How is your weight different on Earth and on the moon

Answers

Answer 1

Answer:

Your weight on the Moon is 16.5% what you would experience on Earth

Explanation:

Answer 2

Answer:

To find the weight on the moon, we divide the weight on earth by the earth's force of gravity, which is 9.81m/s2. ... So an object or person on the moon would weigh 16.5% its weight on earth. Therefore, a person would be much lighter on the moon. Conversely, a person is 83.5% heavier on earth than on the moon.

Explanation:

Also:The mass of an object will not change if the gravitational pull on the object changes, but the weight of the object will. ... But if you measure your weight on the Earth and on the moon, your weight will be far less on the moon because of a weaker gravitational force,

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Related Questions

You have been infected with the H1N1 flu virus. Describe how the virus might have entered your body, how it works to make you sick, and what happens when you finally get better. Lost at least 7 different steps

Answers

Answer:

Some symptoms like Cough , Fever , Headache, Chills,Body aches , Fatigue etc can be seen while suffering from this virus.

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03.05 The Atmosphere and You Guided Notes

Objectives:

In the lesson you will:

describe the composition and structure of the Earth's atmosphere

describe the functions of the five main layers of Earth's atmosphere

explain how Earth's atmosphere (including the ozone layer) protects life and insulates the planet

discuss the effects of global warming and ozone depletion



Big Ideas:

Key Questions and Terms

Notes

What is the atmosphere?

It is the layer around earth that keeps gas in earth.

What gases make up the composition of the atmosphere?



Make a mnemonic sentence to remember the layers of the atmosphere.



What are the functions of each layer of the atmosphere?



What layer of the atmosphere has breathable air?



In what layer of the atmosphere is the ozone layer found?



What is the warmest layer of the atmosphere?



What is the coldest layer of the atmosphere?



In what layer of the atmosphere would you find satellites?



How does the ozone layer protect Earth?



What is ozone?



When does ozone become a pollutant?



Where is protective ozone located? Where is harmful ozone located?



How could a hole in the ozone layer affect humans?



Where are chlorofluorocarbons (CFCs) found? Why were they banned?



How does the atmosphere help insulate Earth?



What is the greenhouse effect?



What are greenhouse gases? Why are they important?



How are human activities affecting global warming?



Name three types of greenhouse gases. What types of human activities produce these particular gases?



What are some effects of global warming?



What does the term “climate change” refer to?



What is desertification?



What is a carbon footprint? What are some actions you can take to reduce your carbon footprint?



What are some of the results of too much sun exposure?



What are some ways you can protect yourself from harmful sun exposure?

Answers

Answer:

ozone is a pale blue gas which is made up of three oxygen atoms.

hole in ozone layer affect humans

bcoz harmful uv rays are entered through the hole which is dangerous to human's skin and health.

cfc are found in industries.

the trapping of the sun's warmth in a planet's lower atmosphere, due to the greater transparency of the atmosphere to visible radiation from the sun than to infrared radiation emitted from the planet's surface is called green house effect

the main gases responsible for the greenhouse effect are greenhouse gases. they are important bescause Greenhouse gases keep our planet livable by holding onto some of Earth's heat energy so that it doesn't all escape into space.

effects of global warming:

1) climate change

2) melting of glacier

3) acid rain

climate change refers to the variation of the earths global or regional climate over a long period of time because of changes in environment

desertification is the process by which fertile land becomes desert, typically as a result of drought, deforestation, or inappropriate agriculture.

Answer:



Explanation:

What role do neurons serve within the nervous system? Why is it so important?

Answers

Answer:

Neurons are electrically excitable cells that transmit information throughout the nervous system. They are the basic building blocks of the nervous system and perform a variety of functions, including receiving and sending signals, processing information, and controlling movement.

