Academic literature on the topic 'Temperature recording'
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Journal articles on the topic "Temperature recording"
Eyong, E., and D. J. Burch. "Hazard of recording vaginal temperature." BMJ 295, no. 6613 (December 19, 1987): 1653. http://dx.doi.org/10.1136/bmj.295.6613.1653.
Full textKnezacek, T. D., A. A. Olkowski, P. J. Kettlewell, M. A. Mitchell, and H. L. Classen. "Temperature gradients in trailers and changes in broiler rectal and core body temperature during winter transportation in Saskatchewan." Canadian Journal of Animal Science 90, no. 3 (September 1, 2010): 321–30. http://dx.doi.org/10.4141/cjas09083.
Full textRogers, Margaret. "Temperature recording in infants and children." Paediatric Nursing 4, no. 3 (April 1992): 23–26. http://dx.doi.org/10.7748/paed.4.3.23.s20.
Full textTakeda, Takayuki, Katsumichi Tagami, and Takaaki Watanabe. "Overwrite temperature dependence for magnetic recording." Journal of Applied Physics 63, no. 8 (April 15, 1988): 3438–40. http://dx.doi.org/10.1063/1.340759.
Full textHutton, D. R., and I. Lecis. "A simple multichannel temperature recording system." Journal of Physics E: Scientific Instruments 18, no. 10 (October 1985): 822–23. http://dx.doi.org/10.1088/0022-3735/18/10/002.
Full textMcDaniel, T. W., and M. R. Madison. "Writing temperature estimation in thermomagnetic recording." IEEE Transactions on Magnetics 26, no. 5 (1990): 2834–36. http://dx.doi.org/10.1109/20.104892.
Full textRahman, Nilufar, Fouzia Binte Kasem, Md Reazul Islam, Md Rafiqul Islam, Rezina Sultana, and Abdul Matin. "Comparison Between Mercury and Liquid Crystal Forehead Thermometers for Measurment of Body Temperature." Journal of Shaheed Suhrawardy Medical College 4, no. 2 (April 3, 2013): 60–61. http://dx.doi.org/10.3329/jssmc.v4i2.14421.
Full textShaw, Gorky, Sylvain Blanco Blanco Alvarez, Jérémy Brisbois, Loïc Burger, Lincoln B. L. G. Pinheiro, Roman B. G. Kramer, Maycon Motta, et al. "Magnetic Recording of Superconducting States." Metals 9, no. 10 (September 20, 2019): 1022. http://dx.doi.org/10.3390/met9101022.
Full textChan, Benny K. K., Fernando P. Lima, Gray A. Williams, Rui Seabra, and Hui‐Yu Wang. "A simplified biomimetic temperature logger for recording intertidal barnacle body temperatures." Limnology and Oceanography: Methods 14, no. 7 (April 7, 2016): 448–55. http://dx.doi.org/10.1002/lom3.10103.
Full textQuaade, U. J., K. Stokbro, R. Lin, and F. Grey. "Single-atom reversible recording at room temperature." Nanotechnology 12, no. 3 (August 23, 2001): 265–72. http://dx.doi.org/10.1088/0957-4484/12/3/311.
Full textDissertations / Theses on the topic "Temperature recording"
Longcoy, Joshua, Rayan Elkattah, Brooke Foulk, Shimin Zheng, and Arsham Alamian. "Temperature Recording of Pregnant Women in Labor: Analysis of Two Non-invasive Thermometers." Digital Commons @ East Tennessee State University, 2014. https://dc.etsu.edu/etsu-works/89.
Full textVolk, Michael [Verfasser], and Stuart [Akademischer Betreuer] Gilder. "Influence of pressure, temperature and composition on magnetic recording in meteorites / Michael Volk. Betreuer: Stuart Gilder." München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2016. http://d-nb.info/1113534699/34.
Full textXu, Lei. "Magnetization Dynamics at Elevated Temperatures." Diss., The University of Arizona, 2013. http://hdl.handle.net/10150/311342.
Full textHaq, Mohammad Ashraful. "Continuum and molecular dynamics analyses of lubricant evaporation and flow due to laser heating in heat-assisted magnetic recording." University of Akron / OhioLINK, 2018. http://rave.ohiolink.edu/etdc/view?acc_num=akron1531140850318054.
