Using the ecosystem model above, develop a constructed
response of whether energy can flow from each example listed
below. If energy does transfer, give an example
• animal to animal
•plant to animal
• animal to plant
•plant to plant

Using The Ecosystem Model Above, Develop A Constructedresponse Of Whether Energy Can Flow From Each Example

Answers

Answer 1

Answer:

Energy transfer in ecosystem follows the 10 % law.

Explanation:

In an ecosystem model, the transfer of energy starts with the base level that is from the grass level to the grasshopper that is the primary consumer. This is a plant to animal. The energy transferred from grasshopper to snake is an example of the animal to animal. The dead and decaying animal may transfer this energy back to the plant through the soil.

Related Questions

which of the following are two main aspects of the dds life cycle?

Answers

The following are two main aspects of the DDS (Data Distribution Service) life cycle are the publication and subscription phases.

In the publication phase, a data producer publishes data to a DDS domain, this data is then stored in a cache and made available to potential subscribers. In the subscription phase, data consumers subscribe to the data they are interested in and receive updates in real-time as the data changes. This process allows for efficient and scalable data sharing across distributed systems. Throughout the DDS life cycle, several other key processes occur, including discovery, quality of service management, and data filtering.

Discovery involves the automatic discovery of available data and data producers within a DDS domain. Quality of service management enables customization of data communication based on the specific requirements of the data consumers. Data filtering allows subscribers to receive only the relevant data they require, reducing the amount of unnecessary data transfer and improving system efficiency. So therefore the publication and subscription phases are the two main aspects of the DDS (Data Distribution Service) life cycle.

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Which of the following is a common site to measure the pulse in humans?
A. Radial artery
B. Jugular vein
C. Ulnar artery
D. Brachial artery

Answers

The common site to measure the pulse in humans is the radial artery, which is located on the wrist on the thumb side. It is easily accessible and is the most commonly used site for measuring the pulse.

The pulse is a measurement of the heart rate, which is the number of times the heart beats per minute. It is an important indicator of a person's health, and changes in the pulse rate can indicate underlying health issues. The normal pulse rate for adults is between 60 and 100 beats per minute. However, the pulse rate can vary depending on factors such as age, physical activity, stress levels, and underlying health conditions. For example, athletes and people who exercise regularly may have a lower resting heart rate, while people with certain heart conditions may have a higher pulse rate. To measure the pulse rate, the person measuring it needs to place their index and middle fingers on the radial artery and press down gently. They should count the number of beats they feel for one minute.

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Student Response Sheet
MAPPING ACTIVITY 3A: AERIAL SURVEY OF CALIFORNIA GEOLOGY AND GEOGRAPHY

Can someone help on doing this I am really lost and don’t know what to do I just need to locate the 3 points that’s all :(

Student Response SheetMAPPING ACTIVITY 3A: AERIAL SURVEY OF CALIFORNIA GEOLOGY AND GEOGRAPHYCan someone

Answers

This prompt is about locating the epicenter of an earthquake. In seismology, the epicenter, epicentre, or epicentrum is the point on the Earth's surface directly above a hypocenter or focus, where an earthquake or subsurface explosion starts.

How to locate the epicenter of a earthquake

When an earthquake happens, it sends out waves that travel through the ground, and we can measure those waves using special machines called seismographs. To find out where the earthquake happened, we need to use data from at least three seismograph stations that recorded the earthquake.

We start by looking at the time it takes for different waves to reach each station. First, we look at the arrival time of the primary (P) wave, which travels faster and arrives first. Then, we look at the arrival time of the secondary (S) wave, which is slower and arrives second. We calculate the time difference between the arrival of the P and S waves at each station.

Next, we use the time difference to figure out how far away the earthquake was from each station. We use a special formula to do this, which takes into account how fast the waves travel through the Earth's crust.

We then plot the distance from each station on a map, creating circles around each station with the distance as the radius. Where the three circles overlap is the epicenter of the earthquake. This is the point on the Earth's surface directly above where the earthquake started.

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Which type of cell transport is used by chloroplasts to make hydrogen (H*) ions move against their concentration gradient?
O A. Exocytosis
O B. Passive transport
O C. Active transport
O D. Diffusion ​

Answers

Answer:

The answer to the question is C

help ..................................................................................................................

help ..................................................................................................................

