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1 enables the integration of ~10(6) cells on a personal computer.
2 easible to run the genome-wide analysis on a personal computer.
3 lity to be supplied simply by a battery or a personal computer.
4 st CPU requirements allow it to operate on a personal computer.
5 n hundreds of patients in a few minutes on a personal computer.
6 akes about 0.1 and 2 min, respectively, on a personal computer.
7 nsions up to polynomial order L=30 on a 2 GB personal computer.
8 es for hundreds of datasets using a standard personal computer.
9 MR imaging with a remote operator by using a personal computer.
10 tructures in the Protein Data Bank even on a personal computer.
11 as 90Y take approximately 1 min on a 300 MHz personal computer.
12 the perimeter with a custom program run by a personal computer.
13 L) we were able to perform all analyses on a personal computer.
14 Analysis can be minimally run on a personal computer.
15 ient metagenotyping of millions of SNPs on a personal computer.
16 n under ten minutes using a standard desktop personal computer.
17 y to transfer data over the internet using a personal computer.
18 ONT data analytics run on cloud/clusters or personal computers.
19 is freely available by download on group and personal computers.
20 ets with hundreds of FLIM images on standard personal computers.
21 ies of single-threaded software designed for personal computers.
22 rge genome-wide SNPs datasets using standard personal computers.
23 ible for sample sizes of 25 or greater using personal computers.
24 It can be implemented on personal computers.
25 ome using the MRF online system on their own personal computers.
26 assive database searches using even ordinary personal computers.
27 and is computationally efficient for use in personal computers.
29 ge- and small-form-factor desktop and laptop personal computers, a thin client device, an LCD monitor
30 numerical algorithm with currently available personal computers; an analytical algorithm is also avai
31 ons take around 30 minutes on a contemporary personal computer and find acceptable solutions within t
32 ich transformed computing from mainframes to personal computers and from mobile computing to cloud co
35 ge number of main and epistatic effects on a personal computer, and outperform five other methods exa
37 py, an attached digital camera system, and a personal computer-based image analysis system including
38 calibration method, has been used to develop personal computer-borne algorithms useful for classifica
43 It becomes clear that the boundaries between personal computers, hospital systems, and the Internet a
44 e accomplished within a reasonable time on a personal computer (i.e., ~3.5 hours for LRMW and ~10 hou
52 exposures, such as televisions or desktop or personal computers, or studies investigating electromagn
54 w control are carried out via a mininotebook personal computer (PC) using custom software written in
56 We developed two versions of ESPRIT, one for personal computers (PCs) and one for computer clusters (
58 as practically instantaneous using a 3.0-GHz personal computer programmed using interactive data lang
60 vidual unique, just as the contents of every personal computer reflect the unique attributes of its o
63 stem, consisting of a palmtop IBM-compatible personal computer, specialized software, PCMCIA modem an
67 -assisted plate reader that functions with a personal computer to automate, speed read, and interpret
68 nments, while requiring just 75 minutes on a personal computer to obtain the multiple alignment of al
69 ioinformaticians and a command line tool for personal computer usage; (iv) is scalable as it can be e
71 ing to the outcome node in just 3.4 min on a personal computer with a 2.3 GHz Intel Core i9 processor
72 Such sites now provide anyone who can use a personal computer with access to very sophisticated deci
73 h all computation is performed on the user's personal computer with no data uploaded to remote server
75 omputing, leveraging the processing power of personal computers worldwide to accelerate quantum chemi