Which figure is the percent of energy at which one trophic level generally flows to the next level?
1)10%
2)35%
3)50%
4)100%

Answers

Answer 1

About 10% of the energy at one trophic level is transferred to the next, with the rest being used for metabolism or lost as heat, explaining why there are typically no more than four trophic levels in a food chain. Hence option A is correct.

The figure that represents the percent of energy transferred from one trophic level to the next is generally about 10%. Energy is passed up a food chain or web from lower to higher trophic levels, and it is depicted by an energy pyramid. The other 90% of the energy is used for metabolic processes or given off to the environment as heat. This significant loss of energy at each step explains why typically there are no more than four trophic levels in a food chain or web, because there isn't enough energy left to support more levels.Hence option A is correct.


Related Questions

Which element is present in all amino acids but not necessarily in fats or carbohydrates?

Answers

Nitrogen is the answer muh dude
Final answer:

The element that is present in all amino acids but not necessarily in fats or carbohydrates is Nitrogen. This is due to the amino and carboxyl groups present in all amino acids, both of which contain Nitrogen atoms.

Explanation:

The element present in all amino acids but not necessarily in fats or carbohydrates is Nitrogen. This is due to the structure of amino acids, which all contain an amino group (-NH2) and a carboxyl group (-COOH). Both of these groups contain Nitrogen atoms.

As name implies, "amino acid", these molecules consist of both an amino group and a carboxyl group. This basic structure is common to all 20 types of amino acids found in proteins. A variation in each amino acid is the R group (or side chain), which differs for each amino acid.

However, carbohydrates are composed of carbon, hydrogen, and oxygen, and fats are composed of glycerol and fatty acids, which also contain carbon, hydrogen, and oxygen atoms. So, they may not necessarily contain Nitrogen, which makes Nitrogen a unique constituent of amino acids.

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When a rock falls from outer space all the way to the groung, its called a?

Answers

It's called a meteorite.

An atom of magnesium has lost two electrons. it is known as a(n) ________. an atom of magnesium has lost two electrons. it is known as a(n) ________. cation molecule anion neutral atom isotope

Answers

Answer: Option (a) is the correct answer.

Explanation:

Atomic number of magnesium is 12 and electrons are distributed in its shell as 2, 8, 2. So, in order to attain stability magnesium easily loses two electrons.

Therefore, there will be decrease in number of electrons as a result, a positive charge will occur and thus, a cation will be formed.

Thus, we can conclude that an atom of magnesium has lost two electrons. It is known as a cation.

Final answer:

In Chemistry, a neutral atom becoming a cation by losing electrons is explained. Metals like magnesium form cations by losing electrons based on the periodic table. Predicting the formation of cations using the periodic table is highlighted.

Explanation:

Cation: When an atom loses electrons, it becomes positively charged and is called a cation. For example, a magnesium atom that loses two electrons forms a Mg2+ cation as it aims to achieve the electron configuration of a noble gas.

Metal Ions: Metals tend to form cations by losing electrons. A metal like magnesium in group 2 loses two electrons to form a 2+ cation, and the resulting ion is named after the metal itself, like Mg2+ as a magnesium ion.

Periodic Table: The periodic table guides us in predicting whether an atom will form an anion or cation. Main-group metals lose electrons to achieve noble gas configurations, leading to the formation of cations with predictable charges.

Write a complete set of quantum numbers for the fifth electron added to a hydrogen ion (i.e., the fifth electron in any electron configuration).

Answers

n=
l=
m(l)=
m(s)=

start with H^+ (no electrons) , then adding 5 electrons will be  1s2 2s2 2p1
so for the 5th electron 
n = 2
l = 1
ml = -1
ms = 1/2

Answer:

Explanation:

In atoms, there are a total of four quantum numbers: the principal quantum number (n), the orbital angular momentum quantum number (l), the magnetic quantum number (ml), and the electron spin quantum number (ms).

