The evidence Alfred Wegener used for his continental drift hypothesis did not include glacial movement. types of rocks and mountain ranges. oceanic vocanoes. fossilized remains of ancient plants.

Answers

Answer 1

Answer:

oceanic vocanoes

Explanation:

The continental drift is an idea that the continents can move. Alfred wegner in his evidence of this phenomenon used the following hypothesis:

Rocks of same age and type formed side by side and these rocks drifted apart to separate continents. Also as continents drifted apart mountain ranges separated.

Alfred used movements from ancient glaciers as evidence,

Fossils of dead plants and ancient animals also served as evidence. The fossils of these plants and animals were found on land areas that are now far apart. Wegner concluded that the continental drift was what separated the remains of these fossils.

All of the above was used as evidence. What was not used as hypothesis by Wegner was oceanic volcanoes

Answer 2

Wegener used fossil evidence to support his continental drift hypothesis. The fossils of these organisms are found on lands that are now far apart. Grooves.


Related Questions

OtWhich part of the cell theory did Schleiden help establish with his observation of plant material?
O A. Cells were named by Robert Hooke.
OB. Nonliving things are made up of cells.
OC. All cells come from existing cells.
O D. All organisms are made of one or more cells.

Answers

Answer:

C. All cells come from existing cells.

Explanation:

Schleiden observed plant material and concluded that all plant tissue was made up of cells, which helped to establish the cell theory that all cells come from existing cells.

Mitosis is a kind of
A. cell division
OB. nuclear division
OC. cell addition
O D. cell respiration

Answers

Answer:

A. Cell division

Explanation:

What is mitosis? Mitosis is a type of "cell division" in which one cell (the mother) divides to produce two new cells (the daughters) that are genetically identical to itself.

which part of your brain is involved in your motivation?

Answers

The anterior cingulate cortex as well as the dorsolateral prefrontal cortex are the main neural circuits related to the regulation of motivation.

Motivation can be passed into the three sub processes i.e  a process of regulating motivation, maintaining motivation as well as generating motivation.  

A tentative neuroscientific model of motivational processes which consists of three distinct but continuous sub processes, namely value-based decision-making, reward-driven approach, and goal-directed control. This process will recruits the ventral striatum (reward area) in which basic stimulus-action association is formed, and it is classified as an automatic motivation to which relatively less attention is assigned. The neuroscientific model of motivational process suggests several educational implications like; maintenance, generation, and regulation of motivation to learn in the learning environment.

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Pretend you are MEIOSIS. Write a letter to your body letting it know how important MEIOSIS is for your body to function and carry out life. You must include the following words: gametes, haploid, diploid, chromosomes, crossing-over, fertilization.

Answers

The letter to my body letting it know how important MEIOSIS is for your body to function and carry out life is written below.

The letter to my body

Dear body,

Meiosis here, writing to remind you of the essential part I play in your capacity to operate and go about living your life. Without me, it would not be possible to produce genetically different gametes, which are the reproductive cells.

As you may know, one of my main responsibilities is converting a cell's diploid to haploid chromosome count. For gametes to develop into healthy, viable individuals, cell division is necessary. The process of fertilization and subsequent life-cycle continuation would not be possible without chromosomal reduction.

Through the process of crossing-over, in which genes from various chromosomes can be transferred, genetic diversity is also expanded during my process. As a result, each gamete develops a distinctive combination of genetic information, which is essential for the survival of subsequent generations.

In a nutshell, my job in your body is to reduce the number of chromosomes and facilitate crossing-over so that healthy, genetically varied gametes are produced. Fertilization and life's continuation would not be conceivable without me. To ensure that I can continue to perform my duties effectively, please remember to take good care of both me and the cells I deal with.

Yours Sincerely,

Meiosis

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What were the original inhabitants of australia called?

Answers

The original inhabitants of Australia are known as Indigenous Australians. They have a rich culture and history that stretches back more than 60,000 years. Indigenous Australians are made up of many different groups, each with their own unique language, customs, and traditions. They were hunter-gatherers and had complex societies, spiritual beliefs, and trading networks. They have been the custodians of the land and the culture for millennia and continue to play a significant role in the country's history, culture and identity.

What are the general climate conditions in much of eastern europe?

Answers

Climatic conditions in most of eastern Europe are subarctic climates.

What is climate?

Climate is the habit and character of the weather that occurs in a place or area. The time period used as a reference for determining the average climate is 30 years. The constituent elements of climate are the same as the weather.

