Thursday, December 26, 2019
10 Interesting Facts About New Orleans
New Orleans 404 is the largest city in the United States state of Louisiana with a 2008 population of 336,644 people. The New Orleans Metropolitan area, which includes the cities of Kenner and Metairie, had a 2009 population of 1,189,981 which made it the 46th largest metropolitan area in the United States. Its population dropped dramatically after Hurricane Katrina and the subsequent severe flooding hit the city in 2005.The City of New Orleans is located on the Mississippi River in southeastern Louisiana. The large Lake Pontchartrain also lies within the city limits. New Orleans is most well known for its distinctive French architecture and French culture. It is famous for its food, music, multicultural events and the Mardi Gras festival held in the city. New Orleans is also known as the birthplace of jazz. Legendary jazz figure Louis Armstrong was famously born here and honed his skills as a young musician in the citys clubs. The following is a list of 10 important geographic facts about New Orleans. The City of New Orleans was founded under the name La Nouvelle-Orlà ©ans on May 7, 1718, by Jean-Baptiste Le Moyne de Bienville and the French Mississippi Company. The city was named after Phillipe dOrlà ©ans, who was Frances head of state at the time. In 1763, France lost control of the new colony to Spain with the Treaty of Paris. Spain then controlled the region until 1801, at which time, it was passed back to France. In 1803 the region encompassing New Orleans and surrounding areas was sold by Napoleon to the United States with the Louisiana Purchase. The city then began to grow considerably with a variety of different ethnicities.After became a part of the United States, New Orleans also began to play a large role in international relations as it developed into a large port. The port then played a role in the Atlantic slave trade but also the exportation of different commodities and the importing of international goods for the rest of the nation up the Mississippi River.Thr oughout the rest of the 1800s and into the 20th century, New Orleans continued to grow rapidly as its port and fishing industry remained important for the rest of the country. In the end of the 20th century, growth in New Orleans continued but planners became aware of the citys vulnerability to flooding after erosion of wetlands and marshes.In August 2005, New Orleans was hit by the category five Hurricane Katrina and 80 percent of the city was flooded after a failure of the citys levees. 1,500 people died in Hurricane Katrina and much of the citys population permanently relocated.New Orleans is located on the banks of the Mississippi River and Lake Pontchartrain about 105 miles (169 km) north of the Gulf of Mexico. The total area of the city is 350.2 square miles (901 sq km).The climate of New Orleans considered humid subtropical with mild winters and hot, humid summers. The average July high temperature for New Orleans is 91.1 °F (32.8 °C) while the average January low is 4 3.4 °F (6.3 °C).New Orleans is known for its world-famous architecture and areas like the French Quarter and Bourbon Street are popular areas for tourists. The city is one of the top ten most visited cities in the U.S.The economy of New Orleans is based largely on its port but also on oil refining, petrochemical production, fishing and the service sector related to tourism.New Orleans is home to two of the largest private universities in the United States- Tulane University and Loyola University New Orleans. Public universities like the University of New Orleans are also within the city.
Tuesday, December 17, 2019
How Amway Use the Operation Management to Compete
Jantarika Naktawan Introduction Amway is one of the worlds largest direct sales companies. It is a global enterprise that started the company in 1959. Founded in Ada, Michigan by Rich DeVos and Jay Van Andel, the company continues to be privately owned by the DeVos and Van Andel families. Currently more than 3 million Amway salespeople on six continents sell more than 450 quality Amway products directly to consumers in over 80 countries and territories. Amway distributes a variety of products, including: 1 Personal Care - fragrances, body care and hair care products 2 Skin Care and Cosmetics 3 Durables - cookware and water treatment systems 4 Nutrition and†¦show more content†¦A company may have shareholders who can be internal or external stakeholders. As a private company, the families who own Amway are its sole shareholders. It is important that Amway communicates regularly with its stakeholders. They can affect or be affected by the business. Amway uses different ways to communicat e with its various groups of stakeholders; such as 1.) Websites, emails and voice mail updates promote products and services to ABOs and customers and keep them up-to-date 2.) Industry and trade memberships enable Amway to share and receive industry information 3.) Publications target key sales messages, for example, its monthly newsletter for ABOs, Amway Focus 4.) Events and exhibitions help Amway to communicate to ABOs, consumers and guests about running an Amway business and the products it can provide Amway is selling directly to consumers without going through traditional retail outlets or high street. The supply chain A supply chain links the finished products to end consumers. Amway has its own distinct supply chain, placing a strong emphasis on its ABOs. They are able to focus on individual customers and their needs. 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Monday, December 9, 2019
