Tuesday, April 28, 2020
People Of Gilded Age Essays - Rockefeller Family, Philip Sheridan
People Of Gilded Age After the Civil War had ended, several soldiers had returned home to find their places of living destroyed. Most of these people returned to practically nothing. The United States had to rebuild itself, and this rebuilding was called Reconstruction. Today historians refer to this era of reconstruction as the part of the Gilded Age. Many people had to pickup and start all over again, while others continued their quests of expanding. Expanding by taking control over the land or by expanding their beliefs, either way lives of these people reflected the social tensions of the Gilded Age. Philip H. Sheridan, who was one of the heroes of the Civil War, was a soldier who had started his career on the frontier and would return there after the war to help the United States in expanding its territory by having to combat many Native Americans in doing so. Sheridan was an extremely important person who helped conquer the frontier. Sheridan believed in the freeing of black slaves, and decided that he would help protect the blacks now that they were free. He expresses his opinion about what is done to black people in Texas by commenting that the ?black codes are a policy of gross injustice toward the colored people on the part of the courts, and a reign of lawlessness and disorder ensued.?(10) Sheridan's defense of the black cause much tension in his life, in Texas, that he was later reassigned to command the Department of the Missouri. (11) In 1869 when Grant had became President; he appointed Sheridan lieutenant governor and command of the Division of Missouri. Sheridan's pa st on tactics for attacking the Indians made him the best man for the job in defending the western frontier. Much of Sheridan's life involved being enrolled in the army and defending the frontier. He is also known for the quote ? The only good Indian is a dead Indian?, which he became synonymous with. (13) Sheridan's life practically evolved around the Indian warfare and the tensions that surrounded it. His ethics and tactics of Indian warfare were often questioned, leaving him to defend himself against his critics quite often. Another lifestyle that had taken on the challenges of living a successful life was that of being a doctor. Susan LaFleshe Picotte was one of these doctors; but for Susan to be a successful doctor, she had to overcome many more obstacles than other people did. As you see, becoming a doctor is one difficult task at hand, but being a woman who was Indian was another. Susan was a Siouan-speaking Omaha, who had migrated to Nebraska because of the Indian Removal Act of 1830. (24) Susan's life was different than the rest of the people in her tribe; she was one of the firsts not to have any piercing or any tattoos as Indians did back then. One other unique characteristic of Susan was that she wanted to continue her education to eventually become a physician. So on October 12, 1850 Susan was accepted to the Woman's Medical College of Pennsylvania. (26) She finished her schooling and soon became the physician of her old reservation. Susan did anything she could to help her patients, including going house to house from sunrise to sunset providing care for her patients. Susan was up to her knees in patients and was taking care of all of the 1,244 tribal members on the reservation. (28) She was an extremely hard working woman of this age. Susan had to deal with other problems other than medicinal purposes. She had to deal with the fact that her tribe was constrained to its reservation. Susan also had to overcome the tensions at home and on the reservation with liquor, for she believed that it was one of the leading causes of death even before her husband succumbed to the effects. (32) Susan became politically involved and helped her tribe as much as possible, it must had been very difficult for someone of her stature to be looked at differently for her race and not for who she was. Sarah Christie Stevens was another woman who had to overcome adversity and survive in a man's world. Sarah was
Friday, March 20, 2020
US Government essays
US Government essays In Chapter 1 of the U.S. Government curriculum, we learned a lot about the start of what has become our government. We learned of John Locke and living in a state of nature, the purpose of government, the state, geographic distribution of power, forms of government, and the basic concepts of Democracy. We also learned a wide variety of new vocabulary, which is listed below. Sovereign (ty) direct democracy government public policies state Representative democracy anarchy confederation parliamentary government unitary government federal government Nation-state presidential government dictatorship social contract The first step in forming government was taken by a man named John Locke. John Locke was an English political philosopher who lived from 1632-1704. (Pictured on blue tab) He believed in the natural rights philosophy, which was based on envisioning life without government. Locke and his fellow philosophers called this living in a state of nature. Later he, along with others, created the Social Contract Theory. The people of a state would live in a state of nature until everyone agreed to give up to the state as much power as was needed to form a government. This was formed by contract. In that contract the members of the state created a government to implement the powers they had willingly granted to the state. As time progressed other forms of government were formed and used all over the world. The Founding Fathers created a list of principles to keep the people of the United States free, this was called the preamble to the Constitution and each of those principles was a purpose for having a government. (See Preamble under blue tab) The first principle mentioned was to form a more perfect union. This means that they wanted to give the people of the United States as much freedom as possible, while having a better government. The second idea was to establish justice, which ...
