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Manual Freezers Verticales FE22-FE26 100%

23 8.1 Freezer Vertical FE22 ...................................................................................................................................

https://www.pdf-archive.com/2017/07/28/manual-freezers-verticales-fe22-fe26/

28/07/2017 www.pdf-archive.com

Transformer and inducots 93%

• 100KHz~300KHz Operating Frequency • 0.5W~200W Power Capacity Range • PCB Installation Vertical Or Horizontal ETD Series High-frequency Transformer:

https://www.pdf-archive.com/2017/11/22/transformer-and-inducots/

22/11/2017 www.pdf-archive.com

Jammers4u CT-4035-UAV Man Pack Anti-Drone UAV Jammer 93%

CT-4035-UAV Man Pack Jammer Man Pack Anti-Drones UAV Max 102W, 5 Bands, 1 - 2 Hours Built-in Battery 4 Bands in One Directional Antenna Specification CT-4035 5 Bands Four Bands in One Directional Antenna 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth (Vertical Polarization) 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth (Horizontal Polarization) GPS L1 + GLONASS L1 :40W 1570-1620MHz 5.7GHz-5.9GHz:

https://www.pdf-archive.com/2016/08/10/jammers4u-ct-4035-uav-man-pack-anti-drone-uav-jammer/

10/08/2016 www.pdf-archive.com

VMM Job Posting 92%

  Winchester Electronics, established in 1941, is a leader in the design, development, and  deployment of interconnect technology...globally. Winchester designs and manufactures an  extensive range of interconnect products, including PCB, RF, and Power connectors as well as  value­added cable and electromechanical assemblies, with modern, electronically linked design,  manufacturing, and distribution facilities located worldwide. Winchester Electronics has an  immediate opening for a Vertical Marketing Manager ­ Medical Market located at our Corporate  Headquarters in Norwalk, CT. This position reports directly to the Director of Business  Development.    The Vertical Marketing Manager (VMM)­ Medical Market will be responsible for helping to  develop new business and create market awareness for a specific vertical market both  domestically and internationally. The VMM will play a key role in Winchester’s team selling  approach as they help guide the salesforce with where to target new business within their end  market and also help project manage opportunities once they are active. The VMM will be a  subject matter expert regarding industry issues, economic and technological trends, competitive  due diligence, and positioning and messaging for their respective vertical markets.      Essential Duties and Responsibilities:  ● Intimate understanding of Winchester’s capabilities, key value propositions and  messaging for solutions within assigned vertical markets.  ● Responsible for leading all marketing activities for assigned vertical markets, including  marketing campaigns that target application niches, new product introductions, and key  account management.   ● Identify activities that will maximize opportunities for market awareness and demand  creation for specific vertical markets (ex ­ end market specific trade shows).  ● Analyze key market trends and requirements to help shape an overall end market  strategy.  ● Work collaboratively with business unit resources and the sales team to develop  collateral and sales tools.  ● Proactively work with sales to develop geographic specific marketing plans to support  market penetration and sales objectives for the sales team.  ● Routinely track and report on key sales performance indicators (through salesforce.com)  for their end market.  ● Assist with the development of pricing strategies and quoting activities.          Requirements:  ● Bachelors degree in business, sales or marketing plus five years of experience in  marketing and sales or any equivalent combination of education and experience.  ● Skilled with PC’s and Microsoft Office software including word processing, spreadsheet,  presentation and Outlook.  ● Experience with Google applications and salesforce.com a plus, but not required.  ● The position requires both domestic and international travel up to 25%. The successful  candidate will be willing and able to meet travel requirements.       Interested candidates should send their cover letter, resume and salary requirements to  j.mcintyre@winchesterelectronics.com.    Equal Opportunity Employer: Minority/Female/Protected Veteran/Individual with Disabilities are  encouraged to apply.      