My Dog Seeka Essay Example For Students
My Dog Seeka Essay Our first family pet was a black lab/German Shepherd mix named Cheyenne. My parents adopted her as a puppy before I was even born, and she was considered a part of the family. She had black fur all over except for her tan underside, and her face resembled a raccoon. As far back as I can remember she was always very docile, and well behaved to the point we could let her go outside and call her back a few minutes later without having to worry about her running away. She was a part of our family for 10 years. Unfortunately, when we moved to Canada, we had to put her up for adoption as we couldnt bring her with us. Around the age of 6 we adopted another dog named Emily. She was a pure breed black lab, with pitch black fur all over. She was fairly violent, and we had a lot of trouble with her training, to the point where we had to keep her in a crate most of the time. We only had Emily for 2 years before we put her up for adoption. Around the same age we also had a few cats. Peaches, an over weight, orange cat originally belonged to us, but he got out one day and we were never able to keep him in the house again. Yet strangely enough, he never left the area, and even followed us when we moved a few miles down the street. Our other cat was named Sevens. She was mostly gray with a few darker gray stripes down her back. We never had Sevens spayed, and as a result she ended up have 3 litters of kittens throughout her life, but we never kept any of the kittens. It was never confirmed, but we always believed Peaches was the father. A slightly less memorable pet, but I will never forget was an oscar fish simply named Oscar. I mostly remember Oscar because we had a lot of fun feeding his minnows. We owned all of these pets throughout the first 9 or 10 years of my life, and around that time we moved to Canada. My parents wanted to make sure that we always had a family pet so they immediately went on a search. The first pet we owned in Canada was a golden retriever/beagle mix puppy named Tess. She was definitely more beagle, but she has pure golden fur. We also adopted a black lab named Sam shortly after. I really dont remember much about them aside from how much trouble we had with their house training. There was a very large field full of tall grass and weeds at the end of our street, and we would take them out there and let them run around and play for a while, which turned out to be a bad idea when one day they run pretty far out, too far for us to see, and eventually they were gone. They turned up in a kennel a few days later but we didnt have the money to get them back, so that was the last we saw of them. We waited a few months before we tried to adopt any new pets, but my father always knew exactly what he wanted. His favorite breed of dog were huskies, and we found a husky trainer a few hours north, and that is where we adopted Komo and Seeka, two pure breed huskies. Komo was the more traditional looking husky; a mix of thick black and white fur with icy blue eyes. He quickly grew attached to my father and he couldnt have been happier with the outcome. Komo was around eight years old, so he was usually very docile and enjoyed curling up on the couch with my father. Seeka was younger, somewhere around three, slender when compared to Komo, and had snow white fur with patches of brown. .u6579733ae246990199b935267b559e33 , .u6579733ae246990199b935267b559e33 .postImageUrl , .u6579733ae246990199b935267b559e33 .centered-text-area { min-height: 80px; position: relative; } .u6579733ae246990199b935267b559e33 , .u6579733ae246990199b935267b559e33:hover , .u6579733ae246990199b935267b559e33:visited , .u6579733ae246990199b935267b559e33:active { border:0!important; } .u6579733ae246990199b935267b559e33 .clearfix:after { content: ""; display: table; clear: both; } .u6579733ae246990199b935267b559e33 { display: block; transition: background-color 250ms; webkit-transition: background-color 250ms; width: 100%; opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; background-color: #95A5A6; } .u6579733ae246990199b935267b559e33:active , .u6579733ae246990199b935267b559e33:hover { opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; background-color: #2C3E50; } .u6579733ae246990199b935267b559e33 .centered-text-area { width: 100%; position: relative ; } .u6579733ae246990199b935267b559e33 .ctaText { border-bottom: 0 solid #fff; color: #2980B9; font-size: 16px; font-weight: bold; margin: 0; padding: 0; text-decoration: underline; } .u6579733ae246990199b935267b559e33 .postTitle { color: #FFFFFF; font-size: 16px; font-weight: 600; margin: 0; padding: 0; width: 100%; } .u6579733ae246990199b935267b559e33 .ctaButton { background-color: #7F8C8D!important; color: #2980B9; border: none; border-radius: 3px; box-shadow: none; font-size: 14px; font-weight: bold; line-height: 26px; moz-border-radius: 3px; text-align: center; text-decoration: none; text-shadow: none; width: 80px; min-height: 80px; background: url(https://artscolumbia.org/wp-content/plugins/intelly-related-posts/assets/images/simple-arrow.png)no-repeat; position: absolute; right: 0; top: 0; } .u6579733ae246990199b935267b559e33:hover .ctaButton { background-color: #34495E!important; } .u6579733ae246990199b935267b559e33 .centered-text { display: table; height: 80px; padding-left : 18px; top: 0; } .u6579733ae246990199b935267b559e33 .u6579733ae246990199b935267b559e33-content { display: table-cell; margin: 0; padding: 0; padding-right: 108px; position: relative; vertical-align: middle; width: 100%; } .u6579733ae246990199b935267b559e33:after { content: ""; display: block; clear: both; } READ: 4)The Application of Science to Engineering EssayShe had one brown eye and one blue eye, which I thought made her more unique. She was a beautiful dog, but when we first adopted her along with Komo, she was very shy. She would stay away from everyone, wouldnt really do much. One day, I stayed home sick, I was the only one home so my parents let me spend the day in their bed, and I kept Seeka in the room with me. After taking a nap, I woke up to see Seeka laying on the bed with me. She was so warm and soft, so I curled up with her, and from that day she was MY dog. She was still shy with the rest of the family, but she was always so excited whenever I was around. She would always follow me around, jump up to try and lick my face, it even got to the point where I could walk around the corner while someone was holding her, and she would start to whine until I came back around. I had my dad take apart my loft bed so she could sleep with me at night shortly after she grew attached to me. I remember during the winter, we would hook her leash up to a sled and she would pull me around the block until she tired herself out. This was the first time I ever had that â€Å"boy and his dog†kind of relationship with a pet. I loved Seeka, and she loved me. I never waned to lose her, but things took a bad turn far too soon. About a year and a half after we moved to Canada, and about a year after we adopted Komo and Seeka, my father was laid off. He tried to find another job, unfortunately, with no avail. We tried our best but we were evicted from our house, and at the time we had to move in with some relatives in New York until we could find a new house to move to. What made this worse was that there wasnt enough room in the house for Komo and Seeka, so we were afraid we would have to give them up. It was devastating, but we had one glimmer of hope that made everything better. The kennel we adopted them from promised that they would hold onto them and take care of them until we could take them back. It was sad saying goodbye to Seeka, but it was OK because it would only be a few months. Time had gone by, we moved into a new house, and it was time to go and get the dogs back. When we called the kennel, they very coldly told us they had sold Komo and Seeka, and told us they never made that promise. There was nothing we could do, because we never got it in writing so we had no way to prove it or even take any sort of legal action. I was crushed. At this point in my life, I had never lost a loved one, and never got this close to any of our other pets, so this was the worst moment in my life. Knowing that not only would I never see Seeka again, but that she was still out there somewhere made it even worse. I didnt know what to do, and no one had any answers. In the end, I could do nothing. I had to live with this now, and even to this day I still miss Seeka.
Monday, December 2, 2019
Lab Report Gas Laws Essay Example
Lab Report: Gas Laws Paper Obtain a reference of pressures effects on gas using Boles law using a gas sample of standard air within a syringe and measuring pressures increase and decrease in association to changing volume. Measurements are obtained through microbial sensors and graphed using microbial software where a correlation coefficient of P vs IN can be determined to represent pressure and volumes relationship to each other in the experiment. Procedure / Observations: Entered microbial gas laws program, chose Charles Law and labeled y-axis as temperature variable in Celsius, and x-axis as volume in ran. Read the capillary bees gas bubble at the base of the bubble, recorded as 5. 8. Then placed the sealed end of a capillary tube into a 400 ml beaker 2/3 full of room-temp water. The capillary tubes plug keeps the small amount of air trapped between plug and sealed end. The weight of the plug plus the constant ATM applied maintains a constant pressure on the trapped gas. Turned on hot plate to setting 5, placed 400 ml beaker of water with capillary tube onto hot plate allowing temperature of water to rise to 80 C while stirring occasionally. Once water temperature was found to have reached desired temperature of 80 C the capillary tubes gas bubble was read at the top of bubble in order to deduct from initial reading to determine the changes forced on gas bubble from increase in temperature, the capillary tubes gas bubble read 3. 4 at the top, then deducted the 3. 4 reading at the top of gas bubble from the 5. 8 reading taken prior to heating and from the base of the gas bubble. The difference was 2. 