AP Exams (Advanced Placement)
College Board Advanced Placement Exams in AP Calculus, AP Physics, and AP Computer Science for college credit.
The AP Exams (Advanced Placement) catalogue prepares the live paper as 75 questions, 180 minutes, 5 marks (College Board).
How this paper is marked
The scored paper in the app is marked as MCQ. A correct answer is worth 1. There is no negative marking on this mock.
| Section | Questions | Marks | Minutes |
|---|---|---|---|
| Physics | 11 | 11 | 26 |
| Mathematics | 11 | 11 | 26 |
| Operating Systems | 11 | 11 | 26 |
| Databases | 11 | 11 | 26 |
| Computer Networks | 11 | 11 | 26 |
| Computer Architecture | 10 | 10 | 25 |
| System Design | 10 | 10 | 25 |
Computer Architecture
Instruction sets, pipelining, cache and the memory hierarchy
- ISA and CPU TimeThe hardware contract: what an instruction is, how it names operands, and the three levers of CPU time.
- Instruction PipeliningOverlap fetch, decode, execute, memory and write-back; hazards that stall that overlap; speedup versus a non-pipelined machine.
- Cache and the Memory HierarchyWhy caches work, where a block may live, and how to average the cost of a hit and a miss.
- Input, Output and DMAHow the CPU talks to devices: polling, interrupts, DMA, and the same LOAD aimed at a device register.
Databases
Relational model, SQL, normalization, transactions and indexing
- Entities, Relationships and TablesFrom a campus-shop ER sketch to the three tables a relational database actually stores.
- Relations, Keys and Basic SQLWhat a relation is, how keys name a row, relational algebra, and SELECT/WHERE on one campus-shop table.
- SQL Joins, Groups and NULLJoin the campus-shop tables, group sales, and handle missing values in SQL.
- Functional Dependencies and First Normal FormFDs, attribute closure, candidate keys and atomic cells — the rules that make the campus-shop tables split later.
- Second, Third and Boyce–Codd FormSplit the campus-shop leftovers: partial FDs, transitive wardens, and BCNF determinants.
- Transactions, Accidents and RecoveryACID on one sale, dirty/lost/phantom accidents, conflict serializability and write-ahead logging.
- Isolation Levels and LockingWhich accidents a kiosk session may still see, from READ UNCOMMITTED to SERIALIZABLE, and how 2PL implements the stronger ones.
- Indexing and B+ TreesClustered versus secondary indexes and B+ trees that find a campus-shop sale without a full scan.
Computer Networks
TCP/IP, addressing, routing and application protocols
- Layers and How a Connection OpensOSI versus TCP/IP layering, TCP versus UDP, the three-way open and four-way close, and the header bytes that name ports.
- TCP Flow and Congestion ControlReceiver window versus congestion window, sliding-window throughput, slow start and AIMD after loss.
- IP Addressing, CIDR and NATIPv4 addressing, subnetting with CIDR, fragmentation, and support protocols like ARP, DHCP and NAT.
- How a Packet Finds a PathRoutes as next hops, distance-vector Bellman-Ford, count-to-infinity, and link-state Dijkstra.
- DNS, HTTP and MailDNS resolution and records, HTTP/HTTPS, well-known ports, and the SMTP send versus POP3/IMAP pull split.
Operating Systems
Processes, system calls, threads, synchronization, deadlocks, CPU scheduling, memory, page replacement, filesystems and disk scheduling
- Processes and the PCBWhat a process is, the five states, the PCB, context switches, multiprogramming and how two processes exchange data.
- System calls and the process APIUser versus kernel mode, the trap that is a system call, and fork / wait / exit.
- ThreadsThreads share a process's address space; user-level versus kernel-level scheduling.
- SynchronizationRaces, the critical-section properties, Peterson's two-process lock, semaphores and monitors.
- DeadlocksCoffman conditions, wait-for / resource-allocation graphs, Banker's algorithm and the minimum-units bound.
- CPU schedulingTurnaround, waiting and response, then FCFS, SJF, SRTF, Round Robin and priority on one three-job walk.
- Memory managementPaging, address translation, the TLB, demand paging and segmentation.
- Page replacementVictim choice under FIFO, LRU and Optimal, and Belady's anomaly.
- File systemsWhat a file is, contiguous / linked / indexed allocation, inodes and directories.
- Disk schedulingDisk access time and FCFS, SSTF, SCAN-family head movement.
System Design
Scalability, load balancing, caching, database scaling and CAP
- Growing past one boxHow CampusClip grows from one host to many — scale up versus out, a load balancer, CAP under a partition, and availability nines.
- Load vs capacityArrivals versus what a CampusClip host can finish — excess, utilisation, and QPS × payload.
- Latency vs throughputTime for one CampusClip open versus finishes per second, and Little's Law for in-flight work.
- CachingA fast copy of a CampusClip mapping — hits, write paths, staleness, and where the copy sits after scale-out.
- QueuesWork the CampusClip caller is not waiting on — bursts, producer/broker/consumer, back-pressure, and when not to queue.
- CampusClip walkThe two CampusClip paths — paste and redirect — with the store, key placement, and a sketch that uses only numbers the course already stated.
