Actual Exam 2026/2027 | Detailed Rationales | Graded A+ | Pass
Guaranteed – A+ Graded
Section 1: Platform Architecture & Administration
Question 1
You are architecting a multi-model Anaplan ecosystem for a global enterprise. The
organization requires centralized master data management, consistent metadata
across 12 spoke models, and strict governance over list structures. Which architectural
pattern best aligns with Anaplan's recommended approach for enterprise-scale
deployments?
A. Create a single monolithic model containing all business processes and data, using
selective access to partition user visibility.
B. Deploy a dedicated Data Hub model to manage master data and lists, with controlled
exports feeding standardized structures to spoke models.
C. Build each spoke model with independent list structures and import data directly
from source systems, synchronizing via manual exports.
D. Use a single workspace with all models sharing the same model calendar and version
settings, relying on Anaplan's native cross-model linking for data synchronization.
Correct Answer: B
,Rationale: The Data Hub architecture is Anaplan's established best practice for
enterprise deployments. A dedicated Data Hub centralizes master data management,
ensures list consistency across spoke models, and enables controlled, automated data
distribution. Option A creates an unmaintainable monolith with performance and
governance risks. Option C sacrifices consistency and creates shadow integration
processes. Option D is incorrect because Anaplan does not support native cross-model
linking; data must be exported and imported between models.
Question 2
Your organization has adopted Anaplan's PLANS framework for model design. During a
design review, a junior model builder proposes placing calculation modules, input
modules, and system modules within the same functional area to reduce navigation
complexity. What is the most appropriate guidance regarding the DISCO methodology?
A. Consolidating all module types into one functional area improves user navigation and
aligns with DISCO principles.
B. DISCO requires strict physical separation of Data, Input, System, Calculation, and
Output modules into five distinct models.
C. Modules should be logically grouped by purpose (Data, Input, System, Calculation,
Output) within the model, not mixed arbitrarily, to optimize calculation alignment and
maintainability.
D. Functional areas should be organized alphabetically by module name to ensure
consistency across all Anaplan implementations.
Correct Answer: C
,Rationale: DISCO (Data, Input, System, Calculation, Output) is a logical organization
methodology within the PLANS framework. It ensures modules with similar
dimensionality and purpose are grouped together, which optimizes calculation engine
performance and model maintainability. Option A violates DISCO by mixing purposes.
Option B is incorrect because DISCO applies within a model, not across separate
models. Option D has no basis in Anaplan methodology.
Question 3
A client requires a production model that supports both monthly financial planning and
weekly operational forecasting. The model calendar is set to fiscal years with 12
months. Which approach correctly addresses the weekly forecasting requirement
without compromising model performance?
A. Expand the model calendar to include weeks as the base time period, replacing the
monthly structure entirely.
B. Create a separate custom time list for weeks and use it only in modules requiring
weekly granularity, keeping the model calendar at the month level.
C. Add weeks to the model calendar alongside months, enabling both granularities
natively within the same calendar.
D. Use the native Anaplan weekly time scale setting and apply it globally across all
modules in the model.
Correct Answer: B
Rationale: Creating a custom time list for weekly granularity in specific modules is the
optimal approach. It avoids inflating the model size by forcing all modules to carry
weekly dimensionality. Option A eliminates the monthly structure required for financial
, planning. Option C would dramatically increase model size and calculation overhead.
Option D is incorrect because Anaplan does not support a native weekly time scale that
coexists with monthly planning in the manner described.
Question 4
During a tenant audit, you discover that 40% of workspace capacity is consumed by
archived models that are no longer active but retained for historical reference. Which
governance action best aligns with Anaplan's Center of Excellence (CoE)
responsibilities?
A. Immediately delete all archived models to free workspace capacity, as the CoE owns
workspace allocation decisions.
B. Retain all archived models indefinitely within the production workspace to ensure
historical data is always accessible.
C. Establish a model archival policy that moves inactive models to a dedicated archive
workspace or documents their data before deletion, while maintaining a model
inventory.
D. Request additional workspace capacity from Anaplan rather than managing existing
capacity, as the CoE's role is primarily liaison with Anaplan.
Correct Answer: C
Rationale: A mature CoE implements governance policies including model lifecycle
management. Establishing an archival policy with proper documentation and inventory
management balances historical reference needs with workspace optimization. Option
A risks losing valuable historical data. Option B is fiscally irresponsible and creates
clutter. Option D abdicates the CoE's responsibility for internal capacity management.