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Dans certains domaines d’activités, le télétravail est devenu la forme de travail privilégiée. Parfois hybride, parfois total, il s’impose. Sa mise en place et son application maintenant établies, les premiers constats émergent, les avis diffèrent. Chaque collaborateur, chaque manager étant différent, le ressenti ne sera jamais commun. L’exécution de la tâche diffère, le collaborateur demeure. Quels sont les limites et avantages du télétravail, quelle organisation impose-t-il et comment l’aborder ? C’est à ces questions que ce livre tente de répondre en plaçant au centre de l’analyse le collaborateur, le manager, l’homme, la femme. En quoi la connaissance de soi et une organisation réfléchie vont aider à s’adapter et à s’y épanouir en développant la bonne approche. Le virage vers le télétravail est engagé de façon pérenne, optimisons-le pour le bien de tous.
beheer --- personeel --- economie --- maniġment --- poslovodenje --- valdymas --- pārvaldība --- Management --- gestione --- johtaminen --- gestión --- ledning --- управување --- zarządzanie --- gestão --- management --- пословодство --- διαχείριση --- manažment --- menaxhim --- menedzsment --- управление --- gestion --- menadžment --- juhtimine --- ledelse --- förvaltningssätt --- politica di gestione --- ledelsesform --- Betriebs- und Geschäftsleitung --- știința conducerii --- vállalat vezetése --- styring --- vedení --- forma de gestão --- раководење --- mode de gestion --- amministrazione d'impresa --- upravljanje --- poslovodstvo --- vadyba --- vadovavimas --- strategia di gestione --- vadovybė --- üzletvezetés --- řídicí aparát --- менаџмент --- piano di gestione --- Managementmethode --- direzione operativa --- wijze van beheer --- vezetés --- μάνατζμεντ --- hospodářství --- économie --- икономика --- talous --- gospodarka --- economia --- majandus --- hospodárstvo --- ekonomika --- economy --- Wirtschaft --- gazdaság --- økonomi --- οικονομία --- привреда --- gospodarstvo --- економија --- ekonomija --- ekonomi --- economía --- ekonomikos mokslas --- gazdálkodás --- стопанство --- προσωπικό --- zamestnanci --- osoblje --- személyzet --- personāls --- персонал --- zaměstnanci --- persunal --- zaposleni --- personal --- personnel --- pessoal --- Personal --- resurse umane --- staff --- особље --- henkilöstö --- personel --- personale --- darbuotojai --- recursos humanos --- ressources humaines --- organico --- човечки ресурси --- žmogiškieji ištekliai --- arbeidspotentieel --- personál --- Humanressourcen --- human resources --- Belegschaft --- ανθρώπινο δυναμικό --- cilvēkresursi --- pracovníci --- personalas --- Betriebsangehörige --- ljudski resursi --- vállalati alkalmazottak --- menneskelige ressourcer --- effettivi --- henkilöstöresurssit --- burime njerëzore --- ljudski potencijali --- risorse umane --- inimressursid --- Bedienstete --- riżorsi umani --- Telecommuting --- Organizational change --- lyderystė --- ledarskap --- vezető szerep --- водеща роля --- Führung --- johtajuus --- liderança --- vodstvo --- leadership --- tmexxija --- capacités d’encadrement --- lederskab --- ηγεσία --- līderība --- capacități de conducere --- przywództwo --- vodenje --- liderazgo --- líderstvo --- leiderschap --- geilleagar --- foireann --- bainistíocht --- ūkis --- organisatie van het werk --- werk op afstand --- organizácia práce --- organizzazione del lavoro --- organisation af arbejdet --- organizacja pracy --- Arbeitsorganisation --- työn organisointi --- organizim i punës --- eagrú na hoibre --- организација на работата --- organizace práce --- darbo organizavimas --- töökorraldus --- organizacija rada --- οργάνωση της εργασίας --- организација рада --- organizacija dela --- organizzazzjoni tax-xogħol --- organização do trabalho --- organización del trabajo --- darba organizācija --- organizarea muncii --- организация на работа --- organisation of work --- arbetsorganisering --- munkaszervezés --- organisation du travail --- Organisation des Arbeitsablaufs --- córas fostaíochta --- organization of work --- travail à distance --- teilea-oibriú --- távmunka --- etätyö --- praca na odległość --- distancearbejde --- muncă la distanță --- teleworking --- телеобработка --- distansarbete --- lavoro a distanza --- работа на далечина --- delo na daljavo --- telexogħol --- trabajo a distancia --- kaugtöö --- rad na daljinu --- attālināts darbs --- εργασία εξ αποστάσεως --- teletrabalho --- Fernarbeit --- práca na