diff --git a/corsika/detail/media/FlatExponential.inl b/corsika/detail/media/FlatExponential.inl
index 7604352b5e1d181236b35c55136912f3c731f161..1c5a98569ad4197dcff0c8423d85b5f82426e7eb 100644
--- a/corsika/detail/media/FlatExponential.inl
+++ b/corsika/detail/media/FlatExponential.inl
@@ -29,7 +29,7 @@ namespace corsika {
   template <typename T>
   inline MassDensityType FlatExponential<T>::getMassDensity(Point const& point) const {
     return BaseExponential<FlatExponential<T>>::getMassDensity(
-      (point - BaseExponential<FlatExponential<T>>::getAnchorPoint()).dot(axis_));
+        (point - BaseExponential<FlatExponential<T>>::getAnchorPoint()).dot(axis_));
   }
 
   template <typename T>
diff --git a/tests/media/testEnvironment.cpp b/tests/media/testEnvironment.cpp
index 28368aa967c20a6006348866f7eab1151f0eeea6..50dfa4ecd36a28ab4b0d968d9b5fb8cd0e27a0ec 100644
--- a/tests/media/testEnvironment.cpp
+++ b/tests/media/testEnvironment.cpp
@@ -107,12 +107,12 @@ TEST_CASE("FlatExponential") {
         std::vector<Code>{Code::Proton});
 
   SECTION("horizontal") {
-    //Check that not moving along axis does not change density
+    // Check that not moving along axis does not change density
     CHECK(medium.getMassDensity(Point(gCS, 1_m, 0_m, 0_m)) == rho0);
     CHECK(medium.getMassDensity(Point(gCS, 1_m, 0_m, 0_m)) == rho0);
     CHECK(medium.getMassDensity(Point(gCS, -1_m, 0_m, 0_m)) == rho0);
     CHECK(medium.getMassDensity(Point(gCS, 0_m, 1_m, 0_m)) == rho0);
-    CHECK(medium.getMassDensity(Point(gCS, 0_m,-1_m, 0_m)) == rho0);
+    CHECK(medium.getMassDensity(Point(gCS, 0_m, -1_m, 0_m)) == rho0);
 
     Line const line(gOrigin, Vector<SpeedType::dimension_type>(
                                  gCS, {speed, 0_m / second, 0_m / second}));
@@ -125,7 +125,7 @@ TEST_CASE("FlatExponential") {
   }
 
   SECTION("vertical") {
-    //Moving along axis does change density
+    // Moving along axis does change density
     CHECK(medium.getMassDensity(Point(gCS, 0_m, 0_m, 1_m)) > rho0);
     CHECK(medium.getMassDensity(Point(gCS, 0_m, 0_m, -1_m)) < rho0);