CH3I summary This file includes some ideas about dissociation of

Slides:



Advertisements
Similar presentations
Biomes Created by:. Name of Biome Here Type a summary of each students research here. Type a summary of each students research here. Insert pictures to.
Advertisements

Guide to Uploading Videos For staff needing to upload and save videos of students per Agency policy: AR7245b.
the Internet browser of choiceVidor ISD What is Internet Explorer? a Web browser* produced by the Microsoft Corporation *a software application used.
Planning 10 Learning Guide 15 Planning 10 Learning Guide 15 Money Management Chequing Accounts Click for next Watch this corner for prompts on when you.
Power supply cable Charge injection 3 channels readout (external cables to the scope) 3 channels readout (internal cables) Set up for reading two cards.
Lab book samples What goes in the lab book -- everything.
HBr, F 1  2, v´=1
The story unfolds… James Millen The story unfolds… – Group meeting 12/04/10.
HCl H+ signal near agust,heima,...januar09/V8_f3d2(alignment) vhw.pxp.
Vendor Managed Inventory Malnove’s Standard Approach.
Fig. 1. Fig. 2 Fig. 3 Fig. 4 Fig. 5 Comments: Judging from the unnormalized spectra (figs 4-5) C +, CH + and C 2 + (possibly also slight H + (?))
HBr, (updated ; slide 12) V(m+i) /HBr+(v+) spectra analysis
/t/ / I d/ /d/ Try Again Go on /t/ / I d/ /d/
DISQUALIFIED DIRECTORS SEARCH. To access Disqualified Director enquiry please type in on Internet at address Enter.
Proposed TC Issues Process Martin Chapman. Purpose An issues driven process helps to 1.Untangle un-conflate problems 2.Narrow focus to solving particular.
TODAY IN ALGEBRA…  Warm Up: Graphing Linear Equations and solving for y.  Learning Goal: 7.1 You will solve systems on linear equations by Graphing 
How to be a Leader Harrison Huskies are learning to be leaders every day!
Writing Paragraphs English I Page WHAT IS A PARAGRAPH? A paragraph usually contains a general idea in one sentence, and supporting sentences.
Plan for HBr VMI experiments in FORTH, autumn 2014 & progress -one and two-color experiments States to study……………………………………………….2-3 Rotational lines……………………………………………….4-5.
Eirík´s project(?) CH3I: agust,www,...rempi/ch3i/PPT ak.ppt ( )
Reinvestigation of The Emission Spectra Following the 266 nm Photolysis of Iodomethanes Cian-Ping Tu, Hsin-I Cheng, and Bor-Chen Chang Department of Chemistry.
HBr, V(m+8), one-color, VMI One-color: KER spectra VMI, V(m+8) vs J´(=J´´)…………………………………2 Branching ratios……………………………………………………………..3-4 Angular distributions………………………………………………………5-7.
How to separate videos 2014 May 21 VisionDrive Co. Ltd.
IR photodepletion and REMPI spectroscopy of Li(NH 2 Me) n clusters Tom Salter, Victor Mikhailov, Corey Evans and Andrew Ellis Department of Chemistry International.
网上报账系统包括以下业务: 日常报销 差旅费报销 借款业务 1. 填写报销内容 2. 选择支付方式 (或冲销借款) 3. 提交预约单 4. 打印预约单并同分类粘 贴好的发票一起送至财务 处 预约报销步骤: 网上报账系统 薪酬发放管理系统 财务查询系统 1.
1)  n  ←  m  fast pump excitation ll mm  k k nn The general view was that it would be impossible or at least very difficult to achieve.
海港自由貿易港區及自由經濟示範區之加值作業
Using the Correct Order Template Copy the presentation to your hard drive. Open the slides using slide sorter and copy slides #3, 4, and 5 for each question.
TITLE OF YOUR PROJECT.
36 x 2 = ? A) 36 B) 72 C) 48 D) 76.
CH3Br, one-color exp.: CHn+, iBr+ and CiBr+ ions vs CH3Br(Ry) states: Content: pages:
Inside My Body Pt.2.
Communicating using your PCP
CH3I VMI-REMPI data and analysis:
Applying the Deep learning technique to NA49/61 data.
Proposed TC Issues Process
معلم الصف الثالث الابتدائي
Probability.
Virtual Memory Management
Telling the time..
Here is a Suggested Way to Use MML to Study
Content: - Comparison of CH3 and CH2 KER - KER assignment for the two color experiment dissociation at 270 nm and probing of CH3 at nm (211 transition)
H(0), one-color, VMI and slicing images
ФОНД “СОЦИАЛНО ПОДПОМАГАНЕ”
2 color VMI exp. CH3(X;v1v2v3v4) detection; hi
Use Twos and Threes to Make Five.
Welcome to It’s Anybody’s Guess.
How to Take Cornell Notes
START.
Quiz Name Here Click to start.
Quiz Name Here Click to start.
Telling the time Half past.
CH3I summary This file includes some ideas about dissociation of
Sorry I’m not with you today, all of your 2D design work from last lesson has now been laser cut, ready for you to paint next lesson Use the internet to.
CH3I VMI-REMPI data and analysis:
Why do you get stuck?.
Research Methods: The Experimental Method
Telling the time Half past.
MATH (CALCULATOR) PRACTICE TEST
CH3Br Negative particle detections; Electrons /PES:
MATH (NO CALCULATOR) PRACTICE TEST
The names/ s of all my invitees here – see notes below
Electron Transfer in cluster Anions:
½ of 6 = 3.
Title of Presentation (your names).
Think, pair, share ACTIVITY
Directions to play game
Insert Presentation Title Here Insert Presentation Summary Here
Stem and Leaf Plots Stem and leaf plot is used to organize data.
第6级 Let’s read.
Presentation transcript:

