Anonymous ID: b99c3e July 6, 2021, 11:01 a.m. No.69783   🗄️.is 🔗kun   >>9785 >>9794

>>69769

>>69771

>dis wutz I sees

>>69772

>>69774

>method due to browser rendering differences. pain in the ass

>>69776

>browser? apple or pc?

>>69778

>same ff PC

>this problem always came up when doing HTML shit long time ago.

>Browser related

 

confirmed screenCAP from MS EDGE >>69781

 

{ am using PC + FF w/muhADDONS }

 

use MS EDGE to do some screenCAPS for those ICONS in TWITTER+

Anonymous ID: b99c3e July 6, 2021, 11:31 a.m. No.69807   🗄️.is 🔗kun

>>69785

>refuse to use edge

 

UNDERSTAND/stood;

 

depends on how you CUSTOMIZE your Browser + O/System

most folks, just click click blah blah on ACCEPT click next ...

 

When you select CUSTOM it forces one to learn what DO CLICK DO

 

been in tech support irl, internal / intranet website build maintain,

so had to learn html and alt browsers some 17 years back

{ now is only cursory level + functional analysis }

i.e. WATN stuck on miss# Bread

{ yet to do another digg on DATT }

>>>/comms/7366 #bottom

>>>/comms/49169

>>>/comms/49170

>>>/comms/49171

 

>>69794

>thx for checkin it out

>we went thru this before - thought it was ok

>hahahahaha

>same problem whenever i redo muh website

>have to test rendering in every damn platform, microsoft is especially bad

 

yvw freeB !o7

Anonymous ID: b99c3e July 6, 2021, 1:09 p.m. No.69827   🗄️.is 🔗kun   >>9837 >>9839 >>9871 >>9880

>>69697 /lb

 

"THE GAME_nanoo_nanoo__RACE for QUANTUM:

Advanced Optoelectronic Quantum Architecture and Measurement CH_y_NA"

 

SUSPECTsaucY_FRAUDcy KeK { read out loud, sounds like HIM, wrote IT ... }:

 

Advanced kirigami / origami provides an automated technique for modulating the mechanical,

electrical, magnetic and optical properties of existing materials, with remarkable flexibility,

diversity, functionality, generality, and reconfigurability.

 

[Search domain pubmed.ncbi.nlm.nih.gov]

 

https://pubmed.ncbi.nlm.nih.gov/32377337/

{ https://archive.ph/jDif4 https://archive.ph/boqqQ }

 

Article Title:

Kirigami/origami: unfolding the new regime of advanced 3D microfabrication/nanofabrication with "folding"

{ CARD GAME THEORY: FOLD[ing] }

 

Shanshan Chen # 1 , Jianfeng Chen # 2 , Xiangdong Zhang 1 , Zhi-Yuan Li 2 , Jiafang Li 1

 

Affiliations #:

# 1 Key Lab of Advanced Optoelectronic Quantum Architecture and Measurement (Ministry of Education),

Beijing Key Lab of Nanophotonics & Ultrafine Optoelectronic Systems, and School of Physics,

Beijing Institute of Technology, 100081 Beijing, China.

 

# 2 College of Physics and Optoelectronics, South China University of Technology, 510640 Guangzhou, China.

 

# Contributed equally.

 

PMID: 32377337 PMCID: PMC7193558 {http://www.ncbi.nlm.nih.gov/pmc/articles/pmc7193558/ https://archive.ph/Yb5in }

DOI: 10.1038/s41377-020-0309-9 { https://www.nature.com/articles/s41377-020-0309-9 https://archive.ph/kRFWn }

 

Free PMC article

Abstract

 

Advanced kirigami / origami provides an automated technique for modulating the mechanical, electrical,

magnetic and optical properties of existing materials, with remarkable flexibility, diversity, functionality, generality

and reconfigurability.

In this paper, we review the latest progress in kirigami / origami on the microscale / nanoscale as a new platform

for advanced 3D microfabrication/nanofabrication.

 

Various stimuli of kirigami / origami, including capillary forces, residual stress, mechanical stress, responsive forces, and focussed-ion-beam irradiation-induced stress, are introduced in the microscale / nanoscale region.

These stimuli enable direct 2D-to-3D transformations through folding, bending, and twisting of microstructures / nanostructures,

with which the occupied spatial volume can vary by several orders of magnitude compared to the 2D precursors

As an instant and direct method, ion-beam irradiation-based tree-type and close-loop nano-kirigami is highlighted in particular.

 

The progress in microscale / nanoscale kirigami / origami for reshaping the emerging 2D materials, as well as

the potential for biological, optical and reconfigurable applications, is briefly discussed.

 

With the unprecedented physical characteristics and applicable functionalities generated by kirigami / origami,

a wide range of applications in the fields of optics, physics, biology, chemistry and engineering can be envisioned.

 

Keywords: Micro-optics; Nanophotonics and plasmonics.

 

© The Author(s) 2020.

Conflict of interest statement

 

Conflict of interest: The authors declare that they have no conflict of interest.

Anonymous ID: b99c3e July 6, 2021, 1:22 p.m. No.69830   🗄️.is 🔗kun   >>9832 >>9837 >>9839 >>9871 >>9880

>>69828

>SPAR10 USAF C-40C that is up front out of Scott AFB, IL

yo,another comms ...

 

SPARTEN is the Leader 5:5 !o7

sQuAWK # 1121

 

QPost # 1121 (5) (5)

04/10/2018 01:40:13 { 4 10 20 }

Actions today [raid] will be met w/ swift action.

FBI burning midnight oil.

Q