The nervous system is responsible for coordinating the body's activities and responding to its environment. without neurons, the nervous system would not be able to function properly. Neurons are essential for survival and play a vital role in our health and well-being.

the surface area to volume ratio determines the rate of transfer across the cell membrane.
what has the best transfer rate?
A: Smaller cells with a high surface area to volume ratio have the best transfer rates
B: Medium sized cells are the best for transfer rates

Answers

Answer:the answer is a

Explanation: I just answered it

Smaller cells with a high surface area to volume ratio have the best transfer rates, hence option A is correct.

What is cell membrane?

All cells have a cell membrane, also known as a plasma membrane, which separates the interior of the cell from the external environment. A semipermeable lipid bilayer makes up the cell membrane.

The movement of materials into and out of the cell is controlled by the cell membrane.

A small volume is better in terms of efficiency of transporting molecules throughout the cell, but a large surface area is better for transporting molecules across the cell membrane.

A surface area to volume ratio regulates cell size because as cells become larger, they have less surface area relative to their size.

Therefore, smaller cells with a high surface area to volume ratio have the best transfer rates, hence option A is correct.

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Which of these actions would be controlled by the somatic nervous division of the peripheral nervous system?

A. Blood vessel dialation

B. Movement of food down the esophagus

C. Opening and closing of the eyes

D.Opening and closing of the pupils

Answers

Answer:

C

Explanation:

Which kind of light do plants use to make energy in photosynthesis?
A. Radio waves
B. Visible Light
C. Infrared Light
D. Ultraviolet Light

Answers

Answer:

B. Visible Light

Explanation:

The best wavelengths for photosynthesis fall within the blue range (425-450 nm) and red range (600-700 nm).

(RrYy x RrYy), how many of the offspring will be dominant for both traits?

Answers

9 of the offsprings will be dominant for both traits in the above dihybrid cross.

What is a dihybrid cross?

A dihybrid cross is a cross between two individuals with two observed traits that are controlled by two distinct genes.

Gregor Johann Mendel known as the father of genetics was the first person to discover the basic principles of heredity during the mid-19th century.

In a dihybrid cross between two parents that are heterozygous for both traits, the cross will result in four different combinations of seeds in the F2 generation as follows:

wrinkled-yellow round-yellowwrinkled-greenround-green

These offsprings are in the phenotypic ratio of 9:3:3:1 where 9 represents the offsprings dominant for both traits.

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which of the following phenomena never affects the moons phase?

Answers

Answer:

A lunar eclipse never occurs during a full moon.

Explanation:

A lunar eclipse occurs during all full moons. A lunar eclipse can only occur during a full moon.

Which of the following is directly responsible for an orgasm?

Answers

Answer:

ERECTION

Explanation:

After classical conditioning has occurred, if the conditioned stimulus (tone) is repeatedly presented alone, without the unconditioned stimulus (food), the conditioned response (salivation) will
Group of answer choices

generalize.

discriminate.

strengthen.

weaken.

Answers

Answer:generalize

Explanation:

After classical conditioning has occurred, if the conditioned stimulus is repeatedly presented alone, without the unconditioned stimulus, the conditioned response will WEAKEN.

Classical conditioning refers to a class of learning that occurs unconsciously.

Moreover, conditioned stimuli are previously neutral responses that drive conditioned responses after their association with unconditioned stimuli.

Extinction refers to the process in which a conditioned stimulus is applied repeatedly, but without being paired with its corresponding unconditioned stimulus.

In conclusion, after classical conditioning has occurred, if the conditioned stimulus is repeatedly presented alone, without the unconditioned stimulus, the conditioned response will WEAKEN.

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Matching - select the best answer and place it next to questions below.

