Open Access. Powered by Scholars. Published by Universities.®

Digital Commons Network™

Open Access. Powered by Scholars. Published by Universities.®

University of Nebraska - Lincoln

Discipline
Keyword
Publication Year
Publication
Publication Type
File Type

Articles 109141 - 109170 of 114036

Full-Text Articles in Entire DC Network

Test 679: Case Model 811-B, Nebraska Tractor Test Lab Jan 1958

Test 679: Case Model 811-B, Nebraska Tractor Test Lab

Nebraska Tractor Tests

This report and any related files are made available to the online through the Lester F. Larsen Tractor Test and Power Museum as resources allow. Established in 1998, this museum is located on the University of Nebraska-Lincoln East Campus. It is and appropriately housed within the walls of the historic 1920 Nebraska Tractor Test Laboratory, where the first tractor test was started on March 31st, 1920. Because the pioneer tests became worldwide standards, this location was designated as a Historic Landmark of Agricultural Engineering by the American Society of Agricultural Engineers in 1980, shortly after testing was moved to a …


Test 680: Case Moderl 801-B (Diesel), Nebraska Tractor Test Lab Jan 1958

Test 680: Case Moderl 801-B (Diesel), Nebraska Tractor Test Lab

Nebraska Tractor Tests

This report and any related files are made available to the online through the Lester F. Larsen Tractor Test and Power Museum as resources allow. Established in 1998, this museum is located on the University of Nebraska-Lincoln East Campus. It is and appropriately housed within the walls of the historic 1920 Nebraska Tractor Test Laboratory, where the first tractor test was started on March 31st, 1920. Because the pioneer tests became worldwide standards, this location was designated as a Historic Landmark of Agricultural Engineering by the American Society of Agricultural Engineers in 1980, shortly after testing was moved to a …


Translated From Russian By Virginia Ivens. Svanbaev, S. K. 1958. The Coccidial Fauna Of Wild Ungulates Of Kazakhstan. Works Of The Institute Of Zoology Academy Of Sciences, Kazakh Ssr 9: 187-197. Transliteration: Fauna Koktsidi! Dikikh Kopyteykh Zhivoteykh Kazakhstana. Trudy Instituta Zoologii Akademie Nauk Kazakh Ssr 9: 187-197, S. K. Svanbaev, Virginia Ivens Jan 1958

Translated From Russian By Virginia Ivens. Svanbaev, S. K. 1958. The Coccidial Fauna Of Wild Ungulates Of Kazakhstan. Works Of The Institute Of Zoology Academy Of Sciences, Kazakh Ssr 9: 187-197. Transliteration: Fauna Koktsidi! Dikikh Kopyteykh Zhivoteykh Kazakhstana. Trudy Instituta Zoologii Akademie Nauk Kazakh Ssr 9: 187-197, S. K. Svanbaev, Virginia Ivens

Harold W. Manter Laboratory of Parasitology: Library Materials

Translation number 9, College of Veterinary Medicine, University of Illinois, Urbana, Illinois, United States, 1960 or 1961

Translation of Svanbaev, S. K. 1958. The coccidial fauna of wild ungulates of Kazakhstan. Works of the Institute of Zoology Academy of Sciences, Kazakh SSR 9: 187-197. Transliteration: Fauna koktsidii dikikh kopyteykh zhivoteykh Kazakhstana. Trudy Instituta Zoologii Akademie Nauk Kazakh SSR 9: 187-197

Translated from Russian to English by Virginia Ivens, University of Illinois, Urbana, Illinois, United States


Photograph Of Relief Model Map Of Nebraska, Conservation And Survey Division Jan 1958

Photograph Of Relief Model Map Of Nebraska, Conservation And Survey Division

Conservation and Survey Division: Faculty and Staff Publications

No abstract provided.


