Witch contribution did Kepler make to viewing the solar system? A: He proposed the earth-centered model of the solar system. B: He proposed that gravity kept the planets in their orbit. C: He showed that planets moved in elliptical orbits. D: He proposed the sun-centered model of the solar system.

Answers

Answer 1

Answer:

C: He showed that planets moved in elliptical orbits.

Explanation:

Copernicus described the solar system model with Sun at its center and planets along with their moons revolving about the Sun in circular orbits. This model is known as heliocentric model and this shift from geocentric model is known as Copernican revolution. Kepler supported the heliocentric model but showed that the planets revolved in elliptical orbits with the Sun at one of its foci. He wrote laws describing the planetary motion.

Answer 2

Answer:

Hello friend the answer is C.

Explanation:

I do K12 so this would help you a lot for the ones who are in K12. :)


Related Questions

Explain how trees can be produced and yet the smallest trophies level in a pyramid of numbers

Answers

Oh ok, because producers make up the largest amount of biomass in most food chains, so they put it in the bottom of the pyramid, because the base of the pyramid is the largest part of it.   

Sugar is a compound of which Of the following?
A) carbohydrates
B) lipids
C) nucleic acids?

Answers

The correct answer is:  [A]:  "carbohydrates" .
__________________________________________________

The group of enzymes able to relax supercoils in dna is called

Answers

TOPOISOMERASE

There are various function of DNA toposisomerase such as:

1.accessing DNA- this happens during transcription and replication, DNA must be unwound for this to happen, Topoisomerase I make a single break to create an access.

2. Removing DNA super coils- Topoisomerase prevents DNA to be supercoiled, this happens during transcription of DNA to RNA

3. Strand breakage- It can introduce single strand breaks that are required for DNA to be exchanged to adjacent chromosomes.



Which is not correctly paired concerning parasympathetic outflow? which is not correctly paired concerning parasympathetic outflow? the glossopharyngeal nerve innervates salivary glands the oculomotor nerve innervates smooth muscle in the eye that allows for pupil constriction the nerves coming from the thoracic region innervate stomach and liver the nerves coming from the sacral section innervate lungs and heart the vagus nerve stimulates many glands in the head like lacrimal and salivary glands?

Answers

The list of not correctly paired parasympathetic outflow would be:
1. nerves coming from the sacral section innervate lungs and heart
2. vagus nerve stimulates many glands in the head like lacrimal and salivary glands


Sacral region is located in the tailbone, near the hip. The location itself too far from lungs and heart, which actually nerved by vagus. 
Lacrimal and salivary glands are nerved by the submandibular (cranial VII) and glossopharyngeal(cranial  IX), not vagus(cranial X)

Are carbohydrates used for long term energy storage?

Answers

Carbohydrates and lipids can both be used as energy storage however carbohydrates are usually used for short term storage whereas lipids are used for long term storage. Carbohydrates are soluble in water unlike lipids. This makes carbohydrates easy to transport around the body (from and to the store).

The diagonal arrow of a cladogram shows us that we are moving _________ in time.

Answers

The diagonal arrow of a cladogram shows us that we are moving forward in time.

Which of these glands secretes releasing hormones? which of these glands secretes releasing hormones? hypothalamus adrenal cortex thymus ovaries testes?

Answers

The answer is Hypothalamus.Releasing hormones and inhibiting hormones are hormones whose main function is to control the release of other hormones either by stimulating or inhibiting the release of those hormones. For example hypothalamus uses thyrotropin releasing hormone to stimulate the production of thyrotropin hormone by the pituitary gland.

A part of the brain called the hypothalamus releases the hormone. Therefore, the correct option is A.

Specific hormones are released from the pituitary gland when these hormones reach the anterior pituitary gland and trigger its release. Gonadotropin-releasing hormone (GnRH), growth hormone-releasing hormone (GHRH), thyrotropin-releasing hormone (TRH), and corticotropin-releasing hormone (CRH) are among the hormones that the hypothalamus releases.

These releasing hormones are essential for controlling the pituitary gland's hormone release, which in turn affects many bodily activities. The thymus, ovaries, testes, and adrenal cortex do not directly release hormones.

Therefore, the correct option is A.

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Your question is incomplete, most probably the complete question is:

Which of these glands secretes releasing hormones? which of these glands secretes releasing hormones?

hypothalamus adrenal cortex thymus ovaries testes

Which is the first type of cell to differentiate?