Tuesday, March 3, 2020
The Second Book Syndrome
The Second Book Syndrome The second book is a nail-biting endeavor. One would think that the first one would be the one to make you break out in hives, but trust me, that follow-up is an experience all its own. Most readers wait to read an author until the author has multiple books out. That means three, four, or more. Stand-alones have to lead with some pretty incredible buzz to be read. The first book in a series is also a difficult sell. But an author releasing the second book is in this crazy limbo place: not yet proven as an author or as a series worth investing in. Heres the Second Book Syndrome from the eyes of the reader: 1) Is book two as good as book one? 2) Is the author a one-hit wonder (e.g. Harper Lee)? 3) Is all the excitement expended in the first book? 4) No point reading book two until after reading book one. 5) Why does this author have two books when I never heard of the first one? 6) Ill wait until there are three or four books. Two books isnt a series. The author knows all this, because authors are readers before they are writers. Lets look at the Second Book Syndrome through the eyes of the author: 1) Is book two as good as book one? Im too close to really tell. 2) Do I have another book in me? The first one was a feat in itself. 3) Did I invest so much into book one that Im fighting for traction in book two? 4) How do I make people want to read this book when book one is still trying to sell? 5) Do I have enough credibility to make people read more than one book? 6) Two books dont feel like a series. I wish I could write faster and get to book five. These thoughts are amazingly similar. Book two is that difficult book. In most series, authors and publishers will tell you that the second book often tanks or proves to be the hardest sell. The author poured himself into developing a voice in the first one, but is that skill tapped dry? Is the second story as special as the inaugural one? Is the magic gone? Was the first one a fluke? As both author and reader, cut the second book some slack. In reality, it should be the more mature book where the author has more stable footing and can dare to step up their game. A writer daring to tackle that second book is hungry and aiming to please. It might be THE BOOK of the seriesthe one where the author is fighting harder to prove himself. Whether reader or author, give it a whirl!
Sunday, February 16, 2020
Wet Lab. Cellular Replacement Therapy And Stem Cell Research Essay
Wet Lab. Cellular Replacement Therapy And Stem Cell Research - Essay Example When embryonic mouse stem cells were isolated more than 25 years ago, the significance of the discovery was soon realized. (Keller, 2005) there are many researchers and hold out hope for cellular replacement therapy arising from stem cell research. Specifically, embryonic stem cells, also known as ES - pluripotent cells are of great concern. They exhibit the potential to differentiate into a variety of final tissue types when they reach their ultimate, fully matured state. Embryonic stem cell lines are usually derived from a blastocyst, or in some cases an earlier stage of embryonic development. The 150 cells which at most comprise the blastocyst are able to differentiate into all types of body tissues. (Stem Cell Information, 2009) Most immediately, a pluripotent stem cell will give rise to the primary germ layers: ectoderm, mesoderm, and endoderm. From these layers, other cells and tissues differentiate but ultimately give rise to all internal organs of the future organism. (Schole r, 2007) Other types of stem cells, further in development also have uses in research and therapy; multipotent stem cells have some flexibility, but usually only within a closely related family of cells, such as cardiac tissue, blood cells. Furthermore, the cells can become Unipotent cells - which are not themselves per se, because they can only produce new cells of the exact same type. On the other end of the spectrum, are totipotent stem cells, these are fertilized zygotes which have the potential to grow into an entire individual, an embryonic stem cell from a blastocyst does not qualify.(Scholer, 2007) Cells can also be classified in terms of progenitor or precursor. Precursors exhibit recognizable traits of the function type they will become, while Progenitors are not outwardly committed to a cell type. (Rabbany et al. 2003) An extensive variety of proteins are responsible for differentiation of which much more research is needed. We are only now discovering the functions of re gulatory operators such as Shp2, or transforming growth factor-?, that aids in the expression of chorionic gonadotropin.