Answer:
20,000 kg/m3 Or what ever unit you use
Explanation:
10 x 10 x 10 = 1000 x 20 = 20,000
10 and exponent = V x M = D
What is a potential hypothesis
Answer:
A potential hypothesis is a tentative statement about the relationship between two or more variables . its a specific testable prediction about you expects to happen in a study.
Which statement describes the solar feature labeled B?
Answer:
here is the pic so can someone answer the question I need help T-T!!!
6) Suppose that a woman who has normal vision, but whose parents are both blind because of aniridia,
consults a genetic counselor. She has unilateral deafness, as does her father. She wants to know what
the chances are (assuming she marries a normal man) that her children will be either deaf in one ear or
blind. What should the counselor tell her?
She should be informed by the counsellor that since deafness is not inherited and both she and her husband have normal vision, there is absolutely no chance that her children will be either blind or deaf in one ear.
Can a son of a colorblind parent inherit the condition?The X chromosome contains the genes that cause color blindness. Yet, a son's (a male offspring) X chromosome does not come from the father but rather from the mother. Hence, even though a father and his son both have color blindness, the son got it from his mother.
Can a normal son or girl be born to two color-blind parents?An X-linked recessive genetic disease called colorblindness exists. No, a colorblind mother cannot give birth to a normal son.
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2. There are many different types of cancer.
Which of the following is one thing they all have in common?
a. They are all caused by uncontrolled cell death.
b. They all start in the lungs and migrate to different parts of the body.
c. They are all caused by uncontrolled cell growth.
d. All of the above
e. None of the above
Answer:
i think its a im not sure though
ILL GIVE YOU 40PTS IF YOU ANSWER THIS CORRECTLY!
Answer:
C
Explanation:
An airplane flies from Minneapolis to Chicago in 62 minutes.
If it is 572,000 meters from Minneapolis to Chicago, what is the plane's average speed?
A. 2,000 m/s
B. 355 m/s
C. 154 m/s
D. 119 m/s
Answer:
154m/s
Explanation:
Average speed= distance(m)/time(sec)
Distance=572,000metres
Time=62×60=3720seconds
As=572000/3720=153.76aproximately154m/s
What does each star become after the main sequence stage?
PERFECT QUESTION! SPACE IS WHERE ALL MY INTERESTS ARE!
Answer:
Once a star reaches the limit of it's current stage, which in this case, is the main sequence stage, it will expand and cool, resulting a Red Giant.
What are the stages in the life of a star and what happens in each?1. Nebula
A nebula is an out-of-this-world cloud of gas (hydrogen) and dust. The nebulae are where stars are born. Nebulae come in a variety of forms. A brilliant emission nebula, like the one in Orion, shines because the gas there is powered by the stars that have already formed there. Starlight reflects on the dust particles within a nebula to form a reflection nebula. The Pleiades Cluster's nebula is an example of a mirror nebula. There are also Dark Nebula. These are thick, hydrogen-filled clouds that either fully or partially block the light from the stars behind them, such as the Horsehead Nebula in Orion.
2. Star
A star is a glowing ball of gas that generates all of its own heat and light through nuclear processes (nuclear fusion). They are made primarily of hydrogen and helium gas and are created from nebulae. The colors that correlate to the surface temperatures, which vary from red to blue-white, span from 2000 C to above 30,000 C. With masses 100 times greater than the Sun's, the brightest stars produce as much light as millions of Suns. They have a lifespan of just a million years before becoming supernova. Red dwarfs, which are just a thousandth as luminous as the Sun, are the weakest stars. A star can have a minimum mass of around 8% of the mass of the Sun, or 80 times the mass of the planet Jupiter, for nuclear processes to occur. Brown dwarfs or big planets are objects that have less mass than the critical mass and glow very weakly. A star like the Sun swells out into a red giant as it nears death, loses its outer layers as a planetarian nebula, and then contracts to become a white dwarf.
