20 points only real answers please and thank you
In your own words, explain how a radiosonde can be used to predict future weather conditions in a location.

Answers

Answer 1

Answer:A radiosonde measures and collects various data such as, pressure, altitude, geographical position (latitude/longitude), temperature, relative humidity, wind (both wind speed and wind direction), cosmic ray readings at high altitude, and many other things. You can then analyze all this data and combine it to see what the weather conditions will be possibly be like.

Explanation: BRAINLIEST PLZ

Answer 2
A transmitter on the radiosonde sends the data back to tracking equipment on the ground every one to two seconds. By tracking the position of the radiosonde, we can also calculate wind speed and wind direction

Related Questions

Know how to calculate the amount of chromosomes in mitotic cells and in gamete cells, when given an amount of the chromosome number for one of the two types of cells. For example, a fruit fly has 8 chromosomes or 4 pairs of chromosomes in its wing cells, how many chromosomes will be in each egg cell?

Answers

Answer:

4 chromosomes

Explanation:

Meiosis is a kind of cell division that produces daughter cells that already have their chromosome number reduced by half. Due to this reason, meiosis is called a reduction division. A diploid parent cell (2n) will produce gametes with haploid cells (n).

According to this question, a fruit fly has 8 chromosomes or 4 pairs of chromosomes in its wing cells, after undergoing meiotic division, it will possess 4 chromosomes in each gamete cell. Note that the chromosome number has been reduced by half.

A force that always attracts or pulls objects toward each other without direct contact or impact. *
a. Force
b. Friction
c. Gravity
d. Inertia

Answers

D is the right answer

Track the evolutionary path of a butterfly and comment on it.

Answers

Answer:

The colorful canvas of the butterfly wing is an example of evolutionary innovation and adaptation. Compared with their ansestors, whose wings wore patterns of black, brown, and gray, the Lepidoptera (butterflies and moths) evolved a more varied palette of pigmentation.

I think it is very cool that they were able to evolve. For example, some butterflies use their bright colors to trick preators into thinking they are poisonous. The early butterflies could not do this.

Explanation:

Please brainliest!

Based on scientific information, the evolutionary path of a butterfly is primarily based on the origin of its species to eukaryotes and then to bilateria.

What is an evolution?

An evolution refers to a biological and physical process that involves a gradual change in the characteristics and genetic make-up of the various species of organisms over several generations.

Based on scientific information, the evolutionary path of a butterfly is primarily based on the origin of its species to eukaryotes and then to bilateria such as:

Mid Eocene epochMid-CretaceousMoth

Butterfly is a species of living organism with various characteristics and genetic make-up that have been in existence for about 60 million years.

Read more on evolution here: brainly.com/question/524043

does cellular respiration produced or consumed food? ​

Answers

Answer:

I guess it consumes food.

Explanation:

because cellular respiration is the process by which organisms use oxygen to break down food molecules to get chemical energy for cell functions.

NASA scientists use satellites to monitor two important factors that lead too landslides

Answers

Answer:

The most important factors that lead to landslides are the declivity of the terrain and the type of soil.

Explanation:

Stony soils are more prone to landslides, especially on steep terrain and without any type of vegetation cover. During heavy rainfall, these two factors can promote landslides that cause major disasters, as water is able to drag this soil violently. To prevent this from happening and people from being harmed, NASA has developed satellites, which capture rainfall data and monitor the slope and composition of soils, being able to see in advance areas that could be landslides. In this way, it is possible to develop strategies that prevent the landslide from happening.

In pea plants, the tall phenotype is dominant to the dwarf phenotype. A tall plant and a dwarf plant are crossed together. Half of their offspring are tall, and the other half display dwarfism. What is the genotype of each parent in this cross?

Answers

Answer and Explanation:

Due to technical problems, you will find the complete answer and explanation in the attached files.

Which statements correctly describe greenhouse gases?

Answers

Answer:

1. Greenhouse gases absorb all kinds of radiation that fall on them

2. Greenhouse gases are released when the suns rays hit earth

3. Greenhouse gases allow the suns rays to pass through

4. Greenhouse gases absorb infrared radiation from earth’s surface

If both parents have a recessive phenotype "aa", what will the offspring
have?

Answers

Answer: posibble to have aa or a

Explanation:

What is aerobic respiration?

Answers

c the process cells use ti

Wood is ___. Light cannot pass through it.

Answers

Answer:

hope i helped!

Explanation:

a solid!

When looking through the spectrascope, the sunlight looks like ?
A:rainbow
B:red light
C:green light ​

Answers

Answer:

i believe it is a

Explanation:

Answer please

The last option that isn’t showing is Musculoskeletal, Nervous

Answers

Answer: last option is correct, musculoskeletal, nervous

Explanation:

Compare and contrast negative and positive feedback loops. Which one is more common? Why?

