If steel is more dense than lake water, why can a boat float?

Answers

Answer 1

The average density of the boat, including the steel and air, is less dense than 1.00 g/cm³. ... lake water is more dense than pure water. steel has a special ability to float regardless of density.

Answer 2

Answer:

The shape of boat allows the boat to have an average density less than one and also causes displacement of water in large amount.

Explanation:

The floating of an object is governed by Archimedes principle which states that the amount of water displaced by an object when it is placed in water must be large enough to allow the object to float.

When the steel metal is carved into a boat, its shape and surface area changes due to which it displaces a larger volume of water thereby causing the boat to float. Also the average density of boat as compared to its surrounding water gets lesser than unit g/cm^3 which also causes floating of steel boat in lake water.


Related Questions

Which best describes the path of solar radiation?

1 from the surface of the Earth to the Sun, where it is absorbed
2 from the Sun to the surface of the Earth, where it is absorbed or reflected
3 from the surface of the Earth to the Sun, where it is absorbed or reflected
4 from the Sun to the surface of the Earth, where it is reflected

Answers

I would say the the answer would be the second choice...But im not positive.

Answer:

2. from the Sun to the surface of the Earth, where it is absorbed or reflected

Explanation:

The solar radiations come from the Sun and enter the atmosphere to hit the ground of the earth. Part of the solar radiations is absorbed by the atmosphere and other materials present on the surface of the earth. The earth surface also absorbs part of the solar radiations.

However, the surface of the earth reflects some radiations back to space at night. Hence, solar radiations are released from Sun after which they hit the surface of the earth where they are absorbed or reflected.

What is this advancement in oil drilling called that has substantially reduced the environment impact of drilling

Answers

Drilling oil wells reduces deforestation. The oil extraction process results in the release of toxic drilling by-products into local rivers, while broken pipelines and leakage result in persistent oil spillage. In addition, the construction of roads to access remote oil sites also signifies take trees out of the way.

Deforestation reduces the habitat for millions of species. Eighty percent of Earth’s land animals and plants live in forests, and many cannot survive the deforestation that destroys their homes.  It also affects climate change. Forest soils are moist, but without protection from sun-blocking tree cover, they quickly dry out. Trees also help perpetuate the water cycle by returning water vapor to the atmosphere. Without trees to fill these roles, many former forest lands can quickly become barren deserts. hope it helped.

Final answer:

The advancement in oil drilling that has substantially reduced the environmental impact of drilling is directional drilling.

Explanation:

The advancement in oil drilling that has substantially reduced the environmental impact of drilling is known as directional drilling.

Directional drilling is a technique where the drill bit is steered to reach the desired oil reservoir by deviating from the vertical. It allows for drilling multiple wells from a single location, reducing the number of surface disturbances, and minimizing the footprint of the drilling operation. This technique also reduces the need for additional access roads and infrastructure, minimizing the impact on the environment.

Another advantage of directional drilling is that it allows access to oil reserves that are located beneath sensitive environments, such as national parks or protected areas. Instead of having to drill directly underneath these valuable habitats, directional drilling can reach the oil reservoir from a distance, avoiding any potential harm to the environment.

When working on a research project, the focus of the research should be based on the goals. the topic. the method. the schedule.

Answers

Answer:

b. the topic

Explanation:

When working on a research project, the focus of the research should be based on the topic. Thus, the correct option is A.

What is research?

Research is refer to as as the creation of new knowledge and use of existing knowledge in a new and innovative way so as to produce new concepts, methodologies and understandings. This could include formation and analysis of last research to the extent that it give rise to new and creative outcomes.

Research is mainly focused on topic, and creating new discoveries from that topic.

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3TC is an antiretroviral treatment used to prevent HIV infection from becoming AIDS. After treatment with 3TC, the HIV population in a patient consists entirely of 3TC-resistant virus particles. What best explain this phenomenon? A) HIV can change its surface proteins through mutations and resist vaccines. B) The patient became re-infected with 3TC-resistant viruses after the initial exposure. C) The drug caused RNA changes to occur, creating a resistance to the once-applicable drug. D) A few drug-resistant viruses were present at the start of treatment and selective pressures increased their frequency.

Answers

Answer:

D

Explanation:

3TC is an antiretroviral treatment used to prevent HIV infection from becoming AIDS. After treatment with 3TC, the HIV population in a patient consists entirely of 3TC-resistant virus particles. What best explain this phenomenon?

why matter can be recycled?