Control Of Hog Lice And Mange, Robert Roselle Jan 1958

Control Of Hog Lice And Mange, Robert Roselle

Department of Entomology: Faculty Publications

The hog louse (Haematopinus suis) is the largest species of louse found on domestic animals. It may attain a length of one-quarter of an inch. The body is oval, and the legs terminate in large, dark claws well adapted to cling to hairs. Hog lice are bluish-gray in color. They are found only on hG>gs except in very unusual cases. The eggs or "nits" are glued to the hairs and hatch in 12 to 20 days. Young lice mature in 10 to 12 days. The average life cycle is about 35 days. Lice suck blood from the host, and …


Comparison Of Effects Of X-Ray And Thermal Neutrons On Dormant Seeds Of Barley, Maize, Mustard, And Safflower, B. H. Beard, Francis A. Haskins, C. O. Gardner Jan 1958

Comparison Of Effects Of X-Ray And Thermal Neutrons On Dormant Seeds Of Barley, Maize, Mustard, And Safflower, B. H. Beard, Francis A. Haskins, C. O. Gardner

Department of Agronomy and Horticulture: Faculty Publications

Comparisons of the biological effects of X-rays and thermal neutrons on dormant seeds of barley have been made by seedling height studies, root tip cytological analyses, and cytological studies of pollen mother cells in the first generation following irradiation and by seedling mutation studies the second generation after irradiation. The results of these studies have been reported by Caldecott, Frolik and Morris (1952) and Caldecott, Beard and Gardner (1954). The objective of the research reported in this paper was to extend the comparison of these two types of radiation by studying their effects on dormant seeds of four widely different …


Summary And Interpretation Of Underground Development In Grassland Communities, J. E. Weaver Jan 1958

Summary And Interpretation Of Underground Development In Grassland Communities, J. E. Weaver

Department of Agronomy and Horticulture: Faculty Publications

Table of Contents:
Introduction
Grassland Soils
Underground Parts of Grasses of Lowland
True Prairie
Big Bluestem
Other Grasses
Discussion and Interpretation
Underground Pats of Grasses of Upland True Prairie
Little Bluestem
Needlegrass
Prairie Dropseed
Big Bluestem
Other Grasses
Experiments with Underground Parts
Discussion and Interpretation
Underground Parts of Grasses of Mixed Prairie of Hard Lands
Buffalo Grass
Blue Grama
Purple Three-Awn
Western Wheatgrass
Side-Oats Grama
Needle-and-Thread
Other Grasses
Other Studies in Hard Lands
Discussion and Interpretation
Underground Parts of Grasses of Mixed Prairie of Loess Hills
Underground Parts of Grasses of Sand Hills
Sand Bluestem
Sand Reed
Blowout Grass
Sandhills …


Some Dilemmas In Graduate Education, John C. Weaver Jan 1958

Some Dilemmas In Graduate Education, John C. Weaver

Department of Educational Administration: Faculty Publications

IN THE LATE WINTER OF 1957, WHEN I WAS DEAN OF ARTS AND SCIENCES AT KANSAS STATE COLLEGE BUT HAD ACCEPTED APPOINTMENT THE FOLLOWING JULY 1, AS DEAN OF THE GRADUATE COLLEGE AND UNIVERSITY RESEARCH ADMINISTRATOR AT THE UNIVERSITY OF NEBRASKA, I RECEIVED AN INVITATION FROM THE CARNEGIE CORPORATION TO ACCEPT A TRAVELLING FELLOWSHIP TO VISIT A DIVERSE GROUP OF AMERICAN AND CANADIAN UNIVERSITIES AND THEIR GRADUATE SCHOOLS. My TRAVEL WAS COMPLETED IN MAY, 1958, AND THIS is A SUMMATION OF MY IMPRESSIONS DRAWN FROM THE INSTITUTIONS VISITED. OBViOUSLY THIS IS NOT A DEFINITIVE EXPOSITION Of WHAT OF GRADUATE EDUCATION. …


Physics, Preface, Henry Semat, Robert Katz Jan 1958

Physics, Preface, Henry Semat, Robert Katz

Robert Katz Publications

This book is intended for students of science and engineering; it aims to develop both an understanding of the important concepts of physics and some analytical skill in the solutions of problems. The mathematical level of the book is such that it may be used by students who are taking a course in calculus concurrently.

