网站综合信息 kl.net
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    • 域名年龄:29年12个月1天  注册日期:1995年08月10日  到期时间:2017年08月09日
      邮箱:abuse  电话:+1.9546071294
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    kl.net

    域名年龄: 29年12个月1天
    注册时间: 1995-08-10
    到期时间: 2017-08-09
    注 册 商: MONIKER ONLINE SERVICES LLC
    注册邮箱: abuse
    联系电话: +1.9546071294

    获取时间: 2016年11月27日 05:38:07
    Domain Name: KL.NET
    Registrar: MONIKER ONLINE SERVICES LLC
    Sponsoring Registrar IANA ID: 228
    Whois Server: whois.moniker.com
    Referral URL: http://www.moniker.com
    Name Server: NS.HOTNIC.NET
    Name Server: NS2.HOTNIC.NET
    Status: clientDeleteProhibited https://icann.org/epp#clientDeleteProhibited
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    Updated Date: 2016-07-29
    Creation Date: 1995-08-10
    Expiration Date: 2017-08-09

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    Domain Name: kl.net
    Registry Domain ID: 2683792_DOMAIN_NET-VRSN
    Registrar WHOIS Server: whois.moniker.com
    Registrar URL: http://www.moniker.com
    Updated Date: 2016-07-29T02:27:35.0Z
    Creation Date: 1995-08-10T04:00:00.0Z
    Registrar Registration Expiration Date: 2017-08-09T04:00:00.0Z
    Registrar: Moniker Online Services LLC
    Registrar IANA ID: 228
    Registrar Abuse Contact Email: abuse
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    Registrant Name: Kevin Loch
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    Registrant Street: PO Box 222081
    Registrant City: Chantilly
    Registrant State/Province: VA
    Registrant Postal Code: 20153
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    同IP网站(同服务器)
  • 169.45.201.130 共1个网站 (瑞士)
  • Kevin M. Loch kl.net
  • 其他后缀域名
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    • 相关信息
    • kl.com
    • 已注册 1995年05月24日
    • kl.org
    • 已注册 2002年04月13日
    网站首页快照(纯文字版)
    抓取时间:2019年09月08日 01:07:21
    网址:http://kl.net/
    标题:Kevin M. Loch
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    Kevin M. LochFacebook Instagram Twitter Linkedin IMDb GitHubAbout meI am a principal network architect at QTS Data Centers. I joined QTS when they acquired Carpathia Hosting in 2015.I have over 24 years experience in network design, operation and Unix/Linux systems. I am also an amateur physicist, programmer, photographer, independent film producer and AFOL (read more).Recent updates02/07/2019Gravitational field imager (gravity camera) simulator software under development.Latest alpha snapshot: gcsim-20190701.tar.gzIf you know of a detailed Lunar interior density model please let me know so I can add it.
    Sample images:
    Earth from surfaceEarth from lunar distanceSun from 1AUSun from 1AU false color1kg Tungsten sphere
    PNG PDF
    PNG PDF
    PNG PDF
    PNG PDF
    PNG PDF
    11/24/2018
    I wrote a program to search for polynomial-like formulas that have the charged lepton masses as their roots.   The hope is
    that such a formula would explain why there are exaclty three generations of matter, being the three real positive roots of a polynomial.
    The program searches for fractional exponent "polynomials" since using integer exponents would require six terms instead of three
    for three positive roots.   The program has found thousands of possible formulas that predict the non-input variables to within their experimental
    uncertainty but none of them have looked "simple" or "interesting" enough to publish so far. Since there are so many possible search factors
    I am publishing the source here so others can take a crack at it if they want.
    Latest source: lepton-3.37.tar.gz kevinloch.com | GitHub
    - released 2019/05/25, updated with CODATA 2018 reference values, n-ball surface area, symmetry score, bug fixes.
    01/31/2018
    Supermoon in enhanced color:
    Taken a few hours before the Lunar eclipse the color saturation was pushed during processing to exaggerate and reveal the
    subtle colors that are present on the moon even when it is not eclipsed.   Orange areas are due to an abundance of Iron oxide,
    and purple areas are due to Titanium oxide.  Copyright (c) 2018 Kevin M. Loch licensed under the creative commons 4.0 CC-BY license.
    11/23/2017 New Paper:
    Emperically derived fermion Higgs Yukawa couplings and pole masses
    Abstract: 
    Empirically derived formulas are proposed for calculating the Higgs field Yukawa couplings andpole masses of the twelve known fundamental fermions with experimental inputs me, mu, and theFermi constant G0F.
    11/11/2017: Here is a physics paper I wrote about fundamental particle masses (original verion 2/27/2017):
    A new empirical approach to lepton and quark masses
    Abstract: 
    A novel alternative to the Koide formula and it's extensions is presented. A new lepton ratio witha small dimensionless residual k_e = m_e m_t^2 / m_u^3 and mass scaling factor alpha_f = 27m_e / m_t are used to construct empirical formulas for charged leptons, left-handed neutrinos and quarks. The predictedmasses are in excellent agreement with known experimental values and constraints.
    Hobbi

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