Answer: it is evolution
Explanation:
Tephroite ( a type of mineral ) important uses
( another uses than making jewerly and genstone )
(it'd might say Biology, but this is geology and there no such thing as geology when putting in school level and subject)
The minerals of the olivine group such as tephroite are used for a umber of different purposes such as in the conditioners, for the making of jewellery.
What are the uses of Tephroite?Tephroite is the manganese end-member mineral of the olivine group of the nesosilicate minerals. The formula of Tephroite is Mn₂SiO₄. It is a solid solution series which exists between the tephroite and its analogue mineral substances, such as the group endmembers fayalite and forsterite. Divalent iron or magnesium atom may readily replace the manganese atom present in the olivine crystal structure of the tephroite because of their higher reactivity than manganese atom.
Most of the olivine group minerals are used in the metallurgical processes in the blast furnace. The high-magnesium olivine that is forsterite is added to the blast furnaces to remove impurities from steel and to form aconditioner. Olivine group minerals also have been used as a refractory material. These minerals are used to make refractory brick and are also used as a casting sand.
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although a deletion heterozygote carries one normal chromosome, it may still exhibit a mutant phenotype if the deletion removes a gene that is
In diploid organisms, loss of heterozygosity (LOH), a type of genetic anomaly, refers to the loss of one copy of a complete gene and the surrounding chromosomal area.
One copy of the missing gene is still there since diploid cells contain two copies of each of their genes, one from each parent.In diploid organisms, loss of heterozygosity (LOH), a type of genetic anomaly, refers to the loss of one copy of a complete gene and the surrounding chromosomal area. One copy of the missing gene is still there since diploid cells contain two copies of each of their genes, one from each parent.However, there is no longer any heterozygosity, which refers to minute variations in the gene versions acquired from each parent.
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The examples of Washoe and Binta Jua show that animals:
a. may be able to apply rules and standards to situations
b. may have some capacity for moral behavior
c. have some sense of duty
d. can cultivate the full range of virtues
The examples of Washoe and Binta Jua show that animals may have some capacity for moral behavior.
The true choice is B.
Washoe, a female chimpanzee was the first animal to learn to communicate using American sign language, as part of animal studies to determine their ability to learn the language.
Binta Jua is a gorilla who has caught the world's attention by saving a boy's life. A child is known to have fallen more than 20 meters into the gorilla's habitat at the Brookfield Zoo in Chicago, Illinois. When she learned about this incident, Binta Jua immediately ran to save the child and lifted her with her strong arms. He then carried her to a safe place and held the child like his own.
The examples of the two animals can be categorized as moral behavior. Binta Jua had managed to save a child and Washoe had the animal's mental level to learn the language.
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If you are watching a bird fly from one tree to another, the _____ is responsible for tracking that object.
red nucleus
thalamus
suprachiasmatic nucleus
superior colliculus
hypothalamus
The correct option is A; Red nucleus , If you are watching a bird fly from one tree to another, the Red nucleus is responsible for tracking that object.
Anatomists have long debated the anatomical nature and content of the red nucleus. This midbrain region is vital for movement, and numerous theories propose that it changed drastically with the evolution of bipedalism.
Because there is still considerable disagreement in the scientific community about this structure, this article will concentrate exclusively on the anatomical and functional properties that have been agreed upon within the arena.
The efferent and afferent pathways, gross anatomy, and clinical points associated with the nucleus will be highlighted in particular.
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read each description below and determine whether or not it describes a function or property of cerebrospinal fluid. then, click and drag each box into the appropriate category below based on whether it is a true or false statement about cerebrospinal fluid (csf).
Produces antibodies in response to antigen exposure in the brain tissue provides the brain with oxygen (Dura Mater, which is Latin for "Hard Mother").
True characteristics or functions of CSF include preventing concussions, influencing the flow of CSF, significantly reducing brain weight, and maintaining the concentration of glycine around the brain. CSF is produced by the choroid plexus. Found in the ventricles of the heart and brain (true property: Found in the ventricles of brain and Spinal cord).Protects brain tissue from blood toxins and the glucose levels in the CSF are higher than those in the plasma.CSF is created by the choriod plexus and reabsorbed into the blood of the venus sinus. The fluid that fills and shields cavities in the brain and spinal cord is called CSF, and it is the clear, colourless substance that is created in the ventricle of the brain. CSF participates in circulation, provides chemical and mechanical protection, and offers both.To know more about brain check the below link:
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Carbon forms the basis of all the following except _____.
Choose one:
-fats
-nucleic acids
-sugar
-metals
Which of the following most likely would be an immediate result of growth factor binding to its receptor?
a. protein kinase activity
b. adenylyl cyclase activity
c. GTPase activity
d. protein phosphatase activity
e. phosphorylase activity
Protein kinase activity would be an immediate result of growth factor binding to its receptor.
Thus, the correct answer is A.
What is the growth factor?Growth fаctors аre smаll extrаcellulаr ligаnds thаt trаnsmit signаls between cells аnd their environment. They cаn control cell function by binding to trаnsmembrаne receptors, аctivаting а myriаd of different intrаcellulаr signаling pаthwаys. Growth fаctors commonly bind to the receptor tyrosine kinаse fаmily of trаnsmembrаne receptors (RTKs).
RTKs hаve аn extrаcellulаr domаin thаt binds to ligаnd, а trаnsmembrаne domаin, аnd аn intrаcellulаr domаin thаt hаs tyrosine kinаse аctivity. Once bound to ligаnd, the RTKs dimerize, аnd trаnsphosphorylаte on tyrosine residues. This usuаlly leаds to the binding of аdаpter proteins to the phospho-tyrosine residues, leаding in turn to а cаscаde of events within the cell.
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