The notations and methods of the calculus are introduced early in the text, beginning with the concept of a derivative in the discussion of motion, and are then extended to more complex problems as the student progresses both in physics and in mathematics. Vector algebra …


Physics, Chapter 1: Fundamental Quantities, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 1: Fundamental Quantities, Henry Semat, Robert Katz

Robert Katz Publications

Physics is a fundamental science dealing with matter and energy. By convention, the subject matter of physics has been divided into such topics as mechanics, heat, sound, light, and electricity. In addition to these general classifications, present-day physics includes atomic physics, nuclear physics, solid-state physics, chemical physics, biophysics, and many other subdivisions. It is impossible to include all aspects of physics in a single definition or paragraph, and to distinguish physics clearly from its nearest neighbors, the other physical sciences-astronomy., chemistry, and geology.


Physics, Chapter 14: Temperature, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 14: Temperature, Henry Semat, Robert Katz

Robert Katz Publications

Temperature is one of the fundamental concepts of physics. We are all able to recognize that some bodies are hotter than others, but our temperature sense is qualitative rather than quantitative and is capable of only a limited range. The sense of touch can frequently be used to distinguish between hotter and colder objects, provided that these lie in a temperature range consistent with the stability of human tissue. Even within this range the sense of touch is often unreliable as a measure of temperature.

The metal bracket holding a wooden rail may feel much colder to the touch than …


Physics, Chapter 12: Periodic Motion, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 12: Periodic Motion, Henry Semat, Robert Katz

Robert Katz Publications

One of the more important problems in mechanics is the study of periodic motions, that is, motions which repeat themselves in regular intervals of time, called the period. An example of periodic motion which we hrNe already encountered is uniform circular motion, in which the velocity and acceleration of the body at a given angular position were always the same. If a particle was found at a given position at a time t, we could be sure that it would return to that position at time t + T later, where T was the period of the rotational motion. A …


Physics, Chapter 11: Rotational Motion (The Dynamics Of A Rigid Body), Henry Semat, Robert Katz Jan 1958

Physics, Chapter 11: Rotational Motion (The Dynamics Of A Rigid Body), Henry Semat, Robert Katz

Robert Katz Publications

The motion of the flywheel of an engine and of a pulley on its axle are examples of an important type of motion of a rigid body, that of the motion of rotation about a fixed axis. Consider the motion of a uniform disk rotating about a fixed axis passing through its center of gravity C perpendicular to the face of the disk, as shown in Figure 11-1. The motion of this disk may be described in terms of the motions of each of its individual particles, but a better way to describe the motion is in terms of …


Physics, Chapter 10: Momentum And Impulse, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 10: Momentum And Impulse, Henry Semat, Robert Katz

Robert Katz Publications

An extremely important concept in the development of mechanics is that of momentum. The momentum of a body is defined as the product of its mass by its velocity. We shall use the symbol p to denote the momentum of a body. The momentum of a body is a vector quantity, for it is the product of mass, a scalar, by velocity, a vector. While momentum and kinetic energy are compounded of the same two ingredients, mass and velocity, they are quite different concepts, and one aspect of their difference may be seen in the fact that momentum is …


Physics, Chapter 9: Hydrodynamics (Fluids In Motion), Henry Semat, Robert Katz Jan 1958

Physics, Chapter 9: Hydrodynamics (Fluids In Motion), Henry Semat, Robert Katz

Robert Katz Publications

When a liquid flows through a pipe in such a way that it completely fills the pipe, and as much liquid enters one end of the pipe as leaves the other end of the pipe in the same time, then the liquid is said to flow at a steady rate. At any point of the pipe, the flow of the liquid does not change with time. The path of any particle of liquid as it moves through the pipe is called a streamline. We can map the flow of liquid through the pipe by drawing a series of …


Physics, Chapter 8: Hydrostatics (Fluids At Rest), Henry Semat, Robert Katz Jan 1958