(Burnham Institute, 2009), (Keller, 2005) A well-studied pathway is the process of hematopoiesis, by which stem cells give rise to various types of blood cells. (Mackey, 2001) There are essentially two branches to the hematopoietic differentiation process: the lineage beginning with a myeloid progenitor, and the lineage stemming from the common lymphoid progenitor. (Parslow et al. 1997) The lymphoid progenitor arises from the multi-potential Hemocytoblast. The lymphoid progenitor differentiates into what are described as T cells. Differentiation is possible into the natural killer cells, CD4 and CD8 types, known as large granular lymphocytes, from which no further cell lines arise. But the lymphoid progenitor can also become the small lymphocyte. This stem cell has the potential to become a T-lymphocyte helper cell, or a B lymphocyte, which can further differentiat e into plasma cells from which antibodies are produced. (Leishman et al. 2001), (Obeyesekere et al. 2004) But the hemocytoblast from which these types arise produces more cell types along the myeloid lineage. The myeloid progenitor can differentiate into four other cell lines; erythrocytes ââ¬â otherwise known as oxygen-carrying red blood cells. Immature erythrocytes can be identified by the presence of a nucleus, since they are similar in size and shape to mature erythrocytes ââ¬â but a nucleus is ejected from the cell upon reaching full differentiation. (Ownby, 2002) Another differentiation event results in mast cells, whose release of histamine and heparin is responsible for many allergic reactions including anaphylaxis. Myeloid progenitors can also
Sunday, February 2, 2020
Disciplines of Humanities, Social Science and Management Essay
Disciplines of Humanities, Social Science and Management - Essay Example One such idea, that hadnââ¬â¢t been put in place during the founderââ¬â¢s time, but that has since seen some use and development, includes Frederick Taylorââ¬â¢s (1856-1915) Scientific Management Method. The founding idea behind Frederick Taylorââ¬â¢s scientific management theory was the concept that ââ¬Å"the principal object of management should be to secure the maximum prosperity for the employer, coupled with the maximum prosperity for each employee.â⬠1 Taylorââ¬â¢s theories can be seen in many organizations that exist today, but perhaps most easily in the processes that characterize the popular fast food chain McDonalds, especially if one studies the means by which the company has redesigned their work areas since my teenage years to produce the greatest possible product in the least amount of time with the fewest manpower hours necessary to keep customers happy. Another development in management science that has occurred in the past 50 years, but accelerate d in the past 20, has been the concept of a knowledge society and economy. Rather than being focused upon products and materials, the new economies and philosophies are based more upon the concept of information management and communication. To understand some of these concepts, Taylorââ¬â¢s Scientific Management Method will be introduced and applied to one of my earliest positions as a McDonaldââ¬â¢s employee, examining how application of the theory has changed this organization in the intervening years, before examining the changing base of management to one of information and how that applies to my current position as a network administrator. Frederick Taylorââ¬â¢s theory centered around the concept that management and the workforce should work in tandem for a mutual benefit, but that it was essential for management to make benefits directly applicable to the employee who
Saturday, January 25, 2020
Factors Influencing Static Electricity
Factors Influencing Static Electricity Abstract The purpose of this experiment is to understand the magnitude of static electricity and the factors influencing it. The importance of this study can be linked to climate, technological advances, and improving existing inventions or creating new inventions. The fascination with static electricity motivated me to understand what static electricity is, in order to further my knowledge and flawlessly explain the science of lightning. Static electricity is the imbalance of electric charge which produces a small spark, therefore on a much larger scale, lightning in a thunderstorm is the result of the separation of protons and electrons. For my experiment, I created an electroscope using a glass jar with a plastic lid, a paperclip holding two small pieces of aluminum foil and tape securing the paperclip. I used 3 balloons of different sizes, small, medium, and large and rubbed it on my hair to separate charges, then I brought the balloon closer to the electroscope and the aluminumà foil then repelled from the other piece of aluminum; this successfully conveyedà that there was a separation of charge on the balloon from rubbing it on my hair. I repeated this experiment with the next 2 balloons and recorded my results. To decrease the likelihood of failure, I did 2 more trials; the results I came across supported my original hypothesis which stated that the bigger the material, the greater amount of electricà ch arge, and after conducting the experiment 2 more times with each different size of material, my hypothesis still was proved to be accurate. Upon proving the hypothesis to be true, I then concluded that the magnitude of lightning must have extreme strength considering the large scale damage it can do, and the fascination continued as I felt as though the science behind lightning was now between my very fingertips. To conclude, my experiment has taught me about the science of static electricity, the different ways we can separate charges in order to induce a shock, and how it can be related and interconnected with climate. This field of study has extreme significance and I am confident that the use of static electricity will grow, such as the use of static electricity in printers and photocopiers has already been implemented. For the next experiment I conduct, I would like to test the different influences other factors have on static electricity, such as the type of materials tested, the effects of the environment where the experiment takes