Answers

Answer:

Negative Feedback LoopsA negative feedback mechanism or loop is a pathway stimulated by the deviation in the output, which causes changes in output to the direction opposite to the initial deviation.The negative feedback mechanism moves the variable factors towards the stable state or homeostasis after the control unit interprets the extent of the deviation.Negative feedback loops are more common than positive ones as they tend to stabilize the system.The loop detects the change in output and acts in the opposite direction to nullify the stimulus causing the change.These loops are activated under two conditions; when the value of the variable is above the normal value and has to be brought down and when the value of the variable is below the normal values and has to be brought up.Negative feedback mechanisms occur as a part of homeostasis to bring the variables back to their normal levels by counteracting the stimulus, causing the deviation in the first place.Like in a positive feedback mechanism, a negative feedback mechanism also contains different components that together help to maintain a stable state.

Examples of Negative Feedback Mechanism

1. Regulation of blood glucose level

2. Temperature regulation

Positive Feedback LoopA positive feedback mechanism, as the name suggests, is a pathway that in response to a deviation in the output causes the output to change even more in the direction of the initial deviation.A positive feedback mechanism amplifies the deviations and brings state changes to the output.Positive feedback mechanisms are far less common than negative feedback mechanisms as it moves the body away from homeostasis.The process of positive feedback mechanism progressively amplifies the response as long as the stimulus is continued.The positive feedback loop can consist of either a single component that activates its own activity or several components with direct and indirect interactions.Positive feedback loops in biological processes are often observed in processes that need to occur quickly and towards completion as the output tends to increase the effect of the stimulus.Positive mechanisms are very few within living systems like the human body, but these can also be observed in the ecosystem, like in the case of ripening of fruit.

Examples of Positive Feedback Mechanism

1. Menstrual cycle

2. Childbirth

Negative feedback loops are more common than positive ones as they tend to stabilize the system.

Positive Feedback vs Negative Feedback (8 Key Differences)

Definition

The positive feedback mechanism is a pathway that in response to a deviation in the output causes the output to change even more in the direction of the initial deviation. A negative feedback mechanism or loop is a pathway stimulated by the deviation in the output, which causes changes in output to the direction opposite to the initial deviation.

Effect on the homeostasis

A positive feedback mechanism breaks down the homeostasis system of the body. A negative feedback mechanism works to maintain the conditions of homeostasis in the body.

Occurrence

The positive feedback mechanism is less common and occurs in specific situations.The negative feedback mechanism is more common and occurs in different organs and systems in the body.

Stability

The positive feedback mechanism is less stable.The negative feedback mechanism is more stable.

Effect

In a system with a positive feedback mechanism, the effective input is increased by the addition of actual input with the feedback signal.In a system with a negative feedback mechanism, the effective input is decreased as the feedback signal inhibits the actual input.

External interruption

A positive feedback mechanism might require an external interruption.A negative feedback mechanism doesn’t require an external interruption.

Changes

Positive loops enhances the change in physiological factors.Negative loops resists changes in physiological factors.

Examples

Positive feedback mechanism in nature is observed during childbirth in humans and during the ripening of fruits. The negative feedback mechanism is observed during thermoregulation and maintaining the blood glucose level.

help me out, I will give link below copy and paste it and tell meh the answer plz

Answers

Answer:

Explanation:

Where’s the link I’ll be happy to help

Which of these mutations do you think would have the worst effect on the function of
the protein?
an insertion or
deletion near
the end of a
gene
an insertion or
deletion at the
beginning of
an insertion at
the middle of
a nonsense
mutation at the
end of the gene
a missense
mutation
the gene
the gene

Answers

Answer:

Both are harmful for the organism in case of point mutation. In case of deletion or insertion of a particular fragment of the gene, deletion could be more harmful than insertion, because the deleted fragment of the gene will never be replaced at exact size and exact position of the disabled gene.

Explanation:

hope it helps

What types of things do you do to protect yourself from danger?

Answers

Answer:

Explanation:

Trust yourself. ...

Be aware of your surroundings. ...

Pay attention to the people around you. ...

Act confident and focused. ...

Understand that alcohol or drugs can cloud judgment.

It is possible for a repressor to negatively regulate the expression of an operon because: A. the repressor-binding site overlaps the promoter site of the operon, allowing it to physically block the binding of RNA polymerase. B. the repressor induces the expression of the inducer by binding to the promoter that comes before the inducer gene. C. the repressor-binding site on the DNA overlaps with the translation start site, thereby preventing the transcription. D. one of the structural genes expressed in the operon negatively regulates the repressor. E. the repressor physically blocks where the activator should be binding on the operator region.

Answers

Answer:

A.

Explanation:

the repressor-binding site overlaps the promoter site of the operon, allowing it to physically block the binding of RNA polymerase.

An oil mining company has started drilling oil offshore at a location. Thus far, it has benefitted the people by increasing employment opportunities in the area. Predict the most likely outcome the oil mine will have on the environment?

