Answer:
choice a BCAD
Explanation:
RIGHT ON EDGE 2021
Genes are small, round structures present in the chromosomes. The order of the genes on the chromosome is option A, BCAD.
What are genes?Genes are the basic unit of heredity.
DNA is the material that makes up genes.
Some genes serve as blueprints for the production of proteins.
There are hundreds to more than millions of genes are present in DNA.
Thus, the correct order of the genes is option A, BCAD.
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2. Which of the following is NOT a clue that a chemical change has occurred? (1 point)
change in color
production of a gas
formation of a precipitate
change in shape
Answer:
D. Change in shape
Explanation:
Change in shape is the physical property of the substance. Chemical change of the compound is observed during a chemical reaction. Change in colour, production of the gas, formation of a precipitate are the examples of chemical change and can be sensed easily.
Vapour pressure, boiling point, density and shape are the examples of physical properties of compounds. Chemical change also leads to change in texture of the compound. A compound has both physical and chemical properties and its chemical reaction is enhanced by the catalyst.
valence electrons are important because
A) They form chemical bonds with other atoms
B) They tell which period the element is in
C) They take isotopes
D) They identify the element
Answer:
A) They form chemical bonds with other atoms
Explanation:
In chemistry, a valence electron is an outer shell electron that is associated with an atom, and that can participate in the formation of a chemical bond if the outer shell is not closed; in a single covalent bond, both atoms in the bond contribute one valence electron in order to form a shared pair.
Is bread cell organization a living or non living
Bread cell organization is a non-living structure created by yeast cells during the fermentation process when making bread.
Explanation:Bread cell organization is a non-living structure. Bread is composed of cells, but these cells are not living because the bread itself is a product of cellular organization by yeast. Yeast is a single-celled fungus that undergoes fermentation to produce carbon dioxide gas, which causes bread to rise. Once the fermentation process is complete and the bread is baked, the yeast dies, and the cells become non-living.
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An enzyme is a protein that____
An enzyme is a protein that accelerates a specific chemical reaction within a cell by reducing the activation energy. Each enzyme is specific to certain substrates and doesn't alter the free energy of the reactants or products, but merely makes the bond breaking and forming processes happen more readily.
Explanation:An enzyme is a protein that substantially speeds up the rate of a specific chemical reaction within the cell by lowering the activation energy. Each enzyme is highly specific, only acting on certain substrates to either break them down (catabolic enzymes), build more complex molecules (anabolic enzymes), or affect the rate of reaction (catalytic enzymes). These enzymes, which are composed of amino acid chains, bind to these substrates and hold them in a certain way to make the process of breaking and forming bonds happen more readily. However, it is crucial to note that enzymes do not alter the free energy of the reactants or products, nor do they change whether a reaction is exergonic (spontaneous) or endergonic.
An example of an enzyme is salivary amylase that is involved in the breakdown of amylose, which is an element of starch.
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The tilting or folding of horizontal layers must occur _____. A. after the layers have formed B. before the layers have formed C. during the formation of the layers
Answer: A
YYYYYYYEEEEEETTTT
Answer:
Option (A)
Explanation:
The layers that creates folding or tilting are found in the sedimentary rocks. These rocks are formed due to the compaction and lithification of sediments. For example, sandstone, shale and mudstone.
This rocks when deposited over one another, it forms layers. These layers are then subjected to folding or tilting due to the compressional stress (tectonic forces).
Before forming the layers, if the rock is subjected to compressional stress, then the sediments will not form layers and there occurs no folding. Whereas it will shatter the rock.
Thus, the correct answer is option (A).
which molecule do plants use to store extra glucoses
Answer:
starch
Explanation:
does this help you?
Plants store extra glucose in the form of starch, a complex carbohydrate. This stored glucose can be broken down when needed for energy, such as at night when photosynthesis cannot occur.
Explanation:Plants store extra glucose in the form of a molecule called starch. Starch is a complex carbohydrate, made up of many glucose units linked together. Plants make glucose through the process of photosynthesis, but they can't use all the glucose they produce right away.