Answers

The blood cell is the first cell to differentiate.

The first type of cell to differentiate is typically the neuron, option 1.

During the process of cellular differentiation, unspecialized cells become specialized to perform distinct functions. This is crucial for the development of a complex organism from a single fertilized egg.

The differentiation process begins with the formation of the three germ layers: ectoderm, mesoderm, and endoderm.

From these layers, specific cell types start to form. Neurons typically differentiate early from the neuroectoderm, which is a part of the ectoderm layer.

This early differentiation is essential for establishing the nervous system, which will regulate and control other bodily functions.

As the neuron cells differentiate, they acquire specific structures and functions that enable them to transmit nerve impulses.

This early specialization is critical as it sets the foundation for the development of the brain and spinal cord, allowing for further complex development of the organism.

Neurons: Early differentiation from neuroectoderm.Muscle cells: Differentiate from mesoderm.Blood cells: Also derive from mesoderm later in development.Epithelial cells: Arise from all three germ layers depending on their location.

Understanding this hierarchical differentiation helps in grasping how specialized cells evolve to support various functions necessary for an organism's life.

complete question:

Which is the first type of cell to differentiate?

neuronepithelial cellmuscle cellblood cell

Which of the following is a feature of the sun's radiation?


It cannot travel through air.

It cannot travel through vacuum.

It is made up of rays of the same frequency.

It is made up of rays of different wavelengths.

Answers

Hello there!

One great feature that can be brought into the suns radiation would actually be of that ( it would have/contain the sane frequency.

We might ask our self, what would this really mean? This would signify that we would have to understand that the waves and the speed and the constant of these waves would always stay the same no matter what. So even though it would get hotter, the frequency would also stay the same and have a balance standing.
Rays of different wave lenghts

What is a metabolic pathway? see section 16.1 (page 337) . view available hint(s) what is a metabolic pathway? see section 16.1 (page 337) . a process that results in mutations in genes a series of steps that convert a precursor to arginine a series of steps only found in neurospora crassa a series of steps in which enzymes work one at a time to convert a compound to a related compound?

Answers

The answer is a ‘series of steps in which enzymes work one at a time to convert a compound to a related compound’. The intermediate products of metabolic pathways are called metabolites. An example of a metabolic cycle is the Glycolysis and Krebs cycles. The product in each step of the metabolic pathways becomes the substrate of the next step in the pathway. There are two types of metabolic pathways; anabolic and catabolic






Which factor would not increase the production of glucose by photosynthesis in plants?

Answers

Final answer:

Lack of water would not increase glucose production by photosynthesis in plants because water is crucial for the light reactions to produce NADPH and ATP, which are needed in the Calvin cycle to synthesize glucose. Insufficient water impacts the entire photosynthetic process, leading to decreased glucose production.

Explanation:

A factor that would not increase the production of glucose by photosynthesis in plants is a lack of water. Water is essential for the light reactions of photosynthesis, where water molecules are split to form oxygen, electrons, and protons. These electrons and protons are then used to generate NADPH, which, along with ATP produced in the light reactions, is used in the Calvin cycle to synthesize glucose. Without sufficient water, these processes can't occur optimally, and the production of glucose by photosynthesis would decrease.

Regarding the statement about how an increase in temperature causing faster diffusion of CO2, and consequently, a potential increase in the rate at which plant leaves lose CO2; if all other conditions are favorable for photosynthesis, the increased loss of CO2 may lead to reduced availability of CO2 for the Calvin cycle. This can result in a decrease in photosynthesis (as per option d.), since there would be less CO2 to be fixed into glucose.

The products of the Calvin cycle are glucose and other sugar molecules as well as the regeneration of the molecule RuBP which is necessary for the cycle to continue.

If a plant lacks a photosystem II complex due to a mutation, it would not be able to initiate the light-dependent reactions of photosynthesis, leading to a failure to produce the essential compounds like ATP and NADPH required for the Calvin cycle, thus disrupting the synthesis of glucose.

Plants that lack sunlight or sufficient water would not be able to perform photosynthesis efficiently, which would impact not only the plant's survival but also the organisms that rely on those plants for food, leading to broader ecological consequences.

Exposure to only red light can still support photosynthesis, although the rate may vary depending on the specific species of plant and its adaptations to light conditions (as per options b. and c.).