3. Red Giant
The surface of this big, brilliant star is chilly. It develops as a star like the Sun's core runs out of hydrogen fuel in its final phases of growth. The diameter of a red giant ranges from 10 to 100 times that of the sun. Despite having a surface temperature between 2000 and 3000C that is lower than that of the Sun, they are extraordinarily brilliant due to their size. Super Giants are a common name for red giants, very massive stars. These stars frequently exhibit luminosities one million times higher than the Sun and have dimensions up to 1000 times that of the Sun.
4. Red Dwarf
These are extremely tiny, dim, and cold stars that have a mass and diameter that is roughly equal to that of the Sun. They have an estimated lifespan of 100 billion years and burn very slowly. Proxima Centauri and Barnard's Star are red dwarfs.
5. White Dwarf
This tiny, blazing star is at the end of its life cycle as a star like the Sun. White dwarfs are stars that are similar in mass to the Sun but have a diameter that is just 1% as large as the Sun, or around the size of the Earth. Although a white dwarf is smaller than the Sun and has a surface temperature of 8000C or more, it has an overall brightness of little more than 1% of the Sun. The shriveled remnants of typical stars whose nuclear energy reserves have been depleted are known as white dwarfs. Due to gravitational processes, white dwarfs are composed of degenerate matter with an extremely high density; one tablespoon contains many tonnes of mass. Over a few billion years, white dwarfs cool and disappear.
6. Supernova
This is a star's cataclysmic demise, which frequently gives the star for a brief period the brilliance of 100 million suns. Supernovae often fall into two categories: - These are Type I explosions, which take place in binary star systems when gas from one star collides with a white dwarf, triggering an explosion. Type II These occur in stars that are 10 times as massive as the Sun or more, and near the conclusion of their lifetimes, they experience runaway internal nuclear reactions that result in an explosion. Black holes and neutron stars are what they leave behind. The primary source of elements heavier than hydrogen and helium is assumed to be supernovae.
Thank you,
Eddie
I am a multicellular autotroph that lives on land. I grow flowers with eggs and pollen inside them, and produce seeds inside of fruit.
Answer:
protist, Kelp
>-<
Coal is a fossil fuel produced from plant material underground over very long geological periods of time. What are petroleum and natural gas originally formed from?
Based on your above answers, do all substitutions cause a change in the amino acid sequence of a protein? Explain.
No, not all substitutions cause a change in the amino acid sequence of a protein.
Substitutions can occur in the DNA sequence of a gene, and they can result in changes to the amino acid sequence of the protein that is translated from that gene. However, the genetic code is degenerate, meaning that multiple codons can code for the same amino acid. For example, the codons GGU, GGC, GGA, and GGG all code for the amino acid glycine. Therefore, if a substitution occurs in the DNA sequence of a gene such that one of these codons is replaced with another codon that codes for the same amino acid, then the resulting protein sequence will be unchanged.
In addition, there are some codons that do not code for any amino acid (i.e., stop codons), and substitutions that introduce a stop codon into the middle of a coding sequence can truncate the resulting protein. Similarly, there are some amino acid substitutions that are "silent," meaning that they do not affect the function or structure of the protein. Finally, some substitutions may not change the amino acid sequence of a protein, but they may still affect its function by altering regulatory regions or splicing sites in the gene.
Therefore, the effect of a substitution on the amino acid sequence of a protein depends on the specific substitution and its location within the gene.
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Correct question:
Do all substitutions cause a change in the amino acid sequence of a protein? Explain.
There are multiple ethical issues related to the current COVID-19 pandemic. Numerous measures have been instituted to prevent the spread of the virus. The more controversial of these include social isolation, closure of businesses, and the mandated wearing of masks in public spaces. There has been pushback by certain groups of people who feel that these interventions are an infringement of their personal freedoms. In what circumstances should civil liberties be sacrificed for the greater good?
Civil liberties should be sacrificed for the greater good only under certain circumstances where civil liberties conflict with the public good for example, for individuals who rely on daily wages.
The COVID-19 pandemic has triggered multiple ethical issues that have led to debates on whether the civil liberties should be sacrificed for the greater good. In this situation, social isolation, business closure, and mask mandates are the most controversial measures that have been taken to put in place in order to prevent the spread of the virus. While these measures may infringe on personal freedoms, they are necessary for the greater good of public health. In the case of a pandemic like COVID-19, public health and safety must be the top priority, but there must also be an equilibrium between protecting the public and respecting individual rights.
