exper中文翻譯,exper是什么意思,exper發(fā)音、用法及例句
- 內容導航:
- 1、exper
- 2、專(zhuān)業(yè)的英文翻譯
1、exper
exper發(fā)音
英: 美:
exper中文意思翻譯
常見(jiàn)釋義:
Exper
exper雙語(yǔ)使用場(chǎng)景
1、Case-based reasoning (CBR) is a general paradigm for problem solving based on the recall and reuse of specific exper.───基于實(shí)例的推理技術(shù)利用過(guò)去的設計以及設計經(jīng)驗來(lái)求解新問(wèn)題。
2、experiment shows that the test system has well accurate and reliable and provides the exper…───試驗驗證表明,所建系統具有較好的準確性和可靠性,為進(jìn)一步研究提供了試驗基礎。
3、structure and construction of the system was described, the property of the system was proven with a study on the balancing exper…───描述了該系統的組成結構和實(shí)現方法,通過(guò)對實(shí)驗轉子動(dòng)平衡測量的研究證明了系統的性能。
4、They turn the day-to-day uninteresting jobs into a learning exper ence.───他們使乏味的日常工作變成一種學(xué)習的經(jīng)驗。
5、Objective To summarize our exper ie nce in anaesthetic management during the resection of intratracheal tumor.───目的總結氣管內腫瘤切除與氣道重建術(shù)的麻醉經(jīng)驗。
exper相似詞語(yǔ)短語(yǔ)
1、exper fences───exper圍欄
2、專(zhuān)業(yè)的英文翻譯
Another
useful
method
for
investigating
the
kinetics
of
Li
dif-
fusion
and
phase
transformation
is
potential-step
chronoamper-
ometry
(PSCA),
which
was
successfully
used
for
understanding
the
charge–discharge
behavior
of
graphite
anodes
[15,19].
用于研究鋰擴散和相變動(dòng)力學(xué)的另一種有用的方法是電位階躍計時(shí)電流法(PSCA),他曾成功應用于了解石墨陽(yáng)極的充放電行為15,19。
In
this
paper,
we
made
an
effort
to
understand
the
effect
of
phase
transformation
on
the
reaction
kinetics
of
LiFe0.9
Mg0.1
PO4
in
two-phase
regions
by
two
different
exper-
imental
techniques
i.e.
potential-step
chronoamperometry
and
EIS
with
different
potentiostatic
signal
amplitudes.
在本文中,我們?yōu)榱私庀嘧儗Χ鄥^中LiFe0.9
Mg0.1
PO4反應動(dòng)力學(xué)的影響做了努力,其中采用了兩種實(shí)驗技術(shù),即電位階躍計時(shí)電流法和EIS法,以及不同的恒電位信號幅值。The
reason
to
select
LiFe0.9
Mg0.1
PO4
material
is
because
it
shows
both
a
high
Li-ion
diffusion
ability
and
an
electronic
conductivity
[8],
and
the
phase
transformation
during
the
charge
and
discharge
may
be
a
controlling
step
for
its
rate
capability.
選擇LiFe0.9
Mg0.1
PO4材料的理由是因為它顯示出高的鋰離子擴散能力,以及高的電子電導率8,在充電和放電過(guò)程中的相變可能成為其速率能力的一個(gè)控制步驟。
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