In Northern Europe, Eastern Europe, the Alps, and several other highlands have a subarctic climate. Subarctic climates are climates characterized by long, usually very cold winters, and short, cool to mild summers.

In winter, subarctic climates have short days and very long nights. Winter in subarctic climate areas at night can reach extreme temperatures of up to -20 to -50° Celsius.

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Can some help me please

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The parts of Adenosine Tri Phosphate (ATP) molecules include adenine, ribose and phosphate groups.

What is the purpose of ATP?

Cells consume and store energy from adenosine triphosphate (ATP), which is the energy source. Adenine, ribose, and three serially bound phosphate groups make up the structure of ATP, which is a nucleoside triphosphate. The ATP that is produced during food digestion is what animals use to store their energy. Similar to this, plants use ATP molecules to store the energy they obtain from light during photosynthesis.

Where does ATP contain its energy?

In ATP, the bonds holding the phosphate groups together serve as energy storage. More specifically, ATP's second and third phosphate groups are where the energy is kept. The third phosphate group separates from ATP when the cell needs energy, releasing energy in that bond.

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Ms. Green's biology students were studying cellular respiration. Using baking yeast to test the rate of fermentation, student groups mixed yeast with different manipulated variables. The groups used the height of the carbon dioxide bubbles produced in a test tube to determine which variable(s) produced the highest rate of fermentation.

Answers

Ms. Green's biology students were studying cellular respiration. Using baking yeast to test the rate of fermentation, student groups mixed yeast with different manipulated variables. The groups used the height of the carbon dioxide bubbles produced in a test tube to determine which variable(s) produced the highest rate of fermentation. Students hypothesized that adding lactose to a sixth test tube would produce the greatest amount of carbon dioxide.

Respiration is a process of overhauling complex organic molecules to produce energy. One type of respiration without oxygen, namely anaerobic respiration, will break down glucose to release stored energy. Anaerobic respiration occurs when the body needs energy quickly.

An example of anaerobic respiration alcohol fermentation using yeast. When approached, enzymes in yeast will analyze it with starch and sugar so that a decarboxylation process occurs when pyruvic acid from glucolysis breaks down carbon dioxide and carbonate groups to form acetaldehyde. Energy and carbon dioxide will be formed after acetyldehyth is reduced. Therefore the addition of lactose will produce the largest amount of carbon dioxide because lactose is a sugar molecule that is a food source for yeast.

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Why is visualization not sufficient to properly identify bacteria?
A. Bacteria have a limited set of shapes.
B. Identification is only needed in clinical specimens.
C. Many unrelated bacteria can share the same shape.
D. Bacteria have a limited set of shapes and many unrelated bacteria share the same shape.
E. Not all bacteria can be seen with a light microscope.

Answers

Visualization not sufficient to properly identify bacteria the correct option is (D). Bacteria have a limited set of shapes and many unrelated bacteria share the same shape.

Some bacteria, known as vibrio, have comma- or rod-like shapes; others might have spiral or tightly wound shapes, known as spirilla or spirochaetes. A few more uncommon shapes, including microorganisms in the form of stars, have been described.

Numerous bacterial species only exist as solitary cells, while others create distinctive associations. For example, Neisseria forms diploids (pairs), streptococci form chains, and staphylococci cluster into "bunch of grapes"-like clusters.

Soil, water, acidic hot springs, radioactive waste, and the deep biosphere of the Earth's crust are all home to bacteria. Through the recycling of nutrients, such as the fixation of nitrogen from the atmosphere, bacteria are essential at many phases of the nutrition cycle. The decomposition of dead corpses is a part of the nutrient cycle; bacteria are in charge of the putrefaction phase of this process.

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If 5 waves passes through a certain point in 1 second the frequency of this wave is

Answers

The frequency of the wave as he passes through a certain point  is 5 waves per seconds.

What is frequency?

Frequency is the amount of complete cycle completed by a wave in one seconds.

To calculate the frequency of the wave, we use the formula below.

Formula:

f = n/t..................... Equation 1

Where:

f = Frequencyn = Number of wavet = Time in seconds

From the question,

Given:

n = 5 wavest = 1

Substitute these values into equation 1

f = 5/1f = 5 waves per seconds

Hence, the frequency of the wave is 5 waves per seconds.

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The frequency of this wave is 5 waves per second, or 5 hertz (Hz).

What is the frequency of wave, f ?

This refers to the number of waves passing a point in a second. The unit of frequency is measured in hertz (Hz). One hertz is equal to one wave per second.

