Answer: Nucleotide; Adenine
Explanation: RNA Nucleotide contains bases of Thymine, Cytosine, Guanine and Uracil. The Uracil base in RNA, substitute the base Thymine in the DNA base and bonds with Adenine like as seen in DNA base pairing.
Thus, during DNA duplication, the thymine at the top of the template strand of DNA is replaced with Uracil and binds with Adenine.
It is significant since it enables you to decide on the material best cost, construction, lifespan, and design.
Studying the properties of materials is essential when designing new products because it ensures that the materials used meet the necessary requirements for the product's intended function and performance. The properties of materials determine how they behave in different environment , and therefore understanding these properties is crucial to create safe, effective, and reliable products.
For example, if a product requires a material that is strong and durable, the designer needs to know the mechanical properties of different materials, such as tensile strength, compressive strength, and impact resistance, to choose the right material that can withstand the expected loads and stresses. If a product is expected to operate under different temperatures or environments, then the designer must know the thermal and chemical properties of different materials to select the most suitable one.
Moreover, different materials have different manufacturing requirements, and understanding their properties can help designers choose the most appropriate manufacturing processes and techniques for their products. For instance, the properties of materials, such as melting point, ductility, and hardness, affect the machining, casting, and forming processes that can be used to manufacture them.
In summary, studying the properties of materials is crucial when designing new products because it helps designers choose the right material, ensure the product's performance and safety, and select the appropriate manufacturing processes. By understanding the properties of materials, designers can make informed decisions that lead to the creation of better, safer, and more functional products
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Studying the properties of materials when designing new products is crucial as it determines the product's performance, durability and safety. Understanding these properties can also lead to cost reductions, more efficient use of resources, and enhanced sustainability.
When designing new products, studying the properties of materials is crucial for several reasons. The performance, durability, and safety of a final product are directly related to the materials used in its construction.
For example, if a new bridge is being designed, the properties of the steel, concrete, or other materials being used must be thoroughly understood. The steel, for instance, must be strong enough to support the weight of the bridge and its loads, and the concrete must be durable to withstand weather conditions and regular use.
Also, understanding the properties of the materials can lead to cost reductions, more efficient use of resources, and enhanced sustainability. Consequently, it’s incredibly important to analyze these properties to ensure the success of any design project.
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coughing
sneezing
insect bites
contaminated water
direct contact
Answer:
Explanation:
all of them
(b) Electrical-->Chemical-->Chemical
(c) Chemical-->Electrical-->Chemical
(d) Electrical-->Chemical-->Electrical
Answer:
(d) Electrical-->Chemical-->Electrical
Explanation:
A nerve impulse is the transmission of an electrical change along the neuron's membrane from the point at which it is stimulated (synapse). The normal direction of impulse in the body is from the cell body to the axon. This nerve impulse, or action potential, is a sudden and rapid change in the transmembrane potential difference.
Normally, the membrane of the neuron is polarized at rest, which means that the ionic constitution of the medium internal to the membrane is different from the external medium, which generates different electrical charges in one medium and the other, so this difference, ie , the potential during rest is negative (-70 mV). The action potential thus consists of a rapid reduction of membrane negativity to 0mV and inversion of this potential to about + 30mV, followed by a rapid return to values slightly more negative than the resting potential of -70mV.
Nervous impulse or action potential, therefore, is a phenomenon of an electrochemical nature and occurs due to changes in the permeability of the neuron membrane. These permeability modifications allow ions to pass across the membrane. Since ions are electrically charged particles, changes also occur in the electric field generated by these charges.
Thus, we can say that the correct answer to this question is: Electrical -> Chemistry -> Electrical
Answer:d
Explanation:
Answer:
Nitrogen-fixing bacteria, microorganisms capable of transforming atmospheric nitrogen into fixed nitrogen (inorganic compounds usable by plants). More than 90 percent of all nitrogen fixation is effected by these organisms, which thus play an important role in the nitrogen cycle.
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Answer:
it lives in the ground and eats the nutrients in the soil
Explanation:
Answer:
Fraud Detection
Intrusion Detection
Medicine
Ecosystem Disturbances
Explanation:
Anomalies are items or actions that do not conform to expected pattern. They are also referred to as outliers on data sets that do not exhibit the characteristics of the population under consideration.
Anomalies can be caused by natural variation, data errors, data from different classes.
Examples of anomalies are:
Fraud Detection
Intrusion Detection
Medicine such as influenza outbreaks
Ecosystem Disturbances such as flood and drought