What kind of trees are present in broadleaf forests?

adaptable

epiphyte

deciduous

dormant

Answers

Answer 1

Answer: deciduous

Broad-leaf means wide, flat leaves on the trees. Broadleaf forest then is a  forest dominated by trees with wide, flat leaves which lose their leaves seasonally or yearly. They are found in areas with warm moist summers and cool winters. Another name for this forest is deciduous forest.

Answer 2

Answer:

deciduous

Explanation:

Most of the trees are broadleaf trees such as oak, maple, beech, hickory and chestnut. There are also several different kinds of plants like mountain laurel, azaleas and mosses that live on the shady forest floor where only small amounts of sunlight get through.


Related Questions

Match each type of scientist with a statement appropriate for her field of study. 1. astronomer "My focus is on the origin and structure of the universe." 2. meteorologist "Algae is an important life form, providing food for many marine life forms." 3. cosmologist "There's a cold front moving in from the West, which may bring snow." 4. oceanographer "That star constellation is called Orion." 5. geologist "Some rocks develop an unusual property of fluorescence, which makes a rock look as though it is glowing."

Answers

oceanographer is "algae is an important life form providing food for many marine life forms"

geologist is "some rocks develop an unusual property of fluorescence, which makes a rock look as though it's glowing"

astronomer is"that star constellation is called Orion"

metrologist is "there's a cold front moving in...."

and cosmetologist is the " my focus is on the orginand structure of the universe"

Answer:

1. The statement, that is, the star constellation is called Orion matches with an astronomer. An astronomer studies galaxy and everything associated with it, like planets, constellations, stars, and others.  

2. The statement, that is, there's a cold front moving in from the West, which may bring snow matches with a meteorologist. A meteorologist refers to an individual who studies weather, he is the one who analyzes the weather.  

3. The statement, that is, my focus is on the origin and structure of the universe matches with a cosmologist. A cosmologist studies cosmos, or the universe in all of its glory. They study not only the galaxy, however, the entire universe in general.  

4. The statement, that is, algae is an important life form, providing well for many marine life forms matches with an oceanographer. An oceanographer refers to an individual who studies oceans and the forms of marine life associated with it.  

5. The statement, that is, some rocks develop an uncommon property of fluorescence, which makes a rock seem as though it is glowing matches with a geologist. A geologist refers to an individual who studies Earth, and its components like soil, rocks, and the composition of the Earth.  

What is congeneration? Congeneration is a process of producing electricity and _____ simultaneously.

Answers

Cogeneration is a process of producing electricity and heat simultaneously.

I hope this helped!

Answer: Congeneration is a process of producing electricity and heat simultaneously.

Explanation:

The rationality of congeneration lies essentially in the saving of energy resources in the face of a conventional configuration that produces the same amounts of useful heat and work, which is usually converted to electrical or mechanical energy.

Congeneration is a very efficient energy production process, providing several benefits. At a local level, it can significantly reduce the user's energy bill, while at a global level it reduces the consumption of fossil fuel reserves, leading to a significant reduction in the environmental impact of using these fuels.

Organisms that are resident microbiota are best described as

Answers

microorganisms that remain with the person throughout life

The body’s resident microbiota are the microorganisms such as bacteria, fungi, protists and viruses that lives on a long term basis on or within the human body such as tissue, gastrointestinal tracts, liver, mammary glands, skin etc.






Why do you suppose that tropical rain forests are the richest terrestrial ecosystems in terms of plant and animal diversity?

Answers

A) Cold is not a limiting factor.B) Water is not a limiting factor.C) Because of the lack of environmental constraints, many evolutionary varieties can survive and reproduce.

What is the function of the green gallbladder in a fetal pig?

Answers

Gallbladder is a small, green, tear-shaped organ which is located in the right lateral lobe of the liver. The function of the green gallbladder in a fetal pig is to store bile, which is then released into the small intestine to help in emulsifying fats to aid in digestion.






Hugh, a 56-year-old health care worker, has no laboratory evidence of immunity to measles or mumps and cannot confirm that he had either disease. how many doses of mmr vaccine should hugh receive?

