what is a pathogen that shows no life sign outside another cell?

Answers

Answer 1
I believe that a pathogen that shows no life sign outside another cell is called rickettsia. Rickettsia is a micro-organism pathogen that occupies the position between viruses and bacteria. It is a parasite that is mostly found in ticks, fleas and even mammals. This pathogen causes an infection in the blood.

Related Questions

Describe how a sunshine recorder works

Answers

A sunshine recorder, is a device that records the amount of sunshine at a given area. This helps to determined information about weather and climate as well as temperature of a geographical area.

Hope this helped :)

Answer:

A sunshine recorder is a device that records the amount of sunshine in a given area. This helps to determine information about weather and climate as well as the temperature of a geographical area.

Explanation:

copy and paste this ^^^^

100%

Which organism is not included in domain archaea
a. cyanobacteria
b. methanogens?

Answers

This can be figured out by basic English with the usage of suffixes and language translation.
"Archaea" is another term for "archaebacteria".
"Cyanobacteria" belongs to the domain "bacteria".
"Methanogens" are bacterium that produce methane. This organism belongs to the domain "archaea".

With this information, we can conclude that answer choice "A.) Cyanobacteria" is not included in the domain "archaea".

I hope this helps!

Cyanobacteria is not included in domain archaea.

What are the characteristics of cyanobacteria?

Cyanobacteria are phylum of gram-negative bacteria that obtain energy via photosynthesis. The name cyanobacteria refers to their color, which similarly forms the basis of cyanobacteria's common name, blue-green algae.

Cyanobacterial biomass can be used for the production of food, energy, biofertilizers, secondary metabolites of nutritional, cosmetics, and medicinal importance. Toxins from cyanobacteria can make animals very sick or even kill them.

Cyanobacterial biomass can be used for the production of food, energy, biofertilizers, secondary metabolites of nutritional, cosmetics, and medicinal importance.

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Oswald avery showed that
a. cells missing protein and rna were able to transform r cells into s cells and kill mice, but cells missing dna could not.
b. cells missing dna were able to transform r cells into s cells and kill mice, but cells missing protein and rna could not. selected:
c. cells missing dna, protein, and rna were able to transform r cells into s cells and kill mice.this answer is incorrect.
d. cells missing dna, protein, and rna were not able to transform r cells into s cells and kill mice. 1/1 question 16

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a. cells missing protein and rna were able to transform r cells into s cells and kill mice, but cells missing dna could not.
This proved that DNA was the important genetic material that was transferred during transformation.

When a predator eats its prey, all the energy from the prey is transferred into the biomass of the predator
A) true
B) false

Answers

the answer is true :) 

Answer is B) false.

According to 10 % law of energy transfer, when a predator such as hawk eats its prey such as snake in a grassland ecosystem , only 10 % of the available energy of the prey (snake) is transferred into the biomass of the predator (hawk). Most of the remaining energy is lost as heat to the environment.


Which part of the brain is most involved in control proceeses such as impulse control, emtion control, and long term planning?

Answers

Frontal lobe is the answer you are looking for

Describe the process of the mitotic spindle and microtubules throughout the steps of mitosis.

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The formation of the mitotic spindle starts at prophase. Between the prophase and the metaphase (some books call this the prometaphase), there are microtubules that surround the mitotic spindle fibers and these microtubules attach to the sister chromatids. In the metaphase, the two pairs of chromosomes attach to both of the two poles of the spindle. In anaphase, there will be separation of the spindles wherein the spindles go to opposite sides of the cell. In telophase, these spindles join with the centrioles, still on the opposite sides of the cell.
Final answer:

Microtubules form the mitotic spindle during Prophase, align the chromatids in Metaphase, pull them apart in Anaphase, and disappear during Telophase. They play a crucial role in chromatid separation.

Explanation:

The mitotic spindle, composed of microtubules, plays a critical role in the stages of mitosis. In Prophase, the mitotic spindle begins to form, extending from the centrosomes which move to opposite ends of the cell. The microtubules also break down. In Metaphase, the spindle fibers from each centrosome connect to a kinetochore on each sister chromatid, aligning them along the middle of the cell. The microtubules then start to contract.

In Anaphase, the spindle fibers contract further, pulling the sister chromatids apart to opposite poles of the cell. Then, in Telophase, the spindle fibers disappear, and the cell begins to split in a process known as cytokinesis.

