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4-Hydroxy-1-(1-benzyl-cyclohexyl)-benzol | 861008-61-9

中文名称
——
中文别名
——
英文名称
4-Hydroxy-1-(1-benzyl-cyclohexyl)-benzol
英文别名
4-(1-Benzyl-cyclohexyl)-phenol;4-(1-Benzylcyclohexyl)phenol
4-Hydroxy-1-(1-benzyl-cyclohexyl)-benzol化学式
CAS
861008-61-9
化学式
C19H22O
mdl
——
分子量
266.383
InChiKey
BWGSULRKLNQUCM-UHFFFAOYSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

计算性质

  • 辛醇/水分配系数(LogP):
    6.1
  • 重原子数:
    20
  • 可旋转键数:
    3
  • 环数:
    3.0
  • sp3杂化的碳原子比例:
    0.37
  • 拓扑面积:
    20.2
  • 氢给体数:
    1
  • 氢受体数:
    1

反应信息

  • 作为反应物:
    描述:
    4-Hydroxy-1-(1-benzyl-cyclohexyl)-benzol 生成 1-acetoxy-4-(1-benzyl-cyclohexyl)-benzene
    参考文献:
    名称:
    Dimensionality and the Dynamics of Human Unstable Equilibrium
    摘要:
    Maintaining an unstable equilibrium requires that multiple joints be coordinated so that the center of mass is kept above the base of support. The authors' aim in the present study was to discover the underlying dynamics of local (foot, hip, or head) and global (center of mass) components involved in balance control and how those dynamics are affected by changes in the available information. Participants (N = 6) had to maintain their balance on an unstable platform.. Using dimensional analyses (largest Lyapunov exponent and correlation dimension), the authors examined the active degrees of freedom involved in balance control. Results indicated a similarity in dimension between local (joints) and global (center of mass) components, between a fixed point and a limit cycle. The behavior of the center of mass was found to be more predictable than the behavior of its local constituents. In addition, the available visual information affected the predictability of the postural behavior, which suggests that vision is used in the stabilization of the low-dimensional dynamics underlying balance control.
    DOI:
    10.1080/00222890209601950
  • 作为产物:
    参考文献:
    名称:
    Dimensionality and the Dynamics of Human Unstable Equilibrium
    摘要:
    Maintaining an unstable equilibrium requires that multiple joints be coordinated so that the center of mass is kept above the base of support. The authors' aim in the present study was to discover the underlying dynamics of local (foot, hip, or head) and global (center of mass) components involved in balance control and how those dynamics are affected by changes in the available information. Participants (N = 6) had to maintain their balance on an unstable platform.. Using dimensional analyses (largest Lyapunov exponent and correlation dimension), the authors examined the active degrees of freedom involved in balance control. Results indicated a similarity in dimension between local (joints) and global (center of mass) components, between a fixed point and a limit cycle. The behavior of the center of mass was found to be more predictable than the behavior of its local constituents. In addition, the available visual information affected the predictability of the postural behavior, which suggests that vision is used in the stabilization of the low-dimensional dynamics underlying balance control.
    DOI:
    10.1080/00222890209601950
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文献信息

  • US4723960A
    申请人:——
    公开号:US4723960A
    公开(公告)日:1988-02-09
  • Dimensionality and the Dynamics of Human Unstable Equilibrium
    作者:Fabrice Mégrot、Benoǐt G. Bardy、Gilles Dietrich
    DOI:10.1080/00222890209601950
    日期:2002.12
    Maintaining an unstable equilibrium requires that multiple joints be coordinated so that the center of mass is kept above the base of support. The authors' aim in the present study was to discover the underlying dynamics of local (foot, hip, or head) and global (center of mass) components involved in balance control and how those dynamics are affected by changes in the available information. Participants (N = 6) had to maintain their balance on an unstable platform.. Using dimensional analyses (largest Lyapunov exponent and correlation dimension), the authors examined the active degrees of freedom involved in balance control. Results indicated a similarity in dimension between local (joints) and global (center of mass) components, between a fixed point and a limit cycle. The behavior of the center of mass was found to be more predictable than the behavior of its local constituents. In addition, the available visual information affected the predictability of the postural behavior, which suggests that vision is used in the stabilization of the low-dimensional dynamics underlying balance control.
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