Physics
56 books.
Books
- Mechanics Step by Step
- Waves, Oscillations, and Resonance Step by Step
- Electricity and Electronic Circuits Step by Step
- Optics Step by Step
- Electric Fields, Electrostatics & Capacitors Step by Step
- Thermodynamics and Statistical Mechanics Step by Step
- Electronic Circuits II & III: Decision Networks and Interfaces Step by Step
- Quantum States & Qubits Step by Step
- Physics for Biophysics Step by Step
- Quantum Mechanics: Waves, Spin, and Tunneling Step by Step
- Biophysical Instrumentation II: From Signals to Genomes Step by Step
- Quantum Hardware Readout: Signals and Calibration Step by Step
- Electronic Circuits IV & XII: Digital Logic and Timing Closure Step by Step
- Quantum Computing Physical Bases: Control, Coupling, and Error Signals Step by Step
- Biophysical Instrumentation III: Control, Detectors, and Throughput Step by Step
- Biophysical Separation and Detection Step by Step
- Electronic Circuits V & VI: Front-End Conditioning and Op-Amp Feedback Step by Step
- Biophysical Optical Readout and Metrology Step by Step
- Biophysical Instrumentation IV: Multimodal Metrology and Genome-Scale Throughput Step by Step
- Quantum Measurement and Coherence Windows Step by Step
- Electronic Circuits VII & VIII: Frequency Response and Active Filters Step by Step
- Quantum Mechanics III: Open-System Error Budgets Step by Step
- Biophysical Instrumentation V: Calibration, Bounds, and Acceptance Gates Step by Step
- Biophysical Instrumentation VI: Spatial Encoding and Genome-Scale Maps Step by Step
- Quantum Mechanics IV: Photons, Interferometers, and Optical Qubits Step by Step
- Electronic Circuits IX & X: Feedback Control and Sampled Conversion Step by Step
- Quantum Mechanics V: Error Correction and Stabilizer Checks Step by Step
- Biophysical Forces and Single-Molecule Mechanics Step by Step
- Biophysical Energy Transduction and Molecular Motors Step by Step
- Biophysical Statistical Mechanics and Brownian Motion Step by Step
- Biophysical Continuum Mechanics and Viscoelastic Flow Step by Step
- Biophysical Active Matter and Cellular Motion Step by Step
- Biophysical Chemotaxis and Gradient Sensing Step by Step
- Biophysical Medical Imaging: Projection and Reconstruction Step by Step
- Special Relativity: Time, Energy, and Momentum Step by Step
- Particle Physics: Conservation Laws and Reaction Ledgers Step by Step
- Detector Physics: Timing and Spatial Reconstruction Step by Step
- Rotational Dynamics and Orbital Mechanics Step by Step
- Magnetism, Induction, and Transmission Lines Step by Step
- Fluid Mechanics and Surface Tension Step by Step
- Nuclear Radiation: Decay, Binding, and Shielding Step by Step
- Semiconductor Physics and Transistor Switching Step by Step
- Condensed Matter and Plasma Physics Step by Step
- Atomic Spectra: Energy Levels and Line Series Step by Step
- Ion-Trap Qubits: Sidebands, Shared Modes, and Fluorescence Readout Step by Step
- Biophysical Ultrasound: Echo Timing and Acoustic Interfaces Step by Step
- Superconducting Qubits: LC Energy, Toy Josephson Coupling, and Readout Step by Step
- Observational Astrophysics: Distance, Flux, Transits, and Spectra Step by Step
- Signals and Noise in Physics Measurements Step by Step
- Electromagnetic Waves and Radiation Step by Step
- Electronic Circuits XIII & XIV: Power Supplies and Switching Energy Step by Step
- Elasticity and Nonlinear Dynamics Step by Step
- Electronic Circuits XV & XVI: Transformers and Switched-Capacitor Conversion Step by Step
- Biophysical Instrumentation VII: NMR Relaxation and MRI Contrast Step by Step
- Biophysical Instrumentation VIII: X-Ray Crystallography and Reciprocal Evidence Step by Step
- Biophysical Instrumentation IX: PCR Quantification and Library Coverage Step by Step