Answers

matter can be recycled because reusing already used matter, helps make it into new matter. without wasting more matter. Any nonliving matter that living things need is called a nutrient. Carbon and nitrogen are examples of nutrients. Unlike energy, matter is recycled in ecosystems. ... Decomposers release nutrients when they break down dead organisms.

How Matter Moves Through Ecosystems

Living things need nonliving matter as well as energy. What do you think matter is used for? It's used to build bodies. It's also needed to carry out the processes of life. Any nonliving matter that living things need is called a nutrient. Carbon and nitrogen are examples of nutrients. Unlike energy, matter is recycled in ecosystems.

Decomposers release nutrients when they break down dead organisms.

The nutrients are taken up by plants through their roots.

The nutrients pass to primary consumers when they eat the plants.

The nutrients pass to higher level consumers when they eat lower level consumers.

When living things die, the cycle repeats.Summary

Nutrients are crucial to the growth of organisms.

Decomposers break down dead organisms into nutrients and gases so that they can be used by other organisms.

Nutrients can enter or exit an ecosystem at any point and can cycle around the planet.

WHY? to conserve what we have, for matter being recycled helps the ecosystem and its good for our planet!

What is a long-term effect of the increased primary productivity of a terrestrial ecosystem? A) The ecosystem will not be able to support as many tertiary consumers. B) It will decrease the amount of energy transferred to higher trophic levels. C) The ecosystem will be able to support more organisms at higher trophic levels. Eliminate D) The ecosystem will become stagnant due to excess producers and organisms in higher trophic levels will die out.

Answers

I think C sorry if I am wrong

Answer:

C) The ecosystem will be able to support more organisms at higher trophic levels.

Explanation:

In ecology, primary productivity is understood as the efficiency of converting energy to organic substances from the reaction of autotrophic organisms by solar or chemical energy. That is, this productivity is related to the action of plants in photosynthesizing solar energy creating organic substances that will be absorbed by consumers along the food chain. The increase of this primary productivity results in the increase of plants and consequently in the increase of primary, secondary and tertiary consumers. From this we can state that the long-term effect of increasing the primary productivity of a terrestrial ecosystem results in an ecosystem's greater capacity to support more organisms at higher trophic levels.

CAN YOU PLEASE HELP ME WITH THIS CROSSWORD PUZZLE! I DONT UNDERSTAND HOW TO DO THIS! PLEASE HELP ME!

Answers

across

4. blood

7. dendrites

8. stem

this is all i have time to get sorry

A wave that requires a medium such as air or water through which to travel is called a mechanical wave.

Answers

The answer is Mechanical.

how does our body get energy?

Answers

It aould be A. By breaking down food molecules and building new molecules. The food we eat contains kilocalories , which give us energy. If we eat plants, or producers, then we get more kilocalories than if we eat a primary, secondary, or tertiary consumer.

Aquatic organisms have only a predatory relationship with coral reefs.

Answers

The given statement is False.

The coral reef serves as a source of food and shelter for aquatic animals. Almost one fourth of the species present in ocean depends on coral reef for food and shelter. Coral reefs are often called as rainforest of the sea. They do not have only predatory relationship rather they have symbiotic relationship with aquatic organisms.

Hope I helped! <3

False , aquatic organism can benefit and or have a mutual beneficial relationship with coral reefs

In squash plants, the allele for yellow fruit (Y) is dominant to the allele for green fruit (y). A plant with genotype YY is crossed with a plant with genotype Yy.


What are the expected genotype percentages in the offspring of this cross?

Question options:

A)

100% heterozygous and 0% homozygous


B)

50% homozygous dominant and 50% heterozygous


C)

50% homozygous dominant and 50% homozygous recessive


D)

25% homozygous dominant, 50% heterozygous, and 25% homozygous recessive

Answers

the answer would be 50 dominant 50 recessive

The correct option is d. 25% homozygous dominant, 50% heterozygous, and 25% homozygous recessive

The expected genotype percentages in the offspring of the cross between a plant with genotype YY and a plant with genotype Yy are:

25% homozygous dominant (YY)50% heterozygous (Yy)25% homozygous recessive (yy)

These percentages follow Mendel's principles of genetics where the genotype ratio of YY:Yy:yy is 1:2:1.

why carbon easily forms many bonds?
a)it can share six electrons in metallic bonds
b)it can share electrons in ionic bonds
c)it can share four electrons in hydrogen bonds
c)it can share four electrons in covalent bonds

Answers

The Correct Answer: C)

Because...

