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This is a sample file for ACM generic journal manuscripts, using acmart.cls v2.08 (2024/06/04). It is provided by the ACM as a template for submissions, and pre-loaded in Overleaf (formerly writeLaTeX) for ease of editing online. Please see the ACM Submission Guidelines page for more details on manuscript preparation.
Important information regarding submission versions for review: After finalizing the formatting of your paper you must use the option “manuscript” with \documentclass[manuscript]{acmart} command. This will generate the output in single column review format which is required. Accepted manuscripts will be transformed during production to produce properly formatted output accord to the publication specifications. Authors will be provided the opportunity to review and approve the formatted output before the article is published to the ACM Digital Library.
All journals use acmsmall with the following exceptions:
acmlarge - Large single column format, used for IMWUT, JOCCH, PACMPL, POMACS, TAP
acmtog - Large double column format, used for TOG
Note: Most proceedings authors will use the "sigconf" proceedings template. If you are unsure which template variant to use, please request clarification from your event or publication contact.
This is a sample file for legacy SIGCHI extended abstracts, using acmart.cls v1.71 (2020/05/04).
Starting in Spring 2020 ACM retired SIGCHI Extended Abstract format (sigchi-a). ACM will not, under any circumstances, accept documents in this format for publication and will not offer technical support to the authors who use this template.
You may use this format in the nonacm mode only, as in \documentclass[sigchi-a, nonacm]{acmart}.
This is a sample file for ACM SIGPLAN conference proceedings, using acmart.cls v2.08 (2024/06/04). It is provided by the ACM as a template for submissions, and pre-loaded in Overleaf (formerly writeLaTeX) for ease of editing online. Please see the ACM Submission Guidelines page for more details on manuscript preparation.
Note: Most proceedings authors will use the "sigconf" proceedings template. If you are unsure which template variant to use, please request clarification from your event or publication contact.
Important information regarding submission versions for review: After finalizing the formatting of your paper you must use the option “manuscript” with \documentclass[manuscript]{acmart} command. This will generate the output in single column review format which is required. Accepted manuscripts will be transformed during production to produce properly formatted output accord to the publication specifications. Authors will be provided the opportunity to review and approve the formatted output before the article is published to the ACM Digital Library.
This is a sample file for ACM SIG conference proceedings (except SIGPLAN), using acmart.cls v2.08 (2024/06/04). It is provided by the ACM as a template for submissions, and pre-loaded in Overleaf (formerly writeLaTeX) for ease of editing online. Please see the ACM Submission Guidelines page for more details on manuscript preparation.
Note: Most proceedings authors will use this "sigconf" proceedings template. If you are unsure which template variant to use, please request clarification from your event or publication contact. As of March 2017, this format (sigconf) should also be used for SIGGRAPH conferences; and as of May 2020 this format (sigconf) should also be used for SIGCHI conferences.
Important information regarding submission versions for review: After finalizing the formatting of your paper you must use the option “manuscript” with \documentclass[manuscript]{acmart} command. This will generate the output in single column review format which is required. Accepted manuscripts will be transformed during production to produce properly formatted output accord to the publication specifications. Authors will be provided the opportunity to review and approve the formatted output before the article is published to the ACM Digital Library.
Thermal wave phenomenon is observed is thin metallic rod by application of periodic heating. In this way, it is demonstrated that there is no wave nature in these improperly called thermal waves by showing that they do not transport energy and its propagation properties can be used to determine the thermal diffusivity of the material.
syed waqar ahmed
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