英文学术报告范例 PPT
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英文学术报告(课堂PPT)

11
EVALUATION
B. Comparison to PESQ
2) Variable Rate
No Image
Prediction error: SILK versus PESQ for fixed-rate tracks
A similar comparison was also conducted for variable tracks,
5
PROPOSED MODEL
B. Variable-Rate Model
where the effect of change frequency is distributed to the logarithm term, and the effect of hr and lr is distributed to the two subroutines, SCALE() and SHIFT() .
Accuracy of prediction
10
EVALUATION
B. Comparison to PESQ
1) Fixed Rate
Prediction error: SILK versus PESQ for fixed-rate tracks
For the fixed-rate comparison, we included tracks in both the preliminary and large-scale experiment
13
Thank You !
14
B. Network Design
A solid understanding of multimedia content is fundamental to better engineering of the network applications.
EVALUATION
B. Comparison to PESQ
2) Variable Rate
No Image
Prediction error: SILK versus PESQ for fixed-rate tracks
A similar comparison was also conducted for variable tracks,
5
PROPOSED MODEL
B. Variable-Rate Model
where the effect of change frequency is distributed to the logarithm term, and the effect of hr and lr is distributed to the two subroutines, SCALE() and SHIFT() .
Accuracy of prediction
10
EVALUATION
B. Comparison to PESQ
1) Fixed Rate
Prediction error: SILK versus PESQ for fixed-rate tracks
For the fixed-rate comparison, we included tracks in both the preliminary and large-scale experiment
13
Thank You !
14
B. Network Design
A solid understanding of multimedia content is fundamental to better engineering of the network applications.
英文文献报告PPT模板

Detailed introduction to the experimental
02
design and implementation process of theme
three
03
Evaluate the experimental results and
conclusions of Topic Three
Research field
Covering multiple disciplines such as biology, chemistry, physics, etc., mainly focusing on the application and progress of XXX theme in various fields.
STEP 03
This can include the position, unit, or school name of the reporter.
If necessary, you can add your contact information or email address below your name.
英文文献报告ppt模 板
• cover • catalogue • Literature review • research method • Research findings and discussions • conclusion • References • Thanks
目录
Part
01
Theme Four
01
Introduce the research field and current situation of Topic Four
英文报告ppt模板

Experimental design
01
Designing experiments to test specific hypotheses and
explore causal relationships
Qualitative research
02
In depth interviews, observations, and case studies to
Main body
This section should include the main content of the report, divided into coronary subsections with clear headings
Use bullet points or numbered lists to present information in a consensus and organized manager
based on the information presentation
Indicate what further steps or actions need to be taken as a
result of the report
Appendix
If there is any supplementary information that is relevant to the report, it should be included in an appendix at the end
CHAPTER
Introduction
Start with a brief overview of the topic covered in the report
英文学术汇报ppt模板

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2
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occaecat cupidatat non proident, sunt in culpa qui officia deserunt.
Eiusmod Chart
Lorem ipsum dolor sit amet, consectetur adipisicing elit, sed do eiusmod tempor incididunt ut labore et dolore magnanderit in voluptate velit esse cillum dolore eu fugiat nulla pariatur. Excepteur sint occaecat cupidatat non proident, sunt in culpa qui officia deserunt mollit anim id est laborum.
优秀学术报告PPT示例(Identified Particle Production)

F.Karsch, Lect.Notes.Phys 583, 209 (2002)
Understanding the transition as a change of the number of degrees of freedom: Below Tc : dilute gas of 3 states of pions Above Tc : for 2 flavors we have
2
Comparative Nuclear Physics II
In this work we will be comparing particle production at
Center of Mass Energy: √s=200GeV Different nuclear environments:
The goal of Comparative Literature is:
“…to compare literature in different languages and literature with relation to some other field…” “…compare properties of particle production in different nuclear environments and as a function of particle flavor…”
3
Relativistic Heavy Ion Collider Brookhaven National Lab 2 counter-circulating rings 3.834 km circumference Superconducting magnets(3.5T) 192 dipoles per ring 246 quadrupoles per ring Time between collisions: 0.213 microseconds Crossing angle: 0 Bunch length: 20 cm Bunches per ring: 56 Luminosity lifetime: 3-10 hours Particles per bunch (units 1010):
Understanding the transition as a change of the number of degrees of freedom: Below Tc : dilute gas of 3 states of pions Above Tc : for 2 flavors we have
2
Comparative Nuclear Physics II
In this work we will be comparing particle production at
Center of Mass Energy: √s=200GeV Different nuclear environments:
The goal of Comparative Literature is:
“…to compare literature in different languages and literature with relation to some other field…” “…compare properties of particle production in different nuclear environments and as a function of particle flavor…”
3
Relativistic Heavy Ion Collider Brookhaven National Lab 2 counter-circulating rings 3.834 km circumference Superconducting magnets(3.5T) 192 dipoles per ring 246 quadrupoles per ring Time between collisions: 0.213 microseconds Crossing angle: 0 Bunch length: 20 cm Bunches per ring: 56 Luminosity lifetime: 3-10 hours Particles per bunch (units 1010):
外文学术报告ppt模板

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34.6 46.9 38.6 27.4 38.6 90 38.6 34.6 45 46.9 46.9
27.4
27.4
2002 East West
2003 North
2002 East
2003 West North
2002
Diagram
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英文学术报告范例ppt演示课件

