Compared to the Jovian planets in our solar system, the terrestrial planets have

A) less mass and are less dense
B) less mass and are more dense
C) more mass and are less dense
D) more mass and are less dense

Answers

Answer 1

Answer:

B

Explanation:

Answer 2

The terrestrial planets such as earth compared to the Jovian planets in our solar system, have less mass and are more dense.

What are Jovian planets?

The Jovian planets are the large planetary such as Saturn, and Jupiter which are large gas giants consisting mainly of helium and hydrogen gas.

They are more massive but are less dense than terrestrial planets.

Therefore, compared to the Jovian planets in our solar system, the terrestrial planets have less mass and are more dense.

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Related Questions

the primary cortex contains a map of the body based on the importance of sensory input from different parts of the body. a. somatosensory b. visual c. auditory d. motor please select the best answer from the choices provided a b c d

Answers

The primary somatosensory cortex contains a map of the body based on the importance of sensory input from different parts of the body.

Thus, the correct option is A.

The somаtosensory system is a pаrt of the sensory nervous system. The somаtosensory system is а dynаmic system of sensory neurons and neurаl routes, which respond to chаnges аt the inside or surfаce the body.  Its function is the cаpаcity to understаnd the feeling from different parts of the body. There аre different forms of such аs touch, tension, vibrаtion, temperаture, scrаtch, tickle, and pаin.

The somаtosensory system is а three-neuron system which relаys sensаtions in the periphery and trаnsmits them to the sensory cortex in the pаrietаl lobe through pаths thru the spinаl cor", the brаin stem and the thаlаmic relаy nuclei.

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bộ lưỡng cư không đuôi có đặc điểm cơ bản là

Answers

Answer:

thân ngắn,hai chi sau dài hơn 2 chi trước, đa số hoạt động về đêm

Two parents think their baby was switched at the hospital. Its 1968, so DNA fingerprinting
technology does not exist yet. The mother has blood type "O," the father has blood type "AB," and
the baby has blood type "B."
a. Mother's genotype:
b.Father's genotype:
C.Baby's genotype: or
d. Punnett square showing all possible genotypes for children produced by this couple
e.Was the baby switched?

Answers

A. OO

B. AB

C. AO or BO

D. O, BO, BO or O, AO, AO

E. no the baby was not switched.

The genes that determine a person's ABO blood types have three alleles, as opposed to the majority of human qualities having just two alleles (A, B, O). One allele is inherited from each of these numerous alleles, which are transferred from parent to offspring. For human ABO blood types, there are six potential genotypes (genetic make-up of inherited alleles) and four phenotypes (expressed physical trait). The O allele is subordinate to the A and B alleles. The genotype is homozygous recessive and the blood type is O when both inherited alleles are O. The genotype is heterozygous and the blood type is AB when one of the inherited alleles is A and the other is B.

Types of blood group:Type A: There are two genotypes: AA and AO. Both the blood plasma's antibodies and the blood cells' antigens are A.Type B: There are two genotypes, BB and BO. The blood plasma contains A-type antibodies, while B-type antigens are found on blood cells.Type AB: The blood cell has antigens A and B on it. The blood plasma has no A or B antibodies.Type O: OO is the genotype. The blood cell has no A or B antigens. A and B antibodies are present in blood plasma.

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I made last question English on accident please help me!

I made last question English on accident please help me!

Answers

The answer to this question would be

Anaphase

What best labels letter x and y?

What best labels letter x and y?

Answers

Answer:

X = root system

Y = shoot system

Explanation:

Which of the following statements is most true regarding macromolecules and their functions?

Choose ONE answer:

A. Carbohydrates are structural molecules that give shape to cells in hair, nails, and skin.

B. Lipids give short term energy to cells.

C. Nucleic acids store genetic information that codes for traits.

D. Proteins are storage molecules that provide long term energy for cells.​

Answers

The answer is C . Nucleic acids store genetic information that codes for traits

Nucleic acids store genetic information that codes for traits is true about Macromolecules and their functions.