The Hydrogen ion has no electron to begin with, so upon adding five electrons, it's electronic configuration becomes;

Is2 2s2 2p1

The principal quantum number (n) = 2 (Second energy level)

The value of l is dependent on the principal quantum number n. Unlike n, the value of l can be zero. It can also be a positive integer, but it cannot be larger than one less than the principal quantum number (n-1):

Hence, l = 2-1 = 1

The magnetic quantum number ml determines the number of orbitals and their orientation within a subshell. Since ml must range from –l to +l, then ml can be: --1, 0, or 1.

Unlike n, l, and ml, the electron spin quantum number ms does not depend on another quantum number. It designates the direction of the electron spin and may have a spin of +1/2, represented by↑, or –1/2, represented by ↓

Breaking which type of bond would require the most energy?

Answers

It takes most energy to break a Covalent bond.

Diatomic molecules will be nonpolar when _____.

A) a pair of shared electrons is located closer to one atom than the other.

B) both atoms are the same element.

C) there is a difference in electronegativity.

D) atoms have a different number of protons.

Answers

Answer: -

Diatomic molecules will be non polar when

B) both atoms are the same element.

Explanation: -

Non polar means the electrons in a bond between the two atoms are present at the same distance from the two atoms.

The electrons get closer to one atom over the other if the electronegativity if different.

The difference in electronegativity arises due to different number of protons.

Thus, Diatomic molecules will be non polar when

B) both atoms are the same element.

An atom contains 3 protons, 4 neutrons, and 3 electrons. what is its mass number

Answers

Because the atom contains 3 protons, it is Lithium. The isotope is specifically Lithium-7 but Lithium's average mass number is 6.941 amu.

Which of the following is a nonrenewable resource?

A. Gold
B. Carbon
C. River
D. Tree

Answers

Carbon, since once it is burned, it is trapped as CO2.

Chlorine has the electron configuration 1s22s22p63s23p5. how many valence electrons does it have?

Answers

7 because the third energy level​ isn't filled so 3s2 and 3p5 are valence.

Chlorine has total 17 electrons in its atom. Out which 10 are inner or core electrons and 7 are valence electrons located in the 3s and 3p shells.

What is chlorine ?

Chlorine (Cl) is 17th element in periodic table. It is a non metal located in the 17th group of periodic table. Cl contains 17 electrons and 17 protons. It have an atomic mass of 35.5 g/mol.

Out of the 17 electrons, 10 electrons of Cl are located in the inner shells or orbitals 1s, 2s, and 2p. The remaining 7 electrons are located in the valence shells 3s and 3p. 2 electrons in 3s orbital and 5 electrons in 3p orbital.

Cl needs one more electron to achieve octet in valence shell. Hence, it is a highly electronegative atom forming ionic bonds with metals as well covalent bonds with other nonmetals.

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Will give BRAINLIEST!!!!!
Write an equation for the reaction if one occurs.
(a) Iron (III) with CuSO4 solution
(b) Copper (I) with FeSO4 solution
(c) Tin (IV) with Cu (NO3) 2 solution

Answers

Answer c so im sure the reaction melted or its b

A magma cools the first minerals to ____ are rich in iron, calcium and magnesium

Answers

A magma cools the first minerals to form  are rich in iron, calcium and magnesium

I think the answer is form

Round 0.0952 km to 2 significant figures:

A: 0.09
B: 0.095
C: 0.1

Answers

The Answer Is B: 0.095

Answer :

The correct answer is option B.

Explanation :

Significant figures : The figures in a number which express the value of magnitude of a quantity to a specific degree of accuracy is known as significant digits.

Given value = 0.0952

[tex]0.0952 km\approx 0.095 km[/tex]

'Zeros' before and after decimal point are insignificant. But when 'zeros' is coming between two numerals then it is count as significant.

A modern penny weighs 2.5 g but contains only 0.063 g of copper (cu). how many copper atoms are present in a modern penny?

