Tuesday, August 25, 2020

Theatre Essay Example | Topics and Well Written Essays - 750 words

Theater - Essay Example Her discoursed were very spot on, and if there is any fault to be made on her part, it ought to be coordinated towards the first play rather than her presentation. Others were not very good. Kate Herrell in her job as Virginia experienced difficulty conveying the baffled mockery of an on-screen character whose vocation appeared to blur away. The response to her first analysis with respect to her exhibition in The Golden Egg was not as fierce as that of somebody who simpletons and pops pills ought to have been. She had all the discoursed and swear words an amusing rough character requires, yet some way or another, she returned not the same number of chuckles as she could have. Different characters commonly satisfied their jobs well, from Ira (played by Craig Ewing) the theater-pundit, to Emma (Fina Romero) the clever smarty pants oldie. The greater part of the jokes introduced by Ira were particularly amusing, as he clarifies why he scorns the play when he does: Hey, I didn’t c ompose this crap. 3. Where the play was especially missing was with the presentation of J. Scratch Dickert, who played James. He was ahead of the pack job, however showed little attributes of a main on-screen character. James’ nature was shown too submissively as I would see it. ... ike â€Å"He has the entirety of my peculiarities and none of my walk†, regarding the entertainer who assumed the job James turned down, ought to have been brilliantly wry, yet they were most certainly not. The supporting jobs of Gus, the coat kid and Peter proved to be useful in those occasions, played by Noah Mittman and Christopher Lynch individually. Mittman did an incredible Southern inflection as Gus. 5. Coordinating The cast helped each other as far as acting on account of the incredible course. Eileen Kearney made a brilliant showing depicting the inward activities of a theater creation which the ordinary crowd rushes to pass judgment. Her decision of comic illuminate Mcnally’s mind-outline as it more likely than not been when thinking of this play, which had more to appear than essentially depicting the behind the stage operations of an as of late held play. The executive exposed the absence of steadfastness that on-screen characters frequently share. They prof ess to like each other just up until the moment that the play is thrown in a terrible light, for example, when an awful audit comes in, which rapidly transforms everything into a habitual pettiness. I particularly enjoyed the way Eileen got the awful news, regardless of whether it would be by means of Emma perusing the Times paper or through the TV, and all the focal point of the crowd would turn towards the questionable characters of Virginia, James (who professed to like the play) and the natural thief executive who loathes acclaim Frank. This was bolstered by the wonderful set structure which put Julia’s, the producer’s riches in plain view appears as everybody was bound to her room as the surveys heaped in. The lighting concentrated on the entertainers and never on objects of concern, so the attention was consistently on their demeanors rather than the TV or the paper. The surrounding light was kept to a base therefore. The

Saturday, August 22, 2020

Sustainable Alternative Energy to Southern Arizona an Example of the Topic Economics Essays by