What are Macromolecules?

Macromolecules are also called polymers. They are large molecules that formed by the combination of thousands of smaller molecules

which are covalently bonded together.The smaller molecules are also called monomers.

Examples of Macromolecules are carbohydrates, protein, lipids and nucleic acids.

Therefore, Nucleic acids store genetic information that codes for traits is true about Macromolecules and their functions.

Carbohydrates are storage molecules that provide energy to the cells.

Protein help to build the body.

Lipids supply energy to cells.

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○ HURRY I HAVE TO TURN THIS END ANSWER ALL○

 HURRY I HAVE TO TURN THIS END ANSWER ALL
 HURRY I HAVE TO TURN THIS END ANSWER ALL

Answers

Answer:

The fish dies.

Explanation:

Well, naturally, salt water fish need salt water to survive. They are so used to the salt that the salt solution is critical in their bodies. With the fresh water, the fish will get water sucked into its cells, until it's filled to the brim and eventually dies.

Answer: lyse

If cells do not get the right type of food/water, they will shrink and die. They will shrivel, and the cell may destruct. So, the answer is they will get smaller and shrivel (lyse.)

Hope this helps!

Look at your data. With three foods, Flock
was the most successful over three generations.
With two foods (no fruit), Flock
was the most successful.

Answers

Answer: x then y

Explanation:

X then y :)

the answer is down

Explanation:

Look at your data. With three foods, Flock was the most successful over three generations.With two foods

Is morphine a hallucinigenic drug?

Answers

No. Morphine is not a hallucinogen by design. Side effects can result in delusions and hallucinations but that is not its purpose. It is just a heavy duty analgesic.

Why do you suppose the latency differed between the median and lateral fibers?.

Answers

Answer- The Medial Giant Fiber is larger and therefore allows the transmission of action potentials down its length much faster than the Lateral Giant Fibers.

Explanation:

which organisms share a family

Answers

Answer:Amoeba and Euglena are more closely related to each other than any other pair of organisms as they both belong to the Phylum Protista and show similar characteristics.

Explanation:

Como ha llevado la evolucion a que este insecto phyllium giganteumparezca una hoja segun la teoria de lamarck

Answers

Answer:

Due to adaptation of the environment.

Explanation:

Evolution has led this insect phyllium giganteum to appear like a leaf according to Lamarck's theory because this insect lives and feed on the leaf environment so in order to save itself from other predators it takes the shape and structure of leave in order to hide itself so this adaptation slowly transmitted from the parents to the offspring and as a result evolution occurs.

The study of ____ is called genetics.
A)heredity
B)dominance
C)pea plants
D)mutations

Answers

Genetics is the study of heredity, so the correct answer is that the study of heredity is called genetics. The correct answer is option A, which is true in relation to the fact that genetics is the study of heredity.

What is genetics?

Genetics is a branch of biology that studies the pattern of heredity and how traits are passed down from generation to generation. The dominant and recessive characteristics, as well as genetic diseases, are inherited from parents to offspring due to heredity, and the gametes are formed due to the meiosis process.

Hence, genetics is the study of heredity. The correct answer is option A.

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What is the name of the enzyme used in both cellular respiration and photosynthesis to stick a phosphate to ADP to make ATP

Answers

Answer:

ATP synthase

Explanation:

In both cellular respiration and photosynthesis, the enzyme ATP synthase is utilized to help make ATP.

What would you use the Benedict’s test for? A. To identify if a sugar is present. B. To identify if a reducing lipid is present. C. To identify if a lipid is present. D. To identify if a reducing sugar is present.

Answers

Answer:

to identify if a reducing sugar is present...not only reducing but also non reducing sugars

sustentacular cells secrete inhibin, which regulates the rate of sperm production.

Answers

Sustentacular cells, also known as Sertoli cells, play a vital role in the process of spermatogenesis. These cells secrete inhibin, which regulates the rate of sperm production.