So, to store this extra glucose for later use, plants will link many glucose molecules together to form starch. This starch can then be broken back down into glucose when the plant needs more energy. For example, at night, when the plant can't perform photosynthesis, it may break down its stored starch into glucose to continue its metabolic functions.
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Draw the Lewis Dot Structure for NaCl
as an ionic bond.
Can you please give me a better idea of what to do?
What is the difference between science and technology? How do science and technology affect each other? Give full detail
Answer:
The science is the knowledge of research while technology is the application of scientific research.
Explanation:
The science and technology are the two inseparable things. They are influencing each other. Technology is the application of science. By using technologies many products like different machines, objects are made. Technology helps in making a comfortable life for humans.
On the other hand, science is the knowledge of various fields - nature, physical world, matters. etc. Science is based on research and finding the truth behind any natural phenomena. Then the result of the scientific invention is produced in theory.
This scientific theory helps in developing new technologies. These have a symbiotic relationship. They can not go separately. The microscope was invented due to technical skills, but by using it many biological phenomena were revealed. They always go in a parallel way.
The purpose of a taxonomic system is to allow for a scientific _____________ throughout the world.
Final answer:
The purpose of a taxonomic system is to allow for a scientific classification throughout the world.
Explanation:
Taxonomy, sometimes referred to as the Linnaean system, is the science of naming and grouping species to construct an internationally shared classification system.
This system uses a hierarchical model which includes a series of nested groups, akin to directories on a computer, or the organization of a grocery store from departments down to individual products. This hierarchical structure begins with three large categories known as domains: Bacteria, Archaea, and Eukarya, and continues with increasingly specific categories: kingdom, phylum, class, order, family, genus, and species.
Scientists in the field of systematics provide crucial information on how organisms are similar or different, and this contributes to building, updating, and maintaining the "tree of life". As new species and character information are discovered by scientists, these taxonomic trees evolve to reflect more accurate data and to provide a consistent framework for classification across the world.
The purpose of a taxonomic system is to allow for a scientific classification throughout the world.
A taxonomic system is a method by which scientists classify and categorize organisms based on shared characteristics. The term classification refers to the process of arranging organisms into groups or categories based on their similarities and differences. This system enables scientists to organize the vast diversity of life into a hierarchical structure, which includes domains, kingdoms, phyla, classes, orders, families, genera, and species.
The taxonomic system is crucial for several reasons:
1. Identification: It provides a way to identify organisms and assign them to specific groups. This is important for communication among scientists and for keeping track of the world's biodiversity.
2. Understanding Relationships: By classifying organisms, we can understand their evolutionary relationships and how they are related to one another. This can provide insights into the mechanisms of evolution and the history of life on Earth.
3. Scientific Research: Classification helps researchers to focus on specific groups of organisms and understand their unique characteristics, behaviours, and ecological roles.
4. Conservation: It aids in the identification of species that are endangered or in need of protection, which is essential for conservation efforts.
5. Resource Management: Taxonomy is used in the management of natural resources, including agriculture, forestry, and fisheries, by helping to identify and manage pests, beneficial organisms, and economically important species.
6. Global Standardization: A standardized taxonomic system allows for consistency in naming and classifying organisms across different countries and languages, facilitating international collaboration and data sharing in biological research.
The taxonomic system is dynamic and can change as new information becomes available, particularly with advances in molecular biology and genetics that provide new insights into the relationships among organisms.
The invention of which instrument allowed scientists to discover cells?
a. eyeglasses
b. magnifying glass
c. microscope
d. telescope
The invention of microscope allowed scientists to discover cells.
As a microscope we call an instrument that is used for the observation of objects too small (such as cells) to be seen with the naked eye.
The microscope is an optical instrument that increases the capacity of observation to levels of close-up such that it even makes possible the analysis of particles.
