Floating Point Representation and Binary Arithmetic
Master how fractional numbers are encoded in computer memory using sign, exponent, and mantissa to write more precise and bug-free code.
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Pengajar AI
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Mula bila-bila masa
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Dalam bahasa Melayu
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Tentang kursus ini
Have you ever wondered why simple computer calculations like 0.1 plus 0.2 sometimes result in unexpected rounding errors? Understanding how computers handle fractional numbers in memory is essential for writing reliable software, especially in scientific computing, finance, and data analysis. This course guides you through the inner workings of binary arithmetic, helping you demystify the underlying architecture of digital systems.
You will transition from a basic understanding of whole integers to a precise grasp of how fractional values are stored, manipulated, and rounded in modern hardware. By reading through clear, step-by-step text explanations and analyzing practical code examples, you will learn to predict and prevent common numerical precision errors before they affect your production applications.
What you'll learn:
- Understand the core concepts of binary fractions and fixed-point representation
- Decode the components of the IEEE 754 floating-point standard, including sign, exponent, and mantissa
- Convert decimal fractions into normalized binary floating-point representation manually
- Identify the root causes of precision loss, underflow, and overflow in modern programming languages
- Apply best practices for comparing floating-point numbers safely in your code
- Explore modern alternative approaches to numerical precision, such as decimal types and arbitrary-precision arithmetic libraries
This course begins with foundational binary concepts and step-by-step mathematical definitions before moving into practical code-based implementations and debugging strategies. You will progress naturally from theoretical representation to real-world software application.
This course is designed for beginner programmers, computer science students, and self-taught developers who want to understand how computers compute fractional math. No advanced mathematics or prior low-level programming experience is required.
Start reading today to master the mechanics of computer arithmetic and write more robust code.
Apa yang anda dapat
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Sijil tamat
Tambah ke profil LinkedIn anda -
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Tutor AI peribadi
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Termasuk versi audio
Belajar sambil bergerak โ tanpa skrin -
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Akses seumur hidup
Kembali bila-bila masa, tiada tamat tempoh -
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Telefon atau komputer
Berfungsi di mana-mana, mana-mana peranti -
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Pulangan 14 hari
Tanpa soalan -
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Pendek dan fokus
2 jam 30 min kandungan praktikal
Ulasan
Belum ada ulasan โ jadilah yang pertama berkongsi pengalaman anda.
Soalan lazim
Apa yang saya perlukan untuk mengikuti kursus ini? +
Hanya telefon atau komputer dengan internet. Tiada pemasangan, tiada perkakasan khas.
Bagaimana untuk membayar? +
Dengan kad melalui Stripe. Kami tidak menyimpan butiran kad โ Stripe menguruskannya dengan selamat.
Bolehkah saya dapatkan bayaran balik? +
Ya โ pulangan penuh dalam 14 hari, tanpa soalan.
Berapa lama saya akan mempunyai akses? +
Selamanya. Setelah membeli, kursus adalah milik anda โ boleh lawat semula bila-bila masa.
Adakah saya akan mendapat sijil? +
Ya. Setelah tamat, anda akan menerima sijil yang boleh ditambah ke profil LinkedIn anda.
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