However, it is essential to consider the impact of these measures on marginalized communities and vulnerable populations. For instance, individuals who rely on daily wages may struggle to make both ends meet due to business closures, and those who cannot afford masks may face penalties for not wearing them. Consequently, civil liberties may have to be restricted to restrict the propagation of the virus. Social isolation and business closure help prevent the disease proliferation by limiting interaction among people. Similarly, mask-wearing aids in containing the virus by minimizing the risk of transmission. Therefore, in circumstances where civil liberties conflict with the public good, civil liberties may have to be sacrificed for the greater good.
Civil liberties are the basic human rights and freedoms that are granted to all people. They incorporate freedom of speech, religion, association, movement, and so on. The implementation of public health measures to avert the expansion of COVID-19, as the likes of social isolation, closure of businesses, and mask-wearing, have been viewed by some as a restriction on their personal freedoms. Nonetheless, it is a known fact that infectious diseases can quickly disseminate, instigating deaths and illnesses. Hence, the greater good should supersede individual interests and protect the community against a public health emergency. During a pandemic, when there is a public health emergency, it is pivotal to put the well-being of the public above individual interests.
Therefore, it is significant for governments and policymakers to provide support and resources to those who are most affected by these measures. Additionally, transparency and clear communication about the reasoning behind these interventions can help to build trust and understanding among the public.
In conclusion, protecting the public is a priority, especially during a public health emergency. The decision to curtail civil liberties during such a period should be a delicate balance between the public good and individual interests. The measures taken to prevent the spread of COVID-19, including social isolation, business closure, and mask-wearing, should be weighed against their impact on civil liberties. Overall, civil liberties should only be sacrificed for the greater good in situations where public health and safety are at risk, but there must also a balance between protecting the public and respecting individual rights, particularly for marginalized communities and vulnerable populations.
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When groundwater is depleted, the ground surface above can sink down over time. This is
called:
Select one:
O a. Ground Loss
O b. Subtrusion
O c. Subsidence
O d. Land Subsistence
Answer:
The answer is D
Explanation:
When groundwater is depleted, the ground surface above can sink down over time. This is called Land Subsistence. Thus, option "D" is correct.
What causes subsidence?Subsidence is a phenomenon of lowering of the ground surface due to changes in the underground support. The phenomenon occurs in several places in the world due to the
extraction of wateroiland gas from the subsoil.With this information, we can conclude that Land subsidence is related to human population growth.
Thus, option "D" is correct.
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Question 3
Which statement below is correct?
A. Photosynthesis produces ATP, and cellular respiration requires light
energy
B. Photosynthesis produces carbon dioxide, and cellular respiration
produces sugars.
C. Photosynthesis and cellular respiration occur in both plant and
animal cells.
D. Photosynthesis produces the oxygen required for cellular respiration.
Answer:
B is the correct answer.
A is incorrect because respiration is always occuring in animals and plants, therefore it means it does not require the presence of light. Photosynthesis does produce ATP, though.
Not C because photosynthesis does not occur in animals
Not D because they both are different processes. They don't really depend on each other, though they could occur at the same time.
Predict: Based on your hypothesis, how will the mushroom population change when other organisms are added to the forest? (Trees,Bears,Deer)
Answer:
The mushroom population will decrease.
Explanation:
The animals introduced into the forest will likely eat the mushrooms.
Our _____ identity is determined by our height, weight, sex, age, and other corporeal characteristics.a. Physical Abilityb. Age c. Classd. Gender
Our physical identity is determined by our height, weight, sex, age, and other corporeal characteristics.
What is physical identity? Physical identity is determined by one's body structure, body measurements, age, and physical abilities, as well as corporeal characteristics. Physical characteristics that are quantifiable or measurable are referred to as corporeal characteristics.