Sustentacular cells, also known as Sertoli cells, are a type of supporting cells that are present in the seminiferous tubules of the testes. These cells are essential for the process of spermatogenesis, which is the process of sperm cell development and maturation in the testes.

Sustentacular cells perform several functions that are critical for the proper functioning of the testes. They provide physical support and protection to the developing sperm cells.

They also create a barrier between the developing sperm cells and the immune system of the body, which helps to prevent the sperm cells from being attacked by the immune system.In addition, sustentacular cells secrete several hormones and other factors that are essential for spermatogenesis.

These include inhibin, which regulates the rate of sperm production by inhibiting the secretion of follicle-stimulating hormone (FSH) from the anterior pituitary gland.

This helps to maintain the proper balance of hormones in the body, which is essential for the normal development of the testes and the production of sperm cells.

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Discussion 1. What percentage of asci observed resulted from the fusion of cells from different strains? 2. What percentage of those asci resulting from the fusion of different strains demonstrates crossovers?

Answers

During the study of genetics and inheritance, it is important to observe the sexual cycle of fungi to determine the genetic variations within the offspring. In the 1920s, T. H. Morgan and his colleagues used fungal genetics to test the hypothesis of the existence of recombination. For instance, they observed the sexual cycle of the common bread mold, Neurospora crassa, to investigate how crossing-over occurs between homologous chromosomes during meiosis.

As a result of their investigation, Morgan and his colleagues discovered that, during meiosis, four haploid ascospores are produced within a specialized sac called an ascus. These ascospores are produced when two nuclei from two different hyphae (cells) combine and fuse together.

This fusion creates a cell with two haploid nuclei, which subsequently undergoes meiosis to create four haploid ascospores. Hence, an ascus will contain four haploid ascospores produced by a single diploid cell resulting from the fusion of two haploid cells.

The percentage of asci observed that resulted from the fusion of cells from different strains is 100%. This is because the fusion of haploid cells from different strains is essential for the production of a diploid cell that will then undergo meiosis to form four haploid ascospores.

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a organ systems have been removed from the concept map allowed in the place of each organ system dragon drop major organ or tissue comprising the system

Answers

The neurological and endocrine systems regulate several bodily processes. Chemical messengers are used by these two regulatory systems to influence the operation of other organ systems and to synchronize activity across the body.

How are the various organ systems distinguished from one another?

An organ system is a collection of organs that collaborate to carry out a certain function, whereas an organ is made up of a set of tissues that work together to support the overall function of the organ.

Is it conceivable for a single organ to belong to several organ systems?

Some organs are a part of multiple systems. For instance, the nose functions as both a sensory organ and part of the breathing system.

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What is the percentage of the offspring?!

What is the percentage of the offspring?!

Answers

Answer:

50% AO, 50% BO

Explanation:

there are 2/4 that are of AO blood, and 2/4 are of BO blood.

2/4 is equivalent to 50%

Identify the advantages and disadvantages of internal and external fertilization

Answers

When a sperm fertilizes an egg within the female, it is known as internal fertilization. The advantages of internal fertilization are that the fertilized egg is protected from predators and harsh environments, thus ending in higher chances of survival. Also, there is a lesser chance of desiccation of gametes. Disadvantages of internal fertilization are that there are lesser number of offspring produced at a given time because it is sometimes difficult for the male and female to come into intimate contact. Additionally, the risk of sexually transmitted diseases also increases.

How may the covalent modification of a protein with a phosphate group alter its function? O Phosphorylation of the protein will definitely inactivate it O Phosphorylation of the protein will definitely create additional binding sites, O Phosphorylation of the protein will definitely change conformation of binding sites O There is no general 'rule' describing the absolute effect of phosphorylation on the function of the protein

Answers

Phosphorylation can alter a protein's function by changing its conformation, creating additional binding sites, or inactivating it.

Phosphorylation, the covalent modification of a protein with a phosphate group, can affect its function in various ways. It can change the protein's conformation, potentially altering its activity or interaction with other molecules.

Additionally, phosphorylation can create new binding sites for other proteins or molecules, enabling new interactions or regulatory functions. In some cases, phosphorylation may inactivate a protein, rendering it nonfunctional.

However, there is no absolute rule governing the effect of phosphorylation on a protein's function, as different proteins and phosphorylation sites can yield diverse outcomes depending on the specific context.

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The effect of covalent modification of a protein with a phosphate group depends on the protein and the specific site of phosphorylation.

Phosphorylation of a protein can alter its function in various ways, including changing its conformation, creating new binding sites, or inhibiting its activity. Phosphorylation can induce conformational changes that affect the protein's ability to interact with other molecules. For example, phosphorylation of some enzymes can either activate or inhibit their activity by inducing a conformational change that affects their active site. Phosphorylation can also create new binding sites for other molecules, such as proteins or enzymes. On the other hand, phosphorylation can also inhibit the activity of some proteins by masking their active site or inducing a conformational change that renders them inactive. Therefore, there is no general 'rule' describing the absolute effect of phosphorylation on the function of the protein, and the effects of phosphorylation can vary depending on the protein and the site of modification.

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what is the advantage of the small diameter of capillaries? group of answer choices it slows blood flow, allowing sufficient time for exchange of materials across capillary walls to occur. it allows the vessels to overcome the force of gravity. it dampens the rise in pressure during ventricular systole. it absorbs the pressure changes that occur during the cardiac cycle. it prevents the backflow of blood, improving venous return.

Answers

The advantage of the small diameter of capillaries is a. it slows blood flow, allowing sufficient time for the exchange of materials across capillary walls to occur.

The advantage of capillaries modest width is that it slows blood flow, giving time for material exchange between the blood and the tissues around it to take place. With walls that are only one cell layer thick, capillaries are the tiniest and smallest blood vessels in the circulatory system, enabling efficient exchange of oxygen, nutrients, and waste products between blood and tissues.

Important physiological functions including the transport of oxygen and nutrients to tissues, the elimination of waste products from tissues, and the exchange of hormones and signalling molecules are all made possible by the slow blood flow in capillaries. This is made feasible by capillaries' narrow diameter, which increases the surface area for blood and tissue interaction and provides enough time for these exchanges to occur.

Complete Question:

What is the advantage of the small diameter of capillaries?

a. it slows blood flow, allowing sufficient time for the exchange of materials across capillary walls to occur.

b. it allows the vessels to overcome the force of gravity.

c. it dampens the rise in pressure during ventricular systole.

d. it absorbs the pressure changes that occur during the cardiac cycle. it prevents the backflow of blood, improving venous return.

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What microscopic structures make up organisms such as humans (you)?

Answers

Answer:

cells are the smallest structural units of living matter and compose all living things.

5
789
10 11
Pili
Nucleoid
rax
Ribosomes
+
Plasma membrane
Cell wall
ران
Capsule
Flagella
(b) A thin section through the
bacterium Bacillus coagulans
(TEM)
(a) A typical
rod-shaped
hacterium

578910 11PiliNucleoidraxRibosomes+Plasma membraneCell wallCapsuleFlagella(b) A thin section through thebacterium

Answers

Answer:

oh my gosh

Explanation:

A star generates energy through nuclear fusion.what types of energy are generated

Answers

The energy that a star generates through nuclear fusion is a form of nuclear energy.

What is nuclear energy?

Nuclear energy is the energy produced in nuclear reactions.

There are two types of nuclear reactions:

Nuclear fusion andNuclear fission

During nuclear reactions, huge amounts of nuclear energy are released together with electromagnetic radiation and nuclear particles.

Therefore, the energy that a star generates through nuclear fusion is a form of nuclear energy.

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Light and heat energies are produced when the nuclear fusion reaction occurs in the star.

What types of energy are generated?

Light and heat types of energy are generated when the nuclear reaction occur in the stars because the reaction light up the star as well as the heat  the surrounding due to its high temperature.

So we can conclude that light and heat energies are produced when the nuclear fusion reaction occurs in the star.

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13. What are the immunisation programmes available at the nearest health centre in your locality?​

Answers

Answer:

Explanation:

This is because immunization programmes are programmes organised by the government to prevent some certain diseases by boosting our immune system to prevent them through vaccines.

Theses programmes for infants include DPT, measles, poliomyelitis, BCG and MMR.

(ii) For childre include TT, small pox, DTTyphoid, and TAB.

(iii) For pregnant woman it include TT and hepatitis-B.

What does chlorophyll absorb during photosynthesis?​

Answers

my guesses is that its light.

Which of the following reactions will have a net negative delta E value?
TCA Cycle
Glycolysis
Fermentation
Pentose Phosphate Pathway
Photosynthesis

Answers

A reaction with a net negative delta E value means that the reaction is spontaneous. Spontaneous reactions are the ones that release energy and move toward equilibrium without any external input. When a reaction has a net negative delta E value, it means that the products are more stable than the reactants.

The reactants will, therefore, spontaneously convert into products. This means that the reaction is exothermic as heat is given off.

The TCA Cycle is the only one of the options given that will have a net negative delta E value. The TCA Cycle (also known as the Krebs Cycle) is a series of reactions that occur in the mitochondrial matrix of eukaryotic cells. The TCA Cycle is responsible for the oxidation of acetyl-CoA and the generation of NADH and FADH2, which will be used later in the electron transport chain to produce ATP.

During the TCA Cycle, the oxidation of acetyl-CoA to CO2 releases energy. This energy is used to generate ATP, NADH, and FADH2. Since energy is released, the reaction is exothermic, and delta E is negative. This means that the TCA Cycle will have a net negative delta E value.

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i. a type of cell division that results in four daughter cells each with half the number of chromosomes of the parent cell, as in the production of gametes and plant spores

Answers

A type of cell division that results in four daughter cells each with half the number of chromosomes of the parent cell, as in the production of gametes and plant spores, is called meiosis.

Meiosis is essential for sexual reproduction as it ensures genetic diversity and maintains the correct chromosome number in offspring. This process consists of two successive divisions, namely meiosis I and meiosis II, each further divided into several stages (prophase, metaphase, anaphase, and telophase).  During meiosis I, homologous chromosomes pair up and exchange genetic material through a process called crossing over, resulting in recombination. This leads to the production of two haploid cells, containing half the number of chromosomes as the original parent cell.

Subsequently, meiosis II occurs, where sister chromatids separate, ultimately generating four genetically distinct haploid daughter cells. These cells can mature into gametes, such as sperm and eggs in animals, or spores in plants. In summary, meiosis is a vital process for producing genetically diverse haploid cells for sexual reproduction, ensuring the maintenance of the species' chromosome number and promoting genetic variation within populations.

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the following are recombination frequencies between genes b-d: 4% a-b: 7% a-d: 13% c-d: 29% based on this information, what is the likely gene order?

Answers

The A, B, C, and D genes are all located within the same chromosome. The frequencies of recombination are as follows: 19% for A-B, 14% for B-C, 5% for A-C, 2% for B-D, 21% for A-D, and 16% for C-D.

The incidence of recombination between genes A and B is 10%, and between genes B and C is 20%. Recombination frequencies are frequently converted into cM by geneticists because the percent recombination frequency and the cM map distance are roughly equivalent. For instance, two loci are considered to be 25cM separated on a chromosome if their recombination probability is 25%. Therefore, the highest recurrence of the problem that can be observed is 50%, which is a sign of loci that are on different chromosomes or that are spread out widely within the same chromosome. The chance of recombination is 50% when the genes are distant from one another or on different chromosomes. In this instance, the two loci's allele inheritance is independent.

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