This instrument was invented by Zacharias Janssen in the year 1590.In 1665, the research carried out by William Harvey on blood circulation appeared, by analyzing blood capillaries.From then on, technical progress has been made by increasing the magnification level of microscopes, and this in turn, making the study of cells possible. In the middle of the 20th century, the invention of the electron microscope made it possible to know the three-dimensionality of cell structures and the spatial distribution of the molecular components within them.Therefore, we can conclude that the invention of microscope allowed scientists to discover cells.
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Water's high heat of vaporization allows it to cool us off when we sweat.
True
False
Answer:
false
Explanation:
Why is wafting chemicals important?
Answer:
It is very important to not inhale chemicals because when strong acids and bases get into your lungs, they mix with the water in your lungs and can cause burns. Your lungs are sensitive to many chemicals because the alveoli sacs are on one cell layer thick.
The idea that all living things are made up of cells is considered scientific law. This means the idea
is an emerging scientific idea that has a logical explanation.
has been tested with similar results at least twice.
is supported by scientific consensus and a large amount of evidence.
has been rejected only once by the scientific community.
Answer:
The answer is C. This means the idea is supported by scientific consensus and a large amount of evidence.
Answer:
The Answer is C
Explanation:
How were Redi’s and Pasteur’s experiments different? Redi studied broth, but Pasteur tested meat. Pasteur studied flies, but Redi tested meat. Pasteur tested for microorganisms, but Redi studied larger organisms. Redi tested for microorganisms, but Pasteur studied larger organisms.
Answer: C. Pasteur tested for microorganisms, but Redi studied larger organisms.
Explanation:
Redi had conducted experiment with spoiling meat; Pasteur experimented with broth. Redi discredited spontaneous generation for huge life forms by delineating that the maggots emerged from meat just when flies laid eggs in the meat.
Pasteur utilized his celebrated swan-neck flask experiment, to part of the discussion. On his experiment air is permitted to contact the broth. Microorganisms present in the residue were not ready to explore the convoluted curves in the neck of the flask.
(B.) Redi experimented with rotting meat; Pasteur experimented with broth.
What are the subatomic parts of the atom and what is their charge ?
The subatomic parts of an atom are the protons, neutrons, and electrons. Protons have a positive charge, neutrons have a neutral(no) charge, and electrons have a negative charge.
if you begin cutting a piece of copper in half and continued cutting it in half until you had the smallest piece you would end up with
A anew substance
B an atom
c a molecule
Answer:
B: an atom
Explanation:
An atom is the smallest substance that can exist in isolation.
Hence, if a piece of copper is continually divided, eventually the smallest particle you would get in an atom.
What is the difference between ecosystem Services and natural resources
Ecosystem services are the flows of benefits which people gain from natural ecosystems
Natural Resources are materials or substances that occur in nature and can be used for economic gain.
Natural resources are physical substances or objects in nature that we find useful in their raw form, like water or minerals. Ecosystem services, on the other hand, are benefits humans directly and indirectly receive from ecosystems, focusing more on the functions that support life and well-being.
Explanation:The difference between ecosystem services and natural resources largely lies in how they are used and perceived in regard to human benefit. Natural resources refer to substances or objects in nature that humans find useful in its raw form. This includes things like water, soil, minerals, and trees.
On the other hand, ecosystem services refer to the benefits that humans receive from ecosystems directly or indirectly. They are usually categorized into four main types: provisioning services (such as the production of food and water), regulating services (like control of climate and disease), supporting services (like nutrient cycles and crop pollination), and cultural services (such recreational and spiritual benefits).
Therefore, while natural resources focus more on the physical products we can extract and use, ecosystem services place emphasis on the functions of ecosystems that support life and human well-being.
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Isabelle decides to shave a 1 x 2-inch patch of her hair and the same-sized patch of her
dog's hair. She then measures the growth every day for three weeks.
i 7) What question is Isabelle trying to answer?
Isabelle is trying to answer the question: how does the hair of both herself and her dog grow over the course of three weeks after shaving a 1 x 2-inch patch?