https://www.pdf-archive.com/2016/03/15/vmm-job-posting/

15/03/2016 www.pdf-archive.com

Karim Mahmoud CV:Portfolio 92%

PRINCIPAL ANALYSIS Outline of both the plan and elevation complies to a vertical line of symmetry Outline of both the plan and elevation complies to a Interior of the main house also complies to a vertical line of symmetry vertical axis of symmetry Outline of both plan and elevation complies to a strict vertical line of symmetry.

https://www.pdf-archive.com/2016/03/11/karim-mahmoud-cv-portfolio/

11/03/2016 www.pdf-archive.com

CT-3047 4 Bands Anti-Drone UAV Jammer DC 12V 92%

CT-3047-UAV Anti-Drones UAV Max 82W, 4 Bands, DC 12V, Using Normal Car Battery or AC 110V /220V Power Supplier 4 Bands in One Directional Antenna Specification CT-3047-UAV 4 Bands Four Bands in One Directional Antenna 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth (Vertical Polarization) 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth (Horizontal Polarization) GPS L1 + GLONASS L1 Hz:40W 1570-1620MHz 5.7GHz-5.9GHz:

https://www.pdf-archive.com/2016/08/10/ct-3047-4-bands-anti-drone-uav-jammer-dc-12v/

10/08/2016 www.pdf-archive.com

3076B-UAV High Power Anti-Drone Pelican Jammer 92%

Omni Antenna Four Bands in One Directional Antenna 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth ( Vertical Polarization) 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth ( Horizontal Polarization) GPS L1 + GLONASS L1 :40W 1570-1620MHz 5.7GHz-5.9GHz:

https://www.pdf-archive.com/2016/08/10/3076b-uav-high-power-anti-drone-pelican-jammer/

10/08/2016 www.pdf-archive.com

CT-4035H-UAV Man Pack Anti-Drone UAV Jammer 15W 5GHz 92%

Jammers4u CT-4035H-UAV Man Pack Jammer Man Pack Anti-Drones UAV Max 115W, 5 Bands, 1 - 2 Hours Built-in Battery 4 Bands in One Directional Antenna Specification CT-4035 5 Bands Four Bands in One Directional Antenna 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth (Vertical Polarization) 2.4-2.5GHz:20W WiFi 11.g, b, Bluetooth (Horizontal Polarization) GPS L1 + GLONASS L1 :40W 1570-1620MHz 5.7GHz-5.9GHz:

https://www.pdf-archive.com/2017/03/05/ct-4035h-uav-man-pack-anti-drone-uav-jammer-15w-5ghz/

05/03/2017 www.pdf-archive.com

D21.01 92%

YES Vertical Control: ... 83 Vertical Accuracy Convention:

https://www.pdf-archive.com/2017/12/19/d21-01/

19/12/2017 www.pdf-archive.com

TAG-01 92%

Vertical Control: ... 83 Vertical Accuracy Convention: Local Vertical Datum:

https://www.pdf-archive.com/2017/12/19/tag-01/

19/12/2017 www.pdf-archive.com

TAG-02 92%

Vertical Control: ... 83 Vertical Accuracy Convention: Local Vertical Datum:

https://www.pdf-archive.com/2017/12/19/tag-02/

19/12/2017 www.pdf-archive.com

TAG-03 92%

Vertical Control: ... 83 Vertical Accuracy Convention: Local Vertical Datum:

https://www.pdf-archive.com/2017/12/19/tag-03/

19/12/2017 www.pdf-archive.com

TAG-04 92%

Vertical Control: ... 83 Vertical Accuracy Convention: Local Vertical Datum:

https://www.pdf-archive.com/2017/12/19/tag-04/

19/12/2017 www.pdf-archive.com

2014 Ad Rates 91%

Sizes FOUR COLOR 1x 3x 6x Full page 2/3 page 1/2 page vertical 1/2 page island 1/2 page horizontal 1/3 page 1/4 page 1/6 page $2,984 $2551 $2465 $2422 $2271 $1989 $1924 $1643 $2,854 $2443 $2335 $2292 $2184 $1924 $1819 $1600 Full Page with bleed Size for bleed:

