156 research outputs found
Evolución del diseño de interiores en los grandes Centros Comerciales de Lima Central Sur en las últimas tres décadas
La investigación responde a una problemática que se evidencia a través de una serie de debilidades que repercuten en el diseño de dichos centros comerciales. El conocimiento de nuevas tecnologías para el diseño interior era escaso, no había conocimientos de enchapes, acabados finos, iluminación decorativa y diseño interior en general. Los materiales tampoco eran de gran ayuda, solo se conocían las estructuras comunes, como el cemento y el acero. Tampoco había conocimientos sobre técnicas constructivas
Integrating Smart Objects into a Integrated Internet of Things Architecture for Smart Cities
Increasing population in urban centers day by day demands for more services and infrastructure in order to meet all the needs of residents and visitors of the city. Due to the increased developments in advanced metering and digital technologies smart cities have been equipped with different electronic devices on the basis of Internet of Things (IOT), The utilization of all the technologies to achieve this objective presents an opportunity for the development of smart cities. This paper focus specifically to an urban IOT system and also to provide a comprehensive review on the concepts of smart cities, technologies of IOT and its applications
Silicon Atomic Quantum Dots Enable Beyond-CMOS Electronics
We review our recent efforts in building atom-scale quantum-dot cellular
automata circuits on a silicon surface. Our building block consists of silicon
dangling bond on a H-Si(001) surface, which has been shown to act as a quantum
dot. First the fabrication, experimental imaging, and charging character of the
dangling bond are discussed. We then show how precise assemblies of such dots
can be created to form artificial molecules. Such complex structures can be
used as systems with custom optical properties, circuit elements for
quantum-dot cellular automata, and quantum computing. Considerations on
macro-to-atom connections are discussed.Comment: 28 pages, 19 figure
Optimal pricing and production lot size for two rates of production with price-sensitive demand, price break-even point, and profit maximisation in higher order equation
In the present study, optimal pricing and optimal lot size production
policy models with price-sensitive demand of deteriorating products are
considered, taking into account two distinct production rates. It is
possible to begin production at one rate and then switch to a different
rate after a period of time. Such a scenario is appealing, in that a big
initial stock of produced goods can be avoided by starting production at
a modest pace, thus reducing the initial investment and the holding cost.
Further, the fifth-order equation is obtained when the equation for
optimal pricing is derived. Maximising the profit is calculated based on
a fifth-order equation. Both optimal pricing and production lot size are
decision variables, and optimal cycle time is also one of the decision
variables for determining price break-even points. As far as information
is concerned, no researcher has examined optimal pricing and
production lot size policies in two-rates-of-production models for their
study. The objective of the present study is to examine the optimal
production, optimal pricing, and optimal cycle time to reduce the total
cost and to maximise the total profit. Both price break-even point and
profit maximisation are considered. An appropriate mathematical model
is developed. An illustrative example is provided and numerically
validated using a sensitivity analysis. Microsoft Visual Basic 6.0 was used
to code the model’s outcome validation.http://sajie.journals.ac.zaam2024Industrial and Systems EngineeringSDG-12:Responsible consumption and productio
Visualizing heterogeneous dipole fields by terahertz light coupling in individual nano-junctions used in transmon qubits
The fundamental challenge underlying superconducting quantum computing is to
characterize heterogeneity and disorder in the underlying quantum circuits.
These nonuniform distributions often lead to local electric field
concentration, charge scattering, dissipation and ultimately decoherence. It is
particularly challenging to probe deep sub-wavelength electric field
distribution under electromagnetic wave coupling at individual nano-junctions
and correlate them with structural imperfections from interface and boundary,
ubiquitous in Josephson junctions (JJ) used in transmon qubits. A major
obstacle lies in the fact that conventional microscopy tools are incapable of
measuring simultaneous at nanometer and terahertz, "nano-THz" scales, which
often associate with frequency-dependent charge scattering in nano-junctions.
Here we directly visualize interface nano-dipole near-field distribution of
individual Al/AlO/Al junctions used in transmon qubits. Our THz nanoscope
images show a remarkable asymmetry across the junction in electromagnetic
wave-junction coupling response that manifests as "hot" vs "cold" cusp spatial
electrical field structures and correlates with defected boundaries from the
multi-angle deposition processes in JJ fabrication inside qubit devices. The
asymmetric nano-dipole electric field contrast also correlates with
distinguishing, "overshoot" frequency dependence that characterizes the charge
scattering and dissipation at nanoscale, hidden in responses from topographic,
structural imaging and spatially-averaged techniques. The real space mapping of
junction dipole fields and THz charge scattering can be extended to guide qubit
nano-fabrication for ultimately optimizing qubit coherence times
Double “acct”: A Distinct Double-peaked Supernova Matching Pulsational Pair Instability Models
We present multiwavelength data of SN 2020acct, a double-peaked stripped-envelope supernova (SN) in NGC 2981 at ∼150 Mpc. The two peaks are temporally distinct, with maxima separated by 58 rest-frame days and a factor of 20 reduction in flux between. The first is luminous (Mr = −18.00 ± 0.02 mag) and blue (g − r = 0.27 ± 0.03 mag) and displays spectroscopic signatures of interaction with hydrogen-free circumstellar material. The second peak is fainter (Mr = −17.29 ± 0.03 mag) and has some spectroscopic similarities to an evolved stripped-envelope SN, with strong forbidden [Ca ii] and [O ii] features. No other known double-peaked SN exhibits a light curve similar to that of SN 2020acct. We find the likelihood of two individual SNe occurring in the same star-forming region within that time to be highly improbable, while an implausibly fine-tuned configuration would be required to produce two SNe from a single binary system. We find that the peculiar properties of SN 2020acct match models of pulsational pair instability (PPI), in which the initial peak is produced by collisions of shells of ejected material, shortly followed by core collapse. Pulsations from a star with a 72 M⊙ helium core provide an excellent match to the double-peaked light curve. The local galactic environment has a metallicity of 0.4 Z⊙, a level where massive single stars are not expected to retain enough mass to encounter the PPI. However, late binary mergers or a low-metallicity pocket may allow the required core mass. We measure the rate of SN 2020acct–like events to be <3.3 × 10−8 Mpc−3 yr−1 at z = 0.07, or <0.1% of the total core-collapse SN rate
Energy-band engineering for improved charge retention in fully self-aligned double floating-gate single-electron memories
We present a new fully self-aligned single-electron memory with a single pair
of nano floating gates, made of different materials (Si and Ge). The energy
barrier that prevents stored charge leakage is induced not only by quantum
effects but also by the conduction-band offset that arises between Ge and Si.
