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TLE is also referred to as CP-TLE for Career Pathways in Technology and Livelihood Education. [3] The 2010 Secondary Education Curriculum allocates 240 minutes per week for CP-TLE, which is equivalent to 1.2 units. However, CP-TLE is required to include practical work experience in the community, which may extend beyond its specified school hours.
Similar to BEC's implementation of the TLE, it is available after primary education (TLE starts at Grade 7). Exploratory Subjects are at 40 hours per quarter during Grades 7-8, while specializations are taken from Grades 9-12. A sample list of courses for specializations in Information and Communications Technology is provided as follows:
The content of these standards is based heavily on a specific model of learning, constructivism (learning theory). [4] Like reform mathematics, [5] which is distinguished by an emphasis on building on what a child already knows and understands, the standards intend to update the methods of science education to achieve greater effectiveness with children.
This quarter system was adopted by the oldest universities in the English-speaking world (Oxford, founded circa 1096, [1] and Cambridge, founded circa 1209 [2]). Over time, Cambridge dropped Trinity Term and renamed Hilary Term to Lent Term, and Oxford also dropped the original Trinity Term and renamed Easter Term as Trinity Term, thus establishing the three-term academic "quarter" year widely ...
The K–10 system co-existed with the current K–12 curriculum from April 24, 2012, until K–10 was entirely phased out on June 5, 2017, upon the effectivity of K–12 in Grade 6. The last batch of the K–10 elementary and high school students have completed primary and secondary education at the end of School Years 2014–2015 and 2016 ...
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Source code for algorithm implementations, and TLE interpretation in some cases: python-sgp4 A Python Implementation of the sgp4 model with automatic downloading of TLE Elements from NORAD database. PHP5 based on Gpredict; Java: SDP4 and predict4java; C++, FORTRAN, Pascal, and MATLAB. go-satellite GoLang implementation of SGP4 model and helper ...
k 1 = c · (a + b) k 2 = a · (d − c) k 3 = b · (c + d) Real part = k 1 − k 3 Imaginary part = k 1 + k 2. This algorithm uses only three multiplications, rather than four, and five additions or subtractions rather than two. If a multiply is more expensive than three adds or subtracts, as when calculating by hand, then there is a gain in speed.
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