Explanation:Isabelle is trying to answer the question: how does the hair of both herself and her dog grow over the course of three weeks after shaving a 1 x 2-inch patch? By measuring the hair growth every day, Isabelle can observe how much the hair has grown and analyze any differences in growth between her and her dog. This experiment can provide insights into the hair growth cycle and factors that affect it.
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Isabelle's experiment involves studying the effect of species on hair growth. Key variables include the species as the independent variable and hair growth as the dependent variable.
Isabelle's experiment on hair growth involves multiple factors that need to be classified correctly:
Problem Question: What is the effect of species on hair growth?Independent Variables: The species (human vs dog)Dependent Variables: The length of hair or the amount of growthControlled Variables: Size of shaved patch; length of time hair growsExtraneous Variables: The dog might not let her be measured; different human hairs grow at different rates; this is not accounted forWays to Perform Experiment: Shave patches of her hair and her dog's hair and then measure the growth of hair in those patches with a ruler every day for 3 weeksThings to be Done to Improve This Experiment: Add a control group; include more subjects, humans, and more dogs of the same breed; increase the length of time the experiment is conductedThe effect of species on hair growth can be studied by shaving patches of hair from both humans and dogs, measuring the growth over three weeks, and accounting for various controlled and extraneous variables.
Complete question: Match with appropi]riate classifications: Isabelle decides to shave a 1 x 2-inch patch of her hair and the same-sized patch of her dog's hair. She then measures the growth every day for three weeks.
Column A: What is the effect of species on hair growth? Shave patches of her hair and her dog's hair and then measure the growth of hair in those patches with a ruler every day for 3 weeks. The species The length of hair or the amount of growth Size of shaved patch; length of time hair grows The dog might not let her be measured. Different human hairs grow at different rates; this is not accounted for Add a control group; include more subjects, humans and more dogs at the same breed; increase the length of time the experiment is conducted.
Column B: Dependant variable, ways to perform experiment,extraneous varible, things to be done to improve this experiment, problem question, controlled variables, independant variables.
This picture showes
A. Weathering
B.erosion
C. Deposition
D.all of the above
Answer: No Picture Included
Explanation:
in what way do prevailing winds affect precipitation an in region
Final answer:
Prevailing winds affect precipitation patterns by carrying moisture from oceans to continents, where it can condense and fall as precipitation. Seasonal shifts in wind and pressure systems, and geographic features like mountain ranges, also contribute to these patterns.
Explanation:
Prevailing winds play a significant role in shaping the precipitation patterns in a region. These winds can carry moisture from the oceans and release it as precipitation upon encountering landforms such as mountain ranges. Regions influenced by winds flowing from warm oceans, such as the westerlies in California, can receive rainfall due to the air's ability to pick up moisture over the water and then cool and condense over land. Moreover, seasonal variations in global pressure systems driven by Earth's heating cause shifts in precipitation, as can be seen with the Intertropical Convergence Zone (ITCZ) and the monsoon effects in Asia. The local precipitation effects, such as the lake-effect precipitation or the drought conditions linked to the subtropical high, further demonstrate the intricate relationship between prevailing winds and precipitation.
Which of the following is an organic molecule
A. Iron oxide
B.Oxygen gas
C.Water
D.Sucrose
Answer:
c water (h2o)
Explanation:
What atoms make up sugar molecules, amino acids, and fatty acids?
Sugar molecules make up carbohydrates, amino acids are responsible for protein and fatty acids are makeup lipids or fats.
Sugar molecules are simple carbohydrates called monosaccharides and are structural units of all the carbohydrates by link with one another like a chain. The three important sugar molecules are Glucose, fructose, and galactose provide nutrition.
Amino acids are hundreds or thousands of smaller units that bind with one another in a chain-like structure called a polypeptide chain that is a form of Proteins. There are 20 types of amino acids that link together in a different sequence to form various proteins.
Fatty acids are a straight chain of an even number of carbon atoms, smaller units of lipids or fatty acids that binds in huge number with one another.
