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This example shows the difference between charAt and codePointAt . The example calls these methods on escaped supplementary Unicode characters. charAt(0) returns the high surrogate value, which corresponds to \uD835 . codePointAt(0) returns the value for the entire surrogate pair.

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Returns the Unicode code point value at the specified index.

Signature

Parameters

Return Value

Type: Integer

The Unicode code point value at the specified index.

Usage

If the points to the beginning of a surrogate pair (the high-surrogate code point), and the character value at the following index points to the low-surrogate code point, this method returns the supplementary code point corresponding to this surrogate pair. Otherwise, this method returns the character value at the given index.

For more information on Unicode and surrogate pairs, see The Unicode Consortium .

This example gets the code point value of the first character at index 0, which is the escaped Omega character. Also, the example gets the code point at index 20, which corresponds to the escaped supplementary Unicode characters (a pair of characters). Finally, it verifies that the escaped and unescaped forms of Omega have the same code point values.

The supplementary characters in this example ( \\uD835\\uDD0A ) correspond to mathematical fraktur capital G:

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Returns the Unicode code point value that occurs before the specified index.

Signature

Parameters

Return Value

Type: Integer

The character or Unicode code point value that occurs before the specified index.

Usage

If the character value at is the low-surrogate code point, and is not negative and the character at this index location is the high-surrogate code point, this method returns the supplementary code point corresponding to this surrogate pair. If the character value at is an unpaired low-surrogate or high-surrogate code point, the surrogate value is returned.

For more information on Unicode and surrogate pairs, see The Unicode Consortium .

This example gets the code point value of the first character (before index 1), which is the escaped Omega character. Also, the example gets the code point at index 20, which corresponds to the escaped supplementary characters (the two characters before index 22).

From Wikipedia, the free encyclopedia
The orange and green quadrilaterals are congruent; the blue one is not congruent to them. Congruence between the orange and green ones is established by the facts that side BC corresponds to (in this case of congruence, equals in length) JK, CD corresponds to KL, DA corresponds to LI, and AB corresponds to IJ, while angle C corresponds to (equals) angle K, D corresponds to L, A corresponds to I, and B corresponds to J.

In geometry , the tests for congruence and similarity involve comparing corresponding sides and corresponding angles of Buy Cheap Really 2018 New Style Water Shoes With Action Sports Running Shoes And Suitable Swimming Free Shipping Original Recommend Sale Online lBDT9
. In these tests, each and each angle in one polygon is paired with a side or angle in the second polygon, taking care to preserve the order of adjacency.

For example, if one polygon has sequential sides a , b , c , d , and e and the other has sequential sides v , w , x , y , and z , and if b and w are corresponding sides, then side a (adjacent to b ) must correspond to either v or x (both adjacent to w ). If a and v correspond to each other, then c corresponds to x , d corresponds to y , and e corresponds to z ; hence the i th element of the sequence abcde corresponds to the i th element of the sequence vwxyz for i =1,2,3,4,5. On the other hand, if in addition to b corresponding to w we have c corresponding to v , then the i th element of abcde corresponds to the i th element of the reverse sequence xwvzy .

Congruence tests look for all pairs of corresponding sides to be equal in length, though except in the case of the triangle this is not sufficient to establish congruence (as exemplified by a square and a rhombus that have the same side length). Similarity tests look at whether the ratios of the lengths of each pair of corresponding sides are equal, though again this is not sufficient. In either case equality of corresponding angles is also necessary; equality (or proportionality) of corresponding sides combined with equality of corresponding angles is necessary and sufficient for congruence (or similarity). The corresponding angles as well as the corresponding sides are defined as appearing in the same sequence, so for example if in a polygon with the side sequence abcde and another with the corresponding side sequence vwxyz we have vertex angle A appearing between sides a and b then its corresponding vertex angle V must appear between sides v and w .

Displays an map based on a given Location Item.

This element type is able to present an image. The image must be available on a reachable website or webserver without password or access token. Alternatively, the image file (e.g. YourImageFile.png) may be stored locally in the $OPENHAB_CONF/html folder, and will be accessible through the static route, http:// :8080/static/YourImageFile.png.

Allows you to display a video as part of your Sitemap. Note: not all video encodings (formats) are supported; you may need to transcode your video. The video must be reachable directly via URL. An embedded and/or protected video are not supported.

Adds a time-series chart object for the display of logged data.

refresh defines the refresh period of the Image (in milliseconds).

service sets the persistence service to use. If no service is specified, openHAB will use the first queryable persistence service it finds. Therefore, for an installation with only a single persistence service, this is not required.

period is the scale of the time axis. Valid values are h, 4h, 8h, 12h, D, 2D, 3D, W, 2W, M, 2M, 4M or Y .

begin / end sets the beginning and end of the time axis. Valid values are in the format: “yyyyMMddHHmm” (yyyy = year, MM = month, dd = day, HH = hour (0-23), mm = minutes).

legend is used to show or to hide the chart legend. Valid values are true (always show the legend) and false (never show the legend). If this parameter is not set, the legend is hidden if there is only one chart series.

Visit Charts in the Wiki for examples.

Other options to look out for: The Chart element type is a good way to present time series data quickly. For more sophisticated diagrams, openHAB supports the integration of outside sources like most logging and graphing solutions (e.g. Grafana ). See this Tutorial for more details.

Other options to look out for:

Technical constraints and details:

Mappings is an optional parameter for the Switch and Selection element types.

Mapping syntax:

As you can see, different Item data types are accepted as mappings values. The first two lines show very typical use cases. Imagine your TV is part of your openHAB setup. Its power state is represented by a binary Switch Item. Its channel number is a discrete number Item that may only be set to one of three states. By using a Switch or Selection element with a mappings array, you can replace these meaningless values with user-friendly descriptions for display on the user interface.

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