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Answer:
the position of the body I'm pretty sure that's a broad question you asked
Answer:
Explanation: When the cloud lifted from above the tent, Miriam's skin was leprous-it became as white as snow. Aaron turned toward her and saw that she had a defiling skin disease, 11and he said to Moses, "Please, my LORD, I ask you not to hold against us the sin we have so foolishly committed. 12Do not let her be like a stillborn infant coming from its mother's womb with its flesh half eaten away." 13So Moses cried out to the LORD, "Please, God, heal her!" 14The LORD replied to Moses, "If her father had spit in her face, would she not have been in disgrace for seven days? Confine her outside the camp for seven days; after that she can be brought back." 15So Miriam was confined outside the camp for seven days, and the people did not move on till she was brought back.
Answer:
it's violence
Explanation:
because you've 1$ Shaashad in the medial yard and the forearm the contamination
Answer:
The best answer to your question: Which type of neuroglia would play a role in controlling glutamate levels in the chemical environment, would be: Astrocytes.
Explanation:
From among the neuroglia, or support cells in the brain, whose purpose is to aid neurons in their different functions, astrocytes are not just one of the most numerous, but also one of the most vital for neuronal support. Amongst one of their most central functions is to help in the control of neurotransmitter emition and retention in the synaptic cleft, between two communicating neurons, and therefore, helps regulate the responses from post-synaptic, and pre-synaptic neurons. It is also responsible for clearing up the presence of ions in the extracellular space, and producing ATP, which regulates the amount of neurotransmitters that are released, and taken, by pre-synaptic, and post-synaptic neurons.
In ALS (Amyotrophic Lateral Sclerosis) the issue with glutamate, a neurotransmitter that excites post-synaptic neurons into releasing excess amounts of calcium, is that this hyper-excitatory response leads neurons, particularly motor neurons, to die, and this is what causes ALS. It has been found through research that astrocytes have to do in this process, but it is not clear yet whether there is a failure in their control system, as ALS is still a condition that is very much under study and still without a cure.