The dimension and position of each floating gate are well defined and
controlled. The devices exhibit a long retention time and single-electron
injection at room temperature
Alteration of Proteins and Pigments Influence the Function of Photosystem I under Iron Deficiency from Chlamydomonas reinhardtii
BACKGROUND: Iron is an essential micronutrient for all organisms because it is a component of enzyme cofactors that catalyze redox reactions in fundamental metabolic processes. Even though iron is abundant on earth, it is often present in the insoluble ferric [Fe (III)] state, leaving many surface environments Fe-limited. The haploid green alga Chlamydomonas reinhardtii is used as a model organism for studying eukaryotic photosynthesis. This study explores structural and functional changes in PSI-LHCI supercomplexes under Fe deficiency as the eukaryotic photosynthetic apparatus adapts to Fe deficiency. RESULTS: 77K emission spectra and sucrose density gradient data show that PSI and LHCI subunits are affected under iron deficiency conditions. The visible circular dichroism (CD) spectra associated with strongly-coupled chlorophyll dimers increases in intensity. The change in CD signals of pigments originates from the modification of interactions between pigment molecules. Evidence from sucrose gradients and non-denaturing (green) gels indicates that PSI-LHCI levels were reduced after cells were grown for 72 h in Fe-deficient medium. Ultrafast fluorescence spectroscopy suggests that red-shifted pigments in the PSI-LHCI antenna were lost during Fe stress. Further, denaturing gel electrophoresis and immunoblot analysis reveals that levels of the PSI subunits PsaC and PsaD decreased, while PsaE was completely absent after Fe stress. The light harvesting complexes were also susceptible to iron deficiency, with Lhca1 and Lhca9 showing the most dramatic decreases. These changes in the number and composition of PSI-LHCI supercomplexes may be caused by reactive oxygen species, which increase under Fe deficiency conditions. CONCLUSIONS: Fe deficiency induces rapid reduction of the levels of photosynthetic pigments due to a decrease in chlorophyll synthesis. Chlorophyll is important not only as a light-harvesting pigment, but also has a structural role, particularly in the pigment-rich LHCI subunits. The reduced level of chlorophyll molecules inhibits the formation of large PSI-LHCI supercomplexes, further decreasing the photosynthetic efficiency
SN 2023ixf in Messier 101: Photo-ionization of Dense, Close-in Circumstellar Material in a Nearby Type II Supernova
We present UV/optical observations and models of supernova (SN) 2023ixf, a
type II SN located in Messier 101 at 6.9 Mpc. Early-time ("flash") spectroscopy
of SN 2023ixf, obtained primarily at Lick Observatory, reveals emission lines
of H I, He I/II, C IV, and N III/IV/V with a narrow core and broad, symmetric
wings arising from the photo-ionization of dense, close-in circumstellar
material (CSM) located around the progenitor star prior to shock breakout.
These electron-scattering broadened line profiles persist for 8 days with
respect to first light, at which time Doppler broadened features from the
fastest SN ejecta form, suggesting a reduction in CSM density at cm. The early-time light curve of SN2023ixf shows peak absolute
magnitudes (e.g., mag, mag) that are mag brighter than typical type II supernovae, this photometric boost also
being consistent with the shock power supplied from CSM interaction. Comparison
of SN 2023ixf to a grid of light curve and multi-epoch spectral models from the
non-LTE radiative transfer code CMFGEN and the radiation-hydrodynamics code
HERACLES suggests dense, solar-metallicity, CSM confined to cm and a progenitor mass-loss rate of
Myr. For the assumed progenitor wind velocity of km
s, this corresponds to enhanced mass-loss (i.e., ``super-wind'' phase)
during the last 3-6 years before explosion.Comment: 18 pages, 8 figures. Submitted to ApJ
Acknowledgement to reviewers of journal of functional biomaterials in 2019
The editorial team greatly appreciates the reviewers who have dedicated their considerable time and expertise to the journal’s rigorous editorial process over the past 12 months, regardless of whether the papers are finally published or not. In 2019, a total of 56 papers were published in the journal, with a median time to first decision of 18 days and a median time from submission to publication of 44 days. The editors would like to express their sincere gratitude to the following reviewers for their generous contribution in 201
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