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10 Sweetest Apples to Bake, Make Applesauce, or Eat Fresh

Apples are nature's delicious and nutritious candy, with a staggering 7,500 varieties grown around the globe. Even the sweetest apples are healthy alternatives to sugary sweets — making them a great way to indulge your cravings without racking up the calories. Whether you're a fan of the crisp, refreshing crunch or more the type to bake the fruit into an apple pie, you really can't go wrong.




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X-ray crystallographic structure of a novel enantiopure chiral isothiourea with potential applications in enantioselective synthesis

The synthesis of a chiral isothiourea, namely, (4aR,8aR)-3-phenyl-4a,5,6,7,8,8a-hexahydrobenzo[4,5]imidazo[2,1-b]thiazol-9-ium bromide, C15H17N2S+·Br−, with potential organocatalytic and anti-inflammatory activity is reported. The preparation of the heterocycle of interest was carried out in two high-yielding steps. The hydrobromide salt of the isothiourea of interest provided suitable crystals for X-ray diffraction analysis, the results of which are reported. Salient observations from this analysis are the near perpendicular arrangement of the phenyl ring and the mean plane of the heterocycle. This conformational characteristic may be relevant with regard the stereoselectivity induced by the chiral isothiourea in asymmetric reactions. Furthermore, evidence was found for the existence of an S...Br− halogen bond.




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Advanced EXAFS analysis techniques applied to the L-edges of the lanthanide oxides

The L-edge EXAFS of the entire set of lanthanide oxides were collected and modeled, taking into consideration the aggregation of inequivalent absorbing sites, geometric parameterization of the crystal lattice and multielectron excitation removal.





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A new modular framework for high-level application development at HEPS

As a representative of the fourth-generation light sources, the High Energy Photon Source (HEPS) in Beijing, China, utilizes a multi-bend achromat lattice to obtain an approximately 100 times emittance reduction compared with third-generation light sources. New technologies bring new challenges to operate the storage ring. In order to meet the beam commissioning requirements of HEPS, a new framework for the development of high-level applications (HLAs) has been created. The key part of the new framework is a dual-layer physical module to facilitate the seamless fusion of physical simulation models with the real machine, allowing for fast switching between different simulation models to accommodate the various simulation scenarios. As a framework designed for development of physical applications, all variables are based on physical quantities. This allows physicists to analytically assess measurement parameters and optimize machine parameters in a more intuitive manner. To enhance both extensibility and adaptability, a modular design strategy is utilized, partitioning the entire framework into discrete modules in alignment with the requirements of HLA development. This strategy not only facilitates the independent development of each module but also minimizes inter-module coupling, thereby simplifying the maintenance and expansion of the entire framework. To simplify the development complexity, the design of the new framework is implemented using Python and is called Python-based Accelerator Physics Application Set (Pyapas). Taking advantage of Python's flexibility and robust library support, we are able to develop and iterate quickly, while also allowing for seamless integration with other scientific computing applications. HLAs for both the HEPS linac and booster have been successfully developed. During the beam commissioning process at the linac, Pyapas's ease of use and reliability have significantly reduced the time required for the beam commissioning operators. As a development framework for HLA designed for the new-generation light sources, Pyapas has the versatility to be employed with HEPS, as well as with other comparable light sources, due to its adaptability.




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Double-edge scan wavefront metrology and its application in crystal diffraction wavefront measurements

Achieving diffraction-limited performance in fourth-generation synchrotron radiation sources demands monochromator crystals that can preserve the wavefront across an unprecedented extensive range. There is an urgent need for techniques of absolute crystal diffraction wavefront measurement. At the Beijing Synchrotron Radiation Facility (BSRF), a novel edge scan wavefront metrology technique has been developed. This technique employs a double-edge tracking method, making diffraction-limited level absolute crystal diffraction wavefront measurement a reality. The results demonstrate an equivalent diffraction surface slope error below 70 nrad (corresponding to a wavefront phase error of 4.57% λ) r.m.s. within a nearly 6 mm range for a flat crystal in the crystal surface coordinate. The double-edge structure contributes to exceptional measurement precision for slope error reproducibility, achieving levels below 15 nrad (phase error reproducibility < λ/100) even at a first-generation synchrotron radiation source. Currently, the measurement termed double-edge scan (DES) has already been regarded as a critical feedback mechanism in the fabrication of next-generation crystals.




