Results 131 to 140 of about 166,092,251 (286)

An Edible Chitosan‐Based Acoustic Sensor for Sound‐Responsive Actuation in Edible Robots

open access: yesAdvanced Functional Materials, EarlyView.
This study introduces an edible acoustic sensor for robotic food and edible robotics. Built from a chitosan piezoelectric film between gold electrodes, the sensor enables acoustic communication through ON/OFF keying. Integrated into an edible robot with pneumatically actuated arms and neck, it responds to high‐frequency tones.
Valerio Francesco Annese   +8 more
wiley   +1 more source

Memristive‐Gated RC‐Delay Synaptic Transistors for Time‐Encoded Analog in‐Memory Computing

open access: yesAdvanced Functional Materials, EarlyView.
A Memristive‐Gated Transistor for Time‐Encoded Analog In‐Memory Computing — By exploiting the RC delay of a self‐rectifying interface‐type memristor, nonlinear I–V distortion is structurally bypassed, enabling 3‐bit nonvolatile memory, spike‐timing‐based analog encoding, and hardware‐calibrated reservoir‐computing validation within a unified device ...
Yun‐Seo Shin   +7 more
wiley   +1 more source

Disorder‐Broadened Topological Hall Phase and Anomalous Hall Scaling in FeGe

open access: yesAdvanced Functional Materials, EarlyView.
By systematically introducing defects into FeGe via ion‐beam modification, we demonstrate that disorder broadens the temperature regime over which the topological Hall effect ‐ a signature of skyrmions or other chiral textures — appears, while also increasing its magnitude.
Chaman Gupta   +11 more
wiley   +1 more source

Discovery of Energy‐Localized Trap States via Opto‐Electrical Spectroscopy in UWBG Perovskite La:SrSnO3 FETs

open access: yesAdvanced Functional Materials, EarlyView.
Combined UV–vis transmittance and wavelength‐dependent photo‐assisted DC I–V analyses reveal defect‐induced optical instability and a high density of deep donor‐like subgap traps in La‐doped SrSnO3. The resulting MOSFET achieves one of the highest on/off ratios reported for ABO3 perovskite devices, demonstrating the promise of stannate perovskites as ...
Sojin Jung   +17 more
wiley   +1 more source

Emerging Post‐CMOS Hardware Neurons for Brain‐Inspired Computing: Devices, Circuits, and System Integration

open access: yesAdvanced Functional Materials, EarlyView.
The physical realization of artificial neurons is a critical challenge for energy‐efficient neuromorphic computing. This review presents a comprehensive analysis of the evolution of artificial neuron implementations from conventional CMOS to emerging post‐CMOS technologies.
Kannan Udaya Mohanan   +4 more
wiley   +1 more source

