Enhancing lateritic soil performance with cement and calcined limestone dust for road base application. [PDF]
Thwe KS +3 more
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Strength and resilient performance of expansive subgrades stabilized with apricot kernel shell ash. [PDF]
Tanyildizi M.
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Fuzzy proximity bases and subbases
Srivastava, P, Gupta, R.L
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Toughness enhancement of geopolymer stabilized laterites using para rubber latex for sustainable base and subbase applications. [PDF]
Thanasisathit N +4 more
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The effect of RCA pavements on the liquefaction-induced settlement. [PDF]
Akbas M, Subasi O, Iyisan R.
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Study on the rationality of the construction scheme for cement-stabilized macadam base course. [PDF]
Liu J, Ma S, Li Z, Wang L.
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Prediction of the Long-Term Performance of an Existing Warm Recycled Motorway Pavement. [PDF]
Ingrassia LP +4 more
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Experimental performance study on alkali-activated coal gangue-slag gel stabilized spoil for road base preparation. [PDF]
Li X, Sun J, Ding Y, Wang H, Wei W.
europepmc +1 more source
Thin subbases of Piatetski-Shapiro sequences
For a non-integral real number $c>1$, let $\mathbb{N}_{(c)}:=\{\lfloor n^c\rfloor ~|~ n\in\mathbb{N}\}$. We show that $\mathbb{N}_{(c)}$ contains thin subbases of every order $h\geq 5$ when $12$. In fact, for every regularly varying function $F$ such that \[ \frac{F(x)}{\log x}\to\infty\quad\text{ and } \quad F(x)\leq (1+o(1))\frac{Γ(1+1/c)^h}{Γ(h/c)
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