Help!

Which of the following is false?

Lithospheric plates move during earthquakes
Lithospheric plates can move even if there is no earthquake
Lithospheric plates can move very slowly
Lithospheric plates do not move

Answers

Answer 1
The last one is false, the plates are almost always moving
Answer 2
Final answer:

The false statement is that 'Lithospheric plates do not move.' Lithospheric plates are constantly moving, albeit slowly, and their movement can cause earthquakes among other geological phenomena.

Explanation:

The statement that is false among the given options is: Lithospheric plates do not move. Lithospheric plates, which are large segments of the Earth's crust, indeed move around the globe at rates typically measured in millimeters to a few centimeters per year. These movements are analogous to the growth rate of human fingernails. Lithospheric plates do move during earthquakes when the stress that has built up along fault lines is released suddenly. They can also move without the occurrence of earthquakes, albeit very slowly. Tectonic plates engage in several types of interactions at their boundaries, including divergent, convergent, and transform motions, which can cause earthquakes and are associated with other geological phenomena such as mountain building and volcanic activity.


Related Questions

*will mark as brainliest* What substance could be represented by the letter X in the diagram below?

Answers

Carbohydrates.

Carbon dioxide, water and ozone are not organic compounds. In fact, these are compounds from where many organisms get their basic atoms mentioned in the picture (Carbon, Hydrogen, Oxygen and Nitrogen). Carbon dioxide is usually where, for example, plants get their Carbon from.

Carbohydrates are organic compounds and are one of the macronutrients in our diet, next to proteins and fats. DNA is also as organic compound and is the very basis of all the genetic information in living organisms.

Answer:

B. Carbohydrates

Explanation:

Monomers linked together to form a polymer could be described as beads in a multicolored necklace. Which one of the following statements about monomers is true with respect to the above analogy? Monomers in a polymer could be linked in various ways. Monomers in a polymer are of different types. Monomers in a polymer look different but are structurally similar.

Answers

Monomers linked together to form a polymer could be described as beads in a multicolored necklace because monomer in a polymer are of different types.

Monomers are small molecules that can be joined together to form larger molecules called polymers. In the analogy of beads on a string, monomers can be structurally similar or different, akin to various beads, and linked in many ways to create complex polymers.

In the analogy where monomers are being compared to beads in a necklace to describe polymers, monomers are the individual units that can be linked together in a chain to form a polymer. Monomers can be structurally similar or different and can be linked in various ways to produce complex polymers, analogous to how different colored beads can be strung together to create a multicolored necklace. Looking at the nature of monomers, we can deduce that monomers are indeed small molecules that are repeatedly connected by covalent bonds to form larger molecules, known as polymers. These monomers in a polymer could be of different types depending on the complexity and the function of the polymer formed.

An owl and a hawk both eat mice. which of these terms describes the relationship between a hawk and an owl

Answers

Answer:

Competition

Explanation:

This is because both the owl and hawk are competing to eat the mice.

The correct option is A. predator-prey, as hawks and owls both consume mice, establishing a predator-prey relationship essential for ecosystem balance and natural selection.

The correct option is: A. predator-prey

Predator-Prey Relationship: Hawks and owls share a predator-prey relationship, where hawks prey on mice as well as other small animals, and owls also hunt and consume mice.Predator and Prey Dynamics: Hawks and owls are both predators that actively hunt for food, while mice are their prey, which they capture and consume.Ecological Balance: This relationship contributes to the regulation of mouse populations in the ecosystem, as predation helps control their numbers and prevents overpopulation.Natural Selection: Predation by hawks and owls can exert selective pressure on mouse populations, favoring individuals with traits that enhance their survival against predation.

Complete question:

Owls and hawks eat mice. Which describes the relationship between hawks and owls?

O A predator-prey

O B. mutualistic

C intraspecific competition

O D.all answers

explain why asexual processes are important to organisms that reproduce from two parents

Answers

Asexual reproduction is important because it can produce many off springs without finding a mate it is independent. Forms of life can't survive without reproduction. Asexual reproduction is reproduction without sex. In this form of reproduction, a single organism or cell makes a copy of itself.  They are clones. The main process of asexual reproduction is mitosis. 

Asexual reproduction

Is a kind of reproduction through which generation arise from a unique organism. The inherit of the genes of a specific mother and father only. It does not include the union of gametes that essentially never improve the number of chromosomes. Asexual reproduction is the main method of reproduction for single-celled bodies example archaea and bacteria.

which type of cell is smaller
a.prokaryote
b.eukaryote
c.nucleokayotes
d.

