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The Berlin workshop concluded that the real figure ______.
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Amagnetoisatechnicaltermfor
Thefueltankshada{{U}}capacity{{/U}}of140liters.
{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
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{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
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{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
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{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
Thephraseturningoutinthelastparagraphcouldbebestreplacedby
{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
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{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
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{{*HTML*}}??阅读下面的短文文中有15处空白每处空白给出了4个选项请根据短文的内容从4个选项中选择1个最佳答案 {{B}}??????? ??????????? ??????????LessIs More{{/B}}??Itsoundsallwrong—drillingholesinapieceofwood tomakeitmoreresistanttoknocks.Butitworksbecausetheenergyfromthe blowgetsdistributedthroughoutthewoodratherthanfocusingononeweakspot. Thediscoveryshouldleadtomoreeffectiveandlighterpackaging materials.??Carpentershaveknown{{U}}?51 ?{{/U}}centuriesthatsomewoodsaretougherthanothers.Hickory山核桃木for examplewasturnedintoaxehandlesandcartwheelspokes轮辐becauseitcan absorbshockswithoutbreaking.Whiteoakforexampleismuchmoreeasily damaged{{U}}?52?{{/U}}itisalmostasdense.JulianVincentatBathe Universityandhisteamwereconvincedthewood’sinternalstructurecould explainthedifferences.??Manytreeshavetubular管的vessels thatrun{{U}}?53?{{/U}}thetrunkandcarrywatertotheleaves.Inoak theyarelargeandarrangedinnarrowbandsbutinhickorytheyaresmaller andmoreevenlydistributed.Theresearchers{{U}}?54?{{/U}}thislayout mightdistributeablow’senergythroughoutthewoodsoakingupabiggerhit. Totesttheideatheydrilledholes0.65millimetresacrossintoablockof spruce云杉awoodwith{{U}}?55?{{/U}}vesselsandfoundthat{{U}} ?56?{{/U}}withstoodaharderknock.{{U}}?57?{{/U}}when thereweremorethanabout30holespersquarecentimetredidthewood’s performancedropoff.??Auniformsubstancedoesn’tcopewellwith knocksbecauseonlyasmallproportionofthematerialisactually{{U}}?58 ?{{/U}}.Alltheenergyfromtheblowgoestowardsbreakingthematerialin oneortwoplacesbutoftenthepiecesleft{{U}}?59?{{/U}}are pristine未经破坏的.??Butinsteadoftheenergybeingconcentrated inoneplacetheholesprovidemanyweakspotsthatallabsorbenergyasthey breaksaysVincent.Youarecontrollingtheplaces{{U}}?60?{{/U}}the woodbreaksanditcanthenabsorbmore{{U}}?61?{{/U}}moresafely. ??Theresearchersbelievetheprinciplecouldbeappliedtoany material—{{U}}?62?{{/U}}exampletomanufacturelighterandmore protectivepackaging.Itcould{{U}}?63?{{/U}}beusedincarbumpers crashbarriersandarmourformilitaryvehiclessaysUlrikeWegst{{U}} ?64?{{/U}}theMaxPlankInstituteforMentalResearchinStuttgart. Butsheemphasizesthatyou{{U}}?65?{{/U}}todesignthesubstancewith thedirectionofforceinmind.Thedirectionofloadingiscrucialshe says.
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