Answers

The answer would be two doses of MMR

Assuming that this question is made after 2013, Hugh would be born after 1957. A person that born after 1957 will need two shots, while people that born before 1957 only need 1 shot. MMR is the abbreviation for measles, mumps, and rubella. The vaccination of MMR is one of the routine vaccination in children.

what is a contour interval

Answers

A line drawn on a topographic map to indicate ground elevation or depression. If the contour intervals are closer together, the steeper the elevation.

Answer:

Vertical distance between contours is called contour interval

Explanation:

Contour lines are lines that connects point of equal height. The vertical distance or the difference in elevation between two contour lines is known as contour interval. For example  a set of 100 contours is used to represent a hill of height 500 ft. So, the vertical distance between each  contour will [tex]\frac{500}{100} \\[/tex]feet

[tex]= 5[/tex]ft contour interval.

Edward Jenner’s smallpox inoculation experiment was based on an observation by a dairymaid that she could not get smallpox because she had already had cowpox. How did Jenner form his hypothesis from this observation? He asked what would happen if he deliberately inoculated someone with cowpox fluid from another person. He tested different existing inoculations to see which one was most effective in preventing smallpox. He observed dairymaids milking cows with cowpox to see if the statement was true before forming a hypothesis. He drew a conclusion about cowpox infection based on the comment he overheard from the dairymaid.

Answers

Edward Jenner developed his hypothesis on smallpox vaccination after observing that milkmaids who had cowpox were immune to smallpox; he tested this by inoculating a boy with cowpox, who subsequently did not fall ill from smallpox exposure.

Edward Jenner's hypothesis about smallpox inoculation was formulated from the observation that milkmaids who previously caught cowpox did not contract smallpox. This common belief among the population caught Jenner's attention, suggesting that cowpox could potentially confer immunity against the more deadly smallpox. To test this hypothesis, Jenner deliberately inoculated a young boy with fluid from a cowpox lesion. After the boy recovered from a mild cowpox infection, Jenner exposed him to smallpox but the boy did not become ill, thus proving the efficacy of what we now term vaccination. His method was safer than variolation, an earlier practice of exposing individuals to smallpox itself in a controlled manner to induce immunity, and laid the groundwork for modern immunization practices.

The macronutrients are carbohydrates protein and fat true or false

Answers

The answer is true.  

Macronutrients are a class of chemical compounds which humans consume in their nutrition (via food) in largest amounts. Those nutrients provide humans with the bulk of energy. Most foods contain a mixture of more than one macronutrient, but there is always one they contain most of.

-The answer is false


Which feature is found among an autosomal recessive pedigree?
a. heterozygotes have a normal phenotype.
b. affected children will have at least one affected parent.
c. heterozygotes are affected.
d. both males and females are affected with equal frequency.
e. the trait is carried on the y chromosome?

Answers

One feature found among an autosomal recessive pedigree is that heterozygotes have a normal phenotype. Autosomal recessive are several ways that a trait, disorder or a disease can be passed down through families. Autosomal disorder means that two copies of an abnormal gene must be present  for the disease or trait to develop, and therefore, a heterozygote will show a normal phenotype. 

Contractions of the small intestine have three functions: mix chyme with digestive juices, allow for

Answers

contraction for the small intestine also allow for increasing the surface area for absorption of nutrients by the walls of the small intestine and also to allow the undigested food substances to be moved from the small intestine to the large intestine

When is a woman most likely to become pregnant answer.com?

Answers

Usually 14 days after the 1st day of her last period she’s ovulating so she’s most likely to get pregnant there

What is the gap between the axon terminals of a motor neuron and the sarcolemma of a skeletal muscle cell called?

Answers

I believe the synaptic cleft is the gap between the axon terminals of a motor neuron and the sarcolemma of a skeletal muscle cell. The synaptic cleft helps to decode the message. When electrical signal reaches the presynaptic ending ,it is translated into a chemical message that then diffuses across the synaptic cleft to the postsynaptic cell. 