Final answer:

Factors not increasing photosynthesis include a lack of water or insufficient CO₂, both crucial for the Calvin cycle. A mutation removing photosystem II would inhibit photosynthesis, and only red light exposure can also affect the rate of photosynthesis. Plants without sunlight or water would produce less glucose, impacting dependent organisms.

Explanation:

Factors that do not increase the production of glucose by photosynthesis in plants include a lack of water or inadequate carbon dioxide (CO₂). A lack of water would prevent hydrogen ions (H+) and NADP+ from forming NADPH, which is essential for the Calvin cycle of photosynthesis. Not enough CO₂ would limit the number of carbon molecules available to be fixed into glucose during the Calvin cycle. Additionally, an increase in temperature might lead to a faster loss of CO₂ from plant leaves, affecting the Calvin cycle by slowing it down due to insufficient carbon to fix in the system. This could potentially lead to lower glucose production if light and water are adequate.

The products of the Calvin cycle, which depend on carbon fixation, are carbohydrates and regenerated RuBP (ribulose bisphosphate), which is critical for the cycle to continue. If a plant had a mutation that eliminated its photosystem II complex, it would not be able to split water molecules to generate oxygen, hydrogen ions, and electrons essential for the formation of NADPH and ATP, thus hampering the photosynthetic process and preventing glucose production.

With only red light exposure, the rate of photosynthesis in a plant could potentially decrease or follow a complex pattern where it decreases and then increases, depending on the specific wavelength of the red light and the plant's individual response to it. For plants lacking sunlight as an energy source or sufficient water, photosynthesis would be inhibited, reducing glucose production and potentially affecting those organisms that rely on plants for survival.

2.) The seafloor holds promise as a source of many natural resources, including valuable metals. As demand for natural marine resources increases, mining these resources from the seafloor also increases. One concern of seafloor mining is the disruption of the seafloor habitat. Which of the following describes the most likely impact of seafloor mining on the surrounding marine environment?

A.) Alteration in seafloor sediments rich in carbon would cause loss of species and an unbalanced population in marine food webs.

B.) Increased levels of metals in the ocean would result in decrease of marine bivalves due to weakened shells.

C.) Methane gas would pollute the marine environment and cause an overabundance of bacteria that feed on it.

D.) Nonrenewable resources in the marine environment would become depleted and affect the balance of the ecosystem.

Answers

The answer would be A. it would not be D because marine life does not concern metals and other resources like that. It would be A because life needs carbon, it already does, but it needs to be well balanced and not disrupted.

Answer: A.) Alteration in seafloor sediments rich in carbon would cause loss of species and an unbalanced population in marine food webs.

Explanation:

The seafloor mining will have a drastic impact over the sea ecosystem. The mining process will expose the partially decomposed organic matter to the sea water. This will result in the increase in abundance of the organic carbon in the sea water. This will readily absorbed by the aquatic plants but the increase in abundance will likely to kill sea animals because carbon is the waste material discharged by the organisms and oxygen is the basic requirement for all the cells of the body. This will negatively influence the populations of the marine food webs.

For the eighth observation (i=8), identify the animal phylum, xi, and yi.

Answers

The correct answer is "Phylum Urochordata: xi = 25; yi = 77".
The table presented in this exercise can be used as a tool to examine any connection between the microRNA (miRNA) diversity and the morphological complexity in a phylum. The Xi column represents the average number of miRNAs in a phylum, while the Yi column represents the average number of cell types in that phylum. The eight observation of this table refers to the data obtained from the phylum Urochordata.
MicroRNAs are small non-coding RNAs which regulate gene expression post-transcriptionally. They are used as phylogenetic markers as they have a very low rate of evolution. Also, they are very useful because it has been shown that phyla with very high levels of morphological innovation have high numbers of miRNA concentration. 

Why a flash of green light might cause the Flubber to become so energetic

Answers

Answer:

A flubber is a rubber like polymer that absorbs and amplifies energy. A flubber absorbs energy from a light source and electrons present in it are excited in order to emit light of higher wavelength. The green light absorbed by the flubber to emit longer wavelength of light emitting more energy.

Flubber is a slime-like polymer material that is made up of cross-linked boron with polyvinyl alcohol. It is used for educational experiments and leisure activities.

Flubber absorbs and amplifies energy. It absorbs energy from the source and reflects it.