Manageable Alternative Energy to Southern Arizona by Expert Suzzane | 28 Dec 2016 Southern Arizona is known for its rough mountains and desert scenes. Because of its topographical element, Southern Arizona has made and has developed its own feasible vitality source, especially, sun based vitality, making Arizona a quickly developing state second to Nevada (TripCart; Community Solar Energy Initiative 12). Today, sunlight based vitality is one of the manageable vitality sources that are broadly utilized in Southern Arizona. Tucson, one of the tremendous urban communities of Southern Arizona, is explicitly given to advancing manageable vitality rehearses. Truth be told, Tucson is one of the pioneers in vitality effectiveness (TripCart). It has been named as one of 13 US Department of Energy chose Solar America Cities for 2007 (City of Tucson). Need exposition test on Practical Alternative Energy to Southern Arizona point? We will compose a custom exposition test explicitly for you Continue Sun based Energy Sun based vitality can be created with the assistance of the sun. It has been massively useful as sun based vitality can be changed over to power through photovoltaic or sunlight based cells or through sun oriented force plants. In photovoltaic cells, daylight is legitimately changed to power. Thusly of changing sun powered vitality is regularly applied in watches, number crunchers, and lit street signs. Then again, in sunlight based force plants, sun oriented vitality is caught and afterward used to warm water which delivers a steam that can flexibly a generator with power (Energy Information Administration [EIA]) In spite of its convenience, sun oriented vitality has a few burdens. One is the irregularity of the measure of daylight that arrives at the earth (EIA). The irregularity of the daylight is achieved when of the day, the area, and certain climate conditions. Another weakness is that the sun doesn't center its vitality in one spot. This lone implies that a huge region ought to be considered in gathering sunlight based vitality (EIA). Sun oriented Energy Initiative This article says: Congresswoman Gabrielle Giffords communicated her plan to change over Southern Arizona into a Silicon Valley of sun oriented vitality. One of her progression towards her objective is the starting of the Community Solar Energy Initiative. This activity is centered around spurring coordinated efforts and a state-wide collaboration, giving oversights and responsibility of sun powered vitality, and growing sun powered markets in Southern Arizona (Community Solar Energy Initiative 11). Sunlight based Energy in Tucson Tucson started and built up a Sustainable Energy Standards that is 50 percent efficientmore proficient than the Council of American Building Officials Model Energy Code. In Tucson City, business places of business were planned and worked with the utilization of vitality effective and inexhaustible items that are financially accessible to accomplish or go past the Sustainable Energy Standards. Subsequently, for more than 30 years, Tucson has been perceived as a pioneer in the utilization and improvement of sun oriented vitality. Tucsons accomplishments likewise incorporate elective structure models that are vitality effective and practical turn of events (Southwest Energy Efficiency Project [SWEEP]). Tucson is still on the advancement of making energizing new thoughts regarding sun powered vitality. Tucson may one day be the sole provider of power in the United States. There are additionally network sun based projects that plan to advance sharing, aiding, and supporting the network concerning building or changing their homes into sunlight based vitality proficient houses (Solar Institute Inc.). Noteworthiness of Sustainable Energy in Southern Arizona The Southern Arizona people group has been dynamic in taking part and advancing the utilization of sun powered vitality. Putting resources into sun oriented vitality as an elective wellspring of vitality in Southern Arizona is profoundly significant because of the points of interest that it can bring to the territory of Arizona. A portion of these points of interest incorporate lesser utilization of coal, the essential wellspring of vitality in South Arizona. By reducing the utilization of coal, natural issues and issues will be decreased. Sun oriented structures are currently likewise being utilized in Southern Arizona. These structures can spare a mortgage holder 50 percent of the expenses of developing a house. As probably the best asset of sunlight based vitality in United States, houses in Tucson are fit for putting away sun based vitality for the utilization of property holders. The essentialness of utilizing rooftops with sun based boards is that mortgage holders cut their power charges by 75 percent. Tucson can give the entire Arizona states electrical necessities. Envision a little area in Arizona. On the off chance that that little region is made into a sun powered vitality valley, it very well may be sufficient to flexibly the electrical needs of the entire United States (Huddy). Centrality of Sustainable Energy in United States Sun based vitality is plenteous to the point that it can gracefully even the vitality needs of the entire universe. Henceforth, the tendency of Southern Arizona to sunlight based vitality elective is an incredible move. It makes a major effect on the country in general. On the off chance that Southern Arizona will be made as sun powered vitality capital, the entire country will profit enormously from the vitality source it will create. The Southern Arizona sun oriented vitality option can likewise be a decent good example for different states to direct, plan, and construct their own elective vitality asset. Another ramifications of utilizing sun based vitality as an option is that it represents the chance of done depending on oil as a wellspring of vitality. As of now, United States is perhaps the greatest shopper of oil on the planet that represents 25% of the universes oil creation (Myers). Therefore, the American government gives administrative assessment credits with the goal that everybody will utilize economical and sustainable power source like sun oriented vitality. Hence, creating sun based vitality as the essential vitality source can support the nation and its resident spare an enormous measure of cost. Having a manageable and sustainable power source is a blessing that everybody should esteem. Sustainable power sources are practically around the bend standing by to be found and created. Ceaseless research and backing are expected to belittle sustainable power sources as a choice to oil and other non-inexhaustible sources. Works Cited Network Solar Energy Initiative. Sun oriented Energy in Southern Arizona. September 2007. 12 November 2008 Vitality Information Administration. Sun oriented Energy: Energy from the Sun. November 2007. Branch of Energy. 2 November 2008 http://www.eia.doe.gov/kids/energyfacts/sources/inexhaustible/solar.html>. Huddy, Paul. Earth Day in Southern Arizona. Sun oriented Alliance. 22 April 2000. Solarinstitute.org. 12 November 2008 . Myers, Monte. Vitality Independence? A Reality Check. Supportable Arizona. 02 November 2008. 12 November 2008 . Sun oriented Institute Inc. Sun based Alliance of Greater Tucson. Sun powered Alliance. 2007. Solarinstitute.org. 12 November 2008 . Southwest Energy Efficiency Project. Southeast Service Center. Southwest Energy Efficiency Project. 28 January 2008. Swenergy.org. 12 November 2008 . TripCart. Topography of Phoenix, Tucson, Scottsdale, Tombstone, Arizona. 2008. 12 November 2008 .

