Answer:c the forest
Explanation:l
Scientists have discovered a colony of potential organisms on the Planet Moby and named them "Maxoids." Read the information below that scientists have gathered on Maxoids and decide whether Maxoids are living or nonliving things. Explain how you came to this conclusion.
Through testing and observation, scientists have recorded the following characteristics of Maxoids. Maxoids reproduce via sexual reproduction. One parent carries the Maxoid eggs for 12 weeks before they hatch. After hatching, juvenile Maxoids continue to grow for seven months. To acquire energy for growth, Maxoids consume a peculiar liquid substance native to the planet Moby. The Maxoids' cells use this energy, as well as large amounts of water, to carry out important functions. The Maxoids are sensitive to changes in internal temperature. Sometimes they dig holes and lay in them to cool down if they get too warm.
The Maxoids are living things because they possess the characteristics of living things.
What are living things?Living things are things which have life in them.
Living things are identified by the characteristics which make them living.
The characteristics of living things include:
Movement - living things are able to move all or parts of their bodyRespiration - living things are able to break down food substances to produce energyNutrition - living things are able to take in food substancesIrritability - living things are able to respond to changes around themGrowth - living things are able to increase in size and massExcretion - living things are able to remove waste substances from their bodiesReproduction - living things are able to produce new ones of their kindConsidering the Maxoids;
They are able to reproduceThey take food in the form of a liquid substanceThey are sensitive to changes in internal temperatureIn conclusion, the Maxoids are living things.
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A warm ocean transfers heat to the air above it. Which type of heat transfer is this
Answer:
Conduction
Explanation:
Because When air is in contact with the ocean it is at a different temperature than the seas surface
What adaptation of vines help them grow on other plants in order to get more sunlight?
a plant growing on a tree trunk
Flexible stems
Large leaves
Strong roots
Thick bark
Answer:
Flexible stems
Explanation:
Due to a vine's flexible stems, it finds a strong plant to grow on, slowly growing around it to get nutrience and light from the spot. without it, it would just sit on the forest floor.
What do we call the principal SI units that are used to derive all other SI units? derived units derived units base units base units lowest units lowest units fundamental units
Answer:
the answer is derived physical measurements
Please help me write a portfolio. GIVING BRAINLIEST 50 POINTS
Finish drafting a research report about how scientific knowledge has changed over time.
Review the web you completed in the prewrite stage.
You will submit your research report draft at the end of this lesson.
Review the features of a research report:
It provides information focused on a central topic.
It has an introduction that presents the main ideas of that topic.
It groups related facts, definitions, quotations, details, and other information into supporting paragraphs.
It uses content words and has a formal tone.
It uses linking words to connect ideas.
It provides a conclusion that relates to the topic.
It includes multimedia elements such as audio recordings or visual displays.
It contains a bibliography at the end.
Answer:
Rosalind Elsie Franklin (25 July 1920 – 16 April 1958)was a British biophysicist and X-ray crystallographer who made critical contributions to the understanding of the fine molecular structures of DNA, RNA, viruses, coal and graphite. The DNA work achieved the most fame because DNA (deoxyribonucleic acid) plays essential roles in cell metabolism and genetics, and the discovery of its structure helped scientists understand how genetic information is passed from parents to children.
rosalindfranklin
Franklin is best known for her work on the X-ray diffraction images of DNA which led to discovery of DNA double helix. Her data, according to Francis Crick, was "the data we actually used" to formulate Crick and Watson's 1953 hypothesis regarding the structure of DNA.Franklin's X-ray diffraction image confirming the helical structure of DNA were shown to Watson without her approval or knowledge. Though this image and her accurate interpretation of the data provided valuable insight into the DNA structure, Franklin's scientific contributions to the discovery of the double helix are often overlooked. Unpublished drafts of her papers (written just as she was arranging to leave King's College London) show that she had independently determined the overall B-form of the DNA helix and the location of the phosphate groups on the outside of the structure. However, her work was published third, in the series of three DNA Nature articles, led by the paper of Watson and Crick which only hinted at her contribution to their hypothesis.