•Meristematic Tissue
•Permanent Tissue
•Genus, Species
•Chlorophyll
•Lenticel
•Node
•Monocot
•Dicot
•Simple Fruit
•Aggregate Fruit
•Root Hair
•Dormancy
•Totipotency
Hesperidium
Perfect Flower
Protoplasm
Pepo
Parthenocarpy
Leaf Vein
Adaptation
.
22.
Allows for plant survival in various climates
23.
Process where a plant produces a seed without fertilization
24.
Found in the bark of woody trees; allows for gas exchange
25..
Has male and female structures on one flower
26.
Found at the root tip; cell division still occurs here
27.
Extension of an epidermal cell
28.
Must be present for photosynthesis to occur
29.
Makes up the scientific name of a plant
30.
Includes the phloem and xylem
31.
Found in stems, leaves, flowers; cell division does not occur
32.
Derived from one ovary of a single flower
33.
Has a taproot system
34.
Time when the seed is not growing; period of rest
35.
Location on the stem where growth occurs
36.
Fleshy fruit that consists of a leathery rind
37.
Fleshy fruit that contains fragrant oil and leathery skins
38.
Derived from several ovaries of a single flower
39.
Cell characteristic that allows them to become any type of cell
40.
Living parts of a cell

Answers

Answer:

Hair root is 27 dicot is 33

explain how the huge reduction of a Tasmanian devil population since 1996 affects the accessibility of the current population to new diseases in comparison with accessibility of population before 1996?​

Answers

Answer:

In the past two decades, this species has experienced severe population decline due to the emergence of devil facial tumor disease (DFTD), a transmissible cancer. During these 20 years, scientists have puzzled over the immunological and evolutionary responses by the Tasmanian devil to this transmissible cancer

Please help!

1.) Explain why the term cycle is used to describe the biogeochemical cycles.

2.) Compare and contrast the carbon and nitrogen cycles. Specifically, identify which happens when either exists in very large quantities in the environment.

Answers

1.) The term "cycle" is used to describe the biogeochemical cycles because these processes involve the circulation of elements or compounds through the environment in a continuous loop. For example, the carbon cycle involves the circulation of carbon through the atmosphere, oceans, and land, as it is taken up by plants and animals and then released back into the environment through processes such as respiration, decay, and combustion. Similarly, the nitrogen cycle involves the circulation of nitrogen through the atmosphere, soil, and living organisms, as it is converted from one form to another through processes such as nitrogen fixation and denitrification. The use of the term "cycle" helps to convey the idea that these processes are interconnected and ongoing, rather than being a one-time event.

2.) The carbon cycle and the nitrogen cycle are similar in that they both involve the circulation of elements through the environment, but they differ in the specific elements they involve and the processes through which they circulate. The carbon cycle involves the circulation of carbon through the atmosphere, oceans, and land, while the nitrogen cycle involves the circulation of nitrogen through the atmosphere, soil, and living organisms.

One key difference between the carbon cycle and the nitrogen cycle is the way in which these elements exist in very large quantities in the environment. When carbon exists in very large quantities in the environment, it can contribute to greenhouse gas emissions and contribute to climate change. On the other hand, when nitrogen exists in very large quantities in the environment, it can lead to problems such as eutrophication, which occurs when excess nitrogen in waterways leads to an overgrowth of algae and other aquatic plants. This can lead to decreased oxygen levels in the water, which can harm or kill aquatic life.

In an investigation, individual Rhabdostyla were placed into different concentrations of sea water.
The rate of water excreted by the contractile vacuðle of each organism was determined. The results
are shown in Fig. 4.2.
20
18-
16
[3]
14
12
rate of
water
excreted
um's
10
8-
6
4-
2
0
0
4
12
Explain the result

Answers

Answer:

placed into different concentrations of sea water.

The rate of water excreted by the contractile

the illustration shows a model of the transport of soute particles from outside the cell to inside the cell. what type of cell transport is modeled

Answers

Answer:

The illustration shows a model of the active transport of solute particles from outside the cell to inside the cell.

Explanation:

Active Transport is defined as a process involving the movement of molecules from a region of lower concentration to a region of higher concentration against a gradient or an obstacle with the use of external energy.

This process is “active” because it requires the use of energy (usually in the form of ATP). It is the opposite of passive transport.

An example is the phagocytosis of bacteria by Macrophages.

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Increased biodiversity results in a more sustainable ecosystem because -

Answers

Answer: Because, the higher biodiversity in an ecosystem means that there is a greater variety of genes and species in that ecosystem, and stability. It makes an ecosystem more sustainable because of the food web being stronger and the organisms providing a wide variety of functions.