Full textStevan, Savić. "Кретање екстремних температура ваздуха на подручју Војводине у периоду 1951-2000." Phd thesis, Univerzitet u Novom Sadu, Prirodno-matematički fakultet u Novom Sadu, 2009. https://www.cris.uns.ac.rs/record.jsf?recordId=16710&source=NDLTD&language=en.
Full textTema doktorske disertacije je analiza ekstremenih temperatura vazduha na području Vojvodine (severni deo Srbije), koja se prostire na površini od 21.506 km2. U analizi su korišćene vremenske serije sa deset meteoroloških stanica za vremenski period od 1951. do 2000. godine. Ukupno je analizirano osam parametara ekstremnih temperatura, i to: srednje maksimalne i minimalne, apsolutne maksimalne i minimalne i dani sa ekstremnim temperaturama (ledeni, mrazni, letnji i tropski). Istovremeno, u istraživanje su uključene i vremenske serije raspona srednjih maksimuma i minimuma, kao i raspon srednjih apsolutnih maksimuma i minimuma. Tokom rada analizirani su godišnji, sezonski i mesečni nizovi prethodno navedenih parametara ekstrema. U cilju dobijanja neophodnih rezultata, korišćeno je više metoda, kao što su: Aleksandersonov test, prosta linearna regresija, t-test, Men-Kendalov test, koeficijent korelacije, klaster analiza, analiza rojeva tačaka, histogram i višestruka linearna regresija. Rezultati homogenosti mesečnih i sezonskih vremenskih serija, koji su dobijeni korišćenjem Aleksandersonovog testa, predstavljaju prve rezultate za prostor Vojvodine i pokazuju da je 26% ispitivanih nizova nehomogeno, od kojih je 11% podešeno, odnosno homogenizovano. Analize parametara ekstremnih temperatura vazduha pokazuju tendencije porasta u poslednjih pedeset godina XX veka. Posmatrajući godišnje nizove, javljaju se pozitivni trendovi kod svih parametara (osim za ledene i mrazne dane, gde su trendovi opadajući), međutim, jedino se za srednje minimalne temperature može potvrditi da imaju signifikantan porast tokom ispitivanog perioda. Istovremeno, zimski i prolećni trendovi imaju najvišu tendenciju porasta, dok su sa druge strane jesenji trendovi generalno opadajući. Analizom raspona maksimalnih i minimalnih temperatura, uvidelo se da maksimalne temperature generalno imaju nešto veći porast od minimalnih, a karakteristike ovakvih fluktuacija delimično su objašnjene korelacionom analizom sa drugim klimatskim elementima, koji mogu imati uticaj na ekstreme. Rezultati su pokazali da visoku korelacionu povezanost (uglavnom preko 0,7), odnosno uticaj na ekstremne temperature imaju insolacija, oblačnost, padavine i relativna vlažnost vazduha. Interesantno je napomenuti, da u većini radova koji analiziraju raspone maksimalnih i minimalnih temperatura u pojedinim regionima, na nivou kontinenta ili globalnom nivou, ukazuju na negativne trendove raspona ekstrema, međutim na prostoru Vojvodine godišnji rasponi imaju blagi pozitivan trend. Korišćenjem višestruke linearne regresije, uočeno je da pokazatelji atmosferske cirkulacije, odnosno NAO i AO indeksi, objašnjavaju prilično visok procenat varijansi srednjih i apsolutnih maksimalnih i minimalnih temperatura, tokom zimskog, prolećnog i letnjeg perioda. Istovremeno, uzrok rapidnijeg trenda porasta ekstrema tokom poslednje dekade XX veka, ukazuje kako na promene u oscilacijama drugih klimatskih elemenata, tako i na promene dominacije, odnosno učestalosti pojave određenih tipova atmosferske cirkulacije. Rezultati u doktorskoj disertaciji pokazuju da devedesete godine predstavljaju najtopliju dekadu na prostoru Vojvodine u okviru ispitivanog perioda, što je najverovatnije povezano i sa visokim pozitivnim vrednostima NAO indeksa tokom iste dekade, koje imaju uticaj na porast zimskih i prolećnih vrednosti ekstremnih temperatura.
