Comparison

4Dice vs Quantum Wave in a Box

Price, ratings, monetisation and update history for both apps, side by side — with what reviewers say about each.

Head to head
About

4Dice

Explore a hypercube visualized as a 4-dimensional, 8-sided die. Interact with the die using multitouch controls to reveal its hidden faces as they come into view during rolls. Experience a unique perspective on geometric visualization.

Highlights
  • Multitouch controls
  • 4D hypercube exploration
  • Interactive die rolling
  • Geometric visualization
  • Unique perspective rendering
Features
Read full description

This application exploits multitouch controls to explore a hypercube labeled as a 4-dimensional, 8-sided die. The hypercube's eight cube-shaped faces are rendered as a 4D being would see them in 4D light: thus, only one, two, three, or four cubic faces can appear at one time while the die rolls, but no more. Faces that would be invisible to a 4D gambler cannot be seen without interactively rolling the die to bring them into view.

About

Quantum Wave in a Box

This app numerically solves the one-dimensional Schrödinger equation for non-relativistic particles in user-defined potential fields. It provides energy levels, wave-functions, and animations of wave-packet evolution. Ideal for physics students and educators to visualize quantum mechanics concepts.

Highlights
  • Schrödinger equation solver (1D)
  • User-defined potential V(x)
  • Hamiltonian matrix diagonalization
  • Wave-packet evolution animation
  • Energy levels and wave-functions visualization
  • RPN expression input for V(x)
Features
Read full description

Schrödinger equation solver 1D. User defined potential V(x). Diagonalization of hamiltonian matrix. Animation showing evolution in time of a gaussian wave-packet. In Quantum Mechanics the one-dimensional Schrödinger equation is a fundamental academic though exciting subject of study for both students and teachers of Physics. A solution of this differential equation represents the motion of a non-relativistic particle in a potential energy field V(x). But very few solutions can be derived with a paper and pencil. Have you ever dreamed of an App which would solve this equation (numerically) for each input of V(x) ? Give you readily energy levels and wave-functions and let you see as an animation how evolves in time a gaussian wave-packet in this particular interaction field ? Quantum Wave in a Box does it ! For a large range of values of the quantum system parameters. Actually the originally continuous x-spatial differential problem is discretized over a finite interval (the Box) while time remains a continuous variable. The time-independent Schrödinger equation H ψ(x) = E ψ(x), represented by a set of linear equations, is solved by using quick diagonalization routines. The solution ψ(x,t) of the time-dependent Schrödinger equation is then computed as ψ(x,t) = exp(-iHt) ψ₀(x) where ψ₀(x) is a gaussian wave-packet at initial time t = 0. You enter V(x) as RPN expression, set values of parameters and will get a solution in many cases within seconds ! - Atomic units used throughout (mass of electron = 1) - Quantum system defined by mass, interval [a, b] representing the Box and (real) potential energy V(x). - Spatially continuous problem discretized over [a, b] and time-independent Schrödinger equation represented by a system of N+1 linear equations using a 3, 5 or 7 point stencil; N being the number of x-steps. Maximum value of N depends on device’s RAM: up to 4000 when computing eigenvalues and eigenvectors, up to 8000 when computing eigenvalues only. - Diagonalization of hamiltonian matrix H gives eigenvalues and eigenfunctions. When computing eigenvalues only, lowest energy levels of bound states (if any) with up to 10-digit precision. - Listing of energy levels and visualisation of eigenwave-functions. - Animation shows gaussian wave-packet ψ(x,t) evolving with real-time evaluation of average velocity, kinetic energy and total energy. - Toggle between clockwise and counter-clockwise evolution of ψ(x,t). - Watch Real ψ, Imag ψ or probability density |ψ|². - Change initial gaussian parameters of the wave-packet (position, group velocity, standard deviation), enter any time value, then tap refresh button to observe changes in curves without new diagonalization. This is particularly useful to get a (usually more precise) solution for any time value t when animation is slower in cases of N being large. - Watch both solution ψ(x,t) and free wave-packet curves evolve together in time and separate when entering non-zero potential energy region. - Zoom in and out any part of the curves and watch how ψ(x,t) evolve locally.

Screenshots

4Dice4 screens
Quantum Wave in a Box4 screens

Verdict

The call

The clearest difference is review sentiment: 4Dice at 100% against Quantum Wave in a Box's 0%. 4Dice also leads on rating (5.0 vs 3.3) and update cadence (every 18 months vs every 37 months). On price, ratings volume, ads and in-app purchases there is nothing between them.

Scored on Price · Rating · Positive reviews · Number of ratings · Update frequency · Ads · In-app purchases · Monetization · Best chart rank · Devices · Requires iOS

CostPrice · In-app purchases · Ads · Monetization

Both are free to download. Neither carries in-app purchases, so what you see is what you pay.

ReceptionRating · Positive reviews · Number of ratings

4Dice holds the better App Store score, 5.0 against 3.3. Both are backed by a comparable volume of ratings — 3 and 4 respectively. Written reviews point the same way: 100% of 4Dice's written reviews are positive against 0% of Quantum Wave in a Box's.

UpkeepUpdate frequency

4Dice ships an update every 18 months, Quantum Wave in a Box every 37 months. The most recent releases landed on June 5, 2026 and June 1, 2026 respectively.

Scorecard4 real differences · 6 level
4Dice versus Quantum Wave in a Box: the parameters behind the verdict, then further details
Parameter4DiceQuantum Wave in a Box
PriceFreeFree
Rating5.0 (3 ratings) — better3.3 (4 ratings)
Positive reviews100.0% of reviews — better0.0% of reviews
Number of ratings34 — better
Update frequencyEvery 18 months — betterEvery 37 months
AdsNoNo
In-app purchasesNoNo
MonetizationFreeFree
DevicesiPhone, iPad, iPodiPhone, iPad, iPod
Requires iOS9.3 — better11.0
Further details — not scored
Size15 MB12 MB
Age rating12+4+
DeveloperAndrew HansonMichel Ramillon

Customer experience

4Dice

All ratings3 ratings
Positive100.0%
Neutral0.0%
Negative0.0%
Written reviews5 reviews
Positive100.0%
Neutral0.0%
Negative0.0%

Quantum Wave in a Box

All ratings4 ratings
Positive50.0%
Neutral0.0%
Negative50.0%
Written reviews1 reviews
Positive0.0%
Neutral0.0%
Negative100.0%

In-app purchases

None

4Dice

No in-app purchases

None

Quantum Wave in a Box

No in-app purchases

Questions

Is 4Dice free?
4Dice is free to download, with no in-app purchases.
Is Quantum Wave in a Box free?
Quantum Wave in a Box is free to download, with no in-app purchases.
Which has better reviews, 4Dice or Quantum Wave in a Box?
4Dice is rated higher. 4Dice averages 5.0 out of 5 from 3 ratings, while Quantum Wave in a Box averages 3.3 from 4 ratings.
Do 4Dice or Quantum Wave in a Box have ads?
Neither 4Dice nor Quantum Wave in a Box shows ads.
Which is updated more often, 4Dice or Quantum Wave in a Box?
4Dice ships an update every 18 months, and Quantum Wave in a Box every 37 months. Most recently, 4Dice was updated on June 5, 2026 and Quantum Wave in a Box on June 1, 2026.

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