I hope I answered you correctly and that it helps, I'm sorry if its wrong. Good Luck!

Explanation:

HELP PLSSSS

Explain the effects of the use of antibodies in the control of a disease?????

Answers

Answer:

Antibodies have three main functions: 1) Antibodies are secreted into the blood and mucosa, where they bind to and inactivate foreign substances such as pathogens and toxins (neutralization). 2) Antibodies activate the complement system to destroy bacterial cells by lysis (punching holes in the cell wall).

Photosynthesis is the critical process for life to exist. On Earth, it is certainly the
fundamental biological process that all forms of life rely on. This is a process is
carried out by most plants, algae, and some cyanobacteria. The process has
these organisms take in carbon dioxide, water, and minerals. Then with the help of
sunlight it creates sugars that provide the organism nourishment and life-giving
oxygen.
What is the main idea of the above passage?

Answers

Answer: Photosynthesis is the critical process for life to exist.

Explanation:

The main idea is on the first line.

You can see all the information afterwards are leading to the explanation of the process of photosynthesis.

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Homologous recombination can be used in the lab to replace a gene of interest with a selection marker. To confirm that the selection marker is integrated into the correct place in the genome, sometimes a negative selection is used in addition to the standard positive selection marker. Which of the following would act as a negative selection marker?

a. Transformation of a different gene, which does not act as a selection marker, to replace the gene of interest.â
b. A second marker in the knock out cassette, that if inserted into the genome results in cell death when plated on selective media.
c. Transforming the cells with two different knock out cassettes, each containing the same selection marker3. â

Answers

Answer:

b. A second marker in the knock-out cassette, that if inserted into the genome results in cell death when plated on selective media.

Explanation:

General recombination, also known as homologous recombination, refers to the naturally occurring process of exchange of genetic material between pairs of homologous DNA sequences. This process (homologous recombination) can be exploited by genetic engineering to insert DNA segments of interest at target genes. Moreover, a cassette is a mobile DNA segment containing almost a gene and a recombination site, which is integrated into the locus/loci of interest by homologous recombination. A cassette may contain a DNA segment called 'negative marker' which prevents growth under particular conditions, while a positive marker permits growth under certain conditions. In consequence, a second marker consisting of a drug cassette may be used as a negative marker in order to evidence its insertion by inducing cell death when they are plated in selective conditions.

Give organism a name. Give it a common name AND a scientific name.
Write a short description to describe your organism’s evolution and showcase its key traits.

Answers

Answer:

My organism is called the Red Panda (Ailurus fulgens). It is a mammal native to the eastern Himalayas and southwestern China. The Red Panda is the only living species of its genus, Ailurus, and is closely related to the Giant Panda, although it has a much more specialized diet. It is an excellent climber and has a thick, woolly coat to help keep it warm in its cold mountain habitat.

The Red Panda has evolved over time to become more specialized in its diet and habitat. Its thick fur helps to keep it warm in the cold mountain environment, while its long, bushy tail helps it balance while climbing trees. Its diet consists mainly of bamboo, but it also eats fruits, eggs, and small animals. Its sharp claws and teeth help it to break open bamboo stalks and to defend itself against predators.

Explanation:

What conditions are needed do an accurate radiometric date to be obtained form a mineral sample?

Answers

Answer:

There are several conditions that are needed for an accurate radiometric date to be obtained from a mineral sample. These include:

The mineral must be a suitable type for radiometric dating. Some minerals are more suitable for radiometric dating than others due to their chemical composition and the type of radioactive isotope they contain.

The mineral must be in a closed system. This means that the mineral must not have exchanged any atoms with its surroundings since it formed. If atoms have entered or exited the mineral, it will not give an accurate radiometric date.

The mineral must be pure. If the mineral sample contains contaminants or impurities, it will not give an accurate radiometric date.

The mineral must be free of any damage or alteration. If the mineral has been damaged or altered in any way, it will not give an accurate radiometric date.