This doctoral thesis deals with extreme air temperatures in Vojvodina (northern part of Serbia), which covers the area of 21,506 km2. Data series at ten meteorological stations for the period 1951- 2000 were used in the analysis. The following eight parameters of extreme temperatures were analysed: mean maximum and minimum; absolute maximum and minimum; and extreme temperature days (freezing, frosty, summer and tropical). Concurrently, the temporal series of mean maximum and minimum range were included into the research, as well as the range of mean absolute maximum and minimum. Annual, seasonal and monthly ranges of the aforementioned extreme parameters were included in the analysis. Towards obtaining important results, several methods were employed, such as Alexandersson test, simple linear regression, T-test, Mann-Kendall test, cluster analysis, scatterplot, histogram and multiple linear regressions. The results of homogenous monthly and seasonal temporal series obtained by employing Alexandersson test, being the first of the kind for Vojvodina highlighted that there were 26% non-homogenous, out of which 11% adjusted, i.e. homogenised within the analysed series. The analyses of extreme air temperature parameters trends showed increase in the last fifty years of the 20th century. Observation of annual series indicated positive trends for all parameters (except for freezing and frosty days, when the trends decreased). However, only mean minimal temperatures confirmed significant increase in the analysed period. Concurrently, winter and spring trends showed the highest increase, whereas autumn trend showed general decrease. In the course of the analysis of maximum and minimum temperature ranges, it was perceived that maximum temperatures generally showed higher increase compared to minimum, whereas the fluctuation features were partially explained by correlation analysis with other climatic elements, which might have influenced extremes. The results approved that high correlation coefficient (mainly above 0.7), i.e. the impact on extremes was perceived with insolation, cloudiness, precipitation and relative air humidity. Interestingly enough, most of the papers researching the series of maximum and minimum temperatures in certain regions, either continental or global, indicate negative trends in ranges of extremes. On the other hand, in Vojvodina the annual ranges show a moderately positive trend. The multiple linear regression technique brought to the perception that atmospheric circulation indicators, i.e. NAO and AO indices, explained the distinctly high percentage of variances in mean and absolute maximum and minimum temperatures during winter, spring and summer period. Concurrently, the cause of rapid increase in extremes during the 1990s indicated both the changes in oscillations of other climatic elements and changes in domination, i.e. frequency of certain types of atmospheric circulation. The results obtained for the doctoral dissertation indicated that the 1990s were the warmest decade in Vojvodina for the analysed period. Most probably, it was associated with high positive values of NAO index for the period, which affected winter and spring values of extreme temperatures.
Gál, Radek. "Systém vzdáleného monitorování teploty." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2018. http://www.nusl.cz/ntk/nusl-376911.
Full textJelena, Purać. "Molekularne osnove otpornosti polarnih insekata na niske temperature." Phd thesis, Univerzitet u Novom Sadu, Prirodno-matematički fakultet u Novom Sadu, 2009. https://www.cris.uns.ac.rs/record.jsf?recordId=82067&source=NDLTD&language=en.
Full textThe ability of insects to adapt to diverse ecological conditions iswell documented; they are the most diverse fauna on earth, with different species occupying arange of terrestrial and aquatic habitats from the tropics to the poles. Understanding the mechanisms by which insects survive such extreme temperatures and retain viability for longperiods in the dormant state is of great interest to many scientific fields. Insects have evolved three main strategies to survive sub-zero temperatures: i) freeze tolerance, ii) freeze avoidance and iii) cryoprotective dehydration. The main biochemical compounds involved in surviving sub-zero temperatures are same for different strategies but their physiological role is different. They include: ice nucleating agents (INAs), cryo/ anhydroprotectants, and antifreeze proteins (AFPs). The aim of this study was to determine molecular adaptations to extreme cold environments, combining physiology, biochemistry and molecular biology pproaches, in thePolar Collembola: Cryptopygus antarcticus and Onychiurus arcticus. Both species are freeze avoiding but employ different strategies for surviving low temperatures. The Antarctic springtail C. antarcticusis capable of rapid cold hardening with a bi-modal distribution of super cooling points (SCP) with high (less cold-hardened) and low (more cold-hardened) groups of animals present even during the growing season in summer. This bimodal distribution has been