In addition to prototyping, Powder Bed Fusion (PBF) AM processes have lately been more widely used to manufacture end-use parts. These changes lead to necessity of higher requirements to quality of a final product. Optimization of process parameters is one of the ways to achieve desired quality of a part.
In addition to prototyping, Powder Bed Fusion (PBF) AM processes have lately been more widely used to manufacture end-use parts. These changes lead to necessity of higher requirements to quality of a final product.
Optimization of process parameters is one of the ways to achieve desired quality of a part. Finite Element Method (FEM) and machine learning techniques are applied to evaluate and optimize AM process parameters. While FEM requires specific information, Powder Bed Fusion Machine Learning is based on big amounts of data. This paper provides a conceptual framework on combination of mathematical modelling and Machine Learning to avoid these issues.
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Answer:
the gift shop must recognize 31 days of accrued interest payable, total interest = principal x interest rate x time passed
= $50,000 x 12% x 31/365 days = $509.59
the adjusting entry should be:
December 31, accrued interest on note payable
Dr Interest expense 509.59
Cr Interest payable 509.59
Answer:
All of the above would use process costing.
Explanation:
Process costing can be defined as a method of assigning manufacturing costs whereby the cost of each unit produced is assumed to be the same cost for every unit.
Process costing is most commonly applied when goods are produced in large numbers and when the costs linked to individual units cannot be easily differentiated from each other.
Under process costing, costs rise over a fixed period of time, and are then assigned to all the units produced throughout that period.
Answer:
I think it is Automated teller machine
Answer:Return on Equity= 37.1%
Explanation:
According to the DuPont Analysis System,
Return on Equity = Leverage Ratio x Net profit margin x Total asset turnover
Return on Equity = 2.8 x 5.3% x 2.5
Return on Equity=0.371
Return on Equity= 37.1%