Final answer:

The gap between the axon terminals of a motor neuron and the sarcolemma of a skeletal muscle cell is known as the synaptic cleft. This space is essential for the communication between the neuron and muscle cell, allowing for muscle contraction.

Explanation:

The gap between the axon terminals of a motor neuron and the sarcolemma of a skeletal muscle cell is called the synaptic cleft. This small space is crucial for the transmission of electrical signals necessary to stimulate muscle contraction. When an electrical impulse reaches the axon terminals, it triggers the release of the neurotransmitter acetylcholine (ACh) into the synaptic cleft. Acetylcholine diffuses across the cleft and binds to ACh receptors on the motor end-plate, which is part of the muscle fiber sarcolemma, initiating depolarization and contraction of the muscle fiber at the neuromuscular junction.

Substances intended for tubular reabsorption travel from the filtrate of the proximal convoluted tubule next to the ________.

Answers

Final answer:

Substances intended for tubular reabsorption in the kidney travel from the filtrate of the proximal convoluted tubule to the peritubular capillaries.

Explanation:

Substances that are intended for tubular reabsorption leave the filtrate of the proximal convoluted tubule and go to the peritubular capillaries. These capillaries are a network of tiny blood vessels that surround the proximal and distal convoluted tubules in the kidney. The process of tubular reabsorption is crucial for the body to reobtain useful substances that have been filtered out of the blood like glucose, salts, and water, which are reabsorbed back into the blood through the peritubular capillaries.

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Final answer:

Substances for tubular reabsorption move from the filtrate in the proximal convoluted tubule to the loop of Henle, where further reabsorption of salts and water occurs.

Explanation:

Substances intended for tubular reabsorption travel from the filtrate of the proximal convoluted tubule (PCT) next to the loop of Henle. After filtration at the glomerulus, the filtrate containing water, ions, and small molecules is collected into the Bowman's capsule and then enters the PCT. The PCT is a significant site where reabsorption occurs; the simple cuboidal cells with microvilli increase the surface area, enhancing reabsorption of solutes such as Na+, Cl-, glucose, etc., into the peritubular capillaries.

These cells actively transport ions, which requires a high concentration of mitochondria for ATP production. After substances are reabsorbed in the PCT, the remaining filtrate proceeds to the loop of Henle, where further reabsorption occurs, particularly of salts and water. Subsequent regions of the nephron, such as the distal convoluted tubule and the collecting duct, perform additional reabsorption and secretion processes to maintain homeostasis.

Originally ,scientists classified organisms into five kingdoms based in part on _____ structure A) cell B) family C) organ

Answers

The answer to this question is choice A, cell structure.

in relation to humans, b. burgdorferi is a/an ______ and the tick is a/an ______.

Answers

In relation to humans, b. burgdorferi is an ixodes tick and is responsible for an illness which is called the Lyme disease while tick arachnids which is part of the Parasitiformes. Same as mites, they are included in the subclass of Acari.

How is the dark dorsal side and the light ventral side of a frog adaptive?

Answers

The advantages of different skin colours of the frog is in survival, they help them camouflage from predators. If a predator is below them, the brighter ventral site simulates the bright sky (or water surface). If the predator is above, then dorsal side helps the frog to blend into the surrounding ground environment (or floating vegetation). 

Final answer:

Frogs have a dark dorsal side and light ventral side, an adaptation known as countershading, to camouflage from predators. This, along with their specialized eyelids and tympanum, are critical adaptations for survival in their environments.

Explanation:

The dark dorsal side and the light ventral side of a frog is an adaptation known as countershading, which helps provide camouflage from predators. When predators look down on the frog from above, the dark dorsal side blends with the darker environments underwater or on the forest floor. Conversely, when predators or prey look up at the frog against the light sky or water surface, the light ventral side makes it more difficult to see. This adaptive trait is complemented by the frog's skin texture and coloration that aid in blending with their environment.

In addition to their skin adaptations, frogs have three eyelid membranes that protect their eyes and aid their vision in different environments, both on land and underwater. Their tympanum, a part of their hearing apparatus, is well-developed to pick up on sounds, which plays a role in communication and predator avoidance. Frogs are also known to change from having a tail during their tadpole stage to losing it as adults, which is an adaptation to their life stages from water to land.

