MoziChem-MCP
Server Configuration
Describes the environment variables required to run the server.
| Name | Required | Description | Default |
|---|---|---|---|
No arguments | |||
Instructions
Guidance the server publishes about itself, which clients place ahead of the tool catalog so the model reads it before choosing anything.
This server publishes no instructions, or was last inspected before Glama recorded them.
Capabilities
Features and capabilities supported by this server
Protocol revision2025-11-25
| Capability | Details |
|---|---|
| tools | {
"listChanged": true
} |
| prompts | {
"listChanged": false
} |
| resources | {
"subscribe": false,
"listChanged": false
} |
| experimental | {} |
Tools
Functions exposed to the LLM to take actions
| Name | Description |
|---|---|
| calc_bubble_pressure_ideal_vapor_ideal_liquidA | The Bubble-Pressure (BP) calculation determines the pressure at which the first bubble of vapor forms when a liquid mixture is heated at a constant temperature. It is used to find the pressure for a given temperature at which the liquid will begin to vaporize. |
| calc_dew_pressure_ideal_vapor_ideal_liquidA | The Dew-Pressure (DP) calculation determines the pressure at which the first drop of liquid condenses from a vapor mixture when cooled at a constant temperature. It is used to find the pressure for a given temperature at which the vapor will begin to condense. |
| calc_bubble_temperature_ideal_vapor_ideal_liquidB | The Bubble-Temperature (BT) calculation determines the temperature at which the first bubble of vapor forms when a liquid mixture is heated at a constant pressure. It is used to find the temperature for a given pressure at which the liquid will begin to vaporize. |
| calc_dew_temperature_ideal_vapor_ideal_liquidB | The Dew-Temperature (DT) calculation determines the temperature at which the first drop of liquid condenses from a vapor mixture when cooled at a constant pressure. It is used to find the temperature for a given pressure at which the vapor will begin to condense. |
| calc_flash_isothermal_ideal_vapor_ideal_liquidB | The Flash Isothermal (FI) calculation determines the phase equilibrium of a liquid mixture at a constant temperature, calculating the vapor and liquid phase compositions. It is used to find the equilibrium state of a mixture at a specified temperature. |
Prompts
Interactive templates invoked by user choice
| Name | Description |
|---|---|
No prompts | |
Resources
Contextual data attached and managed by the client
| Name | Description |
|---|---|
No resources | |
TDQS
Scored across 5 tools
Each tool corresponds to a distinct, well-defined VLE calculation: bubble pressure, dew pressure, bubble temperature, dew temperature, and isothermal flash. The descriptions clearly differentiate the independent variable and physical phenomenon, so there is no meaningful ambiguity between tools.
All tool names follow the exact same pattern: calc_<calculation_type>_ideal_vapor_ideal_liquid. This creates a highly predictable and systematic naming convention, despite the names being long.
Five tools is an appropriate, focused count for a specialized vapor-liquid equilibrium server. Each tool covers a core calculation type without redundant or unnecessary helpers.
The tool set covers the standard set of ideal VLE calculations: bubble point (pressure and temperature), dew point (pressure and temperature), and isothermal flash. Within the stated ideal vapor/ideal liquid scope, there are no obvious missing operations or dead ends.