Physics, Chapter 8: Hydrostatics (Fluids At Rest), Henry Semat, Robert Katz

Robert Katz Publications

From our everyday experience, we have become familiar with the fact that matter occurs in three different forms-solid, liquid, and gas. Under ordinary conditions stone, iron, copper, and chalk, for example, are solids; water, oil, and mercury are liquids; air, hydrogen, and carbon dioxide are gases. Each one of these forms is called a phase. At times it is difficult to distinguish clearly between the solid and the liquid phases, as in a material such as tar which flows under the action of a force at ordinary temperatures. Metals at high temperatures flow or "creep" under the action of a …


Physics, Chapter 6: Circular Motion And Gravitation, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 6: Circular Motion And Gravitation, Henry Semat, Robert Katz

Robert Katz Publications

Our earlier discussion of the kinematics of a particle was developed principally from the point of view of being able to describe that motion easily within a rectangular coordinate system. Thus the most complex case with which we dealt was that of a projectile motion, in which the acceleration was constant and was directed along one of the coordinate axes. A more convenient framework within which to discuss rotational and circular motions is provided by a set of polar coordinates. In the present discussion we will restrict ourselves to motion in which the polar coordinate r is constant, or fixed; …


Physics, Chatper 24: Potential, Henry Semat, Robert Katz Jan 1958

Physics, Chatper 24: Potential, Henry Semat, Robert Katz

Robert Katz Publications

A positive charge q situated at some point A in an electric field where the intensity is E will experience a force F given by Equation (23-1a) as F = Eq. In general, if this charge q is moved to some other point B in the electric field, an amount of work ΔW will have to be performed. The ratio of the work done ΔW to charge q transferred from point A to point B is called the difference of potential ΔV between these points.


Physics, Chapter 23: The Electric Field, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 23: The Electric Field, Henry Semat, Robert Katz

Robert Katz Publications

We have previously described the gravitational field as one way of thinking about gravitational forces (Section 6-16). If an object of mass m at rest at a point P experienced a force, we could attribute that force to the presence of the gravitational field. In a similar way we may attribute the force experienced by an electric charge at rest at a point P to the presence of an electric field at that point. From the preceding chapter we recognize that the existence of a force ,on a charged particle is due to the presence of other charged particles in …


Physics, Chapter 22: Electrostatics, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 22: Electrostatics, Henry Semat, Robert Katz

Robert Katz Publications

One simple phenomenon of electricity was known to the ancients: that when a piece of amber was rubbed, it acquired the property of attracting small pieces of paper and other light particles. Records show that Thales of Miletus (circa sixth century B.C.) knew of this property of amber; the Greek word for amber is elektron, hence the name electricity. There was practically no further development of this subject until about the seventeenth century. Otto von Guericke (1602-1686) of Magdeburg built a large sulphur sphere, which, when rotated about an axis and rubbed with his hand, gave off electric sparks. In …


Physics, Chapter 20: Wave Motion, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 20: Wave Motion, Henry Semat, Robert Katz

Robert Katz Publications

Wave motion is an important method of transferring energy from one place to another without involving the actual transfer of matter. When a pebble is dropped into a still pool, some of the kinetic energy of the pebble is used to generate the ripples which spread out in all directions over the surface of the pool. When the ripples pass by a floating object, such as a bit of cork, the cork bobs up and down, having acquired its kinetic energy of vibration from the ripple system. The ripples thus serve to deliver some of the energy of the pebble …


Physics, Chapter 19: Heat Engines, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 19: Heat Engines, Henry Semat, Robert Katz

Robert Katz Publications

In this chapter we shall consider the physical principles underlying the operations of heat engines because of the intrinsic importance of these principles and because of the part they have played in the development of fundamental physical ideas. Heat engines are designed and built to convert heat into work. In most cases the heat is obtained from the combustion of a common fuel such as coal, oil, gasoline, or natural gas. An important new source of heat that is just beginning to be used, and will be used more extensively in the future, is the mass which is converted into …


Physics, Chapter 18: Transfer Of Heat, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 18: Transfer Of Heat, Henry Semat, Robert Katz

Robert Katz Publications

The methods by which heat is transmitted can be classified into three distinct types known as convection, conduction, and radiation. In any actual case of heat transmission, a combination of these methods may be operating simultaneously, and the principal problem is to determine the rate at which heat flows from the source at higher temperature to the source at lower temperature.

