scholarly journals Rapid dissonant grunting, or, But why does music sound the way it does?

2021 ◽  
Author(s):  
Beau Sievers ◽  
Thalia Wheatley

Each target article contributes important proto-musical building blocks that constrain music-as-we-know-it. However, neither the credible signaling nor social bonding accounts elucidate the central mystery of why music sounds the way it does. Getting there requires working out how proto-musical building blocks combine and interact to create the complex, rich and affecting music humans create and enjoy.

2021 ◽  
Vol 44 ◽  
Author(s):  
Beau R. Sievers ◽  
Thalia Wheatley

Abstract Each target article contributes important proto-musical building blocks that constrain music as-we-know-it. However, neither the credible signaling nor social bonding accounts elucidate the central mystery of why music sounds the way it does. Getting there requires working out how proto-musical building blocks combine and interact to create the complex, rich, and affecting music humans create and enjoy.


2020 ◽  
Vol 23 (45) ◽  
pp. 34-48
Author(s):  
James Martel

In this essay, I look at the way that Thomas Hobbes offers not only the building blocks for state power and sovereignty (as he is so famous for doing) but also a basis by which to resist those very things. Even as Hobbes constructs a vast and awe inspiring network of sovereign forms of authority, he shows how those forms are produced, in a sense, out of thin air. Hobbes’ understanding of language as a series of decisions that are made in ways that render the sovereign’s own decision derivative, as well as his understanding of theology as offering us a vision of a human community who must collectively decide on things in the absence of God’s ongoing instruction both serve to undermine and expose the emptiness of sovereign pronouncements. In this way, Hobbes can be read as a radical theorist and a theorist of resisting the very encryption that he is at the same time responsible for theorizing and producing.


Author(s):  
Mollie Claypool ◽  

The paper ascribes to a belief that architecture should be wholly digital – from the scale of the micron and particle to the brick, beam and building, from design to fabrication or construction. This embodies a fundamental and disruptive shift in architecture and design thinking that is unique to the project images included, enabling design to become more inclusive, participatory and open-source. Architecture that is wholly digital requires a radical rethinking of existing design and building practices. Thes projects described in this paper each develops a set of parts in relationship to a specific digital fabrication technology. These parts are defined as open-ended, universal and versatile building blocks, with a digital logic of connectivity. Each physical part has a malefemale connection which is the equivalent of the 0 and 1 in digital data. The design possibilities – or the way that parts can combine and aggregate – can be defined by the geometry and therefore, design agency, of the piece itself. This discrete method advances a theoretical argument about the nature of digital design as needing to be fundamentally discrete, and at the same time responding to ideas coming from open-source, distributed modes methods of production. Furthermore it responds to today’s housing crisis, providing for a more democratic and equitable framework for the production of housing. To think of architecture as wholly digital is to substantially disrupt the way that we think about design, authorship, ownership and process, as well as the building technologies and practices we use in contemporary architectural production.


2021 ◽  
Author(s):  
◽  
Alison McLachlan

<p>Complexity is a term that is now commonly used when discussing TV serial dramas and the way that, in recent years, creators and producers of this narrative form have embraced innovative and challenging strategies to tell their stories. As a result, it is also often argued that all TV serial dramas are strikingly different from one another; one of the few things that contemporary TV serial dramas have in common is their employment of complex narrative strategies. However, in this thesis, I argue that—while serial dramas are different from one another in many ways—they are also all the same at a fundamental level.  In order to examine the fundamental narrative components that all serial dramas employ, I use chaos as a framework. Chaos is a branch of mathematics and science which examines systems that display unpredictable behaviour that is actually determined by deep structures of order and stability. At its most basic level, chaos corresponds with the way in which serial dramas are both complex and simple at the same time; beneath the complexity of serial dramas are fundamental building blocks that are used to generate innovative, challenging and unpredictable narratives.  I apply the findings from my critical examination of chaos and TV drama narratives to the creation of my own TV projects, which employ the inherent structures and patterns of TV drama narratives in a way that produces innovative and complex stories. In doing so, I intend to highlight the potential of serial dramas to be endlessly creative yet consistently the same.</p>


2004 ◽  
Vol 23 (1) ◽  
pp. 72-75 ◽  
Author(s):  
Werner Uhl ◽  
Anna-Christina Fick ◽  
Thomas Spies ◽  
Gertraud Geiseler ◽  
Klaus Harms
Keyword(s):  