Each carbon is identical, they all have four valence electrons, so they can easily bond with other carbon atoms to form long chains or rings. In fact, a carbon atom can bond with another carbon atom two or three times to make double and triple covalent bonds between two carbon atoms.

Carbon can easily form many bonds due to its ability to share four electrons in covalent bonds, allowing for the formation of single, double, and triple bonds, and creating complex structures. Carbon's tetra-valency and preference for covalent bonding instead of ionic or metallic bonding are key to its versatility.Correct option is D

Carbon easily forms many bonds because it has the ability to share four electrons in covalent bonds. This characteristic allows carbon atoms to form a versatile range of compounds. Carbon is tetracovalent, meaning it typically makes four bonds to other atoms, and these bonds are covalent. The covalent bonds lead to a formation of either single, double, or triple bonds between carbon atoms or between carbon and other atoms such as hydrogen, oxygen, and nitrogen.

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Answers

the first on is fatty but what are the second drop down

Final answer:

The subject of this question is Social Studies, which encompasses various disciplines like history, geography, economics, and political science.

Explanation:Social Studies: High School

The subject of this question is Social Studies, which is the academic discipline that combines elements of history, geography, political science, economics, and sociology. It focuses on understanding human society, including its past, present, and future.

Social Studies covers a wide range of topics, such as world history, civics, economics, anthropology, and cultural studies. It helps students develop critical thinking skills, analyze social issues, and engage in informed decision-making.

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Answers

Your answer is it protects the heart and lungs

the correct asnwer is e

What type of fault is shown in the image below? WILL GIVE BRAINIEST

A. Lateral fault

B. Normal fault

C. Reverse fault

D. Thrust Fault

I thought it might be normal im not sure pls help fast thank you

Answers

Answer:

B. Normal fault

Explanation:

The image shows a normal fault which happens when the hanging wall moves downward from the footwall, and this type of faults occur when two blocks of rock are pulled away from eachother, and in that case on of the walls becomes the hanger, which means that it goes downwards from the normal or other wall, and that becomes the footwall.

Final answer:

Without seeing an image, it’s impossible to identify the fault type. The available options are Normal Fault (hanging wall drops due to tension), Reverse Fault (hanging wall rises due to compression), Lateral Fault (plates slide horizontally), or Thrust Fault (a type of Reverse Fault with a nearly horizontal angle).

Explanation:

Without being able to see an image of the actual fault, I'm unable to provide a definite answer as to whether it's a Lateral Fault, Normal Fault, Reverse Fault, or Thrust Fault. However, I can explain the difference between them. A Normal Fault occurs when the hanging wall drops down relative to the footwall, generally due to tension in the Earth's crust. A reverse fault is the opposite, when the hanging wall is shoved up relative to the footwall, due to compression in the Earth's crust. A lateral fault is when two tectonic plates slide past each other horizontally, while a thrust fault is a type of reverse fault where the angle of the fault plane is near horizontal.

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what kind of bond causes water molecules to be attracted to one another?
a)polar covalent
b)ionic
c)hydrogen
d)metallic

Answers

Answer is:

c) Hydrogen Bonds

hydrogen bonds are the bonds that hold water together.

so the answer is C.) Hydrogen

Why do females rarely get the disease hemophilia?

Answers

a mutation would have to occur in both copies of the gene to cause the disorder

Hemophilia is a disease located on the X chromosome. Females have two copies of the X chromosome, so it would have to be on both copies in order to effect a female. However, a male only has one copy of the X chromosome, so males are more susceptible.

Which of these is true of the secondary immune response?
A) It produces memory lymphocytes.
B) It can make antibodies immediately.
C) It responds with naïve B- and T- cells.
D) Its lag phase may be longer than 7 days.

Answers

The answer is here,

Option B)  It can make antibodies immediately.

Thank you.

Answer:

The correct answer is option B) It can make antibodies immediately.

Explanation:

The secondary immune response occurs when the same antigen is exposed to the person more than one time. The immune system immediately starts making antibodies to attack the antigen. By the second time, memory cells are established and start making antibodies immediately. The lag phase is shorter as compared to the primary immune response. Memory cells are cells responding cells for secondary immune response.

