Add remaining backtricks for mathematical notation.

parent aca8a137
......@@ -58,7 +58,7 @@ def base_equals_raised(root, args):
return L(1).negate(root.negated)
MESSAGES[base_equals_raised] = _('Logarithm {0} reduces to 1.')
MESSAGES[base_equals_raised] = _('Logarithm {0} reduces to `1`.')
def divide_same_base(root, args):
......@@ -70,7 +70,7 @@ def divide_same_base(root, args):
return log(raised) / log(base)
MESSAGES[divide_same_base] = _('Apply log_b(a) = log(a) / log(b) on {0}.')
MESSAGES[divide_same_base] = _('Apply `log_b(a) = log(a) / log(b)` on {0}.')
def match_add_logarithms(node):
......@@ -127,7 +127,7 @@ def add_logarithms(root, args):
return scope.as_nary_node()
MESSAGES[add_logarithms] = _('Apply log(a) + log(b) = log(ab).')
MESSAGES[add_logarithms] = _('Apply `log(a) + log(b) = log(ab)`.')
#_('Combine logarithms with the same base: {2} and {3}.')
......@@ -144,7 +144,7 @@ def expand_negations(root, args):
MESSAGES[expand_negations] = \
_('Apply -log(a) - log(b) = -(log(a) + log(b)).')
_('Apply `-log(a) - log(b) = -(log(a) + log(b))`.')
def subtract_logarithms(root, args):
......@@ -161,7 +161,7 @@ def subtract_logarithms(root, args):
return scope.as_nary_node()
MESSAGES[subtract_logarithms] = _('Apply log(a) - log(b) = log(a / b).')
MESSAGES[subtract_logarithms] = _('Apply `log(a) - log(b) = log(a / b)`.')
def match_raised_base(node):
......@@ -212,7 +212,7 @@ def raised_base(root, args):
return args[0]
MESSAGES[raised_base] = _('Apply g ^ log_g(a) = a on {0}.')
MESSAGES[raised_base] = _('Apply `g ^ (log_(g)(a)) = a` on {0}.')
def match_factor_out_exponent(node):
......
......@@ -2,7 +2,7 @@ from itertools import combinations
from .utils import greatest_common_divisor, is_numeric_node
from ..node import ExpressionLeaf as Leaf, Scope, OP_ADD, OP_DIV, OP_MUL, \
OP_POW, negate
OP_POW
from ..possibilities import Possibility as P, MESSAGES
from ..translate import _
......
......@@ -293,7 +293,7 @@ def remove_power_of_zero(root, args):
return L(1)
MESSAGES[remove_power_of_zero] = _('Power of zero {0} rewrites to 1.')
MESSAGES[remove_power_of_zero] = _('Power of zero {0} rewrites to `1`.')
def remove_power_of_one(root, args):
......
......@@ -7,7 +7,6 @@ from .logarithmic import factor_in_exponent_multiplicant, \
from .derivatives import chain_rule
from .negation import double_negation, negated_factor, negated_nominator, \
negated_denominator, negated_zero
from .factors import expand_double, expand_single
from .fractions import multiply_with_fraction, divide_fraction_by_term, \
add_nominators
from .integrals import factor_out_constant, integrate_variable_root
......
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