All three are the essential for nutrition of organisms, therefore, the correct answer is -carbohydrates, protein, and lipids.
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Final answer:
Sugar molecules, amino acids, and fatty acids all contain carbon, hydrogen, and oxygen. Sugars have a ring structure, amino acids a central carbon with an amino group, carboxyl group, and R group; and fatty acids a carbon chain with a carboxyl group.
Explanation:
Sugar molecules, amino acids, and fatty acids are all vital biological molecules composed of carbon, hydrogen, and oxygen atoms. Sugars like glucose have a ring structure with multiple hydroxyl groups, amino acids have a central carbon atom (alpha carbon) bonded to an amino group (NH₂), a carboxyl group (COOH), a hydrogen atom, and a variable R group which defines the amino acid. Fatty acids are long chains of carbon atoms with a carboxyl group at one end. Each type of molecule plays a crucial role in the structure and function of living organisms.
Fatty acids differ slightly because they aren't linked together in long chains like proteins or polysaccharides, but rather, they are commonly found in groups of three attached to a glycerol molecule to form triglycerides, which are a type of fat.
Why is the structure of a dna molecule sometimes referred to as having the the shape of a spiral staircase
dna molecules have have nitrogenous base pairs that compliment with each other. ex: guanine, adenine, thymine and cytosine. A:T, G:C. since each has a pair, they form a ladder as the dna molecule develops. this is why it's similar to the shape of a spiral staircase. hope i helped ^__^
The DNA molecule's double helix shape is compared to a spiral staircase, with two polynucleotide chains forming the edges and complementary bases forming steps through hydrogen bonds.
Explanation:The structure of a DNA molecule is often compared to a spiral staircase because of its distinctive double helix shape. This comparison helps visualize how the molecule is constructed. Two polynucleotide chains run antiparallel, forming the outer edges of the staircase, much like the handrails. These chains consist of a backbone made of sugar and phosphate groups. Connecting these backbones are the 'steps' of the staircase, which are actually pairs of complementary bases (adenine with thymine and guanine with cytosine) forming hydrogen bonds between the two strands.
The arrangement of these bases is like the steps of a spiral staircase because they are aligned in a manner that reflects the twisting shape of the double helix. The strong structure not only visually resembles a staircase but is essential for the stability of the DNA molecule, enabling it to carry genetic information effectively.
Which of the following is an example of a producer? Tree Hawk Rabbit Mushroom
Answer:
Tree
Explanation:
Producers are plants. Mushroom is fungi, not plant
What makes a solid different than a liquid
A solid is different than a liquid because of it's "molecules." A solid molecules aren't moving they are compacting and shaking, while liquid molecules are slowly moving around but aren't compacted together. Also solids are different then liquids because of "shape, and size." Solids have a shape while liquids do not just like how size is different also.
Hope this helps.
A solid differs from a liquid in terms of their particle arrangement and movement. Solids have closely packed particles in a regular pattern, while liquids have particles that can move past each other and flow.
Explanation:A solid and a liquid are two states of matter that differ in their particle arrangement and movement. In a solid, the particles are closely packed together in a regular pattern and vibrate but do not move past each other. This allows solids to maintain their shape and volume. On the other hand, liquids have particles that are close together but are not in a regular pattern. These particles can move past each other, allowing liquids to flow and take the shape of their container.
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Proteins do all of the following things in the body, except which of the following
Proteins in the human body have diverse functions including structural support, enzyme catalysis, muscle movement, oxygen transport, and immune response. However, their primary function is not to serve as a significant energy source, as proteins are typically not stored or metabolized for energy under normal circumstances.
Explanation:Functions of ProteinsProteins in the human body are essential for a multitude of physiological functions. They serve critical roles such as providing structural support, enabling mobility, acting as catalysts in the form of enzymes, and transporting molecules and ions across the body. For example, structural proteins like collagen and keratin provide support to tissues, while contractile proteins in muscles facilitate movement. Hemoglobin, another type of protein, is vital in transporting oxygen from the lungs to the rest of the body. Proteins also play a key role in the immune response as antibodies, detecting and targeting foreign substances like bacteria. Regulatory proteins, including hormones, mediate various bodily functions.