Answers

Answer: The answer is Tt, tt, Tt, tt

Explanation:

How many amino acids must be obtained in the diet because they cannot be made by the body?
2
5
10
20

Answers

amino acids we obtained in the diet about 10

Consider the surface with parametric equationsr(s,t)=⟨st,s+t,s−t⟩.A) Find the equation of the tangent plane at (2,3,1).B) Find the surface area under the restriction s2+t2≤1.

Answers

A) The equation of the tangent plane at (2,3,1) is x-2y+3z=1. B) The surface area under the restriction \(s^2+t^2≤1\) can be calculated using the surface integral of the vector field r(s,t) with respect to the area element dA.

A) To find the equation of the tangent plane at (2,3,1), we first find the partial derivatives of r(s,t) with respect to s and t. These are ∂r/∂s = ⟨t,1,1⟩ and ∂r/∂t = ⟨s,1,-1⟩, respectively. Evaluating these at (2,3,1), we get ∂r/∂s = ⟨3,1,1⟩ and ∂r/∂t = ⟨2,1,-1⟩. The normal vector to the tangent plane is the cross product of these two vectors, which is ⟨2,-5,-1⟩. Thus, the equation of the tangent plane is 2(x-2) - 5(y-3) - (z-1) = 0, which simplifies to x-2y+3z=1.

B) To find the surface area under the restriction \(s^2+t^2≤1\), we first parameterize the surface as r(s,t)=⟨st,s+t,s−t⟩ with 0≤s,t≤1. Then, we compute the surface integral of the vector field r(s,t) with respect to the area element dA. This gives us the surface area of the portion of the surface that satisfies the given restriction. Using the formula for the surface integral, the surface area can be calculated as the double integral of the magnitude of the cross product of the partial derivatives of r(s,t) with respect to s and t, integrated over the region \(s^2+t^2≤1\).

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what evidence is there that climatic cooling caused the late
devonian mass extinction? what may have caused the late devonian
climatic cooling

Answers

The Late Devonian mass extinction is thought to have been caused by a combination of factors including a period of cooling climate known as the Late Devonian cooling event.

This cooling event has been identified in the fossil record by an increase in abundance of glacial deposits and a decrease in the abundance of tropical fossils.

Evidence of this cooling event can also be found in the geochemical record, which shows a decrease in the amount of carbon dioxide in the atmosphere. This decrease in atmospheric carbon dioxide is thought to have been a result of a decrease in photosynthesis due to the cooling temperatures.

The exact cause of this climatic cooling event is still unknown, but potential causes include a decrease in solar activity, volcanic activity, and changes in ocean circulation. Ultimately, the Late Devonian cooling event may have been the primary trigger for the Late Devonian mass extinction.

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Son las mitocondrias redes interconectadas en vez de organelos independientes

Answers

Answer:

no

Explanation:

Summarize how members of Kingdom Protista can cause a major disruption in the equilibrium of a human population, give examples.

Answers

Answer:

Kingdom protista equilibrium

look at the statements here. a protein kinase, kinase 1 phosphorylates protein x. phosphorylation of protein x activates protein x. once activated, protein x stimulates the production protein y and z. in order to function, kinase 1 requires the presence of metal a. however, in the presence of protein a, kinase 1 is nonfunctional.

Answers

The statement describes a signaling pathway where kinase 1 activates protein X, which further stimulates the production of protein Y and Z, and its function is dependent on the presence of metal A, while protein A inhibits its function.

The statement describes a biochemical pathway involving three proteins: kinase 1, protein x, and protein y and z. Kinase 1 activates protein x through phosphorylation, which in turn stimulates the production of protein y and z. Kinase 1 requires the presence of metal A to function, but protein A inhibits its activity.

Proteins are large biomolecules made up of amino acids that are folded into complex three-dimensional structures. They are essential to many biological processes and functions, including catalyzing chemical reactions, transporting and storing molecules, providing structural support, and transmitting signals between cells. Proteins are involved in a wide range of biological activities, such as DNA replication, metabolism, and immune system function. They are composed of 20 different amino acids that are linked together by peptide bonds, and the sequence of these amino acids determines the protein's structure and function. The structure of a protein can be described at different levels, including the primary structure (amino acid sequence), secondary structure (alpha-helices and beta-sheets), tertiary structure (overall three-dimensional shape), and quaternary structure (interactions between multiple protein subunits).