It will cause drying up of water in plants.
It will emit radiation which destroys plants.
It will produce greenhouse gases which pollutes soil.
It will contaminate the soil and water in the ocean.​

Answers

Answer:

It will contaminate the soil and water in the ocean.​

Explanation:

This is because the oil drilling will cause oil spillage on the soil and water in the ocean. The oil spillage will cover the oil and it will not allow plant to grow there. Any crops planted there will not grow because it had release chemical and act as covering which cannot support plant growth. When it is washed into the ocean or water bodies, it can lead to death if aquatic live because it will affect the amount of oxygen that will available to them.

Answer:

It will contaminate the soil and water in the ocean.​

Explanation:

Points earned on this question: 3 ;)

Walking sticks are insects that may have either a striped body or a body without stripes. In one region where these walking sticks live, the vegetation is a plant with needle-like leaves that resemble the walking stick’s striped body. According to natural selection, what would most likely result from an increase in walking stick predators in the region? (SC.7.L.15.2) A.walking sticks without stripes will reproduce faster B.walking sticks with stripes will become more common C.walking sticks will develop a new, spotted pattern for their bodies D.walking sticks will live on rare plant species rather than the dominant species

Answers

Answer:

B. Walking sticks with stripes will become more common.

Explanation:

The striped bodies of the walking sticks will help them camouflage in the plants. The predators will be more likely to kill off the unstriped walking sticks, leaving the striped walking sticks to grow in population and become more common.


In the diagram above, which letter represents wavelength?

Answers

Answer: A

Explanation:

Because A..

What occurs during the process of gas exchange?

Answers

Answer:

During gas exchange oxygen moves from the lungs to the bloodstream. At the same time carbon dioxide passes from the blood to the lungs.

Can you see this happening inside of your body? Why or why not?

Answers

Answer:

no , maybe goosebumps but that is actually on the outer layer of the skin . The skin encloses all our organs , and it's opaque therefore we aren't able to see what is happening inside of our bodies . Hope it helps :)

Explanation:

how are decomposers important ton the health of an ecosystem?
A. decomposers recycle nutrients.
B. decomposers are parasites
C. decomposers convert solar energy to chemical energy
D. decomposers provide the foundation for the food web

Answers

Answer:

It should be decomposers recycle nutrients

Explanation:

A grasshopper is an arthropod. Based on the grasshopper’s characteristics, which other animal likely belongs to this group?(1 point)

Answers

The grasshoppers are a group of insects that belong to the Califera suborder. The grasshoppers are arthropods. Another animal that shares similar characteristics to a grasshopper and belongs to this group is the crayfish.

What are the characteristics of grasshoppers?

Grasshoppers are plant eaters and over time they may become pests for various cereal crops and vegetables. They are herbivores insects with hind legs that are very powerful.

Like other insects, grasshoppers breathe through tiny holes called spiracles that connect to trachea tubes. The air is carried through the grasshoppers' bodies by smaller tracheoles that branch off from the larger trachea tubes. The grasshopper breathes air through its body with every movement. Grasshoppers don't have lungs.

To learn more about insects, refer to the link:

https://brainly.com/question/5429369

#SPJ2

how did our solar system form ?

Answers

Answer:

Formation. Our solar system formed about 4.5 billion years ago from a dense cloud of interstellar gas and dust. ... When this dust cloud collapsed, it formed a solar nebula—a spinning, swirling disk of material. At the center, gravity pulled more and more material in.

Use the diagram to answer the following questions:





Question A: What is A?
Question B: From where is A coming?
Question C: What is B?
Question D: From where is B coming?

Answers

laa  pereo yte irsv asE

xplanation:

 

__1. Where do FSH and LH get released from?
a. Pituitary Gland c. Uterus
b. Ovaries d. testes
_______2. Which hormones are produced in the ovaries?
a. testosterone c. FSH
b. estrogen and progesterone d. LH
_______3. Which hormones causes release of progesterone?
a. testosterone c. estrogen
b. FSH d. LH
_______4. What do estrogen and progesterone do in the menstrual cycle?
a. they stimulate the release of egg
b. they are involved in egg maturation in the ovaries
c. they are involved in maintaining the uterus lining
d. none of the above
_______5. Which of the following is/are the role of testosterone in males?
I. Pre -natal development of male genitalia
II. Maintenance of sex drive
III. Increase in mental development
a. II only c. II & III only
b. I & II only d. I, II, & III

Answers

Answer:

1.testes

2.estrogen

3.LH

4.(b)

3 functions of lipids

Answers

Ans: Lipids perform three primary biological functions within the body: they serve as structural components of cell membranes, function as energy storehouses, and function as important signaling molecules. The three main types of lipids are triacylglycerols (also called triglycerides), phospholipids, and sterols.

Ecosytem A
Ecosystem B
Which ecosystem has the greatest sustainability and why? PLEASE HELP!!!!

Answers

Answer: b

Explanation: B has more Varity in bean types making it easier to sustain

What is the name of the process that uses DNA to create proteins?
A. Protein Synthesis

B. DNA coding

C. DNA Synthesis

D. Protein magic

Answers

A. Protein synthesis

Answer:

A. Protein Synthesis

Explanation:

Protein synthesis is the process in which cells make proteins. It occurs in two stages: transcription and translation.

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