Abstract:
A pneumatic tire in which K1, as derived from a contour range L1 and a developed tread width TDW by formula (1) below, satisfies 0.6≦K1≦0.9, and K2, as derived from a curvature radius TR1 of the center portion arc and a external tire diameter OD by formula (2) below, satisfies 2.0
Abstract:
Provided are a mobile terminal and a non-transitory computer readable medium storing therein a print instruction program. A mobile terminal for instructing one or more printing apparatuses connected to a network to perform printing, includes a touch screen and a control section. The control section is constructed to perform a first process of determining a position or positions of the one or more printing apparatuses viewed from the mobile terminal, and of displaying, on the touch screen, a direction or directions being accompanied with the position or positions of the one or more printing apparatuses; and a second process of, when the control section detects a flick operation on the touch screen along one of the direction or directions, transmitting a print job which gives a print instruction, to one of the one or more printing apparatuses corresponding to the one of the direction or directions.
Abstract:
A method of cleaning a medical instrument, in which a medical instrument to which a body fluid adheres is subjected to ultrasonic cleaning in a cleaning solution in which chlorine dioxide is dissolved, and a cleaning apparatus including a cleaning tank constructed to be capable of ultrasonic cleaning, a mixing portion for generating the cleaning solution in which chlorine dioxide is dissolved, a first pipe for supplying the cleaning solution to the cleaning tank from the mixing portion, and a second pipe for supplying water to the cleaning tank, and constructed to dilute the cleaning solution supplied from the mixing portion through the first pipe with water supplied through the second pipe such that a prescribed concentration of chlorine dioxide dissolved in the cleaning solution is attained in the cleaning tank are provided.
Abstract:
A pneumatic tire in which K1, as derived from a contour range L1 and a developed tread width TDW by formula (1) below, satisfies 0.6≦K1≦0.9, and K2, as derived from a curvature radius TR1 of the center portion arc and a external tire diameter OD by formula (2) below, satisfies 2.0
Abstract:
The present invention relates to a screening method for determining whether a substance of interest is a substance which alters GPR40-mediated cell stimulating activities, comprising using a substance of interest, a biomembrane containing GPR40, or cells containing said biomembrane, and phospholipase or salts thereof. According to the present invention, substances involved in insulin secretion can be screened. In addition, according to the present invention, substance useful for the prevention or treatment of diabetes, diabetic complications and degenerative diseases, hyperglycemia, polyuria, ketonemia, acidosis, insulin resistance, impaired glucose tolerance, neurodegenerative diseases, insulinoma, cancers, hyperinsulinemia, hyperglyceridemia, fatty liver, hypoglycemia due to insulin hypersecretion, arteriosclerosis, hyperlipidemia, cerebral stroke, obesity, various diseases induced by diabetes or obesity, and the like.
Abstract:
A tread surface is formed from a center arc, a shoulder-side arc, and a shoulder arc, in such a manner that K1=L1/(TDW×0.5) satisfies 0.6≦K1≦0.8, where L1 is an outline area that is a width from an equatorial plane to the end of the center arc and TDW is a tread development width, and K2 satisfies 0.9≦K1≦2.0, where K2=TR1/OD, TR1 is a curvature radius of the center arc to a tire outside diameter OD. Furthermore, the tread surface is formed in such a manner that K3=(β×TDW)/(100×SW) satisfies 0.40≦K3≦0.48, where β is an aspect ratio, and SW is a total width.
Abstract translation:胎面由中心圆弧,胎肩侧弧和肩部弧形成,使得K 1 = L 1 /(TDW×0.5)满足0.6 <= K 1 <= 0.8,其中L 1 是从赤道平面到中心圆弧的端部的宽度的轮廓区域,TDW是胎面展开宽度,K 2满足0.9 <= K 1 <= 2.0,其中K 2 = TR 1 / OD,TR 1是中心弧对轮胎外径OD的曲率半径。 此外,胎面表面形成为K 3 =(betaxTDW)/(100×SW))满足0.40 <= K 3 <= 0.48,其中β是纵横比,SW是总宽度。
Abstract:
In a system for variable-length coding, when image data of a plurality of documents are compressed and stored in a compression memory, the image data is divided into a plurality of areas. Then, attributes are discriminated for each area, and the result of the attribute discrimination is written to an attribute memory. Attribute counters count the numbers of the discriminated attributes. A variable-length compression section compresses the code data with a compression method in response to the attribute data written to the attribute memory, and the compressed data is written to a compression memory.
Abstract:
In a system for variable-length coding, when image data of a plurality of documents are compressed and stored in a compression memory, the image data is divided into a plurality of areas. Then, attributes are discriminated for each area, and the result of the attribute discrimination is written to an attribute memory. Attribute counters count the numbers of the discriminated attributes. A variable-length compression section compresses the code data with a compression method in response to the attribute data written to the attribute memory, and the compressed is written to a compression memory.
Abstract:
A single-headed piston (22) is accommodated within each of a plurality of cylinder bores (13) formed on a cylinder block (13). Shoes (23) are disposed between a swash plate (11) and each single-headed piston (22). The rotation force of the swash plate (11) is transmitted to the single-headed piston (22) via the shoes (23). Each single-headed piston (22) makes a reciprocating motion within the cylinder bore (131) accompanied by the rotation of the swash plate (11). A rotary shaft (16) fixed to the swash plate (11) is driven by a motor (21).
Abstract:
The amount in offset of toner or the like is used to determine two points sandwiching lattice points of input data and divide the region between the two points equally in N−1. The output values at the two points and each point equally dividing the region are obtained to calculate gradients m1-m8 between any two adjacent ones of the points. Then, difference values dm1-dm7 in gradient between any two adjacent ones of the straight lines are calculated and (N−1) lattice points serving as dividing points are selected from the difference values in descending order. It should be noted that N is smaller than M. Then, the input and output values of the determined (N+1) lattice points N0-N4 are plotted and they are bounded by straight line and thus plotted to linearly interpolate the output data for the input data. Thus, an image processing apparatus can be provided capable of precisely modifying output images with reduced memory capacity.