CH3I summary This file includes some ideas about dissociation of CH3I inside a cluster, as suggested previously by Petros It seems to be the only explanation of the very fast iodine Update: 171020; i.e. from PG´s e-mail „Re: CH3I experiments and analysis;UPDATES “

CH3

Transition 1: CH3 (set 1) 20-09-2017, CH3I at 358.835 nm, CH3 fragments

Transition 1: CH3 (set 2) 28-09-2017, CH3I at 358.835 nm, CH3 fragments

Transition 1: CH2 (set 1, space charge) 20-09-2017, CH3I at 358.835 nm, CH2 fragments

Transition 1: CH2 (set 2) 19-10-2017, CH3I at 358.835 nm, CH2 fragments

Transition 1: CH2 (set 3) 19-10-2017, CH3I at 358.835 nm, CH2 fragments

Transition 1: Iodine (set 2, irises low) 20-09-2017, CH3I at 358.835 nm, iodine, irises low

Transition 1: Iodine (set 3) 28-09-2017, CH3I at 358.835 nm, iodine

Off resonance (close to transition 1): CH3 28-09-2017, CH3I at 359.100 nm, CH3 fragments

Off resonance (close to transition 1): Iodine 28-09-2017, CH3I at 359.100 nm, iodine

Transition 2: CH3 (set 1, VMI) 20-09-2017, CH3I at 339.467 nm, CH3 fragments

Transition 2: CH3 (set 2, space charge) 29-09-2017, CH3I at 339.444 nm, CH3 fragments

Transition 2: CH3 (set 3, space charge) We did not record z here 29-09-2017, CH3I at 339.444 nm, CH3 fragments

Transition 2: CH3 (set 4) 12-10-2017, CH3I at 339.467 nm, CH3 fragments

Transition 2: CH2 (set 1, space charge) 29-09-2017, CH3I at 339.444 nm, CH2

Transition 2: CH2 (set 2) 13-10-2017, CH3I at 339.467 nm, CH2

Transition 2: Iodine 29-09-2017, CH3I at 339.444 nm, iodine

Transition 3: CH3 (set 1, space charge) 02-10-2017, CH3I at 336.979 nm, CH3 fragments

Transition 3: CH3 (set 2) 12-10-2017, CH3I at 336.979 nm, CH3 fragments

Transition 3: Iodine 02-10-2017, CH3I at 336.979 nm, iodine

Transition 4a: CH3 (space charge) 03-10-2017, CH3I at 336.357 nm, CH3 fragments

Transition 4a: CH3 (good series, x was not finished due to the laser malfunction, try again) 13-10-2017, CH3I at 336.357 nm, CH3 fragments

Transition 4a: CH3 19-10-2017, CH3I at 336.357 nm, CH3 fragments

Transition 4a: Iodine 03-10-2017, CH3I at 336.357 nm, iodine

Transition 4b: CH3 03-10-2017, CH3I at 335.735 nm, CH3 fragments

Transition 4b: Iodine 04-10-2017, CH3I at 335.735 nm, iodine

Transition 4c: CH3 04-10-2017, CH3I at 333.902 nm, CH3 fragments

Transition 4c: Iodine 04-10-2017, CH3I at 333.902 nm, iodine

Transition 6: CH3 10-10-2017, CH3I at 324.502 nm, CH3

Transition 6: Iodine 10-10-2017, CH3I at 324.502 nm, Iodine

Transition 7: CH3 05-10-2017, CH3I at 317.120 nm, CH3 fragments

Transition 7: Iodine 05-10-2017, CH3I at 317.120 nm, iodine

Transition 8: CH3 (space charge) 06-10-2017, CH3I at 310.146 nm, CH3

Transition 8: CH3 (good series) 09-10-2017, CH3I at 310.146 nm, CH3

Transition 8: Iodine 06-10-2017, CH3I at 310.153 nm, iodine

Transition 8: Iodine 09-10-2017, CH3I at 310.146 nm, iodine

Transition 9: CH3 was not recorded due to a very low signal

Transition 9: Iodine 10-10-2017, CH3I at 309.110 nm, iodine

Transition 9: CH3 11-10-2017, CH3I at 309.759 nm, CH3 fragments

Transition 9: Iodine 11-10-2017, CH3I at 309.759 nm, iodine

Transition 10: CH3 (no signal) 20-10-2017, CH3I at 298.788 nm, CH3

Transition 10: Iodine 20-10-2017, CH3I at 298.788 nm, iodine

Transition 11: CH3 (set 1, VMI) 25-09-2017, CH3I at 294.800 nm, CH3 (VMI)

Transition 11: CH3 (set 2) 20-10-2017, CH3I at 294.800 nm, CH3

Transition 11: Iodine 25-09-2017, CH3I at 294.800 nm, Iodine

Transition 12: CH3 22-09-2017, CH3I at 286.586 nm, CH3 fragments

Transition 12: Iodine 22-09-2017, CH3I at 286.586 nm, iodine

Off resonance (close to transition 12): CH3 26-09-2017, CH3I at 286.600 nm, CH3

Off resonance (close to transition 12): Iodine 26-09-2017, CH3I at 286.600 nm, iodine