HATE

ESSAY QUESTION: Discuss Freuds proposition that: it is always possible to bind together a considerable number of people in love, so long as there are other people left over to receive the manifestations of their aggressiveness.

READING
There are two key readings this week, and we expect you to read at least one of them. Watch the first video first, which introduces both briefly, then either do the reading first or watch the lectures first as you prefer.
Sigmund Freud (1915). Instincts and their Vicissitudes. In The Standard Edition, Volume 14 (1914-1916): On the History of the Psycho-Analytic Movement, Papers on Metapsychology and Other Works, 109-140.  (This early text might be easier to read, and if you download from this link Lizaveta has highlighted the bits that relate to hate.) This is discussed in video 2.
Sigmund Freud (1930) ‘Civilization and its Discontents’. In The Standard Edition of the Complete Psychological Works of Sigmund Freud, vol.21. London: Vintage. Chapters IV-VI, pp.99-122.  (This represents Freud’s later, more fully developed version of his theory and is one of his most important works. The lecture will focus on this text.) This is discussed in video 3.

flywheels and turning moment diagrams

A single cylinder, single acting, four stroke gas engine develops 20 kW at

300 r.p.m. The work done by the gases during the expansion stroke is three times the work done on

the gases during the compression stroke, the work done during the suction and exhaust strokes

being negligible. If the total fluctuation of speed is not to exceed ± 2 per cent of the mean speed and

the turning moment diagram during compression and expansion is assumed to be triangular in

shape, find the moment of inertia of the flywheel.

 

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Apply the Fresnel equations that we derived in class along with Snell’s law to arrive at an expression for waves (a) through (e) above in terms of the index of refraction of the surrounding medium n1, the index of refraction of the thin film n2, the incident angle

In thin film interference, an (a) incident wave reflects off of the front interface of the thin film and (b) refracts into the thin film.This refracted wave then (c) reflects off of the back interface of the thin film yet also (d) transmits through the film.This reflected wave then (e) refracts back through the front interface of the thin film in order to interfere with the wave that initially reflected off of the front interface.Apply the Fresnel equations that we derived in class along with Snell’s law to arrive at an expression for waves (a) through (e) above in terms of the index of refraction of the surrounding medium n1, the index of refraction of the thin film n2, the incident angle (?i), the thickness of the thin film d, and the wavelength of the incident light ?. Include a diagram of the light rays and give the expression for the path length through the thin film.

please write and indicate each part clearly


 


The post Apply the Fresnel equations that we derived in class along with Snell’s law to arrive at an expression for waves (a) through (e) above in terms of the index of refraction of the surrounding medium n1, the index of refraction of the thin film n2, the incident angle appeared first on nursing assignment tutor.

1 integral question – Quality Nursing Writers

Evaluate the following integral Evaluate ( ) 4 2 1 x x dx − + 4 2  using the limit definition of the definite integral.
 
Do you need a similar assignment done for you from scratch? We have qualified writers to help you. We assure you an A+ quality paper that is free from plagiarism. Order now for an Amazing Discount!Use Discount Code “Newclient” for a 15% Discount!NB: We do not resell papers. Upon ordering, we do an original paper exclusively for you.