However, one function that proteins do not serve is acting as a primary energy source. Unlike carbohydrates and fats, proteins are not stored for later use to be converted into glucose or triglycerides for energy. Instead, they are metabolized for energy only when other sources are insufficient.
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Which of the following processes enables cells to stay within the limited range of conditions in which they function best? a biodiversity b metabolism c adaptation d homeostasis
Answer:
D. Homeostasis
Explanation:
Homeostasis is the internal equilibrium maintained by the cells. If the homeostasis gets disturbed than diseases might occur. The cells maintain its equilibrium throughout the body. With the change in the external environment, the cells also adjusts itself to maintain its stability inside the body.
For example - at higher altitude, the oxygen concentration of the environment is less and to compensate the low oxygen content in the atmosphere, the number of red blood cell inside the body increases.
Why do organs need a constant supply of blood?
a. To continually clean the organs, blood must constantly pass through them.
b. To continually help the cells within the organs change into new types of cells
c. To continually produce energy, your organs need oxygen and the oxygen is
carried in your red blood cells.
d. None of the above
please only answer if you know the actually answer
Answer:
to continually produce energy,your organs need oxygen and the oxygen is carried in your red blood cells.
To continually produce energy, your organs need oxygen, and the oxygen is carried in your red blood cells, option C is correct.
The constant supply of blood is vital for maintaining the proper functioning of organs due to the oxygen they require to generate energy through cellular respiration. Hemoglobin in red blood cells binds to oxygen in the lungs, and this oxygen-rich blood is pumped by the heart to organs through an intricate network of blood vessels.
Cells extract oxygen from the blood, facilitating the production of adenosine triphosphate (ATP), the energy currency of cells. Additionally, blood carries nutrients and removes waste products, contributing to organ health. Thus, the continual circulation of blood ensures the delivery of oxygen and nutrients necessary for energy production and overall cellular activities in organs, option C is correct.
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Which would prevent a plant from growing?
A. Too much water
B. Lack of sunlight
C. No supply of lithium
D. Too many monosaccharides
Hey!
-------------------------------------------------
Answer:
B. Lack of sunlight
-------------------------------------------------
Explanation:
A plant can't grow without sunlight because a plant uses the sun to create food using photosynthesis. Too much water won't hurt the plant. Lithium is absorbed by the plant which is a kind of food it isn't very important if it does contain it. Monosaccharides is a kind of sugar that plants can take as food as well but it isn't as important as the food they receive from photosynthesis.
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A marine biologist measures the density of oyster larvae, in number of larvae per liter of seawater, at four different sites in a coastal habitat over three days. The table below shows her results. Population Density Site W Site X Site Y Site Z Day 1 40 22 0 7 Day 2 3 1 14 26 Day 3 2 6 3 1 Which distribution pattern do the oyster larvae exhibit? A. uniform B. random C. clumped D. stationary
Answer:
Oyster larvae exhibit a random pattern of distribution (C).
Explanation:
If you look at the values of density in the different sites, you will see that densities are different between sites and that those densities varyied day by day. So, the most suitable distribution is at random.
Larvae exhibit random pattern of distribution. Thus, option B is correct.
What is marine biology?The branch of biology that deals with study of marine life, and organisms in the sea, is called as marine biology. This includes study of all phyla, families, and genera in marine ecosystem.
Ocean is a large ecosystem, where huge proportion of life on earth lives. coastal and open ocean are two types of habitats that found in marine habitat. The area from shoreline to continental shelf is included in coastal habitat. The habitats which are found in deep oceans are called open ocean habitat. Basically, it is environmental conditions and resources are consistent.
So the habitats which have constant environment conditions and abundant resources are suitable for random distribution.
Therefore, option B is correct.
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