To calculate the wavelength and speed of a wave, these can be used to find the frequency of a wave:

f = v λ

where

λ  = the wavelength in meters

v = the speed of the wave in m/s.

This also gives the frequency of the wave in Hertz.

From the question:

f = 5

Hence, If 5 waves passes through a certain point in 1 second the frequency of this wave is 5 hertz (Hz).

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What happened in the F2 generation of Mendel's crosses?

Answers

Answer:

from the F1 generation the cross pollination of two parent which contain all purple flower.In the F2 generation from self pollination of F1 plants and contain 75% purple flower and 25% white flowers

It is an organic compounds serve as the genetic information storage molecules and also provide information to make proteins.

Answers

Deoxyribonucleic acid (DNA) is an organic compound that serves as the genetic information storage molecule and provides information to make proteins.

What is DNA?

DNA is an organic compound that stores genetic information and provides information to make proteins.

DNA is an organic molecule (containing carbon) that has a double helix structure. It is formed from two strands that bind together by hydrogen bonds between base portions.

DNA stores genetic information in sequences of four bases of nucleic acid; adenine (A), thymine (T), cytosine (C), and guanine (G). Each base, A, T, C, and G considered as a letter that spells out biological messages in the chemical structure. Organisms differ from one another because they have different nucleotide sequences and cause different messages.

These nucleotide sequences act as the instruction for producing protein. Therefore DNA messages encode the protein.

For example, the nucleotide sequence of the beta-globin gene. This gene carries the information for the amino acid sequence of the hemoglobin molecule.

Thus, structurally DNA is an organic compound that stores information in the form of nucleotide sequences, for making proteins.

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two uses of carbohydrate made in photosynthesis?

Answers

Two uses of carbohydrate made by photosynthesis are Source of energy and usage in biochemical synthesis.

Carbohydrate is one of most essential nutrient for most of the organisms. It is made after plant performs photosynthesis. It has many usage in plants which includes source of energy, biochemical synthesis, repairing of leaf cells and building of cellular structure etc.

Source of energy : Carbohydrates are a rich source of energy in plants, they store carbs in the form of starch and sugar which gives plants surplus supply of energy.Biochemical synthesis : Breakdown of carbs creates other essential chemicals and compounds which are essential for biochemical processes in plants.

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The diagram represents three section of a cell membrane showing three different methods involved in the transport of various molecules across the membrane


Methods A and B are classified as a methods of passive transport because they do not require

1) ATP
2) carbon dioxide
3) light
40 DNA

Answers

Answer:

1

Explanation:

5

Draw a picture showing PHOTOSYSTEM PS1

Answers

Photosystem PS1 is a photosystem found in the thylakoid membranes of chloroplasts in plants and other photosynthetic organisms.

What exactly are photosynthetic organisms?

Photosynthetic organisms are organisms that can produce their own food through the process of photosynthesis. This process involves the use of light energy to convert carbon dioxide and water into glucose (sugar) and oxygen. Photosynthetic organisms include plants, algae, and some bacteria.

Photosystem PS1 is the primary photosystem in plants and other photosynthetic organisms. It is composed of two membrane-bound proteins, called photosystems, that contain light-harvesting complexes and a reaction center. The light-harvesting complexes absorb energy from sunlight and direct it to the reaction center, where it is used to produce ATP and NADPH, the molecules needed for photosynthesis. The products of photosystem PS1 are then used to drive the second photosystem, PS2, which produces the end products of photosynthesis.

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what is the term for inanimate objects that harbor microorganisms that contribute to environmental contamination?

Answers

The term fomite inanimate objects harbor microorganisms that contribute to environmental contamination.

Inanimate items that are capable of carrying and spreading illness and infectious agents are referred to as fomites. It's possible to refer to fomites as passive vectors as well. There is a vast variety of commonplace items that have the potential to become fomites if they come into touch with infectious agents such as germs, viruses, bacteria, or fungi.

Certain infectious diseases are more likely to be passed on via fomites than others. However, the likelihood of bacteria on a fomite being able to successfully transmit to a human is contingent upon a number of conditions.

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If the original parent cell has 64 chromosomes, how many chromosomes will each cell have after the second meiotic division

Answers

Answer:

the correct answer is 32 because it splits evenly

Answer:

At the end of mitosis, the two daughter cells will be exact copies of the original cell. Each daughter cell will have 30 chromosomes. At the end of meiosis II, each cell (i.e., gamete) would have half the original number of chromosomes, that is, 15 chromosomes.