place, or the significance of climate regarding static electricity. Introduction fI have always been fascinated with electric charge, static electricity, and the effects of friction. The fascination with science and its relationship to staticà electricity and climate leaves me wondering what causes static electricity, how it is produced, and what are the factors that create a higher magnitude of static electricity. The main reason I am motivated to do this experiment is due to the fact that the world is advancing technologically each and everyà day. In my opinion the incorporation of static electricity into commonà applications is a very important subject to study; especially considering the amazing capabilities, and future advancements, of printers, photocopiers. I have many un-answered questions about the science of static electricity and the various factors that influence it. The topic of static electricity raises interesting points and thought provoking questions, I would like to answer a few such as; how does static electricity relate to lightning? What is the effect of size and temperature on static electricity? And, is static electricity necessary for life on Earth? + The purpose of this experiment is to examine the difference in magnitude ofà static electricity, using several materials of different sizes. Testing the different materials will then lead me to understand the factors that may influence the strength of electric charges, and how it could relate to climate. +Hypothesis: I think that the size of an object is ther essential factor affectingà the magnitude of static electricity, that is, the bigger the material, theà greater magnitude Indicatevariables Manipulatedà variable :Size of the material testing balloons Respondingà variable:à Amount of static electricity Constants:à The types of materials, number of times each balloon is rubbed, and the temperature in the room the experiment will be conducted in. Research Static electricity is an imbalance of electric charges, and is generated by the separation of positive charges and negative charges. Therefore, when two different materials are within contact, the electrons can move from one material to the next when then leaves a surplus of positive charge on the other material, this consequently creates static electricity. Static electricity may be produced by friction and create a spark; however friction does not create it, but rather the transfer of electrons will create the static charge. All materials, people, and objects contain atoms. Atoms possess a nucleus which consist of protons and neutrons, whereas the electrons are outside of the nucleus. Objects and materials are usually neutrally charged as there is an equal number of protons and electronshowever if there is an imbalance between theà electric charges induced by contact, static electricity will generate. Static electricity can also be generated through various ways, such as when putting ceramics under pressure or heat. One can also separate charges by positioning a charged objectà near a neutral object. This results in the charges of the neutral object repelling the same polarity as the charged object while the charged object will be attracted to the opposite polarity, which then causes the neutral object to have an unequal amount of charge. Discovering the different ways to separate charges increases my motivation to understand the factors that affect the magnitude of static electricity. The transfer of electrons onto a different material and having an imbalance between charges will result in static electricity, however I would like to understand theà relationship between polarity and size. My entire experiment is based on the many factors that could possibly influence the degree of static electricity. I am using the factors that could possibly affect static electricity as my foundation because staticà electricity is vital to human existence, and important.à à à à à à à . Hypothesis Based on my research, I think that the size of an object is the significant factor affecting the strength of static electricity, in other words, the larger the material, the greater the magnitude. Research that I have conducted has helped me discover the science behind lightning, which reenforces my hypothesis of largerà materials or objects that hold electric charge having greater strength because of how strong lightning is. Lightning is essentially static electricity on a bigger scale. Procedure Materials Glass jar Plastic lid Tape Aluminum foil Paper clip Balloons Ruler Variables o Manipulated variable- For this experiment, the size of each balloon will be manipulated. o Respondingvariable The magnitude of static electricity observable from theà foil repels.à o Constants Types of material, number of times each balloon is rubbed, and the temperature of the environment that the experiment will be conducted in. Stepbystep 1. Inflate 3 balloons of different sizes; small, medium, and large 2. Straightenà the paper clip out, then create a shape with a center circle with two hooks attached to it 3. Make a small opening in the middle of the plastic lid 4. Place the paper clip in the opening with the center circle sticking out from the top, and the hooks at the bottom, then secure it with tape 5. Cut two small pieces of aluminum foil of equal size, then make a small hole in the end of each strip 6. Attach the strips of foil onto the hooks of the paperclip 7. Now we have an electroscope and its time for the experiment to be conducted, create a data chart to record trials and measurements 8. Grab the small balloon, and rub it on your hair 10 times, then take the balloon and get close to the top of the electroscope, the foil should then move apart; this conveys that there is a separation of charges. 