well documented, but is poorly understood. The Arctic springtail O. arcticusemploys the strategy known as cryoprotective dehydration to survive winter temperatures as low as -25ºC. With this technique, the amount ofavailable water in the body is reduced to almost zero and also there is an accumulation of trehalose, which acts as a cryo/anhydroprotectant. Although cryoprotective dehydration has been described in other insects, the molecular mechanisms behind this phenomenon are poorly understood.A total of 16,379 EST clones were generated for O. arcticus and 1180 for C. antarcticus. This represents the first publicly available sequence data for this two species providing useful data for comparative genomic analysis. The fact that around 60% of the clones for both species showed no sequence similarity to annotated genes in the datasets, suggests a specific pattern of gene expression in these species as adaptation to low temperatures.Two microarrays were constructed to identify genes involved in surviving low temperatures, one for C. antarcticus by printing 672 clones in duplicate and the other for O. arcticus by printing 6912 clones in duplicate. An analysis of those where putative function could be inferred via database homology, in C. antarcticus there was aclear pattern of up-regulation of structural proteins being associated with the cold tolerant group. These structural proteins mainly comprised cuticle proteins and provide support for the recenttheory that summer SCP variation within Collembola species could be a consequence of moulting, with moulting population having lowered SCPs. In O. arcticus EST and microarrayanalysis revealed clones and biochemical pathways associated with cryoprotective dehydration with a particular reference to genes involved in carbohydrate metabolism, aquaporin genes, heat shock proteins, LEA proteins and antioxidant enzymes.
Ivana, Bajšanski. "Algoritam za poboljšanje termalnog komfora u urbanoj sredini." Phd thesis, Univerzitet u Novom Sadu, Fakultet tehničkih nauka u Novom Sadu, 2016. https://www.cris.uns.ac.rs/record.jsf?recordId=100918&source=NDLTD&language=en.
Full textThe aim of this research is to create an algorithm for improvement ofoutdoor thermal comfort conditions in urban areas taking into accountcertain geometrical parameters of built urban environment, applyingparametric modelling and different software packages. The algorithmfor improving the outdoor thermal comfort offers the option ofautomated change of a man’s location, which enables the evaluationof outdoor thermal comfort in large-scale urban areas, such asboulevards, courtyards, squares etc. In addition, the algorithm forimproving the outdoor thermal comfort also allows automaticvariations of building height in order to achieve the optimal urbandesign which implies the best outdoor thermal comfort.
Daniela, Arsenović. "Утицај температуре ваздуха на сезоналност морталитета у Новом Саду." Phd thesis, Univerzitet u Novom Sadu, Prirodno-matematički fakultet u Novom Sadu, 2014. https://www.cris.uns.ac.rs/record.jsf?recordId=85691&source=NDLTD&language=en.
Full textOsnovni cilj ove disertacije je istraživanje uticaja temperature vazduha na sezonalnost mortaliteta stanovništva u Novom Sadu. Odnos između temperature vazduha i mortaliteta stanovništva istraživan je u periodu od 1897. do 2009. godine. Tokom analize, a u cilju boljeg uočavanja sezonalnih promena mortaliteta stanovništva, posmatrana vremenska serija je podeljena na nekoliko perioda. Prvi period se odnosi na kraj 19. i prvu polovinu 20. veka (1897-1952), drugi period obuhvata drugu polovinu 20. veka (1953-1997), a treći period čini 1998-2009. godina.U radu je analiziran uticaj temperature vazduha na mortalitet ukupnog stanovništva, mortalitet stanovništva prema polu i mortalitet stanovništva starog 65 i više godina, a u periodu 1998-2009. godine, u analizu su uključeni i uzroci smrti stanovništva. Posebno je analiziran kardiovaskularni mortalitet i mortalitet stanovništva izazvan respiratornim bolestima, dok su ostali uzroci smrti posmatrani zajedno.Za analizu uticaja temperature vazduha na sezonalnost mortaliteta korišćene su različite statističke metode kao što su korelaciona i regresiona analiza (grafički prikazane na dijagramu rasturanja), t-test, relativni rizik i koeficijent sezonalne varijacije mortaliteta. Kod analize mortaliteta prema polu korišćen je i odnos šansi.Rezultati dobijeni u ovom radu pokazuju da je mortalitet stanovništva u Novom Sadu veći tokom zimskog perioda godine. U periodu 1897-1952. godine nije pronađena statistički značajna povezanost između temperature vazduha i mortaliteta stanovništva, dok je u drugoj polovini 20. veka (1953-1997) i u periodu 1998-2009. godine uočena statistički značajna negativna korelacija između temperature vazduha i mortaliteta stanovništva, a regresiona analiza pokazuje da se sa rastom temperature vazduha mortalitet stanovništva smanjuje. U periodu 1998-2009. godine pronađena je i statistički značajna negativna korelacija između mortaliteta kardiovaskularnih bolesti i temperature vazduha, kao i između mortaliteta