Answers

prokaryotic cells are significantly smaller than eukaryotic cells, which have diameters ranging from 10–100 µm 

During a menstrual cycle, what is the purpose of the uterine lining build-up?

Answers

The answer to this question would be: to prepare for pregnancy.

If fertilization happens, the egg will need to attach itself to the uterus. A failure in implantation process will cause it to develop a disease or abortion. In implantation, the gamete will dig up the uterus before attaching it. After that, the embryo can connect to some blood vessel and able to take nutrient from the mother blood.

If a child belonged to blood type o, he or she could not have been produced by which set of parents?

Answers

The blood types (A, B, and O) are controlled by the multiple alleles kind of genes.
Two O blood type parents can produce a child with only O blood type. Two parents with A blood type can produce a child with either A or O blood types. Two parents with B blood type can produce a child with either B or O blood type. One parent with A and another with B can produce a child with A, B, AB or O blood types.
If a child belonged to blood type o, he or she could not have been produced by Type AB mother and type O father.

Final answer:

A child with type O blood cannot have been produced by parents if both have homozygous dominant genotypes for blood type A or B. Both parents must be heterozygous (carriers of the O allele) to pass on type O blood to their offspring.

Explanation:

If a child belongs to blood type O, which is characterized by having two O alleles (genotype ii), this means that the child has not inherited the A or B antigen from either parent. According to the principles of inheritance of the ABO blood type system, if one parent has blood type A (possible genotypes IAIA or IAi) and the other parent has blood type B (possible genotypes IBIB or IBi), there is a possibility that the child can have blood type O. However, this can only occur if both parents are carriers of the O allele (heterozygous condition, possessing an i allele each, like IAi and IBi). On the other hand, if either parent has a homozygous dominant blood type genotype (IAIA or IBIB), then they cannot produce a child with type O blood, because they do not carry the O allele to pass on to the offspring.

It's important to note that people with type O blood have both anti-A and anti-B antibodies circulating in their blood plasma. Therefore, they can only receive type O blood in transfusions. Hence, a child with type O blood could not have come from two parents who both have homozygous dominant genotypes (like IAIA and IBIB).

A chemical that removes the amine groups from certain nucleotides would be classified as __________.

Answers

Nucleotides are the building blocks of DNA, which comprises genetic material of an organism. Chemical or physical agents that cause changes in this genetic material are called mutagens. 

The chemical mentioned above would be classified as a chemical modifying mutagen, particularly a deaminator, which is a (nucleotide) base-modifying agent that removes amino groups from the nucleotides. 

Which hormone regulates a client's circadian rhythms and reproductive system?

Answers

Melatonin is responsible for the regulation, which is secreted from the pineal gland. Melatonin also regulates other hormones within the body. It also can be produced and secreted by other tissues that make up the body, including the brain, which uses it to treat insomnia experienced after the sensation of jet-lag is experienced

Explain how hemoglobin works at the gills of a fish

Answers

Answer:

Hemoglobin in blood carries oxygen from the lungs or gills to the rest of the body

Hemoglobin in red blood cells carries oxygen throughout the body. Oxygen can infiltrate into carbon dioxide-rich parts of the fish's body and gills will expel this carbon dioxide.

What is the function of a fish's gills?

Gills are branching organs that are found on the side of fish heads. These organs contain an extremely high number of capillaries, which are very small blood veins. When a fish opens its mouth, water flows over its gills, and the fish's blood is able to draw up oxygen from the water through its capillaries.

In addition to the process of breathing, the gills of a fish are responsible for a variety of other vital processes, including the synthesis of hormones, the management of pH, the excretion of waste products that include nitrogen, and osmoregulation.

Hemoglobin, which is found in red blood cells, is responsible for transporting oxygen throughout the body. Oxygen is able to penetrate into areas of the fish's body that are rich in carbon dioxide, and the fish's gills will expel the carbon dioxide.

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Two waves with identical crests and troughs meet. The amplitude increases and this is an example of ______________________ interference

Answers

Constructive interference

Xeroderma pigmentosum is a severe, genetically linked skin cancer in which dna repair mechanisms are impaired. why would sufferers of this condition need to stay out of the sun?

Answers

Final answer:

Individuals with Xeroderma pigmentosum must avoid sun exposure due to damaged DNA repair mechanisms leading to a significantly higher risk of skin cancer and severe skin damage from UV light.