diaľku --- рад на даљину --- práce na dálku --- nuotolinis darbas --- punë në distancë --- elektronische Heimarbeit --- kodus töötamine --- attālināta nodarbošanās --- telelavoro --- работа на далечина со користење телекомуникациски средства --- teileachomaitéireacht --- diaľková práca --- telecommuting --- kotipäätetyöskentely --- Tele-Arbeit --- telemuncă --- telemunka --- telewerk --- rad na daljinu uz korištenje telekomunikacijskih sredstava --- muncă prin transmitere la distanță a informațiilor --- teletrabajo --- punë me anë të mjeteve të telekomunikacionit --- trabalho à distância --- τηλεργασία --- distansarbetare --- télétravail --- hjemmeterminalarbejde --- decentrale werkorganisatie --- të punuarit në distancë --- работење на далечина --- distance working --- tālsakaru darbs --- Telearbeit
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Employee motivation --- Employees --- Employees --- Personnel management --- Industrial management --- Personnel --- Accompagnement en entreprise --- Personnel --- Personnel --- Gestion d'entreprise --- Coaching of --- Training of --- Motivation --- Formation --- Direction
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Gymnastics. --- Gymnastique --- Gymnastique acrobatique --- Étude et enseignement. --- Étude et enseignement.
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Biomass is widely considered as a potential alternative to dwindling fossil fuel reserves. There is a large variety of biomass sources (oleaginous, lignocellulosic, algae, etc.), with many possible conversion routes and products. Currently, biomass is not just viewed as a source of biofuels, but also as an interesting feedstock for the production of bio-based chemicals that could largely replace petrochemicals. In this context, the search for new sustainable and efficient alternatives to fossil sources is gaining increasing relevance within the chemical industry. There, the role of catalysis is often critical for the development of clean and sustainable processes, aiming to produce commodity chemicals or liquid fuels with a high efficiency and atom economy. This book gathers works at the cutting edge of investigation in the application of catalysis, for the sustainable conversion of biomass into biofuels and bio-based chemicals.
Technology: general issues --- bamboo --- pretreatment --- magnetic solid acid --- corncob --- reducing sugar --- wood waste --- biofuel --- lignocellulosic biomass --- NaOH pretreatment --- anaerobic co-digestion --- biomass --- waste seashell --- aldol condensation --- heterogeneous catalyst --- hydrogenolysis --- polyols --- monosaccharides --- hemicelluloses extracted liquor --- ReOx-Rh/ZrO2 catalysts --- sulfonated hydrothermal carbon --- solketal --- sulfonic solids --- ketalization --- continuous flow --- aerobic oxidation --- ruthenium --- heterogeneous catalysis --- lignin valorization --- guaiacyl glycerol-β-guaiacyl ether --- pyrolysis --- ketonisation --- bio-oil --- turnover frequencies (TOFs) --- biomass-derived aqueous phase upgrading --- olefin production --- oxide catalyst zinc–zirconia --- bauxite --- Li2CO3 --- transesterification --- soybean oil --- glucose --- 5-hydroxymethylfurfural --- LTL-zeolites --- used cooking oil --- deoxygenation --- decarboxylation --- decarbonylation --- nickel --- copper --- iron --- platinum --- hydrocarbons --- algae --- thermochemical conversion --- catalytic upgrading --- high-grade liquid fuel --- n/a --- oxide catalyst zinc-zirconia
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Biomass is widely considered as a potential alternative to dwindling fossil fuel reserves. There is a large variety of biomass sources (oleaginous, lignocellulosic, algae, etc.), with many possible conversion routes and products. Currently, biomass is not just viewed as a source of biofuels, but also as an interesting feedstock for the production of bio-based chemicals that could largely replace petrochemicals. In this context, the search for new sustainable and efficient alternatives to fossil sources is gaining increasing relevance within the chemical industry. There, the role of catalysis is often critical for the development of clean and sustainable processes, aiming to produce commodity chemicals or liquid fuels with a high efficiency and atom economy. This book gathers works at the cutting edge of investigation in the application of catalysis, for the sustainable conversion of biomass into biofuels and bio-based chemicals.