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mr. huff and puff exhales normally; then, using forced expiration, he exhales as much air as possible. the volume of air still remaining in his lungs is called

Answers

The volume of air still remaining in Mr. Huff and Puff's lungs after exhaling as much air as possible using forced expiration is called the residual volume.

The lungs never completely empty of air even when you exhale as much air as possible. The residual volume (RV) is the volume of air that remains in your lungs after maximal expiration. The residual volume is what helps maintain the alveoli open, allowing oxygen to flow in and carbon dioxide to flow out during the respiratory cycle, even though the lungs deflate and inflate with each breath taken.

The RV can't be measured by spirometry; instead, it must be determined by another technique. The residual volume is computed in the context of lung function testing as it may provide important diagnostic information and may be utilized to aid in the treatment of patients with obstructive lung illnesses. The RV, along with other lung volumes, is a useful tool for diagnosing and managing respiratory diseases and disorders such as chronic obstructive pulmonary disease (COPD). Residual volume (RV) is the volume of air that remains in your lungs after maximal expiration. The lungs never completely empty of air even when you exhale as much air as possible.

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A population of ground-dwelling animals is able to survive on food that is
available on the forest floor but receives the best nutrition from fruit found in
the canopy of trees. What adaptations will most likely become more common in
the population if the availability of the food on the forest floor decreases?
What processes would allow these adaptations to take place?

Answers

Ground-dwelling animals' adaptations to limited food sources would include longer limbs, a stronger grasp, and enhanced agility.

What is the significance of adaptation?

To live, all species must adapt to their surroundings. This entails adjusting to survive the ecosystem's climatic conditions, predators, as well as other species that compete with one another for food and space.

What are the three kinds of adaptations?

Adaptations are distinct features that enable creatures to survive in their surroundings. Adaptations are classified into three types: structural, physiological, and behavioural. Structural adaptations are changes to the way an animal's body functions or appears on the outside.

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Question 4 (1 point)
Why is meiosis important for sexual reproduction?
a
OOO
b
Meiosis reduces genetic variation
Meiosis increases the chance of desirable mutations
Meiosis reduces the number of chromosomes
Meiosis increases the number of body cells
Ос
Od

Answers

Answer:

3rd answer:

Explanation:

What is meant by atomic number?

Answers

It is the number of protons in the nucleus of a atom.

The term atomic number is the number of protons in the nucleus of a atom. Atomic number of an atom is a number that represents how many protons are in an atom’s nucleus.

What is an atom?

An atom is defined as the smallest unit of matter which forms an element. Every form of matter whether solid,liquid , gas consists of atoms . Each atom has a nucleus which is composed of protons and neutrons and shells in which the electrons revolve.

The protons are positively charged and neutrons are neutral and hence the nucleus is positively charged. The electrons which revolve around the nucleus are negatively charged and hence the atom as a whole is neutral and stable due to presence of oppositely charged particles.

Atoms of the same element are similar as they have number of sub- atomic particles which on combination do not alter the chemical properties of the substances.

Therefore, The term atomic number is the number of protons in the nucleus of a atom. Atomic number of an atom is a number that represents how many protons are in an atom’s nucleus.

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is this correct?.....​

is this correct?.....

Answers

Answer:

yes it is :) I hope this helps:)

find the rate of change of the volume of a balloon (sphere) with a circumference increasing by at 3picm per minute when the radius is 5cm

Answers

The rate of change of the volume of the balloon (sphere) is 150π cubic cm/min. The formula for the volume of a sphere is given by; V = (4/3)πr³.

Given that the circumference of a balloon (sphere) is increasing at a rate of 3π cm/min and the radius is 5 cm, we have to find the rate of change of the volume of the balloon. We know that the formula for the volume of a sphere is given by; V = (4/3)πr³. Differentiating with respect to time gives; dV/dt = 4πr² × dr/dt

We know that the circumference of a sphere is given by; C = 2πr

Differentiating with respect to time gives; dC/dt = 2π × dr/dt

Now we can find the value of dr/dt from the above expression; dr/dt = dC/dt ÷ 2πPutting the given value in the above expression, we have ;dr/dt = 3π ÷ 2πdr/dt = 3/2 cm/min

Now substituting the value of r and dr/dt in the expression for dV/dt; dV/dt = 4πr² × dr/dt dV/dt = 4π(5)² × (3/2) dV/dt = 150π

Therefore, the rate of change of the volume of the balloon (sphere) is 150π cubic cm/min.