Friday, August 7, 2020

Skating or School

Skating or School Before coming to MIT, I had no idea if I wanted to continue skating, training, and competing. Before committing to MIT, I accepted the fact that, as a full-time student as a full-time MIT student, there was the all-to-plausible possibility that I wouldnt have the time, energy, or resources to continue to pursue the sport. I had no idea what I was getting myself into, how I would adapt and adjust to the rigor and intensity of the course load, if I would have any free time at all outside classes, if it was worth it at all, that pursuing skating and MIT meant I would be subpar in both, not able to fully dedicate myself to one or the other. I expected the worst, and accepted the fact that in my 12-year long stint as a figure skater, I had had a fulfilling-enough career, and if choosing MIT meant that I had to give up the sport, that would be just all right, that I would move on and pursue another dream and whatever else the Institute would have in store for me. And yet, here I am, in my third year, still skating, training, and competing. What if I could make both work? Since coming to MIT, Ive been fortunate enough to compete nationally and internationally the past two skating seasons. Still Juniors-age eligible, I competed on the international Junior Grand Prix Circuit in Bratislava, Slovakia, in 2015 and Ostrava, Czech Republic, last fall. Freshmen year, I was the repeat US Junior Mens silver medalist, and this past year I secured a spot at the Senior Nationals with a win at the Eastern Sectionals. I love to compete, and its what drives me through hell weeks on and off the ice. Ive even had the opportunity to perform in shows and exhibitions at Harvard and Dartmouth and even the Rockefeller Center. But I constantly am reminded by the opportunity cost of training and competing full-time. Exams and psets I dont have enough time to study for or complete. Classes I dont take because they dont fit with ice time. Study abroad and exchange programs that dont have access to ice rinks and coaches. UROPs that are cool but not viable with my training schedule. Internship opportunities at inconvenient locations and inflexible work hours. MISTI, GTL, and other IAP and summer opportunities that conflict with competitions and training. Spring Break trips with friends. Ive spent the past two Thanksgivings, Christmases, New Years, and Winter Breaks in Boston, away from home, training. The skating season is year-round, no breaks, hardly any room for vacation or free time. Not even time to visit family. Prior to this summer, I went back home just once since I left for college. On the other end, I dont have enough time to train 6 hours a day, 6 days a week like my other competitors. I have to selectively choose competitions that work with the school calendar. I have to be as ruthless and efficient as I can on the ice just because I dont have the luxury of training all that I need to do. Some days Im only on the ice for 40 minutes and rushing back to campus, picking up lunch and eating it while speed-walking to class. More often than not, I sacrifice my diet as well just because there arent many good convenient food options nearby campus. When Im injured, I dont always have time to get proper treatment and have to nurse it on my own. And then theres the expense of it all. Nothing in the sport is cheap. Each trip to the rink not only is a 25 min commute, but add in the cost of the ride, ice time, and coaching fees. Multiply that by 5 days a week, 52 weeks in a year. Cap that off with the cost of skates, costumes, choreography, travel, competition expenses, physical therapy, and the bills pile up every month. As a Team USA athlete the past 3 seasons, Ive received stipends that cover only a fraction of the costs. At one point during freshmen year, I had 3 part-time jobs to help pay for it all. Fortunately, Ive also been supported by a few scholarships, including the Helen M. McLoraine Figure Skating Scholarship Program and the US Figure Skating Memorial Fund to help defray a portion of my training and tuition. Mentally, its exhausting to try to keep up with everything. I never have enough time to train or study or do other extracurriculars or anything for that matter. By nature of the sport in the US, I get no funding, resources, or support from the school or sponsors unlike other varsity or professional athletes. Im constantly psetting on the road and my schedule is always packed. I have loads of lectures, assignments, labs, and psets to catch up on while on the road when Im away for week-long training camps and competitions, and exams to make-up when Im back. I dont get any additional extensions or support. Im on my own here. Classes dont stop for anything. Some days I do want to give up. Some days I question why I still want to continue all this madness. Some days I fall behind, in skating or school. Training is hardly enjoyable physically or mentally. School is hard enough on its own. More of often than not, both my mind and body are equally drained, on the verge of burnout. Its lonely to do this all on my own. But every night I collapse in bed, sleep as much as I can, and wake up the next morning to do it all again. I still love what I do. I wouldnt keep it up otherwise. My parents think Im mad trying to juggle everything. There are still goals I want to accomplish before I hang up my skates. A career in skating is short-lived. I want to make the most of it while I still can. The relentless sacrifice, though, has been well worth it. Ive met so many talented and amazing individuals through the sport. Ive traveled all around the US and the world. I love the challenge and the process of training and competing. I love to perform in large arenas and audiences. Im never bored. Theres always something to work on, another challenge to tackle. Its a constant learning experience. Skating forces me to ruthlessly prioritize, structure my time, and stay on top of my work, making the most of every hour of every day. Skating gives me an outlet, a break from the hustle and bustle and the daily grind of MIT though, its in itself an equally-demanding workout. MIT works my brain muscles; skating, physical. When Im on the ice, I focus solely on the training. When Im on campus, I focus on my schoolwork. It keeps me physically and mentally fit. The two separate spheres I enter in and out of several times a week balance each other out. A perk about training on my own is that I get to form my own schedule. Im not tied to a 5-7pm training schedule every day. If one week is especially rough class-wise, I can take it lighter on the ice. My coaches are also flexible and understanding, and work around my schedule as well. But if a competition is coming up, then I sacrifice time towards my classes and cram in as much training as I can. Some days when I cant make the hour round-trip commute to and from my main training facility, then I try my best to squeeze in ice