After finishing her portion of the DNA work, Franklin led pioneering work on the tobacco mosaic and polio viruses. She died in 1958 at the age of 37 from complications arising from ovarian cancer.
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Rosalind Elsie Franklin (25 July 1920 – 16 April 1958) was a British biophysicist and X-ray crystallographer who made significant contributions to the study of DNA, RNA, viruses, coal, and graphite tiny molecular structures. The discovery of the structure of DNA (deoxyribonucleic acid) helped scientists understand how genetic information is passed from parents to children. DNA (deoxyribonucleic acid) plays essential roles in cell metabolism and genetics, and the discovery of its structure helped scientists understand how genetic information is passed from parents to children.
Rosalind franklin
Franklin is most known for her work on DNA X-ray diffraction pictures, which resulted in the discovery of the DNA double helix. According to Francis Crick, her data was "the data we used" for the study.
Franklin performed groundbreaking work on the tobacco mosaic and polioviruses after completing half of the DNA work. She died in 1958, at the age of 37, from ovarian cancer complications.
Articles
Article from
Rosalind Franklin was so much more than the 'wronged ...
https://www.nature.com: As one of the twentieth century’s pre-eminent scientists, Franklin’s work has benefited all of humanity. The one-hundredth anniversary of her birth this month is prompting much reflection on her career and research contributions, not least Franklin’s catalytic role in unraveling the structure of DNA. (Which is the second paragraph in the link)- Published July-21-2020.
Heat from the sun travels to the Earth _____. in low frequency waves through the movement of molecules in high frequency waves by conduction and convection
Answer:
slow frequency waves
Explanation:
Answer:
in high frequency waves
Explanation:
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Students were investigating how static electricity can cause objects to move. They decided to take pictures of what they observed.Write a scientific explanation about the forces that can affect objects when the objects are not touching. Make a claim and state your evidence.
Answer:
Answer: Think of a thunderstorm, sometimes it depends on the magnitude of a push or pull to move an object even without touching it. When a object is sitting still, it means the normal force and the gravitational force are balanced, when one force becomes greater, it takes over.
Explanation:
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Boiling point is the temperature at which a liquid changes its state from liquid to gas by vaporizing, usually at a constant temperature and pressure.
At the boiling point, the vapor pressure of the liquid becomes equal to the pressure of the atmosphere or the external pressure applied to the liquid surface, causing bubbles of vapor to form within the liquid and rise to the surface.
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As scientists have learned more about atoms, models of atoms have changed. One of the first atomic models was a solid ball, such as a marble. What are two limitations of using a marble to model an atomic?
A. The model does not move or behave like a real atom.
B. The model is not made of commonly available materials or objects.
C. The model is much harder to see than a real atom.
D. The model does not show the true size of an atom.
All of the following are present in both prokaryotic and animal cells except
ribosomes
ribosomes
cell wall
cell membrane
Answer:
cell wall
Explanation:
is not present in animation cell
Jasmine has been reading about mixtures and how they can be classified.
After reading about the kinds of mixtures and their characteristics, she wants to know how a heterogeneous mixture is different from a homogeneous mixture. What is the main difference between these two kinds of mixtures?
A. In a heterogeneous mixture, the components are not evenly spread throughout the mixture. In a homogeneous mixture, the components are evenly spread throughout the mixture.
B. In a homogeneous mixture, the components are not evenly spread throughout the mixture. In a heterogeneous mixture, the components are evenly spread throughout the mixture.
C. In a homogeneous mixture, the components are easy to see and are well mixed so the components show up in different parts of the mixture.
D. In a heterogeneous mixture, the components are difficult to see and are spread out uniformly throughout the mixture.
Answer: The correct option is (In a heterogeneous mixture, the components are not evenly spread throughout the mixture. In a homogeneous mixture, the components are evenly spread throughout the mixture.)
