reaction (double replacement reaction). In this reaction, the oxidation number is the same for all atoms on both sides of the reaction.

In B) the oxidation number of Cu will change from zero to +2 and the oxidation number of Ag will change from +1 to zero. So, the Cu will be oxidized and the Ag will reduce. So, if we have a redox reaction for B) the charge must be equal on both sides.

Which shows the correct order of steps during the formation of an ionic bond?
a) lons are attracted to each other - Electrons are transferred -- An ionic compound forms
b) An ionic compound forms – lons are attracted to each other Electrons are transferred
c) Electrons are transferred – lons form lons are attracted to each other
d) lons form – Electrons are transferred - lons are attracted to each other

Answers

Answer: c.

Electrons are transferred → Ions form → Ions are attracted to each other

have a great day

Explanation:

Answer:

Electrons are transferred – lons form lons are attracted to each other

Explanation:

Let us use the formation of NaCl as an example. Sodium ion forms by transferring one electron to chlorine and chloride ions form by accepting this one electron from sodium hence electron transfer must be the first step in ionic bond formation. Once electrons are donated and received, ions are formed which are immediately attracted to each other to form the ionic compound.

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