time at MITs own rink on campus. Ive also found a tight-knit community with my coaches and other skaters who train under the Mitchell Johansson Method. I didnt choose MIT because of skating, but it just so turned out that it was one of the best places to do just that. My coaches are world-renowned, and the skaters I train with compete at the highest elite level as well, a training atmosphere I didnt even have back home growing up. The Skating Club of Boston, the local club I represent, is one of the oldest in the country, producing dozens of National, World and Olympic Champions throughout the years. And Im also part of the MIT Figure Skating Club, yet another intimate community. For one, the club is immensely welcoming and supportive. Ive had the opportunity to meet other passionate undergrads, grads, and alums, some whove just picked up the sport since coming to MIT and taking one of the skating PE classes, to those who competed competitively back in their respective hometowns and continue to skate purely for the love of it, for the club, for the community, and for themselves. Every weekend, there are several hours of instruction and coaching, free for club members. And its a great way to stay in shape, Team Captain Ananya N. 19 reminds me. Skating at MIT is not just competitive. Each semester the club puts on an exhibition open to the MIT community and the public. Skaters from all levels perform individual routines and group numbers choreographed by fellow club members. We invite all our friends, classmates, professors, advisors, and family to come out and watch and even join us on the ice afterwards to learn to skate. Its a fun and relaxed environment to share our love for the sport. But we also do compete on the intercollegiate level as a team representing MIT, a separate domain from my professional career. This past winter, MIT hosted one of the three qualifiers in the Eastern Conference right here at Johnson Arena, the MIT Intercollegiate Competition. Schools from all over the East Coast, from University of Virginia to our neighbor Boston University, brought contingents as large as 30 skaters to compete for a spot at the Intercollegiate National Championships. School teams are ranked and given the final prize. Each school accumulates points based on placement in each division, and consequently the point system favors schools with large teams of varying skill levels. From beginner to elite, any student can compete. All other competitions I do professionally are solely based on individual placements. Collegiate skating was the first time Ive been able to contribute to a team effort, and Ive definitely enjoyed the more casual, relaxed, and fun competitive format. At our MIT Intercollegiate, we finished 7th overall, despite having a team a fraction of the size of other schools. But the hometown advantage did help we had a great showing of the MIT community supporting our skaters. The entire competition is run by the schools club team, and the amount of time and energy everyone put in to organizing and running the event was incredible. By hosting these events we will again this coming winter even as a non-varsity sport, our Club President Diane Z. 19 points out that we secure enough funding to sponsor skaters to the other intercollegiate competitions, covering their travel, lodging, and registration expenses. This coming season, NYU and University of Delaware are hosting the other two competitions. The traveling aspect is what my teammates, including Ananya N. 19 and Diane Z. 19, reflect most fondly on when talking about their experiences in the club. Its the late night group psetting sessions and last-minute submissions at the airpot before 5am flights, to visiting schools all over the East and meeting other skaters, to karaoke and ice cream runs after the final event, to cheering on and skating through your teammates programs that youve memorized on the sidelines as they perform. And finally its the community within the club that is the most treasured above all. Undergrads, grads, and alums of all backgrounds and interests come together every morning at 8am, bonded by a common passion and alma mater, to practice and dedicate their time to do what they love. These close friendships that extend beyond the rink, in and out of the classroom, offer a social component to an otherwise often lonely, individual sport. Over the summer, I took part in the 2017 Collegiate National Championships hosted at Adrian College yet another separate domain from the intercollegiate realm and professional skating. This time around, the format is centered on the traditional, individual-based competition structure, with each skater representing their school. Top placements in the Championship division earn a monetary scholarship award as well. I took two days off of my UROP to experience Michigan and Collegiates for the first time. One of my training mates at Mitchell Johansson Method, starting her freshmen year at Boston University, also competed, in addition to another MIT teammate, Shannen W. 21. Without a car or Uber or Lyft, I hitched rides with her and other gracious skaters from schools all around the country to get to and from the hotel and rink and feed myself. I had sprained my ankle the week before, and wasnt sure how much I would be able to perform at the competition. But I was able to squeeze out nearly two clean performances and bring back the title for MIT. This past weekend, I competed at the 2018 Eastern Sectional Championships to attempt to earn a spot at the 2018 US Championships in San Jose, CA. Luckily, the competition took place in Boxborough, MA, around 45-minutes outside Boston. I competed Friday night and Saturday afternoon, and didnt have to miss a class. A group of my friends from the MIT Figure Skating Club drove over to watch on Saturday and cheer me on. I pulled up from 3rd to 2nd overall, and qualified for a spot! They graciously drove me back, and we stopped by for some all-you-can-eat Korean BBQ to celebrate. This Winter Break, though, I will again have to spend here in Boston, alone, but training as hard as I can. No complaints here, as I will have a chance to visit home when Im in San Jose. At the beginning of the season, I envisioned that this would be my last. That I would finally wrap it up, and purse my other aspirations here at MIT. But there is much that I still have yet to accomplish for myself. I still love to train, to compete, to perform. As long as my mind and body stay with it, I have a feeling that I might just keep at it for one more year. I cant imagine skating without life at MIT, and life at this school without the sport. At most of my competitions, the announcer starts with: Representing the Skating Club of Boston, and sometimes, Representing United States of America But at Intercollegiates and Collegiates, I like the ring to, Representing Massachusetts Institute of Technology here is Kevin S. I feel right at home. Post Tagged #Figure Skating