Explanation: Have a good day :)
Answer: its A
Explanation:
I already did the test
How to work out the relative mass of potassium? What is the calculation? ( explained very easily )
Answer:
39
Explanation:
Relative mass does not need to be calculated as it is listed on the periodic table. Potassium's relative atomic mass is around 39.
What type of solid consists of positive metal cations surrounded by valence electrons that
are donated by the metal atoms and belong to the solid as a whole?
Select one:
O a. ionic
O b. covalent network
O c. metallic
O d. covalent molecular
How is the momentum of an object determined?
What happens every time one of the boys playing ping pong hits the ball?
How could the boy playing ping pong keep from hitting the ball off the table?
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Answer: He needs to hit the ball with less force.
Explanation:
hope this helps
Please Help!! How are physical and chemical changes verified by the atomic theory?
Explanation:
The atomic theory is a scientific model that explains the behavior of matter in terms of the behavior of atoms and molecules. According to this theory, all matter is made up of tiny, indivisible particles called atoms. Physical and chemical changes in matter are explained by changes in the arrangement and interactions of these atoms.
Physical changes involve a change in the physical state or appearance of matter, without a change in its chemical composition. Examples include changes in temperature, pressure, or state (e.g. solid, liquid, gas). These changes can be explained by the atomic theory in terms of the movement and arrangement of atoms and molecules. For example, the melting of ice involves the absorption of energy by water molecules, which causes them to move faster and break their bonds with the ice molecules.
Chemical changes involve a change in the chemical composition of matter, resulting in the formation of new substances with different properties. Examples include reactions between acids and bases, combustion reactions, and oxidation-reduction reactions. These changes can also be explained by the atomic theory in terms of the rearrangement of atoms and molecules. For example, the reaction between hydrochloric acid and sodium hydroxide involves the exchange of hydrogen and sodium ions, resulting in the formation of water and sodium chloride.
In summary, the atomic theory provides a framework for understanding physical and chemical changes in matter by explaining them in terms of the behavior of atoms and molecules. Verification of physical and chemical changes can be achieved through experiments and observations that demonstrate changes in the properties and behavior of matter, consistent with the predictions of the atomic theory.
Answer:
The atomic theory explains how physical and chemical changes occur at the atomic level. The theory explains that all matter is made up of atoms and molecules, which are constantly in motion.
Physical changes involve a change in the physical properties of matter, but no change in the fundamental nature of the substance. For example, when water freezes, it changes from a liquid to a solid, but the molecules remain the same. Chemical changes involve a change in the fundamental nature of the substance, where new molecules are formed. The atomic theory helps explain these changes by showing how atoms and molecules interact during chemical reactions. By analyzing the atomic and molecular structure of matter before and after a change, scientists can verify whether a physical or chemical change has occurred.
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Lewis is running in a race. His muscles need oxygen. Which best describes how multiple systems interact to bring him into homeostasis? The circulatory stem brings oxygen to the respiratory system, which delivers oxygen to the muscular system. The respiratory system brings oxygen to the circulatory system, which delivers oxygen to the muscular system. The respiratory system brings oxygen to the circulatory system, which delivers oxygen to the skeletal system. The circulatory system brings oxygen to the respiratory system, which delivers oxygen to the skeletal system.
the respiratory system brings oxygen to the circulatory system, which delivers oxygen to the muscular system
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Science homework
Pls help me!!!!!!!!!!!!!!!
Answer:
first one
Explanation:
Particle of solids are very close as the particle can not move they have exact volume,shape
Answer:
First one
Explanation:
since the particles of a solid are packed together.
Write a three paragraph essay about being a scientist. Include the following: If you could be any kind of scientist, what kind would you be? Why? Describe what your life would be like as the scientist you imagine.
Answer:
the answer is a hope this hep;slms
Explanation:
betuase im write
Answer:
If I were to be a scientist, I'd be a botanist. A botanist is a scientist who studies plants. For example, they study many different aspects like their genetic, physical structure, and the distribution. They also study the relationship between plants and their different environments.