Explanation:

thank you very much thank you

Answers

Answer: D

Explanation:

cuz i took the test

hairlike processes that project from epithelial cells; help propel mucus, dust particles, and other foreign substances from the respiratory tract

Answers

It is true that, Epithelial cells form hairlike processes that help expel mucus, dust, and other foreign items from the respiratory tract.

Cilia, which resemble hairs, line the mucous membrane and transport mucus-trapped particles outside the nose. The tissue that lines the nasal cavity moistens, warms, and purifies the air that is inhaled. On the outside of airway cells, cilia are movable, tiny projections that resemble fingers.

The cilia that line the airways aid in raising and expelling mucus from the lungs. One of the defense systems of the respiratory system is represented by cilia, small muscular projections that resemble hairs on the cells lining the airway. A liquid mucus film that coats the airways is propelled by cilia.

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Correct Question:

State true or false: hairlike processes that project from epithelial cells; help propel mucus, dust particles, and other foreign substances from the respiratory tract.

Dietary ___ is a tough complex carbohydrate that the body is unable to digest.

Answers

Answer:

fiber

Explanation:

Fiber is a type of carbohydrate that the body can't digest. Though most carbohydrates are broken down into sugar molecules called glucose, fiber cannot be broken down into sugar molecules, and instead it passes through the body undigested

What 2 reflex actions when we swallow steer the food into the esophagus?

Answers

The esophagus, a muscular tube with the ability to collapse, connects the pharynx to the stomach.

What is Esophagus?

It is anterior to the vertebral column and posterior to the trachea as it descends. It empties into the stomach after passing through the esophageal hiatus, a hole in the diaphragm.

In order to maintain the lining moist and well lubricated to facilitate the passage of food, the mucosa possesses glands that generate mucus. Food enters and exits the esophagus under the control of the upper and lower esophageal sphincters.

The esophagogastric junction is home to the lower esophageal sphincter, which is also known as the cardiac sphincter.

Therefore, The esophagus, a muscular tube with the ability to collapse, connects the pharynx to the stomach.

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When you weigh ammonia, what fraction of it is hydrogen?Answer Options:A. 3/17B. 3/4​

Answers

Hydrogen and nitrogen, which are both nonmetals, are found in ammonia. With the three hydrogens present, nitrogen thus forms three covalent bonds.

Ammonia consists of three hydrogen atoms and one nitrogen atom. Hydrogen nitride is another name for it. Ammonia therefore contains nitrogen and hydrogen in a 14:3 mass ratio. Hydrogen and nitrogen, which are both nonmetals, are found in ammonia. With the three hydrogens present, nitrogen thus forms three covalent bonds.

In ammonia, the bond with a proton (H +) is formed by the lone electron pair on the nitrogen atom (N), which is depicted as a line above the N. After that, each of the four N–H bonds, which are polar covalent bonds, is equivalent. The ion isoelectronic with methane and the borohydride anion and has a tetrahedral structure.

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When I weigh ammonia, fraction of hydrogen is A)3/17.So,correct option is A. Molecular formula of ammonia is NH₃.

For finding the fraction of hydrogen in ammonia, we need to know about the molecular mass of ammonia. By knowing the molecular mass we can easily find the fraction of hydrogen in it.

We know that molecular mass of ammonia is =Molecular mass of Nitrogen + 3 ˣ Molecular mass of Hydrogen. Since, molecular mass of hydrogen is 1 gm and molecular mass  of nitrogen is 14g.

So, molecular mass of ammonia is = (3 ˣ 1) + 14

=>molecular mass of ammonia is =17g.

Now,taking about fraction of hydrogen in it=(total mass of hydrogen) / total mass of ammonia

=>Fraction is =3/17

Hence,correct option is A.

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(Complete question) is:

When you weigh ammonia, what fraction of it is hydrogen?Answer Options:A. 3/17 B. 3/4 C)3/5 D)3//14

how would you define a fruit? how can fruit be helpful in seed dispersal?

Answers

Answer:

Defined: the sweet and fleshy product of a tree or other plant that contains seed and can be eaten as food.

These fruits, including the seeds, are eaten by animals who then disperse the seeds when they defecate

Explanation:

Hope it helps?

PLS HELPP I DONT KNOW WHAT TO DO!!

Answers

Ex. Chick-fil-A salad is 1 bowl and 180 cals. Just look up each food and what you need with it. So “How many cals are in a Chick-Fil-A salad with no dressing?”