Answers

Answer:

[tex]5.969\times 10^{20} atoms[/tex] are present in a modern penny.

Explanation:

Mass of copper in modern penny = 0.063 g

Moles of copper : n

[tex]n=\frac{0.063 g}{63.55 g/mol}=0.0009913 mole[/tex]

Number of copper atoms in 0.0009913 mole = n

[tex]N=n\times N_A[/tex]

[tex]N=0.0009913 mol\times 6.022\times 10^{23} mol^{-1}=5.969\times 10^{20} atoms[/tex]

There are 5.97×10²⁰ atoms of copper in the penny.

From Avogadro's hypothesis, we understood that 1 mole of any substance contains 6.02×10²³ atoms.

This implies that 1 mole of copper, Cu contains 6.02×10²³ atoms.

Recall:

1 mole of copper = 63.55 g

Thus,

63.55 g of Cu = 6.02×10²³ atoms

Finally, we shall determine the number of atoms present in 0.063 g of copper, Cu. This can be obtained as follow:

63.55 g of Cu = 6.02×10²³ atoms

Therefore,

0.063 g of Cu = 0.063 × 6.02×10²³ / 63.55

0.063 g of Cu = 5.97×10²⁰ atoms

Thus, 0.063 g of Cu contains 5.97×10²⁰ atoms

Therefore, we can conclude that there are 5.97×10²⁰ atoms of copper in the penny.

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What are some of the techniques by which mixtures can be resolved into their components?

Answers

Distillation, filtration, evaporation are some of the techniques by which mixtures can be resolved into their components.Distillation is the process of separating the component or substances from a liquid mixture by selective evaporation and condensation.Filtration is any of various mechanical, physical or biological operations that separate solids from fluids (liquids or gases) by adding a medium through which only the fluid can pass.Evaporation is a type of vaporization of a liquid that occurs from the surface of a liquid into a gaseous phase that is not saturated with the evaporating substance.

The density of iron is about blank times greater than water.

Answers

Iron's density is about 7.9 times greater than that of water. This is calculated by dividing the density of iron (7.9 g/cm³) by the density of water (1 g/cm³).

The density of iron is approximately 7.9 g/cm³, while the density of water is 1 g/cm³ under standard conditions. Therefore, to find how many times greater the density of iron is compared to water, you can perform a simple division: 7.9 g/cm³ (density of iron) divided by 1 g/cm³ (density of water).

This calculation reveals that iron is about 7.9 times denser than water.

When working through density problems, it's important to compare densities in the same units. Since the density of water is taken as a baseline of 1 g/cm³, it allows for an easy comparison with other substances.

In the case of iron, this substantial difference in density has practical implications, such as the fact that iron sinks in water and is used for constructions that require strength and weight, like rebar. This density also affects the speed of sound travel, as it moves faster through iron than through air because of iron's higher rigidity and density.

In subatomic particles what changes and what remains the same in isotopes

Answers

What changes in Isotopes is the nucleus, the number of protons ,however, remains the same.

How can we see all four colors from a hydrogen gas discharge tube simultaneously?

Answers

Final answer:

We can see all four colors from a hydrogen gas discharge tube simultaneously by passing the light through a prism or diffraction grating, separating the light into its constituent wavelengths. These wavelengths result from the process of electrons cascading down through the different energy levels of the hydrogen atoms, emitting energy as light. This process, known as fluorescence, allows us to view the four colors simultaneously.

Explanation:

To see all four colors from a hydrogen gas discharge tube simultaneously, one must understand the concept of emission lines and how a tube of hydrogen gas generates light. When an electric discharge passes through the tube, the H₂ molecules are separated into individual H atoms and light is emitted. This light is typically blue-pink in color due to the individual wavelengths of light, or photons, released.

A helpful illustration of this can be gained by passing the gas's light through a prism or diffraction grating, producing a line spectrum. This process separates the light into its constituent wavelengths, yielding four distinct colors that can be perceived simultaneously. Each emission line represents a different color because each line corresponds to a single wavelength of light, with each wavelength correlating to a specific energy level.