respiratornih bolesti i temperature vazduha, dok kod ostalih uzroka smrti nije uočena statistički značajna veza. Kod analize uticaja temperature vazduha na mortalitet stanovništva prema polu nisu uočene velike razlike između muškaraca i žena. Za razliku od mortaliteta ukupnog stanovništva, kod starog stanovništva (65+), kao najugroženije kategorije, statistički značajna negativna korelacija javlja se od početka posmatrane vremenske serije, a regresiona analiza takođe pokazuje da sa rastom temperature vazduha mortalitet starog stanovništva opada.Analiza u radu pokazala je da se uočeni sezonalni obrazac mortaliteta postepeno menja. Razlike između mortaliteta stanovništva u zimskom perodu u odnosu na periode pre i posle zime, se postepeno smanjuju. Ove promene praćene su i promenom prosečne temperature vazduha. Na osnovu dobijenih rezultata može se zaključiti da promene prosečne temperature vazduha utiču na promenu i balans mortaliteta po mesecima u toku godine.
The main aim of this dissertation is to investigate the temperature-related human mortality in Novi Sad, for the period from 1897 until 2009. In order to detect temporal sesonal changes during time, research period was split in three parts. First period is related to the end of 19th century and first half of 20th century (1897-1953), second period covers second half of 20th century (1953-1997) and third period is related to 1998-2009.In this dissertation impact of air temerature on human mortality of total population, than mortality by sex and mortality of old population (population aged 65 and over) is scrutinised. In the period 1998-2009 in analyses and causes of death are included. Three group of cause of death are investigated: cardiovascular disease, respiratory disease and all other causes of death are observed together.Several different statistical methods were used for analysis of impact of air temperature on seasonal variation of human mortality: correlation and regression analysis (presented at scatter diagram), t-test, relative risk and coefficient of seasonal variation of mortality. The odds-ratio was used in the chapter related to mortality by sex.Results for Novi Sad, show that human mortality in higher during winter period. In the period 1897-1952 statistical analysis does not show significant relation between air temperature and human mortality, while in the period of second half of 20th century (1953-1997) and period 1998-2009 statistical analysis indicated strong negative correlation between air temperature and human mortality and according to results of regression analysis increasing of air temperature is related with decreasing mortality. In the period from 1998 to 2009 statistical analysis show significant and negative correlation between cardiovascular mortality and air temperature, as well as mortality from respiratory disease and air temperature. Analysis of relation between other causes of death and air temperature does not show any significant correlation. There is no clear difference between male and female in the temperature-related mortality patterns. The most vulnerable group is population aged 65 and over. From the beginning of the observed period, statistical analysis indicates strong negative correlation between mortality of old population and air temeprature and regression coefficient demonstrate that increasing air temperature is followed with decreasing mortality.Analysis in this thesis shows changes of seasonal pattern of mortality. Differences between mortality in winter and non-winter period (preceding and following period) are decreasing. During the time, this changes are followed by fluctuation of air temperature. According to results presented in this dissertation it can be concluded that changes of air temperature are connected with changes of distribution of mortality by month, during the year.
Dragan, Rajnović. "Uticaj mikrostrukture na prelaznu temperaturu ADI materijala." Phd thesis, Univerzitet u Novom Sadu, Fakultet tehničkih nauka u Novom Sadu, 2015. http://www.cris.uns.ac.rs/record.jsf?recordId=94932&source=NDLTD&language=en.
Full textThe object of this thesis was to characterize microstructure and mechanical propertiesof the unalloyed ADI material (Austempered Ductile Iron). In addition, the influence ofmicrostructure on the ductile to brittle transition temperature (DBTT) by Charpy impacttest in temperature interval from 196 to +100°C has been studied. The all propertiesobtained depend on the morphology of microstructure and the amount of retainedaustenite, i.e. on the austempering parameters. According to the mechanical propertiesand standard requirements (ASTM, ISO and EN) the processing window has beenproposed, also. It was found that DBTT is influenced by amount and stability of retainedaustenite. In upper temperature range (above cca. 25°C) the most influence factor onDBTT is amount of retained austenite, while at the lower temperatures the stability ismore prominent. Stability of high carbon retained austenite at lower temperaturesprevents transformation to martensite and thus the embrittlement of ADI.