These characteristics are not limited to height, weight, skin color, hair color, and so on, and they are determined by one's genetics, environment, and lifestyle. Gender is one of the corporeal characteristics that play a significant role in shaping our physical identity.
One's gender determines how they are perceived by society, as well as their access to resources and opportunities. Height, weight, and physical abilities are also significant corporeal characteristics that determine our physical identity.
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An increase in plasma levels of ACTH leads to A. increased plasma glucagon levels B. increased plasma cortisol levels C. increased plasma parathyroid hormone levels D. increased plasma vasopressin levels E. increased plasm epinephrine levels
An increase in plasma levels of ACTH leads to B. increased plasma cortisol levels.
If your cortisol ranges are too high or too low, it is able to suggest you have got a disease of your adrenal glands, trouble along with your pituitary gland, or a tumor that makes cortisol. high degrees of cortisol can also appear if you take massive doses of certain steroid medicines, such as prednisone, for the long term.
Cortisol raises blood sugar via freeing saved glucose, whilst insulin lowers blood sugar. Having chronically high cortisol stages can result in continual excessive blood sugar (hyperglycemia). This may reason for type 2 diabetes.
The cortisol blood test measures the level of cortisol within the blood. Cortisol is a steroid (glucocorticoid or corticosteroid) hormone produced by the adrenal gland. Cortisol can also be measured using a urine or saliva test.
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Punnett squares can be used to predict the probability of...
Answer:
any functions lolll
Explanation:
Punnett squares are used by geneticists to determine the probability of different offspring genotypes.
What are Punnett squares?Punnett square is defined as the class diagram used to predict the genotype of a particular cross or breeding experiment, named after Reginald C. Punnett, who formulated the approach in 1905 which is to used to determine the probability of an offspring with a particular genotype.
A Punnett Square is explained as the helpful tool that helps to predict the variations and probabilities that can come from cross breeding which includes predicting crossing plants, animals, even humans with each other.
Thus, Punnett squares are used by geneticists to determine the probability of different offspring genotypes.
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The major goal of industrialized agriculture for any crop has been to steadily increase each crop’s ____.
Any crop's main objective in industrialized agriculture has been to continually raise its yield, or the quantity of food produced per area of land.
What is meant by industrialization of agriculture?Industrial agriculture is the large-scale, intense production of crops and animals, frequently incorporating the hazardous routine use of antibiotics on animals or chemical fertilizers on crops (as a way to compensate for filthy conditions, even when the animals are not sick).
CAFOs and monoculture agriculture are examples of industrial agriculture.
Industrial agriculture's advantages
The fundamental benefit of intensive farming is that it performs better since it can gather bigger yields from fewer areas. This benefits landowners financially and supplies food for the expanding population.
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During ______________, two bacteria of the same species attach to each other and combine their genetic material.a. reproduction c. pasteurization
b. fertilization d. conjugation
Answer:
D
Explanation:
Conjugation
can someone answer all 5 ?
Answer:
1. D,
2. C,
3. A,
4. C,
5. B
Explanation:
those are the answers to the questions
What maintains the average global temperature suitable for living organisms?
A)fossil fuels
B)tropical storms
C)volcanic activity
D)greenhouse gases
D. greenhouse gases is the answer
greenhouse gases
The atmosphere traps and distributes the sun's heat energy.
Help please!
Do you think space exploration distracts from or
enhances finding solutions to our environmental
problems here on Earth? Explain your opinion.
Space exploration unites us in ways that other global efforts do not because we see ourselves as humans first. This advantage won’t solve our problems, but it can shift our attitude toward something that is healthier than our current state. We know more about our planet thanks to our efforts to explore space.
1)What is a trophic level?
2) explain how energy travels through food web ? your response must include the following terms:
Decomposer,producer, primary, consumer , 10%.
3)why is energy reduced at successive trophic levels?
1. The trophic level is something's position in the food chain/food web.
2. Energy travels through out the food chain because all the animals eat each other and take each other's energy. The decomposers are eaten, the producers are eaten, but the primary consumers get all the energy.
3. The energy decreases because each animal decomposes the energy a little, before getting eaten. By the time the food reaches the top of the web, the energy is barely left.
