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A man-hour or human-hour is the amount of work performed by the average worker in one hour. [1] [2] It is used for estimation of the total amount of uninterrupted labor required to perform a task. For example, researching and writing a college paper might require eighty man-hours, while preparing a family banquet from scratch might require ten ...
Calculation: Availability = Time operators are working productively / Time scheduled Example: Two employees (workforce) are scheduled to work 8 hour (480 minutes) shifts. The normal shift includes a scheduled 30 minute break. The employees experience 60 minutes of unscheduled downtime. Scheduled Time = 960 min − 60 min break = 900 Min
Brooks discusses several causes of scheduling failures. The most enduring is his discussion of Brooks's law: Adding manpower to a late software project makes it later. Man-month is a hypothetical unit of work representing the work done by one person in one month; Brooks's law says that the possibility of measuring useful work in man-months is a myth, and is hence the centerpiece of the book.
The Standard Time is the product of three factors: Observed time: The time measured to complete the task. Performance rating factor: The number pace the person is working at. 90% is working slower than normal, 110% is working faster than normal, 100% is normal.
Man-hour rate = man-hours required for work / completed work quantity. Example: Excavation 0.125 mh/cy. The man-hour rate is related to the inverse of the production rate times the number of workers in the crew performing the work. Example: Excavation at 8 cy/day (8-hour day) with 2-man crew = 2 x 8 / 8 = 2 man-hours/cy. See also Production rate.
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This allows employers to adopt a single metric for comparison with the full-time average. For example, a full week of 40 hours has an FTE value of 1.0, so a person working 20 hours would have an FTE value of 0.5. Certain industries may adopt 35 hours, depending on the company, its location and the nature of work.