2000 ◽  
Vol 53 (4) ◽  
pp. 490-510 ◽  
Author(s):  
Matthias Gockel

The theme of this article is the reconstruction of the doctrine of God offered by the German theologian and historian of doctrine Isaak August Dorner (1809–84), in his treatise ‘On the Proper Conception of the Doctrine of God's Immutability, with Special Reference to the Reciprocal Relation between God's Suprahistorical and Historical Life.’ Although the theme of God's immutability has received wide attention in the last years, Dorner's essay has gone largely unnoticed, and its contribution to the current debate still awaits appreciation. The following argument shall provide some building-blocks for this goal. It presupposes that Dorner's theology was shaped in dialogue with the thought of Schelling, Hegel, and Schleiermacher, but it will extend this perspective and ask for the particular systematic-theological link between Schleiermacher and Karl Barth that Dorner's essay represents.


2019 ◽  
Vol 116 (39) ◽  
pp. 19579-19584 ◽  
Author(s):  
Sabrina Engesser ◽  
Jennifer L. Holub ◽  
Louis G. O’Neill ◽  
Andrew F. Russell ◽  
Simon W. Townsend

A core component of human language is its combinatorial sound system: meaningful signals are built from different combinations of meaningless sounds. Investigating whether nonhuman communication systems are also combinatorial is hampered by difficulties in identifying the extent to which vocalizations are constructed from shared, meaningless building blocks. Here we present an approach to circumvent this difficulty and show that a pair of functionally distinct chestnut-crowned babbler (Pomatostomus ruficeps) vocalizations can be decomposed into perceptibly distinct, meaningless entities that are shared across the 2 calls. Specifically, by focusing on the acoustic distinctiveness of sound elements using a habituation-discrimination paradigm on wild-caught babblers under standardized aviary conditions, we show that 2 multielement calls are composed of perceptibly distinct sounds that are reused in different arrangements across the 2 calls. Furthermore, and critically, we show that none of the 5 constituent elements elicits functionally relevant responses in receivers, indicating that the constituent sounds do not carry the meaning of the call and so are contextually meaningless. Our work, which allows combinatorial systems in animals to be more easily identified, suggests that animals can produce functionally distinct calls that are built in a way superficially reminiscent of the way that humans produce morphemes and words. The results reported lend credence to the recent idea that language’s combinatorial system may have been preceded by a superficial stage where signalers neither needed to be cognitively aware of the combinatorial strategy in place, nor of its building blocks.


2020 ◽  
Vol 11 (1) ◽  
Author(s):  
Chao Liu ◽  
Qiang Sun ◽  
Lina Lin ◽  
Jing Wang ◽  
Chaoqi Zhang ◽  
...  

Abstract Assembly of different metal-organic framework (MOF) building blocks into hybrid MOF-on-MOF heterostructures is promising in chemistry and materials science, however the development of ternary MOF-on-MOF heterostructures with controllable architectural and compositional complexity is challenging. Here we report the synthesis of three types of ternary MOF-on-MOF heterostructures via a multiple selective assembly strategy. This strategy relies on the choice of one host MOF with more than one facet that can arrange the growth of a guest MOF, where the arrangement is site-selective without homogenous growth of guest MOF or homogenous coating of guest on host MOF. The growth of guest MOF on a selected site of host MOF in each step provides the opportunity to further vary the combinations of arrangements in multiple steps, leading to ternary MOF-on-MOF heterostructures with tunable complexity. The developed strategy paves the way towards the rational design of intricate and unprecedented MOF-based superstructures for various applications.


2019 ◽  
Vol 374 (1786) ◽  
pp. 20190076 ◽  
Author(s):  
Thomas A. Richards ◽  
Ramon Massana ◽  
Stefano Pagliara ◽  
Neil Hall

Cells are the building blocks of life, from single-celled microbes through to multi-cellular organisms. To understand a multitude of biological processes we need to understand how cells behave, how they interact with each other and how they respond to their environment. The use of new methodologies is changing the way we study cells allowing us to study them on minute scales and in unprecedented detail. These same methods are allowing researchers to begin to sample the vast diversity of microbes that dominate natural environments. The aim of this special issue is to bring together research and perspectives on the application of new approaches to understand the biological properties of cells, including how they interact with other biological entities. This article is part of a discussion meeting issue ‘Single cell ecology’.


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