Books on the topic "Temperature recording"
Figueroa, J. Ludwig. Monitoring and analysis of data obtained from moisture temperature recording stations. Cleveland, Ohio: Case Western Reserve University, Dept. of Civil Engineering, 2001.
Find full textWickman, Boyd E. Comparison of a degree-day computer and a recording thermograph in a forest environment. [Portland, Or.]: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.
Find full textE, Wickman Boyd. Comparison of a degree-day computer and a recording thermograph in a forest environment. [Portland, Or.]: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.
Find full textWickman, Boyd E. Comparison of a degree-day computer and a recording thermograph in a forest environment. [Portland, Or.]: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.
Find full textE, Wickman Boyd. Comparison of a degree-day computer and a recording thermograph in a forest environment. [Portland, Or.]: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.
Find full textE, Wickman Boyd. Comparison of a degree-day computer and a recording thermograph in a forest environment. [Portland, Or.]: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.
Find full textWickman, Boyd E. Comparison of a degree-day computer and a recording thermograph in a forest environment. [Portland, Or.]: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.
Find full textLogbooks, Pretty. Temperature Log Book: Simple Fridge/Freezer Temperature Recording Book for Restaurants, Catering and Home. Independently Published, 2020.
Find full textF, Mondale C., and United States. National Aeronautics and Space Administration., eds. Evaluation of EDR-3 vibration, shock, temperature, and humidity recording unit: Final report. Brigham City, UT: Thiokol Corp., Space Operations, 1990.
Find full textEvaluation of EDR-3 vibration, shock, temperature, and humidity recording unit: Final report. Brigham City, UT: Thiokol Corp., Space Operations, 1990.
Find full textBook chapters on the topic "Temperature recording"
Guill Ibáñez, Antonio, E. Roses, X. Ibáñez-Català, A. Tormos, M. S. Guillem, A. M. Climent, F. J. Chorro, et al. "A novel multielectrode for epicardial recording with temperature control based in Peltier cells." In IFMBE Proceedings, 1153–57. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-540-89208-3_276.
Full textDroh, R. "A Newly Designed Unit for the Recording of ECG, Temperature, Pulse Plethysmography, and Other Body-Surface Parameters." In Anaesthesia — Innovations in Management, 99–101. Berlin, Heidelberg: Springer Berlin Heidelberg, 1985. http://dx.doi.org/10.1007/978-3-642-82392-3_21.
Full textScheel, Michael, Jens P. Dreier, and G. Bohner. "Evaluation of Intracranial Electrocorticography Recording Strips and Tissue Partial Pressure of Oxygen and Temperature Probes for Radio-Frequency-Induced Heating." In Cerebral Vasospasm: Neurovascular Events After Subarachnoid Hemorrhage, 149–52. Vienna: Springer Vienna, 2012. http://dx.doi.org/10.1007/978-3-7091-1192-5_29.
Full textSavvatimskiy, Alexander. "Resistivity up to Melting and the Recording of Melting Area." In Carbon at High Temperatures, 47–82. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-21350-7_4.
Full textRichards, B., J. Levitt, R. F. McCloy, and R. C. Pearson. "A Methodology for use of a Computer to Assist in the Recording and Processing of Data to Temperature Changes in the Human Gut." In Medical Informatics Europe ’90, 740–43. Berlin, Heidelberg: Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-51659-7_138.
Full text"Tail Skin Temperature Recording." In Encyclopedia of Pain, 3832. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-28753-4_202232.
Full textPauls, Joshua M., and Alexander S. Mukasyan. "High-Speed Micro Video Recording." In Concise Encyclopedia of Self-Propagating High-Temperature Synthesis, 153–54. Elsevier, 2017. http://dx.doi.org/10.1016/b978-0-12-804173-4.00069-7.
Full textWatson, James C., and Jasper R. Daube. "Compound Muscle Action Potentials." In Clinical Neurophysiology, 327–68. Oxford University Press, 2009. http://dx.doi.org/10.1093/med/9780195385113.003.0023.