Leabharlann c c3 c2(c3
0.2c2
0.8
)
Strain hardening branch: c1 p c2
c
Horizontal branch: c3 p c
c c3 c2
( c3
0.2c2
0.8 )
Descending branch: c3 p c
0.2c
8
Comparison of stress-strain curves
4
Experimental Program
Table 1. Specimen Information of Each Group
Test series Specimen shape
Specimen size/mm
UHTCC
Prism
40×40×160
Matrix
Prism
40×40×160
Specimen
12
For serial number from 6 to 9, the water-binder ratio was varied from 28 to 35% with other parameters constant.
For serial number from 10 to 13, the mineral admixturebinder ratio was varied from 50 to 80% with other parameters constant.
6
Results
Comparison of strain at peak stress
Fig. 3. Comparison of strain at peak stress between UHTCC and matrix
0.2c2
0.8
)
Strain hardening branch: c1 p c2
c
Horizontal branch: c3 p c
c c3 c2
( c3
0.2c2
0.8 )
Descending branch: c3 p c
0.2c
8
Comparison of stress-strain curves
4
Experimental Program
Table 1. Specimen Information of Each Group
Test series Specimen shape
Specimen size/mm
UHTCC
Prism
40×40×160
Matrix
Prism
40×40×160
Specimen
12
For serial number from 6 to 9, the water-binder ratio was varied from 28 to 35% with other parameters constant.
For serial number from 10 to 13, the mineral admixturebinder ratio was varied from 50 to 80% with other parameters constant.
6
Results
Comparison of strain at peak stress
Fig. 3. Comparison of strain at peak stress between UHTCC and matrix
优秀学术报告PPT示例(Ari Koskinen)

Development pipeline
Ari Koskinen Laboratory of Organic Chemistry
Top 10 Therapies
December 6, 2004 Volume 82, Number 49 pp. 18-29
Ari Koskinen Laboratory of Organic Chemistry
in vivo
LEAD
in vivo
Rational Approach
Disease gene
in vitro or in vivo in vitro
Validated target
Transgenic animals
LEAD
design
Ari Koskinen Laboratory of Organic Chemistry
Drug Development Paradigms
TARGET IDENTIFICATION
General combinatorial libraries Biased combinatorial libraries
LEAD GENERATION
LEAD OPTIMIZATION
Structural chemistry
Basis set of 100 (e.g. carbohydrates)
1004 1005 Units 10003
The problem of combinatorial synthesis is not that of making compounds, but that of finding ways to select and identify the compounds:
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Ascending branch:c1c2
c3cc2(c30.2c20.8)
Strain hardening branch: c1pc2
Horizontal branch: c3pc c3cc2(c30.2c20.8)
Descending branch: c3pc
0.2c
Comparison of stress-strain curves
➢ Comparison of compressive strength between UHTCC and matrix
➢ Comparison of strain at peak stress between UHTCC and matrix
A theoretical stress-strain curve model Conclusions
Results
Comparison of strain at peak stress
Fig. 3. Comparison of strain at peak stress between UHTCC and matrix
大家应该也有点累了,稍作休息
大家有疑问的,可以询问和交流
Theoretical model
Comparison of compressive strength
Conclusions
The prism compressive strength decreases because of the fiber addition.
The strain at peak stress is larger than that of matrix because of the fiber addition
structural applications are limited
Experimental Program
Experimental Program
Results
Comparison of compressive strength
Fig. 1. Comparison of prism compressive strength between UHTCC and matrix
The chart shows the comparison between the predictions and the test data of UHTCC
The predicted curves are obtained by using the experimental strain value at peak stress instead of the fixed value of 0.002.
A theoretical model is provide which is needed for modeling its mechanical behavior or for permitting its use in various structural applications.
Background
Numbers of studies carried out
➢ permeability and carbonation properties ➢ tensile and bending properties ➢ freeze-thaw properties
no uniform test available for the compressive properties
Experimental Study on Compressive Properties of Ultrahigh Toughness Cementitious Composites
Layout
Background Experimental Program Experimental Results
c3cc2(c30.2c20.8)
Strain hardening branch: c1pc2
Horizontal branch: c3pc c3cc2(c30.2c20.8)
Descending branch: c3pc
0.2c
Comparison of stress-strain curves
➢ Comparison of compressive strength between UHTCC and matrix
➢ Comparison of strain at peak stress between UHTCC and matrix
A theoretical stress-strain curve model Conclusions
Results
Comparison of strain at peak stress
Fig. 3. Comparison of strain at peak stress between UHTCC and matrix
大家应该也有点累了,稍作休息
大家有疑问的,可以询问和交流
Theoretical model
Comparison of compressive strength
Conclusions
The prism compressive strength decreases because of the fiber addition.
The strain at peak stress is larger than that of matrix because of the fiber addition
structural applications are limited
Experimental Program
Experimental Program
Results
Comparison of compressive strength
Fig. 1. Comparison of prism compressive strength between UHTCC and matrix
The chart shows the comparison between the predictions and the test data of UHTCC
The predicted curves are obtained by using the experimental strain value at peak stress instead of the fixed value of 0.002.
A theoretical model is provide which is needed for modeling its mechanical behavior or for permitting its use in various structural applications.
Background
Numbers of studies carried out
➢ permeability and carbonation properties ➢ tensile and bending properties ➢ freeze-thaw properties
no uniform test available for the compressive properties
Experimental Study on Compressive Properties of Ultrahigh Toughness Cementitious Composites
Layout
Background Experimental Program Experimental Results