These wavelengths are a result of the electrons captured by the hydrogen nuclei cascading down through the different energy levels and emitting energy in the form of light. This is a process known as fluorescence, and it allows us to view the four colors from a hydrogen gas discharge tube at the same time.

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Final answer:

The four colors in a hydrogen gas discharge tube can be seen simultaneously when the light emitted by charged H atoms is passed through a prism or diffraction grating. These colors are a result of electrons transitioning between different energy levels within the hydrogen atom, each transition emitting photons of a specific wavelength and hence a specific color.

Explanation:

To see all four colors from a hydrogen gas discharge tube simultaneously, we utilize a phenomenon known as the emission spectrum. When an electric discharge passes through a tube containing hydrogen gas at low pressure, the H₂ molecules are broken apart into separate H atoms. This action produces light, a blue-pink color that is a combination of photons of four visible wavelengths. This light, when passed through a diffraction grating or a prism, separates into its constituent wavelengths, each representing a specific color.

The emission lines are a result of electrons in the hydrogen atoms moving between different energy levels. When electrons move from a higher energy level to a lower one, they emit energy in the form of photons, the discrete packets of light. The frequency and color of the light emitted depend on the energy difference between the two levels. For instance, the red hydrogen line is from the transition that releases the most energy.

The emission spectrum of hydrogen, notably, consists of lines of four distinct colors: red, blue, violet, and a second, fainter red. The presence of these four different emission lines corresponds to the four unique transitions that the electrons in a hydrogen atom can undergo. Therefore, when you look at the hydrogen gas discharge tube, you are actually seeing the combined light from millions of these transitions occurring simultaneously.

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Does the reaction of a burning candle give off or absorb heat

Answers

The reaction of a burning candle gives off heat and is an exothermic reaction. It does not absorb heat because it does not cool down its surroundings as the candle burns. The answer is the reaction of a burning candles gives off heat.

Nitrogen reacts with hydrogen to produce ammonia gas as follows.

mc023-1.jpg

How many moles of nitrogen would react with excess hydrogen to produce 520 mL of ammonia?
0.0116 mol
0.012 mol
0.0232 mol
0.024 mol

Answers

Final answer:

In the given reaction, 1 mole of nitrogen reacts with 3 moles of hydrogen to produce 2 moles of ammonia. Given a volume of 520 mL of ammonia, the number of moles of nitrogen required can be calculated using the ideal gas law. The correct answer is 0.0232 mol.

Explanation:

In the given reaction, 1 mole of nitrogen reacts with 3 moles of hydrogen to produce 2 moles of ammonia. From the information provided in the question, the volume of ammonia produced is 520 mL. To calculate the number of moles of nitrogen required, we can use the balanced equation:

1 mole N2 : 3 moles H2 : 2 moles NH3

Therefore, 520 mL of NH3 is equivalent to 520/1000 L = 0.52 L

Using the ideal gas law, we can calculate the number of moles of NH3:

moles = (volume in liters) / (molar volume)

moles = (0.52 L) / (22.4 L/mol) = 0.0232 mol

Therefore, the correct answer is 0.0232 mol.

The correct answer is 0.0116 mol of nitrogen would react with excess hydrogen to produce 520 mL of ammonia.

To solve this problem, we need to use the stoichiometry of the balanced chemical equation for the reaction between nitrogen [tex](N_2)[/tex] and hydrogen [tex](H_2)[/tex] to form ammonia [tex](NH_3)[/tex]. The balanced equation is:

[tex]\[ N_2(g) + 3H_2(g) \rightarrow 2NH_3(g) \][/tex]

From the ideal gas law, we know that:

[tex]\[ PV = nRT \][/tex]

where:

- [tex]\( P \)[/tex] is the pressure,

- [tex]\( V \)[/tex] is the volume,

- [tex]\( n \)[/tex] is the number of moles,

- [tex]\( R \)[/tex] is the ideal gas constant, and

- [tex]\( T \)[/tex] is the temperature in Kelvin.