The electrons present in the polymer gets excited and emit a wavelength of a high order.

The green lights excite the flubber material and make them energetic which leads to the emission of high wavelength.

Therefore, the green light makes the flubber more energetic.

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A black guinea pig crossed with an albino guinea pig produces 12 black offspring. when the albino is crossed with a second black one, 7 blacks and 5 albinos are obtained.

Answers

This can be explained by the concept of Mendelian genetics of two alleles in a gene for colouring, with a dominant and recessive colouring trait allele.
Here, the black guinea pigs could have the BB or Bb gene whereas the albino guinea pig can only have the bb gene.

The first cross was BB Xbb, resulting in 12 offspring all with a Bb genotype, and hence all black. In the second cross, a black guinea pig was crossed with an albino guinea pig:
BbXbb, resulting in a combination of Bb and bb genes, and hence some albino offspring.

Alarm, resistance, and exhaustion are all considered part of the body's ___________response.

adrenaline

stress

panic

autonomic nerve

im not sure if its autonomic nerve or stress,

Answers

The answer is stress. Stress is a physical and psychological response to threats that our body and mind can experience. But since stressful and potentially harmful situations are so common, we have developed a general adaptation response to it, which has three stages depending on the length of exposure to the stressful situation.

The leading cause of limited water supplies is _______. a. low precipitation b. overuse c. limiting use d. government

Answers

Answer: a. low precipitation

Precipitation is the amount of rainfall an area or a biome receives. It is the chief source of water for water bodies available for human use like lakes, rivers, ponds, groundwater. The amount of rainfall depends upon the vegetation growing in an area. The trees and plants transports water through the process of transpiration that adds up to the water cycle. Lack of vegetation can affect normal water cycle and can limit the occurrence and amount of rainfall. The lack of proper rainfall will limit the volume of water in water bodies and hence, will limit the water supply for use.

The leading cause of limited water supplies is overuse. Therefore, the correct option is B.

An important issue in water scarcity is the overuse of water resources. Human activities, including domestic water use, industry, and agriculture, can use up more water than is permanently available in a given location. With population growth and economic expansion, the demand for water increases, putting pressure on the already available water resources.

Limiting use is one way of managing water resources, although it is not the main cause of resource depletion. Government management and regulation of water resources are important, but they are not the root cause of scarce water supplies.

Therefore, the correct option is B.

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In some species, young individuals float freely as plankton while mature members are fixed on the seafloor. this is an effective strategy because

Answers

This is an effective strategy because different phases do not compete for food.
For example for the case of Jelly fish, After a brief period floating about in surface waters like planktons, the  larvae then settles to the sea floor, attaching themselves to one end. They then develop to polyps and begin to feed and grow. In spring the polyps bud iff immature jellyfish known as ephyra larvae which then grow to mature jellyfish. 

The scientific name for a white oak is Quercus alba; the scientific name for a red oak is Quercus rubra. What does this tell you about the organism? A. White oaks are grouped in the genus Quercus. B. Red oaks are grouped in the genus alba. C. Red oaks are grouped in the species Quercus. D. White oaks are grouped in the same species category as red oaks.

Answers

Within the species names Quercus alba and Quercus rubra, Quercus indicates the genus. Therefore, both species of oak belong to the same genus. The only correct statement above therefore is A: 'White oaks are grouped in the genus Quercus'.

Answer:

rong

Explanation:

Describe how genetic mutations alter the dna sequence and may or may not not affect phenotype

Answers

Genetic mutations alter the DNA sequence by changing, inserting, or deleting nucleotides, potentially affecting phenotype, depending on the mutation's type and location.

Genetic mutations involve changes in the DNA sequence, which can occur through various mechanisms such as substitution, insertion, or deletion of nucleotides.

These alterations can disrupt normal gene function and protein synthesis, potentially leading to changes in phenotype—the observable characteristics of an organism.

However, not all mutations affect phenotype; some may be silent mutations that do not alter protein function, while others may occur in non-coding regions of DNA.

The impact of a mutation depends on its type, location, and the specific gene affected.

Scientists believe that the oldest known fossil discoveries to date are that of _________.

A. ammonites
B. trilobites
C. Tyrannosaurus rex
D. stromatolites

Answers

a is the correct answer because the oldest fossil known as at the very bottom so they are ammonites
Scientists believe that the oldest known fossil discoveries to date are that of stromatolites. ca: 3.7 billion years old.