Saturday, May 23, 2020

An Examination of Genders in World Regions - 1159 Words

In societies past and present, there have been a variety of ways in which the genders have valued. Although the regions of our world value different icons, gods, or elements, there is one thing in which all cultures value, and that is the people of their society. Since people are high on a culture’s priority list, they value people in different way. Some cultures decide that one sex is superior over the other. Although everyone is valued, there are certain times when some sexes are favored over the other. There have been many primary documents which show us which sex the different cultures value. This will show us that around the world people are not valued the same. This will give us an insight on who these different worldly people value.†¦show more content†¦In the Chinese culture it was shown what a gentleman can do to help himself. In the Indian culture, it shows what a woman can do to help save herself. In the Indian culture, there is a ceremony called sati. Sati can be described as a traditional burning of the wife. This only occurs after her husband has passed away and the wife throws herself into the burning flames which have engulfed her husband’s remains. If a wife participated in this ceremony she is considered faithful to her husband. It is said that, â€Å"The wife who enters into the fire when her husband dies, imitating Arundahati, (a star, regarded as the wife of one of the Seven Rishies, and as a typical faithful spouse) in her behavior, enjoys bliss in heaven.† This will not only free her soul but also her husband’s soul. She is also considered saving herself when she leaps into the fire. In those times, being a widow is miserable. This is shown as, â€Å"There is no other misery for women like, widowhood. Happy is she among women who dies before her husband.† It says that she will be just as happy as any woman who has died before her husband. While she is saving herself and her husband, she is al so saving three of her families. It is said that, â€Å"A woman who follows after her husband shall surely purify three families: her mother’s, her father’s, and that into which she was given in marriage.† SheShow MoreRelatedSocial Media Contributions Against Gender Based Violence1400 Words   |  6 PagesWomen Uniting on the Web: Social Media Contributions Against Gender-Based Violence in Turkey Ozgecan Aslan lost her life while taking the bus home when the bus driver â€Å"allegedly bludgeoned her with a crowbar, stabbed her to death, and cut off her hands to hide the evidence† (Khazan 2015, 1) because she resisted rape. 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Tuesday, May 12, 2020