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MLgrating: a program for simulating multilayer gratings for tender X-ray applications

Multilayer gratings are increasingly popular optical elements at X-ray beamlines, as they can provide much higher photon flux in the tender X-ray range compared with traditional single-layer coated gratings. While there are several proprietary software tools that provide the functionality to simulate the efficiencies of such gratings, until now the X-ray community has lacked an open-source alternative. Here MLgrating is presented, a program for simulating the efficiencies of both multilayer gratings and single-layer coated gratings for X-ray applications. MLgrating is benchmarked by comparing its output with that of other software tools and plans are discussed for how the program could be extended in the future.




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Demonstration of full polarization control of soft X-ray pulses with Apple X undulators at SwissFEL using recoil ion momentum spectroscopy

The ability to freely control the polarization of X-rays enables measurement techniques relying on circular or linear dichroism, which have become indispensable tools for characterizing the properties of chiral molecules or magnetic structures. Therefore, the demand for polarization control in X-ray free-electron lasers is increasing to enable polarization-sensitive dynamical studies on ultrafast time scales. The soft X-ray branch Athos of SwissFEL was designed with the aim of providing freely adjustable and arbitrary polarization by building its undulator solely from modules of the novel Apple X type. In this paper, the magnetic model of the linear inclined and circular Apple X polarization schemes are studied. The polarization is characterized by measuring the angular electron emission distributions of helium for various polarizations using cold target recoil ion momentum spectroscopy. The generation of fully linear polarized light of arbitrary angle, as well as elliptical polarizations of varying degree, are demonstrated.




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Applying 3D ED/MicroED workflows toward the next frontiers

We report on the latest advancements in Microcrystal Electron Diffraction (3D ED/MicroED), as discussed during a symposium at the National Center for CryoEM Access and Training housed at the New York Structural Biology Center. This snapshot describes cutting-edge developments in various facets of the field and identifies potential avenues for continued progress. Key sections discuss instrumentation access, research applications for small mol­ecules and biomacromolecules, data collection hardware and software, data reduction software, and finally reporting and validation. 3D ED/MicroED is still early in its wide adoption by the structural science community with ample opportunities for expansion, growth, and innovation.




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Importance of powder diffraction raw data archival in a curated database for materials science applications

In recent years, there is a significant interest from the crystallographic and materials science communities to have access to raw diffraction data. The effort in archiving raw data for access by the user community is spearheaded by the International Union of Crystallography (IUCr) Committee on Data. In materials science, where powder diffraction is extensively used, the challenge in archiving raw data is different to that from single crystal data, owing to the very nature of the contributions involved. Powder diffraction (X-ray or neutron) data consist of contributions from the material under study as well as instrument specific parameters. Having raw powder diffraction data can be essential in cases of analysing materials with poor crystallinity, disorder, micro structure (size/strain) etc. Here, the initiative and progress made by the International Centre for Diffraction Data (ICDDR) in archiving powder X-ray diffraction raw data in the Powder Diffraction FileTM (PDFR) database is outlined. The upcoming 2025 release of the PDF-5+ database will have more than 20 800 raw powder diffraction patterns that are available for reference.




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Applications of the Clifford torus to material textures

This paper introduces a new 2D representation of the orientation distribution function for an arbitrary material texture. The approach is based on the isometric square torus mapping of the Clifford torus, which allows for points on the unit quaternion hypersphere (each corresponding to a 3D orientation) to be represented in a periodic 2D square map. The combination of three such orthogonal mappings into a single RGB (red–green–blue) image provides a compact periodic representation of any set of orientations. Square torus representations of five different orientation sampling methods are compared and analyzed in terms of the Riesz s energies that quantify the uniformity of the samplings. The effect of crystallographic symmetry on the square torus map is analyzed in terms of the Rodrigues fundamental zones for the rotational symmetry groups. The paper concludes with example representations of important texture components in cubic and hexagonal materials. The new RGB representation provides a convenient and compact way of generating training data for the automated analysis of material textures by means of neural networks.




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Subperiodic groups, line groups and their applications

Understanding the symmetries described by subperiodic groups – frieze, rod and layer groups – has been instrumental in predicting various properties (band structures, optical absorption, Raman spectra, diffraction patterns, topological properties etc.) of `low-dimensional' crystals. This knowledge is crucial in the tailored design of materials for specific applications across electronics, photonics and materials engineering. However, there are materials that have the property of being periodic only in one direction and whose symmetry cannot be described by the subperiodic rod groups. Describing the symmetry of these materials necessitates the application of line group theory. This paper gives an overview of subperiodic groups while briefly introducing line groups in order to acquaint the crystallographic community with these symmetries and direct them to pertinent literature. Since line groups are generally not sub­periodic, they have thus far remained outside the realm of symmetries traditionally considered in crystallography, although there are numerous `one-dimensional' crystals (i.e. monoperiodic structures) possessing line group symmetry.