Match the hormones with their roles in breastfeeding: Mammary gland growth
Milk production and storage
Milk let-down
Mammary gland shrinkage

=Prolactin
= Oxytocin
= Estrogens
= Progesterone

Answers

Mammary gland growth - estrogen

Milk production and storage - prolactin

Milk letdown - oxytocin

Mammary gland shrinkage - progesterone

When a baby suckles, it stimulates tiny nerves. This releases two of her hormones, prolactin, and oxytocin, into the bloodstream. Prolactin promotes milk production, and oxytocin promotes milk production. Breast milk is then released or expelled from the nipple. Estrogen is essential for MG growth, both in pubertal ductal dilatation and in alveolar development during pregnancy. Breast tissue prepared for milk production shrinks and loses its shape. Because of progesterone.

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the court found the soldier guilty on the basis of the womans remarkable memory for dates and details that apparently eliminated all other possible fathers what are the possible genotypes for these three people

Answers

Genotypes of The Soldier's Blood Type: IOIO The O blood group only contains antigen O. Mother's blood type genotypes are IAIO.

What are the three genotype types?

There are three different genotype types: homozygous dominant (PP), homozygous recessive (PP), & heterozygous (Pp). The traits are the same in homozygous dominant and heterozygous genotypes.

Why is genotype important?

Similar to the term "genome," "genotype" in one meaning refers to the total collection of genes present in an organism's cells. However, in a more restricted meaning, it can refer to various alleles, or variant versions, of a gene for specific features or qualities.

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Consider the following scenario - You’ve read about how air pollution can result in acid rain and now you’re wondering how it may affect the plants in your garden. Hypothesis: Independent Variable: _____
Dependent Variable: _____
Constants: _____
Control Group: _____
Experimental Group: _____

Answers

In an experiment about how air pollution can result in acid rain and now you’re wondering how it may affect the plants in your garden the hypothesis is that air pollution affects plant life, Independent Variable is the amount of acid rain, the dependent variable is the rate of plant growth, constants are temperature and humidity, the control group is the growth of another species (e.g. an insect species) and the experimental group are the plant species in the garden.

What is the dependent variable?

The dependent variable in an experiment is one that is modified by the independent variable which is the cause of its change, while constant conditions stay the same and the target group is the experimental group.

Therefore, with this data, we can see that the dependent variable and independent variable are mutually related and do not affect the constant conditions.

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Plasmodial slime mold is an example of a multinucleated cell.a. Trueb. False

Answers

Plasmodial slime mold is an example of a multinucleated cell. It can be referred to as "one huge cytoplasmic mass with many nuclei" as seen to the right.

What are slime molds classified as?

Slime molds are classified in the Kingdom Protista (the Protists), despite many years of having been classified as fungi, in the class Myxomycetes. This change in classification resulted from research that yielded new information about their biology and phylogeny.

Why are Plasmodial slime mold not multicellular?

Plasmodium slime molds are unicellular when there is the availability of food. However, when the nutrients become scarce in the environment, these single-celled slime molds congregate to form a body and move around in search of food as the congregate form can detect airborne chemicals.

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Which agricultural inventions prompted the Sung dynasty’s population growth?

Select all that apply.

Responses

New irrigation techniques were used.New irrigation techniques were used.

New strains of rice were grown.New strains of rice were grown.

New methods for breeding livestock were used.New methods for breeding livestock were used.

New strains of wheat were grown.​

Answers

In addition to early ripening and drought-resistant types, farmers also created rice that was suitable for brewing and other specialized uses.

What is the procedure for brewing?

Malting, milling, mashing, extract separation, hop addition and boiling, hop removal and precipitates removal, cooling and aeration, fermentation, yeast separation from young beer, age, and maturation are all steps in the brewing of beer.

What does the word "brew" actually mean?

A transitive verb that means to steep, boil, and ferment (beer, ale, etc.) or to infuse and ferment. It also means to foment.

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Classify make a table with two columns-labeled haploid and diploid-and assign each of the following structures from the pine life cycle to the appropriate column: pollen tube, seed cone, embryo, ovule, and seeding

Answers

The haploid cells are the pollen tube, seed cone, and the seedling, while the diploid cells are the embryo and the ovule, and the haploid has the half set of the genetic contents while the diploid has the double set.

What is the significance of the haploid cells?

The haploid cells are important as they are the gametes that have the capacity to form the zygote, and they can be either sperm or an ovule. So the haploid cells, which are the male and female gametes, combine to make the diploid cells.

Hence, the haploid cells are the pollen tube, seed cone, and the seedling, while the diploid cells are the embryo and the ovule, and the haploid has the half set of the genetic contents while the diploid has the double set.

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