4, which was entered manually into microbial, temperature was read simultaneously as data of gas change was entered into microbial. We will write a custom essay sample on Lab Report: Gas Laws specifically for you for only $16.38 $13.9/page Order now We will write a custom essay sample on Lab Report: Gas Laws specifically for you FOR ONLY $16.38 $13.9/page Hire Writer We will write a custom essay sample on Lab Report: Gas Laws specifically for you FOR ONLY $16.38 $13.9/page Hire Writer Set timer to read temperature and gas changes every minute. Removed the beaker containing 400 ml water, with capillary tube still inside tit sealed end still resting on bottom of beaker, from the hot plate to speed cooling process because the hot plate, although turned off was still heating the water. One minute passed, gas bubble read 3. 4, deducted again from bottom reading of gas bubble taken at the beginning of experiment; difference was a staggering 2. 4, no change. Added approximately five circular chips of ice to water in 400 ml beaker, allowed chips to dissolve within one-minute time frame, read top of gas bubble in capillary tube to be 3. 5, then deducted from our initial base reading at the beginning of 5. And found the difference to be 2. 3. Input data to microbial and temperature was read simultaneously as enter was hit. Added another 5 circular chips of ice to ice to water in the 400 ml beaker, allowed ice to melt while stirring during one-minute interval. Measured top of capillary tubes gas bubble to be 3. , deducted from initial reading at base of gas bubble, in the beginning of experiment of 5. 8, and found a difference of 2. 3. A change had not occurred. Repeated the process of adding ice to water, assisting ice to melt completely by stirring, measured change in gas bubble formed inside capillary be and input data into microbial until the temperature reached 5 degrees Celsius. Please reference attached graph labeled Charles Law. Used data obtained from microbial software to determine Correlation coefficient (V vs T) of R = 0. 92. Were able to determine that absolute zero of experiment by taking the product of 122. 405 (y axis) and 0 (slope intercept), with the sum of -209. 54 (x axis) to find our absolute zero of -209. 54 degrees C. Using the actual/theoretical percent yield equation was able to find the percent error of 23%. Boles law experiment started with opening a new microbial program within in he gas law program labeled Boles law. Set pressure plot to y-axis with factory calibration, set volume plot to the x-axis in ml. Connected syringe to pressure connection in from of microbial. Set syringe to 30. 0 ml, taking into account the 4 ml of sample gas contained in the hose for a total gas quantity of 34. 0 ml. Took measurements of pressure at volume settings from 34 ml, 29 ml, and 25 ml while applying pressure, and then measured from 25 ml, 29 ml, and 34 ml while pulling and applying suction. Microbial measured the pressure and volume changes, please reference attached graph labeled Boles law. Found the correlation coefficient (P vs I/V) to be . 999, information was given as a quantitative value from microbial. Data: Please see attached graph labeled Charles law -209. 54 Please see attached graph labeled Boles law Data Analysis: Charles law experiment and data show that there is an equal relationship between temperature and volume in relation to gas. When temperature increases, so does the volume. Similarly, when temperature decreases so does the volume. It makes sense since on a molecular level the gas partials are moving faster at higher temperatures, thus causing an expansion of the gas to occur as observed in the increased gas bubble inside the capillary tube. Boles law experiment and data displayed similar findings where the pressure and suction were applied and same amount of energy was recorded being placed on the gas at the same measured intervals without change. The graph displayed a visual of the inverse relationship between pressure and volume in relation to gas laws and how where one increases and the other decreases. Conclusion: Experiment was intended to find a reference of temperatures effect on gas using Charles law when heating a capillary tube in water on a heated hot plate. Then, cooling the same capillary tube with ice while measuring the temperatures cooling effect on the gas bubble inside the capillary tube. Measurements of temperature change are taken with microbial sensor and graphed using microbial software. A final determination of experiments determined absolute zero versus actual absolute zero will be calculated to determine percentage of error in experiments data using Charles quantitative law of VI/TO=V/TO. We were able to determine the percent error to be 23% and observe a linear display of the relationship between temperature and volume where as one increases, so does the other. The same relationship was observed in the decrease of temperature and volume. Experiment was meant to obtain a reference of pressures effects on gas using Boles law using a gas sample of standard air within a syringe and measuring pressures increase and decrease in association to changing volume. Measurements are obtained through microbial sensors and graphed using microbial software where a correlation coefficient of P vs IN can be determined to represent pressure and volumes relationship to each other in the experiment. Found that pressure and volume are inversely proportionate to each other, while one doubles, the other halves.
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