Why are warrants not needed for investigators who are analyzing crime scenes involving fire?

Answers

Answer 1

Answer:  warrants are not required for fire scenes because the evidence at fire scene needs to be collected as soon as possible because it is important to determine where a fire started and why in order to prevent the fire from starting again

Explanation: hope this helped


Related Questions

How does a habitad differ from an ecosystem

Answers

Answer:

An ecosystem consists of a community of organisms together with their physical environment.Ecosystems can be of different sizes and can be marine, aquatic, or terrestrial. Broad categories of terrestrial ecosystems are called biomes.In ecosystems, both matter and energy are conserved. Energy flows through the system—usually from light to heat—while matter is recycled.Ecosystems with higher biodiversity tend to be more stable with greater resistance and resilience in the face of disturbances, or disruptive events.

Habitats

Habitat is the place where an organism resides. Habitat is of different types such as terrestrial habitat, marine habitat, Estuarine habitat, freshwater habitat.

which tool is used to calculate interference between two mating components

Answers

The tool used to calculate interference between two mating components is called a tolerance analysis tool.

In engineering and manufacturing, it is essential to ensure that mating components fit together properly. Interference refers to the undesirable overlap or clashes between two mating parts. To calculate the interference and ensure proper fit, engineers utilize tolerance analysis tools.

Tolerance analysis tools are software applications specifically designed to analyze the dimensional and geometric variations of components within a system. These tools take into account the specified tolerances for each component and simulate the assembly process to evaluate potential interference issues.

The tool allows engineers to input the dimensional data and tolerances of the mating components. It then performs calculations and simulations to determine if there is any interference or excessive clearance between the parts. By considering the tolerance stack-up, which accounts for cumulative variations in dimensions, the tool helps identify potential problem areas and enables engineers to make informed decisions regarding adjustments or modifications to ensure proper fit and functionality.

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Which event must occur before nucleotides can be added to a new DNA strand during DNA replication?

A .Hydrogen bonds must form between nitrogenous bases.
B .A strand of mRNA must be built from the template strand.
C .RNA primers must be added to the template strands.
D .An enzyme must check the template strand for errors.

Answers

Answer: C. RNA primers must be added to the template strands

Explanation:

none

EXPLAIN WHERE THE SEQUENCE OF AMINO ACIDS IN
A PROTEIN COMES FROM AND WHY IT'S IMPORTANT

Answers

Answer:

amino acids are the monomer of proteins and proteins do almost everything in the body ( think enzymes ).

Which type of wave is most affected by gravity from the Sun and the moon?

Answers

Answer:

Tidal wave

Explanation:

which of the following would make the best immunogen? group of answer choices a 10,000 da protein made up of identical amino acid types a 100,000 da protein made up of identical amino acid types a 10,000 da protein made up of multiple amino acid types a polysaccharide from a phylogenetically distant species a 100,000 da protein made up of multiple amino acid types

Answers

Option C, out of the available options, is what I believe to be the right response. "Proteins are built of amino acids," is a statement about macromolecules that is true.

Proteins are built on amino acids. Peptide linkages connect these amino acids. The cytoplasm of a cell contains RNA, also known as ribonucleic acid, which is created in the nucleus. It is a single-stranded, shorter molecule. It is made up of phosphodiester links that connect one or more nucleotides. The pentose sugar ribose, four nitrogenous bases (A, U, C, and G), and a phosphate group are all present in the ribonucleotide of RNA. RNA has a variety of functions in cells, but it is primarily responsible for the regulation of the translation process, also known as protein synthesis.

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How did the drought most likely affect populations of grasshoppers living in the grassland ecosystems? Choose the correct answer.

A. The insects adapted to eat other available foods instead of grass.

B. Populations increased because other insects were eliminated from the environment. C. Populations decreased because the resources the grasshoppers needed were not available.

D. Populations of grasshoppers were not affected because the size of a population cannot change over time.
I need help

Answers

Answer:c

Explanation:

In what ways does pollination mirror s exual reproduction in animals? How is it different from reproduction in animals?

Answers

Answer:

They are similar yet different because

Explanation:

the male reproductive organ has to send male reproductive cells to the female reproductive organ and fertilise the female reproductive cell

but in animal they are two different organisms yet the same spicie but in flower it can be the same flower

In which phase are these cancer cells stuck mitosis or interphase? Explain how u know by referring to what happens in each phase. ​

Answers

During interphase, cells grow, replicate their DNA, and prepare for cell division. During mitosis, the replicated DNA is divided into two identical sets, and the cell divides into two daughter cells.