Comparison of Ptv and Geo - 1457 Words

Comparison of PTV amp; Geo Positioning PTV PTV news aims to be service focused (Lovelock, 2005) in its strategy. Its news channel offers a narrow range of services/programs such as news bulletins, talk shows, documentaries and live events update etc. The market to which the services are offered are broad and diverse, however mostly the adults and people from an older age bracket make PTV a preference. * Segmentation and Target Market In a highly competitive industry like that of the television industry there is a great risk that customers will perceive little difference between the brands and make their decisions randomly. For this reason the TV channels need to position themselves rightly in order to avoid losing their market share.†¦show more content†¦Sessions of senates and National Assembly | Political enthusiasts, middle class segment. | Open Forum | Federal Ministers etc are invited to answer to the public. | Males, Sport lovers, Players, Students, Youngsters | Sports | Live international cricket matches, hockey, table tennis and regional sports which are not covered by any other channels | Political Enthusiasts, Adults Males and females, mostly males. | International Events amp; conferences | Arrangements with Reuters TV, London to satellite news items to PTV Islamabad, covers visits of delegates etc | GEO Within a short span of time, Geo has managed to establish itself as a household name. It has been successful in launching itself as a powerful brand in people’s minds. More importantly it has been received as a brand which represents the true voice of the nation. It reflects independence and freedom of speech which greatly appeals to the mass audience. The audience for Geo is hence a common man of any age bracket. The targeting is wisely done in order to attract people from all age segments without any discrimination of class, gender or creed. Geo strongly believes in brand association and hence has devised the logo ‘JEEM’ as a common integrator in all its channels. This creates a sense of belonging to the brand. Geo brand name is used as a prefix in a lot of programs which attracts the audience and helps develop brand association. The target market for Geo is not just

Wednesday, May 6, 2020

Egt Task Free Essays

Although the current Managers are fluent in Korean, it will be important to hire local dialect persons to add to our staff. This will ensure acceptance, communications, and also preventing miss spoken words that me be taken as offensive If not done with the proper tone. Curriculum Instructor certification. We will write a custom essay sample on Egt Task or any similar topic only for you Order Now Since South Korea converted the KIT- Korea Teakwood Escalation In 1954 Into the World Teakwood Federation, the feeling In Korea Is all Black Belts must hold certificates from the WTFO. This may be Just a financial ploy to collect money room those outside Korea, but the perception exists that if you hold a certificate (called a Okinawa Certificate) you are then legitimate regardless of what country you received the certificate, since all Okinawa certificates originate in Seoul, South Korea. All staff who do not currently hold their given Black Belt rank must be certified by the WTFO prior to submitting an application to be an instructor in our Korea Dugong expansion plans. Since no Okinawa officers exist in the united States, all certifications will be done by Head Master Ken Adulated, 6th Degree Black Belt Okinawa holder. Country of Origin of retail goods. Three primary countries manufacture martial arts apparel (uniforms) and sparring gear. These are Japan, China, and South Korea. While Americans are primarily obsessed by price, and seem to disregard country of orally pride, Korea Is the opposite. It will be critical that all uniforms, belts, and sparring gear ONLY come from South Korea manufacturing companies. To offer anything else is potentially offensive, but should these goods come from China or Japan, it would also be a disgrace since both countries attacked Korea in the last century. B. Product The product of Americas Best Teakwood is martial arts lessons. In America, most adults will not allow themselves to stick with a program, and many areas of the program we currently offer need to accommodate the lack of focus for Adult students, and their ability to Justify quitting. Only 1 of 10 Americans (compared to 1 out of 4 Europeans) has attempted to learn martial arts. Of those 33 million, only 10% stay with It beyond 30 days, leaving 3. 3 million. Of those 3. 3 million only 10% will stay with It another 3-6 months quitting Jest as they prepare to test out of novice level. Of the enameling 330,000 who achieve Green belt/beginner Intermediate, only 10% of those will reach beginner advanced, or Brown Belt. We are left with just 33,000 Brown belts, In the USA, all but 10% quit after Just 30 days at Black belt, higher than any other country in the world. About 330 people are left who continue actual Black belt training, only 10% of those achieve Master level in the USA, Just 33 out of 330 million. Moving into Korea, we must modify our program for the long term goals of students. Parents will require their children attend, and they will attend with them, it will be a Emily event, training multiple days per week for 6-10 years or more. It will be important to modify our tuition timeline to not appear to be short sighted Americas with no ling term vision, or they may feel we are looking for short term profit, or will not stay through difficult times. The good news is that Korea has been losing the Gold Medals at the Olympics to other countries and is accepting of Americas teaching teakwood and they have fond respect for the Lopez family of Houston Texas, multiple Gold Medal winners. We will leverage our affiliation with the Amateur Athletic Union with Coach Lopez. We will use this for credibility but not for promoting an American Agency. 82. Price: Tuition pricing in America is structured around making it easy to quit, monthly pricing is not as important as not needing to make any commitment. In Korea it will be the opposite. Students will not mind signing non cancel agreements paid in full for 6 years as long as the rates are fair. For Korea the pricing will be a base of $900. 00 per year, for 4 classes per week, 2 hours per class, we expect class sizes to be 50-150 per class. In America our current pricing is $200. 0 per month, month to month, 2 classes per week, 50 minutes per class. Koreans will look at price per hour over the long term, wanting the most hours per week at the lowest rate with a long term commitment; Americas want to know how cheaply they can Join, and how easily they can quit, more like leasing a car. 83 Promotion: In America martial arts lessons are promoted in a disposable product manner, viewed like a 6 pack of Coke. Coupon driven society demands a call to action for a discount. Teachers are held in higher regards in Korea and it would be a disgrace to offer discounts, promotions, or marketing fluff. The Koreans will want endorsements from martial arts organizations and to see community service done by the staff. When they see us in public, they will approach us, but the Koreans will be completely turned off if the go to corner market and see â€Å"one month of lessons and a free uniform for 19. 99†³Ã¢â‚¬ ¦.. Word of mouth and grassroots promotion only in Korea. BE Place: 52 million people actively practice Tea Swoon Do globally; it is the most popular martial art. Korea in the past has not been accepting of foreign companies opening Dugongs in Korea, but the loss of first place in the last 3 Olympics has changed this. The OIC, International Olympic Committee has removed Baseball, Hockey, and Wrestling as of late. Talk is they will remove Karate, Judo, or Tea Swoon DO. Koreans national sport is Tea Swoon Do, and they are promising more support and resources. They will do whatever it takes to keep this Olympic Sport status. Allowing Americas Best, a proven Junior Olympic Gold Medal winning organization into Korea and supporting its grassroots movement is a given. C Ethical Issues: to us from Korea. The Koreans have warned us that Americans are viewed as fat, lazy, and abrasive. The example proven to us is Korean infant adoption, only for America do they have a height and weight scale/range for adopting parents from America. 2) Where the money goes†¦Ã¢â‚¬ ¦.. Alt has also been brought to our attention from the WTFO that Koreans will need to see a direct line for their tuition to returning to the community. Unlike Americans who will buy a Toyota or Honda and not inquire where the money goes, the Koreans will need to see proof that some of it stays in the community. Sources: None. How to cite Egt Task, Papers