What structure connects the 2 cerebral hemispheres?

Answers

Corpus callosum. Hope this helps you

In multicellular organisms, the process of differentiation produces cells that are specialized to perform specific functions. for example, one cell may become a muscle cell whose function is to shorten or lengthen to allow movement. another cell may become a nerve cell whose function is to relay signals in response to stimuli. how do the dna and genes in a muscle cell compare to the dna and genes in a nerve cell?

Answers

All cells in an organism have the same origin, They come from a single fertilized cell called the zygote. Therefore, all cells in an organism have the same DNA and genes.
In order for a cell to become a specialized cell like a muscle cell or a nerve cell, it goes through a process of differentiation. Even though the DNA of the cell remains unchanged, the expression of genes in different cells differs greatly. Cell's surroundings and chemical factors trigger cell response and expression of genes specific to that type of cell.
So, the DNA and genes of all cells in an organism are the same, the thing that makes the difference is the specific expression of the genes.

Answer:the dna is the same, but different genes are activated

Explanation:

why should farmers be concerned about unused nitrates contaminating surface water and groundwater supplies?
a. unused nitrates increase oxygen in the water
b. unused nitrates reduce algae growth
c. excessive amounts of nutrients speed up the eutrophication process, and harm water quality
d. excessive amounts of nutrients cause overpopulation of fish

Answers

Answer:

the answer is defiantly not D nitrates can kill fish not overpopulate them  the best answer i can think of is A

Explanation:

Farmers be concerned about unused nitrates contaminating surface water and groundwater supplies by unused nitrates increase oxygen in the water.

What is Groundwater supplies?

Depending on a variety of conditions, the water table may be deep or shallow and may rise or sink. The water table may increase due to strong rainfall or the melting of snow, or it may sink due to extensive groundwater pumping.

Rain and snow melt that seeps into the voids and fissures beneath the surface of the earth replenishes or recharges groundwater supplies.

Due to the rapid consumption of groundwater compared to its natural replenishment, there are severe water shortages in several parts of the world. In some places, human activity has contaminated the groundwater.

Therefore, Farmers be concerned about unused nitrates contaminating surface water and groundwater supplies by unused nitrates increase oxygen in the water.

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A muscle group that works with and assists the action of a prime mover is a(n) ________. a muscle group that works with and assists the action of a prime mover is a(n) ________. antagonist and fixator fixator only synergist only antagonist and synergist antagonist only

Answers

The answer would be: synergist only

Synergist muscle will help the movement of the prime mover. One of the examples would be the biceps and brachioradialis. Antagonist muscle will have an opposite movement so they will cancel each other. The example would be biceps and triceps.

Shown below is a drawing showing the result of an experiment in which an rna molecule is allowed to mix with genomic dna that has been denatured by boiling, and the two molecules are allowed to hybridize. the dna strand is presumed to be the lighter-shaded one on the top. note that only one strand of dna is shown. what does the result above indicate about the relationship between the dna and the rna?

Answers

DNA hybridizes with RNA, except in the intron regions where complimentary RNA has removed from mRNA.
The loop is formed in the DNA in between exons and it happens in splicing.
DNA polymerase can only add new nucleotides to an existing strand of DNA while RNA can synthesis RNA without the need for existing primer or strand

The experiment's result showing RNA hybridizing with a denatured DNA strand suggests a complementary relationship, indicating that the RNA may be messenger RNA (mRNA) synthesized from the DNA template.

The result of the experiment where an RNA molecule is mixed with denatured genomic DNA and allowed to hybridize indicates a relationship between the DNA and the RNA. In this context, hybridization refers to the pairing of complementary nucleotide sequences between the two molecules, suggesting that the RNA molecule has a sequence that complements the DNA strand. Often, the RNA molecule is messenger RNA (mRNA), which is synthesized as a copy of one of the DNA strands and carries the genetic information for protein synthesis. Therefore, observing hybridization between the RNA and a denatured DNA strand implies that the DNA contains sequences that are templates for the RNA, affirming the central dogma of molecular biology, which states that DNA is transcribed into RNA which then is translated into protein.