Cancer cells can have defects in their DNA replication and cell division processes, which can cause them to divide uncontrollably and form tumors. However, the specific phase of the cell cycle in which cancer cells get stuck can vary depending on the type and stage of cancer.

In some cases, cancer cells may progress through the cell cycle faster than normal cells and get stuck in the mitotic phase, while in other cases, they may have defects in the G1 or G2 phases of interphase.

Therefore, In interphase cancer cells stuck mitosis or interphase.

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Based on your data what can you infer about the length of time spent in each stage of the cell cycle

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Once the cell is ready to multiply, it takes around 24 hours. Of course, you don't create 37 trillion new cells every morning. In reality, properly differentiated cells, such as neurons, frequently remain in G0 and never divide. You really don't want to hurt any of these.

Here is the breakdown by phase (post-G0):

G1 ~ 10 hours | S ~ 5–6 hours | G2 ~ 3–4 hours | M ~ 2 hours

Notice that the the actual process of division is far shorter than interphase. This makes sense since in principle, it generally takes more time to grow than divide.

The three main gases that trap heat in earth's atmosphere are

Answers

Answer:

ozone oxygen nitrogen are the answers

What is the major difference between a bar graph and a line graph

Answers

Line graphs are used to display data or information that changes continuously over time. Line graphs allow us to see overall trends such as an increase or decrease in data over time. Bar graphs are used to compare facts. The bars provide a visual display for comparing quantities in different categories or groups.
line graphs display information that changes continuously, bar graphs display comparisons to different quantities!

Which statement correctly defines coevolution?A. two new species that differ from each other and their common ancestor in a particular traitB. two entirely unrelated species that end up with a similar trait as they adapt to similar conditionsC. two closely related species that evolve the same trait separately from each otherD. two entirely different species affecting each other’s evolution, as in predator-prey relationships

Answers

The statement that correctly defines coevolution is:

D: Two entirely different species affecting each other's evolution, as in predator-prey relationships.

Another example of coevolution is host-parasite relationship, which happens between totally separated species, but affects the way both of them will evolve.

A blank is anything that has all characteristics of life

Answers

Answer: organism

Explanation:

      If something has all characteristics of life, it is known as an organism.

      Some examples of characteristics of life are the ability to reproduce, grow, homeostasis, respond to their environment, the ability to adapt to things around them, etc.

If you have answer options, and organism is not one of them, please let us know. Thank you.

can you help me with this question?

Which kind of virus begins multiplying last? How soon after infection does this happen?

Answers

Answer:

Multiplication - Medical Microbiology - NCBI Bookshelfwww.ncbi.nlm.nih.gov › books › NBK8181

First, the ability of a virus to multiply and the fate of an infected cell hinge on the ... In a few instances (papovaviruses), viral proteins merely assist host enzymes to ... In all instances, it is the viral proteins which package the genome into virions ... First, shortly after infection and for up to several hours thereafter,

Explanation:

what is meant by polycistronic mrna? give an example.

Answers

Polycistronic mRNA allows for coordinated expression of genes involved in the same pathway and an example is with the lac operon in E. coli.

What is Polycistronic mRNA?

Polycistronic mRNA refers to a type of messenger RNA molecule that contains multiple protein-coding regions called cistrons or open reading frames.

In other words, it carries the genetic information for the synthesis of multiple proteins within a single RNA molecule.

Each protein-coding region within the polycistronic mRNA is usually preceded by a specific ribosome binding site (RBS) and is typically followed by a termination codon to mark the end of that coding sequence.

One classic example of a polycistronic mRNA is the lac operon in Escherichia coli (E. coli) bacteria.

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slow oxidative muscle fibers are best suited for . slow oxidative muscle fibers are best suited for . hitting a baseball running a marathon running a 100-yard dash lifting heavy weights at the gym

Answers

Slow oxidative muscle fibers are best suited for running a marathon. Option C.

The ability of slowly oxidizing fibers to function for extended periods of time without fatigue helps maintain posture generate isometric contractions, and stabilize bones and joints. Slow-oxidizing fibers are ideal for long-term energy expenditure and repetitive muscle contractions. These fibers are ideal for long-distance runners such as cross-country athletes.