The mineral must be properly prepared and analyzed. The sample must be carefully prepared and analyzed using specialized equipment and techniques to ensure accuracy.

Overall, to obtain an accurate radiometric date from a mineral sample, it is important to ensure that the mineral is a suitable type, is in a closed system, is pure, is free of any damage or alteration, and is properly prepared and analyzed.

Explanation:

There are several conditions that are necessary in order to obtain an accurate radiometric date from a mineral sample:

The mineral must contain a radioactive isotope, such as uranium-238, that can be used for radiometric dating.

The mineral must be a closed system, meaning that it has not been subjected to any significant loss or gain of the isotope being measured.

The mineral must be free of any contaminants that could affect the accuracy of the measurement, such as minerals that may have been added or removed through metamorphism or weathering.

The measurement must be done using a reliable and accurate instrument, such as a mass spectrometer, that is calibrated to ensure the accuracy of the results.

The measurement must be done in a controlled environment, free from any external sources of radiation that could affect the measurement.

By meeting these conditions, it is possible to obtain an accurate radiometric date from a mineral sample.

In what process do Cell Obtain energy from sugar molecules?

Answers

Answer:

Through the process of cellular respiration

Explanation:

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When nutrients leave the digestive system and move to the circulatory system it is called...


Adjunction


Villi


Absorption


epithelial

Answers

Your answer would be absorption

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Answers

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If you weigh 60 pounds on earth, you would weigh blank pounds on the moon

Answers

you would weigh about 10 pounds

Select the correct answer.
Which is an example of dehydration synthesis?

A. DNA synthesis from nucleotides
B. conversion of proteins into its amino acids
C. conversion of lipids into fatty acids

Answers

c
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This is an example of a squirrel population

Answers

An example of a squirrel population would be a group of Eastern Gray Squirrels (Sciurus carolinensis) living in a city park.

What is an examples of squirrel population?

An example of a squirrel population would be a group of Eastern Gray Squirrels (Sciurus carolinensis) living in a city park. Scientists may study the population dynamics and ecology of this group of squirrels by conducting surveys and capturing and marking individual squirrels to track them over time. This can provide information on their survival rates, reproduction, and movements, which can be used to estimate the size and growth rate of the population, as well as identify any factors that may be impacting the population, such as disease, predation, or habitat loss.

Additionally, scientists may also conduct transects, or study the population density, distribution of the squirrels in a specific area and the food resources that are available to them, as well as monitor the environmental factors that might affect the population growth.

Another example could be a population of Fox Squirrels (Sciurus niger) living in a rural forest. Here, researchers may study the impacts of logging and fragmentation on their population dynamics and genetic diversity, and understand how these animals are utilizing different food resources throughout the year.

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The life activity known as synthesis is chiefly characterized by the:
A) Distribution of essential compounds throughout an organism.
B) Production of complex molecules from simpler ones.
C) Elimination of waste products from the organism.
D) Regulation of physiological activities.

Answers

Answer:

B) Production of complex molecules from simpler ones.

Explanation:

Synthesis is the process of combining simpler molecules to form more complex ones. This can occur through various chemical reactions within an organism. The other choices do not accurately describe the process of synthesis.

A) Distribution of essential compounds throughout an organism - This refers to the transport of essential molecules within an organism, rather than the production of complex molecules from simpler ones.

C) Elimination of waste products from the organism - This refers to the removal of waste products, rather than the production of complex molecules.

D) Regulation of physiological activities - This refers to the control of physiological processes, rather than the production of complex molecules.

what is the neural control of the Musculoskeletal system

Answers

Answer:

Explanation:

The central nervous system controls these movements through the spinal motor neurons which serve as the final common pathaway to the muscles

Crictually evaluate the hallmarks of cancer?

Answers

Answer:

We define seven hallmarks of cancer: selective growth and proliferative advantage, altered stress response favoring overall survival, vascularization, invasion and metastasis, metabolic rewiring, an abetting microenvironment, and immune modulation, while highlighting some considerations for the future of the field.

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