Answer:
See explanation
Explanation:
The process in which Haemoglobin works depends by the environmental conditions of blood, especially with the partial pressures of O₂ and CO₂ related with the concentration of these compounds. When blood enters in the lungs, the haemoglobin get oxygenated because there is a high concentration of O₂ (meaning that the partial pressure of oxygen is high), liberating CO₂ that will be exhaled. The haemoglobin saturated with oxygen is known as oxyhaemoglobin
When blood flows in the body, found in the tissues higher concentrations of CO₂ which is more efficiently united with the haemoglobin, liberating the oxygen in the tissues for cell respiration, the haemoglobin them has form a reaction with the CO₂ which will travel back to the lungs and the cycle will begin again.
The three ways in which CO₂ travel are: Diluted in the plasma, as bicarbonate and combined with proteins (Haemoglobin) as a carbamine compound.
The CO₂ diluted in plasma, is due to the great capacity of dilution of the CO₂ which could be almost 20 times higher than O₂ capacity of dilution.
Bicarbonate is formed in the red blood cell when CO₂ and the enzyme name carbonic anhydrase reacts with water, forming a carbonic acid, when the concentration of these ions is elevated the carbonic acid becomes bicarbonate liberating a H₊ wich is united in the haemoglobin.
Carbamine compound form in the proteins families of the globines, being the most important the reaction in the haemoglobin.
With anosognosia, we need to remind him to turn his head to check the diminished visual field. to provide for the client's needs notwithstanding this lack
What causes loss of the visual field?
Glaucoma, vascular disease, tumors, retinal illness, genetic disease, optic neuritis and other inflammatory processes, nutritional deficiencies, toxins, and medicines are just a few of the many conditions that can result in visual field abnormalities. Some visual field loss patterns can be used to identify a potential underlying cause.
What's the visual field normally?
An island of vision that is 90 degrees temporally to the center of fixation, 50 degrees superiorly and nasally, and 60 degrees inferiorly makes up a normal visual field. Moving from movement discrimination in the extreme periphery to better than 20/20 in the center of vision, visual acuity improves.
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Answer:
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Answer:
graph the function defined by the formula g(x) = f(x)+2. Let's take a minute to remind ourselves of what g is doing. We start with an input x to .