It has many mitochondria and its main energy source is aerobic metabolism. It is the most fatigue-resistant and efficient fiber type. Slow-oxidizing fibers contract relatively slowly and use aerobic respiration oxygen and glucose to generate ATP. Fast oxidation fibers contract faster and primarily use aerobic respiration, but can switch to anaerobic respiration glycolysis and thus tire faster than SO fibers.

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Please help !!! (Will mark as brainlist) (Punnett Problems) fill in the blanks

Please help !!! (Will mark as brainlist) (Punnett Problems) fill in the blanks

Answers

Explanation:

cross: FF X Ff

off spring look like: FF,Ff

All of the genotype will be: FF,Ff,FF,Ff

How do you think caffeine will affect the heart rate of humans

Answers

Answer:

Caffeine stimulates the heart's contractions via acting on enzymes in the heart. Caffeine can help natural hormones operate on the heart to release norepinephrine, which has a stimulating impact comparable to adrenaline.

What environmental input is necessary for the Calvin cycle reactions?

Answers

The environmental input that is necessary for the Calvin cycle reactions is carbon dioxide (CO₂). It is captured and utilized by the enzyme Rubisco to convert carbon dioxide into glucose during the process of photosynthesis.

The Calvin Cycle, also referred to as the dark reaction, C3 cycle, or carbon fixation, is a sequence of enzyme-assisted reactions that occur in the stroma of chloroplasts in photosynthetic organisms. The Calvin cycle is responsible for transforming carbon dioxide (CO₂) into a high-energy molecule, which is used to produce glucose. This procedure occurs in three stages: carbon fixation, reduction, and regeneration. Environmental input for Calvin CycleIn the Calvin cycle, carbon dioxide is required as an environmental input.

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Drug with similar effect to longmasterol?

Answers

No drugs mimic longmasterol's effects, but NSAIDs and chemotherapy drugs have similar effects on inflammation and cancer cells.

Longmasterol is a sterol compound that is found in plants and has been related with different medical advantages, including calming and hostile to disease impacts. There are no medications accessible that are explicitly intended to imitate the impacts of longmasterol. Notwithstanding, there are drugs that comparatively affect irritation and disease cells. For instance, non-steroidal calming drugs (NSAIDs, for example, headache medicine and ibuprofen can assist with diminishing irritation, while chemotherapy medications, for example, paclitaxel and doxorubicin are utilized to kill malignant growth cells. It is essential to take note of that the impacts of these medications can contrast fundamentally from the impacts of longmasterol, and their utilization ought to constantly be examined with a medical services supplier.

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Describe how ATP is produced in the light reactions.

Answers

Answer:

Explanation:

Two reactions take place that produce raw materials for the dark stage:  

Light energy splits the water molecules into hydrogen and oxygenThis process is called photolysis  

The hydrogen is taken up by a hydrogen acceptor called Nicotinamide adenine dinucleotide phosphate (NADP) while oxygen is released as a by-product  .

2 H₂O(l) --------->light energy -------> 4 H + O₂ (photolysis

)

Light energy strikes the chlorophyll molecules and sets in motion a series of reactions resulting in the production of a high energy molecule called Adenosine Triphosphate (ATP)

Hope this helps.

The process of how ATP is produced in the light reactions is explained below.

The light-dependent reaction often absorb energy through the help of sunlight and then it is is stored by two types of energy-carrier molecules which are ATP and NADPH.

The energy gotten by the hydrogen ion stream gives room for ATP synthase to attach a third phosphate to ADP. Through this attachment, a molecule of ATP is formed in a process called photophosphorylation.

Light absorbed during this reaction and the energy, is used to drive electrons from water to generate NADPH and to drive protons across a membrane.

These protons that are driven often return through ATP synthase to make ATP.

Cellular respiration also produce ATP and water, that is used in different chemical reactions in the plant cell.

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what comprises the outer layer of a synovial joint capsule?

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The outer layer of a synovial joint capsule is composed of dense irregular connective tissue, which is also known as the fibrous capsule.

What is a synovial joint capsule?

A synovial joint capsule is a fibrous, double-layered sac that encloses and protects a synovial joint. Synovial joints are the most common type of joint in the body and include joints like the knee, elbow, and shoulder. These joints are characterized by the presence of a synovial cavity, which contains synovial fluid, and allows for smooth movement between the articulating bones.

