Abstract:
A terminal device connected with a display device includes: an input unit to which operation information is inputted; an image generating unit which generates a configuration designation image including a position designation area corresponding to a display area of the display device and an icon arrangement area where an icon corresponding to an image that can be designated in relation to the position designation area is arranged; and a setting unit which designates an icon to be arranged in the icon arrangement area in relation to the position designation area, based on the operation information, and thereby sets an image corresponding to the icon as a display image in the display area. The icon includes a first icon corresponding to an image supplied from the terminal device connected with the display device and a second icon corresponding to a predetermined pattern image.
Abstract:
A terminal device connected with a display device includes: an input unit to which operation information is inputted; an image generating unit which generates a configuration designation image including a position designation area corresponding to a display area of the display device and an icon arrangement area where an icon corresponding to an image that can be designated in relation to the position designation area is arranged; and a setting unit which designates an icon to be arranged in the icon arrangement area in relation to the position designation area, based on the operation information, and thereby sets an image corresponding to the icon as a display image in the display area. The icon includes a first icon corresponding to an image supplied from the terminal device connected with the display device and a second icon corresponding to a predetermined pattern image.
Abstract:
An image processing apparatus determines whether a reference image and an image of interest are different or the same. A determination unit determines whether a comparative image formed by a part or entirety of the image of interest and an image corresponding to the comparative image in the reference image are different or the same. A decision unit decides whether a next comparative image should be a part or entirety of the image of interest in accordance with the result of the determination. An acquisition unit acquires the comparative image from the image of interest in accordance with result of the decision.
Abstract:
A transmission device includes: a reproduction audio producing unit which produces reproduction audio; a continuous audio producing unit which produces continuous audio; a synthesized audio producing unit which synthesizes the reproduction audio and the continuous audio to produce synthesized audio; a capture audio data producing unit which captures the synthesized audio to produce capture audio data; and a transmitting unit which transmits the capture audio data to a reproduction device.
Abstract:
To make it possible to alter a cell length with reduction of a manufacturing cost so that a spacer can be securely positioned at a desired position, a cell includes: a pair of optical windows sandwiching a flow channel; a cell body provided with an accommodating recess and a solution introduction part and a solution deriving part; a pair of light transmitting members in the accommodating recess and forming the pair of optical windows; a spacer defining a distance between the opposing surfaces of the pair of light transmitting members; and a pressing mechanism for pressing the light transmitting members and the spacer toward the bottom surface of the accommodating recess so as to form the flow channel, wherein a positioning recess having a shape corresponding to the spacer is provided on at least one of the opposing surfaces and the spacer is fitted therein.
Abstract:
Provided is a sample analyzing apparatus by which highly accurate measurement results can be obtained. The sample analyzing apparatus is provided with: a sample cell part constituting a plurality of cell spaces; light source parts that irradiate light in wavelength regions different from each other on the cell spaces; a plurality of collimator mirrors that are arranged to correspond to the cell spaces respectively and that collimate the transmitted light that has passed through the cell spaces; a diffraction grating that disperses the reflection light collimated by the collimator mirrors; a light collecting mirror that collects the light dispersed by means of the diffraction grating; and a light detector that detects the light collected by the light collecting mirror.
Abstract:
A measuring method of determining component concentration in a solution by calculating component concentrations in the solution at various temperatures in a small number of steps. The component concentration is measured at an arbitrary temperature T by using a solution absorbance spectrum and solvent absorbance spectrum at a plurality of wavelength(s)r, and preliminarily determining a calibration coefficient Mij (TO). Concentration of Ci of component i in solution at reference temperature TO, is obtained at differential spectrum of solution spectrum S (λj, T) at temperature T in j-th wavelength λj and solvent spectrum B (λj, T) at temperature T in j-th wavelength λj, calculating calibration coefficient Mij (TO) the specific component concentrations.
Abstract translation:通过在少量步骤中通过在各种温度下计算溶液中的组分浓度来测定溶液中组分浓度的测量方法。 通过使用多个波长r处的溶液吸收光谱和溶剂吸收光谱,在任意温度T测量组分浓度,并且初步确定校准系数M ij(T) O SUB>)。 在溶液光谱S(λN,T)的差分光谱下获得在参考温度T O 0下在溶液中浓度的组分i的C i )在第j个波长λN和第二波长λλ下的温度T和溶剂光谱B(λ,j,T)中,在第j个波长λ< 计算特定组分浓度的校准系数M ij(T O O)。
Abstract:
A method of analyzing the concentration of components in a fluid solution that can be contaminated with gas bubbles includes applying a spectrum of light to a test cell holding a sample fluid solution and detecting the measurement of the intensity of light passing through the test cell. A gas of the type that would be found in the sample fluid solution can be initially inserted into the test cell with light of a predetermined range of wavelengths scanning the test cell to obtain a reference spectrum. The test cell is then filled with the sample fluid solution and the light measurement is again conducted to obtain a sample spectrum. Data processing can occur to derive a light absorbance spectrum from the reference spectrum and sample spectrum to enable a determination of the percentage of concentrations of each component from the light absorbance spectrum, including the percentage of gas. Adding the determined percentages of concentration will provide a total amount, and comparing this total amount with a predetermined value can verify the accuracy of the concentration of components. If the data is contaminated as a result of an excess presence of gas bubbles, this data can be discarded to insure that the proper amount of concentrations is determined.
Abstract:
A display device includes: a display-side communication section adapted to receive image configuration alteration request information related to a configuration of a first image and image information of at least one second image constituting the first image from at least one terminal device; a display-side image generation section adapted to generate the first image based on the image configuration alteration request information and the image information; and a display-side display section adapted to display the first image.
Abstract:
An image display system includes an image display device and an image information processing device. The image display device includes a display side input section receiving a plurality of pieces of image information and cursor position information, an image combining/displaying section for displaying a composite image of the plurality of pieces of image information, and a cursor display section for displaying a cursor based on the cursor position information. The image information processing device includes an output section for outputting the image information and the cursor position information, a processing side input section for receiving input of composite image information, and a cursor position information processing section selecting either of a first cursor correspondence process corresponding to the image information sent to the image display device and a second cursor correspondence process corresponding to the composite image information and then performing the cursor correspondence process thus selected.