https://www.pdf-archive.com/2014/11/24/2014-ad-rates/

24/11/2014 www.pdf-archive.com

9 Karinya Place Concept Design 90%

Anthony Butt Stilus Design and Construction 17.05.2016 Outdoor BBQ and pool area concept design Specialising in outdoor entertainment areas Image Features  Timber Decking  BBQ Area and cupboards  Timber vertical screen  Vertical Garden Image Features  Pool Feature Screen (outdeco with led lights)  Planter Pots Image Features  Rear Vertical Screening (outdeco)  Polished Concrete Dining Table  Garden Beds Image Features  Polished Concrete Dining Table  Vertical Garden  Planter Bays  Timber Vertical Screen

https://www.pdf-archive.com/2016/05/18/9-karinya-place-concept-design/

18/05/2016 www.pdf-archive.com

Vex 89%

- Move between 2 different vertical points - Lethal upon contact - Move up through the ground  Volcanoes:

https://www.pdf-archive.com/2016/05/14/vex/

14/05/2016 www.pdf-archive.com

Rebuild America! 89%

What we need is a Maintain America Movement The Problem, Solution and Results to a sustainable source of jobs, income, reasonable taxes and a New America Nick Clark, TW3K Interactive, 8-22-07 In the US, other industrialized nations and in those countries that seek to emulate and even compete with us old pros, the concept of growth is largely a vertical construct.

https://www.pdf-archive.com/2011/08/31/rebuild-america/

31/08/2011 www.pdf-archive.com

how-to-jump-higher 89%

How to Jump Higher in 45 minutes A comprehensive approach to adding inst ant inches to your vertical.

https://www.pdf-archive.com/2014/01/28/how-to-jump-higher/

28/01/2014 www.pdf-archive.com

resume may2014 88%

Jeka on the effects of vertical visual perturbations on human body mechanics in walking Analyzing how random vertical oscillations of a subjects surroundings (controlled, in a virtual reality environment) affect the kinematics of the human body while subjects walk on a treadmill.