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Application of laboratory micro X-ray fluorescence devices for X-ray topography

It is demonstrated that high-resolution energy-dispersive X-ray fluorescence mapping devices based on a micro-focused beam are not restricted to high-speed analyses of element distributions or to the detection of different grains, twins and subgrains in crystalline materials but can also be used for the detection of dislocations in high-quality single crystals. Si single crystals with low dislocation densities were selected as model materials to visualize the position of dis­locations by the spatially resolved measurement of Bragg-peak intensity fluctuations. These originate from the most distorted planes caused by the stress fields of dislocations. The results obtained by this approach are compared with laboratory-based Lang X-ray topographs. The presented methodology yields comparable results and it is of particular interest in the field of crystal growth, where fast chemical and microstructural characterization feedback loops are indispensable for short and efficient development times. The beam divergence was reduced via an aperture management system to facilitate the visualization of dislocations for virtually as-grown, non-polished and non-planar samples with a very pronounced surface profile.




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Coordinate-based simulation of pair distance distribution functions for small and large molecular assemblies: implementation and applications

X-ray scattering has become a major tool in the structural characterization of nanoscale materials. Thanks to the widely available experimental and computational atomic models, coordinate-based X-ray scattering simulation has played a crucial role in data interpretation in the past two decades. However, simulation of real-space pair distance distribution functions (PDDFs) from small- and wide-angle X-ray scattering, SAXS/WAXS, has been relatively less exploited. This study presents a comparison of PDDF simulation methods, which are applied to molecular structures that range in size from β-cyclo­dextrin [1 kDa molecular weight (MW), 66 non-hydrogen atoms] to the satellite tobacco mosaic virus capsid (1.1 MDa MW, 81 960 non-hydrogen atoms). The results demonstrate the power of interpretation of experimental SAXS/WAXS from the real-space view, particularly by providing a more intuitive method for understanding of partial structure contributions. Furthermore, the computational efficiency of PDDF simulation algorithms makes them attractive as approaches for the analysis of large nanoscale materials and biological assemblies. The simulation methods demonstrated in this article have been implemented in stand-alone software, SolX 3.0, which is available to download from https://12idb.xray.aps.anl.gov/solx.html.




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Foreword to the special virtual issue on X-ray spectroscopy to understand functional materials: instrumentation, applications, data analysis




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Poetry Challenge: Create A List Poem That Grapples With Rise Of Anti-Asian Racism

; Credit: /Katherine Du

Casey Noenickx | NPR

Over the years, NPR's poetry community has turned both painful and joyful experiences into magnificent work.

As the world still endures the coronavirus pandemic, the U.S. also grieves over increased violence against Asian Americans and a mass shooting in Georgia that left six women of Asian descent dead.

"Let's be clear: Anti-Asian violence and discrimination are not new. But, this racism seems to be heightened," says Kwame Alexander, NPR's resident poet. "And the onus is not on Asian Americans to figure this out. Frankly, it's on white people, it's on the rest of us — individually, systemically, to talk about it, to pay attention to, advocate against it."

"Between Autumn Equinox and Winter Solstice, Today," by Emily Jungmin Yoon, is a list poem that reflects the coldness of the world and how it wears on us. Yoon is a South Korean-born poet pursuing her Ph.D. in Korean literature at the University of Chicago.

Alexander and Morning Edition's Rachel Martin ask listeners: How do you cope with recent anti-Asian violence and discrimination? Tell us in a list poem.

Your poem doesn't have to rhyme. It just needs to have an ordered list with details that show your state of mind — and must begin with the word "today."

Share your poem through the form below. Then Alexander will take lines from some of your pieces and create a community crowdsourced poem. Alexander and Martin will read it on air, and NPR will publish it online, where contributors will be credited.

Submissions are due by noon ET on Monday, April 5.


Here are the terms of the callout:

By providing your Submission to us, you agree that you have read, understand and accept the following terms in relation to the content and information (your "Submission") you are providing to National Public Radio ("NPR," "us" or "our"):

You are submitting content pursuant to a callout by Morning Edition related to a segment with Kwame Alexander wherein he creates unique poetry based on listener submissions. You understand that you are submitting content for the purpose of having Kwame use that content to create a new poem or poems ("Poem") with the material you submit. You must be over the age of 18 to submit material.