Free nucleotides must be available in a cells nucleus to produce mrna strands. where do these free nucleotides come from

Answers

All four nucleotides (adenine, guanine, thymine, cytosine) are synthesized in the liver. The nucleotides can be synthesized de novo or recycled through salvage pathways. The synthesis occurs in the cytoplasm of the cell, not within a specific organelle. The components which are used for the nucleotide synthesis are derived from biosynthetic precursors of carbohydrate and amino acid metabolism, and from ammonia and CO2.
Final answer:

Free nucleotides for mRNA synthesis in a cell's nucleus are synthesized within the cell from dietary sources and through cellular biochemical pathways. These nucleotides are essential for transcription, where they pair with a DNA template strand to form mRNA, which then transmits genetic information out of the nucleus for protein synthesis.

Explanation:

Origin of Free Nucleotides for mRNA Synthesis

Free nucleotides, needed for the production of messenger RNA (mRNA), are present in the nucleus of a cell and are synthesized there as well. These nucleotides form the building blocks for new RNA synthesis during the process of transcription. When a cell needs to produce proteins, transcription is initiated in the nucleus. During transcription, the DNA double helix unwinds to expose a single template strand to which complementary RNA nucleotides bond, forming an mRNA strand.

RNA nucleotides include the nitrogenous bases adenine, cytosine, guanine, and uracil (U), which replaces thymine found in DNA. In eukaryotes, transcription factors and RNA polymerases facilitate the aligning and bonding of ribonucleotides to the DNA template. Unlike DNA polymerases, RNA polymerases can initiate RNA synthesis without a primer. The newly formed mRNA strand is a complementary copy of the DNA template strand and, once complete, dissociates from the DNA, exits the nucleus, and travels to the ribosomes for protein synthesis.

DNA replication, on the other hand, involves a different process where RNA primers are synthesized by primase to initiate DNA synthesis by DNA polymerases. For both DNA replication and mRNA synthesis, a pool of free nucleotides within the cell is essential. These nucleotides are generated through cellular nutritional intake and nucleotide synthesis pathways

The fossils called homo floresiensis were dated to:

Answers

The fossils called homo floresiensis were dated to 18,000 yBP.  H. floresiensis individuals stood approximately 3 feet 6 inches tall, had tiny brains, large teeth for their small size, shrugged-forward shoulders, no chins, receding foreheads, and relatively large feet due to their short legs. They made and used stone tools, hunted small elephants and large rodents, coped with predators such as Komodo dragons, and may have used fire. 

Net primary production is: the net energy received by plants after subtracting what is turned into plant material. only the energy received by plants that is converted into protein. the amount of material a plant accumulates as a result of photosynthesis. the total energy received by plants from sunlight. the total energy received by plants from sunlight in usable wavelengths.

Answers

The correct answer is the net energy received by plants after subtracting what is turned into plant material. 

Plants convert the energy they receive from the sun into chemical energy the plants and other organisms can use. We must not forget that plants are living organisms and they use a part of the energy they convert for their metabolic processes. The amount of energy that is left after the plants use some for their cell processes is the net primary production. 
Final answer:

Net primary productivity represents the energy left with plants after accounting for respiration, available for consumption by primary consumers. It's a measure of energy accumulation within an ecosystem, calculated as the total amount of carbon fixed per year minus the amount oxidized during respiration, reflecting the rate at which photosynthetic organisms convert solar energy.

Explanation:

Net primary production, also referred to as net primary productivity, is a crucial parameter in the field of ecology. It refers to the quantity of energy or organic material that remains with primary producers (like plants) after deducting the energy used for respiration. This net energy is then available for consumption by organisms in the next trophic level, the primary consumers.

In terms of ecosystem energy flow, net primary productivity is the measurement of energy accumulation within an ecosystem. This is calculated as the total amount of carbon fixed per year minus the amount of carbon that gets oxidized during respiration. For example, if a plant photosynthesizes 20,810 kcal/m²/yr, and uses 13,187 kcal/m²/yr for respiration and heat loss, the remaining 7,632 kcal/m²/yr signifies the plant's net primary productivity.