Full textB., Swapna. "IoT-Enabled Non-Contact-Based Infrared Thermometer for Temperature Recording of a Person." In Handbook of Research on Innovations and Applications of AI, IoT, and Cognitive Technologies, 195–203. IGI Global, 2021. http://dx.doi.org/10.4018/978-1-7998-6870-5.ch014.
Full textDeamer, Paula, and Tina Attoe. "Measuring, Assessing and Recording: Pulse, Body Temperature, Respirations and Oxygen Saturation." In Nursing OSCEs. Oxford University Press, 2012. http://dx.doi.org/10.1093/oso/9780199693580.003.0013.
Full textConference papers on the topic "Temperature recording"
Zhang, Qide, Baoxi Xu, M. A. Suriadi, Eng-Hong Ong, and Teck-Hong Yip. "Temperature Distribution of Magnetic Head in HAMR System." In 2006 Asia-Pacific Magnetic Recording Conference. IEEE, 2006. http://dx.doi.org/10.1109/apmrc.2006.365924.
Full textNitsovich, Bohdan M., V. N. Vivcharyuk, and I. M. Grigorashuk. "Temperature variation of optical bistability of a semiconductor." In Holography, Correlation Optics, and Recording Materials, edited by Oleg V. Angelsky. SPIE, 1993. http://dx.doi.org/10.1117/12.165428.
Full textMcDaniel, T. W., and M. R. Madison. "Writting temperature estimation in thermomagnetic recording." In International Conference on Magnetics. IEEE, 1990. http://dx.doi.org/10.1109/intmag.1990.734969.
Full textKatayama, Ryuichi. "Effect of temperature change in microholographic recording." In Optical Data Storage 2017: From New Materials to New Systems, edited by Ryuichi Katayama and Yuzuru Takashima. SPIE, 2017. http://dx.doi.org/10.1117/12.2274557.
Full textXie, Changsheng, You-xin Xia, and Hao Huang. "Temperature gradient study on the hybrid recording." In Photonics Asia 2004, edited by Duanyi Xu, Kees A. Schouhamer Immink, and Keiji Shono. SPIE, 2005. http://dx.doi.org/10.1117/12.578277.
Full textKim, Young-Jin, Dongho Oh, Chulsoon Kim, and Ki-Tak Jung. "Dynamic analysis of magnetic disk drive actuators according to temperature variation." In 2016 Asia-Pacific Magnetic Recording Conference (APMRC). IEEE, 2016. http://dx.doi.org/10.1109/apmrc.2016.7524263.
Full textWang, Ting, Lele Cheng, Chengxu Wang, Weiming Cheng, Huajun Sun, and Xiangshui Miao. "Deposition Temperature and Thickness Effect on the Resistive Switching in BiFeO3 Films." In 2018 Asia Pacific Magnetic Recording Conference (APMRC). IEEE, 2018. http://dx.doi.org/10.1109/apmrc.2018.8601103.
Full textShao, Zhichun, Huiliang Liu, Yumeng Liu, Hyung-seok Jang, Benyuanyi Liu, Bo Zhao, Ali M. Niknejad, and Liwei Lin. "An integrated, direct-write temperature shock recording chip." In 2018 IEEE Micro Electro Mechanical Systems (MEMS). IEEE, 2018. http://dx.doi.org/10.1109/memsys.2018.8346601.
Full textRichter, H., and G. Parker. "Temperature scaling of anisotropy field in HAMR recording." In 2017 IEEE International Magnetics Conference (INTERMAG). IEEE, 2017. http://dx.doi.org/10.1109/intmag.2017.8007629.
Full textTan, C. P. H., J. P. Yang, J. Q. Mou, and E. H. Ong. "Three dimensional finite element model for transient temperature prediction in hard disk drive." In 2009 Asia-Pacific Magnetic Recording Conference (APMRC). IEEE, 2009. http://dx.doi.org/10.1109/apmrc.2009.4925358.
Full textReports on the topic "Temperature recording"
Hill, M. J. Demonstration and Deployment of An Integrated System To Instrument An Offshore Well For the Purpose of Recording Wellbore Temperatures - Phase III. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1986. http://dx.doi.org/10.4095/130152.
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