The problem statement is simply asking us to convert units. We convert from units of ft^3 to units of m^3. To do this, we need a conversion factor. For this case, we use 1 m is equal to 3.28084 ft. We do as follows:
5.0 ft^3 ( 1 m / 3.28084 ft )^3 = 0.1416 m^3
The film sensor and the long axis of the tooth must be aligned perpendicular to the central ray of the x-ray beam when using the paralleling approach.
To find the answer, we need to know above the paralleling technique in the dental x-ray.
<h3>What is paralleling technique?</h3>
- The paralleling technique is the most dependable method for capturing periapical x-rays because it produces high-quality images with little distortion.
- The central x-ray beam should be pointed perpendicular to the long axis of the tooth in issue, and the film should be positioned parallel to it.
- The paralleling technique is the most dependable method for capturing periapical x-rays because it produces high-quality images with little distortion.
- The central x-ray beam should be pointed perpendicular to the long axis of the tooth in issue, and the film should be positioned parallel to it.
- When preparing for an x-ray, it is imperative to keep in mind the root anatomy.
- The maxillary occlusal plane of the patient should also be parallel to the ground.
Thus, we can conclude that, the film sensor and the long axis of the tooth must be aligned perpendicular to the central ray of the x-ray beam when using the paralleling approach.
Learn more about paralleling technique here:
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Answer:
1/4 of a pound or 4 ounces
Explanation:
4.00 = 1 pound (= 16 oz)
4.00 / 16 oz = 4
16 /4 = 1/4 or 4 ounces
Matter<span> doesn't </span><span>disappear </span>
<span>The electrons need to migrate from a region of lower electric potential to a region of higher electric potential. This flow of electrons is known as electron current (which is contrary to the widely-accepted perspective of conventional current).</span>