Hope this helps!
the__method would be the best way to determine when an approaching thunderstorm will reach your town.
a. analog b. trends c. climatology d. persistence
HELPPPPPP
B:Trend
definetly didnt answer this question before *cough cough*
Answer:
Trends
Explanation:
is a group of red squirrels in one area called a population
Answer:
yes
Explanation:
Answer:
yes
Explanation:
A group of any species in one area is called a population
Organism: one animal or plant
Population: a group of a species in an area
Community: All living organisms in an area
Ecosystem: All living and nonliving things in an area
Which of the following explains how fair trade leads to changes in deforestation?
Higher prices increase the demand for quality wood.
Fewer buyers cause more illegal harvesting and selling.
Larger industries take over operations from smaller growers.
Improved economies lessen the need to remove as many trees.
Answer:
The second one.
Explanation:
HURRY I DONT HAVE ALOT OF TIME
An object is uniformly accelerated from rest to a speed of 25 meters per second in 10 seconds. What is the acceleration of the object? Pay attention to your units.
250 m/s
2.5 m/s2
2.5 m/s
250 m/s2
Answer:
b maybe
Explanation:
determine the minmum uncertanties in the positions of the following objects if their speeds are known with percision of 1 *10^-3m/s: (a) an electron of mass 9.1 *10^-31kg and b a bowling ball of mass 7kg
For (a) an electron with mass 9.1 * 10^-31 kg and a speed precision of 1 * 10^-3 m/s, the minimum uncertainty in its position is approximately 2.87 * 10^-28 m.
For (b) a bowling ball with mass 7 kg and a speed precision of 1 * 10^-3 m/s, the minimum uncertainty in its position is approximately 9.66 * 10^-37 m.
To determine the minimum uncertainties in the positions of the objects, we use the Heisenberg Uncertainty Principle, which states that the product of the uncertainties in position (Δx) and momentum (Δp) must be greater than or equal to Planck's constant (h) divided by 4π:
Δx * Δp ≥ h / (4π)
The uncertainty in momentum (Δp)is equal to the product of the mass (m) and the uncertainty in speed (Δv):
Δp = m * Δv
So, we can rewrite the Heisenberg Uncertainty Principle as:
Δx ≥ (h / (4π)) / (m * Δv)
We can now plug in the given values for the electron and the bowling ball to calculate the minimum uncertainties in their positions.
Summary:
Using the Heisenberg Uncertainty Principle, we calculated the minimum uncertainties in the positions of (a) an electron to be approximately 2.87 * 10^-28 m, and (b) a bowling ball to be approximately 9.66 * 10^-37 m, with a speed precision of 1 * 10^-3 m/s.
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A human gene carries certain disease from the mother to the child with a probability rate of 57%. That is_ there is a 57% chance that the child becomes infected with the disease: Suppose female carrier of th gene has three children: Assume that the infections of the three children are independent of one another: Find the probability that all three of the children get the disease from their mother: Round to the nearest thousandth: 0.185 Find the probability that at least one of the children do not get the disease from their mother: Round to the nearest thousandth: Select ]
Probability that all three of the children get the disease from their mother is 18.5%, and probability that at least one of the children do not get the disease from their mother is 81.5%.
What is the probability that all three of the children get the disease from their mother?If the probability that a child becomes infected with the disease from the mother is 57%, then the probability that a child does not get the disease from the mother is 100% - 57% = 43%.
Let's use "D" for the event that a child gets the disease from the mother
"ND" for the event that a child does not get the disease from the mother
P(all 3 children get the disease) = P(D and D and D) = P(D) x P(D) x P(D) = 0.57 x 0.57 x 0.57 = 0.1851 or approximately 18.5%.
P(at least 1 child does not get the disease) = 1 - P(all 3 children get the disease) = 1 - 0.1851 = 0.8149 or approximately 81.5%.
Therefore, the probability that all three of the children get the disease from their mother is 18.5%, and the probability that at least one of the children do not get the disease from their mother is 81.5%.
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how did you get this answer i don't get it
What question?- there's nothing there