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During which checkpoint do cell proteins determine whether growth factors that stimulate cells to divide are present

Answers

I think this happens during g1 phase. The g1 phase, is the first of four phases of the cell cycle that takes place in the eukaryotic cell division. During this phase the cell synthesizes mRNA and proteins in preparation for subsequent steps leading to mitosis. G1 phase ends when the cells moves into the S phase of the interphase

The first genetic material on earth was probably ________. the first genetic material on earth was probably ________. dna produced by reverse transcriptase from abiotically produced rna dna molecules whose information was transcribed to rna and later translated in polypeptides self-replicating rna molecules oligopeptides located within protocells

Answers

Final answer:

The first genetic material on Earth was likely self-replicating RNA molecules, as postulated by the RNA World Hypothesis. The transition from RNA to DNA likely involved a primitive reverse transcriptase.

Explanation:

The first genetic material on Earth was likely self-replicating RNA molecules. This idea forms the base of the RNA World Hypothesis, which suggests these molecules could have been the first carriers of genetic information. Unlike DNA, RNA can act both as a genetic material and as a biocatalyst due to its ability to adopt complex tertiary structures that can perform biological activities, similar to proteins.

It is believed that the transition from RNA to DNA could have been facilitated by the evolution of a primitive reverse transcriptase, converting the RNA information into more stable DNA.

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Final answer:

The first genetic material on Earth was most likely self-replicating RNA molecules, as proposed by the RNA world hypothesis. Over time, the more stable DNA started to replace RNA for the storage of genetic information, possibly through the action of early reverse transcriptases.

Explanation:

The first genetic material on Earth was probably self-replicating RNA molecules. This idea stems from the RNA world hypothesis that proposes that RNA molecules could have been the first form of genetic material, prior to the evolution of DNA and proteins. This is because RNA, unlike DNA, has the dual functionality to both store genetic information and catalyze chemical reactions as enzymes do.

The experiments of Martha Chase and Alfred Hershey in 1952 provided proof that DNA was indeed the genetic material and not proteins. However, this does not contradict the RNA world hypothesis as it is believed that the more stable DNA eventually took over the role of genetic information storage from RNA.

One theory for the origin of DNA involves the role of retroviral reverse transcriptase. This enzyme converts RNA into DNA - a process known as reverse transcription. Therefore, it is proposed that DNA could have evolved from an RNA world through the action of these early reverse transcriptases.

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Coordination by the nervous and endocrine systems results in

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 The Nervous and Endocrine Systems ... that results in a change in the activities of the organism

If you know that a population is 75% the dominant phenotype and 25% is the recessive phenotype, can you determine approximately how many of the dominant phenotype are homozygous dominant and how many are heterozygous dominant? Try this mathematically

Answers

If dominant allele = p, and recessive allele = q,
and p+q = 1, then:
[tex] {(p + q)}^{2} = {p}^{2} + 2pq + {q}^{2} \\ where \: {p}^{2} \: is \: homozygous \: domin \\ {q}^{2} \: is \: homozygous \: recessive \\ and \: 2pq = heterozygous[/tex]
So if 75% have the p, then p^2 = homozygous dominant
[tex] {p}^{2} = {(.75)}^{2} = .5625[/tex]
And if the other 25% have the q, the q^2 = homozygous recessive
[tex] {q}^{2} = {(.25)}^{2} = .0625[/tex]
Now those remaining MUST be the heterozygous, thus 2pq are those:
2pq = 2(.75)(.25) = .375

Therefore homozygous dominant are 56.3% and heterozygous are 37.5%

The outdated term for infant-directed speech is __________.

Answers

Final answer:

The outdated term for infant-directed speech is motherese. Motherese refers to the simplified and exaggerated speech patterns that adults adopt when talking to infants and young children.

Explanation:

The outdated term for infant-directed speech is motherese. Motherese refers to the simplified and exaggerated speech patterns that adults adopt when talking to infants and young children. It is characterized by a higher pitch, slower tempo, exaggerated intonation, and a simplified vocabulary.

Motherese is believed to serve an important role in language development by capturing the attention of infants and helping them differentiate speech sounds. It also facilitates bonding and social interaction between parents and infants.

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Final answer:

The outdated term for infant-directed speech is motherese, which involves simplified speech patterns and exaggerated intonation to help babies develop language and communication skills.

Explanation:

The outdated term for infant-directed speech is motherese. This kind of language involves simplified speech patterns, exaggerated intonation, and repetition. These elements help babies develop their language and communication skills. For instance, infants can recognize their mother's voice and discern between familiar languages and foreign ones. They also show preferences for faces that align with the sound of spoken language.

Essentially, motherese aids in the early stages of language acquisition, from cooing to babbling and eventually to the formation of first words.