You will retain copyright in your Submission, but agree that NPR and/or Kwame Alexander may edit, modify, use, excerpt, publish, adapt or otherwise make derivative works from your Submission and use your Submission or derivative works in whole or in part in any media or format and/or use the Submission or Poem for journalistic and/or promotional purposes generally, and may allow others to do so. You understand that the Poem created by Kwame Alexander will be a new creative work and may be distributed through NPR's programs (or other media), and the Poem and programs can be separately subject to copyright protection. Your Submission does not plagiarize or otherwise infringe any third-party copyright, moral rights or any other intellectual property rights or similar rights. You have not copied any part of your Submission from another source. If your Submission is selected for inclusion in the Poem, you will be acknowledged in a list of contributors on NPR's website or otherwise receive appropriate credit, but failure to do so shall not be deemed a breach of your rights.

Your submission will be governed by our general Terms of Use and Privacy Policy. As the Privacy Policy says, we want you to be aware that there may be circumstances in which the exemptions provided under law for journalistic activities or freedom of expression may override privacy rights you might otherwise have.

Copyright 2021 NPR. To see more, visit https://www.npr.org.

This content is from Southern California Public Radio. View the original story at SCPR.org.




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USAID Should Speed Application of Science, Technology, and Innovation to Global Development Challenges

The U.S. Agency for International Development should speed its transformation into a global leader and catalyst in applying science, technology and innovation to the challenges facing developing countries, says a new report from the National Academies of Sciences, Engineering, and Medicine.




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National Academies Presidents Comment on Proposal for New Questions for Visa Applicants

In a letter to the U.S. Department of State, the presidents of the National Academy of Sciences, National Academy of Engineering, and National Academy of Medicine expressed concern that a proposal to add supplemental questions for visa applicants.




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National Academies Gulf Research Program Now Accepting Applications for 2019 Early-Career Research and Science Policy Fellowships

The Gulf Research Program (GRP) of the National Academies of Sciences, Engineering, and Medicine is now accepting applications for its Early-Career Research Fellowships and Science Policy Fellowships for 2019.




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With Summer Heat Waves, Hurricanes, and Flooding on the Horizon, Disaster Responders Grapple with Planning for Extreme Weather in the Time of COVID-19

This week the National Oceanic and Atmospheric Administration predicted an above-normal 2020 hurricane season, with the possibility of three to six major hurricanes this summer looming over millions of Americans.




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National Academies’ Gulf Research Program Opens Applications for 2021 Science Policy Fellowship

The Gulf Research Program (GRP) of the National Academies of Sciences, Engineering, and Medicine today announced it is accepting applications for the 2021-2022 Science Policy Fellowship.




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Gulf Research Program Opens Applications for Environmental Protection and Stewardship Track of 2021 Early-Career Research Fellowship

The Gulf Research Program (GRP) of the National Academies of Sciences, Engineering, and Medicine today announced it is accepting applications for the Environmental Protection and Stewardship track of the 2021 Early-Career Research Fellowship (ECRF).




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Use of Radioactive Materials in Commercial Applications Has Increased by 30 Percent - Government Should Improve Security and Support Development of Alternatives, Says New Report

The use of high-risk radioactive materials in medical, research, and commercial applications has increased by about 30 percent in the U.S. in the last 12 years, and the government should improve security, tracking, and accountability to reduce health and security risks — while also supporting the development of nonradioactive alternatives to replace them — says a new report from the National Academies of Sciences, Engineering, and Medicine.




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Gulf Research Program Opens Applications for Offshore Energy Safety Track of 2021 Early-Career Research Fellowship

The Gulf Research Program (GRP) of the National Academies of Sciences, Engineering, and Medicine today announced it is now accepting applications for the Offshore Energy Safety track of the 2021 Early-Career Research Fellowship (ECRF).




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Applying procedural justice to sexual harassment policies processes and practices

This perspective paper addresses the recommendations of a 2018 report by the National Academies on sexual harassment by exploring how a procedural justice framework could help guide improvements and revisions to policies, processes, and practices within higher education institutions with the potential to mitigate the negative experiences and outcomes of those affected by sexual harassment.




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Be careful what you pwish for – Phishing in PWA applications

ESET analysts dissect a novel phishing method tailored to Android and iOS users




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Why system resilience should mainly be the job of the OS, not just third-party applications

Building efficient recovery options will drive ecosystem resilience




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Apple Inc sets up first subsidiary in India for R&amp;D

Apple established a new subsidiary in India, Apple Operations India, marking its first direct presence in the country. This subsidiary will focus on research, design, testing, and providing support to third-party manufacturers. This move signifies Apple's commitment to expanding its operational footprint in India beyond assembly and sales.




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3-D graphene has promise for bio applications

Flakes of graphene welded together into solid materials may be suitable for bone implants, according to a study led by Rice University scientists.