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what is sinus rhythm

Answers

The heart's sinus node controls the sinus rhythm, which is the pattern of your heartbeat. Electrical pulses are produced by the sinus node.

The beat of a sound heart is known as normal sinus rhythm. It indicates that the electrical pulse from your sinus node is appropriately reaching your heart muscle. Adults typically have heart rates between 60 and 100 bpm with good sinus rhythm. Does sinus arrhythmia pose a threat? No. In actuality, respiratory sinus arrhythmia is a symptom of a healthy heart. The term "normal sinus rhythm" (NSR) refers to the sinus node-derived rhythm that characterizes a healthy human heart. Yet, depending on the autonomic inputs to the sinus node, the rate in NSR can change. Overview. Heart rhythm disorders include sick sinus syndrome. It has an impact on the sinus node, the natural pacemaker of the heart that regulates heartbeat. Heartbeats that are slow, paused for extended periods of time between beats, or erratic are symptoms of sick sinus syndrome (arrhythmias).

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Which figure depicts a transverse plane? Select one:
a.l
b. ll
c. None
d. lll​

Answers

b. A plane dividing the body into upper and lower sections is the best representation of a transverse plane in relation to the human body. It cuts across the body horizontally, perpendicular to the longitudinal axis, separating the upper portion (superior) from the lower portion (inferior). So, option B is the right choice.

A transverse plane is a plane that cuts across the body horizontally, perpendicular to the longitudinal axis.It divides the body into upper (superior) and lower (inferior) sections.
This plane is often referred to as a horizontal plane or axial plane as well.The transverse plane is useful in anatomical and medical contexts as it allows for the examination of structures and organs in a cross-sectional view.For example, a transverse plane can be used to study and analyze the internal organs of the abdomen or the cross-section of a bone.Option a. (a plane dividing the body into front and back sections) represents a sagittal plane.Option c. (a plane dividing the body into left and right sections) represents a coronal or frontal plane.Option d. (a plane dividing the body into diagonal sections) does not accurately represent a transverse plane.

Therefore, option b. (a plane dividing the body into upper and lower sections) is the best representation of a transverse plane in relation to the human body.

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The complete question may be like:

Which of the following best represents the orientation of a transverse plane in relation to the human body?

a. A plane dividing the body into front and back sections.

b. A plane dividing the body into upper and lower sections.

c. A plane dividing the body into left and right sections.

d. A plane dividing the body into diagonal sections.

What happens to the cell at the beginning of interphase?

Answers

Early interphase is called the G1 phase of the cell cycle. G1 is the time during which a cell grows to its proper size by making more cytosol, the liquid inside a cell. An increase in cell size means the cell must make more protein and membranes. ... Cells that mature and never divide again stay in the G0 phase.

Answer:

Explanation:

Early interphase is called the G1 phase of the cell cycle. G1 is the time during which a cell grows to its proper size by making more cytosol, the liquid inside a cell. An increase in cell size means the cell must make more protein and membranes. ... Cells that mature and never divide again stay in the G0 phase.

which of the following is a tissue?
Bone
Collagen
Cytoplasm
Haemoglobin​

Answers

Answer:

Cytoplasm

Cytoplasm is a tissue

Answer:

c. cytoplasm

Explanation:

1. Darwin's finches vary in size from 10-20 cm and 8-38 g. Warbler-finches are the smallest
species of them all. At some time in history, which selection led to their evolution?

Answers

Directional selection increases the frequency of individuals expressing one of the extreme phenotypic traits in a population. At some time in history, directional selection led to the Warbler-finches evolution.

What is Directional Selection?

Directional selection is one of the different types of natural selection.

It increases in the proportion of individuals with an extreme phenotypic trait.

It causes a decrease in the number of individuals expressing intermediate phenotype, and the other extreme phenotype.

This selection presents more frequently in those cases in which interactions between living organisms and the environment modify in the same direction.

In the exposed example,

All finches vary from 10 to 20 cm, but Warbler-finches is closer to 10 cm (one of the phenotypic extremes).

All finches vary from 8 to 38 g, but Warbler-finches is closer to 8g (one of the phenotypic extremes).

So, from the whole range,  Warbler-finches only express one of the extreme traits, meaning that the species has suffered from the directional selection.

These traits probably increased the animals' fitness, and hence, they were favored by natural selection.

