Abstract:
An inputting apparatus including: a display portion on which an image is displayed; an image storing portion storing image data; a selecting section that selects a part of the image data; a display controlling section which displays the image on the basis of the selected part of image data; a detecting portion which detects an approach-touch area of a detecting area to which is assigned a command for changing the image to be displayed, the approach-touch area having detected the approach or the touch of an input object; a change commanding section which commands to change the image to be displayed; and a changing-amount determining section which determines a changing amount of the image to be displayed, depending upon an area of the detected approach-touch area, wherein the selecting section changes the image data to be selected, in accordance with the determined changing amount,
Abstract:
A display apparatus, wherein a display controller configured to perform a first display processing in which display informations from a starting point display number to a second target display number which is between the starting point display number and a first target display number corresponding to an approach-touch area are displayed on a display portion as to-be-displayed informations such that a difference between the display number of the to-be-displayed informations displayed at a start and an end of a unit time is a first value, and then perform a second display processing in which display informations from the second target display number to the first target display number are displayed as the to-be-displayed informations such that a difference between the display number of the to-be-displayed informations displayed at a start of an end of the unit time is a second value which is smaller than the first value.
Abstract:
A display processing apparatus includes a display, a display control unit, and a detection unit configured to determine an inputted position of the display. The display processing apparatus includes a processing performing unit configured to determine a selected designator and to perform the processing indicated by the selected designator. The display processing apparatus further includes a judging unit configured to judge whether or not the inputted position determined by the detection unit is included in a direction selecting portion of the display. When the judging unit judges that the inputted position determined by the detection unit is included in the direction selecting range of the display, the display control unit changes a display direction of the designator in such a way that the designator orients the direction selecting portion which is judged to include the inputted position.
Abstract:
An electrode for a hot cathode fluorescent lamp may include a main body that emits thermions, a conductive support that supports the main body, and a lead electrically connected to the conductive support. The main body includes no filament structure and may be made of a bulk material having a columnar shape or an ingot shape formed by a conductive mayenite compound.
Abstract:
The present invention provides a solar cell having high photovoltaical conversion efficiency and being excellent in the light transmissivity and weather resistance such as solarization resistance. The present invention relates to a solar cell comprising a double tube composed of two glass tubes differing in the diameter and a photovoltaic conversion layer formed between the two glass tubes, the double tube being sealed at both ends of a part in which the photovoltaic conversion layer is formed, wherein at least one of the two glass tubes is composed of a glass comprising, in mass % based on the oxides, from 60 to 75% of SiO2, from 4 to 10% of Al2O3, from 0 to 5% of B2O3, from 0 to 5% of MgO, from 0.5 to 5% of CaO, from 0 to 0.5% of SrO, from 0 to 11% of BaO, from 10 to 16% of Na2O, from 0 to 10% of K2O, and from 0.5 to 10% of ZrO2.
Abstract translation:本发明提供一种太阳能电池,其具有高的光电转换效率,并且具有优异的透光率和耐候性如耐日晒性。 太阳能电池技术领域本发明涉及一种太阳能电池,其特征在于,包括由两根直径不同的玻璃管构成的双层管和在上述两个玻璃管之间形成的光电转换层,所述双管被密封在所述光电转换层 其中,所述两个玻璃管中的至少一个由玻璃构成,所述玻璃包含以质量%计的氧化物,60〜75%的SiO 2,4〜10%的Al 2 O 3,0〜5%的B 2 O 3 ,0〜5%的MgO,0.5〜5%的CaO,0〜0.5%的SrO,0〜11%的BaO,10〜16%的Na 2 O,0〜10%的K 2 O,以及 0.5〜10%的ZrO 2。
Abstract:
A multifunction device includes an image scanning unit that scans an image on a sheet and creates a first file based on the scanned image, an interface that communicates with an external device and transmits and receives a second file to and from the external device, an image forming unit that forms on a recording sheet an image based on a target file selected from the first file and the second file, the image forming unit being arranged below the image scanning unit, a display, and a controller that controls the display to display a plurality of pieces of information in an arranged manner, the information including at least an image based on the target file.
Abstract:
A method for producing a silicon nitride honeycomb filter, which comprises heat-treating in a nitrogen atmosphere a green body comprising from 50 to 85 mass % of metal silicon particles having an average particle diameter of from 5 to 50 μm, from 5 to 30 mass % of glass hollow particles having a softening temperature of from 400 to 1000° C. and from 10 to 20 mass % of an organic binder to convert metal silicon substantially to silicon nitride.
Abstract:
To provide a method for producing a silicon nitride honeycomb filter having a pore size and porosity most suitable for collection or removal of dust, by using metal silicon particles as the starting material. The method comprises heat-treating in a nitrogen atmosphere a green body comprising metal silicon particles and oxide ceramic hollow particles to convert metal silicon substantially to silicon nitride, wherein inorganic particles which react with the oxide ceramic hollow particles to form a melt in the step of the heat-treatment, are incorporated in the green body in an amount sufficient to substantially prevent the oxide ceramic hollow particles from remaining in the form as they are.
Abstract:
Disclosed herein is an amorphous C12A7 electride thin film which has an electron density of greater than or equal to 2.0×1018 cm−3 and less than or equal to 2.3×1021 cm−3, and exhibits a light absorption at a photon energy position of 4.6 eV. Also disclosed herein is an amorphous thin film which is fabricated using a target made of a crystalline C12A7 electride, and containing an electride of an amorphous solid material includig calcium, aluminum, and oxygen, in which an Al/Ca molar ratio of the thin film is 0.5 to 4.7.
Abstract:
A display processing apparatus includes a display, a display control unit, and a detection unit configured to determine an inputted position of the display. The display processing apparatus includes a processing performing unit configured to determine a selected designator and to perform the processing indicated by the selected designator. The display processing apparatus further includes a judging unit configured to judge whether or not the inputted position determined by the detection unit is included in a direction selecting portion of the display. When the judging unit judges that the inputted position determined by the detection unit is included in the direction selecting range of the display, the display control unit changes a display direction of the designator in such a way that the designator orients the direction selecting portion which is judged to include the inputted position.