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  • Physics & Chemistry

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Should new tech rules apply to Microsoft's Bing, Apple's iMessage, EU asks

The European Commission in September opened investigations to assess whether Microsoft's Bing, Edge and Microsoft Advertising as well as Apple's iMessage should be subject to the Digital Markets Act (DMA).




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Apple working on AR shopping feature on iPhone: Report

Tech giant Apple is reportedly working on a new version of its Apple Store application which will offer an augmented reality (AR) shopping feature on iPhone.




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Apple TV users may need an iPhone or iPad to accept iCloud terms and conditions

Previously, users were able to access Apple TV without needing any other Apple hardware. Users were allowed to set up the Apple TV, install apps, and make purchases completely independently. Sometimes users needed a web browser on a PC to perform the typical Apple ID management duties (if its necessary).




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Apple expands Advanced Data Protection option globally

Beginning with iOS 16.3, the security feature will allow users to enable end-to-end encryption for a variety of additional iCloud data categories, including Photos, Notes, Voice Memos, Messages backups, device backups, and more, reports MacRumors.




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Spotify and 8 other companies call Apple a 'harmful' company

The companies called EU to take “urgent” action to end “Apple's abusive behaviours.” A new Digital Markets Act has been passed by the EU and the companies said that the “EU has the opportunity to take the lead, but it must act fast, as every day that passes is a loss for innovation and for the welfare of European consumers.”




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Apple announces software tools for developers to create apps for Vision Pro

Apple has announced that starting today, its global community of developers will be able to create spatial computing apps for Vision Pro.




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Apple in talks with NPCI, plans to launch UPI based Apple Pay service in India

According to RBI’s Bulletin for June, UPI transactions in May reached a record Rs 14.3 trillion in terms of value and 9.41 billion in volume. Unified Payments Interface (UPI) is expected to account for 90% of retail digital transactions volume in the next five years.




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Meta plans to challenge Apple and Google's dominance over apps

Social media giant Meta is looking to challenge Apple and Google's dominance in the app marketplace by considering the creation of its own app store. The move is motivated by the European Union's Digital Markets Act (DMA), which calls for tech giants to open their platforms and allow alternative methods of app downloading. Meta aims to allow users to download apps directly from Facebook ads, resulting in higher conversion rates for developers. Failure to comply with the DMA can result in fines and possible acquisition bans.




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Apple removes 25 VPN apps from App Store in Russia, here's why

Apple has removed 25 VPN apps from its App Store in Russia, complying with orders from the communications regulator. This move comes amidst Russia's crackdown on VPNs and ongoing tensions with big tech companies over content regulation and censorship.




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143: Apple Vision Pro: Experiencing the Future

Myke got to try out the Apple Vision Pro – in an exclusive hands-on experience at Apple Park. On this episode, he recounts his entire experience to Grey and talks about what it could mean for the future of computing.




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152: Apple Vision Pro: The Future is Here




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158: Is AI Still Doom? (Humans Need Not Apply – 10 Years Later)




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Antares Vision Group releases 'All-in-One' series of inspection solutions for food applications

New series provides single-machine in-line inspection and quality control through a broad array of combinable technologies.





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US Foods debuts e-commerce application for foodservice

MOXē makes operator experience easier with an all-in-one application that offers enhanced speed, confidence, and control.




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Applied Manufacturing Technologies releases R-Palletize, a configurable robotic palletizing station

Applied Manufacturing Technologies has introduced a new product: R-Palletize, a flexible robotic palletizing station.




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Kroger launches limited-edition Private Selection Harvest Apple products

The Kroger Co. has announced the launch of Harvest Apple, a new limited edition Private Selection line of products spicing up fall with a fresh new twist.




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Oterra expands I-Colors line for snack, bakery applications

The supplier aims to give snack makers, bakers, and other food producers a range of intense, natural color options.




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Robotics are gaining popularity in snack and bakery applications

An expert from Quest shares the benefits of automated tech in food packaging.




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Primera introduces AP380 Label Applicator

The unit applies labels to round and cylindrical containers at high speeds.




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The United Soybean Board on puff pastry applications, high oleic soybean shortening, and soy-based baker's margarine

Snack Food & Wholesale Bakery was recently able to talk to Richard Galloway, oils consultant, United Soybean Board, about puff pastry applications, high oleic soybean shortening, and soy-based baker's margarine




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GNT's oil-soluble paprika provides opportunities for a broad range of applications

With cost-effective low usage levels and high stability performance, this kosher, vegan, and halal-certified shade can be used in snack seasonings, bakery products, frostings and decorative coatings, breadings, and more.