Mathematics (JEE & NDA)
Differential Calculus, Integral Calculus, Vectors, 3D Geometry & Matrices
- Sets, Relations and FunctionsSet operations and algebra, types of relations, equivalence relations, and one one, onto and composite functions.
- Complex Numbers and Quadratic EquationsAlgebra of complex numbers, modulus and argument, Argand plane, and roots and nature of quadratic equations.
- Matrices and DeterminantsAlgebra and types of matrices, evaluation of determinants, adjoint and inverse, and solving linear systems.
- Permutations and CombinationsFundamental principle of counting, arrangements and selections, and simple applications to counting problems.
- Binomial Theorem and Its Simple ApplicationsBinomial expansion for positive integral index, general and middle terms, and simple applications.
- Sequence and SeriesArithmetic and geometric progressions, arithmetic and geometric means, and the relation between the two means.
- Limits, Continuity, Differentiability and Applications of DerivativesLimits and continuity, differentiation rules, derivatives of standard functions, and applications like maxima, minima and rate of change.
- Integral CalculusIndefinite integration by substitution, parts and partial fractions, definite integrals, and areas bounded by curves.
- Differential EquationsOrder and degree of differential equations, separation of variables, homogeneous equations and linear first order equations.
- Coordinate Geometry: Straight Lines and CirclesCartesian coordinates, distance and section formulas, equations of straight lines, and the geometry of circles.
- Conic SectionsStandard equations and properties of the parabola, ellipse and hyperbola including foci, directrices and eccentricity.
- Three Dimensional GeometryCoordinates in space, direction cosines and ratios, equations of lines and planes, and distances and angles between them.
- Vector AlgebraAddition of vectors, scalar and vector products, scalar triple product and geometric applications of vectors.
- Statistics and ProbabilityMeasures of dispersion, probability of events, conditional probability, Bayes theorem and probability distributions.
- TrigonometryTrigonometric identities and equations, inverse trigonometric functions, and heights and distances applications.
Physics (JEE & NEET)
Kinematics, Thermodynamics, Electromagnetism, Optics & Modern Physics
- Basic Vectors for PhysicsPhysics-first vector tools: components, unit vectors, dot and cross products, relative velocity, forces, torque, angular momentum and field/flux framing.
- Kinematics, Newtons Laws and Projectile MotionMotion in one and two dimensions using vectors, relative velocity, projectile trajectories and the three laws of motion with friction.
- Work, Energy and PowerWork done by constant and variable forces, kinetic and potential energy, conservation of energy, and power for conservative and non conservative systems.
- Center of Mass and System of ParticlesCenter of mass location and motion for particle systems, rigid bodies, explosions, impulse-momentum links and variable-mass framing.
- Collisions in One and Two DimensionsImpulse, coefficient of restitution, elastic and inelastic collisions, 1D head-on results, oblique/2D collisions and COM-frame methods.
- Rotational Motion and Rigid Body DynamicsMoment of inertia, torque, angular momentum, rolling motion and equilibrium of rigid bodies about fixed and moving axes.
- GravitationUniversal law of gravitation, gravitational field and potential, escape and orbital velocity, and Keplers laws of planetary motion.
- Properties of Solids and LiquidsElasticity, fluid pressure, Pascal and Bernoulli principles, viscosity, surface tension and thermal properties of matter.
- Thermodynamics and Kinetic Theory of GasesLaws of thermodynamics, thermodynamic processes, heat engines, and the kinetic theory relating pressure and temperature to molecular motion.
- Oscillations and WavesSimple harmonic motion, springs and pendulums, wave propagation, superposition, beats, resonance and the Doppler effect in sound.
- ElectrostaticsCoulombs law, electric field and potential, Gauss law, capacitors, dielectrics and energy stored in electric fields.
- Current ElectricityOhms law, resistivity, series and parallel circuits, Kirchhoff rules, Wheatstone bridge, potentiometer and electrical measuring instruments.
- Magnetic Effects of Current and MagnetismBiot Savart and Ampere laws, magnetic force on charges and currents, moving coil galvanometer and properties of magnetic materials.
- Electromagnetic Induction and Alternating CurrentsFaraday and Lenz laws, self and mutual inductance, AC circuits with resistors inductors and capacitors, resonance and transformers.
- Electromagnetic WavesDisplacement current, transverse nature of electromagnetic waves, their speed in vacuum and the electromagnetic spectrum from radio waves to gamma rays.
- Ray and Wave OpticsReflection and refraction at mirrors and lenses, optical instruments, interference, diffraction and polarisation of light.
- Dual Nature of Matter, Atoms and NucleiPhotoelectric effect, matter waves, Bohr model of the atom, nuclear structure, radioactivity and mass energy relation.
- Units and MeasurementsSI units, dimensions, significant figures, error analysis and least-count based instrument readings used across JEE Physics.
- Electronic Devices (Semiconductors)Semiconductor basics, p-n junction diodes, rectifiers, optoelectronic devices, Zener regulation and logic gates for JEE Main.
- Experimental SkillsJEE Physics laboratory methods, instrument least count, error handling and standard experiment formulas from mechanics, fluids, heat, optics and electricity.
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