https://www.pdf-archive.com/2015/02/16/resume-may2014/

16/02/2015 www.pdf-archive.com

resume 88%

Resume    Diwakaran Ilangovan  Diwakaran Ilangovan, sophomore at Yale College  Date of Birth: September 1st, 1995  Diwakaran.ilangovan@yale.edu    Kinesiology Research at the University of Maryland Department of Kinesiology        11th – 12th grade  35 hrs/wk, 10 wks/yr  Research with Dr. John J. Jeka on the effects of vertical visual perturbations on human body  mechanics in walking  Analyzing how random vertical oscillations of a subjects surroundings (controlled, in a virtual  reality environment) affect the kinematics of the human body while subjects walk on a  treadmill. By analyzing the components of a subject’s surroundings separately, we can better  understand how the brain coordinates stimuli with responses.  o Created random signals for use in the experiment and also created the program that  coordinated the virtual  reality room’s displays with the signal  o Analyzed data of a wide range of fields, including general body movement data,   Electromyographical data, and eye movement data  o Identified Fourier transforms between the signals and the data  o Applied physical and mathematical findings to the biological task – identified key  features in the data that pointed to specific responses  o Produced data for analysis in future studies involving Parkinson's patients and  comparative tests with other types of perturbations  Full research paper submitted separately, see abstract below  Research paper entered in Intel Science Talent Search, selected as semifinalist on Jan 9, 2013.    Physics Team       Head captain of school physics team, 11th 12th grades  9th – 12th grade  3hrs/wk, 30 wks/yr  USAPhO (USA Physics Olympiad) Semifinalist (Approximately top 400 in the country) 10th, 11th,  12th grades  Physics Bowl Regional runner up, 9th grade    Math Team         Co‐Captain of school math team, 12th grade  9th – 12th grade  3 hrs/wk, 30 wks/yr  USAMO (USA Math Olympiad) Qualifier (Approximately top 270 in the country) 10th, 11th, 12th  grades  AIME (American Invitational Math Examination) Qualifier (Approximately top 5 percent in the  country) 7th‐12th grades  University of Maryland High School Math Competition Honorable Mention (Approximately top  50 in the state) 9th – 12th grades  Member of school PUMaC (Princeton University Math Competiton) A team, 5th, 6th, 2nd place in A  division in 10th, 11th, 12th grade respectively    Resume       Diwakaran Ilangovan  PUMaC individual finalist (at least within top 40) in A division 11th,12th grade  Member of school HMMT (Harvard MIT Math Tournament) A team, 8th, 9th, 6th place in A  division in 10th, 11th, 12th grade respectively  Member of school ARML (American Regional Math League) A team, 7th, 9th, 7th in 10th, 11th, 12th     Biology Club     Co‐founder and Co‐captain of school biology club, 12th grade  5 hrs/wk, 15 wks/yr  USABO (USA Biology Olympiad) Qualifier (Approximately top 10%), 11th, 12th grade    Computer Science     Montgomery Blair High School Computer Systems Operator (SysOp), 11th, 12th grade  USA Computing Olympiad (USACO) Silver division, 9th – 12th grade  Known languages  o Java  o C/C++/Objective C  o MATLAB  o LaTeX    Science Bowl       Captain, 11th, 12th grade  9th – 12th grade  3 hrs/wk, 20 wks/yr  Regional winners, 9th – 11th grade  National runner ups, 10th grade    Sai Seva Volunteer Work    Participant in Hindu volunteer organization to feed the needy in D.C., 11th, 12th grade  o 5 hrs/wk, 22 wks/yr  o Make and distribute healthy, vegetarian cuisine to the homeless in D.C., including  vegetable rice, potato curry, and red kidney bean curry  Works in association with the Lions Club Eyeglass recycling center, 11th, 12th grade  o 5hrs/wk, 12 wks/yr  o Help the Lions Club in recycling of used eyeglasses, including washing, identifying the  prescription, and packing for shipment to third world countries.    Varsity Volleyball     Member of team, 11th, 12th grade  15 hrs/wk, 10 wks/yr  Division champions in 2012    Tae‐Kwon‐Do/Karate     Began at age 5, continued until in 11th grade  3 hrs/wk, 50 wks/yr  Received black belt in 8th grade, second degree black belt in 10th grade    Resume    Diwakaran Ilangovan  The Perception of Vertical Visual Perturbation While Walking    Abstract:      By using the information our eyes collect from our surroundings, we can better stabilize  ourselves and keep in control of both standing and walking. Many studies have been done to  test the effects of horizontal and lateral visual motion, but no studies have been done of  vertical visual movement. In this study, we observed the effect that random vertical movement  of a subject’s surroundings has on the subject while walking on a treadmill, expecting that  perhaps a small but measurable response would be produced. The subjects were presented  with two different amplitude signals, while walking at 5 kilometers per hour, and their body  kinematics were measured. Frequency response functions were calculated, and the gains and  phases demonstrate interesting results – there is evidence of down‐weighting, the “ignoring” of  high amplitude perturbations that has been documented in other studies, and there are  noteworthy patterns in the gains across the frequencies studied. While reactions were stronger  in the lower frequencies in the Anterior‐Posterior direction, they were stronger in the higher  frequencies in the Medial‐Lateral direction. This is hypothesized to be because higher frequency  perturbations are also shorter period perturbations, and so they affect the subject in the span  of a single gait cycle. Phase plots show us other interesting patterns, for example an upward  movement of the vertical field leads to a forward movement of the body, which would indicate  how the body perceives these perturbations. These results together provide a compelling  argument that vertical visual feedback is in fact highly important in the maintenance of stability  of the body. The findings can be used in future studies that compare the responses of healthy  subjects to the responses of pathological walkers, which could lead to the discovery of the  causes of several types of walking disorders and corresponding treatments to help the suffering  individuals recover.   

https://www.pdf-archive.com/2015/05/25/resume/

25/05/2015 www.pdf-archive.com