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Rosemary had a stroke about a year ago and now she cannot understand what people are saying to her. this is embarrassing for her, so she responds using vague language and tries to make it appear as though she understands. which area of rosemary's brain was likely damaged by the stroke?

Answers

The area of Rosemary’s brain that was likely damaged by the stroke is the Wernicke’s area. This is the region of the brain that is important as they are responsible for language development in which this might have been the reason as to why Rosemary doesn't understand what are the people around her telling her.

which statement describes what most likely occurs when I Compass is placed next to a simple circuit made from Battery, a light bulb, and a wire

Answers

I believe the statement would be that, A magnetic field created by the electric current causes the compass needle to move. 
An electric current through a conductor creates a magnetic field,such that when a charged particle such as an electron, proton, or ion is in motion, magnetic lines of force rotate around the particle. Since current moving through the wire consists of electrons in motion, there is a magnetic field around the wire, which causes the compass needle to deflect. 

The process of using the information in mrna to synthesize protein is ___

Answers

this process is called Translation.
Final answer:

The process of using the information in mRNA to synthesize a protein is known as Translation. It involves the decoding of the mRNA's codon sequence at the ribosomes to construct a protein from amino acids. The tRNA molecules bring the amino acids to the ribosomes.

Explanation:

The process of using the information in mRNA to synthesize protein is called Translation. This is a fundamental step carried out at the ribosomes in cells during protein biosynthesis. The mRNA's role is to serve as a template for the assembly of amino acids into a protein structure. Each triplet on the mRNA, called a codon, correlates with a specific amino acid. The tRNA molecules transport the correct amino acids to the ribosomes based on the codon sequence. The ribosomes perform the complex task of binding to the mRNA and accurately matching each codon with its appropriate amino acid, forming the final protein product.

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What organelle is labeled M?

Answers

The nucleus is labeled M.
The nucleus good luck!

Which of the following is an example of instrumental aggression?
A. cutting off another driver in heavy traffic
B. holding up a bank (bank robbery)
C. shoving another person during an argument
D. performing a headlock on an attacker

Answers

The right option is B. holding up a bank (bank robbery) 
Instrumental aggression is a form of aggression which is carried out as a means of securing some reward or to achieve a specific goal. Holding up a bank (bank robbery) is an example of instrumental aggression because it is done for a specific goal which is to obtain money, assets or other property owned or held by the bank.

Answer: Option B

Explanation:

Instrumental aggression can be defined as showing an aggression for achieving goals. It is made o achieve some reward or to achieve an external goal such as victory.

In case of bank robbery the people will achieve money( reward) which acts as a signal of victory for the robbers.

So, bank robbing is an example of instrumental aggression.

To promote shell formation in eggs ,what can be added to the diet of layers?

Answers

To promote shell formation calcium should be added more often the diet of layers.  Calcium is an important mineral for egg shell quality. It is the main component of the egg shell which consists of 95% of calcium carbonate. Deficiency of calcium in the diet of layers may lead to the reduction in eggs size and also the production, poor egg quality with high chances of breakage  and also an increased layer mortality.

A bacterial population that has been growing for 15 generations began as a single cell. how many cells are present now?

Answers

32,768 cells are present now. 

In which habitat is one likely to find plants that have developed extremely large, broadleaf, evergreen leaves for gathering light, epiphytes, and climbing vines that strangle other plants?
a.taiga
b.kelp forest
c.tropical rainforest
d.temperate deciduous forest

Answers

Answer:

C. tropical rainforest

Explanation:

Because of the very dense canopy in the rainforest, little sunlight reaches the ground. For this reason most rainforest tree leaves are large and dark green, which aid them in capturing more sunlight for the photosynthesis process. Some trees will grow large leaves at the lower canopy level and small leaves in the upper canopy. These are strategies to reach sunlight in a leafy ecosystem where the light input is low.

The climbing vines apply this strategy of growing to maximize the sunlight they receive. Many start life in the canopy before sending roots down to the ground.

The Epiphytes live on the surface of other plants to make the most of the sunlight in the canopy layer.

Answer:

tropical rainforest

Explanation:

Which anole species seems to have a brighter dewlap? (remember that 1 corresponds to least bright and 6 to brightest.)?

Answers

Anolis cristatellus. 

An electrocardiogram is prescribed for a client complaining of chest pain. the nurse recognizes which as an early finding of an infarcted area of the heart?

Answers

Peak T waves in the ecg

Which families of metals are not so reactive, which allows them to exist by themselves in nature?

Answers

‘Noble gases’ are least reactive as their outer shells are fully filled with electrons. These do need to share their electrons from outer shells  with other elements .