We can rearrange the ideal gas law to solve for the number of moles [tex]\( n \)[/tex]:

[tex]\[ n = \frac{PV}{RT} \][/tex]

Given that the volume [tex]\( V \)[/tex] of ammonia is 520 mL (or 0.520 L), we need to convert this to liters for the calculation. The pressure [tex]\( P \)[/tex] and temperature [tex]\( T \)[/tex] are not given, so we assume standard temperature and pressure (STP) conditions, where [tex]\( P = 1 \) atm[/tex] and [tex]\( T = 273.15 \) K[/tex]. The value of [tex]\( R \)[/tex], the ideal gas constant, is 0.0821 L·atm/(mol·K).

First, let's calculate the number of moles of ammonia produced:

[tex]\[ n_{NH_3} = \frac{PV}{RT} \][/tex]

[tex]\[ n_{NH_3} = \frac{(1 \text{ atm})(0.520 \text{ L})}{(0.0821 \text{ L.atm/(mol.K)})(273.15 \text{ K})} \][/tex]

[tex]\[ n_{NH_3} = \frac{0.520}{22.41} \][/tex]

[tex]\[ n_{NH_3} \approx 0.0232 \text{ mol} \][/tex]

Now, using the stoichiometry of the balanced equation, we know that 2 moles of [tex]NH_3[/tex] are produced from 1 mole of [tex]N_2[/tex]. Therefore, to find the moles of [tex]N_2[/tex] that reacted, we divide the moles of [tex]NH_3[/tex] by 2:

[tex]\[ n_{N_2} = \frac{n_{NH_3}}{2} \][/tex]

[tex]\[ n_{N_2} = \frac{0.0232 \text{ mol}}{2} \][/tex]

[tex]\[ n_{N_2} = 0.0116 \text{ mol} \][/tex]

Thus, 0.0116 mol of nitrogen would react with excess hydrogen to produce 520 mL of ammonia under STP conditions. This matches option (a) 0.0116 mol.

What happens when you put the wrong chemicals together.?

Answers

When putting two of the wrong chemicals together it may cause a reaction that is different from what the experiment was meant to be, or nothing could happen.

Hope this helps!! :)

Bears and salmon have a predator - prey relationship . What would most likely happen to the bear population if the salmon population increase ?

Answers

The population would grow and live easier.
Hello! Some bears only rely on salmon as the other bears eat most of the other foods available. So, if the salmon increased then all of the bears would have something to eat which would allow the bear population to increase as well!

I hope this helped!

I am, yours most sincerely,
SuperHelperThingy

What are the elements with atomic numbers from 58 to 71 in the periodic table called?

Answers

They are Lanthanides

A lily plant on a pond is an example of which food chain level

Answers

Final answer:

A lily plant on a pond is an example of a primary producer in a food chain.

Explanation:

In a food chain, the organisms are classified into different trophic levels based on their feeding habits. The first trophic level includes the primary producers, which are typically photosynthetic organisms like plants or phytoplankton. The organisms that consume the primary producers are known as primary consumers, and they belong to the second trophic level. The lily plant in a pond would be considered a primary producer, which is part of the first trophic level in the food chain.

Explain why samples of platinum and copper can have the same extensive properties but not the same intensive properties

Answers

Extensive properties include mainly mass and volume. Platinum and copper can have the same extensive properties because depending on the type of sample size of each, you could get them to have the same volume and/or mass. However, since elements are given their intensive properties based on the number of protons they have, platinum and copper will never have the same intensive properties because each has a unique number of protons.

When iron(III) nitrate dissolves in water, what ion is attracted to the oxygen atom of the water molecule? What ion is attracted to the hydrogen atoms?

Answers

Hello There!