9. Measure the distance between the aluminum foil in the data chart 10. Repeat step 8 with the next two balloons and record the results to compare the strength of static electricity 11. Complete 2 more trials for each size of the balloons Results Observations Small balloon 0.7 inches Medium balloon 1inch Large balloon 1.2 inches Conclusion Based on the results of this experiment, the hypothesis thatà the bigger the material is, the stronger the magnitude, is proven to be true. The small balloon onà each trial has the smallest distance between the 2 strips of aluminum foil, and theà large balloon has the largest distance. This correlation supports my originalà chypothesis and can therefore expand my knowledge of static electricity and applyà Q-:it to wider scales. This study has extreme significance as it can be applied toà creating new inventions with the use of static electricity, explaining climate, andà understanding the different strengths of static electricity and its uses. On a personal interest, I believe the fascination with this topic is because of how à powerful lightning can be, and how it can be conducted from my very fingertips. The purpose of this project for me is to understand the science behind lightningà learned the details of static electricity, why we feel a shock when there is an imbalance of charges, and the different ways to separate charges. For next time, I would like to experiment with varying materials rather than different sizes, and possibly change small details such as, number of rubs per material, number of trials, and trying to experiment in different temperatures. Bibliography Hanania, Jordan, Kailyn Stenhouse, and Jason Donev. Static electricity. Static electricity-EnergyEducation.N.p., n.d. Web. 9 Jan. 2017. . How does static electricity work? Howdoesstaticelectricitywork?{Everyday Mysteries: FunScienceFactsfrom theLibraryofCongress).N.p., n.d. Web. 10 Jan. 2017. . What Is Static Electricity? LiveScience.Purch, n.d. Web. 10 Jan. 2017. .à à à à à à Ã
Friday, January 17, 2020
Yoyoyo
Choose one of the following project menu options to work on with your team. Be prepared to provide your second and third choice of project. The rubric that will be used to grade the finished product is also Included to gulled you in completing your project. The project will be due in class on Monday, October 20 and pre-checked on October 17, Friday. Options 1 and 2 Create a 3-D model of a Eukaryotic Cell belonging too Plant (option 1) or Animal (option 2). Length and height are not shorter than 8. Depth is not shorter than . . Your model must include all of the basic parts of the cell you choose as well as all organelles. In addition, you must label or provide a key to all parts and organelles so that they are clearly identifiable. You also need to include a written explanation of what organelles are represented and why you chose the materials you did to make each organelle or cell part. Recommended materials include (but are not limited to) non-perishables such as Styrofoam, wood, c ardboard, plastic, pasta, beans, etc.Your finished product may be freestanding but stable. Critical thinking and creativity are required Options 3 and 4 Design and create a movie (option 3) or cartoon storyboard (option 4) that depicts the adventures of an explorer Inside a cell. Choose one of the two types of Eukaryotic Cells Plant or Animal. Your storyboard should be Illustrated using color and should be presented on pasteboard. In Dalton to illustrations, you need to Include detailed descriptions of what is going on in each picture.You can be creative but remember that you must focus on how the cell parts and organelle function as your explorer experiences or interacts with them. Creativity and humor are encouraged Options 5 and 6 Design a travel brochure that describes a cell as though it were a large exhibit, attraction, an amusement park, cruise ship, or any other self-contained location with lots to do and lots of activities going on inside. Choose one of the two major types of Eukaryotic Cells Plant (option 5)or Animal (option 6).You must create an analogy for all of the parts and organelles found in the cell type that you choose, making sure that your analogies are relevant to the location. (Example If a cell Is Like an amusement park, then the nucleus might be the park headquarters, etc. ) In your brochure, you will draw, describe, and explain the functions of cell parts and organelles. You may use gained cutouts or pictures from the Internet as long as they are clear and accurate.Make sure your brochure is eye catching and interesting, colorful but informative Humor and creativity are required. Options 7 Choreograph and perform an original song or dance that depicts all the organelles and functions of each organelle. It is strongly suggested that you stick a label to identify the organelle you are depicting in the song/dance. If you decide to make more than one scene/act, provide a way to communicate this to the audience. The dance should not be lon ger than 3 minutes and not shorter than 1. 5 minutes. Record this on video.
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