I would choose to be a botanist, because they help save our plants which are very important. They also help with telling others what exactly causes pollution and possible ways to stop it. Botanist also help with providing human resources like food. Without botanist, we would have a lot less of resources that we use in everyday life.
I can see my life as a botanist in many different ways. I might be put in the chemical based section or I might be put in the analysis of plants. Overall if I were to see myself as any kind of scientist, It would have to be a botanist.
Explanation:
Hope it helps, feel free edit whatever you'd like too
What is the kinetic energy of the 2 kg ball just before it hits the ground, travelling 28 meters per second?
Use this formula: KE=0.5mv²
Kinetic Energy (KE) is measured in Joules (J)
Mass (m) is measured in kilograms (kg)
Velocity (v) is measured in meters per second (m/s)
A) KE = 0.5 x 28 x (2)2 = 556 J
B) KE = 0.5 x 2 x 28 x 2 = 56 J
C) KE = 0.5 x 2 x (28)2 = 784 J
D) KE = 28 x 2 x (0.5)2 = 14 J
Answer:
The correct answer is C) KE = 0.5 x 2 x (28)2 = 784 J.
This is because the kinetic energy of an object is equal to one half times the mass multiplied by velocity squared.
In this case, the mass of the ball is 2 kg and the velocity is 28 m/s, so the equation would be KE = 0.5 x 2 x (28)2 = 784 J.
Answer:
KE = 784 J
Explanation:
ke= 0.5x2kgx28m/s
In 3 paragraphs, describe how weathering changes the earth's surface. Please do not copy and paste.
Answer:
Weathering is the breaking down or dissolving of rocks and minerals on Earths surface. Once a rock has been broken down, a process called erosion transports the bits of rock and minerals away. Weathering and erosion constantly change the rocky landscape of Earth. Weathering wears away exposed surfaces over time.
The effects of weathering disintegrate and alter mineral and rocks near or at the earth's surface. This shapes the earth's surface through such processes as wind and rain erosion or cracks caused by freezing and thawing. Each process has a distinct effect on rocks and minerals. Mechanical weathering increases the rate of chemical weathering. As rock breaks into smaller pieces, the surface area of the pieces increases Figure below. With more surfaces exposed, there are more surfaces on which chemical weathering can occur. Mechanical weathering may increase the rate of chemical weathering.
Weathering, erosion, and deposition are processes that act together to wear down and build up the Earth's surface. These processes have occurred over billions of years. Weathering is any process that breaks down rocks and creates sediments. Weathering causes the disintegration of rock near the surface of the earth. Plant and animal life, atmosphere and water are the major causes of weathering. Weathering breaks down and loosens the surface minerals of rock so they can be transported away by agents of erosion such as water, wind and ice.
The diagram shows a plant cell.
Which structure controls every activity of the cell?
A. structure 1
B. structure 2
C. structure 3
D. structure 4
Answer:
B. structure 2
Explanation:
It represents nucleus which is the brain of the cell
The atoms in the diagram above are...
sharing pairs of valence electrons.
losing valence electrons.
transferring valence electrons.
pooling valence electrons.
Answer:he electron dot diagram is a diagram that uses dots as a symbol for an atom's valence electrons and can tell you how many bonds an atom can form. It arranges electrons as dots.
Explanation:is this it
2. Describe an example that involves Newton’s third law. Write what the action force and reaction force would be.
If a substance has a density of 19 g/cm3, then what is the mass of 8 cm3 of this substance?
A candle burning is an example of _____.
a physical change
an exothermic change
energy being taken in
an endothermic change
An exothermic change, Because it has heat.
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Which of the following statements fully describes what an object may do when it experiences unbalanced forces? Select the two best answers.
A. It may change directions.
B. It will move at a constant speed.
C. It may slow down.
D. It may slow down or speed up.
E. It will stay stationary.
Answer:b
Explanation: