Frank performs a contract with gene to add a garage to gene’s property, but gene does not pay. frank can file a lien on gene’s property if, from the last date labor or materials were provided, he acts​

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Answer 1

With the given scenario above, Frank can file a lien on the property of Gene from the beginning last date labor or the materials that were provided, he can act within the days of sixty up until one hundred twenty days.


Related Questions

What type of model is a computer game?

Answers

Depend but most often it is a simulation

Tay-sachs disease causes lysosomes to rupture. how would this affect the cell? check all that appl

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The cell will be affected in the following ways:
1. Biological polymers will not be broken down by the lysosomes.
2. Invading bacterial will not be destroyed
3. Materials taken up through endocytosis will not be destroyed.
The lysosomes is a cell organelles that has digestive enzymes, It is major role is to digest worn out structures and food particles. It also engulf bacteria and and other foreign bodies that are found in the cells.

Tay-Sachs disease is a genetic disorder that affects the lysosomes, which are cellular compartments responsible for breaking down and recycling various molecules. The correct options are B, C, and D.

In this disease, a deficiency of the enzyme hexosaminidase. This lead to the accumulation of gangliosides, a type of lipid, within the lysosomes. This accumulation hampers the normal functioning of lysosomes, resulting in several cellular effects. Phagocytic cells, which rely on lysosomes to destroy bacteria, would be impaired in their ability to carry out this function. Material taken up through endocytosis, a cellular process of internalizing substances, would not be properly digested in the lysosomes.

Therefore, the breakdown of biological polymers and the oxidation of fatty acids by lysosomes would be compromised. These dysfunctions contribute to the characteristic features and symptoms of Tay-Sachs disease. The correct options are B, C, and D.

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The complete question is:

Tay-Sachs disease causes lysosomes to rupture. How would this affect the cell? Check all that apply.

A) Proteins would be degraded but not nucleic acids or lipids by lysosomes.

B) Phagocytic cells would not destroy bacteria.

C) Material taken up through endocytosis would not be digested.

D) Biological polymers would not be broken down by lysosomes.

E) Fatty acids would not be oxidized by lysosomes.

Paraphrase the explanation of how a virus reproduces. why did the fact that hela cells are malignant make them particularly useful in the study of viruses?

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Virus are made with ADN or RNA only, which both of them has the information of replication. Once that the virus is in a cell, this ADN or RNA will be deposit inside the cell at the replication system that is going to make the virus reproduce unlimited times until the membranes of the cell break down. And they are useful because you can use them as a carrier or vector for treat diseases or for transgenics, bioterrorism, and so on.

Identify and explain three major issues that cut across psychology

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The three major issues that cut across psychology are stability versus change, rationality versus irrationality and nature-nurture issue.
Stability versus change deals with the issue of whether human beings change as they grow older or they remain essentially the same.
Rational versus irrationality illustrates the disparity between a human's mind ability to perceive and interpret correctly or incorrectly.
Nature - nurture issue centered on the relative contribution of genetic inheritance and environmental factors to human development.
 

Water striders are common insects that can skip across the surface of ponds and streams. this lifestyle is enabled by water's _____

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here are the options 
a.)cohesion and resulting surface tension
b.)high specific heat
c.)adhesion
d.)none of the above

And here is your answer...
cohesion and resulting surface tension. 

Final answer:

Water striders are able to stand and skip across water due to water's surface tension, which is caused by cohesive forces between water molecules that create a 'skin' on the water's surface strong enough to support their weight.

Explanation:

Water striders are common insects that can skip across the surface of ponds and streams. This lifestyle is enabled by water's surface tension.

Surface tension results from cohesion or the attraction between water molecules at the surface of a body of water. This cohesive force creates a sort of 'skin' on the water's surface, which is able to support small insects like water striders, pond skaters, and water skaters. These insects are heavier than water, but because the force they exert downward is less than the force exerted among the water molecules at the surface, they do not sink.

Surface tension is a remarkable property that allows these small insects to effectively walk on water, making it seem as if they are floating. The legs of a water strider have adaptations that distribute their weight over a larger area, which helps to prevent breaking through the water surface.

List 3 ways that living creatures use carbohydrates

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For energy
For health
For imunity

plant species has two alleles for leaf color. if plant species B has four alleles for leaf color , how will the two species differ in their appearance ?

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If plant species B has more alleles for leaf color, it will be more likely to share those alleles and cause the leaf to take on the color the alleles dictate.

Answer:

Allele is the different version of the same gene. Mostly one gene contains two alleles for a trait for example gene for flower color have two alleles R (for red flower) and r(for white flower) so only these two color can be seen in phenotype.

So if a plant species have only two allele for leaf color it can express only either of two color in its leaf but if a species contains more than two alleles for leaf color that the leaf can express any of color out of them.

Therefore species B will differ in appearance because it can express four-color due to having four alleles for leaf color but other species having only two alleles can express only two color.  

What is the monomer of carbohydrate?

Answers

I think it is monosaccharides
It's Monosaccharides

What portion of the molecule in model 1 is responsible for the phospho- part of the structure?

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Attached is the image to which model 1 refers to. I found the exercise on the internet.

The phospho part of the the structure is the one with the phosphate group ([tex] PO_{4} [/tex]³⁻): one atom of phosphorous (P) with four atoms of oxygen (O) attached. It has various functions depending on which biological molecule is present.
Final answer:

The phosphate group is responsible for the phospho- part of a structure, critical in phosphorylation processes that regulate protein function and activity in cells. This group alters the molecule's structure and interactions, influencing cellular processes.

Explanation:

The portion of a molecule responsible for the phospho- part of a structure is the phosphate group (or phosphorus atom surrounded by oxygen atoms). This group is essential in phosphorylation, a critical biological process where a phosphate group is added to a protein or other organic molecule. Phosphorylation can dramatically change a protein's structure and function by altering its ability to bind to other molecules or affecting its activity levels.

The addition of a phosphate group to serine, threonine, or tyrosine residues in proteins, as mentioned in various studies and models such as the TH active site changes upon phosphorylation and the protein phosphatase 1 active site structure, represents this significant biochemical transformation. The phosphate group introduces a charged, highly reactive site on the molecule, which can cause conformational changes due to electrostatic repulsion or attraction, hence affecting the molecule's interaction with other molecules and ions.

In biological systems, phosphorylation is often mediated by enzymes, such as kinase, which facilitate the transfer of the phosphate group from ATP (adenosine triphosphate) to the target molecule. This process is critical for regulating a wide range of cellular processes, from signal transduction pathways to cell growth and apoptosis. The structural impact of phosphorylation emphasizes why the phosphate group (phosphoryl transfer) is so vital in biochemical processes, offering a switch-like mechanism to turn on or off a molecule's activity.

The medical word used today for muscle is very similar to the latin word​ origin, which​ is:

Answers

Musculus is the latin word for muscle

Light is passed through a solution with a light path of 1 cm and the absorbance is recorded as 0.30. If light is passed through the same solution at the same wavelength and the light path is increased to 2 cm, the absorbance should be

Answers

Absorbance = 0.60
       
Absorbance should be double the original because the length is double. Beer-Lambert Law equation is A = eLC, where A is absorbance, e is extinction coefficient, L is length that the light is passing, and C is concentration of the solution. If all parameters are the same except for L (length of the light passing though) then it should change as the same factor, which in this case is 2, because 2cm/1cm = 2 time change in length.

Explain the relationship between the observed gram reaction and bacterial cell wall structure

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The relationship between the observed gram reaction and bacterial cell wall structure is crucial in distinguishing betweenGram-positive bacteria and Gram-negative bacteria.Gram-positive bacteria possess a thick cell wall with multiple layers of peptidoglycan, while Gram-negative bacteria have a thinner cell wall with fewer layers of peptidoglycan and an outer membrane.This difference in cell wall structure directly impacts how bacteria react to the Gram staining procedure, resulting in purple staining for Gram-positive bacteria and pink staining for Gram-negative bacteria.

This area, indicated by the arrow, of the endoplasmic reticulum (er) is involved in ______.

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The answer is synthesis of proteins. The endoplasmic reticulum assists many general functions, containing the folding of protein molecules in sacs called cisternae and the transport of synthesized proteins in vesicles to the Golgi apparatus. This takes two steps: transcription and translation. 

Suppose concordance data were collected from a cohort study of twins to study the genetic contribution to the onset of type 1 diabetes, also called juvenile diabetes. both monozygotic (identical) twins and dizygotic (fraternal) twins who grew up together in the same household were included. the concordance rate was found to be 73% among monozygotic twin pairs and 11% in dizygotic twin pairs. what general conclusion about type 1 diabetes can be drawn from these results?

Answers

In general terms, we may conclude that type 1 diabetes has a very strong genetic influence as to its onset, but it is not all genetic that contributes to the onset of type 1 diabetes. We may disconsider cultural factors as they grew up together in the same household.
When considering monozygotic twins we have the closest case scenario to two people with the exact same genetic information (clones), which leads us to think that if the concordance rate for this type of cases is of 73% then the genetic background does have a very important weight. Notwithstanding this consideration, onset of type 1 diabetes is not limited to the basic genetic information but might be related to small habits, such as exercise, food eating, and minor genetic mutations.
When considering dizygotic twins, we are before normal siblings that share a lot of genetic information but also differ much. The fact that they grew up in the same household during the same years helps understand that the concordance of 11% on the onset of type 1 diabetes is probably given by the genetic information that these twins still share as siblings.

Julie discussed wanting to become pregnant with her gynecologist. that doctor required julie to have a thorough physical examination by her internist, including ensuring all vaccinations were up to date before becoming pregnant. once the gynecologist received the internist's report that julie's medical examination was normal, he referred her to another physician in his practice, an obstetrician. an obstetrician is a _____.

Answers

An obstetrician is a doctor who specializes in the birthing process, including: helping women become pregnant, the pregnancy, and visits after the baby is born. This doctor will be present during the delivery of the baby, to make sure everything is going as planned.

An obstetrician is a doctor who specializes in caring for women during pregnancy and childbirth, within the field of obstetrics and gynecology.

An obstetrician is a doctor who specializes in the care of women during pregnancy and childbirth. Obstetrics and gynecology (OB/GYN) is a branch of medicine focusing on the diagnosis, treatment, and management of the female reproductive system, including during the prenatal period.

Reproductive endocrinologists further specialize within this field, requiring additional training and board certification to practice.

A scientist viewing a cell under a microscope sees that it has a cell wall and a large number of ribosomes. Which conclusion best describes what the scientist sees in the microscope?
A) The cell needs to replicate itself, so it must be getting ready to divide.

B) The cell is from an animal, so it must also have an endoplasmic reticulum.

C) The cell needs to produce a lot of protein, so it must be specialized.

D) The cell is from a plant and can photosynthesize, so it must also have chloroplasts.

Answers

the answer is C) because if the scientist is seeing a lot of ribosomes, then the cell definitely is specialized and the ribosomes are where the cell produces protein.

I hope this helps!!  :)

Answer:

C) The cell needs to produce a lot of protein, so it must be specialized.

Explanation:

If a cell has a lot of ribosomes then it simply means transcriptionally it is very active. Such cells are said to have dense cytoplasm. Having more ribosomes and more transcriptional activity means that this cell has to produce more proteins as compared to other normal cells which do not have much ribosomes. It is a specialized cell which is meant to produce more and more proteins for a specialized function.

The two main components of plant fertilizers which affect algal growth when they are delivered to aquatic systems via runoff are nitrate and .

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Nitrogen and phosphorous are the most prevalent aquatic pollution and contribute heavily to the excessive growth of algae in aquatic environments called algae blooms. The nitrogen from the fertilizers is found in molecules called nitrates which are compounds of both oxygen and nitrogen. Phosphorous helps algae to absorb carbon dioxide. So when the phosphorous levels are high the algae absorbs more carbon dioxide, which allows for faster photosynthesis and faster glucose production which leads to faster growth. Although algae need both nitrogen and phosphorous to grow, when the levels are too high the algae grows faster than the ecosystem can sustain leading to oxygen deprivation for the other aquatic organisms.

The red blood cell liposomes are more hypertonic relative to water than the frog egg liposomes.
The red blood cell liposomes are more hypertonic relative to water than the frog egg liposomes.
True, because they contain more ion channels which provide higher concentrations of ions.
True, because the concentrations of Na and Ca ions in red blood cells liposomes are higher than those of the frog egg liposomes.
False, because the interior solution in both sets of liposomes is the same.
False, because the concentrations of Na and Cl ions in red blood cells liposomes are lower than those of the frog egg liposomes.

Answers

The correct option is this: FALSE, BECAUSE THE INTERIOR SOLUTION IN BOTH SET OF LIPOSOMES IS THE SAME.
Liposomes are fluid filled sacs found in the cells, they are made up of bilayer cell wall just like phopholipids. The bilayer cell wall prevent water from flowing out of the liposome. The contents of the liposome for living organisms are the same.
Final answer:

The hypertonicity of red blood cell liposomes and frog egg liposomes would depend on the respective concentrations of solutes, notably ions, within each. Carrying out measurements of these concentrations is crucial for a definitive comparison. Ion channels do not directly influence hypertonicity.

Explanation:

Whether the red blood cell liposomes are more hypertonic relative to water than the frog egg liposomes depends on a few factors. To determine this, we would need to measure the concentrations of various ions in both types of liposomes.

In general, a solution is considered hypertonic if it has a higher concentration of solutes. Therefore, if the concentration of ions, particularly Na and Ca ions, in the red blood cell liposomes, is higher than the frog egg liposomes, then they would be more hypertonic. However, without specific concentrations, we cannot definitively say one is more hypertonic than the other.

It's also important to note that the presence of ion channels doesn't necessarily make a solution more hypertonic, as the hypertonicity is influenced by the concentration of solutes within the solution, not the pathways for solute movement.

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Which dna sequences are complementary to 5’ catggacta 3’?

Answers

GTACCTGAT

A (apple) goes with T (tree)
C (car) goes with G (garage

What are the abbreviations for a teragram, a nanosecond, and a kiloliter, respectively? enter the abbreviations, separated by commas?

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The abbreviations for a tetragram, a nanosecond and a kiloliter are as follows:
Tg ,ns and kl.
Nanosecond is *10-9.
One teragram is ten raised to the power of 9 and one kiloliter is equivalent to one thousand liters.

The abbreviations for a teragram, a nanosecond, and a kiloliter, respectively, are Tg, ns, and kL.

One trillion grammes are equal to one teragram (Tg), a unit of mass. Large amounts of mass are frequently measured using it in geological and environmental situations.

A nanosecond (ns), which is one billionth of a second, is a measure of time. It is frequently used to quantify extremely brief durations in scientific and technological domains, such as high-speed computing or electronic transmission.

One thousand litres of volume are equivalent to one kiloliter (kL). In situations when litres might not be a useful unit of measurement, such as in industrial or agricultural settings, it is used to measure bigger amounts.

Thus, Teragram, nanosecond, and kiloliter are all denoted by the acronyms Tg, ns, and kL, respectively.

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The red blood cell liposomes contain more aquaporins than the frog egg liposomes true or false

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the correct answer is true
True bc aquaporins allow for an increased rate of water transport

While examining a specimen under the microscope, Janet discovers a structure that has some genetic material that has RNA but not DNA. What is the specimen?

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Answer:

The correct answer will be virus.

Explanation:

The virus is the infectious agents which cannot replicate themselves. these viruses contain a protein capsid surrounding the genetic material.

The genetic material in the virus could be DNA or RNA but do not have both as single-stranded or double-stranded forms.  

A virus with RNA are common in nature and an only a limited amount of RNA or DNA can fit a capsid and the capsid along with genetic material is known as the nucleocapsid.  

Since the specimens show RNA but not DNA it is a virus-like Ebola, polio, measles, therefore, the specimen is virus and is the correct answer.

Answer:

Janet is watching an RNA virus.

Explanation:

Viruses are microorganisms classified according to their DNA or RNA nucleic acids. They are formed by a protein capsule, the capsids and, inside this, there is only DNA or RNA. Accordingly, we can say that Janet is observing an RNA virus under the microscope.

Some viruses are called enveloped because they have the capsid formed by a lipid membrane resulting from the invaded cell plasma membrane.  The capsule is also responsible for the specificity of the virus to adhere to certain cells, this is only possible because they have membrane proteins (receptors) that can fit into their proteins.

What shape of fiber is wool?

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Fibre crimp affects wool's properties. The crimp in wool fibers makes it soft and springy to touch. It also adds bulk and traps a large volume of air between the fibers, giving it good insulation properties. Finer fibers with more crimp such as Merino create fabrics that drape better than coarser fibers.

Answer:

The wool fiber is cylindrical in shape, resembling a flat tube.

Explanation:

The natural hair coat of sheep commonly called sheep, sheep, lambs or lambs is called wool. The wool hairs grow from the epidermis of the animal and are more or less short, thin and wavy. These are the characteristics that will define the quality of the wool type.

The shape of the wool fiber is more or less cylindrical, resembling a flat tube. Each fiber consists of a point, a shaft and a root. The tip only exists in first shearing fibers. The root consists of a bulb that is softer than the stem and where the cells are developing.

Daily rhythms of sleep and wakefulness are regulated by the _____, which is found in the _____.

Answers

These rhythms are monitored by the suprachiasmatic nucleus, which is in the hypothalamus. This small section of the brain receives retinal cues about the world and translates it into information that is transmitted to the rest of the hypothalamus and the pituitary gland, where hormones are released that control sleep and wakefulness.

please choose the answer that describes the the scientific notation rotation for 5,098,000

Answers

5098000=5.089 times 10^6=[tex]5.089*10^6[/tex]

the answer is [tex]5.089*10^6[/tex]

Answer:

5.098 *10^6

Explanation:

What organelle must temporarily break apart so that the dna can divide up?

Answers

The organelle that must temporarily break apart to allow DNA division (replication) to occur is the nuclear envelope. The nuclear envelope is a double membrane structure that surrounds the nucleus of eukaryotic cells.

The nuclear envelope is a double membrane structure that surrounds the nucleus of eukaryotic cells. It separates the cell's genetic material (DNA) from the cytoplasm, where most of the cell's activities take place. During DNA replication and cell division (such as mitosis and meiosis), the nuclear envelope needs to be disassembled to allow the DNA to be accessed and replicated. In preparation for cell division, the nuclear envelope disassembles to allow the DNA to be replicated and divided into daughter cells.

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Final answer:

During prophase, the nuclear envelope dissociates into small vesicles and organelles like the Golgi complex and endoplasmic reticulum fragment and disperses toward the periphery of the cell. This process enables the division of DNA.

Explanation:

During prophase, the nuclear envelope starts to dissociate into small vesicles, and the membranous organelles (such as the Golgi complex or Golgi apparatus, and endoplasmic reticulum), fragment and disperse toward the periphery of the cell. The nucleolus disappears (disperses). The centrosomes begin to move to opposite poles of the cell. Microtubules that will form the mitotic spindle extend between the centrosomes, pushing them farther apart as the microtubule fibers lengthen. The sister chromatids begin to coil more tightly with the aid of condensin proteins and become visible under a light microscope.

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Which of the following has mechanical energy?

A. Battery
B. Burger bun
C. Stretched band
D. Visible light

Answers

Answer:

C. Streched band

Explanation:

When a spring is coiled up or a rubber band is stretched, mechanical energy is stored in it. When the spring uncoils or the rubber band snaps back, this energy is released. This stored mechanical energy is called potential energy because it has the potential to make things happen.

Sorry that this is so late

Answer:

stretched band

Explanation:

Hope this helped!

:D

What might happen to the food web below if the number of phytoplankton drastically decreased

Answers

The entire food web would be affected.

D.

The entire food web, wood be, in fact, affected. You can follow the role path for the phytoplankton to see everything being affected.

Hope I helped

How does a plant provides a habitat to a field mouse

Answers

A mouse will eat the plant

At which site on the ribosome does the transfer rna dock initially during elongation?

Answers

tRNA docks on the A site before being transferred to the polypeptide in elongation. One mnemonic to remember this is E (exit) site, P (polypeptide) site, and A (acceptor) site to remember the sites in a ribosome.
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