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Unusual situations, new lovers and rare opportunities to satisfy
cherished fantasies. 'Thrill Seekers' has ten original sexy short
stories guaranteed to surprise, delight and arouse your
imagination. A Mischief collection, featuring stories by Kathleen
Tudor, Olivia London, Flora Dain, Elizabeth Coldwell, Rose de Fer
and many more. When a woman on the run climbs into a stranger's
Limousine she embarks on a memorable ride. Cerise visits a
notorious park after dark to conduct some unconventional research.
In the dead of night, Amy met Charles in a ruined castle, and now
she never wants her captivity to end.
Discreet liaisons and steamy connections in hotel rooms: ten
original erotica stories from Mischief, featuring Rachel Kramer
Bussell, Flora Dain, Elizabeth Coldwell, Tabitha Kitten, Rose de
Fer and many more. The evening with Mr Alpha in a luxury suite is
already intense, but when the hot barman from downstairs is also
invited to the private party, the passion enters unchartered
territory. The idea of reviving a spark of romance at an ice hotel,
might seem like an instant freeze for a jaded wife, but the thawing
power of an unusual and exotic location cannot be underestimated.
Farrah's trip to a swish Honolulu hotel becomes a journey filled
with gift-wrapped surprises that come with a single instruction:
Use Only With Me
This book constitutes the refereed proceedings of the 16th
International Conference on Runtime Verification, RV 2016, held in
Madrid, Spain, in September 2016. The 18 revised full papers
presented together with 4 short papers, 3 tool papers, 2 tool
demonstration papers, and 5 tutorials, were carefully reviewed and
selected from 72 submissions. The RV conference is concerned with
all aspects of monitoring and analysis of hardware, software and
more general system executions. Runtime verification techniques are
lightweight techniques to assess correctness, reliability, and
robustness; these techniques are significantly more powerful and
versatile than conventional testing, and more practical than
exhaustive formal verification.
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