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Answers

1. helicase

2. topoisermerase

3. rna primase

4. ligase

5. polymerase

RNA primase: synthesizes RNA primer at the initiation point.

helicase: unwinds the DNA molecule.

polymerase: synthesizes the complementary daughter strands.

topoisomerase: creates nicks ahead of the replication fork to relieve tension from unwinding.

ligase: joins the Okazaki fragments together.

RNA Primase: RNA primase is an enzyme responsible for synthesizing a short piece of RNA called an RNA primer. This primer serves as the starting point for DNA synthesis. It's essential because DNA polymerase (another enzyme) can only add new DNA nucleotides onto an existing strand of DNA. RNA primase creates this primer at the initiation point, providing a free 3'-OH group for DNA polymerase to attach to and begin the synthesis of a new DNA strand.

Helicase: Helicase is an enzyme that plays a crucial role in unwinding the DNA molecule during replication. DNA is a double-stranded helix, and helicase acts like a molecular zipper, breaking the hydrogen bonds between the complementary base pairs (A-T and G-C) and separating the two DNA strands. This unwinding is necessary for DNA replication to proceed.

Polymerase: DNA polymerase is an enzyme responsible for synthesizing the complementary daughter strands of DNA. It uses the existing DNA strands as templates and adds complementary nucleotides to each template strand, thus creating two new double-stranded DNA molecules. DNA polymerase also ensures that the new strands are accurate copies of the original DNA.

Topoisomerase: During the process of DNA unwinding and replication, the DNA molecule can become supercoiled and twisted. Topoisomerase is an enzyme that helps relieve this tension by creating nicks or breaks in the DNA ahead of the replication fork. This allows the DNA to unwind and prevents it from tangling or becoming overly twisted during replication.

Ligase: DNA ligase is an enzyme responsible for joining the Okazaki fragments together. Okazaki fragments are short segments of DNA that are synthesized on the lagging strand during DNA replication. DNA ligase functions to seal the gaps between these fragments, forming a continuous, unbroken strand of DNA on the lagging strand.

In summary, each of these enzymes plays a specific and crucial role in the DNA replication process, ensuring that DNA is accurately duplicated during cell division.

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can someone help me with the Thursday one?? plz

Answers

It looks like the yellow  is dominant  so with the punnet square it states that it will be a yellow plant

Explain how terrestrial vertebrates are adapted to reproduce on land.

Answers

Answer:

Viviparity and Oviviparity

Explanation:

An example is an adaption to viviparity meaning their eggs develop inside the bodies of their mothers. The developing embryo is surrounded by amniotic fluid that mimics aquatic conditions. Pregnancy also protects the fetus from cold, heat and drought and climatic conditions that highly fluctuate on land that in water.

During the process of photosynthesis, plants use energy from the Sun to transform carbon dioxide from the air into A. soil and molecules of sugar. B. oxygen gas and molecules of sugar. C. protein and minerals. D. minerals and liquid carbon dioxide.

Answers

The answer is B! Photosynthesis Inputs/Reactants are: Water, Sunlight, and Carbon Dioxide. Output/Products are: Oxygen and Glucose (sugar)

Answer:

B. Oxygen Gas and Molecules Of Sugar

Explanation:

Photosynthesis is the process through which plants make their own food.

Special structures called chloroplasts—located inside plant cells—help plants capture light energy from the Sun. The plants then use the energy to build molecules of sugar from carbon dioxide gas and water. Oxygen gas is a waste product of photosynthesis. Plants releases this waste oxygen into the air.

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Answers

The two claims that refute the idea of spontaneous genesis are as follows: - Only previously existing matter may give rise to living cells.

- Cells develop from preexisting cell populations.

These are the right answers: (D) and (E).

These ideas contradict spontaneous creation since they are a component of the cell hypothesis, which holds that cells are the fundamental building block of all living things' structure and function and that all living things are made of them. Furthermore, this theory disproves the notion that living things can spontaneously form from nonliving stuff by asserting that all cells originate from preexisting cells.

Burning fossil fuels increases the amount of carbon dioxide in the atmosphere. What is the LIKELY negative effect on Earth if extra carbon dioxide is added to our atmosphere? A) acid rain Eliminate B) global warming C) increased plant growth D) a hole in the ozone layer

Answers

The answer is b global warming

Answer: B) global warming

Explanation:

The burning of the fossil fuels liberates carbon dioxide and other harmful gases into the atmosphere. These gases are capable of causing greenhouse effect. As, these gases are diatomic these are capable of absorbing the light energy from sun causing the global temperature warm. The heat liberated from the terrestrial land and some energy from sun are reflected back to the space so as to prevent the earth from accumulation of excess heat energy. These gases being trapping the sunlight energy nullify the heat reflection process. Hence, increasing the global heat causing global warming.