Friday, May 1, 2020

Intelligent Robustic System For Exploration-Myassignmenthelp.Com

Question: Discuss About The Intelligent Robustic System For Exploration? Answer: Introducation A robot is a man-made object which is using the computer as its brain and has the machine-driven body. In its body, sensors and actuators are present in it. They are more flexible in terms of performing new operations and is capable of carrying out numerous tasks at once. Recently there is an emergence of technology branch with concerned of all the challenges in robot, design, and application. Robots perform numerous activities such as defective satellite inspection, repair or construction of a space station and supplying goods to the station and its retrieval. The paper describes the design and implementation management used by the authors for developing tele robotic system. There is high possibility of new advancement in robots with overlapping knowledge in control and progress in fundamental technologies, kinematics and dynamics. This will enable people to discover and familiarity in the universe with numerous live changes. Technology in space has an important influence in both socioeconomic and life part of space environment and the world society, therefore many study were carried out to help combining robots and space through applying space robotics idea and some required of robotic machines features are flexibility, acknowledgement, knowledgeable control and reconfigurable methods. All imaginative decisions need to be tested and verified in open space condition because aspect technology such as communication techniques cannot be verified on-ground condition. Control system Design Methodology This section highlights the methodology used by the writer to design tele robotic system. Each step is described in sequence as follows(Hermann, 2012, p. 410) Hierarchy of desired behavior The first step is to define and name a hierarchy of desired robot behaviors because it is based on time-domain behavior. Usually, four steps are needed for autonomous submersible and autonomous manipulator. The designer must ensure that the specified behaviors are enough to allow description of all robotic system operations by personnel. Level of Robot Autonomy The robot requires less supervision as the hierarchy becomes automated. The decision concerning the level of should be implemented based on complexity, safety, relationship between channels of communication and required robot stability Remote/local portioning The machine-driven purposes can be alienated into remote [robot] and the local where lower levels of control are executed by the robot more than the console. Behavior matrix Before the execution of behavior by the operator at the work station and the robot, certain things need to be defined such as requirements by sensory inputs to support the decomposition, its nominal decomposition into lower levels and handling behavior execution, Conflicting behavior resolution The approaches such as the logic- based and cooperative are the preferred methods of resolving conflicts goals. It is grounded on how robots are going to deal with the fact that they are not intended to carry out other functions. Control system modules The communication associating the isolated computers is affected by computer error. The robot are directed orders by the operator and the robots are expected to follow a systematic protocol that are errors free while the response values from the robot to the operator can be submitted repeatedly deprived of acknowledgment Sera interface It needs two types of definition levels; The standard real-time on-line operator interface and Scripting, configuration and behavior definition Network of Software Modules The designer needs to break down the system into a two-way communication between the components and every component must be assigned preemption level. Software module integration The real-time system is constructed from the existing components is just a matter of selecting the required components from the library and explaining the interconnections between them. The process of implementing the control system differs with software components implementation Declarative Configuration This is where the user pronounces all components and their connections in a text built file then the file is interpreted by the program after reading it so that it can modify the data structure for real-time control. Code-Based Configuration This is the C++ version of declarative configuration approach whereby the configuration file is gathered and joined before running of application Graphical Configuration This approach depends on the use of computer-aided design to put down the components and their interconnections. The list is analyzed into a text-based in order to produce a list describing the components and their interconnections. Project management issues The quality management, preparation of work and private issues are the matters affecting project management and they are influenced by the design and implementation approach. This approach task are partitioned into two parts that are the software component and control system application whereby engineers specializing in application sector are responsible for application design, enactment and testing while the team in software are responsible for progress and upkeep of all software constituents.(Robo, p. 211) Ongoing Developments This section describes the relevant developments taking place in design and implementation of tele robot control system Application of space robot can be classified into the following categories of four;(Konoko, 2010, p. 318) Operation: Helps to conduct experiment in the lab Maintenance: Helps in removal and replacement of faulty modules/packages In orbit positioning and assembly: Helps in deployment of satellite and assembling of modules to satellite/ space station Resupply: It enables supply of materials and equipment for experimentation in space lab and for fuel resupply The following examples give specific applications under the above categories Scientific Experimentation Experiments conducted in space lab include Observations by astronauts Biological experiments Metallurgical experiments which sometimes is dangerous Assist in space station assembly Helps crew in the space station i.e. routine crew maintain life supporting system Helps in station arranging and assembling Space servicing functions Refueling Faulty modules replacement Helps congested mechanism such as antenna and solar pane Enhancement of space craft Using upgraded module in replacing payloads Assist in modules attachment in space Space tug Transfer of satellites from low earth orbit to geostationary orbit efficiently Effect orbital transfer by satellite grabbing Challenges in designing and testing space robot Robots developed for space is different from those in the ground because space robots have to operate in zero g' conditions i.e. [lack of gravity], in the vacuum, far away from earth and in high thermal gradients. (Xu, 2012, p. 32)Thermal condition and the vacuum of space interferes with material and sensor performance of the robots. The degree of remoteness of the operator varies from few meters to millions of kilometers The environs that lack the force of gravity has strength and weaknesses. In zero g environment, the mass to be handled by the arm manipulator is not constraints that is why joints and the arms of needs not to withstand forces and moments loads as a result of gravity. The main disadvantage of zero g environment is that it lacks inertial flame and any manipulator arm motion will induce reaction forces and base moments which in turn interfere with the altitude and position.(Kopa, 2011, p. 315) The problems faced by the robot such as control and motion planning, dynamics can be solved by ensuring dynamics connections between the base [space station, space shuttle and satellite] and the robot. As a result of dynamic interaction, the space robot motion can influence the base route and this can make the robot to miss the planned target, also mutual dependence affects the performance of the robots and the base severely in case the moment of inertia robot, the mass and payload are not negligible compared to the base. (Kanniah, 2013, p. 165) Vacuum effect and thermal effect The vacuum in space causes heat transfer problems and loss of mass of the materials as a result of sublimation or evaporation. This can be avoided by selecting materials and lubricants properly so as to attain collected unstable condensable matter and total mass loss. The preferred lubricants should be dry in nature like goad and lead. Some of the sub-systems will require hermetical sealing in order to be exposed to vacuum. In thermal variations, low-temperature cause material embrittlement hence increases friction in bearing by weakening the adhesive forces. The distortion in overcrowding of mechanism and structural elements is caused by huge thermal gradients hence the best way of controlling this is ensuring that proper material selection whose features is acceptable based on the temperature range and suitable choice of protective coatings and insulation system temperature is within permissible boundaries is carried out.(Desroches, 2010, p. 41) Other factors The compactness and the lightweight are one of the main factors required in space system. The material structure to be used should possess certain strength and stiffness to ensure minimum mass, high toughness and solidity. Robots are also subjected to a critical environment are the dynamics during launch. Dynamic loads contain random vibration, auditory noise, sinusoidal vibration and separation shock bands. The electronic and electrical subsystem will have to take care of ecological conditions during orbit and launch.