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聊天机器人无法满足作者身份要求,因为它们无法理解作者的角色或对论文负责。聊天机器人无法满足国际医学期刊编辑委员会 (ICMJE) [ 4 ] 的作者身份标准,特别是对手稿的最终批准和对工作负责的要求。聊天机器人无法理解利益冲突声明,也没有签署声明的法律地位。聊天机器人与其创造者没有任何独立关系。他们不能拥有版权。提交稿件的作者必须确保所有被列为作者的人都符合作者身份标准,这显然意味着聊天机器人不应被列为作者。
在此期刊以前的回忆录中,已在回忆录中详细解释了头脑化的原则,*我将参考该主题的详细插图。在这些插图中,读者的注意力尤其引起了甲壳类动物的注意,从1837年至1855年至1855年至1855年 - 在我面前,我对哪个超过一半的时间进行了研究。It cannot fail to be perceived, in the review, that, with ele- vation in grarle among the Decapods, for example-passing upward along the line of Macrural forms to the Brachyural (or fr:om the lowest of shrimp-like species to crabs)-there is in general, with the rising grade, an abbreviation relatively of the abdomen, an abbreviation also of the cephalothorax and天线和其他头膜器官,以及在结构之前和后面的压实;腹部的变化从 *有关以前关于头化的论文的变化,请参见本期刊,= ii,14,1856; = xv,65,xxxvi,1,159,321,440,1863; xxxvii,10,157,1864; Xli,163,1866。在这些论文中提出的一个点,我会撤回,即:人类的前对成员从机车上转移到头孢菌系列类似于从甲壳类动物传递到decapod的转移到decapod类型的转移,或者从弧形类型或从弧形类型到昆虫类型。后者显然是结构转移,是甲壳类动物中的两个前对四肢,或者是昆虫类中的四肢,通过转移,严格地是头孢菌器官(与口腔系列有关),因此存在于大型物种部落中。但在人中,它仅是一种功能转移,类似于蜘蛛和四冠的病例,那里的前腿被适应在功能上以嘴或头部的功能,而没有结构转移,这将使它们自身以更高顺序的限制。
7.1。Troubleshooting and support ............................................................................................. 48 7.2.太阳能充电器没有反应症......................................................................................................................................................................................................................................................................................................................................................... 48 7.3。Solar charger is off ........................................................................................................ 48 7.3.1.PV电压太低......................................................................................................................................................................................................................................................................................... 49 7.3.2。PV voltage too low .............................................................................................. 50 7.3.3.Reverse PV polarity ............................................................................................. 50 7.3.4.安全继电器关闭。............................................................................................................................................................................................................................................................................................................................................................................................................................................. 51 7.4。太阳能充电器外部控制................................................................................................................................................................................................................................................................................................................................................................................................................... 51 7.5。Batteries are not being charged ......................................................................................... 53 7.5.1.Battery is full ..................................................................................................... 53 7.5.2.Battery not connected .......................................................................................... 54 7.5.3.Battery settings too low ......................................................................................... 55 7.5.4.Reverse battery polarity ........................................................................................ 55 7.5.5.Reverse PV polarity ............................................................................................. 55 7.6.电池充电不足..................................................................................................................................................................................................................................................................................... 55 7.6.1。Insufficient solar ................................................................................................. 56 7.6.2.太多的直流负载......................................................................................................................................................................................................................................................................................................................................................................................................... 56 7.6.3。Battery cable voltage drop ..................................................................................... 56 7.6.4.Wrong temperature compensation setting ................................................................... 57 7.7.电池充电................................................................................................................................................................................................. 57 7.7.1。Battery charge voltages too high .............................................................................. 57 7.7.2.电池无法应对均衡........................................................................................................................................................................................................................................... 57 7.7.3。Battery old or faulty ............................................................................................. 57 7.8.PV problems ............................................................................................................... 58 7.8.1.PV yield less than expected .................................................................................... 58 7.8.2.未达到全额输出................................................................................................................................................................... 59 7.8.3。Mixed PV panel types ........................................................................................... 59 7.8.4.MC4 connectors wrongly connected .......................................................................... 59 7.8.5.PV connections burned or melted ............................................................................. 59 7.8.6.Optimisers cannot be used ..................................................................................... 60 7.8.7.Ground current .................................................................................................. 60 7.8.8.PV voltage too high ............................................................................................. 60 7.9.Communication problems ................................................................................................ 60 7.9.1.VictronConnect app ............................................................................................. 60 7.9.2.Bluetooth ......................................................................................................... 60 7.9.3.VE.Direct port .................................................................................................... 61 7.9.4.VE.Smart communication ...................................................................................... 61 7.10.Error code overview ..................................................................................................... 62
discussion. To prepare for these discussions, you need to read the case beforehand (which I will remind you to do as we go). Cases hinge critically on students having read in advance, so to get a sense of whether students have read the cases, we will typically start with some basic ‘reading check' questions about the case content. I plan for these checks to be informal, but if I get the sense that students are not reading the cases ahead of time, I reserve the right to institute more formal “case quizzes.” HOMEWORK In addition to reading the cases and coming prepared for class discussions, your primary homework in this course will be competing in the MarkStrat simulation (see below). Specifically, you and your teammates will be required to submit seven weekly “decisions” about how to manage a simulated suite of products in a competitive market, competing against your classmates. These decisions will include what products to develop and bring to market, how to advertise them, where to sell them, and what market research to procure for future periods. Decisions will typically be due on Tuesdays and we will discuss the results of them—which impact your grade—weekly in class on Wednesdays. As you will see, the simulation cannot accept late decisions by design. In addition to these seven decisions, you will be asked to complete a short (~5ish) paper assignment as a team to demonstrate your mastery of the simulation at the end of the semester. MARKSTRAT (GROUP WORK) As indicated, the central assignment in this class is a team-based simulation, MarkStrat. You will be assigned by me to teams of 4-5 students and you will need to find time to work together (either