bamboo --- pretreatment --- magnetic solid acid --- corncob --- reducing sugar --- wood waste --- biofuel --- lignocellulosic biomass --- NaOH pretreatment --- anaerobic co-digestion --- biomass --- waste seashell --- aldol condensation --- heterogeneous catalyst --- hydrogenolysis --- polyols --- monosaccharides --- hemicelluloses extracted liquor --- ReOx-Rh/ZrO2 catalysts --- sulfonated hydrothermal carbon --- solketal --- sulfonic solids --- ketalization --- continuous flow --- aerobic oxidation --- ruthenium --- heterogeneous catalysis --- lignin valorization --- guaiacyl glycerol-β-guaiacyl ether --- pyrolysis --- ketonisation --- bio-oil --- turnover frequencies (TOFs) --- biomass-derived aqueous phase upgrading --- olefin production --- oxide catalyst zinc–zirconia --- bauxite --- Li2CO3 --- transesterification --- soybean oil --- glucose --- 5-hydroxymethylfurfural --- LTL-zeolites --- used cooking oil --- deoxygenation --- decarboxylation --- decarbonylation --- nickel --- copper --- iron --- platinum --- hydrocarbons --- algae --- thermochemical conversion --- catalytic upgrading --- high-grade liquid fuel --- n/a --- oxide catalyst zinc-zirconia
Choose an application
Biomass is widely considered as a potential alternative to dwindling fossil fuel reserves. There is a large variety of biomass sources (oleaginous, lignocellulosic, algae, etc.), with many possible conversion routes and products. Currently, biomass is not just viewed as a source of biofuels, but also as an interesting feedstock for the production of bio-based chemicals that could largely replace petrochemicals. In this context, the search for new sustainable and efficient alternatives to fossil sources is gaining increasing relevance within the chemical industry. There, the role of catalysis is often critical for the development of clean and sustainable processes, aiming to produce commodity chemicals or liquid fuels with a high efficiency and atom economy. This book gathers works at the cutting edge of investigation in the application of catalysis, for the sustainable conversion of biomass into biofuels and bio-based chemicals.
Technology: general issues --- bamboo --- pretreatment --- magnetic solid acid --- corncob --- reducing sugar --- wood waste --- biofuel --- lignocellulosic biomass --- NaOH pretreatment --- anaerobic co-digestion --- biomass --- waste seashell --- aldol condensation --- heterogeneous catalyst --- hydrogenolysis --- polyols --- monosaccharides --- hemicelluloses extracted liquor --- ReOx-Rh/ZrO2 catalysts --- sulfonated hydrothermal carbon --- solketal --- sulfonic solids --- ketalization --- continuous flow --- aerobic oxidation --- ruthenium --- heterogeneous catalysis --- lignin valorization --- guaiacyl glycerol-β-guaiacyl ether --- pyrolysis --- ketonisation --- bio-oil --- turnover frequencies (TOFs) --- biomass-derived aqueous phase upgrading --- olefin production --- oxide catalyst zinc-zirconia --- bauxite --- Li2CO3 --- transesterification --- soybean oil --- glucose --- 5-hydroxymethylfurfural --- LTL-zeolites --- used cooking oil --- deoxygenation --- decarboxylation --- decarbonylation --- nickel --- copper --- iron --- platinum --- hydrocarbons --- algae --- thermochemical conversion --- catalytic upgrading --- high-grade liquid fuel --- bamboo --- pretreatment --- magnetic solid acid --- corncob --- reducing sugar --- wood waste --- biofuel --- lignocellulosic biomass --- NaOH pretreatment --- anaerobic co-digestion --- biomass --- waste seashell --- aldol condensation --- heterogeneous catalyst --- hydrogenolysis --- polyols --- monosaccharides --- hemicelluloses extracted liquor --- ReOx-Rh/ZrO2 catalysts --- sulfonated hydrothermal carbon --- solketal --- sulfonic solids --- ketalization --- continuous flow --- aerobic oxidation --- ruthenium --- heterogeneous catalysis --- lignin valorization --- guaiacyl glycerol-β-guaiacyl ether --- pyrolysis --- ketonisation --- bio-oil --- turnover frequencies (TOFs) --- biomass-derived aqueous phase upgrading --- olefin production --- oxide catalyst zinc-zirconia --- bauxite --- Li2CO3 --- transesterification --- soybean oil --- glucose --- 5-hydroxymethylfurfural --- LTL-zeolites --- used cooking oil --- deoxygenation --- decarboxylation --- decarbonylation --- nickel --- copper --- iron --- platinum --- hydrocarbons --- algae --- thermochemical conversion --- catalytic upgrading --- high-grade liquid fuel
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