Explanation:

Sufferers of Xeroderma pigmentosum (XP) need to stay out of the sun due to their impaired DNA repair mechanisms, particularly the nucleotide excision repair (NER) mechanism. This condition leads to an inability to repair thymine dimers and other bulky DNA adducts caused by exposure to UV light from the sun. These unrepaired thymine dimers distort the DNA structure, significantly increasing the risk of skin damage, skin lesions, and a high rate of sunlight-induced skin cancer.

The extreme photosensitivity displayed by individuals with XP, along with the potential for skin atrophy, hyperpigmentation, and even neurologic disorders, underscores the necessity for such individuals to limit sun exposure as much as possible.

Unfortunately, there is currently no effective treatment for XP, making sun avoidance and protection critical for managing this condition.

________ is the process by which bacteria return nutrients to the soil

Answers

Nitro fixation is the process in which bacteria returns nutrients to the soil

What attaches skeletal muscle tissue to the bones of the skeleton?

Answers

Skeletal muscle just attach to the skeleton of the body by itself.
Tendons is what attaches sketal muscle tissue to the bones of the skeleton

What is the net gain of energy carrier molecules from glycolysis, acetyl coa formation, and the krebs cycle?

Answers

four ATP, ten NADH, and two FADH2 are the net gain of energy carrier molecules from gylcolysis, acetyl coa formation, and the kerbs cycle.

God bless!

A bacterial gene (gene
a.ordinarily makes a protein that binds to dna. a mutation that causes the loss-of-function of gene a increases the expression of another gene, gene
b. we can conclude that

Answers

gene A is a negative regulator of gene B.
Gene A is a regulator of Gene B

what effect of solar flares have on earth

Answers

Solar flares are very dangerous to living organisms they produce it produces high energy particles but we are protected by Earth's magnetic field and atmosphere because of its can sometime disturb radio waves because it effects the ionosphere but the flare is stopped by the atmosphere.

Answer:

Disturbs the geomagnetic surface of earth and the power distribution.

Explanation:

The solar flares are bright radiations emitted from the sun. This is radio magnetic waves of the sun. When it reaches near the earth atmosphere, it disturbs the ionosphere layer and the geomagnetic surface of the earth. The power distribution systems of the earth are damaged. It damages the power transformers, television, telephone signals due to the radio waves. It also disturbs the airplane navigation. Solar flares affect the sleeping mechanism (circadian rhythm) of human, causes anxieties and dizziness, etc.

Which interview technique should you use when addressing a geriatric patient?

Answers

Hello!

I believe the correct answer would be: Listen carefully to the answers the patient provides and speak loudly and slowly.

I hope my answer benefited you! c:

The part of a neuron that carries nerve impulses toward the cell body is called _____. the part of a neuron that carries nerve impulses toward the cell body is called _____. an axon a nerve a dendrite white matter

Answers

it is called the axon

Marcus is admitted to the hospital for a bone marrow stem cell transplant from his brother. What will happen after his brother’s stem cells are transplanted into Marcus?

A. The stem cells will divide through meiosis to create haploid stem cells.
B. The stem cells will divide through mitosis to create diploid stem cells.
C. The stem cells will divide through meiosis to create diploid stem cells.
D. The stem cells will divide through mitosis to create four haploid daughter cells.

Answers

B. The stem cells will divide through mitosis to create diploid stem cells.

Final answer:

The transplanted stem cells will divide through mitosis to create diploid stem cells. One cell typically stays as a stem cell while the other begins to differentiate into a specialized cell type.

Explanation:

After Marcus's brother's stem cells are transplanted into Marcus, the following will happen: The stem cells will divide through mitosis to create diploid stem cells. Option B is correct. Stem cells from the red bone marrow undergo mitosis plus cytokinesis to give rise to new daughter cells. In this process, usually one of the resulting cells remains a stem cell and the other starts to differentiate into one of the various specialized cell types that are needed in the body, such as red or white blood cells.

The body is composed of lean body mass (lbm) and body fat.
a. True
b. False

Answers

the body is composed of lean body mass and body fat 
a. true

Images under the light microscope are reversed and inverted. explain what this means

Answers

Inverted as in upside down
 Reversed as in inside out
Final answer:

Images appear reversed and inverted under a light microscope because the optics of the microscope's lenses bend the light in a manner that flips the orientation of the observed specimen.