The answers are in this order:
 - Hydrogen (Hydrogen is produced in this)
- H2O or water.

Hope This Helps You!
Good Luck :)

Which particles in the gas phase are attracted with the weakest intermolecular forces? in water?

Answers

The choices for this question are N2, O2 and H2O. I believe the closest correct answer would be N2. H2O would have the strongest one as it is capable of hydrogen bonding which is one strong intermolecular force. To compare oxygen and nitrogen, we look at properties of both substances. Oxygen would have a higher boiling point than nitrogen which means oxygen would require more energy to allow phase transition so it should have a stronger force than nitrogen. Thus, nitrogen would have the weakest intermolecular force.

Answer:

Nitrogen in the gas phase is attracted by weaker inter-molecular forces.

Further details:

Nitrogen has London dispersion forces which have weak inter-molecular interactions.

London dispersion forces:

The London dispersion force is the feeblest inter-molecular force, and is a temporary attractive force that results when the electrons in two adjacent atoms positions that make the atoms form transitory dipoles. This force is sometimes called an induced dipole attraction. London forces are the attractive forces that root non-polar substances to reduce to liquids and to freeze into solids when the temperature is dropped adequately.

London force (fluctuating dipole–induced dipole), which rises due to the non-zero immediate dipole moments of all atoms and molecules is a type of weak inter-molecular interaction. Such polarization can be persuaded either by a polar fragment or by the repulsion of negatively charged electron clouds in non-polar molecules. Thus, London interactions are produced by accidental variations of electron compactness in an electron cloud. An atom with a large number of electrons will have a greater related London force than an atom with fewer electrons. The dispersion (London) force is the most significant constituent because all materials are polarizable, whereas Keesom and Debye forces need permanent dipoles. The London interaction is universal and is present in atom-atom interfaces as well. For numerous causes, London interactions (dispersion) have been deliberated relevant for interactions between macroscopic bodies in reduced systems.

Answer details:

Subject:  Chemistry

Level:  High school

Keywords:

• Nitrogen

• London dispersion forces

• Weak molecular attraction

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A container has a mass of 1293 metric tons. What is the mass of the container in grams?

Answers

Answer:

hello

Explanation:

your friend just challenged you to a race. you know in order to beat him, you must run 15 meters within 20 seconds in a northern direction. what does your average velocity need to be to win the race? (2 points) .5 meters per second, north .75 meters per second, north 1.3 meters per second, north 300 meters per second, north

Answers

velocity can be calculated using the following rule:
velocity =distance/time
now, the distance is given 15 meters and the time is 20 seconds.
so, just directly sibstitute in the equation to get the velocity as follows:
velocity = 15/20 = 0.75 m/sec

The right choice is 0.75 m/sec north.
Hi there,

the answer is 0.75 m/sec north.

Hope this helps :)

Which molecule is usually comprised of six carbons in a ring (with six sides)?

Answers

The hydrocarbon is usually named using the prefix that would indicate or entail how many carbon are present in it. For six carbons, the name would begin with hexa-. For cyclic molecule, the name would begin further with cyclo-. Thus, for the molecule that is described above, the name would be, cyclohexane. 

Another, more well-known, component is the cyclic molecule with alternating double bonds, this will be named, benzene. 

What changes occur at the molecular level when ice cream melts and forms a liquid?

Answers

When ice cream melts from solid to liquid, the motion of the molecules increases. This is because as the phase change moves from solid to liquid to gas, entropy increases which increases the probability of the molecules to collide and move in the system. This increase may be because of the increase in temp, probable cause of the melting of icecream.

Explanation:

It is known that before melting ice cream is present in a solid state so, its molecules are much closer due to which it has retained its shape.

But as its molecules absorb energy from the surroundings the they tend to gain kinetic energy. Due to this there will be increase in collision between its particles and they will move apart from each other. As a result, ice cream will start to melt.

Therefore, when ice cream melts and forms a liquid then molecules move away from each other at the molecular level.

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