888 resultados para Small-medium sized enterprises


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The historically-reactive approach to identifying safety problems and mitigating them involves selecting black spots or hot spots by ranking locations based on crash frequency and severity. The approach focuses mainly on the corridor level without taking the exposure rate (vehicle miles traveled) and socio-demographics information of the study area, which are very important in the transportation planning process, into consideration. A larger study analysis unit at the Transportation Analysis Zone (TAZ) level or the network planning level should be used to address the needs of development of the community in the future and incorporate safety into the long-range transportation planning process. In this study, existing planning tools (such as the PLANSAFE models presented in NCHRP Report 546) were evaluated for forecasting safety in small and medium-sized communities, particularly as related to changes in socio-demographics characteristics, traffic demand, road network, and countermeasures. The research also evaluated the applicability of the Empirical Bayes (EB) method to network-level analysis. In addition, application of the United States Road Assessment Program (usRAP) protocols at the local urban road network level was investigated. This research evaluated the applicability of these three methods for the City of Ames, Iowa. The outcome of this research is a systematic process and framework for considering road safety issues explicitly in the small and medium-sized community transportation planning process and for quantifying the safety impacts of new developments and policy programs. More specifically, quantitative safety may be incorporated into the planning process, through effective visualization and increased awareness of safety issues (usRAP), the identification of high-risk locations with potential for improvement, (usRAP maps and EB), countermeasures for high-risk locations (EB before and after study and PLANSAFE), and socio-economic and demographic induced changes at the planning-level (PLANSAFE).

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Tutkielma on kvalitatiivinen haastattelututkimus, jonka tavoitteena on tarkastella HR-asiantuntijapalveluiden;konsultoinnin, ulkoistamisen ja vuokrajohtajuuden käyttöä sekä mahdollisuuksia PK-sektorilla. Tutkimuksessa perehdytään myös työn toimeksiantajan, case-yritys Virvon liiketoimintaan HR-asiantuntijapalveluiden markkinoilla ja siihen, miten Virvo pystyy vastaamaan näihin haasteisiin. HR-asiantuntijapalveluiden markkinoiden selvittämiseksi on haastateltu neljää HR-asiantuntijaa. Tämän pohjalta on tehty 15 PK-yrityksen toimitusjohtajan haastattelua HR-asiantuntijapalveluiden käytön selvittämiseksi. Tehdyt haastattelut ovat olleet puolistrukturoituja, jolloin on käytetty valmiita kysymyspohjia. Tutkimuksessa on selvinnyt, että HR-asiantuntijamarkkinat ovat vasta muotoutumassa ja että ala on varsin uusi. PK-yritysten HR-toimintojen haasteisiin pystytään parhaiten vastaamaan HR-asiantuntijapalveluilla, jotka ovat selkeitä kokonaisuuksia ja järkevästi hinnoiteltuja. Tärkeinä asioina on nähty esimerkiksi käytännön toteutus sekä lisäajan saaminen varsinaisen liiketoiminnan hoitamiseen. Palveluiden käyttö korostuu erityisesti erilaisissa muutostilanteissa kuten esimerkiksi yrityksen kasvuvaiheessa. Voidaan todeta myös, että liiketoiminnan tila vaikuttaa HR-asiantuntijapalveluiden käyttöön.

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Coarse grained sediment with a few fine grained matrices. Brown sediment with small to medium sized clasts. Clasts range from sub-angular to sub-rounded. Organic material present.

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Coarse grained sediment with a few fine grained matrices. Brown sediment with small to medium sized clasts. Clasts range from sub-angular to sub-rounded. Organic material present. It contains rotation structures throughout as well as edge-to-edge grain crushing. Fine grained clay domains are present and lineations can also be seen. Minor amounts of grain stacking can also be seen.

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Coarse grained sample with sub-angular to sub-rounded clasts. Clasts range from small to medium sized. Major grain crushing seen throughout the sample. Grain stacking and lineations are also present. A dark organic rich domain can be seen within the sample.

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Brown to dark brown sediment with small to medium sized clasts ranging from sub-angular to sub-rounded. This sample contains a coarse grained domain and a fine grained domain. Clear boundaries can be seen. Grain stacking can be seen in the coarse domain, while lineations are the dominant microstructure in the fine grained domain. Minor grain crushing can also be seen. Some of the coarser domain is rich in clay and organics.

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Brown sediment with small clasts, and an occasional medium sized clast. Clasts appear to be sub-rounded in shape. The sample contains many lineations, the majority oriented in the same direction. There are also darker areas present in the sample, they may contain organics.

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Brown sediment with clasts ranging from small to medium in size. The clast shape ranges from sub-angular to sub-rounded. Grain crushing is abundant throughout the sample, and mainly involves medium sized clasts. Lineations can also be seen. A finer, and darker brown domain is also present within the sample.

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Brown sediment with clasts ranging from small to medium. The majority of the clasts are medium sized. Clasts range from sub-angular to sub-rounded in shape. Lineations are common in this sample along with edge-to-edge grain crushing. Comet structures can also be seen in minor amounts.

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Brown sediment with clasts ranging from small to medium in size. Clast shape ranges from sub-angular to rounded. Two mains domains can be observed; one mainly contains small clasts, and the other is a mix of small and medium sized clasts. The finer grained domain contains some organic material and is abundant in lineations. The coarser domain is also abundant in lineations but also contains crushed grains and comet structures.

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Brown sample with mainly small clasts and a few medium sized grains. Grains range from sub-angular to sub-rounded. Lineations are abundant. There are patches of darker brown organic material throughout the sample. Grain crushing and some comet structures can also be seen.

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Dark brown sediment with clasts ranging from small to large. Clast shape ranges from angular to rounded. Rotation structures are abundant in this sample and mainly occur around medium sized and large aggregates. Comet structures can also be seen throughout the sample. Lineations and minor amounts of grain crushing can also be seen.

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Dark brown sediment with clasts ranging from small to large in size. Grain shape ranges from sub-angular to rounded. Rotation structures are common throughout the sample. Some necking structures are also present between large and medium sized aggregates. Lineations and grain stacks are also present in minor amounts.

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Coarse grained greyish brown sediment with clasts ranging from small to large. The majority of the sample contains small to medium sized clasts. Clast shape ranges from angular to sub-rounded. Edge-to-edge grain crushing and rotation structures are the most prevalent micro-structures in the sample. Many crushed grains can also be seen, along with lineations and occasional necking structures.

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Dark brown sediment with clasts ranging from small to large in size. Clast shape ranges from angular to sub-rounded. The main domain mainly contains larger aggregates. There is one domain inclusion in this sample. It mainly contains small and medium sized clasts, and contains many lineations. Necking structures can be commonly seen in the main domain between larger aggregates. This sample also contains many elongated clasts and inclusions of clay material.