Bicomplex Numbers and their Elementary Functions</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Cubo</i>, 2012 </span><br><span class="r_content">En este artículo introducimos el algebra de números bicomplejos como una generalizacion del campo de números complejos. Describimos como definir funciones elementales en tales algebras (polinomios y funciones exponenciales y trigonometricas) así como sus </span><br><span class="r_sub"><i>M.E LUNA-ELIZARRARÁS<span id="ma_6" style="display:none">, M SHAPIRO, D.C STRUPPA, A VAJIAC</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_6')">+3 more</a></small></i></span><br><small><a href="https://doaj.org/article/08a611fe6d0e4a16a3ca5e2214e2ff55" target="_blank" rel="nofollow" title="doaj.org/article/08a611fe6d0e4a16a3ca5e2214e2ff55">doaj</a> </small>   <br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1002/adfm.77921" target="_blank" rel="nofollow">Tracking Battery Microstructural Degradation Through Directional Thermal Transport Signatures</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Advanced Functional Materials, EarlyView.</i></span><br><span class="r_content">In lithium‐ion batteries, heat conduction varies between the through‐plane and in‐plane directions because of the cell's layered structure. Therefore, cell degradation influences thermal conductivity in each direction uniquely due to detailed microstructural and compositional changes.</span><br><span class="r_sub"><i>Mohammad Shoghi Tekmedash<span id="ma_7" style="display:none">, Rituparna Mohanty, Jack Leber, David Nageb, Mirella Richard, Sharan Singh, Amin Reihani</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_7')">+6 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1002/adfm.77921?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1002/adfm.77921?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_7" style="display:none"><a href="/sci_redir.php?doi=10.1002%2Fadfm.77921" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1002/adfm.77921'); alert('Copied the doi');">copy doi</a> <small>(10.1002/adfm.77921)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_7')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1002/adfm.77998" target="_blank" rel="nofollow">Reservoir‐Driven Neuromorphic Computing Based on Composite Rare‐Earth/Transition Metal Oxide Memristor</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Advanced Functional Materials, EarlyView.</i></span><br><span class="r_content">A defect‐engineered Ag/Gd2O3:Nb2O5/Pt rare earth composite oxide memristor enables stable multilevel reservoir states through pulse driven conductance modulation. Experimentally measured device responses are incorporated into a device aware reservoir computing framework for CIFAR‐100 image classification, highlighting the potential of rare earth ...</span><br><span class="r_sub"><i>Hammad Ghazanfar<span id="ma_8" style="display:none">, Haider Abbas, Muhammad Rabeel, Honggyun Kim, Ghulam Dastgeer, Muhammad Nasim, Furqan Zahoor, Yawar Abbas, Waqas Ahmad, Deok‐kee Kim</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_8')">+9 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1002/adfm.77998?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1002/adfm.77998?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_8" style="display:none"><a href="/sci_redir.php?doi=10.1002%2Fadfm.77998" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1002/adfm.77998'); alert('Copied the doi');">copy doi</a> <small>(10.1002/adfm.77998)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_8')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1002/adfm.78031" target="_blank" rel="nofollow">Pressure‐Assisted Dimensional Transformation of 2D Hydrogenated Borophene into 0D Boron Quantum Dots</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Advanced Functional Materials, EarlyView.</i></span><br><span class="r_content">Hydrogenated borophene (HB) is transformed into distinct boron nanostructures through a solvent‐free thermal process. Under flowing nitrogen, hydrogen escape promotes reconstruction into B2O3 nanoplatelets, whereas hydrogen‐induced pressure under sealed conditions facilitates fragmentation into boron quantum dots.</span><br><span class="r_sub"><i>Ozden Gunes Yildiz<span id="ma_9" style="display:none">, Ramin Yazdaanpanah, Yongfeng Guo, Pouriya Naziri, Sachin Kulkarni, Martina Mercurio, Maria Cristina Larciprete, Ilaria Fratoddi, Paul Simon, Wan‐Lu Li, Koray Aydin, Umut Aydemir</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_9')">+11 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1002/adfm.78031?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1002/adfm.78031?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_9" style="display:none"><a href="/sci_redir.php?doi=10.1002%2Fadfm.78031" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1002/adfm.78031'); alert('Copied the doi');">copy doi</a> <small>(10.1002/adfm.78031)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_9')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1002/adfm.78060" target="_blank" rel="nofollow">Thermoresponsive Liquid Crystalline Polymer Coatings Programmed by Field‐Induced Topological Defects for Tunable Optical and Topographical Responses</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Advanced Functional Materials, EarlyView.</i></span><br><span class="r_content">Resonant standing waves generate large‐area lattices of liquid‐crystal topological defects that are permanently encoded into polymer coatings by photopolymerization. The preserved director architecture produces thermally reconfigurable surface topographies while maintaining programmable optical functionality, demonstrating a scalable strategy for ...</span><br><span class="r_sub"><i>Jacques A. Peixoto<span id="ma_10" style="display:none">, Mufeeduzaman Chavilkkadan, Alexander Fusi, Marko Beslać, Dirk J. Broer, Etienne Brasselet, Danqing Liu</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_10')">+6 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1002/adfm.78060?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1002/adfm.78060?mi=2or9o2m&af=R&AllField=generalization of exponential function&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_10" style="display:none"><a href="/sci_redir.php?doi=10.1002%2Fadfm.78060" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1002/adfm.78060'); alert('Copied the doi');">copy doi</a> <small>(10.1002/adfm.78060)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_10')">+1 more source</a></small><br></div><div class="r"><div style="margin-bottom:2px;overflow:hidden"><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-mathematics/" class="suggestion"onclick="show_loader();"><b>mathematics</b></a><br/><a href="/q-modulus_of_continuity/" class="suggestion"onclick="show_loader();"><b>modulus of continuity</b></a><br/><a href="/q-generating_functions/" class="suggestion"onclick="show_loader();"><b>generating functions</b></a><br/></div><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-exact_enumeration_problems%2C_generating_functions/" class="suggestion"onclick="show_loader();"><b>exact enumeration problems, generating functions</b></a><br/><a href="/q-probabilities/" class="suggestion"onclick="show_loader();"><b>probabilities</b></a><br/><a href="/q-mathematical_statistics/" class="suggestion"onclick="show_loader();"><b>mathematical statistics</b></a><br/></div><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-sz%C3%A1sz_operator/" class="suggestion"onclick="show_loader();"><b>szász operator</b></a><br/><a href="/q-dunkl_analogue/" class="suggestion"onclick="show_loader();"><b>dunkl analogue</b></a><br/><a href="/q-moments/" class="suggestion"onclick="show_loader();"><b>moments</b></a><br/></div></div></div><div class="pagenav"><a href="/q-generalization_of_exponential_function/p-13/" rel="nofollow"><b>previous</b></a>   <a href="/q-generalization_of_exponential_function/p-12/" rel="nofollow">12</a>  <a href="/q-generalization_of_exponential_function/p-13/" rel="nofollow">13</a>  <b>14</b>  <a href="/q-generalization_of_exponential_function/p-15/" rel="nofollow">15</a>  <a href="/q-generalization_of_exponential_function/p-16/" rel="nofollow">16</a>   <a href="/q-generalization_of_exponential_function/p-15/" id="next" rel="nofollow"><b>next</b></a> </div><br></div> </div> <script>document.getElementById('loadingGif').style.display='none';</script><div style="width: 100%; height: 40px; bottom: 0px; background-color: #f5f5f5;"><div style="padding-left: 15px; padding-top: 10px"> <a href="/" rel="nofollow">Home</a> - <a href="/page-about/" rel="nofollow">About</a> - <a href="/page-disclaimer/" rel="nofollow">Disclaimer</a> - <a href="/page-privacy/" rel="nofollow">Privacy</a> </div></div> <link rel="stylesheet" href="//ajax.googleapis.com/ajax/libs/jqueryui/1.11.4/themes/smoothness/jquery-ui.min.css"/> <script> (function(ss,ex){ window.ldfdr=window.ldfdr||function(){(ldfdr._q=ldfdr._q||[]).push([].slice.call(arguments));}; (function(d,s){ fs=d.getElementsByTagName(s)[0]; function ce(src){ var cs=d.createElement(s); cs.src=src; cs.async=1; fs.parentNode.insertBefore(cs,fs); }; ce('https://sc.lfeeder.com/lftracker_v1_'+ss+(ex?'_'+ex:'')+'.js'); })(document,'script'); })('JMvZ8gvrWA9a2pOd'); </script> </body> </html>