We may distinguish between the three processes of heat transfer by considering whether a medium is required for the transfer of heat, and whether that medium is at rest or in motion. In the process of conduction, …


Physics, Chapter 17: The Phases Of Matter, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 17: The Phases Of Matter, Henry Semat, Robert Katz

Robert Katz Publications

A substance which has a definite chemical composition can exist in one or more phases, such as the vapor phase, the liquid phase, or the solid phase. When two or more such phases are in equilibrium at any given temperature and pressure, there are always surfaces of separation between the two phases.

In the solid phase a pure substance generally exhibits a well-defined crystal structure in which the atoms or molecules of the substance are arranged in a repetitive lattice. Many substances are known to exist in several different solid phases at different conditions of temperature and pressure. These …


Physics, Chapter 15: Heat And Work, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 15: Heat And Work, Henry Semat, Robert Katz

Robert Katz Publications

Until about 1750 the concepts of heat and temperature were not clearly distinguished. The two concepts were thought to be equivalent in the sense that bodies at equal temperatures were thought to "contain" equal amounts of heat. Joseph Black (1728-1799) was the first to make a clear distinction between heat and temperature. Black believed that heat was a form of matter, which subsequently came to be called caloric, and that the change in temperature of a body when caloric was added to it was associated with a property of the body which he called the capacity. Later investigators endowed caloric …


Physics, Appendix C, Henry Semat, Robert Katz Jan 1958

Physics, Appendix C, Henry Semat, Robert Katz

Robert Katz Publications

Appendix C: Answers to Odd-Numbered Problems


Physics, Appendix A, Henry Semat, Robert Katz Jan 1958

Physics, Appendix A, Henry Semat, Robert Katz

Robert Katz Publications

Appendix A


Physics, Chapter 46: Nuclear Reactions, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 46: Nuclear Reactions, Henry Semat, Robert Katz

Robert Katz Publications

One of the most important developments of twentieth-century physics was the formulation of the special theory of relativity. This theory was an outgrowth of the failure of all attempts to show that the motion of the source of light relative to the observer had any effect on the speed of light. It is impossible to account for these experimental findings of Michelson and Morley, and others, on the basis of classical mechanics and electromagnetic theory. In 1905, Albert Einstein put forth the suggestion that all experimental findings would be clarified if it were assumed that the speed of light is …


Physics, Chapter 44: Stable Nuclei, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 44: Stable Nuclei, Henry Semat, Robert Katz

Robert Katz Publications

Atomic and nuclear physics are essentially twentieth-century developments, although these had their origins at the close of the nineteenth century. These developments followed two parallel streams, as shown in Figure 44-1, one dealing with the electronic structure of the atom and the other dealing with its nuclear structure. These two streams served to feed each other and were fed by all other branches of physics, but only a few of the more important contributions concerning the nature of radiation, matter, and energy are shown in the figure.


Physics, Chapter 43: X-Rays, Henry Semat, Robert Katz Jan 1958

Physics, Chapter 43: X-Rays, Henry Semat, Robert Katz

Robert Katz Publications

The study of the electric discharge through gases led directly to the discovery of x-rays by W. C. Roentgen in 1895. While operating a gas discharge tube, Roentgen observed that a platinum-barium cyanide screen at some distance from the tube fluoresced. He shielded the tube so that no visible radiation could reach the screen, but the fluorescence could still be observed. On interposing various materials between the tube and the screen, he found that the intensity of the fluorescence could be diminished, but that it was not completely obliterated. He interpreted these observations as being due to radiation coming from …