The synovial joint capsule is composed of two layers: an outer fibrous layer and an inner synovial membrane. The fibrous layer is made up of dense connective tissue and provides mechanical support and protection for the joint.

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dna technology is especially useful in detecting and treating human diseases that are

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DNA technology is especially useful in detecting and treating human diseases that are genetic in nature.

What is DNA technology?

DNA technology is a set of techniques used to study and manipulate DNA, the genetic material found in all living organisms. DNA technology has enabled the detection and treatment of human diseases that are genetic in nature.

How is DNA technology useful in detecting human diseases?

Genetic diseases can be caused by changes in DNA sequences or mutations in a single gene. DNA technology can detect these mutations through genetic testing and gene sequencing.

For instance, diseases like cystic fibrosis and sickle cell anemia can be detected using DNA technology.

How is DNA technology useful in treating human diseases?

DNA technology can also be used to treat genetic diseases. One way this is done is through gene therapy. Gene therapy is a process of replacing, modifying, or supplementing the non-functioning gene with a functional one.

By using gene therapy, the root cause of the genetic disease is addressed rather than just treating the symptoms.

Summary, DNA technology is especially useful in detecting and treating human diseases that are genetic in nature. DNA technology is used to detect mutations in genes that cause genetic diseases. Gene therapy is a technique used to treat genetic diseases by replacing, modifying, or supplementing non-functioning genes with functional ones.

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8.
Describe your knowledge of nanomaterials synthesis methods.

Answers

Nanomaterials are synthesized using different techniques that include physical, chemical, and biological methods. The type of method chosen depends on the application, morphology, and structure of the nanomaterial that is required.

Physical methods used in the synthesis of nanomaterials include laser ablation, high-energy ball milling, electron beam lithography, and thermal evaporation.

Chemical methods involve the reduction of precursors to form nanomaterials. Chemical reduction methods used include sol-gel, hydrothermal synthesis, co-precipitation, and solvothermal synthesis.

Biological methods involve the use of biological organisms such as bacteria, yeast, or fungi to produce nanomaterials. The synthesis of nanomaterials using biological organisms is referred to as green synthesis. The advantage of green synthesis is that it is cost-effective and environmentally friendly.

Nanomaterials synthesis is important in the development of new products and technologies in different fields, including energy, medicine, and electronics. It is also used in the production of catalysts, sensors, and biomedical applications.

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which of the following statements best captures the main point of paragraph 4? a cell is the smallest unit that is truly alive. all cells are surrounded by a cell membrane. cytoplasm is gell-like material that fills all cell. plant cells have cell walls

Answers

Answer:

all cells are surrounded by a cell membrane

B because it’s right and it is what it is

Select the correct answer.
We use electrical devices that produce motion, light, and sound. Which aspect of energy explains why these devices are possible?

Answers

Answer:

electricity its energy and force

Which joint is a good representation of amphiarthroses? The joint connecting:

your wrist to your fingers.

your tibia to your fibula (shinbone and lower leg bone).

your cranium to your spine.

your masticular (jaw) bone to your skull.

Answers

Answer:

I think the "your masticular (jaw) bone to your skull."

Explanation:

"Examples include the fibrous joints of the skull sutures and the cartilaginous epiphyseal plate. A joint that allows for limited movement is amphiarthrosis. An example is the pubic symphysis of the pelvis, the cartilaginous joint that strongly unites the right and left hip bones of the pelvis."

Put simply, an amphiarthroses joint is a joint with more limited movement.

your wrist to your fingers - very movable

your cranium to your spine. - pretty moveable

So that is why I think it is your masticular (jaw) bone to your skull! Hopefully this is correct and helps, have a nice day! :D

What feature of the small intestine greatly expands its surface area, facilitating absorption?.

Answers

Answer:

Explanation:

There are an estimated 200 million microvilli per square millimeter of small intestine, greatly expanding the surface area of the plasma membrane and thus greatly enhancing absorption.

Answer:

There are an estimated 200 million microvilli per square millimeter of small intestine, greatly expanding the surface area of the plasma membrane and thus greatly enhancing absorption.

Explanation:

Which procedure will determine if water temperature affects the weathering of sedimentary rocks?

Answers

Answer:

Sedimentary.

Explanation:

Sedimentary will determine if water temperature affects the weathering of sedimentary rocks.

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