Explanation:

When we say images under the light microscope are reversed and inverted, it means that the orientation of the specimen is flipped compared to how it actually exists on the slide. For instance, if you place a specimen on the microscope slide with its right side facing up, when you view it through the microscope, it will appear as though it is upside-down and its right side will now be facing left.

This inversion is due to the way the optics of the light microscope's lenses bend the light that passes through them. Microscopes achieve magnification by using two sets of lenses, and it is the way that light is redirected by these lenses that results in an inverted image. This concept is important in the study of microscopy, as it affects how we interpret and manipulate what we observe through the lens.

Wolves are predators of deer. What is most likely to happen to the deer population if the wolf population increased?

Answers

deer populations would drop as the wolves would hunt more

Answer:  The deer population will decrease.

Explanation:

The population of the prey depends on the population of the predators as they eat them to get energy.If there are more predators than prey then the number of prey will be less.

Here, in this case the wolves eat deer and the population of deer will decrease if the population of wolves will increase.

The process of breaking food into components small enough to be absorbed is called

Answers

The Digestive proccess

Needing help answering this.


Finally, look at the Punnett square again and write the numbers of offspring with each phenotype.

purple flowers, round seeds: 9
purple flowers, wrinkled seeds:
white flowers, round seeds:
white flowers, wrinkled seeds:

I'm not 100% sure that my table is correct either so if you don't mind, check that as well. Thanks!

Answers

purple flowers, round seeds: 9
purple flowers, wrinkled seeds: 3
white flowers, round seeds: 3
white flowers, wrinkled seeds: 1

The number of offspring with each phenotype are given below:

purple flowers, round seeds: 9purple flowers, wrinkled seeds: 3white flowers, round seeds: 3white flowers, wrinkled seeds: 1

What is a Punnett square?

A Punnett square is a graph that makes it simple to ascertain the anticipated proportion of various genotypes in children of two parents. Below is an illustration of a Punnett square for pea plants.

The genotypes of a particular cross or breeding experiment are predicted using the Punnett square, a square diagram. It bears Reginald C. Punnett's name, who developed the method in 1905. Biologists use the figure to calculate the likelihood that a child will have a specific genotype.

Therefore, the number of offspring are

purple flowers, round seeds: 9purple flowers, wrinkled seeds: 3white flowers, round seeds: 3white flowers, wrinkled seeds: 1

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Historically, the _________ was seen as the dominant __________ of the brain.
A.
left hemisphere . . . hemisphere
B.
right hemisphere . . . hemisphere
C.
occipital lobe . . . lobe
D.
parietal lobe . . . lobe

Answers

Historically, the left hemisphere was seen as the dominant hemisphere of the brain. 

Answer: A) or the first option ✅

Historically, the left hemisphere was seen as the dominant hemisphere of the brain. The correct option is A.

What is brain?

Brain is the main organs of the body because it controls whole body. It is a walnut-shaped organ which is divided into two hemisphere, left and right. It is present in the head.

The two hemisphere has different functions. The left hemisphere and the right hemisphere are connected with each other through corpus callosum, and they are divided by a long fissure.

The left side of the brain control the right side of the body and right side of the brain controls the left side of the body. The left is responsible for thinking and right side is responsible for image processing.

Thus, the correct option is A. left hemisphere . . . hemisphere

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What is it called when traits passed from parents to offspring?

Answers

The answer is Heredity! :)

A human's body temperature over the course of 24 hours is usually highest:

Answers

A human's body temperature over the course of 24 hours is usually highest: mid to late afternoon.  Every person’s body temperature depends on their age, age, exertion, infection, sex, time of day, and reproductive status of the subject, the place in the body at which the measurement is made, the subject's state of consciousness (waking, sleeping or sedated), activity level, and emotional state.

Escherichia coli is a prokaryotic bacterium. How will Escherichia coli reproduce?

Answers

Answer:

The correct answer is binary fission

Explanation:

Prokaryotes or bacteria divide through an asexual mode of reproduction called "Binary fission".

The E.coli divides to produce genetically identical daughter cells which initiate when parent cell elongates which is replicated by the formation of the septum. After the formation of a septum, the cellular component is equally divided into the daughter cell along with the genome which moves to each side of the cell.

Thus, binary fission is the correct answer.

What methods can the nurse use to determine if the drainage is csf?

Answers

Observe  for a "halo" around a spot of drainage.


Hope that helps, Good luck! (:
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