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List the two organisms involved in the production the hybrid, mule.

Answers

It is the hybrid of a Donkey and a Horse, The mule is fast like a horse and can carry heavy items a long distance. Technically a mule is a old fashioned moving truck, Kind of like how they used horses as cars. Unfortunately they cannot breed because the genetic "deformity" (being a hybrid)  messed up its chromosomes. I hope this helped out :D
Final answer:

A mule, a type of hybrid, is produced by breeding a female horse with a male donkey. The occurrence of hybrid species often happens in a 'hybrid zone' based on the fitness of the hybrids and the extent of reproductive barriers.

Explanation:

The two organisms involved in the production of the hybrid, mule, are a female horse (mare) and a male donkey (jack). A mule is a classic example of a hybrid, an organism that is the result of mating between two different species. The production of hybrids, like the mule, occurs in an area known as the hybrid zone. In some instances, hybrids may be less fit than parent species, leading to reduced hybrid reproduction and the reinforcement of the original species separation. However, if the hybrids are significantly more fit than their parent species, two species may merge back into one. This is less common, and typically observed where speciation, the formation of new and distinct species, is recent.

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The radishes that were treated with cobalt-60 for the lab "Radical Radishes" are expected to _____

Answers

The radishes that were treated with cobalt-60 for the lab Radical Radishes are expected to UNDERGO MUTATIONAL CHANGES.
Cobalt-60 gives off gamma rays, which have the capacity to break covalent bonds that exist in DNA molecules, thus causing mutations, which can be passed on to offspring during reproduction, if the mutations are not repaired. 

Answer:

The answer is Undergo mutational changes.

Explanation:

Cobalt-60 emits gamma beams, which have the ability to break covalent bonds that exist in DNA atoms, along these lines causing changes, which can be passed on to posterity amid proliferation, if the transformations are not fixed.

What is it called when plants lose water through their leaves?

Answers

The answer is transpiration

Answer: "Transpiration".

Explanation:

Plant loses water by the process of transpiration through the leaves.

The movement of water from different parts of plant through evaporation is called transpiration. this majorly occurs from the stomata.

Transpiration also helps to cool down the heat of the plant during summers, maintains the osmotic pressure and allows the movement of various nutrients through the complete plant body from the upper most shoot to the deep inside roots.

So, the process of transpiration helps the plant to loose water through their leaves.

What are the 5 main kingdoms of living things?

Answers

1. Monera (prokaryotes)
2. Protista (eukaryotes)
3. Fungi (eukaryotes)
4. Plantae (eukaryotes)
5. Animalia (eukaryotes)

Problem is where do the Archaea sit? Some put them in Monera, some say there are actually 6 kingdoms - Monera broken into Archaebacteria (ancient bacteria) and Eubacteria (true bacteria).

What I can say is that Archaea are definitely NOT bacteria.

What is true about gestation periods of endangered animals?
A. Endangered animals are unable to reproduce so they have no gestation period
B. Endangered animals typically have longer gestation periods
C. Some endangered animals have short gestation periods while others have longer gestation periods
D. Endangered animals typically have very short gestation periods

Answers

The answer to your question is C

Gestation periods of endangered animals can vary widely. The length is determined by biological factors, not by their endangered status, and can range from very short to very long depending on the species.

The gestation periods of endangered animals, like those of all animals, can vary greatly. The misconception that endangered animals have specific gestation periods because of their conservation status is incorrect. The truth is that some endangered animals have short gestation periods, while others may have longer gestation periods. For example, a fox, which may be endangered depending on the species, has a gestation period of 57 days, whereas the African elephant, which is also at risk of endangerment, has one of the longest land mammal gestations at 640 days.

Gestation periods are determined by biological and evolutionary factors, not by the endangered status of a species. This means that an endangered animal's ability to reproduce and the length of its gestation is related to its biological needs and adaptations, and not directly influenced by its conservation status.

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