The answers are:1. Noble Gases,

2. The closer the element is to the noble gases the less reactive it is.Hope this helps !!! :)

The branch of the autonomic nervous system that slows down the body as it recovers from exposure to a stressor is the _______________ nervous system

Answers

Sympathetic is the answer

Answer:

Parasympathetic

Explanation:

1.  Which of the following correctly relates an angiosperm structure and what it develops into?  (1 point)
pollen grain → seed
ovary → fruit
embryo → fruit
ovule → fruit
2.  The specialized reproductive structure that evolved most recently is the  (1 point) seed.
cone.
ovary.
gametophyte.
3.  In angiosperms, pollen grains are  (1 point)
diploid, and are made when haploid gametes join in fertilization.
diploid, and are made when haploid gametophytes join in pollination.
haploid, and are made when haploid spores undergo mitosis.
haploid, and are made when haploid ovules undergo meiosis.
4.  In what way is fertilization dierent in angiosperms than in other plants?  (1 point) Unlike other plants, angiosperms require water for fertilization to take place. Angiosperms are the only plants to produce seeds aer fertilization takes place.
In angiosperms, a sperm fuses with an egg to produce a zygote.
Two fertilization events take place in angiosperms, producing a zygote and endosperm.
5.  What is the purpose of a flower’s petals?  (1 point)
to produce pollen
to protect the plant's seeds
to be attractive so more plants are planted by people
to attract animals that will pollinate the plant

Answers

1. Angiosperms are vascular seed plants that start from a ovule that is fertilized and it develops into a seed enclosed in an ovary. This ovary is enclosed in a flower. When this ovary matures it matures into a fruit. So your answer is then B.

The specialized reproductive structure of angiosperms that evolved recently is the ovary. It developed carpals that protect the ovary from environmental hazards like insects.  Your answer is then, C. 

Reproductive structures in angiosperms (i.e. flower) produce pollen grains that are haploid. They are produced when haploid spores under go mitosis. Mitotic division in the gametophyte is important to produce gametes. Your answer is then C.

What makes angiosperm fertilization different when compared to other plants is that TWO FERTILIZATIONS take place. This occurrence is called Double Fertilization. One fertilization produces a haploid and the other produces a triploid. Your answer is then D.

The main purpose of a flower's petals is  to attract animals to aid in pollination. Animals that help pollinate angiosperms include bees, beetles, butterflies, birds and even bats. Your answer is then D.


Why does the cell membrane of the tube worm atop the flow of excess salt into it's body?

Answers

To maintain a stable environment.

Hope this helps!

-Payshence xoxo

Fungi are both beneficial and destructive. this fungus is living in and on the tree seen here. this is a ____________ relationship and could cause the tree to ______________.
a.helpful; grow
b.parasitic; die
c.helpful; make fruit
d.symbiotic; reproduce

Answers

It would be B. I believe.
The answer is definitely B.
 

If you hold a light tissue in your hands and gently blow across its top, the tissue will rise slightly because

Answers

 the answer is the pressure of moving air is less than that of static air.

hoped it helped!!

Does the order of amino acids in a protein matter

Answers

Yes.
The 'order' of amino acids is the protein sequence, also known as the primary structure. A peptide (short protein) with sequence XYXYXYXYX is very different from XXXXXXXYYYYYYY.

Yes, the order of amino acids in a protein is crucial and significantly affects its structure, function, and stability.

Does the order of amino acids in a protein matter

Proteins are polymers composed of a specific sequence of amino acids linked together by peptide bonds. This sequence is encoded by the genetic information in DNA.

The linear arrangement of amino acids determines how the protein folds into its three-dimensional structure. The folding of a protein is driven by various interactions between the amino acid side chains, including hydrogen bonding, hydrophobic interactions, electrostatic interactions, and disulfide bonds. These interactions occur between different amino acids in the sequence, and they dictate the specific folding pattern adopted by the protein.

The three-dimensional structure of a protein is intimately linked to its function.

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This is the science of genes, heredity and variation of organisms.

Answers

that is true. because life would not be around if we didn't have these things oh and also you might want to put cells in there to because cells relate to our genes and make up us 

Answer:

It's genetics

Explanation:

Which blood pressure readings for an adult would prompt a diagnosis of hypertension? a. 110/70 b. 140/96 c. 119/79 d. 130/79?

Answers

I believe the answer is 140/96. Hypertension refers to high blood pressure. It may lead to severe complications and increases the risk of heart disease, stroke, and death.The blood pressure of less than 120/80 mmHg is normal while that of 120 to 129/80 to 89 mmHg is referred as prehypertension, and that of 140/90 mmHg or higher is hypertension. 
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