149856 Three particles \(A, B, C\) are situated at the vertices of an equilateral triangle \(A B C\) of side \(d\) at \(\mathbf{t}=0\). Each of the particles moves with constant speed \(v\). A always has its velocity along \(A B, B\) along \(B C\) and \(C\) along \(C A\). The time the particles meet each other is
149856 Three particles \(A, B, C\) are situated at the vertices of an equilateral triangle \(A B C\) of side \(d\) at \(\mathbf{t}=0\). Each of the particles moves with constant speed \(v\). A always has its velocity along \(A B, B\) along \(B C\) and \(C\) along \(C A\). The time the particles meet each other is
149856 Three particles \(A, B, C\) are situated at the vertices of an equilateral triangle \(A B C\) of side \(d\) at \(\mathbf{t}=0\). Each of the particles moves with constant speed \(v\). A always has its velocity along \(A B, B\) along \(B C\) and \(C\) along \(C A\). The time the particles meet each other is
149856 Three particles \(A, B, C\) are situated at the vertices of an equilateral triangle \(A B C\) of side \(d\) at \(\mathbf{t}=0\). Each of the particles moves with constant speed \(v\). A always has its velocity along \(A B, B\) along \(B C\) and \(C\) along \(C A\). The time the particles meet each other is
149856 Three particles \(A, B, C\) are situated at the vertices of an equilateral triangle \(A B C\) of side \(d\) at \(\mathbf{t}=0\). Each of the particles moves with constant speed \(v\). A always has its velocity along \(A B, B\) along \(B C\) and \(C\) along \(C A\). The time the particles meet each other is