Glucose is a carbohydrate. What reacts with glucose in order to complete this step?

A. oxygen
B. carbon dioxide
C. nitrogen
D. hydrogen

Answers

oxygen reacts with glucose in respiration

Final answer:

Glucose reacts with oxygen to form carbon dioxide and water, releasing energy during cellular respiration. The correct answer to what reacts with glucose is A. oxygen.

Explanation:

Carbohydrates react with oxygen in order to complete the reaction where glucose is converted into carbon dioxide and water during cellular respiration. By definition, carbohydrates contain carbon, hydrogen, and oxygen. This means that glucose, a carbohydrate with the formula C6H12O6, already has oxygen within its molecule. When glucose reacts with additional oxygen molecules, the process results in the formation of carbon dioxide (CO2) and water (H2O), releasing energy that cells can use.

The chemical equation for the reaction is:

C6H12O6 + 6 O2 → 6 CO2 + 6 H2O

This shows that each molecule of glucose requires six molecules of oxygen to complete the reaction. Therefore, the correct answer to the question is A. oxygen

What are the subunits of DNA and what is their function?

Answers

Final answer:

The subunits of DNA, known as nucleotides, consist of a pentose sugar, a phosphate group, and a nitrogenous base. There are four bases: adenine, thymine, guanine, and cytosine, which are responsible for storing and transmitting genetic information to synthesize proteins.

Explanation:

Subunits of DNA and Their Functions

The subunits of DNA are called nucleotides. Each nucleotide is made up of three parts: a pentose sugar called deoxyribose, a phosphate group, and a nitrogenous base. There are four types of nitrogenous bases in DNA: adenine (A), thymine (T), guanine (G), and cytosine (C). The sequence of these bases forms the genetic code, which carries instructions for making proteins. DNA's structure facilitates its replication and the encoding of genetic information, while its packaging into chromosomes allows for the organization and distribution of genetic material during cell division.

Function of DNA Nucleotides

The sequence of the four bases along the DNA helix determines the genetic instructions for building proteins, which are vital for the structure, function, and regulation of the body's tissues and organs. Despite all human cells containing the same DNA, they can look and function differently due to the differential expression of genes and the complex process of gene regulation.

What is a chordate? Give an example of a chordate. What is the biggest group with in the chordates?

Answers

A chordate is any member of the phylum Chordata which includes three sub-phyla; Vertebrata (vertebrates), Urochordata (tunicates) and Cephalochordata (lancelets). Chordates usually have a notochord (a stiff dorsal supporting rod) at some stage of their development. In vertebrates, this develops into spine. They also have pharyngeal slits and a tail.

Examples of chordates are vertebrates such as humans, pandas and alligators.

Vertebrata is the biggest group within the chordates. Members of this sub-phylum are characterized by their vertebral column which is made up of several bony vertebrae joined together as a backbone .

Answer: A chordate is an organism in the phylum Chordata (which includes the vertebrates). Every chordate possesses 5 defining characteristics at some point in its life. These include a notochord, a dorsal nerve chord, an endostyle or a thyroid, pharyngeal slits, and a postanal tail. The largest group of chordates are the vertebrates.

why does an ecosystem have carrying capacity

Answers

Carrying capacity of an ecosystem is the defined as the largest population that it can sustain indefinitely with the available resources. Biologists also refer to carrying capacity as the “maximum load”. Carrying capacity has factors it depends on. These are the many abiotic and biotic factors in the ecosystem and some are more obvious than others.  The most obvious being, the availability of the basic needs of organisms which make up the different ecosystems. Some of these are food, water and shelter in which dictate how many individuals the ecosystem can sustain.

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Answers

by: short double-stranded RNA molecules in a cell's cytoplasm, where they interact with the catalytic RISC component argonaute.

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what are the drop down options

Which scenario best illustrates how global issues are related? (The Smiths just had their fourth child, so they decided to move to a larger home. // The Joneses began recycling all plastic materials to cut down on the family’s waste. // Sally built a receptacle in her garden to collect rainwater to reuse to water her plants and cut down on her municipal water usage. // A community’s population continues to grow, so the city cuts down a large area of trees to build a new community center.)

Answers

a community starts to grow is the best answer because the cause and effect are directly related

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