Educational of the mind is a weapon to a different knowledges which
benefit in ife and developed the mind in many field and practice him in a
regular form in a right thinking and practice sense on exactly recognizing and
conception things which is senses and regulating the memory and providing
with benefit information which fit to minded of person,the present research
aimed at answering the following two questions:
1-Does the concept of mind differ with age?
2-Does the recognition on function of mind developed with development of
age?
The research population consisted of the children in the primary schools
of Baghdad/center,and the students of the Education for woman
college/Baghdad university for the ages(11,18 ,19),the research
sample(22)subjects-was chosen randomly from the statistical population.
Thescale consisted of the(37)questions,first question measured the
cognition of conception of mind, but(36)questions measured the knowing of
function of mind ,this questios depended on number of the previous literatures
its validity and reliability in the Iraqi population.
The following results have been revealed:
1-The age of (19)yars obtain on greatest prons in explaination the concept of
the mind.
2-There are a statistically significant differences are shown to a (19) years in
function of mind in contrary to (11, 18)years.
On the basis of these results,the researcher has made some
recommendations and suggestions.
In this work, results of a mathematical analysis of the role of workpiece preheating in laser keyhole welding were presented. This analysis considered the steady-state welding as well as certain range of boundary conditions over which preheating effect would be indicated. This work is an attempt to interpret the role of preheating to increase welding depth and perform keyhole welding with high quality using physical and thermal properties of steel alloys.
The effect of considering the third dimension in mass concrete members on its cracking behavior is investigated in this study. The investigation includes thermal and structural analyses of mass concrete structures. From thermal analysis, the actual temperature distribution throughout the mass concrete body was obtained due to the generation of heat as a result of cement hydration in
addition to the ambient circumstances. This was performed via solving the differential equations of heat conduction and convection using the finite element method. The finite element method was also implemented in the structural analysis adopting the concept of initial strain problem. Drying shrinkage volume changes were calculated using the procedure sug
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