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Red is dominant over yellow. If a male purebred red rose(RR) is crossed with a female hybrid rose (Rr), what percent of the roses will be red?


25%
100%

Btw i learned 50% and 75% is wrong so that is why there is only two

Answers

Answer:

100%

Explanation:

Because one of the roses is purebred dominant, all recessive genes will be overshadowed.

Mendel crossed tall pea plants with short pea plants. The offspring were all tall plants.

Which allele is recessive____

Which allele is dominant____

Answers

Answer:

The short is recessive and the tall is dominant

Explanation:

The Punnett Square would look like this (T - tall, t - short):

  |  T |  T  |

t | Tt | Tt |

t | Tt | Tt |

All offspring carry the short gene, but the tall gene is dominant, so the plants are tall with the possibility of having short offspring of their own.

Recessive: Short

Dominant: Tall

Which of the following correctly explains a key difference between prokaryotic and eukaryotic cell division?
A. Prokaryotes cannot undergo mitosis because they do not have cell walls.
B. Prokaryotes and eukaryotes must undergo cytokinesis, division of the cytoplasm and its contents.
C. Prokaryotic DNA is larger so binary fission should take a greater amount of time to occur.
D. Prokaryotes do not have a nucleus, therefore binary fission should take less time to occur.​

Answers

B. Prokaryotes and eukaryotes must undergo cytokinesis, division of the cytoplasm and its contents.

25. The age structure of a population is determined by the number of _______and ______ in each of three age groups.A. births; deathsB. immigrants; emigrantsC. males; females

Answers

The age structure of a population is determined by the number of males and females in each class of age, which can be three depending on if the population is classified into pups, adults, and older individuals.

This is key to determine the state of a population, and whether their individuals are reproducing at a particular rate.

How are the chromosomes sorted during meiosis

Answers

Answer:

During meiosis l, homologous chromosomes pair up with each other.When the homologs are divided into daughter cells,the chromosomes are sorted randomly into daughter cells.if alleles of different chromosomes,then they assort indepently

11) What name is given to any cell that is produced after cell division?
OA.) daughter cell
OB.) parent cell

Answers

Answer:
OA.)Daughter cell
the answer is OB.) daughter cell

Identify the input energy converter and two output energies involved in a student eats a hamburger

Answers

The input energy converter is Student's digestive system and the two output energies involved in a student eats a hamburger are mechanical energy, thermal energy.

In the context of a pupil ingesting a hamburger, allow perceive the enter energy converter and output energies concerned with this technique.

The enter power converter on this scenario might be the pupil's frame, in particular the digestive system. The act of eating includes the conversion of capability power within the food into chemical strength thru the technique of digestion. The digestive device breaks down the complicated molecules inside the hamburger into much less difficult paperwork that may be absorbed and utilized by the body.

As for the output energies, actually one in every of them is mechanical electricity. When the student chews and swallows the hamburger, the digestive device converts the chemical power received from the meals into mechanical power to help in propelling the meals thru the digestive tract.

Another output power is thermal electricity. During digestion, the chemical reactions that stand up to break down the meals launch warmth power. This thermal electricity contributes to preserving the student's body temperature and is eventually dissipated into the surroundings.

To summarize:

Input energy converter: Student's digestive system

Output energies:

Mechanical energy - worried with the method of chewing and propelling food via the digestive tract.

Thermal energy - is launched as a byproduct of the chemical reactions for the duration of digestion, contributing to body temperature upkeep.

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There are only about 40 different tRNAs in a cell even though 61 codons code for amino acids. This discrepancy can be attributed to the fact that the first nucleotide in the anticodon can base-pair with more than one nucleotide in the codon. This phenomenon is known as __________ and is, in part, due to __________ and the presence of __________ at this position in some tRNA molecules.

Answers

Answer:

The correct answer is - wobble; the curvature of the anticodon loop; inosine.

Explanation:

The wobble phenomenon or hypothesis tells that why there are multiple codons are present for a single amino acid. 20  amino acids are coded by 61 codons. It states that tRNA can identify and attach to more than one amino acid due to the curvature of the anticodon loop.

The curvature of the anticodon loop is that the base at the 1st position on the anticodon to binding but the less-precise base pairs that can arise between the 3rd base of the codon. The inosine is the nucleoside that presents in a position in the curvature of the anticodon loop and its position responsible for wobble as well.

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