Noun Phrase
/sɪstɛm ʌv ˈfɔrsɪz/
The term "system of forces" refers to a collection of forces acting on a body or a structure that can be analyzed as a single entity. In physics and engineering, this concept is often used to simplify the evaluation of mechanics problems. This term is commonly used in technical contexts, particularly in studying forces in static and dynamic systems.
The frequency of use for this term is moderate to low, as it is primarily encountered in academic, written contexts, particularly within engineering and physics literature, rather than in everyday spoken language.
Инженеры были призваны оценить систему сил, действующих на мост, чтобы гарантировать его целостность.
In order to solve the problem, first, we need to identify the system of forces involved.
Для того чтобы решить проблему, сначала мы должны определить систему сил, участвующих в ней.
The professor explained how the system of forces could affect the stability of the structures.
The phrase "system of forces" is less likely to be involved in common idiomatic expressions given its technical nature. However, concepts related to forces and systems do appear in various idioms and expressions that convey ideas about power dynamics, influence, or interactions:
Шторм был настоящей силой природы, которую нельзя недооценивать.
"Pulling strings"
На своей новой должности он дергал за ниточки, чтобы получить одобрение проектов.
"On the same wavelength"
The term "system" originates from the Latin word "systema," which means an organized whole; a set of connected parts. The word "force" comes from the Latin "fortis," meaning strong or powerful. Together, "system of forces" highlights the interaction and arrangement of multiple forces acting upon an object.
Synonyms: - Force system - Set of forces - Collection of forces
Antonyms: - Static state (in absence of forces) - Equilibrium (where forces cancel each other out)
In conclusion, "system of forces" is a technical term used mainly in physics and engineering that describes a set of forces acting on an object, essential for understanding stability and motion in physical systems.