(Konoko, 2010, p. 78) In case there is need for performance to be recorded, protection of components against radiation all over its life is necessary to be considered. Reliability of a high grade is required in space robots and this can be managed by ensuring that design phase was conducted in a proper manner. In order to identify numerous failure modes effects, a failure mode effect and critical analysis is carried out and must be addressed in the design by(Kanniah, 2013, p. 179) Having a good design margin Selecting a reliable or proven design The design should have redundancy System verification and testing System reliability is conducted by a number of tests enveloping all the environmental conditions. The verification of tests and functions are carried out on subassemblies, subsystem and tests acceptance will be done after system completion. The trickiest simulation during testing will be zero g simulation. The simulation commonly used in zero(Kanniah, 2013, p. 89) a) Water immersion: Total dipping of robots under water and testing helps in the simulation of reduced gravity. b) Flat floor test facility: Here, it is grounded on the bearing of air sliding over a polished granite. It simulates the zero g' environment in the parallel plane. c) Compensation system: The compensation of force of gravity is done by vertical and passive counter system and actively controlled parallel. Performance assessment and calibration The development of offline software in mission preparation helps in achieving the robotic device operation. The procedures that supports design in a computer are applied so that movement of the robot can be traced easily. The smallest size, mass and the power needed and intake can be attained by ensuring an appropriate sensing technology is put in place.(Ruoff, 2011, p. 245) Robot performance The valuation of robot is needed because; To enhance sources of errors that affect arm accuracy To make decision if the work cell or the arm must be calibrated To make the comparison on the expected improvement in calibration accuracy. The mathematical model is used in assessing the robots performance and the source of error from its sub system such as the robot link, the joint or its gripper(Xu, 2012, p. 212). Identification of error is done by a bottom-up analysis and in each identified robot sub system are arranged in the three groupings namely; Pseud systematic error which is foreseeable and time variant Random errors which cannot be predicted but varies with time e.g. encoded noise The systematic error which does not differ with time e.g. concentricity, link length, and parallelism. Once the classification of error based on the magnitude is done, there may be used of numerous statistical methods to evaluate its impacts when they are combined during work.(Ruoff, 2011, p. 54) Robot Calibration A proper calibration method is required in compensate for errors in case the prediction performance has shown that calibration is needed. All calibration must be carried out on the ground and in case of orbit calibration procedures should be limited in crosschecking the model validity developed and if essential, error correction such as pressure gradient and micro slip to be done. Calibration is executed in five steps namely; (Genta, 2011, p. 33) Modeling, in which parametric description is carried out, introducing geometric parameters like link length Measurement, in which data encoded and a set of robot position and orientation are measured using the real robot for provision of inputs for identification test step Identification, it uses the measured facts and parametric model to determine error parameters Model implementation, where the data controller root is updated by correction of robot pose with respect to the error standard deviation. Verification, It is when accurate positioning of the robot has been achieved in all the three axe This method is preferable if compared to other methods because complications of universal calibration of robots are sectioned into a set of minor problems thus enabling them to accomplish numerical precession and decent stability. The software calibration is parametric in nature thus appropriate for homogenizing any wide-open robot kinematics chain. (Kopa, 2011, p. 113) Description structure of space robot The robots consist of two arms namely; upper arm and lower arm. The rotary joint links the upper arm and to the lower arm and a three-roll wrist mechanism at the end of the lower arm is used to orient the end effector about any axis. The end effector connected to the axis performs the same function as the hand. Motors help in driving the circuit which in turn drives the joint of the arm and wrist while angular encoders control the motion of the joint at each axis. The controlling of grasping force on the job is done by the end effector that is driven by a motor and pressure sensor. The main subsystem in the development of the manipulator's arm is,(Forest, 2011, p. 56) A joint enables movement between two links of a robot and there are two types of joints namely; roll joint whose rotational axis is similar with a fully extended arm and the second one is pitch joint whose rotational axis is parallel to the axis of an extended arm making its angle of rotation is limited.(Telotte, 2016, p. 214) Robot arms The simplest arm is the pick and place type which are used t5o assemble part of fitting them into a fixture. This is achievable due high accuracy attainable in the robot arm. Objects having complicated shapes and fragile in nature can be manipulated by robot arms In robot arms, there are wrist and grippers. The wrist is attached to the robot arm and has pitch, roll, and yaw that is why it has the ability to retain its equilibrium position after the removal of deflecting forces and deform in response to the forces as well as the torques.(Zhu, 2010, p. 43) The gripper is attached to the manipulator's wrist to achieve the task required. The designing of the gripper depends on the size and shape of the part to be held Space Robot Teleoperation The space robotics is an important psychology in space advancement. It is desirable to develop a robot which can work without an aid of astronauts. In the current situation, there is progress in technologies whereby the tele operates a space robot from within a spacecraft. However, the limited number of astronauts in the space makes it possible not to achieve rapid progress in space growths with the teleoperation from within the spacecraft.(Xu, 2012, p. 56) Operations of space robots Robotic free fly manipulators are difficult because the spacecraft moves in response to the movement of manipulators. The shuttle robot arm is used for various purposes such as; Deployment and retrieval of satellite Building of International Space Station Surveying the outside of the space shuttle using TV cameras attached to a wrist or elbow of the robot arm Robot Arm Operation Mode It is operated in the space shuttle cabin and to control the shuttle remote manipulator system the operator uses translational hand controller to deploy the rotational hand controller. How space shuttle robot arms grasps object Robot arm just work in a similar way just like that of human, The end point of the rot arm consist of a cylinder known as the end effector. There are three wires that are used to grasp objects inside the cylinder. The object to be grasped needs to have a grapple fixture meaning projection a stick in shape. Sight is essential in order to acquire the grapple fixture while manipulating a robot arm as long as 45 feet. Robot arm is activated to hit the target and this is done by the robot arm operator while keeping the rod standing vertical to the robot arm and in case the angular balance is between the robot arm and the rod, it is easily detected through the in TV Conclusion In the forthcoming years to come will make billion of people to live a leisure life instead of current obsession with current material needs. Space robotics will open the door to discover and experience the universe because there are many people who are captivated by the space but the lack means of discovering it. The formal method for the design and development of robot has been outlined and it is based on the concept hierarchical control. Hierarchical control system design provides a template for complex control system functional design that allows parallelism in the development process. The method also highlights advantages of robots such as, going where people cannot reach, robot dont need to return to earth, they perform task that are less expensive and less risk and space is a dangerous environment but robots manage to survive. New future development includes new support for hardware and software environments References Desroches, A., 2010. Intelligent Robustic System for Space Exploration. s.l.:s.n. Forest, C., 2011. Robots in Space. s.l.:s.n. Genta, G., 2011. Introduction to management of space robots. s.l.:s.n. Healer, P., 2014. Space Mice 2. s.l.:s.n. Hermann, G., 2012. Advances in Autonomous Robotics. s.l.:s.n. Kanniah, J., 2013. PRACTICAL ROBORT DESIGN. s.l.:s.n. Kanniah, P., 2013. practical robort design. s.l.:s.n. Konoko, M., 2010. Robotics research. s.l.:s.n. Kopa, D., 2011. Exploring Space Robots. s.l.:s.n. Pelt, M. v., 2010. Space invaders. s.l.:s.n. Rice, W., 2012. Blast off to Space. s.l.:s.n. Robo, n.d. s.l.:s.n. Ruoff, C. F., 2011. Teleoperation and Robotics in space. s.l.:s.n. Sicilliano, B., 2010. Robotics; modelling,planning and contol. s.l.:s.n. Telotte, J., 2016. Robort economics and Science Fiction. s.l.:s.n. Xu, Y., 2012. Space Robostics. s.l.:s.n. Zhu, W.-H., 2010. Virtual decomposition control. s.l.:s.n