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In the Netherlands, most institutions grade exams, papers and thesis on a scale from 1 (very poor) to 10 (outstanding).The scale is generally further subdivided with intervals of one decimal place, although the use of halves (e.g., 7.5) and quarters (e.g., 7+ or 7−, rounded to 0.8 or 0.3) is also common.
The 50‰ grade is equivalent to 50 m/km or 5%. Main article: Grade (slope) Gradients (in some countries in Europe ) may be expressed as mm/m or m/km, and written with the per mille symbol.
3.0 median, ±.1 (1L and all classes with more than 50 students); 3.0 median and mean, ±.2 (2L/3L Classes with less than 50 but more than 20 students) [57] Loyola University New Orleans College of Law: 3.017 [58] University of Maine School of Law: 3.00–3.10 for 1L classes; 3.15–3.25 for 2L/3L classes with 16 or more students
The 50‰ grade is equivalent to 50 ... 1 in 10: Steep road 10% warning (Netherlands) 4.0° ... 0‰ 1 in ∞ (infinity) Flat Roads
A ruler with two linear scales: the metric and imperial.It includes shorter minor graduations and longer major graduations. A graduation is a marking used to indicate points on a visual scale, which can be present on a container, a measuring device, or the axes of a line plot, usually one of many along a line or curve, each in the form of short line segments perpendicular to the line or curve.
Individuals for which the same situation applies for their 1024 ancestors of ten generations ago would have a coefficient of r = 2 −10 = 0.1%. If follows that the value of r can be given to an accuracy of a few percent if the family tree of both individuals is known for a depth of five generations, and to an accuracy of a tenth of a percent ...
A tenth (1 ⁄ 10, or 0.1) of a US gallon. Called a "Commercial Pint" because it was equivalent to 0.8 US liquid pints. Replaced by the 375 mL "metric pint". Reputed Pint (UK)-13.3 imp oz. 378 mL: The "Reputed Pint" (2 ⁄ 3 Imperial pint or 1 ⁄ 12 Imperial gallon) was devised to split a standard gallon into twelve small bottles. Originally ...
The addition of magnesium accelerates the process of cold hardening. Which phases are formed depends primarily on the ratio of copper to magnesium. If the ratio is less than 1/1, clusters containing Cu and Mg are eliminated. At a ratio above 1.5/1, which is the case with most engineering alloys, the forms preferentially phase.