“…In this case h(1) is also called the height of L. Note that an element a in a modular pseudo-D-lattice L is an atom if and only if h(a) = 1. As proved in [5], every modular pseudo-D-lattice L of finite height is atomic, i.e. for every b = 0 in L there exists an atom a of L such that a ≤ b.…”
Section: Definition 31mentioning
confidence: 92%
“…2 It is shown in [5] that the centre of a modular complete atomic pseudo D-lattice is atomic. We will need a particular case of this fact, and prove it directly.…”
Section: Proofmentioning
confidence: 99%
“…2 Definition 6. 5. We say that a lattice L 0 with least element 0 is atomless if there are no atoms, i.e., for every a ∈ L 0 with a = 0, there exists b ∈ L 0 with 0 < b < a.…”
Section: Proof Recall That a Base Of Neighbourhoods Of 0 In τ U(μ) Imentioning
“…In this case h(1) is also called the height of L. Note that an element a in a modular pseudo-D-lattice L is an atom if and only if h(a) = 1. As proved in [5], every modular pseudo-D-lattice L of finite height is atomic, i.e. for every b = 0 in L there exists an atom a of L such that a ≤ b.…”
Section: Definition 31mentioning
confidence: 92%
“…2 It is shown in [5] that the centre of a modular complete atomic pseudo D-lattice is atomic. We will need a particular case of this fact, and prove it directly.…”
Section: Proofmentioning
confidence: 99%
“…2 Definition 6. 5. We say that a lattice L 0 with least element 0 is atomless if there are no atoms, i.e., for every a ∈ L 0 with a = 0, there exists b ∈ L 0 with 0 < b < a.…”
Section: Proof Recall That a Base Of Neighbourhoods Of 0 In τ U(μ) Imentioning
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