Why do you think macarthur chose inchon as his landing place?

Answers

Because MacArthur believes that the North Korean wouldn’t expect the Allies to attempt to land in Inchon due to the challenges associated with landing including the narrow port channel and extreme tides.

The common ancestor of the protostomes had a coelom. what does this suggest?

Answers

This suggests that the body cavity (coelum) evolved before the lophophore. Protostomes are one of the groups of animals having a true body cavity and are believed to share a common ancestor. They include annelids, mollusks, and arthropods. Lophophore is an organ characteristic of aquatic invertebrates (protostomes) that functions in filter feeding, it consists of a ridge of hollow tentacles bearing cilia, which waft food particles into the mouth.

Functions of the cell membrane include physical isolation of the cell from its surroundings, regulation of exchange, structural support, and which other function? functions of the cell membrane include physical isolation of the cell from its surroundings, regulation of exchange, structural support, and which other function? binding and delivery of oxygen extracting energy from the environment for cell survival radiation of heat to prevent protein denaturation and cell stress. communication between the cell and its environment

Answers

look on quizlet.com they will help you to the full extint.

Which subatomic particle contains the energy stored in chemical bonds? isotope , neutron , electron , proton

Answers

electrons, hope this helped
Hello,

Here is your answer:

The proper answer to this question is option C "electron".

Here is how:

Even thou electrons dont store the energy but the way they are position gives the energy to them.

Your answer is C.

If you need anymore help feel free to ask me!

Hope this helps!

Is balamuthia mandrillaris a public health concern worldwide?

Answers

Balamuthia mandrillaris is an amoeba that was discovered in 1986 in the brain of the baboon that dies in San Diego Wild Animal Park. This can be found in the soil and water, therefore it is freely living. It is known to cause the neurological condition known as granulomatous amoebic encephalitis. In a study published by National Center for Biotechnology Information, it has a case fatality rate of >98%. Majority of this case can be found in warmer regions that affects individuals mostly of Hispanic origin. Documented cases had been reported from the Latin Americas in significant number, followed by the United States, Asian regions and some in Europe. However, a specific number of cases worldwide may never be known due to the following factors: lack of awareness, poor diagnosis and a poor public health system.

It is still yet to be known if its a serious public health concern worldwide.

Which of the choices below is the parent cell for all formed elements of blood?
a. megakaryocyte
b. hemocytoblast
c. polymorphonuclear cell
d. natural killer cell
e. myeloid cell?

Answers

Answer:

b. hemocytoblast

Explanation:

Hemocytoblasts are the pluripotent stem cells present in the red bone marrow and have the ability to give rise to all types of cells present in the blood. For example, the formation of red blood cells from hemocytoblast includes myeloid stem cell, proerythroblast, intermediates stages of accumulation of hemoglobin and enucleation and finally the red blood cells. Likewise, hemocytoblast can also from various white blood cells and platelets from different cell pathway.

The parent cell for all formed elements of blood is the hemocytoblast, also known as a hematopoietic stem cell.

Option (b) is correct.

Hemocytoblasts are multipotent cells found in the bone marrow that have the ability to differentiate into various types of blood cells. They give rise to all the different types of formed elements found in blood, including red blood cells (erythrocytes), white blood cells (leukocytes), and platelets (thrombocytes).

Megakaryocytes are responsible for producing platelets, but they are derived from hemocytoblasts themselves. Polymorphonuclear cells and natural killer cells are specific types of white blood cells that are formed through the differentiation of hemocytoblasts within the bone marrow. Myeloid cells refer to a group of cells that include erythrocytes, granulocytes, monocytes, and platelets, all of which originate from the hemocytoblast.

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Which of these allow nutrients to diffuse form the central canal to all the osteocytes within an osteon?

Answers

caniculi :) :P.............

All living things are made of organic compounds which contain the element A) carbon. B) hydrogen. C) oxygen. D) phosphorus.

Answers

the answer is carbon
The answer is (Carbon)

What do biologists call groups of cells that are specialized to secrete substances outside the cells?

Answers

The correct answer is "glands".
Glands are groups of cells which are formed from epithelial tissue and produce substances, such as hormones. They can be divided into two categories, exocrine or endocrine. Endocrine glands secrete these substances into the bloodstream, while exocrine glands release the substances into some of the body's cavities or the outer surface.
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